AVX Periodic Tables
Version 10.1
The Latest CV Tables from the Leader
in Capacitor Technology
Table of Contents
COMMERCIAL PRODUCTS
Product Line Card . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-4
CERAMIC CAPACITORS
NP0 Dielectric Standard MLCC . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 5
X7R Dielectric Standard MLCC . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6
X7R Dielectric FLEXITERM®, For Board Flexure Applications . . . . . . . . . . . . 7
X7S Dielectric Standard MLCC . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 8
X5R Dielectric Standard MLCC . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 9
X5R/X7R Dielectric, Low Profile Capacitors . . . . . . . . . . . . . . . . . . . . . . . . . 10
Y5V Dielectric Standard MLCC . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 11
High Voltage SMD MLCC RoHS . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 12
High Voltage FLEXITERM®. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 13
UltraThin Ceramic Capacitors . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 14
Tip & Ring. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 15
TIN/LEAD TERMINATIONS
NP0 Dielectric LD Series, Tin/Lead Terminations . . . . . . . . . . . . . . . . . . . . . 16
X7R Dielectric LD Series, Tin/Lead Terminations . . . . . . . . . . . . . . . . . . . . . 17
X5R Dielectric LD Series, Tin/Lead Terminations . . . . . . . . . . . . . . . . . . . . . 18
NP0 Dielectric APS Series for COTS-Plus . . . . . . . . . . . . . . . . . . . . . . . . . . . 19
X7R Dielectric APS Series for COTS-Plus . . . . . . . . . . . . . . . . . . . . . . . . . . . 20
High Voltage SMD MLCC Tin/Lead . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 21
Tip & Ring Tin/Lead Termination “B” . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 22
AUTOMOTIVE SERIES CERAMIC CAPACITORS
NP0 Dielectric Automotive Series . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 23
X7R Dielectric Automotive Series . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 24
X7R Dielectric FLEXITERM®, Automotive Series,
For Board Flexure Applications . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 25
X7R AEC-Q200 High Voltage FLEXITERM®. . . . . . . . . . . . . . . . . . . . . . . . . . . 26
Capacitor Arrays Standard MLCC. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 27
X7R FLEXISAFETM, For Ultra Safety Critical Applications . . . . . . . . . . . . . . . 28
Automotive Series Capacitor Arrays. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 29
SWITCH MODE POWER SUPPLY CAPACITORS
TurboCapTM High-CV SMP Capacitors. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 30
MH Series Lead Free Ceramic Capacitor in Molded SM Leadframe . . . . . 31
SK Series Leaded Capacitors for SMPS Output Filtering. . . . . . . . . . . . . . . 32
SE Series of High Capacitance Leaded Capacitors for SMPS. . . . . . . . . . . 33
RH Series for Commercial High Frequency DC-DC Converters . . . . . . . . . 34
SMPS Stacked MLC Capacitors SM Style Surface Mount
and Thru-Hole Styles (SM0, SM5)
. . . . . . . . . . . . . . . . . . . . . . . . . . . 35
SMPS Stacked MLC Capacitors RM Style Surface Mount
and Thru-Hole Styles (RM0, RM5)
. . . . . . . . . . . . . . . . . . . . . . . . . . . 36
SMPS Stacked MLC Capacitors
SM9 Style Encapsulated in DAP (Diallyl Phthalate) Case
. . . . . . 37
DECOUPLING/LOW INDUCTANCE CAPACITORS
Low Inductance RoHS Reverse Geometry/Decoupling Chips . . . . . . . . . 38
Low Inductance Tin/Lead Reverse Geometry/Decoupling Chips . . . . . . . 39
IDC RoHS Interdigitated Capacitors . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 40
IDC Tin/Lead Interdigitated Capacitors . . . . . . . . . . . . . . . . . . . . . . . . . . . . 41
LGA – Land Grid Array Capacitors . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 42
LICA – Low Inductance Decoupling Capacitor Arrays . . . . . . . . . . . . . . . . . 43
TANTALUM SURFACE MOUNT
TAJ Standard Tantalum Capacitors. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 44
TAJ LP Low Profile Tantalum Capacitors . . . . . . . . . . . . . . . . . . . . . . . . . . . 45
TACmicrochip®Small Case Size Tantalum Capacitors . . . . . . . . . . . . . . . . . 46
TAC LP Low Profile, Small Case Size Tantalum Capacitors. . . . . . . . . . . . . 47
TLC Consumer Series Small Case Size Tantalum Capacitors . . . . . . . . . . . 48
TLJ High CV Consumer Series . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 49
TLN Tantalum Solid Electrolytic Chip Capacitors Undertab Series. . . . . . . 50
TPS Low ESR Tantalum Capacitors . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 51
TPM Ultra Low ESR Tantalum Capacitors . . . . . . . . . . . . . . . . . . . . . . . . . . . 52
TPC Low ESR Small Case Size Tantalum Capacitors . . . . . . . . . . . . . . . . . . 53
TCJ Polymer Electrode Tantalum Capacitors . . . . . . . . . . . . . . . . . . . . . . . . 54
TCM Tantalum Solid Electrolytic Chip Capacitors
Conductive Polymer Multianode . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 55
TCN Tantalum Solid Electrolytic Chip Capacitors Undertab Series
with Conductive Polymer Electrode. . . . . . . . . . . . . . . . . . . . . . . . . . . . . 56
TRJ Professional Series Tantalum Capacitors. . . . . . . . . . . . . . . . . . . . . . . . 57
TAW Tantalum Solid Electrolytic Fused Capacitors . . . . . . . . . . . . . . . . . . . 58
HIGH TEMPERATURE
SMX . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 59
SXP . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 60
THJ High Temperature Series Tantalum Capacitors . . . . . . . . . . . . . . . . . . . 61
THJ High Temperature Series Tantalum Chip Capacitors
with Extension to 200ºC . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 62
X8R Dielectric Standard MLCC . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 63
X8R Dielectric Automotive Series . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 64
X8R Dielectric FLEXITERM®, Automotive Series . . . . . . . . . . . . . . . . . . . . . . 65
X8R Dielectric LD Series, Tin/Lead Terminations . . . . . . . . . . . . . . . . . . . . . 66
OXICAP®SURFACE MOUNT NIOBIUM OXIDE
NOJ OxiCap®Niobium Oxide Capacitors Standard. . . . . . . . . . . . . . . . . . . . 67
NOJ LP Low Profile Niobium Oxide Capacitors . . . . . . . . . . . . . . . . . . . . . . 68
NLJ Niobium Oxide Capacitors High CV Consumer Series . . . . . . . . . . . . . 69
NOS Low ESR Niobium Oxide Capacitors . . . . . . . . . . . . . . . . . . . . . . . . . . . 70
NOM Ultra Low ESR Niobium Oxide Capacitors . . . . . . . . . . . . . . . . . . . . . . 71
RF / MICROWAVE SURFACE MOUNT
Accu-F Thin Film Low ESR, High Q Capacitors. . . . . . . . . . . . . . . . . . . . . . . 72
Accu-P Thin Film Low ESR, High Q Capacitors . . . . . . . . . . . . . . . . . . . . . . 73
SQCA/CB (0505/1111) Ceramic Low ESR, High Q Capacitors . . . . . . . . 74-75
SQCS/CF (0603/0805) Ceramic Low ESR, High Q Capacitors . . . . . . . . . . . 76
U Series NP0 Dielectric RoHS Low ESR Capacitors. . . . . . . . . . . . . . . . . . . 77
U Series NP0 Dielectric Tin/Lead Termination Low ESR Capacitors . . . . . 78
HQ Series, High Q, High RF Power Chips . . . . . . . . . . . . . . . . . . . . . . . . . . . 79
HQL Series, High Q, High RF Power, Ribbon Leaded . . . . . . . . . . . . . . . . . . 80
GX Series . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 81
FILM CHIP CAPACITORS
CB-PET Dielectric High Temperature Film Chips . . . . . . . . . . . . . . . . . . . . . 82
CB-PEN Dielectric Film Chips . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 83
CB-PPS Dielectric Film Chips . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 84
LEADED CAPACITORS - MLC
SR Series SkyCap®NP0 Conformal Coated, Radial Leaded . . . . . . . . . . . . 85
SR Series SkyCap®X7R Conformal Coated, Radial Leaded . . . . . . . . . . . . 86
SR Series SkyCap®Z5U Conformal Coated, Radial Leaded . . . . . . . . . . . . 87
SL Series SkyCap®NP0 Conformal Coated, Radial Leaded. . . . . . . . . . . . . 88
SL Series SkyCap®X7R Conformal Coated, Radial Leaded. . . . . . . . . . . . . 89
SL Series SkyCap®Z5U Conformal Coated, Radial Leaded. . . . . . . . . . . . . 90
AR Series SkyCap®NP0 Conformal Coated, Radial Leaded, Automotive . 91
AR Series SkyCap®X7R Conformal Coated, Radial Leaded, Automotive . 92
AR Series SkyCap®X8R Conformal Coated, Radial Leaded, Automotive . 93
MR Series NP0 Molded Radial Leaded . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 94
MR Series X7R Molded Radial Leaded . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 95
MR Series Z5U Molded Radial Leaded . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 96
MD Series Molded 2 Pin DIP . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 97
SA Series SpinGuard®NP0 Conformal Coated, Axial Leaded . . . . . . . . . . . 98
SA Series SpinGuard®X7R Conformal Coated, Axial Leaded . . . . . . . . . . . 99
SA Series SpinGuard®X5R Conformal Coated, Axial Leaded . . . . . . . . . . 100
SA Series SpinGuard®Z5U Conformal Coated, Axial Leaded . . . . . . . . . . 101
MA Series NP0 Molded Axial Leaded . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 102
MA Series X7R Molded Axial Leaded . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 103
MA Series Z5U Molded Axial Leaded . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 104
SV Series Leaded Capacitors for High Voltage Applications - NP0 . . . . . 105
SV Series Leaded Capacitors for High Voltage Applications - X7R . . . . . 106
LEADED CAPACITORS - TANTALUM
TAP Dipped Radial Capacitors . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 107
TEP Dipped Radial Capacitors Tin/Lead Finish . . . . . . . . . . . . . . . . . . . . 108
SUPERCAPACITORS
BestCap®Pulse Application Supercapacitors . . . . . . . . . . . . . . . . . . . . . . . 109
TLN PulseCapTM Tantalum Solid Electrolytic Chip Capacitors . . . . . . . . . . 110
CIRCUIT PROTECTION
Sub pf Varistor . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 111
V2F1 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 112
V3F4 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 113
VC . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 114
MG . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 115
NC20 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 116
Surface Mount Fuses. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 117
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HIGH RELIABILITY
Military & Established Reliability Product Line Card . . . . . . . . . . . . . . 118-119
MILITARY/AEROSPACE TANTALUM CAPACITORS
TAZ CWR09 - MIL-PRF-55365/4 Established Reliability,
COTS-Plus & Space Level. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 120
TAZ CWR19 - MIL-PRF-55365/11 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 121
TAZ CWR29 - MIL-PRF-55365/11 Established Reliability,
COTS-Plus & Space Level. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 122
TAZ Extended Range 63V COTS-Plus . . . . . . . . . . . . . . . . . . . . . . . . . . . . 123
TCP Low ESR Tantalum Modules . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 124
TBJ CWR11 – MIL-PRF-55365/8 Established Reliability,
COTS-Plus & Space Level. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 125
TBJ COTS-Plus – DSCC Dwgs 07016 & 95158, Weibull Grade
& Space Level. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 126
TBM Multianode Tantalum Ultra Low ESR COTS-Plus, Weibull Grade
& Space Level. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 127
TBW Tantalum Fused DSCC Dwg 04053 COTS-Plus, Weibull Grade
& Space Level. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 128
TBC CWR15 Military Small Case Size Tantalum Capacitors . . . . . . . . . . . 129
TBC COTS-Plus . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 130
NBS COTS-Plus . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 131
NBM Multianode OxiCap® Ultra Low ESR Capacitor
COTS-Plus, Weibull Grade . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 132
TWA Wet Electrolytic Tantalum Capacitor . . . . . . . . . . . . . . . . . . . . . . . . . . 133
MILITARY/AREOSPACE CERAMIC CAPACITORS
MIL 123 Leaded . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 134
MIL-PRF-123/Chip . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 135
CDR STYLE CAPACITORS, MIL-PRF-55681
CDR01 - CDR06 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 136-137
CDR31 - CDR35 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 138
Extended Range Surface Mount MLCC
DSCC 03028, 0603 case size; 06019RF, 0605 case;
DSCC 0502, 0603 case; DSCC 03029, 0402 case;
DSCC 06022RF, 1210 case . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 139
DSCC 05006, 0805 case size;
DSCC 05007, 1206 case size . . . . . . . . . . . . . . . . . . . . . . . . . . . 140
SWITCH MODE POWER SUPPLY CAPACITORS
(HI CAP VALUE)
SMPS Stacked MLC Capacitors SM Style Surface Mount
and Thru-Hole Styles (SM0, SM5)
. . . . . . . . . . . . . . . . . . . . . . . . . .
141
Stacked Leaded MLC Capacitors CH-CV Series . . . . . . . . . . . . . . 142
BR . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 143
HP/HW - HD/HE . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 144
CKR . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 145
Single-In-Line Packages (SIP) Capacitor Arrays . . . . . . . . . . . . . . 146
RF CAPACITORS
CDR11 - CDR14 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 147
EMI FILTERS
Solder in EMI . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 148
Bolt in EMI. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 149
Cylindrical EMI . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 150
Custom EMI . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 151
Feedthru 0805/1206 Capacitors W2F/W3F Series . . . . . . . . . . . . 152
High Current Feedthru Filter W2H/W3H Series . . . . . . . . . . . . . . 153
Tin/Lead Feedthru 0805/1206 Capacitors – L2F/L3F Series . . . . . 154
Tin/Lead High Current Feedthru Filter L2H/L3H Series . . . . . . . 155
Feedthru Array Filters W2F4/W3F4 Series . . . . . . . . . . . . . . . . . . 156
ALTERNATE ENERGY
TRAFIM . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 157-160
FFB* . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 161-163
FFV3* . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 164-166
FFG/FFH (RoHs Compliant) . . . . . . . . . . . . . . . . . . . . . . . . . . . . 167-169
FFVE & FFVI/FFWE & FFWI (RoHS Compliant) . . . . . . . . . . . . 170-173
FFVS* . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 174-175
FFLI* . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 176-177
FFLC* . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 178-179
FSM/FSN (RoHS Compiant). . . . . . . . . . . . . . . . . . . . . . . . . . . . 180-181
FSB* . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 182-185
FSV* . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 186-187
FPX/FPY (RoHS Compliant) . . . . . . . . . . . . . . . . . . . . . . . . . . . . 188-190
FPG/FPH (RoHS Compliant) . . . . . . . . . . . . . . . . . . . . . . . . . . . 191-193
DISFIM. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 194
*RoHS Compliant series as standard.
GLASS CAPACITORS
MIL-PRF-23269 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 195-196
CONNECTORS
MIL-C-55074 Hermaphracon Connectors . . . . . . . . . . . . . . . . . . . . 197
Varicon 8219 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 198
Varicon 8223 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 199
M55302 Two Piece Edge Board Connectors . . . . . . . . . . . . . . . . . . 200
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Product Line
Leaded Tantalum Capacitors
Wet Tantalum
Radial Leaded
Niobium Oxide / OxiCap®
Low ESR
COTS-Plus
Multianode
RF PRODUCTS______________________
Inductors – Thin-Film
Filters
Band Pass Custom
Low Pass EMI
Passive Miniaturized Components
Couplers
3dB 3dB 90°
High Directivity Splitter/Combiner
Capacitors
Microwave Medium Power
Single Layer Tight Tolerance/Thin-Film
High Power RF Capacitors
Broadband DC Block
ENERGY HARVESTING________________
Film Capacitors
Surface Mount Film Capacitors
Medium Power Film
High Power Film
Ceramic Capacitors
Molded Ceramic
Stacked Ceramic
Tantalum Capacitors
Multi-Anode (low ESR)
Stacked Capacitors
Pulse Power Supercap
BestCap®
CERAMIC CAPACITORS_______________
Surface Mount Multilayer Ceramic
Capacitors
Automotive HiCV
MIL/COTS-Plus/Space High Temperature
CDR/High Reliability Array
Flexiterm®Tip and Ring
FlexisafeTM Low Distortion
Ultrathin Gold Terminated
Tin/Lead Tin/Lead w Flexiterm®
Switch Mode Power Supply
Capacitors (SMPS)
MIL/Space High Temp
Leaded High Voltage
TurboCapTM
Leaded Multilayer Ceramic Capacitors
Axial High Voltage
Radial MIL/Space/High
Reliability
2-Pin Dip
High Voltage
Surface Mount Flexiterm®
Leaded MIL
Glass Capacitor
LOW INDUCTANCE /
SIGNAL INTEGRITY__________________
Reverse Geometry
Interdigitated
Ultra Low Inductance
CoreCap®Hybrid Niobium Oxide - MLCC
Low Inductance Array
TANTALUM CAPACITORS_____________
Surface Mount Tantalum Capacitors
Low ESR High Temp (THJ)
CWR Established Reliability
Polymer TACmicrochip®
Fused Tin/Lead
CIRCUIT PROTECTION_______________
MLV Transient Voltage Suppressors
Varistors
Multi-element Varistors
Feedthru Varistors
Application Specific Varistors
AntennaGuard High Temperature
USB Series Sub pF
CAN Series Low Leakage
StaticGuard Maxcap
Automotive Series Capguard
Medium Power Varistors
Thermistors
Negative Temperature Compensation
Leaded
Surface Mount
Fuses – Thin-Film
CONNECTORS_____________________
LED/Solid State Lighting
Wire to Board
Board to Board
End Cap
Board to Board
DIN 41612 2-Piece
Compression Low Profile 1-Piece
Microleaf/Fine Pitch 2-Piece
FFC/FPC
ZIF/LIF
Automotive
Custom connectors/modules
Pressfit
Insulation Displacement
Portable Devices
Battery
SIM
Memory Products
Speaker/Microphone
I/O
FILTERS__________________________
EMI Filters
Surface Mount Bulkhead
High Current MIL/Space
Noise Filters
Low Pass Filters
Ceramic Filters
SAW Filters
Filtered Arrays
Optical Low Pass
PIEZOELECTRIC DEVICES____________
Telephone Ringer/External Drive
External Drive/Self-Oscillating
Shock Sensor
Actuator
TIMING PRODUCTS________________
Oscillators
Crystals
Resonators
Product Line
4| www.avx.com
www.avx.com | 5
Standard NP0 (C0G) MLCC
Standard NP0 Dielectric
C0G (NP0) is the most popular formulation of the “temperature-compensating,” EIA Class I
ceramic materials. Modern C0G (NP0) formulations contain neodymium, samarium and
other rare earth oxides.
C0G (NP0) ceramics offer one of the most stable capacitor dielectrics available.
Capacitance change with temperature is 0 ±30ppm/°C which is less than ±0.3% C from
-55°C to +125°C. Capacitance drift or hysteresis for C0G (NP0) ceramics is negligible at
less than ±0.05% versus up to ±2% for films. Typical capacitance change with life is less
than ±0.1% for C0G (NP0), one-fifth that shown by most other dielectrics. C0G (NP0)
formulations show no aging characteristics.
HOW TO ORDER
0805
Size
(L" x W")
5
Voltage
Y = 16V
3 = 25V
5 = 50V
1 = 100V
2 = 200V
7 = 500V
A
Dielectric
C0G (NP0) = A
101
Capacitance
Code (In pF)
2 Sig. Digits
+ Number of
Zeros
J
Capacitance
Tolerance
B = ±.10 pF (<10pF)
C = ±.25 pF (<10pF)
D = ±.50 pF (<10pF)
F = ±1% (≥ 10 pF)
G = ±2% (≥ 10 pF)
J = ±5%
K = ±10%
A
Failure
Rate
A = Not
Applicable
A
Special
Code
A = Std. Product
T
Terminations
T = Plated Ni
and Sn
7 = Gold Plated
Contact
Factory For
1 = Pd/Ag Term
2
Packaging
2 = 7" Reel
4 = 13" Reel
7 = Bulk Cass.
9 = Bulk
Contact
Factory
For
Multiples
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/ccog.pdf
SIZE 0201 0402 0603 0805 1206 1210 1812 1825 2200 2225
WVDC 25 50 16 25 50 16 25 50 100 16 25 50 100 200 16 25 50 100 200 500 25 50 100 200 500 25 50 100 200 500 50 100 200 50 100 200 50 100 200
Cap 0.5 A C C C G G G G J J J J J J J J J J J
(pF) 1.0 A C C C G G G G J J J J J J J J J J J
1.2 A C C C G G G G J J J J J J J J J J J
1.5 A A C C C G G G G J J J J J J J J J J J
1.8 A A C C C G G G G J J J J J J J J J J J
2.2 A A C C C G G G G J J J J J J J J J J J
2.7 A A C C C G G G G J J J J J J J J J J J
3.3 A A C C C G G G G J J J J J J J J J J J
3.9 A A C C C G G G G J J J J J J J J J J J
4.7 A A C C C G G G G J J J J J J J J J J J
5.6 A A C C C G G G G J J J J J J J J J J J
6.8 A A C C C G G G G J J J J J J J J J J J
8.2 A A C C C G G G G J J J J J J J J J J J
10 A A C C C G G G G J J J J J J J J J J J J
12 A A C C C G G G G J J J J J J J J J J J J
15 A A C C C G G G G J J J J J J J J J J J J
18 A A C C C G G G G J J J J J J J J J J J J
22 A A C C C G G G G J J J J J J J J J J J J
27 A A C C C G G G G J J J J J J J J J J J J
33 A A C C C G G G G J J J J J J J J J J J J
39 A C C C G G G G J J J J J J J J J J J J
47 A C C C G G G G J J J J J J J J J J J J
56 A C C C G G G G J J J J J J J J J J J J
68 A C C C G G G G J J J J J J J J J J J J
82 A C C C G G G G J J J J J J J J J J J J
100 A C C C G G G G J J J J J J J J J J J J
120 C C C G G G G J J J J J J J J J J J J
150 C C C G G G G J J J J J J J J J J J J
180 C C C G G G G J J J J J J J J J J J J
220 C C C G G G G J J J J J J J J J J M J
270 C C C G G G G J J J J M J J J J J M J
330 C C C G G G G J J J J M J J J J J M J
390 C C C G G G J J J J M J J J J J M M
470 C C C G G G J J J J M J J J J J M M
560 G G G J J J J M J J J J J M J J J J M
680 G G G J J J J J J J J J P J J J J M
820 G G G J J J J J J J J M J J J J M
1000 G G G J J J J J J J J Q J J J J M K K K K M M M M M M P
1200 JJJ JJJJQ JJJMMKKKKMMMM MMP
1500 JJJ JJJMQ JJJMMKKKKMMMM MMP
1800 JJJ JJMM JJJM KKKKMMMM MMP
2200 JJN JJMP JJJQ KKKKPMMM MMP
2700 JJN JJMP JJJQ KKKPQMMM MMP
3300 JJ JJMP JJJ KKKPQMMM XMMP
3900 JJ JJMP JJM KKKPQMMM XMMP
4700 JJ JJMP JJM KKKPQMMMXXXMMP
5600 JJM JJ K KMPX MMMX XX MMP
6800 MM J J K KM X MM M X X X M M P
8200 MM J J K MM MM X X X M M P
Cap 0.010 MM J J K MM MM X X X M M P
(μF) 0.012 JJ KM MM XXX MMP
0.015 MM MM XX X MMY
0.018 MM PM XX X MMY
0.022 MM P XX MY Y
0.027 MM P X X P Y Y
0.033 MM P XX P
0.039 MM P Y P
0.047 MM P Y P
0.068 MM P
0.082 MM Q
0.1 Q
WVDC 25 50 16 25 50 16 25 50 100 16 25 50 100 200 16 25 50 100 200 500 25 50 100 200 500 25 50 100 200 500 50 100 200 50 100 200 50 100 200
SIZE 0201 0402 0603 0805 1206 1210 1812 1825 2220 2225
Letter A C E G J K M N P Q X Y Z
Max. 0.33 0.56 0.71 0.90 0.94 1.02 1.27 1.40 1.52 1.78 2.29 2.54 2.79
Thickness (0.013) (0.022) (0.028) (0.035) (0.037) (0.040) (0.050) (0.055) (0.060) (0.070) (0.090) (0.100) (0.110)
PAPER EMBOSSED
NOTE: Contact factory for availability of Termination and Tolerance Options for Specific Part Numbers.
Contact factory for non-specified capacitance values.
*Optional Specifications – Contact factory
Standard X7R MLCC
Standard X7R Dielectric
X7R formulations are classified as “temperature stable” ceramics and fall into EIA Class II
materials. X7R is the most popular of these intermediate dielectric constant materials. Its
temperature variation of capacitance is within ±15% from -55°C to +125°C. This capaci-
tance change is non-linear.
Capacitance for X7R varies under the influence of electrical operating conditions such as
voltage and frequency.
X7R dielectric chip usage covers the broad spectrum of industrial applications where
known changes in capacitance due to applied voltages are acceptable.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/cx7r.pdf
Letter A C E G J K M N P Q X Y Z
Max. 0.33 0.56 0.71 0.90 0.94 1.02 1.27 1.40 1.52 1.78 2.29 2.54 2.79
Thickness (0.013) (0.022) (0.028) (0.035) (0.037) (0.040) (0.050) (0.055) (0.060) (0.070) (0.090) (0.100) (0.110)
PAPER EMBOSSED
SIZE 0201 0402 0603 0805 1206 1210 1812 1825 2220 2225
WVDC 10 16 25 16 25 50 6.3 10 16 25 50 100 200 6.3 10 16 25 50 100 200 6.3 10 16 25 50 100 200 500 10 16 25 50 100 200 500 50 100 200 500 50 100 25 50 100 200 50 100
Cap 100 A A A
(pF) 150 A A A
220 A A A C
330AAA C GGG JJJJJJ K
470AA C GGG JJJJJJ K
680AA C GGG JJJJJJ K
1000 A A C G G G JJJJJJ K
1500 A C G G JJJJJJ JJJJJJMJJJJJJM
2200 A C G G JJJJJJ JJJJJJMJJJJJJM
3300 A C C G G JJJJJJ JJJJJJMJJJJJJM
4700 A C C G G JJJJJJ JJJJJJMJJJJJJM
6800 A C C G G JJJJJJ JJJJJJPJJJJJJM
Cap 0.010A CC GG JJJJJJ JJJJJJPJJJJJJMKKKKMM XXXMP
(μF 0.015 C GG JJJJJJ JJJJJM JJJJJJPKKKPMM XXXMP
0.022 C GG JJJJJN JJJJJM JJJJJJQKKKPMM XXXMP
0.033 GG JJJJN JJJJJM JJJJJJQKKKXMM XXXMP
0.047 GGG JJJJN JJJJJM JJJJJJ KKKZMM XXXMP
0.068 GGG JJJJN JJJJJP JJJJJM KKKZMM XXXMP
0.10 C GGGG JJJJN JJJJMP JJJJJM KKKZMM XXXMP
0.15 GG JJJNN JJJJQ JJJJMZ KKP MM XXXMP
0.22 GG J* JJNNN JJJJQ JJJJP KKP MM XXXMP
0.33 NNNNN J JMPQ JJJJQ KMX MM XXXMP
0.47 J* NNNNN MMMPQ MMMMQ KP MM X XXMP
0.68 NNN MMQQQ MMPX X MQ MP XX MP
1.0 J*J* NNN MMQQQ NNPX Z MX MP XX MP
1.5 PQQ NNZZZ ZZ M XX MX
2.2 J* P* QQQ XXZZZ ZZ XX M
3.3 XXZZ Z XZ
4.7 P* P* Q* Q* Q* X X Z Z Z X Z
10 P* Q* Q* Z Z Z* Z
22 Q* Z* Z* Z
47
100
WVDC 10 16 25 16 25 50 6.3 10 16 25 50 100 200 6.3 10 16 25 50 100 200 6.3 10 16 25 50 100 200 500 10 16 25 50 100 200 500 50 100 200 500 50 100 25 50 100 200 50 100
SIZE 0201 0402 0603 0805 1206 1210 1812 1825 2220 2225
NOTE: Contact factory for availability of Termination and Tolerance Options for Specific Part Numbers.
Contact factory for non-specified capacitance values.
HOW TO ORDER
0805
Size
(L" x W")
5
Voltage
6 = 6.3V
Z = 10V
Y = 16V
3 = 25V
5 = 50V
1 = 100V
2 = 200V
7 = 500V
C
Dielectric
X7R = C
103
Capacitance
Code (In pF)
2 Sig. Digits +
Number of Zeros
M
Capacitance
Tolerance
J = ± 5%*
K = ±10%
M = ± 20%
*≤1μF only
A
Failure
Rate
A = Not
Applicable
A
Special
Code
A = Std. Product
T
Terminations
T = Plated Ni
and Sn
7 = Gold Plated*
Z= FLEXITERM®**
*Optional termination
**See FLEXITERM®
X7R section
2
Packaging
2 = 7" Reel
4 = 13" Reel
7 = Bulk Cass.
9 = Bulk
Contact
Factory For
Multiples
6| www.avx.com
With increased requirements from the automotive industry for additional component robustness,
AVX recognized the need to produce a MLCC with enhanced mechanical strength. It was noted
that many components may be subject to severe flexing and vibration when used in various under
the hood automotive and other harsh environment applications.
To satisfy the requirement for enhanced mechanical strength, AVX had to find a way of ensuring
electrical integrity is maintained whilst external forces are being applied to the component. It was
found that the structure of the termination needed to be flexible and after much research and
development, AVX launched FLEXITERM®. FLEXITERM®is designed to enhance the mechanical
flexure and temperature cycling performance of a standard ceramic capacitor with an X7R
dielectric. The industry standard for flexure is 2mm minimum. Using FLEXITERM®, AVX
provides up to 5mm of flexure without internal cracks. Beyond 5mm, the capacitor will
generally fail “open”.
As well as for automotive applications FLEXITERM®will provide Design Engineers with a
satisfactory solution when designing PCB’s which may be subject to high levels of board flexure.
APPLICATIONS
• High Flexure Stress Circuit Boards
• Variable Temperature Applications
• Automotive Applications
HOW TO ORDER
0805
Style
0603
0805
1206
1210
1812
2220
5
Voltage
Z = 10V
Y = 16V
3 = 25V
5 = 50V
1 = 100V
2 = 200V
2
Packaging
2 = 7" reel
4 = 13" reel
C
Dielectric
C = X7R
A
Special Code
A = Std. Product
Z
Terminations
Z = FLEXITERM®
For FLEXITERM®
with Tin/Lead
termination see
AVX LD Series
A
Failure
Rate
A=Commercial
4 = Automotive
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/softterm.pdf
FLEXITERM®MLCC
X7R FLEXITERM®for Board Flexure Applications
0603 0805 1206 1210 1812 2220
16V 25V 50V 100V 200V 10V 16V 25V 50V 100V 200V 16V 25V 50V 100V 200V 16V 25V 50V 100V 16V 25V 50V 100V 25V 50V 100V
101
121
151
181
221
271 J J J J J J
331 JJJJJJJJJJJ
391 JJJJJJJJJJJ
471 JJJJJJJJJJJ
561 JJJJJJJJJJJ
681 JJJJJJJJJJJ
821 JJJJJJJJJJJ
102 JJJJJJJJJJJJJJJJ
122 JJJJ JJJJJJJJJJJ
152 JJJJ JJJJJJJJJJJ
182 JJJJ JJJJJJJJJJJ
222 JJJJ JJJJJJJJJJJ
272 JJJJ JJJJJJJJJJJ
332 JJJJ JJJJJJJJJJJ
392 JJJJ JJJJJJJJJJJ
472 JJJJ JJJJJJJJJJJ
562 JJJJ JJJJJJJJJJJ
682 JJJJ JJJJJJJJJJJ
822 JJJJ JJJJJJJJJJJ
103 JJJJ JJJJJJJJJJJ
123 JJJ J JJ JM JJ JJ J
153 JJJ J JJ JM JJ JJ J
183 JJJ J JJ JM JJ JJ J
223 JJJ J JJ JM JJ JJ J K
273 JJJ J JJ JM JJ JJ J K
333 JJJ JJJJM JJJJJ K
393 J J J J J J J M J J J M J K
473 J J J J J J J M J J J M J K
563 J J J J J J J N J J J M J K K K M K K K K
683 J J J J J J J N J J J M J K K K M K K K K
823 J J J J J J J N J J J P J K K K M K K K K
104 J J J J J J J N J J J Q J K K K P K K K K X X X
124 J J J N N J J P Q K K K Q K K K K
154 M M N N N J J P Q K K K Q K K K M X X X
184 M M N N N J M P Q M M M Q K K K M
224 M M N N N J M P Q M M M Q M M M X X X X
274 N N N N N J M P Q P P P Q M M M X
334 N N N N N J M P Q P P P Q M M M X X X X
394 N N N N N M M P Q P P P Q X X X X
474 N N N N N M M P Q P P P Q X X X X X X X
564 N N N M Q Q Q P Q Q Q X X X Z
684 N N N M Q Q Q P X X X X X X Z X X X
824 N N N M Q Q Q P Z Z Z X X X Z
105 N N N M Q Q Q P Z Z Z X X X Z X X X
155 QQ P ZZ Z Z ZX XX
185 QQ Z ZZ Z Z Z
225 QQ Z ZZ Z Z ZX XX
335 ZZZ Z Z
475 ZZZ Z Z
106 ZZ
226 Z
16V 25V 50V 100V 200V 10V 16V 25V 50V 100V 200V 16V 25V 50V 100V 200V 16V 25V 50V 100V 16V 25V 50V 100V 25V 50V 100V
0603 0805 1206 1210 1812 2220
Letter A C E G J K M N P Q X Y Z
Max. 0.33 0.56 0.71 0.90 0.94 1.02 1.27 1.40 1.52 1.78 2.29 2.54 2.79
Thickness (0.013) (0.022) (0.028) (0.035) (0.037) (0.040) (0.050) (0.055) (0.060) (0.070) (0.090) (0.100) (0.110)
PAPER EMBOSSED
NOTE: Contact factory for availability of Tolerance Options for Specific Part Numbers.
*Optional Specifications – Contact factory
104
Capacitance
Code (In pF)
2 Sig Digits +
Number of Zeros
e.g., 104 = 100nF
K
Capacitance
Tolerance
J = ± 5%*
K = ±10%
M = ± 20%
*≤1μF only
www.avx.com | 7
Standard X7S MLCC
X7S Dielectric
X7S formulations are classified as “temperature stable” ceramics and fall into EIA Class II
materials. Its temperature variation of capacitance is within ±22% from –55°C to +125°C.
This capacitance change is non-linear.
Capacitance for X7S varies under the influence of electrical operating conditions such as
voltage and frequency.
X7S dielectric chip usage covers the broad spectrum of industrial applications where known
changes in capacitance due to applied voltages are acceptable.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/cx7s.pdf
SIZE 0402 0603 0805 1206 1210
WVDC 6.3 6.3 25 4 6.3 10 6.3
Cap 100
(pF) 150
220
330
470
680
1000
1500
2200
3300
4700
6800
Cap 0.010
(μF 0.015
0.022
0.033 C
0.047 C
0.068 C
0.10 C
0.15
0.22 G
0.33 G
0.47 G
0.68 G
1.0 G
1.5 N Q
2.2 N Q
3.3 N Q
4.7 N Q Q
10
22 Z
47
100
WVDC 6.3 6.3 25 4 6.3 10 6.3
SIZE 0402 0603 0805 1206 1210
L
W
T
t
Letter A C E G J K M N P Q X Y Z
Max. 0.33 0.56 0.71 0.90 0.94 1.02 1.27 1.40 1.52 1.78 2.29 2.54 2.79
Thickness (0.013) (0.022) (0.028) (0.035) (0.037) (0.040) (0.050) (0.055) (0.060) (0.070) (0.090) (0.100) (0.110)
PAPER EMBOSSED
NOTE: Contact factory for availability of Tolerance Options for Specific Part Numbers.
HOW TO ORDER
1206
Size
(L" x W")
Z
Voltage
4 = 4V
6 = 6.3V
Z = 10V
3 = 25V
Z
Dielectric
Z = X7S
105
Capacitance
Code (In pF)
2 Sig. Digits +
Number of Zeros
M
Capacitance
Tolerance
K = ±10%
M = ± 20%
A
Failure
Rate
A = N/A
A
Special
Code
A = Std. Product
T
Terminations
T = Plated Ni
and Sn
2
Packaging
2 = 7" Reel
4 = 13" Reel
7 = Bulk Cass.
8| www.avx.com
Standard X5R MLCC
X5R Dielectric
• General Purpose Dielectric for Ceramic Capacitors
• EIA Class II Dielectric
• Temperature variation of capacitance is within ±15%
from -55°C to +85°C
• Well suited for decoupling and filtering applications
• Available in High Capacitance values (up to 100μF)
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/cx5r.pdf
= Under development
= *Optional Specifications
Contact factory
NOTE: Contact factory for availability of Tolerance Options for Specific Part Numbers.
Contact factory for non-specified capacitance values.
*Optional Specifications – Contact factory
SIZE 0201 0402 0603 0805 1206 1210 1812
WVDC 4 6.3 10 16 25 4 6.3 10 16 25 50 4 6.3 10 16 25 35 50 6.3 10 16 25 35 50 6.3 10 16 25 35 50 4 6.3 10 16 25 35 50 6.3 10 25 50
Cap 100 A
(pF) 150 A
220 A C
330 A C
470 A C
680 A C
1000 A A C
1500 A C
2200 A A C
3300 A C
4700 A C G
6800 A C G
Cap 0.010 A C G
(μF) 0.015 C G G G
0.022 A* C C G G G N
0.033 C G G G N
0.047 A* C C G G G N
0.068 C G G N
0.10 A* C C C G G N N
0.15 GNN
0.22 A* A C* G G N N Q
0.33 G G N
0.47 C* C* G N Q Q X
0.68 G N
1.0 A C* C* C* G G G J* N N P* Q Q X X X
1.5
2.2 C* C* G* G* J* J* N N N Q Q Z X
3.3 J* J* J* J* N N Q Q
4.7 C* J*J* NNN*N* QQQQ QZ
10 K J* N*N*N* * Q Q Q Q* X Z Z* Z
22 N* * Q*Q*Q* Z Z Z Z*
47 *Q* Z
100 Z* Z*
WVDC 4 6.3 10 16 25 4 6.3 10 16 25 50 4 6.3 10 16 25 35 50 6.3 10 16 25 35 50 6.3 10 16 25 35 50 4 6.3 10 16 25 35 50 6.3 10 25 50
SIZE 0201 0402 0603 0805 1206 1210 1812
Letter A C E G J K M N P Q X Y Z
Max. 0.33 0.56 0.71 0.90 0.94 1.02 1.27 1.40 1.52 1.78 2.29 2.54 2.79
Thickness (0.013) (0.022) (0.028) (0.035) (0.037) (0.040) (0.050) (0.055) (0.060) (0.070) (0.090) (0.100) (0.110)
PAPER EMBOSSED
HOW TO ORDER
1206
Size
(L" x W")
4
Voltage
4 = 4V
6 = 6.3V
Z = 10V
Y = 16V
3 = 25V
D = 35V
5 = 50V
D
Dielectric
D = X5R
107
Capacitance
Code (In pF)
2 Sig. Digits +
Number of Zeros
M
Capacitance
Tolerance
K = ±10%
M = ± 20%
A
Failure
Rate
A = N/A
A
Special
Code
A = Std.
T
Terminations
T = Plated Ni
and Sn
2
Packaging
2 = 7" Reel
4 = 13" Reel
7 = Bulk Cass.
9 = Bulk
www.avx.com | 9
MLCC Low Profile
General Specifications
AVX introduces the LT series comprising a range of low profile products in our X5R
and X7R dielectric. X5R is a Class II dielectric with temperature varation of
capacitance within ±15% from –55°C to +85°C. Offerings include 0201, 0402, 0603,
0805 1206, and 1210 packages in compact, low profile designs. The LT series is
ideal for decoupling and filtering applications where height clearance is limited.
AVX is also expanding the low profile products in our X7R dielectric. X7R is a Class II
dielectric with temperature variation of capacitance within ±15% from -55ºC to
+125ºC. Please contact the factory for availability of any additional values not listed.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/lt02-06.pdf
NOTE: Contact factory for availability of Tolerance Options for Specific Part Numbers.
SIZE LT01 LT02 LT03 LT05 LT06 LT10
WVDC 4 4 6.3 10 16 4 6.3 16 25 6.3 10 16 25 10 16 25 16 25
Cap 104 0.10 Z Q S
(μF) 0.22 X
0.47 XX
105 1.0 C S S X X X
1.5
2.2 S S X X
4.7 SX SX WWW
106 10 X/W X X W W
22
47
WVDC 4 4 6.3 10 16 4 6.3 16 25 6.3 10 16 25 10 16 25 16 25
SIZE LT01 LT02 LT03 LT05 LT06 LT10
= X7R
Letter J Z Q C S X W
Max. 0.15 0.22 0.25 0.36 0.56 0.95 1.02
Thickness (0.006) (0.009) (0.010) (0.014) (0.022) (0.038) (0.040)
PAPER EMBOSSED
HOW TO ORDER
LT05
Size
LT01 - 0201
LT02 - 0402
LT03 - 0603
LT05 - 0805
LT06 - 1206
LT10 - 1210
Z
Voltage
4 = 4V
6 = 6.3V
Z = 10V
Y = 16V
3 = 25V
D
Dielectric
X5R = D
X7R = C
475
Capacitance
Code (In pF)
2 Sig. Digits +
Number of Zeros
M
Capacitance
Tolerance
K = ±10%
M = ±20%
A
Failure
Rate
A = Not
Applicable
S
Special
Code
See table
below
T
Terminations
T = Plated Ni
and Sn
2
Packaging
2 = 7" Reel
4 = 13" Reel
7 = Bulk Cass.
9 = Bulk
Contact
Factory
For
Multiples
10 | www.avx.com
www.avx.com | 11
Standard Y5V MLCC
Y5V Dielectric
Y5V formulations are for general-purpose use in a limited temperature range. They have a
wide temperature characteristic of +22% –82% capacitance change over the operating
temperature range of –30°C to +85°C.
These characteristics make Y5V ideal for decoupling applications within limited
temperature range.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/cy5v.pdf
Letter A C E G J K M N P Q X Y Z
Max. 0.33 0.56 0.71 0.90 0.94 1.02 1.27 1.40 1.52 1.78 2.29 2.54 2.79
Thickness (0.013) (0.022) (0.028) (0.035) (0.037) (0.040) (0.050) (0.055) (0.060) (0.070) (0.090) (0.100) (0.110)
PAPER EMBOSSED
SIZE 0201 0402 0603 0805 1206 1210
WVDC 6.3 10 6 10 16 25 50 10 16 25 50 10 16 25 50 10 16 25 50 10 16 25 50
Cap 820
(pF) 1000 A
2200 A
4700 A
Cap 0.010 A A
(μF) 0.022 A
0.047 A C
0.10 C C G G K
0.22 G
0.33 G
0.47 C G G
1.0 C C GG NNN MMM N
2.2 C N
4.7 NPNN
10.0 NQQXQQ
22.0 QX
47.0
WVDC 6.3 10 6 10 16 25 50 10 16 25 50 10 16 25 50 10 16 25 50 10 16 25 50
SIZE 0201 0402 0603 0805 1206 1210
HOW TO ORDER
0805
Size
(L" x W")
3
Voltage
6 = 6.3V
Z = 10V
Y = 16V
3 = 25V
5 = 50V
G
Dielectric
Y5V = G
104
Capacitance
Code (In pF)
2 Sig. Digits +
Number of Zeros
Z
Capacitance
Tolerance
Z = +80 –20%
A
Failure
Rate
A = Not
Applicable
A
Special
Code
A = Std. Product
T
Terminations
T = Plated Ni
and Sn
2
Packaging
2 = 7" Reel
4 = 13" Reel
High Voltage MLCC (RoHS)
Applications from 600V to 5000V
HOW TO ORDER
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/aphvc.pdf
NOTE: Contact factory for availability of Termination and Tolerance Options for Specific Part Numbers.
*** AVX offers nonstandard chip sizes. Contact factory for details.
HIGH VOLTAGE C0G CAPACITANCE VALUES
HIGH VOLTAGE X7R CAPACITANCE VALUES
NEW 630V RANGE
High value, low leakage and small size are difficult parameters to obtain in capacitors for high voltage
systems. AVX special high voltage MLC chip capacitors meet these performance characteristics and
are designed for applications such as snubbers in high frequency power converters, resonators in
SMPS, and high voltage coupling/dc blocking. These high voltage chip designs exhibit low ESRs at
high frequencies.
Larger physical sizes than normally encountered chips are used to make high voltage MLC chip
products. Special precautions must be taken in applying these chips in surface mount assemblies. The
temperature gradient during heating or cooling cycles should not exceed 4ºC per second. The preheat
temperature must be within 50ºC of the peak temperature reached by the ceramic bodies through the
soldering process. Chip sizes 1210 and larger should be reflow soldered only. Capacitors may require
protective surface coating to prevent external arcing.
For 1825, 2225 and 3640 sizes, AVX offers leaded version in either thru-hole or SMT configurations (for
details see section on high voltage leaded MLC chips).
*Note: Terminations with 5% minimum lead (Pb) is available for LD
style. Leaded terminations are also available.
1808
AVX Style
0805
1206
1210
1808
1812
1825
2220
2225
3640
***
A
Voltage
C = 600V/630V
A = 1000V
S = 1500V
G = 2000V
W = 2500V
H = 3000V
J = 4000V
K = 5000V
A
Temperature
Coefficient
C0G = A
X7R = C
271
Capacitance Code
(2 significant digits
+ no. of zeros)
Examples:
10 pF = 100
100 pF = 101
1,000 pF = 102
22,000 pF = 223
220,000 pF = 224
1 μF = 105
K
Capacitance
Tolerance
C0G:
J = ±5%
K = ±10%
M = ±20%
X7R:
K = ±10%
M = ±20%
Z = +80%,
-20%
A
Test Level
A = Standard
1
Termination*
1 = Pd/Ag
T = NiGuard
Nickel
Barrier
Solderable
Plate
1
Packaging
1 = 7" Reel
3 = 13"
Reel
9 = Bulk
A
Special Code
A = Standard
VOLTAGE 0805 1206 1210 1808 1812 1825 2220 2225 3640
600/630 min. 10pF 10 pF 100 pF 100 pF 100 pF 1000 pF 1000 pF 1000 pF 1000 pF
max. 330pF 1200 pF 2700 pF 3300 pF 5600 pF 0.012 μF 0.012 μF 0.018 μF 0.047 μF
min. 10pF 10 pF 10 pF 100 pF 100 pF 100 pF 1000 pF 1000 pF 1000 pF
1000 max. 180pF 560 pF 1500 pF 2200 pF 3300 pF 8200 pF 0.010 μF 0.010 μF 0.022 μF
min. 10 pF 10 pF 10 pF 10 pF 100 pF 100 pF 100 pF 100 pF
1500 max. 270 pF 680 pF 820 pF 1800 pF 4700 pF 4700 pF 5600 pF 0.010 μF
min. 10 pF 10 pF 10 pF 10 pF 100 pF 100 pF 100 pF 100 pF
2000 max. 120 pF 270 pF 330 pF 1000 pF 1800 pF 2200 pF 2700 pF 6800 pF
min. 10 pF 10 pF 10 pF 100 pF 100 pF 100 pF
2500 max. 180 pF 470 pF 1200 pF 1500 pF 1800 pF 3900 pF
min. 10 pF 10 pF 10 pF 10 pF 10 pF 100 pF
3000 max. 120 pF 330 pF 820 pF 1000 pF 1200 pF 2700 pF
min. 10 pF 10 pF 10 pF 10 pF 10 pF 100 pF
4000 max. 47 pF 150 pF 330 pF 470 pF 560 pF 1200 pF
min. 10 pF 10 pF 10 pF
5000 max. 220 pF 270 pF 820 pF
VOLTAGE 0805 1206 1210 1808 1812 1825 2220 2225 3640
600/630 min. 100pF 1000 pF 1000 pF 1000 pF 1000 pF 0.010 μF 0.010 μF 0.010 μF 0.010 μF
max. 6800pF 0.022 μF 0.056 μF 0.068 μF 0.120 μF 0.270 μF 0.270 μF 0.330 μF 0.560 μF
min. 100pF 100 pF 1000 pF 1000 pF 1000 pF 1000 pF 1000 pF 1000 pF 0.010 μF
1000 max. 1500pF 6800 pF 0.015 μF 0.018 μF 0.039 μF 0.100 μF 0.120 μF 0.150 μF 0.220 μF
min. 100 pF 100 pF 100 pF 100 pF 1000 pF 1000 pF 1000 pF 1000 pF
1500 max. 2700 pF 5600 pF 6800 pF 0.015 μF 0.056 μF 0.056 μF 0.068 μF 0.100 μF
min. 10 pF 100 pF 100 pF 100 pF 100 pF 1000 pF 1000 pF 1000 pF
2000 max. 1500 pF 3300 pF 3300 pF 8200 pF 0.022 μF 0.027 μF 0.033 μF 0.027 μF
min. 10 pF 10 pF 100 pF 100 pF 100 pF 1000 pF
2500 max. 2200 pF 5600 pF 0.015 μF 0.018 μF 0.022 μF 0.022 μF
min. 10 pF 10 pF 100 pF 100 pF 100 pF 1000 pF
3000 max. 1800 pF 3900 pF 0.010 μF 0.012 μF 0.015 μF 0.018 μF
min. 100 pF
4000 max. 6800 pF
min. 100 pF
5000 max. 3300 pF
12 | www.avx.com
www.avx.com | 13
High Voltage FLEXITERM®
For 600V to 3000V Applications
HOW TO ORDER
High value, low leakage and small size are difficult parameters to obtain in capacitors for high voltage
systems. AVX special high voltage MLC chip capacitors meet these performance characteristics and
are designed for applications such as snubbers in high frequency power converters, resonators in
SMPS, and high voltage coupling/DC blocking. These high voltage chip designs exhibit low ESRs at
high frequencies.
To make high voltage chips, larger physical sizes than are normally encountered are necessary. These
larger sizes require that special precautions be taken in applying these chips in surface mount
assemblies. In response to this, and to follow from the success of the FLEXITERM®range of low
voltage parts, AVX is delighted to offer a FLEXITERM®high voltage range of capacitors, FLEXITERM®.
The FLEXITERM®layer is designed to enhance the mechanical flexure and temperature cycling
performance of a standard ceramic capacitor, giving customers a solution where board flexure or
temperature cycle damage are concerns.
1808
AVX
Style
0805
1206
1210
1808
1812
1825
2220
2225
***
A
Voltage
C = 600V/630V
A = 1000V
S = 1500V
G = 2000V
W = 2500V
H = 3000V
C
Temperature
Coefficient
C0G = A
X7R = C
272
Capacitance Code
(2 significant digits
+ no. of zeros)
Examples:
10 pF = 100
100 pF = 101
1,000 pF = 102
22,000 pF = 223
220,000 pF = 224
1 μF = 105
K
Capacitance
Tolerance
C0G:
J = ±5%
K = ±10%
M = ±20%
X7R:
K = ±10%
M = ±20%
Z = +80%,
-20%
A
Test Level
Z
Termination*
Z = FLEXITERM®
100% Tin
(RoHS Compliant)
1
Packaging
1 = 7" Reel
3 = 13" Reel
9 = Bulk
A
Special Code
A = Standard
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/flexitermhv.pdf
Notes: Capacitors with X7R dielectrics are not intended for applications across AC supply mains or AC line filtering with polarity reversal. Contact plant for recommendations.
Contact factory for availability of Termination and Tolerance options for Specific Part Numbers.
*** AVX offers nonstandard chip sizes. Contact factory for details.
VOLTAGE 0805 1206 1210 1808 1812 1825 2220 2225
600/630 min. 10pF 10 pF 100 pF 100 pF 100 pF 1000 pF 1000 pF 1000 pF
max. 330pF 1200 pF 2700 pF 3300 pF 5600 pF 0.012 μF 0.012 μF 0.018 μF
min. 10pF 10 pF 10 pF 100 pF 100 pF 100 pF 1000 pF 1000 pF
1000 max. 180pF 560 pF 1500 pF 2200 pF 3300 pF 8200 pF 0.010 μF 0.010 μF
min. 10 pF 10 pF 10 pF 10 pF 100 pF 100 pF 100 pF
1500 max. 270 pF 680 pF 820 pF 1800 pF 4700 pF 4700 pF 5600 pF
min. 10 pF 10 pF 10 pF 10 pF 100 pF 100 pF 100 pF
2000 max. 120 pF 270 pF 330 pF 1000 pF 1800 pF 2200 pF 2700 pF
min. 10 pF 10 pF 10 pF 100 pF 100 pF
2500 max. 180 pF 470 pF 1200 pF 1500 pF 1800 pF
min. 10 pF 10 pF 10 pF 10 pF 10 pF
3000 max. 120 pF 330 pF 820 pF 1000 pF 1200 pF
HIGH VOLTAGE C0G CAPACITANCE VALUES
HIGH VOLTAGE X7R CAPACITANCE VALUES
VOLTAGE 0805 1206 1210 1808 1812 1825 2220 2225
600/630 min. 100pF 1000 pF 1000 pF 1000 pF 1000 pF 0.010 μF 0.010 μF 0.010 μF
max. 6800pF 0.022 μF 0.056 μF 0.068 μF 0.120 μF 0.270 μF 0.270 μF 0.330 μF
min. 100pF 100 pF 1000 pF 1000 pF 1000 pF 1000 pF 1000 pF 1000 pF
1000 max. 1500pF 6800 pF 0.015 μF 0.018 μF 0.039 μF 0.100 μF 0.120 μF 0.150 μF
min. 100 pF 100 pF 100 pF 100 pF 1000 pF 1000 pF 1000 pF
1500 max. 2700 pF 5600 pF 6800 pF 0.015 μF 0.056 μF 0.056 μF 0.068 μF
min. 10 pF 100 pF 100 pF 100 pF 100 pF 1000 pF 1000 pF
2000 max. 1500 pF 3300 pF 2300 pF 8200 pF 0.022 μF 0.027 μF 0.033 μF
min. 10 pF 10 pF 100 pF 100 pF 100 pF
2500 max. 2200 pF 5600 pF 0.015 μF 0.018 μF 0.022 μF
min. 10 pF 10 pF 100 pF 100 pF 100 pF
3000 max. 1800 pF 2200 pF 0.010 pF 0.012 μF 0.015 μF
14 | www.avx.com
UltraThin Ceramic Capacitors
UT023D103MAT2C
The Ultrathin (UT) series of ceramic capacitors is a new product offering from AVX. The UT series was
designed to meet the stringent thickness requirements of our customers. AVX developed a new termination
process (FCT - Fine Copper Termination) that provides unbeatable flatness and repeatability. The series
includes products < 0.35mm in height and is targeted for applications such as Smart cards, Memory mod-
ules, High Density SIM cards, Mobile phones, MP3 players, and embedded solutions.
HOW TO ORDER
UT
Style
Ultra
Thin
02
Case
Size
0402
3
Rated
Voltage
25V
D
Temperature
Characteristic
X5R
103
Coded
Cap
0.01μF
M
Cap
Tolerance
± 20%
A
Termination
Style
Commercial
T
Termination
100% Sn
2
Packaging
7" Reel = 15,000 pcs
13" Reel = 50,000 pcs
C
Thickness
0.30mm max
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/ut.pdf
LW TBL
1.00 ± 0.10 0.50 ± 0.10 0.25 ± 0.05 0.25 ± 0.10
(0.039±0.004) (0.020 ± 0.004) (0.010 ± 0.002) (0.010 ± 0.004)
PART DIMENSIONS mm (inches)
PERFORMANCE CHARACTERISTICS
Capacitance Value 0.01μF
Capacitance Tolerance ±20%
Dissipation Factor Range 3.0%
Operating Temperature -55°C to +85°C
Temperature Coefficient ±15%
Rated Voltage 25V
Insulation Resistance at 25ºC and Rated Voltage 100,000 Mohms
Test Frequency 1 Vrms @ 1 KHz
www.avx.com | 15
AVX “Tip & Ring” or “ring detector” Multilayer Ceramic Chip Capacitors are designed
as a standard telecom filter to block -48 Volts DC telephone line voltage and pass
subscriber’s AC signal pulse (16 to 25Hz, 70 to 90Vrms). The ringer capacitors
replace large leaded film capacitors and are ideal for telecom/modem applications.
Using AVX “Tip & Ring” capacitors not only saves valuable real estate on the board
and reduces the weight of overall product, but also features standard surface
mounting capabilities so critical to new and compact designs.
The AVX “Tip & Ring” capacitors are offered in standard EIA sizes and standard
values. They offer excellent high frequency performance, low ESR and improved
temperature performance over film capacitors.
HOW TO ORDER
Contact factory for availability of Termination and Tolerance options for Specific Part Numbers.
Tip & Ring
Multilayer Ceramic Chip Capacitors
Capacitance Range 1000 pF to 1.2 μF (25°C, 1.0 ±0.2 Vrms at 1kHz)
Capacitance Tolerances ±10%, ±20%
Dissipation Factor 2.5% max. (25°C, 1.0 ±0.2 Vrms at 1kHz)
Operating Temperature Range -55°C to +125°C
Temperature Characteristic X7R ±15% (0 VDC)
Voltage Rating 250 VDC Telco rating
Insulation Resistance 1000 megohm-microfarad min.
Dielectric Strength Minimum 200% rated voltage for 5 seconds at 50 mA max. current
PERFORMANCE CHARACTERISTICS
CAPACITANCE RANGE (μF)
Size 0805 1206 1210 1808 1812 1825 2220 2225
min. 0.0010 0.0010 0.0010 0.010 0.10 0.33 0.47 0.47
max. 0.027 0.082 0.22 0.27 0.47 1.0 1.0 1.2
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/apt&r.pdf
1812
AVX
Style
0805
1206
1210
1808
1812
1825
2220
2225
P
Voltage
250 VDC
Telco
Rating
C
Temperature
Coefficient
X7R
104
Capacitance
Code
(2 significant digits
+ no. of zeros)
Examples:
1,000 pF = 102
22,000 pF = 223
220,000 pF = 224
1 μF = 105
K
Capacitance
Tolerance
K = ±10%
M = ±20%
A
Test Level
A = Standard
T
Termination
T = Plated
Ni and Sn
(RoHS Compliant)
Z = FLEXITERM®
100% Tin
(RoHS Compliant)
A
Special
Code
A = Standard
1
Packaging
2 = 7" Reel
4 = 13" Reel
6 = Bulk
16 | www.avx.com
Tin/Lead Termination MLCC
LD Series NP0 Dielectric, Tin/Lead
AVX Corporation will support those customers for commercial and military Multilayer
Ceramic Capacitors with a termination consisting of 5% minimum lead. This
termination is indicated by the use of a “B” in the 12th position of the AVX Catalog
Part Number. This fulfills AVX’s commitment to providing a full range of products to
our customers. Please contact the factory if you require additional information on our
MLCC Tin/Lead Termination “B” products.
LD05
Size
LD02 - 0402
LD03 - 0603
LD04 - 0504*
LD05 - 0805
LD06 - 1206
LD10 - 1210
LD12 - 1812
LD13 - 1825
LD14 - 2225
5
Voltage
Y = 16V
3 = 25V
5 = 50V
1 = 100V
2 = 200V
7 = 500V
A
Dielectric
C0G (NP0) = A
101
Capacitance
Code (In pF)
2 Sig. Digits +
Number of Zeros
J
Capacitance
Tolerance
B = ±.10 pF (<10pF)
C = ±.25 pF (<10pF)
D = ±.50 pF (<10pF)
F = ±1% (≥ 10 pF)
G = ±2% (≥ 10 pF)
J=±5%
K = ±10%
M = ±20%
HOW TO ORDER
A
Failure
Rate
A = Not
Applicable
B
Terminations
B = 5% min
lead
2
Packaging
2 = 7" Reel
4 = 13" Reel
7 = Bulk Cass.
9 = Bulk
Contact
Factory
For
Multiples
A
Special
Code
A = Std. Product
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/tinterm.pdf
NP0 Dielectric
Letter A C E G J K M N P Q X Y Z
Max. 0.33 0.56 0.71 0.90 0.94 1.02 1.27 1.40 1.52 1.78 2.29 2.54 2.79
Thickness (0.013) (0.022) (0.028) (0.035) (0.037) (0.040) (0.050) (0.055) (0.060) (0.070) (0.090) (0.100) (0.110)
PAPER EMBOSSED
SIZE LD02 LD03 LD05 LD06 LD10 LD12 LD13 LD14
WVDC 16 25 50 16 25 50 100 16 25 50 100 200 16 25 50 100 200 500 25 50 100 200 500 25 50 100 200 500 50 100 200 50 100 200
Cap 0.5 C C C G G G G J J J J JJ JJJJJ
(pF) 1.0 C C C G G G G J J J J JJ JJJJJ
1.2 C C C G G G G J J J J JJ JJJJJ
1.5 C C C G G G G J J J J JJ JJJJJ
1.8 C C C G G G G J J J J JJ JJJJJ
2.2 C C C G G G G J J J J JJ JJJJJ
2.7 C C C G G G G J J J J JJ JJJJJ
3.3 C C C G G G G J J J J JJ JJJJJ
3.9 C C C G G G G J J J J JJ JJJJJ
4.7 C C C G G G G J J J J JJ JJJJJ
5.6 C C C G G G G J J J J JJ JJJJJ
6.8 C C C G G G G J J J J JJ JJJJJ
8.2 C C C G G G G J J J J JJ JJJJJ
10 C C C G G G G J J J J JJ JJJJJ J
12 C C C G G G G J J J J JJ JJJJJ J
15 C C C G G G G J J J J JJ JJJJJ J
18 C C C G G G G J J J J JJ JJJJJ J
22 C C C G G G G J J J J JJ JJJJJ J
27 C C C G G G G J J J J JJ JJJJJ J
33 C C C G G G G J J J J JJ JJJJJ J
39 C C C G G G G J J J J JJ JJJJJ J
47 C C C G G G G J J J J JJ JJJJJ J
56 C C C G G G G J J J J JJ JJJJJ J
68 C C C G G G G J J J J JJ JJJJJ J
82 C C C G G G G J J J J JJ JJJJJ J
100 C C C G G G G J J J J JJ JJJJJ J
120 C C C G G G G J J J J JJ JJJJJ J
150 C C C G G G G J J J J JJ JJJJJ J
180 C C C G G G G J J J J JJ JJJJJ J
220 C C C G G G G J J J J JJ JJJJM J
270 C C C G G G G J J J J MJ JJJJM J
330 C C C G G G G J J J J MJ JJJJM J
390 C C C G G G J J J J MJ JJJJM M
470 C C C G G G J J J J MJ JJJJM M
560 G G G J J J J MJ JJJJMJ J J J M
680 G G G J J J J J JJJJPJ J J J M
820 G G G J J J J J J J J M J J J J M
1000 G G G J J J J J J J J Q J J J J M K K K K M M M M M M P
1200 J J J J J J J Q J J J M M K K K K M M M M M M P
1500 J J J J J J M Q J J J M M K K K K M M M M M M P
1800 J J J J J M M J J J M K K K K M M M M M M P
2200 J J N J J M P J J J Q K K K K P M M M M M P
2700 J J N J J M P J J J Q K K K P Q M M M M M P
3300 J J J J M P J J J K K K P Q M M M M M P
3900 J J J J M P J J M K K K P Q M M M M M P
4700 J J J J M P J J M K K K P Q M M M M M P
5600 JJM J J KKMPXM M M M M P
6800 MM J J K KM X M M M M M P
8200 MM J J KMM M M M M P
Cap 0.010 MM J J KMM M M M M P
(μF) 0.012 JJ KM M M M M P
0.015 MM M M M M Y
0.018 MM P M M M Y
0.022 MM P M Y Y
0.027 MM P P Y Y
0.033 MM P P
0.039 MM P P
0.047 MM P P
0.068 MM P
0.082 MM Q
0.1 Q
WVDC 16 25 50 16 25 50 100 16 25 50 100 200 16 25 50 100 200 500 25 50 100 200 500 25 50 100 200 500 50 100 200 50 100 200
SIZE LD02 LD03 LD05 LD06 LD10 LD12 LD13 LD14
*LD04 has the same CV ranges as LD03.
NOTE: Contact factory for availability of Tolerance Options for Specific Part Numbers.
Contact factory for non-specified capacitance values.
www.avx.com | 17
Tin/Lead Termination MLCC
LD Series X7R Dielectric, Tin/Lead
X7R Dielectric
= Under development
SIZE LD02 LD03 LD05 LD06 LD10 LD12 LD13 LD20 LD14
WVDC 16 25 50 6.3 10 16 25 50 100 200 6.3 10 16 25 50 100 200 6.3 10 16 25 50 100 200 500 10 16 25 50 100 200 500 50 100 200 500 50 100 25 50 100 200 50 100
Cap 100
(pF) 150
220 C
330 C G G G J J J J J J K
470 C G G G J J J J J J K
680 C G G G J J J J J J K
1000 C G G G J J J J J J K
1500 C G G J J J J J J J J J J J J M J J J J J J M
2200 C G G J J J J J J J J J J J J M J J J J J J M
3300 C C G G J J J J J J J J J J J J M J J J J J J M
4700 C C G G J J J J J J J J J J J J M J J J J J J M
6800 C C G G J J J J J J J J J J J J P J J J J J J M
Cap 0.010 C G G J J J J J J J J J J J J P J J J J J J M K K K K M M X X X M P
(μF 0.015 C G G J J J J J J J J J J J M J J J J J J P K K K P M M X X X M P
0.022 C G G J J J J J N J J J J J M J J J J J J Q K K K P M M X X X M P
0.033 G G J J J J N J J J J J M J J J J J J Q K K K X M M X X X M P
0.047 G G G J J J J N J J J J J M J J J J J J K K K Z M M X X X M P
0.068 G G G J J J J N J J J J J P J J J J J M K K K Z M M X X X M P
0.10 C* G G G G J J J J N J J J J M P J J J J J M K K K Z M M X X X M P
0.15 G G J J J N N J J J J Q J J J J M Z K K P M M X X X M P
0.22 G G J J N N N J J J J Q J J J J P Z K K P M M X X X M P
0.33 N N N N N J J M P Q J J J J Z K M X M M X X X M P
0.47 J* N N N N N M M M P Q M M M M Z K P M M X X X M P
0.68 N N N M M Q Q Q M M P X Z M Q M P X X M P
1.0 J* J* N N N* M M Q Q Q N N P X Z M X M P X X M P
1.5 PQQ NN ZZZ ZZ M XX MX
2.2 J* P* Q Q Q X X Z Z Z Z Z X X M
3.3 XXZZ Z XZ
4.7 P* P* Q* Q* Q* X X Z Z Z X Z
10 P* Q* Q* Z Z Z Z
22 Q* Z Z Z
47
100
WVDC 16 25 50 6.3 10 16 25 50 100 200 6.3 10 16 25 50 100 200 6.3 10 16 25 50 100 200 500 10 16 25 50 100 200 500 50 100 200 500 50 100 25 50 100 200 50 100
SIZE LD02 LD03 LD05 LD06 LD10 LD12 LD13 LD20 LD14
AVX Corporation will support those customers for commercial and military
Multilayer Ceramic Capacitors with a termination consisting of 5% minimum lead.
This termination is indicated by the use of a “B” in the 12th position of the AVX
Catalog Part Number. This fulfills AVX’s commitment to providing a full range of
products to our customers. Please contact the factory if you require additional
information on our MLCC Tin/Lead Termination “B” products.
HOW TO ORDER
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/tinterm.pdf
LD05
Size
LD02 - 0402
LD03 - 0603
LD04 - 0504*
LD05 - 0805
LD06 - 1206
LD10 - 1210
LD12 - 1812
LD13 - 1825
LD14 - 2225
LD20 - 2220
5
Voltage
6 = 6.3V
Z = 10V
Y = 16V
3 = 25V
5 = 50V
1 = 100V
2 = 200V
7 = 500V
C
Dielectric
X7R = C
101
Capacitance
Code (In pF)
2 Sig. Digits +
Number of Zeros
J
Capacitance
Tolerance
J = ±5%
K = ±10%
M = ±20%
A
Failure
Rate
A = Not
Applicable
B
Terminations
B = 5% min lead
X =
FLEXITERM
®
with 5% min
lead
2
Packaging
2 = 7" Reel
4 = 13" Reel
7 = Bulk Cass.
9 = Bulk
Contact
Factory
For
Multiples
A
Special
Code
A = Std. Product
*LD04 has the same CV ranges as LD03.
NOTE: Contact factory for availability of Tolerance Options for Specific Part Numbers.
Contact factory for non-specified capacitance values.
Letter A C E G J K M N P Q X Y Z
Max. 0.33 0.56 0.71 0.90 0.94 1.02 1.27 1.40 1.52 1.78 2.29 2.54 2.79
Thickness (0.013) (0.022) (0.028) (0.035) (0.037) (0.040) (0.050) (0.055) (0.060) (0.070) (0.090) (0.100) (0.110)
PAPER EMBOSSED
18 | www.avx.com
Tin/Lead Termination MLCC
LD Series X5R Dielectric, Tin/Lead
Letter A C E G J K M N P Q X Y Z
Max. 0.33 0.56 0.71 0.90 0.94 1.02 1.27 1.40 1.52 1.78 2.29 2.54 2.79
Thickness (0.013) (0.022) (0.028) (0.035) (0.037) (0.040) (0.050) (0.055) (0.060) (0.070) (0.090) (0.100) (0.110)
PAPER EMBOSSED
= Under development = *Optional Specifications – Contact factory
*Optional Specifications – Contact factory
NOTE: Contact factory for non-specified capacitance values
AVX Corporation will support those customers for commercial and military Multilayer
Ceramic Capacitors with a termination consisting of 5% minimum lead. This termination is
indicated by the use of a “B” in the 12th position of the AVX Catalog Part Number. This
fulfills AVX’s commitment to providing a full range of products to our customers. Please
contact the factory if you require additional information on our MLCC Tin/Lead Termination
“B” products.
LD05
Size
LD02 - 0402
LD03 - 0603
LD04 - 0504*
LD05 - 0805
LD06 - 1206
LD10 - 1210
LD12 - 1812
5
Voltage
4 = 4V
6 = 6.3V
Z = 10V
Y = 16V
3 = 25V
D = 35V
5 = 50V
D
Dielectric
X5R = D
101
Capacitance
Code (In pF)
2 Sig. Digits +
Number of Zeros
J
Capacitance
Tolerance
J = ±5%
K = ±10%
M = ±20%
HOW TO ORDER
A
Failure
Rate
A = Not
Applicable
B
Terminations
B = 5% min
lead
2
Packaging
2 = 7" Reel
4 = 13" Reel
7 = Bulk Cass.
9 = Bulk
Contact
Factory
For
Multiples
A
Special
Code
A = Std. Product
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/tinterm.pdf
*LD04 has the same CV ranges as LD03.
NOTE: Contact factory for availability of Tolerance Options for Specific Part Numbers. Contact factory for non-specified capacitance values.
SIZE LD02 LD03 LD05 LD06 LD10 LD12
WVDC 4 6.3 10 16 25 50 4 6.3 10 16 25 35 50 6.3 10 16 25 35 50 6.3 10 16 25 35 50 4 6.3 10 16 25 35 50 6.3 10 25 50
Cap 100
(pF) 150
220 C
330 C
470 C
680 C
1000 C
1500 C
2200 C
3300 C
4700 C G
6800 C G
Cap 0.010 C G
(μF) 0.015 C G G G
0.022 C C G G G N
0.033 C G G G N
0.047 C C G G G N
0.068 C G G N
0.10 C C C G G N N
0.15 G N N
0.22 C* G G N N Q
0.33 G G N
0.47 C* C* G N Q Q X
0.68 G N
1.0 C* C* C* G G G J* N N P* Q Q X X X
1.5
2.2 C* C* G* G* J* J* N N N Q Q Z X
3.3 J* J* J* J* N N Q Q
4.7 E* J* J* J* N N N* N* Q Q Q Q Q Z
10 K* J* N* N* N* * Q Q Q Q* X Z Z Z
22 P* * Q* Q* Q* Z Z Z Z
47 Q* Z*
100 Z* Z*
WVDC 4 6.3 10 16 25 50 4 6.3 10 16 25 35 50 6.3 10 16 25 35 50 6.3 10 16 25 35 50 4 6.3 10 16 25 35 50 6.3 10 25 50
SIZE LD02 LD03 LD05 LD06 LD10 LD12
APS for COTS-Plus Applications
APS Series NP0 Dielectric
HOW TO ORDER
AP03
Size
AP03=0603
AP05=0805
AP06=1206
AP10=1210
AP12=1812
5
Voltage
3 = 25V
5 = 50V
1 = 100V
2 = 200V
7 = 500V
2
Packaging
2 = 7" Reel
4 = 13" Reel
A
Dielectric
NP0 = A
104
Capacitance
Code (In pF)
2 Significant Digits +
Number of Zeros
e.g. 10μF = 106
K
Capacitance
Tolerance
J = ±5%
K = ±10%
M = ±20%
Q
Failure Rate
Q = APS
A
Special Code
A = Std. Product
T
Terminations
T = Plated Ni and Sn**
B = 5% min lead
As part of our continuing support to high reliability customers, AVX has launched an Automotive Plus
Series of parts (APS) qualified and manufactured in accordance with automotive AEC-Q200
standard. Each production batch is quality tested to an enhanced requirement and shipped with a
certificate of conformance. On a quarterly basis a reliability package is issued to all APS customers.
A detailed qualification package is available on request and contains results on a range of part
numbers including:
We are also able to support customers who require an AEC-Q200 grade component finished with
Tin/Lead.
X7R dielectric components containing BME
electrode and copper terminations with a
Ni/Sn plated overcoat.
X7R dielectric components BME electrode
and soft terminations with a Ni/Sn plated
overcoat (FLEXITERM®).
• X7R for Hybrid applications.
• NP0 dielectric components containing Pd/Ag
electrode and silver termination with a Ni/Sn
plated overcoat.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/aps.pdf
APS MLCC – NP0
NOTE: Contact factory for availability of Termination and Tolerance Options for Specific Part Numbers.
Letter G J K M N P Q X
Max. 0.90 0.94 1.02 1.27 1.40 1.52 1.78 2.29
Thickness (0.035) (0.037) (0.040) (0.050) (0.055) (0.060) (0.070) (0.090)
AEC-Q200 qualified
TS 16949, ISO 9001 certified
PAPER PLASTIC TAPE
0603 0805 1206 1210 1812
25V 50V 100V 25V 50V 100V 25V 50V 100V 200V 500V 25V 50V 100V 200V 50V 100V
100 10pF G G G J J J J J J J J
12012GGGJJJJJJJJ
15015GGGJJJJJJJJ
18018GGGJJJJJJJ
22022GGGJJJJJJJ
27027GGGJJJJJJJ
33033GGGJJJJJJJ
39039GGGJJJJJJJ
47047GGGJJJJJJJ
51051GGGJJJJJJJ
56056GGGJJJJJJJ
68068GGGJJJJJJJ
82082GGGJJJJJJJ
101 100 G G G J J J J J J J
121 120 G G G J J J J J J J
151 150 G G G J J J J J J J
181 180 G G G J J J J J J J
221 220 G G G J J J J J J J
271 270 G G G J J J J J J J
331 330 G G G J J J J J J J
391 390 G G J J J J J J J
471 470 G G J J J J J J J
561 560 J J J J J J J
681 680 J J J J J J J
821 820 J J J J J J J
102 1000 J J J J J J J J J J J
122 1200 J J J J J M M
152 1500 J M M J J M M
182 1800 J M M J J M M
222 2200 J M M J J M M
272 2700 J M Q J J M
332 3300 J M Q J J P K K
392 3900 JJ P K K
472 4700 JJ P K K
103 10nF
25V 50V 100V 25V 50V 100V 25V 50V 100V 200V 500V 25V 50V 100V 200V 50V 100V
0603 0805 1206 1210 1812
www.avx.com | 19
20 | www.avx.com
AP03
Size
AP03=0603
AP05=0805
AP06=1206
AP10=1210
AP12=1812
AP20=2220
5
Voltage
Y = 16V
3 = 25V
5 = 50V
1 = 100V
2 = 200V
7 = 500V
2
Packaging
2 = 7" Reel
4 = 13" Reel
C
Dielectric
X7R = C
104
Capacitance
Code (In pF)
2 Significant Digits
+ Number of Zeros
e.g. 10μF = 106
K
Capacitance
Tolerance
J = ±5%
K = ±10%
M = ±20%
Q
Failure Rate
Q = APS
A
Special Code
A = Std. Product
T
Terminations
T = Plated Ni and Sn**
Z = FLEXITERM®**
U = Conductive Epoxy**
B = 5% min lead
X = FLEXITERM®with
5% min lead
**RoHS compliant
APS for COTS-Plus Applications
APS Series X7R Dielectric
HOW TO ORDER
As part of our continuing support to high reliability customers, AVX has launched an Automotive Plus
Series of parts (APS) qualified and manufactured in accordance with automotive AEC-Q200
standard. Each production batch is quality tested to an enhanced requirement and shipped with a
certificate of conformance. On a quarterly basis a reliability package is issued to all APS customers.
A detailed qualification package is available on request and contains results on a range of part
numbers including:
We are also able to support customers who require an AEC-Q200 grade component finished with
Tin/Lead.
X7R dielectric components containing BME
electrode and copper terminations with a
Ni/Sn plated overcoat.
X7R dielectric components BME electrode
and soft terminations with a Ni/Sn plated
overcoat (FLEXITERM®).
• X7R for Hybrid applications.
NP0 dielectric components containing Pd/Ag
electrode and silver termination with a Ni/Sn
plated overcoat.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/aps.pdf
NOTE: Contact factory for availability of Termination and Tolerance Options for Specific Part Numbers.
AUTOMOTIVE MLCC – X7R
Letter A C E G J K M N P Q X Y Z
Max. 0.33 0.56 0.71 0.90 0.94 1.02 1.27 1.40 1.52 1.78 2.29 2.54 2.79
Thickness (0.013) (0.022) (0.028) (0.035) (0.037) (0.040) (0.050) (0.055) (0.060) (0.070) (0.090) (0.100) (0.110)
PAPER EMBOSSED
= Under development
0603 0805 1206 1210 1812 2220
16V 25V 50V 100V 200V 16V 25V 50V 100V 200V 16V 25V 50V 100V 200V 500V 16V 25V 50V 100V 50V 100V 25V 50V
102 Cap 1 G G G G G J J J J J J J J J J J K K K K K K
182 (nF) 1.8 G G G G J J J J J J J J J J J K K K K K K
222 2.2 G G G G J J J J J J J J J J J K K K K K K
332 3.3 G G G G J J J J J J J J J J J K K K K K K
472 4.7 G G G G J J J J J J J J J J J K K K K K K
103 10 G G G G J J J J J J J J J J J K K K K K K
123 12 G G G J J J M J J J J J K K K K K K
153 15 G G G J J J M J J J J J K K K K K K
183 18 G G G J J J M J J J J J K K K K K K
223 22 G G G J J J M J J J J J K K K K K K
273 27 G G G J J J M J J J J J K K K K K K
333 33 G G G J J J M J J J J J K K K K K K
473 47 G G G J J J M J J J M J K K K K K K
563 56 G G G J J J M J J J M J K K K M K K
683 68 G G G J J J M J J J M J K K K M K K
823 82 G G G J J J M J J J M J K K K M K K
104 100 G G G J J M M J J J M J K K K M K K
124 120 J J M J J M M K K K P K K
154 150 M N M J J M M K K K P K K
224 220 M N M J M M Q M M M P M M
334 330 N N M J M P Q P P P Q X X
474 470 N N M M M P Q P P P Q X X
684 680 N N M Q Q Q P P Q X X X
105 Cap 1 N N M Q Q Q P Q Q X X X
155 (μF) 1.5 QQ P QZ Z XX
225 2.2 QQ X Z Z Z ZZ
335 3.3 XZZ Z
475 4.7 XZZ Z
106 10 Z
226 22 Z
16V 25V 50V 100V 200V 16V 25V 50V 100V 200V 16V 25V 50V 100V 200V 500V 16V 25V 50V 100V 50V 100V 25V 50V
0603 0805 1206 1210 1812 2220
www.avx.com | 21
High Voltage MLCC (Tin/Lead)
Applications from 600V to 5000V
HOW TO ORDER
LD08
AVX
Style
LD05 - 0805
LD06 - 1206
LD10 - 1210
LD08 - 1808
LD12 - 1812
LD13 - 1825
LD20 - 2220
LD14 - 2225
LD40 - 3640
***
271
Capacitance Code
(2 significant digits
+ no. of zeros)
Examples:
10 pF = 100
100 pF = 101
1,000 pF = 102
22,000 pF = 223
220,000 pF = 224
1 μF = 105
A
Test Level
A = Standard
B
Termination
B = 5% Min Pb
1
Packaging
1 = 7" Reel
3 = 13" Reel
9 = Bulk
A
Special Code
A = Standard
A
Voltage
C = 600V/630V
A = 1000V
S = 1500V
G = 2000V
W = 2500V
H = 3000V
J = 4000V
K = 5000V
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/hvtinterm.pdf
K
Capacitance
Tolerance
C0G:
J = ±5%
K = ±10%
M = ±20%
X7R:
K = ±10%
M = ±20%
Z = +80%,
-20%
AVX Corporation will support those customers for commercial and military Multilayer Ceramic
Capacitors with a termination consisting of 5% minimum lead. This termination is indicated by the use
of a “B” in the 12th position of the AVX Catalog Part Number. This fulfills AVX’s commitment to
providing a full range of products to our customers. AVX has provided in the following pages, a full
range of values that we are offering in this “B” termination.
Larger physical sizes than normally encountered chips are used to make high voltage MLC chip
product. Special precautions must be taken in applying these chips in surface mount assemblies. The
temperature gradient during heating or cooling cycles should not exceed 4ºC per second. The preheat
temperature must be within 50ºC of the peak temperature reached by the ceramic bodies through the
soldering process. Chip sizes 1210 and larger should be reflow soldered only. Capacitors may require
protective surface coating to prevent external arcing.
For 1825, 2225 and 3640 sizes, AVX offers leaded version in either thru-hole or SMT configurations (for
details see section on high voltage leaded MLC chips).
Notes: Capacitors with X7R dielectrics are not intended for applications across AC supply mains or AC line filtering with polarity reversal. Contact plant for recommendations.
Contact factory for availability of Termination and Tolerance options for Specific Part Numbers.
*** AVX offers nonstandard chip sizes. Contact factory for details.
NEW 630V RANGE
A
Temperature
Coefficient
C0G = A
X7R = C
HIGH VOLTAGE C0G CAPACITANCE VALUES
HIGH VOLTAGE X7R CAPACITANCE VALUES
VOLTAGE 0805 1206 1210 1808 1812 1825 2220 2225 3640
600/630 min. 10pF 10 pF 100 pF 100 pF 100 pF 1000 pF 1000 pF 1000 pF 1000 pF
max. 330pF 1200 pF 2700 pF 3300 pF 5600 pF 0.012 μF 0.012 μF 0.018 μF 0.047 μF
min. 10pF 10 pF 10 pF 100 pF 100 pF 100 pF 1000 pF 1000 pF 1000 pF
1000 max. 180pF 560 pF 1500 pF 2200 pF 3300 pF 8200 pF 0.010 μF 0.010 μF 0.022 μF
min. 10 pF 10 pF 10 pF 10 pF 100 pF 100 pF 100 pF 100 pF
1500 max. 270 pF 680 pF 820 pF 1800 pF 4700 pF 4700 pF 5600 pF 0.010 μF
min. 10 pF 10 pF 10 pF 10 pF 100 pF 100 pF 100 pF 100 pF
2000 max. 120 pF 270 pF 330 pF 1000 pF 1800 pF 2200 pF 2700 pF 6800 pF
min. 10 pF 10 pF 10 pF 100 pF 100 pF 100 pF
2500 max. 180 pF 470 pF 1200 pF 1500 pF 1800 pF 3900 pF
min. 10 pF 10 pF 10 pF 10 pF 10 pF 100 pF
3000 max. 120 pF 330 pF 820 pF 1000 pF 1200 pF 2700 pF
min. 10 pF 10 pF 10 pF 10 pF 10 pF 100 pF
4000 max. 47 pF 150 pF 330 pF 470 pF 560 pF 1200 pF
min. 10 pF 10 pF 10 pF
5000 max. 220 pF 270 pF 820 pF
VOLTAGE 0805 1206 1210 1808 1812 1825 2220 2225 3640
600/630 min. 100pF 1000 pF 1000 pF 1000 pF 1000 pF 0.010 μF 0.010 μF 0.010 μF 0.010 μF
max. 6800pF 0.022 μF 0.056 μF 0.068 μF 0.120 μF 0.270 μF 0.270 μF 0.330 μF 0.560 μF
min. 100pF 100 pF 1000 pF 1000 pF 1000 pF 1000 pF 1000 pF 1000 pF 0.010 μF
1000 max. 1500pF 6800 pF 0.015 μF 0.018 μF 0.039 μF 0.100 μF 0.120 μF 0.150 μF 0.220 μF
min. 100 pF 100 pF 100 pF 100 pF 1000 pF 1000 pF 1000 pF 1000 pF
1500 max. 2700 pF 5600 pF 6800 pF 0.015 μF 0.056 μF 0.056 μF 0.068 μF 0.100 μF
min. 10 pF 100 pF 100 pF 100 pF 100 pF 1000 pF 1000 pF 1000 pF
2000 max. 1500 pF 3300 pF 3300 pF 8200 pF 0.022 μF 0.027 μF 0.033 μF 0.027 μF
min. 10 pF 10 pF 100 pF 100 pF 100 pF 1000 pF
2500 max. 2200 pF 5600 pF 0.015 μF 0.018 μF 0.022 μF 0.022 μF
min. 10 pF 10 pF 100 pF 100 pF 100 pF 1000 pF
3000 max. 1800 pF 3900 pF 0.010 μF 0.012 μF 0.015 μF 0.018 μF
min. 100 pF
4000 max. 6800 pF
min. 100 pF
5000 max. 3300 pF
22 | www.avx.com
104
Capacitance Code
(2 significant digits
+ no. of zeros)
Examples:
1,000 pF = 102
22,000 pF = 223
220,000 pF = 224
1 μF = 105
HOW TO ORDER
Tip & Ring Tin/Lead Termination “B”
Multilayer Ceramic Chip Capacitors
AVX Corporation will support customers for commercial and military Multilayer
Ceramic Capacitors with a termination consisting of 5% minimum lead. This
termination is indicated by the use of a “B” in the 12th position of the AVX Catalog
Part Number. This fulfills AVX’s commitment to providing a full range of products to
our customers.
AVX “Tip & Ring” or “ring detector” Multilayer Ceramic Chip Capacitors are
designed as a standard telecom filter to block -48 Volts DC telephone line voltage
and pass subscriber’s AC signal pulse (16 to 25Hz, 70 to 90 VRMS). The ringer
capacitors replace large leaded film capacitors and are ideal for telecom/modem
applications. Using AVX “Tip and Ring” capacitors not only saves valuable real
estate on the board and reduces the weight of the overall product, but also features
standard surface mounting capabilities, so critical to new and compact designs.
The AVX “Tip & Ring” capacitors are offered in standard EIA sizes and
standard values. They offer excellent high frequency performance, low ESR
and improved temperature performance over film capacitors.
LD12
AVX
Style
LD05 - 0805
LD06 - 1206
LD10 - 1210
LD08 - 1808
LD12 - 1812
LD13 - 1825
LD20 - 2220
LD14 - 2225
C
Temperature
Coefficient
X7R
K
Capacitance
Tolerance
K = ±10%
M = ±20%
A
Test Level
A = Standard
1
Packaging
1 = 7" Reel
3 = 13" Reel
9 = Bulk
A
Special Code
A = Standard
P
Voltage
250 VDC
Telco
Rating
B
Termination
B = 5% Min Pb
X = FLEXITERM®
5% min. Pb
Contact factory for availability of Termination and Tolerance options for Specific Part Numbers.
Capacitance Range 1000 pF to 1.2 μF (25°C, 1.0 ±0.2 Vrms at 1kHz)
Capacitance Tolerances ±10%, ±20%
Dissipation Factor 2.5% max. (25°C, 1.0 ±0.2 Vrms at 1kHz)
Operating Temperature Range -55°C to +125°C
Temperature Characteristic X7R ±15% (0 VDC)
Voltage Rating 250 VDC Telco rating
Insulation Resistance 1000 megohm-microfarad min.
Dielectric Strength Minimum 200% rated voltage for 5 seconds at 50 mA max. current
PERFORMANCE CHARACTERISTICS
CAPACITANCE RANGE (μF)
STYLE (SIZE) LD05 (0805) LD06 (1206) LD10 (1210) LD08 (1808) LD12 (1812) LD13 (1825) LD20 (2220) LD14 (2225)
min. 0.0010 0.0010 0.0010 0.010 0.10 0.33 0.47 0.47
max. 0.027 0.082 0.22 0.27 0.47 1.0 1.0 1.2
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/apt&rb.pdf
www.avx.com | 23
Automotive MLCC
NP0 Dielectric
AVX Corporation has supported the Automotive Industry requirements for Multilayer Ceramic Capacitors
consistently for more than 10 years. Products have been developed and tested specifically for
automotive applications and all manufacturing facilities are QS9000 and VDA 6.4 approved.
As part of our sustained investment in capacity and state of the art technology, we are now transitioning
from the established Pd/Ag electrode system to a Base Metal Electrode system (BME).
AVX is using AEC-Q200 as the qualification vehicle for this transition. A detailed qualification package
is available on request and contains results on a range of part numbers including:
• Contains BME electrode and copper terminations with a Ni/Sn plated overcoat.
• BME electrode with epoxy finish for conductive glue mounting.
• BME electrode and soft terminations with a Ni/Sn plated overcoat.
NP0 dielectric components containing Pd/Ag electrode and silver termination with a Ni/Sn plat-
ed overcoat.
HOW TO ORDER
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/cauto.pdf
AUTOMOTIVE MLCC – NP0
0805
Size
0603
0805
1206
1210
1812
5
Voltage
3 = 25V
5 = 50V
1 = 100V
2 = 200V
7 = 500V
2
Packaging
2 = 7" Reel
4 = 13" Reel
A
Dielectric
NP0 = A
104
Capacitance
Code (In pF)
2 Significant Digits
+ Number of Zeros
e.g. 10μF = 106
K
Capacitance
Tolerance
F = ±1% (≥10pF)
G = ±2% (≥10pF)
J = ±5% (≤1μF)
K = ±10%
M = ±20%
4
Failure Rate
4 = Automotive
A
Special Code
A = Std. Product
T
Terminations
T = Plated Ni
and Sn
Contact factory for availability of Tolerance Options for Specific Part Numbers.
0603 0805 1206 1210 1812
25V 50V 100V 25V 50V 100V 25V 50V 100V 200V 500V 25V 50V 100V 200V 50V 100V
100 10pF G G G J J J J J J J J
120 12 G G G J J J J J J J J
150 15 G G G J J J J J J J J
180 18 G G G J J J J J J J
220 22 G G G J J J J J J J
270 27 G G G J J J J J J J
330 33 G G G J J J J J J J
390 39 G G G J J J J J J J
470 47 G G G J J J J J J J
510 51 G G G J J J J J J J
560 56 G G G J J J J J J J
680 68 G G G J J J J J J J
820 82 G G G J J J J J J J
101 100 G G G J J J J J J J
121 120 G G G J J J J J J J
151 150 G G G J J J J J J J
181 180 G G G J J J J J J J
221 220 G G G J J J J J J J
271 270 G G G J J J J J J J
331 330 G G G J J J J J J J
391 390 G G J J J J J J J
471 470 G G J J J J J J J
561 560 J J J J J J J
681 680 J J J J J J J
821 820 J J J J J J J
102 1000 J J J J J J J J J J J
122 1200 J J J J J J M M
152 1500 J M M M J J M M
182 1800 J M M M J J M M
222 2200 J M M M J J M M
272 2700 J M Q J J M
332 3300 J M Q J J P K K
392 3900 JJ P K K
472 4700 JJ P K K
103 10nF
25V 50V 100V 25V 50V 100V 25V 50V 100V 200V 500V 25V 50V 100V 200V 50V 100V
0603 0805 1206 1210 1812
Letter A C E G J K M N P Q X Y Z
Max. 0.33 0.56 0.71 0.90 0.94 1.02 1.27 1.40 1.52 1.78 2.29 2.54 2.79
Thickness (0.013) (0.022) (0.028) (0.035) (0.037) (0.040) (0.050) (0.055) (0.060) (0.070) (0.090) (0.100) (0.110)
PAPER EMBOSSED
Automotive MLCC
X7R Dielectric
AEC-Q200 qualified
TS 16949, ISO 9001 certified
AVX Corporation has supported the Automotive Industry requirements for Multilayer Ceramic
Capacitors consistently for more than 10 years. Products have been developed and tested specifical-
ly for automotive applications and all manufacturing facilities are QS9000 and VDA 6.4 approved.
As part of our sustained investment in capacity and state of the art technology, we are now transitioning
from the established Pd/Ag electrode system to a Base Metal Electrode system (BME).
AVX is using AEC-Q200 as the qualification vehicle for this transition. A detailed qualification package
is available on request and contains results on a range of part numbers including:
• X7R dielectric components containing BME electrode and copper terminations with a Ni/Sn plated
overcoat.
• X7R dielectric components, BME electrode with epoxy finish for conductive glue mounting.
• X7R dielectric components BME electrode and soft terminations with a Ni/Sn plated overcoat.
HOW TO ORDER
0805
Size
0402
0603
0805
1206
1210
1812
2220
5
Voltage
Y = 16V
3 = 25V
5 = 50V
1 = 100V
2 = 200V
7 = 500V
2
Packaging
2 = 7" Reel
4 = 13" Reel
C
Dielectric
X7R = C
104
Capacitance
Code (In pF)
2 Significant Digits
+ Number of Zeros
e.g. 10μF = 106
K
Capacitance
Tolerance
J = ±5%
K = ±10%
M = ±20%
4
Failure Rate
4 = Automotive
A
Special Code
A = Std. Product
T
Terminations
T = Plated Ni and Sn
Z = FLEXITERM®
U = Conductive Epoxy
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/cauto.pdf
Letter A C E G J K M N P Q X Y Z
Max. 0.33 0.56 0.71 0.90 0.94 1.02 1.27 1.40 1.52 1.78 2.29 2.54 2.79
Thickness (0.013) (0.022) (0.028) (0.035) (0.037) (0.040) (0.050) (0.055) (0.060) (0.070) (0.090) (0.100) (0.110)
PAPER EMBOSSED
= Under development
NOTE: Contact factory for non-specified capacitance values. 0402 case size available in T termination only.
Contact factory for availability of Termination and Tolerance Options for Specific Part Numbers.
AUTOMOTIVE MLCC – X7R
0402 0603 0805 1206 1210 1812 2220
16V 25V 50V
16V 25V 50V 100V 200V 16V 25V 50V 100V 200V 16V 25V 50V 100V 200V 500V 16V 25V 50V 100V 50V 100V 25V 50V
221 Cap .22 C C C
271 (nF) .27 C C C
331 .33 C C C
391 .39 C C C
471 .47 C C C
561 .56 C C C
681 .68 C C C
821 .82 C C C
102 1CCCGGGGGJJJJJJJJJJJKKKKKK
182 1.8CCCGGGG JJJJJJJJJJJKKKKKK
222 2.2CCCGGGG JJJJJJJJJJJKKKKKK
332 3.3CCCGGGG JJJJJJJJJJJKKKKKK
472 4.7 C
C
GGGG JJJJJJJJJJJKKKKKK
103 10C GGGG JJJJJJJJJJJKKKKKK
123 12 GGG JJJM JJJJJ KKKKKK
153 15 GGG JJJM JJJJJ KKKKKK
183 18 GGG JJJM JJJJJ KKKKKK
223 22 GGG JJJM JJJJJ KKKKKK
273 27 GGG JJJM JJJJJ KKKKKK
333 33 GGG JJJM JJJJJ KKKKKK
473 47 GGG J J JM J J JMJ KKKKKK
563 56 GGG JJJM JJJMJ KKKMKK
683 68 GGG JJJM JJJMJ KKKMKK
823 82 GGG JJJM JJJMJ KKKMKK
104 100 G G G J J M M J J J M J K K K M K K
124 120 J J M J J M M K K K P K K
154 150 M N M J J M M K K K P K K
224 220 M N M J M M Q M M M P M M
334 330 N N M J M P Q P P P Q X X
474 470 N N M M M P Q P P P Q X X
684 680 N N M Q Q Q P P Q X X X
105 Cap 1 N N M Q Q Q P Q Q X X X
155 (μF) 1.5 QQ PQZZXX
225 2.2 QQ XZZZZZ
335 3.3 XZZ Z
475 4.7 XZZ Z
106 10 Z
226 22 Z
16V 25V 50V
16V 25V 50V 100V 200V 16V 25V 50V 100V 200V 16V 25V 50V 100V 200V 500V 16V 25V 50V 100V 50V 100V 25V 50V
0402 0603 0805 1206 1210 1812 2220
24 | www.avx.com
FLEXITERM®MLCC
X7R FLEXITERM®Automotive Series for Board Flexure Applications
AUTOMOTIVE MLCC – X7R
AVX Corporation has supported the Automotive Industry requirements for Multilayer Ceramic
Capacitors consistently for more than 10 years. Products have been developed and tested specifical-
ly for automotive applications and all manufacturing facilities are QS9000 and VDA 6.4 approved.
As part of our sustained investment in capacity and state of the art technology, we are now transitioning
from the established Pd/Ag electrode system to a Base Metal Electrode system (BME).
AVX is using AEC-Q200 as the qualification vehicle for this transition. A detailed qualification package
is available on request and contains results on a range of part numbers including:
• X7R dielectric components, BME electrode with epoxy finish for conductive glue mounting.
• X7R dielectric components BME electrode and soft terminations with a Ni/Sn plated overcoat.
HOW TO ORDER
0805
Size
0603
0805
1206
1210
1812
2220
5
Voltage
Z = 10V
Y = 16V
3 = 25V
5 = 50V
1 = 100V
2 = 200V
2
Packaging
2 = 7" Reel
4 = 13" Reel
C
Dielectric
X7R = C
104
Capacitance
Code (In pF)
2 Significant Digits
+ Number of Zeros
e.g. 10μF = 106
K
Capacitance
Tolerance
J = ±5%*
K = ±10%
M = ±20%
*≤ 1μF only
4
Failure Rate
4 = Automotive
A
Special Code
A = Std. Product
Z
Terminations
Z = FLEXITERM®
U = Conductive Epoxy
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/cauto.pdf
NOTE: Contact factory for non-specified capacitance values.
Letter A C E G J K M N P Q X Y Z
Max. 0.33 0.56 0.71 0.90 0.94 1.02 1.27 1.40 1.52 1.78 2.29 2.54 2.79
Thickness (0.013) (0.022) (0.028) (0.035) (0.037) (0.040) (0.050) (0.055) (0.060) (0.070) (0.090) (0.100) (0.110)
PAPER EMBOSSED
AEC-Q200 qualified
TS 16949, ISO 9001 certified
0603 0805 1206 1210 1812 2220
16V 25V 50V 100V 200V 10V 16V 25V 50V 100V 200V 16V 25V 50V 100V 200V 16V 25V 50V 100V 16V 25V 50V 100V 25V 50V 100V
101
121
151
181
221
271 J J J J J J
331JJJJ JJJJJ JJ
391JJJJ JJJJJ JJ
471JJJJ JJJJJ JJ
561JJJJ JJJJJ JJ
681JJJJ JJJJJ JJ
821JJJJ JJJJJ JJ
102JJJJ JJJJJ JJJJJ JJ
122JJJJ JJJJJJJJJ JJ
152JJJJ JJJJJJJJJ JJ
182JJJJ JJJJJJJJJ JJ
222JJJJ JJJJJJJJJ JJ
272JJJJ JJJJJJJJJ JJ
332JJJJ JJJJJJJJJ JJ
392JJJJ JJJJJJJJJ JJ
472JJJJ JJJJJJJJJ JJ
562JJJJ JJJJJJJJJ JJ
682JJJJ JJJJJJJJJ JJ
822JJJJ JJJJJJJJJ JJ
103JJJJ JJJJJJJJJ JJ
123JJJ JJJJM JJJ JJ
153JJJ JJJJM JJJ JJ
183JJJ JJJJM JJJ JJ
223JJJ JJJJM JJJ JJ K
273JJJ JJJJM JJJ JJ K
333 J J J J J J J M J J J J J K
393JJJ JJJJM JJJMJ K
473JJJ JJJJM JJJMJ K
563JJJ JJJJN JJJMJKKKMKKKK
683JJJ JJJJN JJJMJKKKMKKKK
823JJJ JJJJN JJJPJKKKMKKKK
104JJJ JJJJN JJJQJKKKPKKKKXXX
124 J J J N J J P Q K K K Q K K K K
154 M M N N J J P Q K K K Q K K K M X X X
184 M M N N J M P Q M M M Q K K K M
224 M M N N J M P Q M M M Q M M M X X X X
274 N N N N J M P Q P P P Q M M M X
334 N N N N J M P Q P P P Q M M M X X X X
394 N N N N M M P Q P P P Q X X X X
474 N N N N M M P Q P P P Q X X X X X X X
564 N N N M Q Q Q P Q Q Q X X X Z
684 N N N M Q Q Q P X X X X X X Z X X X
824 N N N M Q Q Q P Z Z Z X X X Z
105 N N N M Q Q Q P Z Z Z X X X Z X X X
155 QQ PZZ Z ZZX XX
185 QQ ZZZ Z ZZ
225 QQ ZZZ Z ZZX XX
335 ZZZ Z
475 ZZZ Z
106 ZZ
226 Z
16V 25V 50V 100V 200V 10V 16V 25V 50V 100V 200V 16V 25V 50V 100V 200V 16V 25V 50V 100V 16V 25V 50V 100V 25V 50V 100V
0603 0805 1206 1210 1812 2220
= Under development
www.avx.com | 25
High Voltage FLEXITERM®
AEC-Q200 X7R For 600V to 5000V Applications
Size 1206 1210 1812 2220
600/630 1000 2000 600/630 1000 1500 2000 2500 3000 600/630 1000 2000 2500 3000 600/630 1500
(pF) 100
120
150
180
220
270
330
390
470
560
680
820
1000
1200
1500
1800
2200
2700
3300
3900
4700
5600
6800
8200
0.01
0.012
0.015
0.018
0.022
0.027
0.033
0.039
0.047
0.056
0.068
0.082
(μF) 0.1
600/630 1000 2000 600/630 1000 1500 2000 2500 3000 600/630 1000 2000 2500 3000 600/630 1500
Size 1206 1210 1812 2220
HOW TO ORDER
High value, low leakage and small size are difficult parameters to obtain in capacitors for high voltage systems.
AVX special high voltage MLC chip capacitors meet these performance characteristics and are designed for
applications such as snubbers in high frequency power converters, resonators in SMPS, and high voltage cou-
pling/DC blocking. These high voltage chip designs exhibit low ESRs at high frequencies.
To make high voltage chips, larger physical sizes than are normally encountered are necessary. These larger
sizes require that special precautions be taken in applying these chips in surface mount assemblies. In
response to this, and to follow from the success of the FLEXITERM®range of low voltage parts, AVX is delight-
ed to offer a FLEXITERM®high voltage range of capacitors, FLEXITERM®.
The FLEXITERM®layer is designed to enhance the mechanical flexure and temperature cycling performance of
a standard ceramic capacitor, giving customers a solution where board flexure or temperature cycle damage
are concerns.
1808
AVX
Style
0805
1206
1210
1808
1812
1825
2220
2225
***
A
Voltage
C = 600V/630V
A = 1000V
S = 1500V
G = 2000V
W = 2500V
H = 3000V
C
Temperature
Coefficient
C0G = A
X7R = C
272
Capacitance Code
(2 significant digits
+ no. of zeros)
Examples:
10 pF = 100
100 pF = 101
1,000 pF = 102
22,000 pF = 223
220,000 pF = 224
1 μF = 105
K
Capacitance
Tolerance
C0G:
J = ±5%
K = ±10%
M = ±20%
X7R:
K = ±10%
M = ±20%
Z = +80%,
-20%
4
Test Level
Z
Termination*
Z = FLEXITERM®
100% Tin
(RoHS Compliant)
1
Packaging
1 = 7" Reel
3 = 13" Reel
9 = Bulk
A
Special Code
A = Standard
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/flexitermhv.pdf
Notes: Capacitors with X7R dielectrics are not intended for applications across AC supply mains or AC line filtering with polarity reversal. Contact plant for recommendations.
Contact factory for availability of Termination and Tolerance options for Specific Part Numbers.
*** AVX offers nonstandard chip sizes. Contact factory for details.
26 | www.avx.com
www.avx.com | 27
Standard Capacitor Arrays
Standard NP0, X7R and X5R Dielectric
W
Style
W = RoHS
L = Tin/Lead
2
Case
Size
1 = 0405
2 = 0508
3 = 0612
5 = 0306
A
Array
4
Number
of Caps
C
Dielectric
A = NP0
C = X7R
D = X5R
3
Voltage
6 = 6V
Z = 10V
Y = 16V
3 = 25V
5 = 50V
1 = 100
M
Capacitance
Tolerance
J = ±5%
K = ±10%
M = ±20%
103
Capacitance
Code (In pF)
2 Sig. Digits +
No. of Zeros
A
Failure Rate
A=Commercial
2A
Packaging &
Quantity Code
2A = 7" Reel (4000)
4A = 13" Reel (10000)
2F = 7" Reel (1000)
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/caparray.pdf
HOW TO ORDER (Capacitor Array - IPC)
NP0/C0G X7R/X5R
SIZE 0405 0508 0508 0612
# Elements 2 2 4 4
Soldering Reflow Only Reflow/Wave Reflow/Wave Reflow/Wave
Packaging All Paper All Paper Paper/Embossed Paper/Embossed
Length MM 1.00 ± 0.15 1.30 ± 0.15 1.30 ± 0.15 1.60 ± 0.150
(in.) (0.039 ± 0.006) (0.051 ± 0.006) (0.051 ± 0.006) (0.063 ± 0.006)
Width MM 1.37 ± 0.15 2.10 ± 0.15 2.10 ± 0.15 3.20 ± 0.20
(in.) (0.054 ± 0.006) (0.083 ± 0.006) (0.083 ± 0.006) (0.126 ± 0.008)
Max. MM 0.66 0.94 0.94 1.35
Thickness (in.) (0.026) (0.037) (0.037) (0.053)
WVDC
16 25 50 16 25 50 100 16 25 50 100 16 25 50 100
1R0 Cap 1.0
1R2 (pF) 1.2
1R5 1.5
1R8 1.8
2R2 2.2
2R7 2.7
3R3 3.3
3R9 3.9
4R7 4.7
5R6 5.6
6R8 6.8
8R2 8.2
100 10
120 12
150 15
180 18
220 22
270 27
330 33
390 39
470 47
560 56
680 68
820 82
101 100
121 120
151 150
181 180
221 220
271 270
331 330
391 390
471 470
561 560
681 680
821 820
102 1000
122 1200
152 1500
182 1800
222 2200
272 2700
332 3300
392 3900
472 4700
562 5600
682 6800
822 8200
SIZE 0306 0405 0508 0508 0612
# Elements 4 2 2 4 4
Soldering Reflow Only Reflow Only Reflow/Wave Reflow/Wave Reflow/Wave
Packaging All Paper All Paper All Paper Paper/Embossed Paper/Embossed
Length MM 1.60 ± 0.15 1.00 ± 0.15 1.30 ± 0.15 1.30 ± 0.15 1.60 ± 0.150
(in.) (0.063 ± 0.006) (0.039 ± 0.006) (0.051 ± 0.006) (0.051 ± 0.006) (0.063 ± 0.006)
Width MM 0.81 ± 0.15 1.37 ± 0.15 2.10 ± 0.15 2.10 ± 0.15 3.20 ± 0.20
(in.) (0.032 ± 0.006) (0.054 ± 0.006) (0.083 ± 0.006) (0.083 ± 0.006) (0.126 ± 0.008)
Max. MM 0.50 0.66 0.94 0.94 1.35
Thickness (in.) (0.020) (0.026) (0.037) (0.037) (0.053)
WVDC 6 10 16 25 6 10
16 25 50 6 10 16 25 50 100 6 10 16 25 50 100 6 10 16 25 50 100
101 Cap 100
121 (pF) 120
151 150
181 180
221 220
271 270
331 330
391 390
471 470
561 560
681 680
821 820
102 1000
122 1200
152 1500
182 1800
222 2200
272 2700
332 3300
392 3900
472 4700
562 5600
682 6800
822 8200
103 Cap 0.010
123 (μF) 0.012
153 0.015
183 0.018
223 0.022
273 0.027
333 0.033
393 0.039
473 0.047
563 0.056
683 0.068
823 0.082
104 0.10
124 0.12
154 0.15
184 0.18
224 0.22
274 0.27
334 0.33
474 0.47
564 0.56
684 0.68
824 0.82
105 1.0
125 1.2
155 1.5
185 1.8
225 2.2
335 3.3
475 4.7
106 10
226 22
476 47
107 100
= Currently available X7R
= Currently available X5R
= Under development X7R, contact factory for advance samples
= Under development X5R, contact factory for advance samples
T
Terminations
T = Ni Barrier*
Z = FLEXITERM®*
B = 5% min lead
X = FLEXITERM®
with 5% min lead
*RoHS compliant
AVX is the market leader in the development and manufacture of capacitor arrays. The smallest array option
available from AVX, the 0405 2-element device, has been an enormous success in the Telecommunications
market. The array family of products also includes the 0612 4-element device as well as 0508 2-element and
4-element series, all of which have received widespread acceptance in the marketplace.
AVX capacitor arrays are available in X5R, X7R and NP0 (C0G) ceramic dielectrics to cover a broad range of
capacitance values. Voltage ratings from 6.3 Volts up to 100 Volts are offered. AVX also now offers a range of
automotive capacitor arrays qualified to AEC-Q200 (see separate table).
Key markets for capacitor arrays are Mobile and Cordless Phones, Digital Set Top Boxes, Computer
Motherboards and Peripherals as well as Automotive applications, RF Modems, Networking Products, etc.
FLEXISAFETM MLC Chips
For Ultra Safety Critical Applications
AVX have developed a range of components specifically for safety
critical applications.
Utilizing the award-winning FLEXITERM®layer in conjunction with the
cascade design previously used for high voltage MLCCs, a range of
ceramic capacitors is now available for customers who require
components designed with an industry leading set of safety features.
The FLEXITERM®layer protects the component from any damage to the
ceramic resulting from mechanical stress during PCB assembly or use
with end customers. Board flexure type mechanical damage accounts
for the majority of MLCC failures. The addition of the cascade structure
protects the component from low insulation resistance failure resulting
from other common causes for failure; thermal stress damage, repetitive
strike ESD damage and placement damage. With the inclusion of the
cascade design structure to complement the FLEXITERM®layer, the
FLEXISAFETM range of capacitors has unbeatable safety features.
FS03
Size
FS03 = 0603
FS05 = 0805
FS06 = 1206
FS10 = 1210
5
Voltage
Y = 16V
3 = 25V
5 = 50V
1 = 100V
C
Dielectric
X7R = C
104
Capacitance
Code (In pF)
2 Sig. Digits
+ Number of Zeros
e.g. 10μF =106
K
Capacitance
Tolerance
J = ±5%
K = ±10%
M = ±20%
HOW TO ORDER
FLEXISAFETM X7R RANGE
Q
Failure Rate
A = Commercial
4 = Automotive
Q = APS
Z
Terminations
Z = FLEXITERM®
X = FLEXITERM®
with 5%
min lead
2
Packaging
2 = 7" Reel
4 = 13" Reel
A
Special
Code
A = Std. Product
Qualified
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/flexisafe.pdf
Capacitance 0603 0805 1206 1210
Code nF 16 25 50 100 16 25 50 16 25 50 16 25 50
102 1
182 1.8
222 2.2
332 3.3
472 4.7
103 10
123 12
153 15
183 18
223 22
273 27
333 33
473 47
563 56
683 68
823 82
104 100
124 120
154 150
224 220
334 330
474 470
28 | www.avx.com
Automotive Capacitor Arrays
AEC-Q200 Series NP0/C0G, X7R Dielectric and X8R Dielectric
As the market leader in the development and manufacture of capacitor arrays AVX is pleased to
offer a range of AEC-Q200 qualified arrays to compliment our product offering to the Automotive
Industry. Both the AVX 0612 and 0508 4-element capacitor array styles are qualified to the AEC-
Q200 automotive specifications.
AEC-Q200 is the Automotive Industry qualification standard and a detailed qualification package is
available on request.
All AVX automotive capacitor array production facilities are certified to ISO/TS 16949:2002.
HOW TO ORDER
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/caparray.pdf
W
Style
W = RoHS
L = Tin/Lead
3
Case
Size
1 = 0405
2 = 0508
3 = 0612
A
Array
4
Number
of Caps
Y
Voltage
Z = 10V
Y = 16V
3 = 25V
5 = 50V
1 = 100V
C
Dielectric
A = NP0
C = X7R
F = X8R
104
Capacitance
Code (In pF)
Significant Digits
+ Number of Zeros
e.g. 10μF=106
K
Capacitance
Tolerance
*J = ±5%
*K = ±10%
M = ±20%
4
Failure Rate
4 = Automotive
2A
Packaging
& Quantity Code
2A = 7" Reel (4000)
4A = 13" Reel (10000)
2F =
7" Reel
(1000)
SIZE 0508 0508 0612 0405
No. of Elements
2442
WVDC 10
16 25 50 100 16 25 50 100 10 16 25 50 100 16
101 Cap 100
121 (pF) 120
151 150
181 180
221 220
271 270
331 330
391 390
471 470
561 560
681 680
821 820
102 1000
122 1200
152 1500
182 1800
222 2200
272 2700
332 3300
392 3900
472 4700
562 5600
682 6800
822 8200
103 Cap 0.010
123 (μF) 0.012
153 0.015
183 0.018
223 0.022
273 0.027
333 0.033
393 0.039
473 0.047
563 0.056
683 0.068
823 0.082
104 0.10
124 0.12
154 0.15
224 0.22
SIZE 0405 0508 0508 0612
No. of Elements 2
24 4
WVDC
50 50 16 25 50 100 16 25 50 100
1R0 Cap 1.0
1R2 (pF) 1.2
1R5 1.5
1R8 1.8
2R2 2.2
2R7 2.7
3R3 3.3
3R9 3.9
4R7 4.7
5R6 5.6
6R8 6.8
8R2 8.2
100 10
120 12
150 15
180 18
220 22
270 27
330 33
390 39
470 47
560 56
680 68
820 82
101 100
121 120
151 150
181 180
221 220
271 270
331 330
391 390
471 470
561 560
681 680
821 820
102 1000
122 1200
152 1500
182 1800
222 2200
272 2700
332 3300
392 3900
472 4700
562 5600
682 6800
822 8200
X7R X8R
NP0/C0G
*Contact factory for availability by part number for K = ±10% and J = ±5% tolerance.
T
Terminations
T = Plated Ni and Sn**
Z = FLEXITERM®**
B = 5% min lead
X = FLEXITERM®with
5% min lead
**RoHS compliant
= X7R
= Under development
= X8R
= Under development
= NP0/C0G
www.avx.com | 29
TurboCapTM
High-CV SMPS Capacitors
The TurboCapTM, MLC capacitors from AVX Corporation are characterized with very high
capacitance in a small volume. By vertical stacking of the ceramic elements, the footprint
required for mounting the capacitors is greatly reduced. TurboCapsTM are ideally suited as
filters in the input and output stages of switch mode power supplies (SMPS). With their
ultra-low ESR, these capacitors are designed to handle high ripple current at high
frequencies and high power levels. The DIP leads in either thru-hole or surface mount
configurations offer superior stress relief to the ceramic elements. The leads effectively
decouple the parts from the board and minimize thermally or mechanically induced stresses
encountered during assembly, temperature cycling or other environmental conditions.
Check for up-to-date CV Tables at
http://www.avx.com/docs/Catalogs/turbocap.pdf
HOW TO ORDER
ST12
AVX
Style
ST12
ST20
5
Voltage
3 = 25V
5 = 50V
1 = 100V
C
Temperature
Coefficient
X7R = C
186
Capacitance Code
(2 significant digits
+ no. of zeros)
1 pF = 105
10 pF = 106
100 pF = 107
M
Capacitance
Tolerance
M = ±20%
A
Test Level
A = Standard
N
Termination
N = Straight Lead
J = Leads formed in
L = Leads formed out
03
Number
of Leads
Per Side
03 = 3
05 = 5
10 = 10
ST12 ST20
Voltage
Cap (μF) 50V 100V 25V 50V 100V 500V
.82
1.3
2.7
8.2 ...03
12 ...05
14 ...03
18 ...03
22 ...10 ...05
27 ...05 ...03
47 ...05 ...10
50 ...10
68 ...03
100 ...05 ...10
220 ...10
CAPACITANCE (μF)
Development
Numbers inside shaded
areas refer to the number
of leads per side (the last
two digits of the part
number.
30 | www.avx.com
MH Series
Lead Free Ceramic Capacitor in Molded SM Leadframe
AVX is pleased to introduce the MH range of multi layer ceramic capacitors. The MH
components are surface mount molded parts with a multi layer ceramic insert.
MH capacitors combine the ceramic attributes of very low ESR, non polar construction,
excellent high frequency behavior, excellent voltage stress capabilities and wide
temperature range; with the enhanced mechanical protection of a molded case.
The MH range provides a lead free solution to customers who have previously been unable
to use large case ceramic capacitors because of mechanical stressing concerns.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/mh.pdf
HOW TO ORDER
MH
MH
Series
V
Case
Size
1
MLCC
Count
1
Voltage
3 = 25V
5 = 50V
1 = 100V
C
Dielectric
C = X7R
225
Capacitance
Code (In pF)
2 Sig. Digits +
Number of Zeros
M
Capacitance
Tolerance
K = ±10%
M = ±20%
A
Failure
Rate
A = Not
Applicable
T
Terminations
T = Tin Plated
2
Packaging
2 = 7" Reel
4 = 13" Reel
6 = Waffle
Pack
A
Special
Code
A = Standard
MH X7R TARGET RANGE
Cap μF 25V 50V 100V
105 1.0
125 1.2
155 1.5
185 1.8
225 2.2
275 2.7
335 3.3
395 3.9
475 4.7
565 5.6
685 6.8
825 8.2
106 10
126 12
156 15
186 18
226 22
276 27
336 33
396 39
476 47
TS 16949, ISO 14001
Certified Manufacture
LEAD-FREE COMPATIBLE
COMPONENT
www.avx.com | 31
Leaded SMPS MLCC
SK Series for Output Filtering
AVX SK styles are conformally coated MLC capacitors for input or output filtering in
switch mode power supplies. They are specially processed to handle high currents
and are low enough in cost for commercial SMPS application.
HOW TO ORDER
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/sk.pdf
Note 1: No suffix signifies bulk packaging, which
is AVX standard packaging. SK01, SK*3,
SK*4, SK*5, SK*6, SK*9 & SK*0 are
available taped and reel per EIA-468. Use
suffix “TR1” if tape & reel is required.
Note: Capacitors with X7R and Z5U dielectrics are not intended for applications
across AC supply mains or AC line filtering with polarity reversal. Contact plant
for recommendations.
*Hi-Rel screening for C0G and X7R only. Screening consists of 100% Group A
(B Level), Subgroup 1 per MIL-PRF-49470.
Z5U Capacitance Range (μF)
Style 25 WVDC 50 WVDC 100 WVDC 200 WVDC
min./max. min./max. min./max. min./max.
SK01
.10/1.2 .10/0.82 .10/0.47 .10/0.33
SK03/SK53
.10/5.6 .10/3.30 .10/2.20 .10/1.50
SK04/SK54
1.0/10.0 1.0/8.20 .10/4.70 .10/3.30
SK05/SK55
1.0/18.0 1.0/10.00 1.0/6.80 .10/4.70
SK06/SK56
1.0/47.0 1.0/39.00 1.0/22.00 1.0/15.00
SK07
1.0/68.0 1.0/47.00 1.0/27.00 1.0/18.00
SK08
82/120.0 56/100.00 33/47.00 22/33.00
SK09/SK59
1.0/27.0 1.0/18.00 1.0/10.00 1.0/6.80
SK10/SK60
1.0/56.0 1.0/39.00 1.0/22.00 1.0/18.00
C0G Capacitance Range (μF) X7R Capacitance Range (μF)
Style 25 50 100 200 500
WVDC WVDC WVDC WVDC WVDC
min./max. min./max. min./max. min./max. min./max.
SK01
.001/0.015 .001/0.012 .001/0.010 .0010/0.0056 .0010/0.0018
SK03/SK53
.01/0.056 .01/0.047 .01/0.039 .001/0.022 .001/0.0068
SK04/SK54
.01/0.12 .01/0.10 .01/0.082 .01/0.047 .001/0.015
SK05/SK55
.01/0.18 .01/0.15 .01/0.12 .01/0.068 .001/0.022
SK06/SK56
.10/0.56 .01/0.47 .01/0.39 .01/0.22 .01/0.068
SK07
.10/0.68 .01/0.56 .01/0.47 .01/0.27 .01/0.082
SK08
.82/1.20 .68/1.10 .56/0.82 .33/0.47 .10/0.15
SK09/SK59
.10/0.27 .01/0.22 .01/0.18 .01/0.10 .001/0.039
SK10/SK60
.10/0.68 .01/0.56 .01/0.47 .01/0.27 .01/0.082
Style 25 50 100 200 500
WVDC WVDC WVDC WVDC WVDC
min./max. min./max. min./max. min./max. min./max.
SK01
.01/0.39 .01/0.33 .01/0.27 .01/0.12 .001/0.047
SK03/SK53
.10/2.2 .10/1.8 .01/1.5 .01/0.56 .01/0.27
SK04/SK54
.10/4.7 .10/3.3 .10/2.7 .01/1.0 .01/0.47
SK05/SK55
.10/6.8 .10/5.6 .10/3.9 .10/1.8 .01/0.68
SK06/SK56
1.0/15 1.0/10 .10/5.6 .10/3.9 .10/1.5
SK07
1.0/18 1.0/14 1.0/8.2 .10/4.7 .10/2.2
SK08
22/33 15/22 10/15 5.6/8.2 2.2/3.9
SK09/SK59
.10/8.2 .10/5.6 .10/3.3 .10/2.2 .10/1.2
SK10/SK60
1.0/18 1.0/12 .10/6.8 .10/4.7 .10/2.2
SK
Style
01
Size
3
Voltage
3 = 25V
5 = 50V
1 = 100V
2 = 200V
7 = 500V
E
Temperature
Coefficient
Z5U = E
X7R = C
C0G = A
125
Capacitance
Code
(2 significant digits
+ no. of zeros)
22 nF = 223
220 nF = 224
1 μF = 105
100 μF = 107
Z
Capacitance
Tolerance
C0G:
J = ±5%
K = ±10%
M = ±20%
X7R:
K = ±10%
M = ±20%
Z = +80, -20%
Z5U:
M = ±20%
Z = +80, -20%
P = GMV
(+100, -0%)
A
Test Level
A = Standard
B = Hi-Rel*
A
Leads
A = Tin/Lead
R = RoHS
Compliant
*
Packaging
(See Note
1)
32 | www.avx.com
Leaded SMPS MLCC
SE Series of Extended Ranges
AVX SE styles offer capacitance extension to popular SK ranges. The CV product
for SE-series, X7R capacitors (TCC: ±15% over -55 to +125°C) compares favorably
to high CV ranges offered by other suppliers in much less stable Y5U dielectric
(TCC: +22/-56% over -30 to +85°C). SE style capacitors are conformally coated
and are designed for input and output filtering applications in switch mode power
supplies.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/se.pdf
HOW TO ORDER
Note 1: No suffix signifies bulk packaging, which is
AVX standard packaging. Parts available
tape and reel per EIA-468. Use suffix “TR1”
if tape & reel is required.
Note: Capacitors with X7R dielectrics are not intended for applications across AC
supply mains or AC line filtering with polarity reversal. Contact plant for
recommendations.
*Hi-Rel screening consists of 100% Group A, Subgroup 1 per MIL-PRF-39014.
X7R Capacitance Range (μF)
Style 25 50 100
WVDC WVDC WVDC
min./max. min./max. min./max.
SE01
0.47/1.5 0.39/1.0 0.33/0.68
SE03/SE53
2.7/6.8 2.2/4.7 1.8/3.3
SE04/SE54
5.6/12 3.9/10 3.3/6.8
SE05/SE55
8.2/18 6.8/12 4.7/10.0
SE06/SE56
18/39 12/27 6.8/15
SE
Style
01
Size
3
Voltage
3 = 25V
5 = 50V
1 = 100V
C
Temperature
Coefficient
X7R = C
125
Capacitance
Code
(2 significant digits
+ no. of zeros)
22 nF = 223
220 nF = 224
1 μF = 105
100 μF = 107
M
Capacitance
Tolerance
X7R:
K = ±10%
M = ±20%
Z = +80,
-20%
A
Test Level
A = Standard
B = Hi-Rel*
A
Leads
A = Tin/Lead
R = RoHS
Compliant
*
Packaging
(See Note 1)
www.avx.com | 33
X7R Stable Dielectric
RH31
Commercial SMT SMPS Capacitors
RH Series for I/O Filtering in DC-DC Converters
This range of uncoated MLC capacitors are processed for input and output filter
capacitors in high frequency DC-DC converter applications above 10 Watts e.g.
telecomms and instrumentation, where high volume and low cost is required. These
products are available in surface mount ‘J’ leaded versions and can be supplied in
bulk and tape/reel packaging.
• 0.047 μF to 47.0 μF • Low ESR/ESL
• 25V to 500 VDC • X7R Dielectric
• -55ºC to +125ºC
HOW TO ORDER
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/rh.pdf
For availability of further parts in the RH21/RH22 Series, contact manufacturing.
RH41
RH42
RH41
RH42
RH41
RH42
RH21
RH21
RH22
RH22
RH21
RH22
RH31
RH32
RH31
RH32
RH31
RH32
RH32
RH41
RH42
RH51
RH52
RH51
RH52
RH51
RH52
RH51
RH52
RH61
RH62
RH61
RH62
RH61
RH62
RH61
RH62
RH
Style
Code
31
Size
Code
5
Voltage
Code
3 = 25V
5 = 50V
1 = 100V
2 = 200V
7 = 500V
C
Dielectric
Code
C = X7R
225
Capacitance
Code
2 Sig. Digits +
Number of Zeros
Examples:
105 = 1 μF
104 = 0.1 μF
M
Capacitance
Tolerance
K = ±10%
M = ±20%
A
Specification
Code
A = Non customized
3
Package
Code
3 = Waffle Pack
A = Tape & Reel
0
Lead Dia.
Code
0 = Standard
R = RoHS
Compliant
A
Lead Space
Code
A = Standard
3
Lead Style
Code
3 = ‘J’ Lead
RH21/RH22 RH31/RH32 RH41/RH42 RH51/RH52 RH61/RH62
Style Style Style Style Style
Voltage DC
Cap μF 25 50 100 200 500 50 100 200 500 50 100 200 500 50 100 200 500 50 100 200 500
0.047
0.056
0.068
0.082
0.1
0.12
0.15
0.18
0.22
0.27
0.33
0.39
0.47
0.56
0.68
0.78
0.82
1
1.2
1.5
1.8
2.2
2.7
3
3.3
3.9
4.4
4.7
5.6
6.8
8.2
10
12
15
18
22
27
33
39
47
34 | www.avx.com
www.avx.com | 35
Stacked Leaded MLC Capacitors
SM Series
The SMPS capacitors are designed for high current, high-power and high-temperature applications.
These capacitors have very low ESR (Equivalent Series Resistance) and ESL (Equivalent Series
Inductance). SMPS Series capacitors offer design and component engineers a proven technology
specifically designed for programs requiring high reliability performance in harsh environments.
SM0
AVX Style
Size
SM0 = Uncoated
SM5 = Epoxy
Coated
1
Size
7
Voltage
5 = 50V
1 = 100V
2 = 200V
7 = 500V
C
Temperature
Coefficient
C0G = A
X7R = C
106
Capacitance Code
(2 significant digits +
no. of zeros)
10 pF = 100
100 pF = 101
1,000 pF = 102
22,000 pF = 223
220,000 pF = 224
1 μF = 105
10 μF = 106
100 μF = 107
M
Capacitance
Tolerance
C0G: J = ±5%
K = ±10%
M = ±20%
X7R: K = ±10%
M = ±20%
Z = +80%,
-20%
A
Test Level
A = Standard
N
Termination
N = Straight Lead
J = Leads formed in
L = Leads formed out
P = P Style Leads
Z = Z Style Leads
650
Height
Max Dimension
“A”
120 = 0.120"
240 = 0.240"
360 = 0.360"
480 = 0.480"
650 = 0.650"
Note: Capacitors with X7R and Z5U dielectrics are not intended for applications
across AC supply mains or AC line filtering with polarity reversal. Contact plant
for recommendations.
HOW TO ORDER AVX Styles: SM-1, SM-2, SM-3, SM-4, SM-5, SM-6
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/rm01-06.pdf
CAPABILITY
X7R X7R
Case code Voltage Cap range Cap range Tolerances Configurations
Min μF Max μF
50 1.2 5.4 10 & 20% N, J, L Leads
5100 0.68 3.3 10 & 20% N, J, L Leads
200 0.47 1.5 10 & 20% N, J, L Leads
500 0.15 0.68 10 & 20% N, J, L Leads
50 6.8 15.0 10 & 20% N, J, L Leads
4100 3.9 8.2 10 & 20% N, J, L Leads
200 1.8 3.9 10 & 20% N, J, L Leads
500 0.8 1.8 10 & 20% N, J, L Leads
50 18.0 47.0 10 & 20% N, J, L Leads
3100 10.0 27.0 10 & 20% N, J, L Leads
200 4.7 12.0 10 & 20% N, J, L Leads
500 2.5 5.4 10 & 20% N, J, L Leads
50 120.0 150.0 10 & 20% N, J, L Leads
2100 68.0 82.0 10 & 20% N, J, L Leads
200 33.0 39.0 10 & 20% N, J, L Leads
500 15.0 18.0 10 & 20% N, J, L Leads
50 56.0 100.0 10 & 20% N, J, L Leads
1100 33.0 56.0 10 & 20% N, J, L Leads
200 15.0 27.0 10 & 20% N, J, L Leads
500 6.8 12.0 10 & 20% N, J, L Leads
50 180.0 270.0 10 & 20% N, J, L Leads
6100 100.0 180.0 10 & 20% N, J, L Leads
200 47.0 120.0 10 & 20% N, J, L Leads
500 22.0 39.0 10 & 20% N, J, L Leads
Stacked Leaded MLC Capacitors
RM Series
The SMPS capacitors are designed for high current, high-power and high-temperature applications.
These capacitors have very low ESR (Equivalent Series Resistance) and ESL (Equivalent Series
Inductance). SMPS Series capacitors offer design and component engineers a proven technology
specifically designed for programs requiring high reliability performance in harsh environments.
RM0
AVX Style
Size
RM0 = Uncoated
RM5 = Epoxy
Coated
1
Size
7
Voltage
5 = 50V
1 = 100V
2 = 200V
7 = 500V
C
Temperature
Coefficient
C0G = A
X7R = C
106
Capacitance Code
(2 significant digits +
no. of zeros)
10 pF = 100
100 pF = 101
1,000 pF = 102
22,000 pF = 223
220,000 pF = 224
1 μF = 105
10 μF = 106
100 μF = 107
M
Capacitance
Tolerance
C0G: J = ±5%
K = ±10%
M = ±20%
X7R: K = ±10%
M = ±20%
Z = +80%,
-20%
A
Test Level
A = Standard
N
Termination
N = Straight Lead
J = Leads formed in
L = Leads formed out
P = P Style Leads
Z = Z Style Leads
650
Height
Max Dimension
“A”
120 = 0.120"
240 = 0.240"
360 = 0.360"
480 = 0.480"
650 = 0.650"
Note: Capacitors with X7R and Z5U dielectrics are not intended for applications
across AC supply mains or AC line filtering with polarity reversal. Contact plant
for recommendations.
HOW TO ORDER AVX Styles: RM-1, RM-2, RM-3, RM-4, RM-5, RM-6
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/rm01-06.pdf
CAPABILITY
X7R X7R
Case code Voltage Cap range Cap range Tolerances Configurations
Min μF Max μF
50 1.2 5.4 10 & 20% N, J, L Leads
5100 0.68 3.3 10 & 20% N, J, L Leads
200 0.47 1.5 10 & 20% N, J, L Leads
500 0.15 0.68 10 & 20% N, J, L Leads
50 6.8 15.0 10 & 20% N, J, L Leads
4100 3.9 8.2 10 & 20% N, J, L Leads
200 1.8 3.9 10 & 20% N, J, L Leads
500 0.8 1.8 10 & 20% N, J, L Leads
50 18.0 47.0 10 & 20% N, J, L Leads
3100 10.0 27.0 10 & 20% N, J, L Leads
200 4.7 12.0 10 & 20% N, J, L Leads
500 2.5 5.4 10 & 20% N, J, L Leads
50 120.0 150.0 10 & 20% N, J, L Leads
2100 68.0 82.0 10 & 20% N, J, L Leads
200 33.0 39.0 10 & 20% N, J, L Leads
500 15.0 18.0 10 & 20% N, J, L Leads
50 56.0 100.0 10 & 20% N, J, L Leads
1100 33.0 56.0 10 & 20% N, J, L Leads
200 15.0 27.0 10 & 20% N, J, L Leads
500 6.8 12.0 10 & 20% N, J, L Leads
50 180.0 270.0 10 & 20% N, J, L Leads
6100 100.0 180.0 10 & 20% N, J, L Leads
200 47.0 120.0 10 & 20% N, J, L Leads
500 22.0 39.0 10 & 20% N, J, L Leads
36 | www.avx.com
SMPS Stacked MLC Capacitors
SM9 Style Encapsulated in DAP (Diallyl Phthalate) Case
SM9
AVX Style
SM9 = Plastic Case
1
Size
7
Voltage
5 = 50V
1 = 100V
2 = 200V
7 = 500V
C
Temperature
Coefficient
C0G = A
X7R = C
Z5U = E
106
Capacitance
Code
(2 significant digits
+ number of zeros)
10 pF = 100
100 pF = 101
1,000 pF = 102
22,000 pF = 223
220,000 pF = 224
1μF = 105
10 μF = 106
100 μF = 107
M
Capacitance
Tolerance
C0G:
J = ±5%
K = ±10%
M = ±20%
X7R:
K = ±10%
M = ±20%
Z = +80%, -20%
Z5U:
Z = +80%, -20%
P = GMV
(+100, -0%)
A
Test Level
A = Standard
B = Hi-Rel*
N
Termination
N = Straight Lead
J = Leads formed in
L = Leads formed out
650
Height
Max
Dimension “A”
270 = 0.270"
390 = 0.390"
530 = 0.530"
660 = 0.660"
800 = 0.800"
HOW TO ORDER AVX Styles: SM91, SM92, SM93, SM94, SM95, SM96
Note: Capacitors with X7R and Z5U dielectrics are not intended for applications across
AC supply mains or AC line filtering with polarity reversal. Contact plant for recom-
mendations.
*Hi-Rel screening for C0G and X7R only. Screening consists of 100% Group A
(B Level), Subgroup 1 per MIL-PRF-49470.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/sm9.pdf
As the world’s leading manufacturer and innovator in application specific multilayer
ceramic (ASMLC) capacitors, AVX offers a unique technological and production
capability to the field. AVX actively pursues and satisfies the high reliability and custom
needs of a variety of governmental and industrial customers. Successful involvement in
missile programs, extensive work in ultra-high reliability tele communi cations and
sophisticated capacitor design applications – all have established AVX as the source for
advanced and high reliability ASMLC capacitors. Advanced Products are ISO9001
certified organizations for design and manufacturing of MLC capacitors.
www.avx.com | 37
Low Inductance Capacitors (RoHS)
LICC 0612/0508/0306/0204 LICC (Low Inductance Chip Capacitors)
The key physical characteristic determining equivalent series inductance (ESL) of a capacitor is
the size of the current loop it creates. The smaller the current loop, the lower the ESL.
A standard surface mount MLCC is rectangular in shape with electrical terminations on its
shorter sides. A Low Inductance Chip Capacitor (LICC) sometimes referred to as Reverse
Geometry Capacitor (RGC) has its terminations on the longer sides of its rectangular shape. The
image on the right shows the termination differences between an MLCC and an LICC.
When the distance between terminations is reduced, the size of the current loop is reduced.
Since the size of the current loop is the primary driver of inductance, an 0306 with a smaller
current loop has significantly lower ESL then an 0603. The reduction in ESL varies by EIA size,
however, ESL is typically reduced 60% or more with an LICC versus a standard MLCC.
AVX LICC products are available with a lead-free finish of plated Nickel/Tin.
MLCC LICC
HOW TO ORDER
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/licc.pdf
NOTE: Contact factory for availability of Termination and Tolerance Options for Specific Part Numbers.
SIZE 0204 0306 0508 0612
WVDC 4 6.3 10 16 4 6.3 10 16 25 50 6.3 10 16 25 50 6.3 10 16 25 50
CAP 0.001
(μF) 0.0022
0.0047
0.010
0.015
0.022
0.047
0.068
0.10
0.15
0.22
0.47
0.68
1.0
1.5
2.2
3.3
4.7
10
0306
Code Thickness
A 0.61 (0.024)
0508
Code Thickness
S0.56 (0.022)
V0.76 (0.030)
A 1.02 (0.040)
0612
Code Thickness
S0.56 (0.022)
V0.76 (0.030)
W 1.02 (0.040)
A 1.27 (0.050)
Solid = X7R = X5R
= X7S
mm (in.)
0204
Code Thickness
C0.35 (0.014)
= X6S
mm (in.)
mm (in.)
mm (in.)
0612
Size
0204
0306
0508
0612
Z
Voltage
4 = 4V
6 = 6.3V
Z = 10V
Y = 16V
3 = 25V
5 = 50V
D
Dielectric
C = X7R
D = X5R
W = X6S
Z = X7S
105
Capacitance
Code (In pF)
2 Sig. Digits +
Number of Zeros
M
Capacitance
Tolerance
K = ±10%
M = ±20%
A
Failure Rate
A = N/A
T
Terminations
T = Plated Ni
and Sn
2
Packaging
Available
2 = 7" Reel
4 = 13" Reel
A
Thickness
Thickness
mm (in)
0.35 (0.014)
0.56 (0.022)
0.61 (0.024)
0.76 (0.030)
1.02 (0.040)
1.27 (0.050)
38 | www.avx.com
MLCC LICC Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/licc.pdf
Low Inductance Capacitors (Tin/Lead)
LICC 0612/0508/0306 Tin/Lead Termination “B”
The key physical characteristic determining equivalent series inductance (ESL) of a capacitor is
the size of the current loop it creates. The smaller the current loop, the lower the ESL.
A standard surface mount MLCC is rectangular in shape with electrical terminations on its
shorter sides. A Low Inductance Chip Capacitor (LICC) sometimes referred to as Reverse
Geometry Capacitor (RGC) has its terminations on the longer sides of its rectangular shape.
The image on the right shows the termination differences between an MLCC and an LICC.
When the distance between terminations is reduced, the size of the current loop is reduced.
Since the size of the current loop is the primary driver of inductance, an 0306 with a smaller
current loop has significantly lower ESL then an 0603. The reduction in ESL varies by EIA size,
however, ESL is typically reduced 60% or more with an LICC versus a standard MLCC.
AVX LICC products are available with a lead termination for high reliability military and
aerospace applications that must avoid tin whisker reliability issues.
HOW TO ORDER
NOTE: Contact factory for availability of Termination and Tolerance Options for Specific Part Numbers.
SIZE LD15 LD16 LD17 LD18
WVDC 4 6.3 10 16 4 6.3 10 16 25 50 6.3 10 16 25 50 6.3 10 16 25 50
Cap1000 AAAA SSSSVSSSSV
(pF)2200 AAAA SSSSVSSSSV
4700 AAAA SSSSVSSSSV
Cap0.010 AAAA SSSSVSSSSV
(μF) 0.015 A A A A S S S S V S S S S W
0.022 A A A A S S S S V S S S S W
0.047 A A A S S S V A S S S S W
0.068 A A A S S S A A S S S V W
0.10 C C A A A S S V A A S S S V W
0.15 A A S S V S S S W W
0.22 A A S S A S S V
0.47 V V A S S V
0.68 A A V V W
1.0 A A A V V A
1.5 A W W
2.2 AA
3.3 A
4.7
10
WVDC 4 6.3 10 16 4 6.3 10 16 25 50 6.3 10 16 25 50 6.3 10 16 25 50
SIZE 0204 0306 0508 0612
LD18
Size
LD15 = 0204
LD16 = 0306
LD17 = 0508
LD18 = 0612
Z
Voltage
4 = 4V
6 = 6.3V
Z = 10V
Y = 16V
3 = 25V
5 = 50V
D
Dielectric
C = X7R
D = X5R
W = X6S
105
Capacitance
Code (In pF)
2 Sig. Digits +
Number of Zeros
M
Capacitance
Tolerance
K = ±10%
M = ±20%
A
Failure Rate
A = N/A
B
Terminations
B = 5% min
lead
2
Packaging
Available
2 = 7" Reel
4 = 13" Reel
A
Thickness
Thickness
mm (in)
0.35 (0.014)
0.56 (0.022)
0.61 (0.024)
0.76 (0.030)
1.02 (0.040)
1.27 (0.050)
0306
Code Thickness
A 0.61 (0.024)
0508
Code Thickness
S0.56 (0.022)
V0.76 (0.030)
A 1.02 (0.040)
0612
Code Thickness
S0.56 (0.022)
V0.76 (0.030)
W 1.02 (0.040)
A 1.27 (0.050)
Solid = X7R = X5R
= X7S
mm (in.)
0204
Code Thickness
C0.35 (0.014)
= X6S
mm (in.)
mm (in.)
mm (in.)
www.avx.com | 39
IDC Low Inductance Capacitors (RoHS)
0612/0508 Interdigitated Capacitors
Inter-Digitated Capacitors (IDCs) are used for both semiconductor package and board
level decoupling. The equivalent series inductance (ESL) of a single capacitor or an array
of capacitors in parallel determines the response time of a Power Delivery Network (PDN).
A designer can use many standard MLCCs in parallel to reduce ESL or a low ESL Inter-
Digitated Capacitor (IDC) device.
IDCs are typically used on packages of semiconductor products with power levels of 15
watts or greater. Inter-Digitated Capacitors are used on CPU, GPU, ASIC, and ASSP
devices produced on 0.13μ, 90nm, 65nm, and 45nm processes. IDC devices are used
on both ceramic and organic package substrates. These low ESL surface mount
capacitors can be placed on the bottom side or the top side of a package substrate.
IDCs are used for board level decoupling of systems with speeds of 300MHz or greater.
Low ESL IDCs free up valuable board space by reducing the number of capacitors
required versus standard MLCCs. There are additional benefits to reducing the number of
capacitors beyond saving board space including higher reliability from a reduction in the
number of components and lower placement costs based on the need for fewer
capacitors.
HOW TO ORDER
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/w2lw3l.pdf
= X7R
= X5R
= X7S
NOTE: Contact factory for availability of Termination and Tolerance Options for Specific Part Numbers.
Consult factory for
additional requirements
SIZE Thin 0508 0508 Thin 0612 0612
Length MM 2.03 ± 0.20 2.03 ± 0.20 3.20 ± 0.20 3.20 ± 0.20
(in.) (0.080 ± 0.008) (0.080 ± 0.008) (0.126 ± 0.008) (0.126 ± 0.008)
Width MM 1.27 ± 0.20 1.27 ± 0.20 1.60 ± 0.20 1.60 ± 0.20
(in.) (0.050 ± 0.008) (0.050 ± 0.008) (0.063 ± 0.008) (0.063 ± 0.008)
Terminal MM 0.50 ± 0.05 0.50 ± 0.05 0.80 ± 0.10 0.80 ± 0.10
Pitch (in.) (0.020 ± 0.002) (0.020 ± 0.002) (0.031 ± 0.004) (0.031 ± 0.004)
Thickness MM 0.55 MAX. 0.95 MAX. 0.55 MAX. 0.95 MAX.
(in.) (0.022) MAX. (0.037) MAX. (0.022) MAX. (0.037) MAX.
WVDC 4 6.3 10 16 25 4 6.3 10 16 25 4 6.3 10 16 4 6.3 10 16
Cap
(μF) 0.01
0.033
0.047
0.068
0.10
0.22
0.33
0.47
0.68
1.0
1.5
2.2
3.3
W
Style
3
IDC
Case Size
2 = 0508
3 = 0612
L
Low
Inductance
1
Number
of Terminals
1 = 8
Terminals
6
Voltage
4 = 4V
6 = 6.3V
Z = 10V
Y = 16V
3 = 25V
D
Dielectric
C = X7R
D = X5R
Z = X7S
225
Capacitance
Code (In pF)
2 Sig. Digits +
Number of Zeros
M
Capacitance
Tolerance
M = ±20%
A
Failure Rate
A = N/A
T
Terminations
T = Plated Ni
and Sn
3
Packaging
Available
1 = 7" Reel
3 = 13" Reel
A
Thickness
Max. Thickness
mm (in.)
A = 0.95 (0.037)
S = 0.55 (0.022)
40 | www.avx.com
IDC Low Inductance Capacitors (Tin/Lead)
0612/0508 Interdigitated Capacitors
HOW TO ORDER
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/l2l-l3l.pdf
NOTE: Contact factory for availability of Termination and Tolerance Options for Specific Part Numbers.
= X7R
= X5R
= X7S
Consult factory for
additional requirements
SIZE Thin 0508 0508 Thin 0612 0612
Length MM 2.03 ± 0.20 2.03 ± 0.20 3.20 ± 0.20 3.20 ± 0.20
(in.) (0.080 ± 0.008) (0.080 ± 0.008) (0.126 ± 0.008) (0.126 ± 0.008)
Width MM 1.27 ± 0.20 1.27 ± 0.20 1.60 ± 0.20 1.60 ± 0.20
(in.) (0.050 ± 0.008) (0.050 ± 0.008) (0.063 ± 0.008) (0.063 ± 0.008)
Terminal MM 0.50 ± 0.05 0.50 ± 0.05 0.80 ± 0.10 0.80 ± 0.10
Pitch (in.) (0.020 ± 0.002) (0.020 ± 0.002) (0.031 ± 0.004) (0.031 ± 0.004)
Thickness MM 0.55 MAX. 0.95 MAX. 0.55 MAX. 0.95 MAX.
(in.) (0.022) MAX. (0.037) MAX. (0.022) MAX. (0.037) MAX.
WVDC 4 6.3 10 16 25 4 6.3 10 16 25 4 6.3 10 16 4 6.3 10 16
Cap
(μF) 0.01
0.033
0.047
0.068
0.10
0.22
0.33
0.47
0.68
1.0
1.5
2.2
3.3
L
Style
3
IDC
Case Size
2 = 0508
3 = 0612
L
Low
Inductance
1
Number
of Terminals
1 = 8
Terminals
6
Voltage
4 = 4V
6 = 6.3V
Z = 10V
Y = 16V
3 = 25V
D
Dielectric
C = X7R
D = X5R
Z = X7S
225
Capacitance
Code (In pF)
2 Sig. Digits +
Number of Zeros
M
Capacitance
Tolerance
M = ±20%
A
Failure Rate
A = N/A
B
Terminations
B = 5%
min.
Lead
3
Packaging
Available
1 = 7" Reel
3 = 13" Reel
A
Thickness
Max. Thickness
mm (in.)
A = 0.95 (0.037)
S = 0.55 (0.022)
Inter-Digitated Capacitors (IDCs) are used for both semiconductor package and board
level decoupling. The equivalent series inductance (ESL) of a single capacitor or an array
of capacitors in parallel determines the response time of a Power Delivery Network (PDN).
A designer can use many standard MLCCs in parallel to reduce ESL or a low ESL Inter-
Digitated Capacitor (IDC) device.
IDCs are typically used on packages of semiconductor products with power levels of 15
watts or greater. Inter-Digitated Capacitors are used on CPU, GPU, ASIC, and ASSP
devices produced on 0.13μ, 90nm, 65nm, and 45nm processes. IDC devices are used
on both ceramic and organic package substrates. These low ESL surface mount
capacitors can be placed on the bottom side or the top side of a package substrate.
IDCs are used for board level decoupling of systems with speeds of 300MHz or greater.
Low ESL IDCs free up valuable board space by reducing the number of capacitors
required versus standard MLCCs. There are additional benefits to reducing the number of
capacitors beyond saving board space including higher reliability from a reduction in the
number of components and lower placement costs based on the need for fewer
capacitors.
www.avx.com | 41
LGA Low Inductance Capacitors
0204/0306/0805 Land Grid Arrays
Land Grid Array (LGA) capacitors are the latest family of low inductance MLCCs from AVX.
These new LGA products are the third low inductance family developed by AVX. The innova-
tive LGA technology sets a new standard for low inductance MLCC performance. Electronic
Products awarded its 2006 Product of the Year Award to the LGA Decoupling capacitor.
Our initial 2 terminal versions of LGA technology deliver the performance of an 8 terminal IDC
low inductance MLCC with a number of advantages including:
Simplified layout of 2 large solder pads compared to 8 small pads for IDCs
Opportunity to reduce PCB or substrate contribution to system ESL by using multiple
parallel vias in solder pads
Advanced FCT manufacturing process used to create uniformly flat terminations on the
capacitor that resist “tombstoning”
Better solder joint reliability
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/lga2t.pdf
HOW TO ORDER
LG
Style
1
Case
Size
1 = 0204
2 = 0306
C
= 0805
2
Number of
Terminals
2
6
Working
Voltage
4 = 4V
6 = 6.3V
Z = 10V
Z
Temperature
Characteristic
C = X7R
D = X5R
Z = X7S
W = X6S
104
Coded
Cap
M
Cap
Tolerance
M = 20%
A
Termination
Style
A = “U” Land
T
Termination
100% Sn*
*Contact factory for
other termination
finishes
2
Packaging
Tape & Reel
2 = 7" Reel
4 = 13" Reel
S
Thickness
S = 0.55mm
max
1
Number of
Capacitors
APPLICATIONS
Semiconductor Packages
Microprocessors/CPUs
Graphics Processors/GPUs
Chipsets
FPGAs
ASICs
Board Level Device Decoupling
Frequencies of 300 MHz or more
ICs drawing 15W or more
Low voltages
High speed buses
SIZE LG12 (0204) LG22 (0306) LGC2 (0805)
Length mm (in.) 0.50 (0.020) 0.76 (0.030) 2.06 (0.081)
Width mm (in.) 1.00 (0.039) 1.60 (0.063) 1.32 (0.052)
Temp. Char. X5R (D) X7S (Z) X6S (W) X7R (C) X5R (D) X7S (Z) X6S (W) X7R (C) X5R (D) X7S (Z) X6S (W)
Working Voltage 6.3 4 6.3 4 6.3 4 10 6.3 4 6.3 4 6.3 4 6.3 4 6.3 4 6.3 4 6.3 4 6.3 4
(6) (4) (6) (4) (6) (4) (Z) (6) (4) (6) (4) (6) (4) (6) (4) (6) (4) (6) (4) (6) (4) (6) (4)
Cap (μF) 0.010 (103)
0.022 (223)
0.047 (473)
0.100 (104)
0.220 (224)
0.330 (334)
0.470 (474)
1.000 (105)
2.200 (225)
= X7R = X5R = X7S = X6S
Please
contact AVX
for values
42 | www.avx.com
Low Inductance Capacitors
LICA®(Low Inductance Decoupling Capacitor Arrays)
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/licc.pdf
LICA®arrays utilize up to four separate capacitor sections in one ceramic
body. These designs exhibit a number of technical advancements:
Low Inductance features–
Low resistance platinum electrodes in a low aspect ratio pattern
Double electrode pickup and perpendicular current paths
C4 “flip-chip” technology for minimal interconnect inductance
HOW TO ORDER
LICA
Style
&
Size
3
Voltage
9 = 5V
Z = 10V
3 = 25V
T
Dielectric
D = X5R
T = T55T
S = High K
T55T
102
Cap/Section
(EIA Code)
102 = 1000 pF
103 = 10 nF
104 = 100 nF
M
Capacitance
Tolerance
M = ±20%
P = GMV
3
Height
Code
6 = 0.500mm
3 = 0.650mm
1 = 0.875mm
5 = 1.100mm
7 = 1.600mm
F
Termination
F = C4 Solder
Balls- 97Pb/3Sn
H = C4 Solder Balls
Low ESR
G = Lead Free SAC
R = Cr-Cu-Au
N = Cr-Ni-Au
V = Eutectic Lead-
Tin Bump-
37%Pb/63%Sn
X = None
C
Reel Packaging
M = 7" Reel
R = 13" Reel
6 = 2"x2" Waffle Pack
8 = 2"x2" Black
Waffle Pack
7 = 2"x2" Waffle Pack
w/ termination
facing up
A = 2"x2" Black
Waffle Pack
w/ termination
facing up
C = 4"x4" Waffle Pack
w/ clear lid
A
Inspection
Code
A = Standard
B = COTS-Plus
X = MIL-PRF-123
A
Code Face
A = Bar
B = No Bar
C = Dot, S55S
Dielectrics
D = Triangle
4
# of
Caps/Part
1 = one
2 = two
4 = four
NOTE: Contact factory for
availability of Termination and
Tolerance Options for Specific
Part Numbers.
LICA COMMON PART NUMBER LIST
Part Number Voltage Thickness (mm) Capacitors per
Package
LICA3T193M3FC4AA 25 0.650 4
LICA3T153P3FC4AA 25 0.650 4
LICA3T134M1FC1AA 25 0.875 1
LICA3T104P1FC1AA 25 0.875 1
LICA3T333M1FC4AA 25 0.875 4
LICA3T263P3FC4AA 25 0.650 4
LICA3T244M5FC1AA 25 1.100 1
LICA3T194P5FC1AA 25 1.100 1
LICA3T394M7FC1AB 25 1.600 1
LICA3T314P7FC1AB 25 1.600 1
Extended Range
LICAZT623M3FC4AB 10 0.650 4
LICA3T104M3FC1A 25 0.650 1
LICA3T803P3FC1A 25 0.650 1
LICA3T423M3FC2A 25 0.650 2
LICA3T333P3FC2A 25 0.650 2
LICA3S253M3FC4A 25 0.650 4
LICAZD753M3FC4AD 10 0.650 4
LICAZD504M3FC1AB 10 0.650 1
LICAZD604M7FC1AB 10 1.600 1
LICA3D193M3FC4AB 25 0.650 4
TERMINATION OPTIONS
www.avx.com | 43
TAJ Series
Standard Tantalum Capacitors
• General purpose SMT chip tantalum series
• 6 case sizes available
• Low profile options available
• CV range: 0.10-2200μF / 2.5-50V
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/taj.pdf
HOW TO ORDER
TAJ
Type
C
Case Size
106
Capacitance Code
pF code: 1st two
digits represent
significant figures
3rd digit represents
multiplier (number of
zeros to follow)
M
Tolerance
K=±10%
M=±20%
035
Rated DC Voltage
002=2.5Vdc
004=4Vdc
006=6.3Vdc
010=10Vdc
016=16Vdc
020=20Vdc
025=25Vdc
035=35Vdc
050=50Vdc
063=63Vdc
R
Packaging
R = 7" T/R
(Lead Free since
production date 1/1/04)
S = 13" T/R
(Lead Free since
production date 1/1/04)
A = Gold Plating 7" Reel
B = Gold Plating 13" Reel
H = Tin/Lead 7" reel
(Contact Manufacturer)
K = Tin/Lead 13" reel
(Contact Manufacturer)
H, K = Non RoHS
NJ
Specification
Suffix
NJ = Standard
Suffix
Additional
characters may be
added for special
requirements
V = Dry pack Option
(selected codes only)
LEAD-FREE COMPATIBLE
COMPONENT
Capacitance Rated voltage DC (V
R
) to 85°C
μF Code 2.5V (e) 4V (G) 6.3V (J) 10V (A) 16V (C) 20V (D) 25V (E) 35V (V) 50V (T) 63V
0.10 104 AA
0.15 154 AA/B
0.22 224 AA/B
0.33 334 AB
0.47 474 A A/B A/B/C
0.68 684 AA A/B A/B/C
1.0 105 AAAA/BA
(M)
/B/C
1.5 155 AAA A/B A/B/C C/D
2.2 225 AAA/BA/B A/B A/B/C C/D
3.3 335 AAA/B A/B A/B/CB/C C/D
4.7 475 AAA/BA/B A/B/CA/B/CB/C/D C/D
6.8 685 AA/BA/BA/B/CA/B/C B/C C/D C/D
10 106 AA/B A/B/C A/B/C A
(M)
*/B/C B/C/D C/D/E D/E/V
15 156 A/B A/BA/B/CA
(M)
/B/C B/C/DC/D C/D D/E/V E
(M)
*
22 226 AA/B/C A/B/CB/C/D B/C/D C/D D/E V V
(M)
*
33 336 A A/BA/B/C A/B/C/DB/C/D C/D D/E D/E/V
47 476 A A/BA/B/C/DB/C/DC/D C/D/E D/E E/V
68 686 A A/B/CB/C/DB/C/DC/D C
(M)
/D/E E/V V
(M)
100 107 A/B A/B/CB/C/DB
(M)
/C/D/EC/D/E D/E/V E
(M)
/V
150 157 B B/C B
(M)
/C/D C/D/E D/E/V E/V V
(M)
220 227 B/D B
(M)
/C/D C/D/E C/D/E E/V
330 337 D C/D/EC/D/E D/E/V V
470 477 C/D C/D/E D/E/V E/V
680 687 C/D/E D/E E/V
1000 108 D
(M)
/E D/E/V E
(M)
/V
(M)
1500 158 D/E/V
(M)
E/V
(M)
2200 228 V
(M)
Non preferred Ratings - not recommended for new designs,
higher voltage or smaller case size substitution are offered.
Released codes
(M tolerance only)
Engineering samples - please contact manufacturer
*Codes under development - subject to change
Note: Voltage ratings are minimum values. AVX reserves the right to supply
higher ratings in the same case size, to the same reliability standards.
44 | www.avx.com
TAJ Low Profile
Low Profile Tantalum Capacitors
• General purpose SMT chip tantalum series
• CV range: 0.10-1000μF / 2.5-50V
• 9 case sizes in low profile option available
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/tajlp.pdf
107
Capacitance Code
pF code: 1st two
digits represent
significant figures
3rd digit represents
multiplier (number of
zeros to follow)
M
Tolerance
K=±10%
M=±20%
010
Rated DC Voltage
002=2.5Vdc
004=4Vdc
006=6.3Vdc
010=10Vdc
016=16Vdc
020=20Vdc
025=25Vdc
035=35Vdc
050=50Vdc
R
Packaging
R = 7" T/R
(Lead Free since
production date 1/1/04)
S = 13" T/R
(Lead Free since
production date 1/1/04)
A = Gold Plating
7" Reel
B = Gold Plating
13" Reel
HOW TO ORDER
NJ
Specification
Suffix
NJ = Standard
Suffix
Additional
characters may be
added for special
requirements
V = Dry pack Option
(selected codes only)
TAJ
Type
C
Case Size
LEAD-FREE COMPATIBLE
COMPONENT
Capacitance Rated voltage DC (VR) to 85°C
μF Code 2.5V (e) 4V (G) 6.3V (J) 10V (A) 16V (C) 20V (D) 25V (E) 35V (V) 50V (T)
0.10 104 R/S R/S S
0.15 154 R/S R R/S S
0.22 224 R/S R R/S S
0.33 334 R/S R R/S S/T
0.47 474 R/S R/S R/S/T S/T
0.68 684 R/S R/S/T R/S P/S/T
1.0 105 R/S R/S/T R/S/T P/R/S P/S/T W
1.5 155 R/S R/S R/S P/R/S/T P/S/T T W
2.2 225 R/S R/S R/S R/S/T P/R/S/T T T
3.3 335 R/S R/S R/S/T R/S/T T T/W W Y
4.7 475 R R/S R/S/T R/S/T K/P/S/T T T/W W Y
6.8 685 R R/S/T R/S/T P/R/S/T S/T T W Y Y
10 106 R/S R/S/T P/R/S/T K/P/R
(M)
/S/T T/W W W X/Y
15 156 R R/S/T K/P/R/S/T S/T/W T
(M)
/W W Y Y
22 226 P/R K/P/R/S/T K/P
(M)
/S/T/W T/W W W/Y Y Y
33 336 K/P/S K/P
(M)
/S/T/W T/W W W/Y X/Y Y
47 476 P
(M)
/S T/W T/W W/Y W/X/Y X/Y Y
68 686 T T/W W W/Y F/X/Y Y
100 107 T/W T
(M)
/W W/Y W/X/Y F
(M)
/Y
150 157 T
(M)
/W W/Y W/X/Y F/X
(M)
/Y Y
(M)
220 227 W/Y W/X/Y F/X/Y Y
330 337 W
(M)
/Y F/X/Y Y
470 477 F/Y Y Y
680 687 Y Y
(M)
1000 108 Y
(M)
Released codes
(M tolerance only)
Engineering samples - please contact manufacturer
*Codes under development - subject to change
Note: Voltage ratings are minimum values. AVX reserves the right to supply higher
ratings in the same case size, to the same reliability standards.
www.avx.com | 45
TACmicrochip®
Small Case Size Tantalum Capacitors
• The world’s smallest surface mount tantalum capacitor
• CV range: 0.47 - 150μF / 2 - 25V
• 5 case sizes available
• Low profile options available
• Industrial and hi-rel medical applications
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/tac.pdf
TAC
Type
TACmicrochip®
L
Case Size
226
Capacitance Code
pF code: 1st two digits
represent significant figures,
3rd digit represents multiplier
(number of zeros to follow)
M
Tolerance
K=±10%
M=±20%
HOW TO ORDER
004
Rated
DC Voltage
002=2Vdc
003=3Vdc
004=4Vdc
006=6.3Vdc
010=10Vdc
016=16Vdc
020=20Vdc
025=25Vdc
050=50Vdc
TA
Alternative
characters
may be used
for special
requirements
R
Packaging
R, P = 7" Standard Tin
Termination Plastic Tape
X, Q = 414" Standard Tin
Termination Plastic Tape
A = 7" Gold Termination
Plastic Tape
F = 414" Gold Termination
Plastic Tape
LEAD-FREE COMPATIBLE
COMPONENT
Capacitance Voltage Rating DC (VR) at 85°C
μF Code 2.0V 3.0V 4.0V 6.3V 10V 16V 20V 25V 50V
0.10 104 K*
0.15 154
0.22 224
0.33 334
0.47 474 K(M)/L L
0.68 684 K(M)/L L
1.0 105 K/L K/L L R A*
1.5 155 L L L
2.2 225 K(M)/L L K(M)/L L L
3.3 335 K(M)/L K(M)/L L L L/R R* R(M)
4.7 475 K(M)/L K(M)/L L L L/R R(M) A*
6.8 685 K(M)/L L L L/R L/R
10 106 K(M)/L L L/R L(M)/R L/R R
15 156 R L(M)/R L(M)/R R
22 226 R L(M)/R L(M)/R R R
33 336 R R R R A(M)/B*/R(M)
47 476 R R R A/R(M) B
68 686 R(M) R(M) A(M) A(M)*
100 107 A(M)/R(M) A(M)/R(M) A(M)
150 157 A(M)
220 227
Released codes (M tolerance only)
*Codes under development - subject to change
Standard Height Profile: A, B, K, L, R Case
Low Profile: H, J, T, U, V Case
Note: Voltage ratings are minimum values. AVX reserves the right to supply
higher ratings in the same case size, to the same reliability standards.
46 | www.avx.com
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/taclp.pdf
TACmicrochip®Low Profile
Low Profile Small Case Size Tantalum Capacitors
• The world’s smallest surface mount tantalum capacitor
• CV range: 1.0-220μF / 2-16V
• 5 case sizes available in low profile option
• Industrial and hi-rel medical applications
TAC
Type
TACmicrochip®
U
Case Size
475
Capacitance Code
pF code: 1st two digits
represent significant figures,
3rd digit represents multiplier
(number of zeros to follow)
M
Tolerance
K=±10%
M=±20%
004
Rated
DC Voltage
002=2Vdc
003=3Vdc
004=4Vdc
006=6.3Vdc
010=10Vdc
016=16Vdc
HOW TO ORDER
TA
Alternative
characters
may be used
for special
requirements
R
Packaging
R = 7" Standard Tin
Termination Plastic Tape
X = 414" Standard Tin
Termination Plastic Tape
A = 7" Gold Termination
Plastic Tape
F = 414" Gold Termination
Plastic Tape
LEAD-FREE COMPATIBLE
COMPONENT
Capacitance Voltage Rating DC (VR) at 85°C
μF Code 2.0V 3.0V 4.0V 6.3V 10V 16V
1.0 105 U(M)
1.5 155
2.2 225 U(M)
3.3 335 U(M)
4.7 475 U(M)
6.8 685
10 106 U(M) J(M) H/V(M)
15 156 HV
(M)
22 226 H
33 336 H
47 476 H(M) T
68 686 T*
100 107 T(M)
150 157
220 227 T(M)
Released codes (M tolerance only)
*Codes under development - subject to change
Standard Height Profile: A, B, K, L, R Case
Low Profile: H, J, T, U, V Case
Note: Voltage ratings are minimum values. AVX reserves the right to supply
higher ratings in the same case size, to the same reliability standards.
www.avx.com | 47
TLC Series
Consumer Series Small Case Size Tantalum Capacitors
• High capacitance vs. voltage ratio
• Super high volumetric efficiency
• CV range: 0.47-220μF / 2-35V
• 10 case sizes available
• Consumer applications (portable handheld electronics,
cellular phones, digital equipments etc.)
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/tlc.pdf
TLC
Type
L
Case Size
226
Capacitance Code
pF code: 1st two digits
represent significant figures,
3rd digit represents multiplier
(number of zeros to follow)
M
Tolerance
M=±20%
006
Rated
DC Voltage
002=2Vdc
003=3Vdc
004=4Vdc
006=6.3Vdc
010=10Vdc
016=16Vdc
020=20Vdc
025=25Vdc
035=35Vdc
HOW TO ORDER
R
Packaging
R, P = 7" Standard Tin
Termination Plastic Tape
X, Q = 414" Standard Tin
Termination Plastic Tape
A = 7" Gold Termination
Plastic Tape
F = 414" Gold Termination
Plastic Tape
TA
Standard
Suffix
OR
4000
ESR in mΩ
LEAD-FREE COMPATIBLE
COMPONENT
Capacitance Voltage Rating DC (V
R
) to 40°C
μF Code 2.0V 3.0V 4.0V 6.3V 10V 16V 20V 25V 35V
0.33 334 J* L
0.47 474 N* K
0.68 684
1.0 105 J* J* LL*/R
1.5 155
2.2 225 J*/K J* H/L* H/R
3.3 335 L
4.7 475 K/N* K/U J/K* R*
6.8 685 K K U
10 106 K J/K/Z J/K/Z J*/U/Z* VR A*
15 156 K K* K*/Z* H/L
22 226 J J J* L/U* L*/M T*
33 336 L H/L/L(4000) H
47 476 L L H/L H C*/Q*/R
68 686 R R A*/R*
100 107 H* C*/H*/Q* RR*/T
150 157 R* R*
220 227 R* S* A*/R*/T
330 337
470 477 A* A*
680 687
Released Codes
*Codes under development - subject to change
Note: Voltage ratings are minimum values. AVX reserves the right to supply
higher ratings in the same case size, to the same reliability standards.
48 | www.avx.com
TLJ Series
High CV Consumer Series Tantalum Capacitors
• High Volumetric Efficiency
• 3x reflow 260°C compatible
• 13 case sizes available including low profile codes
• Environmentally friendly
• Consumer applications (e.g. mobiles phones, PDA etc.)
• CV range: 10-680μF / 2.5-20V
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/tlj.pdf
TLJ
Type
W
Case Size
157
Capacitance Code
pF code: 1st two digits
represent significant figures,
3rd digit represents multiplier
(number of zeros to follow)
M
Tolerance
M = ±20%
010
Rated DC Voltage
002 = 2.5Vdc
004 = 4Vdc
006 = 6.3Vdc
010 = 10Vdc
016 = 16Vdc
020 = 20Vdc
HOW TO ORDER
R
Packaging
R = 7" T/R
S = 13" T/R
0200
ESR in mΩ
LEAD-FREE COMPATIBLE
COMPONENT
Capacitance Rated Voltage DC to 40°C / 0.5DC to 85°C / 0.2DC to 125°C
μF Code 2.5V (e) 4V (G) 6.3V (J) 10V (A) 16V (C) 20V (D) 35V (V)
6.8 685
10 106 R(2000,3000) P(4500)*/S(2200) T(1000)
15 156 R(2000)
22 226 N(5400)/R(3500) K(1800)/N(3800) T(1000)
R(3800)
K(1700)/N(8000) K(1500)/N(9600)
33 336 N(8000)/R(3000) P(3000)/R(3000) P(3500) T(1000)
R(3500)/S(1500)
K(1500)/N(4000) K(1500)/N(8300) A(600)/G(1500)
47 476 P(3000)/R(3000) P(700,900,1800,2500) P(3200)/R(3200)
R(3200)/S(1500) S(1500)/T(600)
K(1200)/N(8000) A(500)/G(800)
68 686 P(3000) S(1500)/T(600) A(1500)
R(2900)/S(1500)
A(500)/G(800) A(500,800)/G(800) A(1400)
100 107 N(5200)/P(2700) P(5400)/S(1400)* H(900)/T(900)
S(1400) T(800)
150 157 A(800)/T(800) A(900)/G(2500) B(500)
H(900)/T(1200) W(150,200)
220 227 T(1100) A(1100)/G(3000) B(500)/T(2000) B(1100)/F(300)
H(900)/T(1100) W(200)
330 337 T(2700)/W(200) F(300)
470 477
680 687 Y(150)
1000 108
1500 158 V(200)*
Available Ratings, (ESR ratings in mOhms in brackets)
Engineering samples - please contact manufacturer
*Codes under development - subject to change
Note: Voltage ratings are minimum values. AVX reserves the right to supply
higher ratings in the same case size, to the same reliability standards.
www.avx.com | 49
TLN Series
Tantalum Solid Electrolytic Chip Capacitors Undertab Series
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/tlnunder.pdf
TLN
Type
S
Case Size
227
Capacitance Code
pF code: 1st two digits
represent significant figures,
3rd digit represents multiplier
(number of zeros to follow)
M
Tolerance
M = ±20%
004
Rated DC Voltage
004 = 4Vdc
006 = 6.3Vdc
010 = 10Vdc
HOW TO ORDER
R
Packaging
R = 7" T/R
S = 13" T/R
3000
ESR in mΩ
• Undertab terminations layout:
- High Volumetric Efficiency
- High PCB assembly density
- High capacitance in smaller dimensions
• 3x reflow 260°C compatible
• Consumer applications (e.g. PCMCIA/USB
wireless express cards, mobiles, MP3 etc.)
• 7 case sizes available
• CV range 47-1000μF / 4-10V
LEAD-FREE COMPATIBLE
COMPONENT
Available Ratings, (ESR ratings in mOhms in brackets)
Engineering samples - please contact manufacturer
*Codes under development - subject to change
Note: Voltage ratings are minimum values. AVX reserves the right to supply
higher ratings in the same case size, to the same reliability standards.
50 | www.avx.com
Capacitance Rated Voltage DC to 40°C / 0.5DC to 85°C/ 0.2DC to 125°C
μF Code 4V (G) 6.3V (J) 10V (A)
33 336 N(9600)*
47 476 N(8300)* K(1500)/N(9600)
R(4000)
68 686 N(3000)* N(8300)* K(7200)*/S(6000)
100 107 N(5200)* K(5400)/R(2000) K(9600)/L(7200)*
S(5400) S(7200)
150 157 K(4000)*/R(4000)* K(8300)/L(5400)* G(6000)/L(9600)
S(5400) S(7200)*/T(6000)*
220 227 K(3000)/L(3000)* G(3000)/L(8300) G(7200)*/H(6000)*
S(3000) S(8300)*/T(3000)* T(7200)
330 337 G(4000)*/L(4000)* G(5400)*/H(3000)* H(7200)*/T(9600)*
S(5200)* T(5400)
470 477 G(5200)*/H(3000)* H(5400)*/T(8300)* H(9600)*
T(4000)*
680 687 H(4000)*/T(5200)* H(8300)*
1000 108 H(5200)* Y(150)
www.avx.com | 51
TPS Series
Low ESR Tantalum Capacitors
• Low ESR series of robust Mn02solid
electrolyte capacitors
• CV range: 0.15-1500μF / 2.5-50V
• 14 case sizes available
• Power supply applications
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/tps.pdf
HOW TO ORDER
107
Capacitance Code
pF code: 1st two
digits represent
significant figures,
3rd digit represents
multiplier (number of
zeros to follow)
M
Tolerance
K = ±10%
M = ±20%
010
Rated DC Voltage
002 = 2.5Vdc
004 = 4Vdc
006 = 6.3Vdc
010 = 10Vdc
016 = 16Vdc
020 = 20Vdc
025 = 25Vdc
035 = 35Vdc
050 = 50Vdc
063 = 63Vdc
R
Packaging
R = 7" T/R
(Lead Free since
production date 1/1/04)
S = 13" T/R
(Lead Free since
production date 1/1/04)
A = Gold Plating 7" Reel
B = Gold Plating 13" Reel
H = Tin/Lead 7" reel
(Contact Manufacturer)
K = Tin/Lead 13" reel
(Contact Manufacturer)
H, K = Non RoHS
0100
ESR in mΩ
TPS
Type
C
Case Size
Additional
characters may be
added for special
requirements
V = Dry pack Option
(selected codes only)
LEAD-FREE COMPATIBLE
COMPONENT
Capacitance Rated Voltage DC (VR) to 85°C
μF Code 2.5V (e) 4V (G) 6.3V (J) 10V (A) 16V (C) 20V (D) 25V (E) 35V (V) 50V (T) 63V
0.15 154 A(9000)
0.22 224 A(6000) A(7000)
0.33 334 A(6000)
0.47 474 A(7000) A(6000) C(2300)
B(4000)
0.68 684 A(6000) A(6000)
1 105 R(9000) A(3000), R(6000) R(2500,4000) A(3000) C(2500)
S(6000), T(2000) B(2000)
1.5 155 A(3000) B(2500) C(1500,2000)
B(1800)
2.2 225 R(7000) A(1800) A(1800,3500) A(3000) B(900,1200,2500) A(1500), B(750, D(1200)
T(2000) 1500,2000), C(1000)
3.3 335 T(1500) A(3500) A(2500) A(1000,1500) B(1000) D(800)
B(1300) B(750,1500,2000) C(700)
4.7 475 S(4000) A(1400) A(2000) A(1800)
B(700,900,1500) B(700,1500) D(300,500,700)
R(3000,5000) B(800,1500) B(750,1000) C(600), D(700)
A(1000)
6.8 685 A(1800) A(1800) A(1500) B(600,1000) B(700) C(350) D(200, 300,
T(1800) B(600,1200)
C(700) C(500,600,700) D(150,400,500) 500,600)
A(1500) A(900,1800) B(500,800), C(500) B(500,1000) B(1800)
10 106 R(3000) R(1000,1500,3000) P(2000)(M) T(800,1000) C(500,700) C(300,500) D(125,300) E(400,500) E(500)*
T(1000) T(1000,2000) W(500,600) W(500) E(200), Y(250)
A(1000) B(500) C(220,300) C(350,450) E(250)
15 156 A(700,1500) B(450,600) B(500,800) C(400,450) D(100,300) D(100,300) V(250)
T(1200) Y(250)
A(500,900) A(900) B(400,600) B(400,600) D(125,200,300,400)
22 226 B(375,600) B(400,500,700) C(150,250,300,375) C(100,150,400) C(275,400) E(125,200,300)
S(900) C(300), T(800) W(500) D(200,300) D(100,200,300) Y(200)
A(700) B(350,500) D(100,200,300)
A(600) B(250,425,500,650) C(100,150,225,300) C(300) E(100,175, D(200,300)
33 336 B(250,350,450,600) C(150,375,500) D(200), W(140,175, D(100,200) 200,300) E(100,250,300)
T(800) W(350) 250,400,500) Y(200) V(200)
Y(300,400)
A(800) B(250,350,500,650) C(110,350) D(75,100,200)
47 476 A(500) B(250,350,500) C(200,350) D(80,100,150,200) E(80,100,125) D(125,150,250) E(200,250)
C(300), T(1200) D(100) W(200) E(70,125,150, 200,250) V(150,200)
W(125,150,250) X(180), Y(250)
B(600) C(125,200)
B(250,350,500) C(80,100,200,300) D(70,100,150) D(70,150, E(125,200)
68 686 C(150,200) D(100,150), W(100,150) F(200), X(150) 200,300) V(80,95,150,200) V(150,200)(M)
W(110,125,250) Y(100,200) Y(150,200,250) E(125,150,200)
B(400)(M) C(200)
B(200,250, B(250,400) C(75,100,150,200) D(60,100,125,150) D(85,100,150)
100 107 B(200) 350,500) C(75,150) D(50,65,80,100,125, E(55,100,125,150) E(100,150,200) V(100)
W(100) W(100,150) 150), E(125) W(150) F(150,200)(M) V(60,85,100,200)
Y(100) X(85,150,200) Y(100,150,200)
Y(100,150,200)
B(250) C(50,90,150,200,250) D(50,85,100), E(100) D(60,85,100,125,150)
150 157 B(150) C(70,80) D(50,125), F(200), X(100)(M) E(100), V(45,75) V(80)
Y(40,50) Y(100,150,200) Y(200)(M)
B(150, C(70,100,125,250) D(40,50,100,150)
220 227 200,600) D(40,50,100) D(50,100,125) E(50,60,70,100, E(100,150)
D(45)Y(40,50,75) E(100), F(200) 125,150) V(50,75,100,150)
Y(100,150) Y(100,150,200)
C(100) C(80,100)
330 337 Y(40) D(35,45,100) D(45,50,70,100) D(50,65,100,150)
F(200) E(50,100,125,150) E(40,50,60,100)
X(100) V(100), Y(100,150) V(40,60,100)
D(35) D(45,60,100,200)
470 477 F(200) D(45,100) E(45,50,60,100,200) E(45,50,60,100,200)
Y(100) E(35,45,100) V(40,55,100), Y(150) V(40,60,100)
D(35,50) D(45,60,100) E(45,60,100)
680 687 E(35,50) E(40,60,100) V(35,40,50)
Y(100)
1000 108 E(30,40) E(40,60) E(100)(M), V(40,50)(M)
Y(100)(M) V(25,35,40,50)
1500 158 D(100) E(50,75)
E(50) V(50,75)(M)
V(30,40)(M)
Released codes
(M tolerance only)
Engineering samples - please contact manufacturer
*Codes under development – subject to change
ESR limits quoted in brackets (milliohms)
NOTE: Voltage ratings are minimum values. AVX reserves the right to supply
higher ratings in the same case size, to the same reliability standards.
TPM Multianode
Ultra Low ESR Tantalum Capacitors
• Multi-anode construction
• Super low ESR
• CV range: 10-2200μF / 2.5-50V
• 4 case sizes available
• “Mirror” multi-anode construction used with D case
capacitors reduces ESL to half
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/tpm.pdf
HOW TO ORDER
E
Case Size
TPM
Type
108
Capacitance Code
pF code: 1st two
digits represent
significant figures,
3rd digit represents
multiplier (number of
zeros to follow)
M
Tolerance
K=±10%
M=±20%
004
Rated DC Voltage
002=2.5Vdc
004=4Vdc
006=6.3Vdc
010=10Vdc
016=16Vdc
020=20Vdc
025=25Vdc
035=35Vdc
050=50Vdc
R
Packaging
R = 7" T/R Lead Free
S = 13" T/R Lead Free
H = Tin/Lead 7" reel
(Contact Manufacturer)
K = Tin/Lead 13" reel
(Contact Manufacturer)
H, K = Non RoHS
0018
ESR in mΩ
LEAD-FREE COMPATIBLE
COMPONENT
Released codes
(M tolerance only)
Engineering samples - please contact manufacturer
*Codes under development - subject to change
Note: Voltage ratings are minimum values. AVX reserves the right to supply
higher ratings in the same case size, to the same reliability standards.
Capacitance Rated Voltage DC (VR) to 85°C
μF Code 2.5V (e) 4V (G) 6.3V (J) 10V (A) 16V (C) 20V (D) 25V (E) 35V (V) 50V (T)
6.8 685
10 106 D(140)
E(120)
15 156 E(75,100)
22 226 D(70) E(75,100)
E(60,100)
33 336 D(65) E(50,65)
47 476 D(55) E(55,65)
68 686 E(45,55)
100 107 Y(45)
(M)
E(35,45)
150 157 Y(45)
(M)
E(35)
E(30,40)
220 227 Y(30)
(M)
D(35) E(25,40)
330 337 D(25,35) D(25,35) D(35) E(50)*
E(23,35)
470 477 D(25,35) D(30) E(23,30)
E(18,23,30)
680 687 D(25) E(18,23), V(23)
E(18,23)
1000 108 D(25) D(25,45) E(25)
(M)
E(18,23), V(18) V(20)
(M)
1500 158 E(12,15,18) E(15,18)
2200 228 E(18)
(M)
52 | www.avx.com
TPC Series
Low ESR Small Case Size Tantalum Capacitors
• Low ESR TACmicrochip® capacitor
• Smallest and low profile tantalum
• CV range: 1.0-100μF / 3-25V
• 4 case sizes available
• Power supply applications
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/tpc.pdf
HOW TO ORDER
TPC
Type
TACmicrochip®
R
Case Size
106
Capacitance Code
pF code: 1st two digits
represent significant figures,
3rd digit represents multiplier
(number of zeros to follow)
M
Tolerance
K=±10%
M=±20%
010
Rated
DC Voltage
003=3Vdc
004=4Vdc
006=6.3Vdc
010=10Vdc
016=16Vdc
020=20Vdc
025=25Vdc
1800
ESR in mΩ
R
Packaging
R, P = 7" Standard Tin
Termination Plastic Tape
X, Q = 414" Standard Tin
Termination Plastic Tape
A, M = 7" Gold Termination
Plastic Tape
F, N = 414" Gold Termination
Plastic Tape
LEAD-FREE COMPATIBLE
COMPONENT
Capacitance Voltage Rating DC (V
R
) at 85°C
μF Code 3.0V 4.0V 6.3V 10V 16V 20V 25V
1.0 105 L(5000) R(3000)
1.5 155
2.2 225 K(8000)/L(5000) L(5000) L(5000)
3.3 335 L(5000)
4.7 475 K(8000) L(5000)
(M)
R(1500)
(M)
*
6.8 685
10 106 L(4000)
(M)
H(2500) R(1800)
L(4000)
(M)
,R(1800)
15 156 R(1800) R(1500)
22 226 L(5000)
(M)
/R(1800) R(1500) R(1500)
33 336 R(1800) H(1500)
(M)
/R(1500) R(1500)
(M)
47 476 R(1500) R(1800)
(M)
68 686
100 107 R(1000)
(M)
Codes shown are examples of ESR values offered on certain CV and case size.
Other codes and ESR values available upon request.
Released codes
(M tolerance only)
*Code under development – subject to change
Note: Voltage ratings are minimum values. AVX reserves the right to supply
higher ratings in the same case size, to the same reliability standards
www.avx.com | 53
TCJ Series
Polymer Tantalum Capacitors
• Conductive polymer electrode reduces ignition failure mode
• Lower ESR
• 3x reflow 260°C compatible
• CV range: 1.0-220μF / 2.5-35V
• 11 case sizes available
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/tcj.pdf
TCJ
Type
A
Case Size
226
Capacitance Code
pF code: 1st two digits
represent significant figures,
3rd digit represents multiplier
(number of zeros to follow)
M
Tolerance
M=±20%
004
Rated DC Voltage
002=2.5Vdc
004=4Vdc
006=6.3Vdc
010=10Vdc
016=16Vdc
020=20Vdc
025=25Vdc
035=35Vdc
HOW TO ORDER
R
Packaging
R=7" T/R
S=13" T/R
0300
ESR in mΩ
LEAD-FREE COMPATIBLE
COMPONENT
Available Ratings, (ESR ratings in mOhms in brackets)
Engineering samples - please contact manufacturer
*Codes under development – subject to change
Note: Voltage ratings are minimum values. AVX reserves the right to supply
higher ratings in the same case size, to the same reliability standards.
54 | www.avx.com
Capacitance Rated Voltage DC (V
R
) to 85°C
μF Code 2.5V (e) 4V (G) 6.3V (J) 10V (A) 16V (C) 25V (E) 35V (V)
1.0 105 P(500)
4.7 475 K(500), R(500)
6.8 685 A(200)
10 106 A(300), R(500) A(300) A(200), B(200) C(200)
T(150,200)
15 156 A(300) A(300) A(200) B(150)
22 226 A(300) A(300), K(400) B(300), T(150) B(150) Y(70)*
S(400), T(150)
A(200) B(70,200)
33 336 A(300) B(70,200) C(100)
T(150) T(70,150)
A(200), B(70)
47 476 A(200), T(80) K(400), P(500) B(70), C(100)
T(80,120)
68 686 A(250) A(250), B(70) B(55), C(100)
T(80) W(70)
100 107 A(200), B(70) A(200), B(70) B(45,70)
G(300), T(150)
A(200), B(45,70)
150 157 B(70) B(70) H(200), W(40,70)
Y(25,40)*
220 227 B(45,70) B(200)
TCM Series
Tantalum Solid Electrolytic Chip Capacitors
Conductive Polymer Multianode
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/tcm.pdf
TCM
Type
E
Case Size
See table
above
108
Capacitance Code
pF code: 1st two digits
represent significant figures,
3rd digit represents multiplier
(number of zeros to follow)
M
Tolerance
M=±20%
004
Rated DC Voltage
004=4Vdc
006=6.3Vdc
010=10Vdc
035=35Vdc
HOW TO ORDER
R
Packaging
R = 7" T/R
S = 13" T/R
0010
ESR in mΩ
LEAD-FREE COMPATIBLE
COMPONENT
• Conductive polymer multianode
• Extremely Low ESR
• Reduced ignition failure mode
• 3x reflow 260°C compatible
• Volumetric efficiency
• High frequency capacitance retention
CAPACITANCE AND RATED VOLTAGE, VR (VOLTAGE CODE) RANGE
(LETTER DENOTES CASE SIZE)
Available Ratings, (ESR ratings in mOhms in brackets)
Engineering samples - please contact manufacturer
*Codes under development – subject to change
Note: Voltage ratings are minimum values. AVX reserves the right to supply
higher ratings in the same case size, to the same reliability standards.
www.avx.com | 55
Capacitance Rated Voltage DC (V
R
) to 85°C
μF Code 4V (G) 6.3V (J) 10V (A) 35V (V)
22 226 E(25)
33 336
47 476
68 686
100 107
150 157
220 227
330 337 E* E*
470 477 E* E*
680 687
1000 108 E(10,12)
1500 158
TCN Series
Tantalum Solid Electrolytic Chip Capacitors Undertab Series
with Conductive Polymer Electrode
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/tcn.pdf
TCN
Type
L
Case Size
157
Capacitance Code
pF code: 1st two digits
represent significant figures,
3rd digit represents multiplier
(number of zeros to follow)
M
Tolerance
M = ±20%
006
Rated DC Voltage
004 = 4Vdc
006 = 6.3Vdc
010 = 10Vdc
HOW TO ORDER
R
Packaging
R = 7" T/R
S = 13" T/R
0200
ESR in mΩ
• Conductive polymer electrode reduces
ignition failure mode
• Lower ESR
• Undertab terminations layout:
- High Volumetric Efficiency
- High PCB assembly density
- High capacitance in smaller dimensions
• 3x reflow 260°C compatible
• Consumer applications (e.g. mobiles, MP3 etc.)
• 3 case sizes available
LEAD-FREE COMPATIBLE
COMPONENT
Available Ratings, (ESR ratings in mOhms in brackets)
Engineering samples - please contact manufacturer
*Codes under development - subject to change
Note: Voltage ratings are minimum values. AVX reserves the right to supply
higher ratings in the same case size, to the same reliability standards.
56 | www.avx.com
Capacitance
Rated Voltage DC to 85°C / 0.66DC to 105°C
μF Code 4V (G) 6.3V (J) 10V (A)
15 156 N(500)*
22 226 N(500)*
33 336 N(500)* K(500)*/N(500)* K(500)*/N(500)*
47 476 N(500)* K(500)*/T(120) K(500)*/S(500)*
68 686 K(500)*/N(500)* K(500)*/S(500)* G(150)*/L(150)*
S(500)*
100 107 K(500)*/S(500)* G(200)*/L(200)* G(150)*/L(150)*
S(150)*/T(150)*
G(200)*/L(200)* G(200)/K(200)* G(150)*/H(150)*
150 157 S(500)* L(200)/S(200)* T(150)*
T(200)
220 227 G(200)*/L(150)* H(200)*/T(200) H(150)*
S(200)*/T(150)*
330 337 H(150)*/T(150)* H(200)*/T(200)*
470 477 H(150)*
TRJ Series
Professional Series Tantalum Capacitors
• Improved reliability – 2x standard
• DCL reduced by 25% to 0.0075 CV
• Robust against higher thermo-mechanical stresses during
assembly process
• CV range: 0.10-470μF / 6.3-50V
• 5 case sizes available
• 117 low ESR parts released
• Automotive, medical, aerospace, military and other high-end applications
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/trj.pdf
HOW TO ORDER
TRJ
Type
B
Case Size
105
Capacitance Code
pF code: 1st two
digits represent
significant figures,
3rd digit represents
multiplier (number of
zeros to follow)
*
Tolerance
K=±10%
M=±20%
035
Rated DC Voltage
006 = 6.3V
010 = 10V
016 = 16V
020 = 20V
025 = 25V
035 = 35V
050 = 50V
R
Packaging/ Termination
Plating
R = 7" T/R
S = 13" T/R
A = Gold Plating 7" Reel
B = Gold Plating 13"
Reel
H = Tin/Lead 7" reel
(Contact Manufacturer)
K = Tin/Lead 13" reel
(Contact Manufacturer)
H, K = Non RoHS
RJ
Standard
Suffix
OR
0100
Low ESR
in mΩ
Additional
characters may be
added for special
requirements
V = Dry pack Option
(selected codes only)
LEAD-FREE COMPATIBLE
COMPONENT
Available Ratings, (ESR ratings in mOhms in brackets)
Engineering samples - please contact manufacturer
*Codes under development - subject to change
Note: Voltage ratings are minimum values. AVX reserves the right to supply
higher ratings in the same case size, to the same reliability standards.
Capacitance Rated Voltage DC (V
R
) to 85°C
μF Code 6.3V (J) 10V (A) 16V (C) 20V (D) 25V (E) 35V (V) 50V (T)
0.10 104 A
0.15 154 A, A(6000)
0.22 224 A, A(6000) A, A(7000)
0.33 334 A, A(6000) A
0.47 474 A, A(7000) A, A(4000) B
0.68 684 A, A(6000) A, A(6000) B, B(2000)
1.0 105 A, A(3000) A, A(3000) A, B, C, B, B(2000)
A(3000), B(2000)
1.5 155 A, A(3000) A, A(3000) A, B C, C(1500)
A(2000), B(2500)
2.2 225 A, A(3500) A, A(3000) A, B, B, B(2000) C, D,
A(1600), B(1200)
C(1000), D(1200)
3.3 335 A, A(3500) A, B, B, B(2000) B, C, C, D,
A(2500), B(1300 B(1000), C(800)) C(1000), D(800)
4.7 475 A, A(2000) A, B, A, B, B, B(1000) B, C, D, D(600)
A(2000), B(1500) A(1800), B(1000) B(1500), C(600)
6.8 685 A, A(1800) A, B, B, B(1000) B, C, C, C(600) D, D(700)
A(1500), B(1200) B(1000), C(600)
10 106 A, A(1500) A, B, B, B(800) B, C, C, C(600) C, D, E, E(400)
A(1800), B(800) B(1000), C(500) C(600), D(400)
15 156 A, B, A, B, B, B(800) B, C, C, D, D, D(350)
A(1500), B(700) A(1000), B(600) B(500), C(400) C(500), D(300)
22 226 A, B, B, B(700) B, C, C, D, D, D(300) D, D(400)
A(900), B(600) B(600), C(350) C(400), D(300
33 336 B, B(600) B, C, C, C(300) C, D, D, D(400) E, E(250)
B(650), C(300) C(300), D(250)
47 476 B, C, C, C(300) C, D, D, D(200) D, E,
B(500), C(250) C(350), D(200) D(250), E(150)
68 686 C, C(200) C, C(300) D, D(150) D, E,
D(200), E(200)
100 107 C, C(300) C, D, D, E, E, E(150)
C(200), D(150) D(150), E(150)
150 157 C, D, D, E, E, E(150)
C(300), D(150) D(150), E(150)
220 227 D, D(150) D, E, E(150)
330 337 E, E(150) E, E(100)
470 477 E, E(200)
www.avx.com | 57
TAW Series
Tantalum Solid Electrolytic Fused Capacitors
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/taw.pdf
• Thin film fuse connected in series with capacitor
• Protection from possible damaging from high DC
leakage current (short circuit failure)
• CV range: 6.8-100μF / 10-50V
• Application: servers
HOW TO ORDER
TAW
Type
D
Case Size
476
Capacitance Code
pF code: 1st two
digits represent
significant figures
3rd digit represents
multiplier (number of
zeros to follow)
*
Tolerance
K=±10%
M=±20%
010
Rated DC Voltage
010=10Vdc
016=16Vdc
020=20Vdc
025=25Vdc
050=50Vdc
R
Packaging
R = 7" T/R
S = 13" T/R
0500
ESR in mΩ
LEAD-FREE COMPATIBLE
COMPONENT
Capacitance Rated Voltage DC (VR) to 85°C
μF Code 6.3V (J) 10V (A) 16V (C) 20V (D) 25V (E) 50V (T)
1.0 105
2.2 225
4.7 475
6.8 685 D(700)
10 106 D(600) D(700)
22 226 D(600)
33 336 D(600) D(500)
47 476 D(500) D(800)
100 107 D(500)
Available Ratings (ESR ratings in mOhms in brackets)
Engineering samples - please contact manufacturer
*Codes under development – subject to change
Note: Voltage ratings are minimum values. AVX reserves the right to supply
higher ratings in the same case size, to the same reliability standards.
58 | www.avx.com
SMPS Stacked MLC Capacitors
SMX Style for High Temperatures Applications up to 200ºC
SMX-style, stacked Switch Mode Power Supply Capacitors (SMPS) utilizing Multilayer
Ceramic (MLCC) construction are ideally suited for high temperature applications up to
200ºC. This product is intended for downhole oil exploration, including logging while
drilling, geophysical probes, as well as space and aerospace electronics. The high
temperature solder utilized in the construction of SMX-style parts assures reliable
operation in harsh environments. The wide product offering provides designers a
solution for high capacitance value and high voltage capacitors rated at 200ºC. The
SMX-style capacitors are ideally suited for applications as DC filters in high power, high
frequency motor drives, high pulsed-current circuitry, as well as low power electronics.
SMX-style, SMPS capacitors are characterized with excellent performance in
comparison to wet tantalum products. The main benefits of SMX-product over wet
tantalum capacitors include:
• Much lower ESR and lower losses
• Excellent capacitance retention with frequency
• Excellent high frequency performance
• Low DC leakage current
• Much higher current handling capabilities
Note: Capacitors with X7R/X9U dielectric is not intended for
applications across AC supply mains or AC line filtering
with polarity reversal. Contact plant for recommendations.
SMX
AVX Style
SMX = Uncoated
1
Size
7
Voltage
3 = 25V
5 = 50V
1 = 100V
2 = 200V
7 = 500V
C
Temperature
Coefficient
C0G = A
X7R/X9U = C
106
Capacitance
Code
(2 significant digits
+ number of zeros)
10 pF = 100
100 pF = 101
1,000 pF = 102
22,000 pF = 223
220,000 pF = 224
1μF = 105
10 μF = 106
100 μF = 107
M
Capacitance
Tolerance
C0G:
J = ±5%
K = ±10%
M = ±20%
X7R:
K = ±10%
M = ±20%
Z = +80%, -20%
A
Test Level
A = Standard
N
Termination
N = Straight Lead
J = Leads formed in
L = Leads formed out
P = P Style Leads
Z = Z Style Leads
650
Height
Max
Dimension “A”
120 = 0.120"
240 = 0.240"
360 = 0.360"
480 = 0.480"
650 = 0.650"
HOW TO ORDER AVX Styles: SMX1, SMX2, SMX3, SMX4, SMX5, SMX6
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/smx.pdf
www.avx.com | 59
Max Capacitance (μF) Available Versus Style with Height (A) of 0.120" - 3.05mm
AVX SMX1 _ _ _ _ _ _ AN120 SMX2 _ _ _ _ _ _ AN120 SMX3 _ _ _ _ _ _ AN120 SMX4 _ _ _ _ _ _ AN120 S
MX5 _ _ _ _ _ _ AN120 SMX6 _ _ _ _ _ _ AN120
STYLE 25V 50V 100V 200V 500V 25V 50V 100V 200V 500V 25V 50V 100V 200V 500V 25V 50V 100V 200V 500V 25V 50V 100V 200V 500V 25V 50V 100V 200V 500V
C0G 1.0 .70 .40 .18 .068 1.2 1.0 .60 .26 .10 .50 .40 .20 .09 .033 .16 .13 .07 .02 .01 .05 .04 .02 .01 .0039 3.2 2.4 1.3 .50 .20
X7R/X9U 22 12 7.0 2.6 1.0 33 18 11 4.0 1.5 11 6.0 3.6 1.3 .50 3.3 1.8 1.1 .40 .15 1.2 .68 .40 .16 .056 68 40 24 9.4 3.3
AVX
SMX1 _ _ _ _ _ _ AN650 SMX2 _ _ _ _ _ _ AN650 SMX3 _ _ _ _ _ _ AN650 SMX4 _ _ _ _ _ _ AN650 S
MX5 _ _ _ _ _ _ AN650 SMX6 _ _ _ _ _ _ AN650
STYLE 25V 50V 100V 200V 500V 25V 50V 100V 200V 500V 25V 50V 100V 200V 500V 25V 50V 100V 200V 500V 25V 50V 100V 200V 500V 25V 50V 100V 200V 500V
C0G
5.0 3.5 2.0 .90 .34 6.0 5.0 3.0 1.3 .50 2.5 2.0 1.0 .45 .160 .82 .65 .35 .12 .05 .25 .20 .12 .05 .019 16 12 6.5 2.5 1.0
X7R/X9U
110 60 35 13 5.0 160 90 55 20 7.5 56 30 18 6.5 2.5 16 9.0 5.5 2.0 .80 6.0 3.4 2.0 .80 .28 340 200 120 47 16
AVX
SMX1 _ _ _ _ _ _ AN480 SMX2 _ _ _ _ _ _ AN480 SMX3 _ _ _ _ _ _ AN480 SMX4 _ _ _ _ _ _ AN480 S
MX5 _ _ _ _ _ _ AN480 SMX6 _ _ _ _ _ _ AN480
STYLE 25V 50V 100V 200V 500V 25V 50V 100V 200V 500V 25V 50V 100V 200V 500V 25V 50V 100V 200V 500V 25V 50V 100V 200V 500V 25V 50V 100V 200V 500V
C0G
4.0 2.8 1.6 .72 .27 4.8 4.0 2.2 1.0 .40 2.0 1.6 .80 .36 .130 .64 .52 .28 .10 .04 .20 .16 .10 .04 .015 13 9.6 5.2 2.0 .80
X7R/X9U
88 48 28 10 4.0 130 72 44 16 6.0 44 24 14 5.2 2.0 13 7.2 4.4 1.6 .60 4.8 2.7 1.6 .64 .22 270 160 96 37 13
AVX
SMX1 _ _ _ _ _ _ AN360 SMX2 _ _ _ _ _ _ AN360 SMX3 _ _ _ _ _ _ AN360 SMX4 _ _ _ _ _ _ AN360 S
MX5 _ _ _ _ _ _ AN360 SMX6 _ _ _ _ _ _ AN360
STYLE 25V 50V 100V 200V 500V 25V 50V 100V 200V 500V 25V 50V 100V 200V 500V 25V 50V 100V 200V 500V 25V 50V 100V 200V 500V 25V 50V 100V 200V 500V
C0G
3.0 2.1 1.2 .54 .22 3.6 3.0 1.8 .78 .30 1.5 1.2 .60 .27 .10 .48 .39 .21 .07 .03 .15 .12 .07 .03 .011 10 7.2 3.9 1.5 .60
X7R/X9U
68 36 21 7.8 3.0 100 54 33 12 4.5 33 18 10 3.9 1.5 10 5.4 3.3 1.2 .47 3.6 2.0 1.2 .48 .160 200 120 72 28 10
AVX
SMX1 _ _ _ _ _ _ AN240 SMX2 _ _ _ _ _ _ AN240 SMX3 _ _ _ _ _ _ AN240 SMX4 _ _ _ _ _ _ AN240 S
MX5 _ _ _ _ _ _ AN240 SMX6 _ _ _ _ _ _ AN240
STYLE 25V 50V 100V 200V 500V 25V 50V 100V 200V 500V 25V 50V 100V 200V 500V 25V 50V 100V 200V 500V 25V 50V 100V 200V 500V 25V 50V 100V 200V 500V
C0G
2.0 1.4 .80 .36 .13 2.4 2.0 1.2 .52 .20 1.0 .80 .40 .18 .068 .33 .26 .14 .05 .02 .10 .08 .05 .02 .0078 6.4 4.8 2.6 1.0 .40
X7R/X9U
44 24 14 5.2 2.0 66 36 22 8.0 3.0 22 12 7.2 2.6 1.0 6.6 3.6 2.2 .80 .30 2.4 1.3 .80 .32 .110 130 80 48 18 6.6
Max Capacitance (μF) Available Versus Style with Height (A) of 0.240" - 6.10mm
Max Capacitance (μF) Available Versus Style with Height (A) of 0.360" - 9.14mm
Max Capacitance (μF) Available Versus Style with Height (A) of 0.480" - 12.2mm
Max Capacitance (μF) Available Versus Style with Height (A) of 0.650" - 16.5mm
SMPS Molded Radial MLC Capacitors
SXP Sytle for High Temperature Applications up to 200ºC
SMP
AVX Style
3
Size
1
Voltage
5 = 50V
1 = 100V
2 = 200V
7 = 500V
A = 1000V
C
Temperature
Coefficient
C0G = A
X7R/X9U = C
104
Capacitance
Code
(2 significant digits
+ number of zeros)
100 pF = 101
22,000 pF = 223
1μF = 105
M
Capacitance
Tolerance
C0G:
J = ±5%
K = ±10%
M = ±20%
X7R:
K = ±10%
M = ±20%
Z = +80%, -20%
Tighter tolerances
available upon
request
A
Test Level
A = Standard
A
Leads
A = Standard
Tin/Lead (min. 5% Pb)
HOW TO ORDER
SXP-style, encapsulated radial leaded MLC capacitors are ideally suited for
high temperature applications up to 200ºC. This product is intended for
downhole oil exploration, including logging while drilling, geophysical probes,
as well as space, aerospace and hybrid automotive applications. This
product supplements the SMX family of capacitors and offers mechanical
protection to the ceramic element in extreme harsh environments. The high
temperature solder utilized in the construction of SXP-style parts assures
reliable operation in high temperature and rugged environments. The SXP-
style capacitors are ideally suited for applications as DC filters in high power,
high frequency motor drives, high pulsed-current circuitry, as well as standard
electronic equipment designed for high temperature applications.
SXP-style, switch mode power supply capacitors are characterized with
excellent performance. The main benefits of SXP product include:
• Low ESR, low ESL
• Low DC leakage
• Excellent high frequency performance
CAPACITANCE RANGE
C0G X7R
Style 50V 100V 200V 500V 1000V
SXP1
(MIN)
1000pF 1000pF 1000pF 100pF 100pF
(MAX)
.047F .027F 8200pF 4700pF 2200pF
SXP2
(MIN)
.01F 1000pF 1000pF 100pF 100pF
(MAX)
.10F .056F .018F 8200pF 4700pF
SXP3
(MIN)
.01F 1000pF 1000pF 1000pF 1000pF
(MAX)
.15F .068F .022F .012F 6800pF
SXP4
(MIN)
.01F .01F 1000pF 1000pF 1000pF
(MAX)
.39F .22F .068F .033F .018F
Style 50V 100V 200V 500V 1000V
SXP1
(MIN)
.1F .01F .01F .01F .01F
(MAX)
1.2F .68F .27F .12F .033F
SXP2
(MIN)
.1F .1µF .01F .01F .01F
(MAX)
2.2F 1.2F .56F .22F .068F
SXP3
(MIN)
.01F .1µF .01F .01F .01F
(MAX)
3.3F 1.8F .82F .33F .10F
SXP4
(MIN)
1F .1F .1F .01F .01F
(MAX)
10F 5.6F 2.2F 1.0F .27F
60 | www.avx.com
THJ Series
High Temperature Tantalum Capacitors
• Improved reliability – 2x standard
• 175°C @ 0.5VRcontinuous operation
• CV range: 0.10-220μF / 6.3-50V
• 5 case sizes available
• Low ESR options on approval
• High temperature automotive and industry applications
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/thj.pdf
HOW TO ORDER
THJ
Type
B
Case Size
105
Capacitance Code
pF code: 1st two
digits represent
significant figures
3rd digit represents
multiplier (number of
zeros to follow)
*
Tolerance
K=±10%
M=±20%
035
Rated DC Voltage
006=6.3Vdc
010=10Vdc
016=16Vdc
020=20Vdc
025=25Vdc
035=35Vdc
050=50Vdc
R
Packaging
R = 7" T/R
S = 13" T/R
A = Gold Plating 7" Reel
B = Gold Plating 13" Reel
H = Tin/Lead 7" reel
(Contact Manufacturer)
K = Tin/Lead 13" reel
(Contact Manufacturer)
H, K = Non RoHS
JN
Standard
Suffix
OR
0100
Low ESR
in mΩ
Additional
characters may be
added for special
requirements
V = Dry pack Option
(selected codes only)
LEAD-FREE COMPATIBLE
COMPONENT
Capacitance Rated voltage (VR) to 85°C (Voltage Code)
μF Code 6.3V (J) 10V (A) 16V (C) 20V (D) 25V (E) 35V (V) 50V (T)
0.10 104 A
0.15 154 A
0.22 224 A
0.33 334 A
0.47 474 A B
0.68 684 A B
1.0 105 A A/B
1.5 155 A C
2.2 225 A B C
3.3 335 A A B C D
4.7 475 A A A/B C D
6.8 685 A A A/B C D
10 106 A B B C D D/E
15 156 B B B C D
22 226 B B C D D, D(3000)
33 336 B C C D D E
47 476 C C C/D
68 686 C D D
100 107 D D E
150 157 D
220 227 E
Available Ratings, (ESR ratings in mOhms in brackets)
Engineering samples - please contact manufacturer
*Codes under development - subject to change
Note: Voltage ratings are minimum values. AVX reserves the right to supply
higher ratings in the same case size, to the same reliability standards.
www.avx.com | 61
THJ Series
High Temperature Tantalum Chip Capacitor with Extension to 200ºC
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/thj.pdf
• SMD 200ºC tantalum capacitor
• 200°C @ 0.33VR 1000hrs continuous operation
• Leakage current after 200ºC 1000hrs less than 1mA
• 3x reflow 260°C
• Gold plated termination for hybrid assembly
• Oil drilling, aerospace, automotive applications
• CV range: 100-220μF / 10-16V
HOW TO ORDER
THJ
Type
E
Case Size
107
Capacitance Code
pF code: 1st two
digits represent
significant figures
3rd digit represents
multiplier (number of
zeros to follow)
*
Tolerance
K=±10%
M=±20%
016
Rated DC Voltage
010=10Vdc
016=16Vdc
A
Packaging
A = Gold Plating 7" Reel
B = Gold Plating 13" Reel
JH
Standard
Suffix
LEAD-FREE COMPATIBLE
COMPONENT
Capacitance Rated voltage (VR) to 85°C (Voltage Code)
μF Code 6.3V (J) 10V (A) 16V (C) 20V (D) 25V (E) 35V (V) 50V (T)
33 336
47 476
68 686
100 107 E
150 157
220 227 E
330 337
470 477
680 687
Available Ratings
Engineering samples - please contact manufacturer
*Codes under development – subject to change
Note: Voltage ratings are minimum values. AVX reserves the right to supplyhigher ratings
in the same case size, to the same reliability standards
62 | www.avx.com
Standard X8R MLCC
X8R Dielectric
AVX has developed a range of multilayer ceramic capacitors designed for use in applications up to 150ºC.
These capacitors are manufactured with an X8R dielectric material which has a capacitance variation of ±15%
between -55ºC and +150ºC.
The need for X8R performance has been driven by customer requirements for parts that operate at elevated
temperatures. They provide a highly reliable capacitor with low loss and stable capacitance over temperature.
They are ideal for automotive under the hood sensors, measure while drilling and log while drilling. Typical
applications include wire line logging tools such as gamma ray receivers, acoustic transceivers and micro-
resistivity tools. They can also be used as bulk capacitors for high temperature camera modules.
X8R capacitors are available as standard and Automotive AEC-Q200 qualified parts. Optional termination
systems, tin, FLEXITERM
®
and conductive epoxy for hybrid applications are available. Providing this series with
our FLEXITERM
®
termination system provides further advantage to customers by way of enhanced resistance
to both, temperature cycling and mechanical damage.
HOW TO ORDER
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/cx8r.pdf
NOTE: Contact factory for availability of Termination and Tolerance Options for Specific Part Numbers.
SIZE 0603 0805 1206
WVDC
25V 50V 25V 50V 25V 50V
271 Cap 270 G G
331 (pF) 330 G G J J
471 470 G G J J
681 680 G G J J
102 1000 G G J J J J
152 1500 G G J J J J
182 1800 G G J J J J
222 2200 G G J J J J
272 2700 G G J J J J
332 3300 G G J J J J
392 3900 G G J J J J
472 4700 G G J J J J
562 5600 G G J J J J
682 6800 G G J J J J
822 8200 G G J J J J
103 Cap 0.01 G G J J J J
123 (μF) 0.012 G G J J J J
153 0.015 G G J J J J
183 0.018 G G J J J J
223 0.022 G G J J J J
273 0.027 G G J J J J
333 0.033 G G J J J J
393 0.039 G G J J J J
473 0.047 G G J J J J
563 0.056 G N N M M
683 0.068 G N N M M
823 0.082 N N M M
104 0.1 N N M M
124 0.12 N N M M
154 0.15 N N M M
184 0.18 N M M
224 0.22 N M M
274 0.27 M M
334 0.33 M M
394 0.39 M
474 0.47 M
684 0.68
824 0.82
105 1
25V 50V 25V 50V 25V 50V
0603 0805 1206
= AEC-Q200 Qualified
Letter A C E G J K M N P Q X Y Z
Max. 0.33 0.56 0.71 0.90 0.94 1.02 1.27 1.40 1.52 1.78 2.29 2.54 2.79
Thickness (0.013) (0.022) (0.028) (0.035) (0.037) (0.040) (0.050) (0.055) (0.060) (0.070) (0.090) (0.100) (0.110)
PAPER EMBOSSED
0805
Size
0603
0805
1206
5
Voltage
25V = 3
50V = 5
F
Dielectric
X8R = F
104
Capacitance
Code (In pF)
2 Sig. Digits +
Number of Zeros
e.g. 10μF = 106
K
Capacitance
Tolerance
J = ± 5%
K = ±10%
M = ± 20%
4
Failure
Rate
4 = Automotive
A = Not
Applicable
A
Special
Code
A = Std. Product
T
Terminations
T = Plated Ni
and Sn
Z =
FLEXITERM®
U =
Conductive
Epoxy for
Hybrid apps
2
Packaging
2 = 7" Reel
4 = 13"
Reel
www.avx.com | 63
AUTOMOTIVE MLCC – X8R
Automotive MLCC
X8R Dielectric
AEC-Q200 qualified
TS 16949, ISO 9001 certified
AVX Corporation has supported the Automotive Industry requirements for Multilayer Ceramic Capacitors
consistently for more than 10 years. Products have been developed and tested specifically for
automotive applications and all manufacturing facilities are QS9000 and VDA 6.4 approved.
As part of our sustained investment in capacity and state of the art technology, we are now transitioning
from the established Pd/Ag electrode system to a Base Metal Electrode system (BME).
AVX is using AEC-Q200 as the qualification vehicle for this transition. A detailed qualification package
is available on request and contains results on a range of part numbers including:
X7R dielectric components containing BME electrode and copper terminations with a Ni/Sn plated overcoat.
• X7R dielectric components, BME electrode with epoxy finish for conductive glue mounting.
• X7R dielectric components BME electrode and soft terminations with a Ni/Sn plated overcoat.
NP0 dielectric components containing Pd/Ag electrode and silver termination with a Ni/Sn plated overcoat.
HOW TO ORDER
0805
Size
0603
0805
1206
5
Voltage
3 = 25V
5 = 50V
2
Packaging
2 = 7" Reel
4 = 13" Reel
F
Dielectric
X8R = F
104
Capacitance
Code (In pF)
2 Significant Digits
+ Number of Zeros
e.g. 10μF = 106
K
Capacitance
Tolerance
J = ±5%
K = ±10%
M = ±20%
4
Failure Rate
4 = Automotive
A
Special Code
A = Std. Product
T
Terminations
T = Plated Ni and Sn
Z = FLEXITERM®
U = Conductive Epoxy
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/cauto.pdf
Letter A C E G J K M N P Q X Y Z
Max. 0.33 0.56 0.71 0.90 0.94 1.02 1.27 1.40 1.52 1.78 2.29 2.54 2.79
Thickness (0.013) (0.022) (0.028) (0.035) (0.037) (0.040) (0.050) (0.055) (0.060) (0.070) (0.090) (0.100) (0.110)
PAPER EMBOSSED
SIZE 0603 0805 1206
WVDC
25V 50V 25V 50V 25V 50V
271 Cap 270 G G
331 (pF) 330 G G J J
471 470 G G J J
681 680 G G J J
102 1000 G G J J J J
152 1500 G G J J J J
182 1800 G G J J J J
222 2200 G G J J J J
272 2700 G G J J J J
332 3300 G G J J J J
392 3900 G G J J J J
472 4700 G G J J J J
562 5600 G G J J J J
682 6800 G G J J J J
822 8200 G G J J J J
103 Cap 0.01 G G J J J J
123 (μF) 0.012 G G J J J J
153 0.015 G G J J J J
183 0.018 G G J J J J
223 0.022 G G J J J J
273 0.027 G G J J J J
333 0.033 G G J J J J
393 0.039 G G J J J J
473 0.047 G G J J J J
563 0.056 G N N M M
683 0.068 G N N M M
823 0.082 N N M M
104 0.1 N N M M
124 0.12 N N M M
154 0.15 N N M M
184 0.18 N M M
224 0.22 N M M
274 0.27 MM
334 0.33 MM
394 0.39 M
474 0.47 M
684 0.68
824 0.82
105 1
WVDC
25V 50V 25V 50V 25V 50V
SIZE 0603 0805 1206
= AEC-Q200 Qualified
NOTE: Contact factory for non-specified capacitance values.
Contact factory for availability of Termination and Tolerance Options for Specific Part Numbers.
64 | www.avx.com
AUTOMOTIVE MLCC – X8R
HOW TO ORDER
0805
Size
0603
0805
1206
5
Voltage
3 = 25V
5 = 50V
2
Packaging
2 = 7" Reel
4 = 13" Reel
F
Dielectric
X8R = F
104
Capacitance
Code (In pF)
2 Significant Digits
+ Number of Zeros
e.g. 10μF = 106
K
Capacitance
Tolerance
J = ±5%*
K = ±10%
M = ±20%
*≤ 1μF only
4
Failure Rate
4 = Automotive
A
Special Code
A = Std. Product
Z
Terminations
Z = FLEXITERM®
U = Conductive Epoxy
Letter A C E G J K M N P Q X Y Z
Max. 0.33 0.56 0.71 0.90 0.94 1.02 1.27 1.40 1.52 1.78 2.29 2.54 2.79
Thickness (0.013) (0.022) (0.028) (0.035) (0.037) (0.040) (0.050) (0.055) (0.060) (0.070) (0.090) (0.100) (0.110)
PAPER EMBOSSED
AEC-Q200 qualified
TS 16949, ISO 9001 certified
FLEXITERM®MLCC
X8R FLEXITERM®Automotive Series
SIZE 0603 0805 1206
WVDC
25V 50V 25V 50V 25V 50V
271 Cap 270 G G
331 (pF) 330 G G J J
471 470 G G J J
681 680 G G J J
102 1000 G G J J J J
152 1500 G G J J J J
182 1800 G G J J J J
222 2200 G G J J J J
272 2700 G G J J J J
332 3300 G G J J J J
392 3900 G G J J J J
472 4700 G G J J J J
562 5600 G G J J J J
682 6800 G G J J J J
822 8200 G G J J J J
103 Cap 0.01 G G J J J J
123 (μF) 0.012 G G J J J J
153 0.015 G G J J J J
183 0.018 G G J J J J
223 0.022 G G J J J J
273 0.027 G G J J J J
333 0.033 G G J J J J
393 0.039 G G J J J J
473 0.047 G G J J J J
563 0.056 G N N M M
683 0.068 G N N M M
823 0.082 N N M M
104 0.1 N N M M
124 0.12 N N M M
154 0.15 N N M M
184 0.18 N M M
224 0.22 N M M
274 0.27 MM
334 0.33 MM
394 0.39 M
474 0.47 M
684 0.68
824 0.82
105 1
WVDC
25V 50V 25V 50V 25V 50V
SIZE 0603 0805 1206
AVX has developed a range of multilayer ceramic capacitors designed for use in applications up to
150ºC. These capacitors are manufactured with an X8R dielectric material which has a capacitance
variation of ±15% between -55ºC and +150ºC.
The need for X8R performance has been driven by customer requirements for parts that operate at
elevated temperatures. They provide a highly reliable capacitor with low loss and stable capacitance
over temperature and are ideal for automotive under the hood sensors.
X8R capacitors are available as Automotive AEC-Q200 qualified parts. Optional termination
systems, tin, FLEXITERM®and conductive epoxy for hybrid applications are available. Providing this
series with our FLEXITERM®termination system provides further advantage to customers by way of
enhanced resistance to both, temperature cycling and mechanical damage.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/cx8r.pdf
NOTE: Contact factory for non-specified capacitance values.
Contact factory for availability of Termination and Tolerance Options for Specific Part Numbers.
www.avx.com | 65
SIZE LD03 LD05 LD06
WVDC
25V 50V 25V 50V 25V 50V
271 Cap 270 G G
331 (pF) 330 G G J J
471 470 G G J J
681 680 G G J J
102 1000 G G J J J J
152 1500 G G J J J J
182 1800 G G J J J J
222 2200 G G J J J J
272 2700 G G J J J J
332 3300 G G J J J J
392 3900 G G J J J J
472 4700 G G J J J J
562 5600 G G J J J J
682 6800 G G J J J J
822 8200 G G J J J J
103 Cap 0.01 G G J J J J
123 (μF) 0.012 G G J J J J
153 0.015 G G J J J J
183 0.018 G G J J J J
223 0.022 G G J J J J
273 0.027 G G J J J J
333 0.033 G G J J J J
393 0.039 G G J J J J
473 0.047 G G J J J J
563 0.056 G N N M M
683 0.068 G N N M M
823 0.082 N N M M
104 0.1 N N M M
124 0.12 N N M M
154 0.15 N N M M
184 0.18 N M M
224 0.22 N M M
274 0.27 MM
334 0.33 MM
394 0.39 M
474 0.47 M
684 0.68
824 0.82
105 1
WVDC
25V 50V 25V 50V 25V 50V
SIZE LD03 LD05 LD06
Tin/Lead Termination MLCC
LD Series X8R Dielectric, Tin/Lead
X8R Dielectric
AVX Corporation will support those customers for commercial and military Multilayer
Ceramic Capacitors with a termination consisting of 5% minimum lead. This
termination is indicated by the use of a “B” in the 12th position of the AVX Catalog
Part Number. This fulfills AVX’s commitment to providing a full range of products to
our customers. Please contact the factory if you require additional information on our
MLCC Tin/Lead Termination “B” products.
HOW TO ORDER
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/tinterm.pdf
LD05
Size
LD03 - 0603
LD04 - 0504*
LD05 - 0805
LD06 - 1206
5
Voltage
3 = 25V
5 = 50V
F
Dielectric
X8R = F
101
Capacitance
Code (In pF)
2 Sig. Digits
+ Number of Zeros
J
Capacitance
Tolerance
J = ±5%
K = ±10%
M = ±20%
A
Failure
Rate
A = Not
Applicable
B
Terminations
B = 5% min lead
2
Packaging
2 = 7" Reel
4 = 13" Reel
7 = Bulk Cass.
9 = Bulk
Contact
Factory
For
Multiples
A
Special
Code
A = Std. Product
*LD04 has the same CV ranges as LD03.
NOTE: Contact factory for availability of Tolerance Options for Specific Part Numbers.
Contact factory for non-specified capacitance values.
Letter A C E G J K M N P Q X Y Z
Max. 0.33 0.56 0.71 0.90 0.94 1.02 1.27 1.40 1.52 1.78 2.29 2.54 2.79
Thickness (0.013) (0.022) (0.028) (0.035) (0.037) (0.040) (0.050) (0.055) (0.060) (0.070) (0.090) (0.100) (0.110)
PAPER EMBOSSED
66 | www.avx.com
• Non-burn safe technology
• Reliability level: 0.5%/1000 hrs.
• 6 case sizes available
• Environmentally friendly
• IBM global approval received in 2004
• Electra Award received in 2005
• CV range: 4.7-1000μF / 1.8-10V
NOJ Series
Standard OxiCap®Niobium Oxide Capacitors
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/noj.pdf
Electra Award
2005
HOW TO ORDER
NOJ
Type
D
Case Size
107
Capacitance Code
1st two digits
represent significant
figures, 3rd digit
represents multiplier
in pF
M
Tolerance
M=±20%
006
Rated DC Voltage
001 = 1.8Vdc
002 = 2.5Vdc
004 = 4Vdc
006 = 6.3Vdc
010 = 10Vdc
R
Packaging
R = Lead Free
7" Reel
S = Lead Free
13" Reel
WJ
Specification
Suffix
WJ = Standard
Suffix
Additional
characters may be
added for special
requirements
V = Dry pack Option
(selected codes only)
with exception of
D, E, V cases
NON-BURN
NON-SMOKE
LEAD-FREE COMPATIBLE
COMPONENT
Capacitance
Rated Voltage DC (
VR
) to 85°C / 0.66 DC to 105°C
μF Code 1.8V (x) 2.5V (e) 4V (G) 6.3V (J) 10V (A)
4.7 475 A A
6.8 685 A A
10 106 A A/B
15 156 AA/BA/B
22 226 A A/B A/B B/C
33 336 A/BA/B B/C C
47 476 A A/B A/B/C B/C C
68 686 B B/C B/C B/C C
100 107 B/C B/C B/C B/C/D D
150 157 C C C/D C/D E*
220 227 C C C/D C/D/E V*
330 337 C C/D D D/E
470 477 D/E D/E E/V
680 687 E E/V
1000 108 V V
Released codes
Engineering samples - please contact manufacturer
*Codes under development - subject to change
Note: Voltage ratings are minimum values. AVX reserves the right to supply
higher ratings in the same case size, to the same reliability standards.
www.avx.com | 67
• Non-burn safe technology
• Reliability level: 0.5%/1000 hrs.
• CV range: 2.2-470μF / 1.8-10V
• 7 case sizes in low profile available
• IBM global approval received in 2004
• Electra Award received in 2005
NOJ Low Profile
Low Profile OxiCap®Niobium Oxide Capacitors
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/nojlp.pdf
HOW TO ORDER
NOJ
Type
Y
Case Size
107
Capacitance Code
1st two digits
represent significant
figures, 3rd digit
represents multiplier
in pF
M
Tolerance
M=±20%
006
Rated DC Voltage
001 = 1.8Vdc
002 = 2.5Vdc
004 = 4Vdc
006 = 6.3Vdc
010 = 10Vdc
R
Packaging
R = Lead Free
7" Reel
S = Lead Free
13" Reel
WJ
Specification
Suffix
WJ = Standard
Suffix
Additional
characters may be
added for special
requirements
V = Dry pack Option
(selected codes only)
with exception of
X, Y cases
Electra Award
2005
Capacitance Rated Voltage DC (VR) to 85°C / 0.66 DC to 105°C
μF Code 1.8V (x) 2.5V (e) 4V (G) 6.3V (J) 10V (A)
1.0 105
1.5 155
2.2 225 P
3.3 335 P
4.7 475 P/S T
6.8 685 P/S P/S/T T
10 106 P/S P/S/T P/T T
15 156 P/S P/S/T P/T
22 226 P/S/T P/T T T
33 336 T T T W
47 476 T T W W
68 686 W W X/Y
100 107 W W W/X F/Y
150 157 X Y F/Y
220 227 X Y F/Y Y
330 337 Y Y Y
470 477 Y
NON-BURN
NON-SMOKE
LEAD-FREE COMPATIBLE
COMPONENT
Released codes
Engineering samples - please contact manufacturer
*Codes under development - subject to change
Note: Voltage ratings are minimum values. AVX reserves the right to supply
higher ratings in the same case size, to the same reliability standards.
68 | www.avx.com
NLJ Series
Niobium Oxide Capacitors High CV Consumer Series
• High Volumetric efficiency
• Environmentally friendly
• 3x reflow 260°C compatible
• Consumer applications
• OxiCap®non-burn technology
• RoHS compliance
• Lead-free solution
• 10 case sizes available
• CV range: 22-1000μF / 4-10V
HOW TO ORDER
NLJ
Type
A
Case Size
476
Capacitance Code
1st two digits
represent significant
figures, 3rd digit
represents multiplier
in pF
M
Tolerance
M=±20%
006
Rated
DC Voltage
004 = 4Vdc
006 = 6.3Vdc
010 = 10Vdc
R
Packaging
R = 7" T/R
S = 13" T/R
1600
ESR in mΩ
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/nlj.pdf
Electra Award
2005
NON-BURN
NON-SMOKE
LEAD-FREE COMPATIBLE
COMPONENT
Available Ratings, (ESR ratings in mOhms in brackets)
Engineering samples - please contact manufacturer
*Codes under development - subject to change
Note: Voltage ratings are minimum values. AVX reserves the right to supply
higher ratings in the same case size, to the same reliability standards.
www.avx.com | 69
Capacitance
Rated Voltage DC to 40°C / 0.5DC to 85°C / 0.33DC to 105°C
μF Code 4V (G) 6.3V (J) 10V (A)
6.8 685 K(4000)*/P(5000)*
10 106 K(4000)* K(2200)*/P(6000)*
15 156 K(4000)*/P(4000)* P(3500)* L(2800)*/S(2000)*
22 226 P(4000) L(2500)*/S(1800) A(3000)*/G(3000)*
L(2200)*
33 336 A(3000)*/S(1700)* G(2200)/L(2500)* A(1700)/T(1800)*
47 476 A(2600)*/G(2600)* A(1600)/T(1600) B(1000)/H(1000)*
L(1600)* W(400)
68 686 A(1500)*/T(1500)* H(900)* B(1400)*
100 107 H(900)* B(1700)/W(600) C(1200)/Y(1200)
150 157 B(1500)/W(400)
220 227 D(1000)
330 337 C(500)/Y(500)
470 477 C(500)/Y(500)
680 687 D(500)
1000 108 D(500)
• Low ESR Nb0 capacitors
• Non-burn safe technology
• Reliability level: 0.2%/1000 hrs.
• CV range: 10-1000μF / 1.8-6.3V
• 9 case sizes available
• IBM global approval received in 2004
• Electra Award received in 2005
NOS Series
Low ESR OxiCap®Niobium Oxide Capacitors
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/nos.pdf
HOW TO ORDER
NOS
Type
D
Case Size
107
Capacitance Code
1st two digits
represent significant
figures, 3rd digit
represents multiplier
in pF
M
Tolerance
M=±20%
006
Rated
DC Voltage
001 = 1.8Vdc
002 = 2.5Vdc
004 = 4Vdc
006 = 6.3Vdc
R
Packaging
R = Lead Free
7" Reel
S = Lead Free
13" Reel
0100
ESR in mΩ
Additional
characters may be
added for special
requirements
V = Dry pack Option
(selected codes only)
with exception of
D, E, X, Y, V cases
Electra Award
2005
NON-BURN
NON-SMOKE
LEAD-FREE COMPATIBLE
COMPONENT
Capacitance
Rated Voltage DC (
VR
) to 85°C / 0.66 DC to 105ºC / 0.5 DC to 125ºC
μF Code 1.8V (x) 2.5V (e) 4.0V (G) 6.3V (J)
4.7 475
6.8 685
10 106 A(800, 1000,
2000)
15 156 A(1500) B(600)
22 226 A(900) B(600) B(600)
B(600)
33 336 B(600) C(500)
W(250)
B(500) B(500)
47 476 B(500) C(300) C(300)
W(150)
C(200) C(75,200)
68 686 W(150) C(200) X(100)
Y(100)
B(350) C(70,150) C(150)
100 107 C(150) X(100) D(80,100)
W(150) Y(100)
150 157 C(65,150) C(90,150) D(50,70,100)
X(100) Y(100) Y(100)
220 227 C(125) C(80,125) D(40,60,100) D(45,60,100)
X(100) Y(100) Y(100) E(80,100)
330 337 D(35,50,100) D(35,55,100) E(80,100)
Y(100) Y(100) E(100)/Y(150)
470 477 D(35,55,100) D(100) V(75)
Y(100) E(100) E(75,100)
680 687 V(75)
E(60)
1000 108 V(50)
Available Ratings, (ESR ratings in mOhms in brackets)
Engineering samples - please contact manufacturer
*Codes under development - subject to change
Note: Voltage ratings are minimum values. AVX reserves the right to supply
higher ratings in the same case size, to the same reliability standards.
70 | www.avx.com
• Multi-anode construction
• Super low ESR
• Non-burn safe technology
• CV range: 220-680μF / 1.8-6.3V
• IBM global approval received in 2004
• Electra award received in 2005
NOM Series
Ultra Low ESR OxiCap®Niobium Oxide Capacitors
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/nom.pdf
HOW TO ORDER
NOM
Type
E
Case Size
227
Capacitance Code
1st two digits
represent significant
figures, 3rd digit
represents multiplier
in pF
M
Tolerance
M=±20%
006
Rated
DC Voltage
001 = 1.8Vdc
002 = 2.5Vdc
004 = 4Vdc
006 = 6.3Vdc
R
Packaging
R = Lead Free
7" Reel
S = Lead Free
13" Reel
0040
ESR in mΩ
Electra Award
2005
NON-BURN
NON-SMOKE
LEAD-FREE COMPATIBLE
COMPONENT
Available Ratings, (ESR ratings in mOhms in brackets)
Engineering samples - please contact manufacturer
*Codes under development - subject to change
Note: Voltage ratings are minimum values. AVX reserves the right to supply
higher ratings in the same case size, to the same reliability standards.
www.avx.com | 71
Capacitance
Rated Voltage DC (
VR
) to 85°C / 0.66 DC to 105ºC / 0.5 DC to 125ºC
μF Code 1.8V (x) 2.5V (e) 4.0V (G) 6.3V (J)
220 227 E(40)
330 337 E(35) E(23,35)
470 477 E(30) E(23,30)
680 687 E(23) E(23)
The use of very low-loss dielectric materials, silicon dioxide and silicon oxynitride, in conjunc-
tion with highly conductive electrode metals results in low ESR and high Q. These
high-frequency characteristics change at a slower rate with increasing frequency than for
ceramic microwave capacitors.
Because of the thin-film technology, the above-mentioned frequency characteristics are
obtained without significant compromise of properties required for surface mounting.
Accu-F RF Capacitors
Thin Film Low ESR High Q Capacitors
(1) TC’s shown are per EIA/IEC Specifications.
HOW TO ORDER
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/accuf-p.pdf
Size Code 0603 0805
Voltage 100 50 25 100 50 25
Cap in Cap
pF(1) code
0.1 0R1
0.2 0R2
0.3 0R3
0.4 0R4
0.5 0R5
0.6 0R6
0.7 0R7
0.8 0R8
0.9 0R9
1.0 1R0
1.2 1R2
1.5 1R5
1.8 1R8
2.2 2R2
2.7 2R7
3.3 3R3
3.9 3R9
4.7 4R7
5.6 5R6
6.8 6R8
8.2 8R2
10 100
12 120
15 150
18 180
22 220
27 270
33 330
39 390
47 470
56 560
68 680
82 820
100 101
120 121
150 151
Size Code 0603 0805
Voltage 100 50 25 100 50 25
Cap in Cap
pF((1) code
0.1 0R1
0.2 0R2
0.3 0R3
0.4 0R4
0.5 0R5
0.6 0R6
0.7 0R7
0.8 0R8
0.9 0R9
1.0 1R0
1.2 1R2
1.5 1R5
1.8 1R8
2.2 2R2
2.7 2R7
3.3 3R3
3.9 3R9
4.7 4R7
5.6 5R6
6.8 6R8
8.2 8R2
10 100
12 120
15 150
18 180
22 220
27 270
33 330
39 390
47 470
56 560
68 680
82 820
100 101
120 121
150 151
TEMP. COEFFICIENT CODE
“J” = 0±30ppm/°C (-55°C to +125°C)(2)
TEMP. COEFFICIENT CODE
“K” = 0±60ppm/°C (-55°C to +125°)(2)
Intermediate values are available within the indicated range.
(1) For capacitance values
higher than listed in table,
please consult factory.
(2) TC shown is per EIA/IEC
Specifications.
RoHS COMPLIANT
Pb: Free
0402
Size
0603
0805
3
Voltage
1 = 100V
5 = 50V
3 = 25V
J
Temperature
Coefficient
(1)
J = 0±30ppm/°C
(-55°C to
+125°C)
K = 0±60ppm/°C
(-55°C to
+125°C)
4R7
Capacitance
Capacitance
expressed in pF.
(2 significant
digits + number
of zeros)
for values
<10pF,
letter R denotes
decimal point.
Example:
68pF = 680
8.2pF = 8R2
A
Tolerance
for
C≤2.0pF*
P = ±0.02pF
Q = ±0.03pF
A = ±0.05pF
B = ±0.1pF
C = ±0.25pF
for
C≤3.0pF
Q = ±0.03pF
A = ±0.05pF
B = ±0.1pF
C = ±0.25pF
for
C≤5.6pF
A = ±0.05pF
B = ±0.1pF
C = ±0.25pF
for
5.6pF<C<10pF
B = ±0.1pF
C = ±0.25pF
D = ±0.5pF
for
C≥10pF
F = ±1%
G = ±2%
J = ±5%
A
Specification
Code
A = Accu-F®
technology
W
Termination Code
W = Nickel/Solder
Coated
Accu-F®Sn63, Pb37
TR
Packaging
Code
TR = Tape & Reel
* Tolerances as tight as ±0.01pF are available. Please consult the factory.
72 | www.avx.com
As in the Accu-F®series the use of very low-loss dielectric materials (silicon dioxide and silicon
oxynitride) in conjunction with highly conductive electrode metals results in low ESR and high
Q. At high frequency these characteristics change at a slower rate with increasing frequency
than conventional ceramic microwave capacitors. Using thin-film technology, the above-
mentioned frequency characteristics are obtained without significant compromise of properties
required for surface mounting. The use of high thermal conductivity materials results in
excellent RF power handling capabilities.
Accu-P RF Capacitors
Thin Film Low ESR High Q Capacitors
HOW TO ORDER
* Tolerances as tight as ±0.01pF are available. Please consult the factory.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/accuf-p.pdf
“K” = 0±60ppm/°C (-55°C to +125°C)(2)
TEMP. COEFFICIENT CODE:
“J” = 0±30ppm/°C (-55°C to +125°C)(2)
(1) For capacitance values
higher than listed in
table, please consult
factory.
(2) TC shown is per
EIA/IEC Specifications.
(3) For 50 volt range,
please consult factory.
These values are
produced with “K”
temperature
coefficient code only.
Intermediate values are available within the indicated range.
Size Code 0201 0402 0603 0805 1210
Voltage 100 50 25 16 10 100 50 25 16 10 100 50 25 100 50 25 100 50
Cap in Cap
pF
(1)
code
0.1 0R1
0.2 0R2
0.3 0R3
0.4 0R4
0.5 0R5
0.6 0R6
0.7 0R7
0.8 0R8
0.9 0R9
1.0 1R0
1.1 1R1
1.2 1R2
1.3 1R3
1.4 1R4
1.5 1R5
1.6 1R6
1.7 1R7
1.8 1R8
1.9 1R9
2.0 2R0
2.1 2R1
2.2 2R2
2.3 2R3
2.4 2R4
2.5 2R5
2.6 2R6
2.7 2R7
2.8 2R8
2.9 2R9
3.0 3R0
3.1 3R1
3.2 3R2
3.3 3R3
3.4 3R4
3.5 3R5
3.6 3R6
3.7 3R7
3.8 3R8
3.9 3R9
4.0 4R0
4.1 4R1
4.2 4R2
4.3 4R3
4.4 4R4
4.5 4R5
4.6 4R6
4.7 4R7
5.1 5R1
5.6 5R6
6.2 6R2
6.8 6R8
7.5 7R5
8.2 8R2
9.1 9R1
10.0 100
11.0 110
12.0 120
13.0 130
14.0 140
15.0 150
16.0 160
17.0 170
18.0 180
19.0 190
20.0 200
21.0 210
22.0 220
24.0 240
27.0 270
30.0 300
33.0 330
39.0 390
47.0 470
56.0 560
68.0 680
Size Code 0805 1210
Voltage 100 50 25 100 50
(3)
Cap in Cap
pF
(1)
code
0.1 0R1
0.2 0R2
0.3 0R3
0.4 0R4
0.5 0R5
0.6 0R6
0.7 0R7
0.8 0R8
0.9 0R9
1.0 1R0
1.1 1R1
1.2 1R2
1.3 1R3
1.4 1R4
1.5 1R5
1.6 1R6
1.7 1R7
1.8 1R8
1.9 1R9
2.0 2R0
2.1 2R1
2.2 2R2
2.3 2R3
2.4 2R4
2.5 2R5
2.6 2R6
2.7 2R7
2.8 2R8
2.9 2R9
3.0 3R0
3.1 3R1
3.2 3R2
3.3 3R3
3.4 3R4
3.5 3R5
3.6 3R6
3.7 3R7
3.8 3R8
3.9 3R9
4.0 4R0
4.1 4R1
4.2 4R2
4.3 4R3
4.4 4R4
4.5 4R5
4.6 4R6
4.7 4R7
5.1 5R1
5.6 5R6
6.2 6R2
6.8 6R8
7.5 7R5
8.2 8R2
9.1 9R1
10.0 100
11.0 110
12.0 120
13.0 130
14.0 140
15.0 150
16.0 160
17.0 170
18.0 180
19.0 190
20.0 200
21.0 210
22.0 220
24.0 240
27.0 270
30.0 300
33.0 330
39.0 390
47.0 470
56.0 560
68.0 680
RoHS COMPLIANT
Pb: Free
0402
Size
0201
0402
0603
0805
1210
3
Voltage
1 = 100V
5 = 50V
3 = 25V
Y = 16V
Z = 10V
J
Temperature
Coefficient
(1)
J = 0±30ppm/°C
(-55°C to
+125°C)
K = 0±60ppm/°C
(-55°C to
+125°C)
4R7
Capacitance
Capacitance
expressed in pF.
(2 significant
digits + number
of zeros)
for values
<10pF,
letter R denotes
decimal point.
Example:
68pF = 680
8.2pF = 8R2
A
Tolerance
for
C≤2.0pF*
P = ±0.02pF
Q = ±0.03pF
A = ±0.05pF
B = ±0.1pF
C = ±0.25pF
for
C≤3.0pF
Q = ±0.03pF
A = ±0.05pF
B = ±0.1pF
C = ±0.25pF
for
C≤5.6pF
A = ±0.05pF
B = ±0.1pF
C = ±0.25pF
for
5.6pF<C<10pF
B = ±0.1pF
C = ±0.25pF
D = ±0.5pF
for
C≥10pF
F = ±1%
G = ±2%
J = ±5%
B
Specification
Code
B = Accu-P®
technology
S
Termination Code
W = Nickel/Solder Coated
Accu-P®0402 Sn90, Pb10
T = Nickel/High Temperature
Solder Coated
Accu-P®0805**, 1210**
Sn96, Ag4
Nickel/Solder Coated
Accu-P®0603
Sn63, Pb37
**S = Nickel/Lead Free
Solder Coated
Accu-P®0201, 0402, 0603
Sn100
**RoHS Compliant
TR
Packaging
Code
TR = Tape & Reel
(1) TC’s shown are per EIA/IEC Specifications.
www.avx.com | 73
SQCA/CB RF Capacitors
Ceramic (0505/1111) Low ESR High Q Capacitors
SQCA (0505) & SQCB (1111) are AVX’s Ultra Low ESR
microwave capacitors. Suitable for RF Power Amplifiers, they
come in non-mag termination for MRI applications. They offer
very High Q & resonant frequency and power handling
capability.
SQ
AVX Style
SQ
CB
Case Size
CA = 0505
CB = 1111
7
Voltage Code
5 = 50V
E = 150V
2 = 200V
V = 250V
9 = 300V
7 = 500V
M 100 J A
Failure Rate
Code
A = Not Applicable
T
Termination
Style Code
1A
Packaging
Code
HOW TO ORDER
Temperature
Coefficient
Code
M = +90±20ppm/°C
A = 0±30ppm/°C
C = 15%
(“J” Termination only)
*1 = Pd/Ag
*7 = Ag/Ni/Au
J = Nickel Barrier
Tin/Lead
(60/40)
*T = 100% Tin
*RoHS Compliant
Capacitance
Tolerance
Code
B = ±.1 pF
C = ±.25 pF
D = ±.5 pF
F = ±1%
G = ±2%
J = ±5%
K = ±10%
M = ±20%
N = ±30%
Capacitance
EIA Capacitance
Code in pF.
First two digits =
significant figures
or “R” for decimal
place.
Third digit = number
of zeros or after “R”
significant figures.
1A = 7" Reel Unmarked
6A = Waffle Pack
Unmarked
ME = 7" Reel Marked
WE = Waffle Pack
Unmarked
*Vertical T&R
available
*500 piece reels available
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/sq.pdf
TABLE II: TC: A (0±30PPM/°C)
Cap. pF Cap. Tol. WVDC
0.1 B 150
0.2 B 150
0.3 B,C 150
0.4 B,C 150
0.5 B, C, D 150
0.6 B, C, D 150
0.7 B, C, D 150
0.8 B, C, D 150
0.9 B, C, D 150
1.0 B, C, D 150
1.1 B, C, D 150
1.2 B, C, D 150
1.3 B, C, D 150
1.4 B, C, D 150
1.5 B, C, D 150
1.6 B, C, D 150
1.7 B, C, D 150
1.8 B, C, D 150
1.9 B, C, D 150
2.0 B, C, D 150
2.2 B, C, D 150
2.4 B, C, D 150
Cap. pF Cap. Tol. WVDC
2.7 B, C, D 150
3.0 B, C, D 150
3.3 B, C, D 150
3.6 B, C, D 150
3.9 B, C, D 150
4.3 B, C, D 150
4.7 B, C, D 150
5.1 B, C, D 150
5.6 B, C, D 150
6.2 B, C, D 150
6.8 B, C, J, K 150
7.5 B, C, J, K 150
8.2 B, C, J, K 150
9.1 B, C, J, K 150
10 F, G, J, K 150
11 F, G, J, K 150
12 F, G, J, K 150
13 F, G, J, K 150
15 F, G, J, K 150
16 F, G, J, K 150
18 F, G, J, K 150
Cap. pF Cap. Tol. WVDC
20 F, G, J, K 150
22 F, G, J, K 150
24 F, G, J, K 150
27 F, G, J, K 150
30 F, G, J, K 150
33 F, G, J, K 150
36 F, G, J, K 150
39 F, G, J, K 150
43 F, G, J, K 150
47 F, G, J, K 150
51 F, G, J, K 150
56 F, G, J, K 150
62 F, G, J, K 150
68 F, G, J, K 150
75 F, G, J, K 150
82 F, G, J, K 150
91 F, G, J, K 150
100 F, G, J, K 150
110 F, G, J, K 50
120 F, G, J, K 50
130 F, G, J, K 50
Cap. pF Cap. Tol. WVDC
150 F, G, J, K 50
160 F, G, J, K 50
180 F, G, J, K 50
200 F, G, J, K 50
220 F, G, J, K 50
240 F, G, J, K 50
270 F, G, J, K 50
300 F, G, J, K 50
330 F, G, J, K 50
360 F, G, J, K 50
390 F, G, J, K 50
430 F, G, J, K 50
470 F, G, J, K 50
510 F, G, J, K 50
560 F, G, J, K 50
620 F, G, J, K 50
680 F, G, J, K 50
750 F, G, J, K 50
820 F, G, J, K 50
910 F, G, J, K 50
1000 F, G, J, K 50
Case Size A
RoHS COMPLIANT
Pb: Free
TABLE I: TC: M (+90±20PPM/°C)
Cap. pF Cap. Tol. WVDC
0.1 B 150, 250
0.2 B 150, 250
0.3 B,C 150, 250
0.4 B,C 150, 250
0.5 B, C, D 150, 250
0.6 B, C, D 150, 250
0.7 B, C, D 150, 250
0.8 B, C, D 150, 250
0.9 B, C, D 150, 250
1.0 B, C, D 150, 250
1.1 B, C, D 150, 250
1.2 B, C, D 150, 250
1.3 B, C, D 150, 250
1.4 B, C, D 150, 250
1.5 B, C, D 150, 250
1.6 B, C, D 150, 250
Cap. pF Cap. Tol. WVDC
6.2 B, C, D 150, 250
6.8 B, C, J, K 150, 250
7.5 B, C, J, K 150, 250
8.2 B, C, J, K 150, 250
9.1 B, C, J, K 150, 250
10 F, G, J, K 150, 250
11 F, G, J, K 150, 250
12 F, G, J, K 150, 250
13 F, G, J, K 150, 250
15 F, G, J, K 150, 250
16 F, G, J, K 150, 250
18 F, G, J, K 150, 250
20 F, G, J, K 150, 250
22 F, G, J, K 150, 250
24 F, G, J, K 150, 250
Cap. pF Cap. Tol. WVDC
27 F, G, J, K 150, 250
30 F, G, J, K 150, 250
33 F, G, J, K 150, 250
36 F, G, J, K 150, 250
39 F, G, J, K 150, 250
43 F, G, J, K 150, 250
47 F, G, J, K 150, 250
51 F, G, J, K 150, 250
56 F, G, J, K 150, 250
62 F, G, J, K 150, 250
68 F, G, J, K 150, 250
75 F, G, J, K 150, 250
82 F, G, J, K 150, 250
91 F, G, J, K 150, 250
100 F, G, J, K 150, 250
Cap. pF Cap. Tol. WVDC
1.7 B, C, D 150, 250
1.8 B, C, D 150, 250
1.9 B, C, D 150, 250
2.0 B, C, D 150, 250
2.2 B, C, D 150, 250
2.4 B, C, D 150, 250
2.7 B, C, D 150, 250
3.0 B, C, D 150, 250
3.3 B, C, D 150, 250
3.6 B, C, D 150, 250
3.9 B, C, D 150, 250
4.3 B, C, D 150, 250
4.7 B, C, D 150, 250
5.1 B, C, D 150, 250
5.6 B, C, D 150, 250
74 | www.avx.com
SQCA/CB RF Capacitors
Ceramic (0505/1111) Low ESR High Q Capacitors
Case Size A
Case Size B
TABLE III: TC: C (±15%)
Cap. pF Cap. Tol. WVDC
1000 K, M, N 50
1200 K, M, N 50
1500 K, M, N 50
1800 K, M, N 50
2000 K, M, N 50
Cap. pF Cap. Tol. WVDC
2200 K, M, N 50
2700 K, M, N 50
3300 K, M, N 50
3900 K, M, N 50
4700 K, M, N 50
Cap. pF Cap. Tol. WVDC
5100 K, M, N 50
5600 K, M, N 50
6800 K, M, N 50
8200 K, M, N 50
10000 K, M, N 50
TABLE V: TC: A (0±30PPM/°C)
TABLE VI: TC: C (±15%)
Cap. pF Cap. Tol. WVDC
0.1 B 500
0.2 B 500
0.3 B,C 500
0.4 B,C 500
0.5 B, C, D 500
0.6 B, C, D 500
0.7 B, C, D 500
0.8 B, C, D 500
0.9 B, C, D 500
1.0 B, C, D 500
1.1 B, C, D 500
1.2 B, C, D 500
1.3 B, C, D 500
1.4 B, C, D 500
1.5 B, C, D 500
1.6 B, C, D 500
1.7 B, C, D 500
1.8 B, C, D 500
1.9 B, C, D 500
2.0 B, C, D 500
2.2 B, C, D 500
2.4 B, C, D 500
2.7 B, C, D 500
3.0 B, C, D 500
3.3 B, C, D 500
3.6 B, C, D 500
Cap. pF Cap. Tol. WVDC
3.9 B, C, D 500
4.3 B, C, D 500
4.7 B, C, D 500
5.1 B, C, D 500
5.6 B, C, D 500
6.2 B, C, D 500
6.8 B, C, J, K 500
7.5 B, C, J, K 500
8.2 B, C, J, K 500
9.1 B, C, J, K 500
10 F, G, J, K 500
11 F, G, J, K 500
12 F, G, J, K 500
13 F, G, J, K 500
15 F, G, J, K 500
16 F, G, J, K 500
18 F, G, J, K 500
20 F, G, J, K 500
22 F, G, J, K 500
24 F, G, J, K 500
27 F, G, J, K 500
30 F, G, J, K 500
33 F, G, J, K 500
36 F, G, J, K 500
39 F, G, J, K 500
43 F, G, J, K 500
Cap. pF Cap. Tol. WVDC
47 F, G, J, K 500
51 F, G, J, K 500
56 F, G, J, K 500
62 F, G, J, K 500
68 F, G, J, K 500
75 F, G, J, K 500
82 F, G, J, K 500
91 F, G, J, K 500
100 F, G, J, K 500
110 F, G, J, K 300
120 F, G, J, K 300
130 F, G, J, K 300
150 F, G, J, K 300
160 F, G, J, K 300
180 F, G, J, K 300
200 F, G, J, K 300
220 F, G, J, K 200
240 F, G, J, K 200
270 F, G, J, K 200
300 F, G, J, K 200
330 F, G, J, K 200
360 F, G, J, K 200
390 F, G, J, K 200
430 F, G, J, K 200
470 F, G, J, K 200
510 F, G, J, K 150
Cap. pF Cap. Tol. WVDC
560 F, G, J, K 150
620 F, G, J, K 150
680 F, G, J, K 150
750 F, G, J, K 150
820 F, G, J, K 150
910 F, G, J, K 150
1000 F, G, J, K 150
1100 F, G, J, K 50
1200 F, G, J, K 50
1300 F, G, J, K 50
1500 F, G, J, K 50
1600 F, G, J, K 50
1800 F, G, J, K 50
2000 F, G, J, K 50
2200 F, G, J, K 50
2400 F, G, J, K 50
2700 F, G, J, K 50
3000 F, G, J, K 50
3300 F, G, J, K 50
3600 F, G, J, K 50
3900 F, G, J, K 50
4300 F, G, J, K 50
4700 F, G, J, K 50
5000 F, G, J, K 50
5100 F, G, J, K 50
TABLE IV: TC: M (+90±20PPM/°C)
Cap. pF Cap. Tol. WVDC
0.1 B 500
0.2 B 500
0.3 B,C 500
0.4 B,C 500
0.5 B, C, D 500
0.6 B, C, D 500
0.7 B, C, D 500
0.8 B, C, D 500
0.9 B, C, D 500
1.0 B, C, D 500
1.1 B, C, D 500
1.2 B, C, D 500
1.3 B, C, D 500
1.4 B, C, D 500
1.5 B, C, D 500
1.6 B, C, D 500
1.7 B, C, D 500
1.8 B, C, D 500
1.9 B, C, D 500
2.0 B, C, D 500
2.2 B, C, D 500
2.4 B, C, D 500
Cap. pF Cap. Tol. WVDC
2.7 B, C, D 500
3.0 B, C, D 500
3.3 B, C, D 500
3.6 B, C, D 500
3.9 B, C, D 500
4.3 B, C, D 500
4.7 B, C, D 500
5.1 B, C, D 500
5.6 B, C, D 500
6.2 B, C, D 500
6.8 B, C, J, K 500
7.5 B, C, J, K 500
8.2 B, C, J, K 500
9.1 B, C, J, K 500
10 F, G, J, K 500
11 F, G, J, K 500
12 F, G, J, K 500
13 F, G, J, K 500
15 F, G, J, K 500
16 F, G, J, K 500
18 F, G, J, K 500
Cap. pF Cap. Tol. WVDC
20 F, G, J, K 500
22 F, G, J, K 500
24 F, G, J, K 500
27 F, G, J, K 500
30 F, G, J, K 500
33 F, G, J, K 500
36 F, G, J, K 500
39 F, G, J, K 500
43 F, G, J, K 500
47 F, G, J, K 500
51 F, G, J, K 500
56 F, G, J, K 500
62 F, G, J, K 500
68 F, G, J, K 500
75 F, G, J, K 500
82 F, G, J, K 500
91 F, G, J, K 500
100 F, G, J, K 500
110 F, G, J, K 300
120 F, G, J, K 300
130 F, G, J, K 300
Cap. pF Cap. Tol. WVDC
150 F, G, J, K 300
160 F, G, J, K 300
180 F, G, J, K 300
200 F, G, J, K 300
220 F, G, J, K 200
240 F, G, J, K 200
270 F, G, J, K 200
300 F, G, J, K 200
330 F, G, J, K 200
360 F, G, J, K 200
390 F, G, J, K 200
430 F, G, J, K 200
470 F, G, J, K 200
510 F, G, J, K 150
560 F, G, J, K 150
620 F, G, J, K 150
680 F, G, J, K 150
750 F, G, J, K 150
820 F, G, J, K 150
910 F, G, J, K 150
1000 F, G, J, K 150
Cap. pF Cap. Tol. WVDC
5000 K, M, N 50
6800 K, M, N 50
8200 K, M, N 50
10000 K, M, N 50
12000 K, M, N 50
Cap. pF Cap. Tol. WVDC
15000 K, M, N 50
18000 K, M, N 50
27000 K, M, N 50
33000 K, M, N 50
39000 K, M, N 50
Cap. pF Cap. Tol. WVDC
47000 K, M, N 50
68000 K, M, N 50
82000 K, M, N 50
100000 K, M, N 50
RoHS COMPLIANT
Pb: Free
www.avx.com | 75
SQCS/CF RF Capacitors
Ceramic (0603/0805) Ultra Low ESR High Q Capacitors
SQCS (0603) & SQCF (0805) are AVX’s Ultra Low ESR microwave capacitors
suitable for Base Station infrastructure applications requiring High Q and power
handling capability.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/sq.pdf
SQ
AVX Style
SQ
CS
Case Size
CS = 0603
CF = 0805
V
Voltage Code
V = 250V
A 100 J A
Failure Rate
Code
A = Not Applicable
T
Termination
Style Code
1A
Packaging
Code
HOW TO ORDER
Temperature
Coefficient
Code
A = 0±30ppm/°C
**1 = Pd/Ag
**7 = Ag/Ni/Au
J = Nickel Barrier
Tin/Lead
(60/40)
**T = 100% Tin
(Standard)
**RoHS Compliant
Capacitance
Tolerance
Code
A = ±.05 pF
B = ±.1 pF
C = ±.25 pF
D = ±.5 pF
F = ±1%
G = ±2%
J = ±5%
Capacitance
EIA Capacitance
Code in pF.
First two digits =
significant figures
or “R” for decimal
place.
Third digit = number
of zeros or after “R”
significant figures.
1A = 7" Reel
Unmarked
ME = 7" Reel
Marked
*Vertical T&R
available
*500 piece reels
available
Cap. pF Cap. Tol. WVDC
0.1 A, B 250
0.2 A, B 250
0.3 A, B 250
0.4 A, B 250
0.5 A, B, C 250
0.6 A, B, C 250
0.7 A, B, C 250
0.8 A, B, C 250
0.9 A, B, C 250
1.0 A, B, C 250
1.1 A, B, C 250
1.2 A, B, C 250
1.3 A, B, C 250
1.4 A, B, C 250
1.5 A, B, C 250
1.6 A, B, C 250
1.7 A, B, C 250
1.8 A, B, C 250
1.9 A, B, C 250
2.0 A, B, C 250
2.2 A, B, C 250
Cap. pF Cap. Tol. WVDC
2.4 A, B, C 250
2.7 A, B, C 250
3.0 A, B, C 250
3.3 A, B, C 250
3.6 A, B, C 250
3.9 A, B, C 250
4.3 A, B, C 250
4.7 A, B, C 250
5.1 A, B, C 250
5.6 A, B, C 250
6.2 A, B, C 250
6.8 B, C, D 250
7.5 B, C, D 250
8.2 B, C, D 250
9.1 B, C, D 250
10 F, G, J 250
11 F, G, J 250
12 F, G, J 250
13 F, G, J 250
15 F, G, J 250
16 F, G, J 250
Cap. pF Cap. Tol. WVDC
18 F, G, J 250
20 F, G, J 250
22 F, G, J 250
24 F, G, J 250
27 F, G, J 250
30 F, G, J 250
33 F, G, J 250
36 F, G, J 250
39 F, G, J 250
43 F, G, J 250
47 F, G, J 250
51 F, G, J 250
56 F, G, J 250
62 F, G, J 250
68 F, G, J 250
75 F, G, J 250
82 F, G, J 250
91 F, G, J 250
100 F, G, J 250
TABLE I: TC: A (0±30PPM/°C) CASE SIZE S
Cap. pF Cap. Tol. WVDC
0.1 A, B 250
0.2 A, B 250
0.3 A, B 250
0.4 A, B 250
0.5 A, B, C 250
0.6 A, B, C 250
0.7 A, B, C 250
0.8 A, B, C 250
0.9 A, B, C 250
1.0 A, B, C 250
1.1 A, B, C 250
1.2 A, B, C 250
1.3 A, B, C 250
1.4 A, B, C 250
1.5 A, B, C 250
1.6 A, B, C 250
1.7 A, B, C 250
1.8 A, B, C 250
1.9 A, B, C 250
2.0 A, B, C 250
2.2 A, B, C 250
Cap. pF Cap. Tol. WVDC
2.4 A, B, C 250
2.7 A, B, C 250
3.0 A, B, C 250
3.3 A, B, C 250
3.6 A, B, C 250
3.9 A, B, C 250
4.3 A, B, C 250
4.7 A, B, C 250
5.1 A, B, C 250
5.6 A, B, C 250
6.2 A, B, C 250
6.8 B, C, D 250
7.5 B, C, D 250
8.2 B, C, D 250
9.1 B, C, D 250
10 F, G, J 250
11 F, G, J 250
12 F, G, J 250
13 F, G, J 250
15 F, G, J 250
16 F, G, J 250
Cap. pF Cap. Tol. WVDC
18 F, G, J 250
20 F, G, J 250
22 F, G, J 250
24 F, G, J 250
27 F, G, J 250
30 F, G, J 250
33 F, G, J 250
36 F, G, J 250
39 F, G, J 250
43 F, G, J 250
47 F, G, J 250
51 F, G, J 250
56 F, G, J 250
62 F, G, J 250
68 F, G, J 250
75 F, G, J 250
82 F, G, J 250
91 F, G, J 250
100 F, G, J 250
110 F, G, J 250
120 F, G, J 250
Cap. pF Cap. Tol. WVDC
150 F, G, J 250
180 F, G, J 250
200 F, G, J 250
220 F, G, J 250
240 F, G, J 250
TABLE II: TC: A (0±30PPM/°C) CASE SIZE F
RoHS COMPLIANT
Pb: Free
76 | www.avx.com
U Series RF Capacitors (RoHS)
C0G (NP0) Ceramic Low ESR Capacitors
“U” Series capacitors are C0G (NP0) chip capacitors specially designed for “Ultra” low
ESR for applications in the communications market. Max ESR and effective capacitance
are met on each value producing lot to lot uniformity. Sizes available are EIA chip sizes
0402, 0603, 0805, and 1210.
0805
Case Size
0402
0603
0805
1210
1
Voltage Code
5 = 50V
1 = 100V
2 = 200V
U
Dielectric =
Ultra Low ESR
100
Capacitance
J
Capacitance
Tolerance
Code
B = ±0.1pF
C = ±0.25pF
D = ±0.5pF
F = ±1%
G = ±2%
J = ±5%
K = ±10%
M = ±20%
A
Failure Rate
Code
A = Not
Applicable
T
Termination
T = Plated Ni
and Sn
2
Packaging
Code
A
Special Code
A = Standard
HOW TO ORDER
EIA Capacitance
Code in pF.
First two digits =
significant figures
or “R” for
decimal place.
Third digit =
number of zeros
or after “R”
significant figures.
2 = 7" Reel
4 = 13" Reel
9 = Bulk
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/useries.pdf
Available Size
Cap (pF) Tolerance 0402 0603 0805 1210
0.2 B,C 50V N/A N/A N/A
0.3
0.4
0.5 B,C
0.6 B,C,D
0.7
0.8
0.9 B,C,D
Available Size
Cap (pF) Tolerance 0402 0603 0805 1210
1.0 B,C,D 50V 200V 200V 200V
1.1
1.2
1.3
1.4
1.5
1.6
1.7
1.8
1.9
2.0
2.1
2.2
2.4
2.7
3.0
3.3
3.6
3.9
4.3
4.7
5.1
5.6
6.2 B,C,D
6.8 B,C,J,K,M
Available Size
Cap (pF) Tolerance 0402 0603 0805 1210
7.5 B,C,J,K,M 50V 200V 200V 200V
8.2
9.1 B,C,J,K,M
10 F,G,J,K,M
11
12
13
15
18 200V
20 100V
22
24
27
30 50V
33 N/A
36
39
43
47
51
56
68
75
82
91
Available Size
Cap (pF) Tolerance 0402 0603 0805 1210
100 F,G,J,K,M N/A 100V 200V 200V
110 50V
120 50V
130 N/A 200V
140 100V
150
160 100V
180 N/A
200
220
270
300
330
360
390
430 200V
470 100V
510
560
620
680
750
820
910
1000 F,G,J,K,M
RoHS COMPLIANT
Pb: Free
www.avx.com | 77
U Series RF Capacitors (Tin/Lead)
C0G (NP0) Ceramic Low ESR Capacitors
“U” Series capacitors are C0G (NP0) chip capacitors specially designed for “Ultra” low
ESR for applications in the communications market. Max ESR and effective capacitance
are met on each value producing lot to lot uniformity. Sizes available are EIA chip sizes
0402, 0603, 0805, and 1210.
LD05
Case Size
LD02 = 0402
LD03 = 0603
LD05 = 0805
LD10 = 1210
1
Voltage Code
5 = 50V
1 = 100V
2 = 200V
U
Dielectric =
Ultra Low ESR
100
Capacitance
J
Capacitance
Tolerance
Code
B = ±0.1pF
C = ±0.25pF
D = ±0.5pF
F = ±1%
G = ±2%
J = ±5%
K = ±10%
M = ±20%
A
Failure Rate
Code
A = Not
Applicable
B
Termination
B = 5% min lead
2
Packaging
Code
A
Special Code
A = Standard
HOW TO ORDER
EIA Capacitance
Code in pF.
First two digits =
significant figures
or “R” for
decimal place.
Third digit =
number of zeros
or after “R”
significant figures.
2 = 7" Reel
4 = 13" Reel
9 = Bulk
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/useries.pdf
RoHS COMPLIANT
Pb: Free
Available Size
Cap (pF) Tolerance LD02 LD03 LD05 LD10
0.2 B,C 50V N/A N/A N/A
0.3
0.4
0.5 B,C
0.6 B,C,D
0.7
0.8
0.9 B,C,D
Available Size
Cap (pF) Tolerance LD02 LD03 LD05 LD10
1.0 B,C,D 50V 200V 200V 200V
1.1
1.2
1.3
1.4
1.5
1.6
1.7
1.8
1.9
2.0
2.1
2.2
2.4
2.7
3.0
3.3
3.6
3.9
4.3
4.7
5.1
5.6
6.2 B,C,D
6.8 B,C,J,K,M
Available Size
Cap (pF) Tolerance LD02 LD03 LD05 LD10
7.5 B,C,J,K,M 50V 200V 200V 200V
8.2
9.1 B,C,J,K,M
10 F,G,J,K,M
11
12
13
15
18 200V
20 100V
22
24
27
30 50V
33 N/A
36
39
43
47
51
56
68
75
82
91
Available Size
Cap (pF) Tolerance LD02 LD03 LD05 LD10
100 F,G,J,K,M N/A 100V 200V 200V
110 50V
120 50V
130 N/A 200V
140 100V
150
160 100V
180 N/A
200
220
270
300
330
360
390
430 200V
470 100V
510
560
620
680
750
820
910
1000 F,G,J,K,M
78 | www.avx.com
Hi-Q®, High RF Power, Surface Mount and Leaded MLC Capacitors from AVX
Corporation are characterized with ultra-low ESR and dissipation factor at high fre-
quencies. They are designed to handle high power and high voltage levels for appli-
cations in RF power amplifiers, inductive heating, high magnetic field environments
(MRI coils), medical and industrial electronics.
HOW TO ORDER
HQCC
AVX
Style
HQCC
HQCE
A
Voltage
C = 600V
A = 1000V
S = 1500V
G = 2000V
W = 2500V
H = 3000V
J = 4000V
K = 5000V
M = 7200V
A
Temperature
Coefficient
C0G = A
271
Capacitance Code
(2 significant digits
+ no. of zeros)
Examples:
4.7 pF = 4R7
10 pF = 100
100 pF = 101
1,000 pF = 102
J
Capacitance
Tolerance
C = ±0.25pF (<13pF)
D = ±0.50pF (<25pF)
F = ±1% (25pF)
G = ±2% (13pF)
J = ±5%
K = ±10%
M = ±20%
A
Test Level
A = Standard
T
Termination*
1 = Pd/Ag
T = Plated
Ni and Sn
(RoHS Compliant)
J = 5% Min Pb
M = Microstip (non-mag)
A = Axial (non-mag)
1
Packaging
1 = 7" Reel
3 = 13" Reel
9 = Bulk
A
Special
Code
A = Standard
HQ Series, High Q, High RF Power Chips
For 600V to 7200V Application
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/hi-q.pdf
Capacitance Range 3.3pF to 6,800pF
(25°C, 1.0 ±0.2 Vrms at 1kHz, for ≤ 1000 pF use 1MHz)
Capacitance Tolerances ±0.25pF, ±0.50pF, ±1%, ±2%, ±5%, ±10%, ±20%
Dissipation Factor 25°C 0.1% Max (+25°C, 1.0 ±0.2 Vrms at 1kHz, for ≤ 1000 pF use 1MHz)
Operating Temperature Range -55°C to +125°C
Temperature Characteristic C0G: 0 ± 30 ppm/°C (-55°C to +125°C)
Voltage Ratings 600, 1000, 1500, 2000, 2500, 3000, 4000, 5000, 7200VDC
Insulation Resistance 100K MΩ min. @ +25°C and 500VDC
10K MΩ min. @ +125°C and 500VDC
Dielectric Strength 120% of rated WVDC
DIELECTRIC PERFORMANCE CHARACTERISTICS
HIGH VOLTAGE CAPACITANCE VALUES (pF)
Style 600 1000 1500 2000 2500 3000 4000 5000 7200
WDC WVDC WVDC WVDC WVDC WVDC WVDC WVDC WVDC
min./max. min./max. min./max. min./max. min./max. min./max. min./max. min./max. min./max.
HQCC
2,200 - 2,700 1,500 - 1,800 820 - 1,200 470 - 680 330 - 390 4.7 - 270 3.3 - 6.8
HQCE
3.3 - 6,800 3.3 - 4,700 3.3 - 2,700 3.3 - 1,800 3.3 - 1,000 3.3 - 680 3.3 - 390 3.3 - 180 3.3 - 100
RoHS COMPLIANT
Pb: Free
www.avx.com | 79
HQL Series, High Q, High RF Power
Ribbon Leaded MLC Capacitors
Hi-Q®, High RF Power, Ribbon Leaded MLC Capacitors from AVX Corporation are
characterized with ultra-low ESR and dissipation factor at high frequencies. The
HQL-style parts are constructed using non-magnetic materials. They are
designed to handle high power and high voltage levels for applications in RF
power amplifiers, inductive heating, high magnetic field environments (MRI coils),
medical and industrial electronics.
HOW TO ORDER
HQLC
AVX
Style
HQLC
HQLE
A
Voltage
C = 600V/630
A = 1000V
S = 1500V
G = 2000V
W = 2500V
H = 3000V
J = 4000V
K = 5000V
M = 7200V
A
Temperature
Coefficient
C0G = A
271
Capacitance Code
(2 significant digits
+ no. of zeros)
Examples:
4.7 pF = 4R7
10 pF = 100
100 pF = 101
1,000 pF = 102
J
Capacitance
Tolerance
C = ±0.25pF (<13pF)
D = ±0.50pF (<25pF)
F = ±1% (25pF)
G = ±2% (13pF)
J = ±5%
K = ±10%
M = ±20%
A
Tes t
Level
A = Standard
A
Lead Style
A = Axial Ribbon
M = Microstrip
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/hi-ql.pdf
Capacitance Range 3.3pF to 6,800pF
(25°C, 1.0 ±0.2 Vrms at 1kHz, for ≤ 1000 pF use 1MHz)
Capacitance Tolerances ±0.25pF, ±0.50pF, ±1%, ±2%, ±5%, ±10%, ±20%
Dissipation Factor 25°C 0.1% Max (+25°C, 1.0 ±0.2 Vrms at 1kHz, for ≤ 1000 pF use 1MHz)
Operating Temperature Range -55°C to +125°C
Temperature Characteristic C0G: 0 ± 30 ppm/°C (-55°C to +125°C)
Voltage Ratings 600, 1000, 1500, 2000, 2500, 3000, 4000, 5000, 7200VDC
Insulation Resistance 100K MΩ min. @ +25°C and 500VDC
10K MΩ min. @ +125°C and 500VDC
Dielectric Strength 120% of rated WVDC
DIELECTRIC PERFORMANCE CHARACTERISTICS
HIGH VOLTAGE CAPACITANCE VALUES (pF)
Style 600 1000 1500 2000 2500 3000 4000 5000 7200
WDC WVDC WVDC WVDC WVDC WVDC WVDC WVDC WVDC
min./max. min./max. min./max. min./max. min./max. min./max. min./max. min./max. min./max.
HQLC
2,200 - 2,700 1,500 - 1,800 820 - 1,200 470 - 680 330 - 390 4.7 - 270 3.3 - 6.8
HQLE
3.3 - 6,800 3.3 - 4,700 3.3 - 2,700 3.3 - 1,800 3.3 - 1,000 3.3 - 680 3.3 - 390 3.3 - 180 3.3 - 100
RoHS COMPLIANT
Pb: Free
80 | www.avx.com
GX Series
Ultra Broad Band Capacitor
The GX Series was developed specifically to address DC Blocking
issues from ~16KHz (-3dB roll-off) to 40GHz. Most applications will
experience resonance-free insertion loss of <0.5dB thru at least
40GHz. Insertion loss at higher frequencies is in part dependent on
installation parameters. Using AVX’s patented precision thin film
termination process, the part is designed to be completely
orientation insensitive with a standard EIA 0402 footprint to
minimize board space requirements. Both Ni/Sn and Ni/Au
terminations are available to cover a wide range of attachment
processes. All GX parts are RoHS compliant.
Au terminated units are wire bondable. Users may, therefore, find
these devices equally useful in bypass applications when wire
bonding is a necessary part of the manufacturing process.
More information can be obtained by contacting the factory or your
local AVX representative.
ADVANTAGES
• Ultra-Broadband performance
• Ultra-Low Insertion Loss
• X5R & X7S Characteristics
• Low Return Loss
APPLICATIONS
• Semi-Conductor Data
Communications Customers
• Receiver Optical Sub-Assemblies
• Transimpedance Amplifier Customers
• Test Equipment Manufactures
HOW TO ORDER
GX
Style
02
Case Size
02 = 0402
104
Capacitance
104 = 0.1μF
EIA Cap Code
in pF
K
Tolerance
K = ±10%
M = ±20%
A
Failure Rate
A = Std
T
Termination
T = Ni-Sn
(Standard)
7 = Ni-Au
2
Packaging
2 = 4000 pcs, 7" T&R
2-500 = 500 pcs, 7" T&R
2-1000 = 1000 pcs, 7" T&R
YD
Voltage/Dielectric
YD = 16Vdc/X5R
ZZ = 10Vdc/X7S
Capacitance 0.1 μF ± 10%, 0.1 μF ± 20%
Voltage Rating/Operating Temperature 16 VDC @ 85°C; 10 VDC @ 125°C
Dielectric Withstanding Voltage 250% WVDC
Insulation Resistance 10,000 Meg Ohms @ 25°C; 1,000 Meg Ohms @ 125°C
Temperature Coefficient 16 VDC X5R (± 15%); 10 VDC X7S (± 22%)
ELECTRICAL SPECIFICATIONS
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/gx.pdf
www.avx.com | 81
HOW TO ORDER
Film Chip Capacitors
CB-PET Series High Temperature PET Dielectric
Film chip capacitor using a naked and stacked construction with metallized High
Temperature PET (polyethylene terephtalate).
Use of high temperature dielectric films makes these capacitors suitable for IR or
vapor phase reflow processes. This chip is built without specific encapsulation.
The intrinsic elasticity of the dielectric film allows an excellent compatibility of the
capacitor with all types of material for printed circuit boards.
The self-healing property of film technology results in a safe open failure mode
and better overall reliability.
• Excellent thermal shock resistance
• Low dissipation factor, ESR & ESL
• No piezoelectric effect
• Available in tape and reel suitable for automatic placement
• Non-polar construction
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/cb-petht.pdf
For other values : upon request
CB
Type
SMD Lead Free
04
Size
04 = 2220
05 = 2824
16 = 4030
17 = 5040
18 = 6054
2
Dielectric
2 = PET-HT
G
Voltage
D = 50/63V
E = 100V
G = 250V
I = 400V
K = 630V
0104
Capacitance
EIA Code
1st digit: 0
2nd & 3rd digit:
the 2nd significant figures
of the capacitance value
4th digit: the number of
zeros to be added to the
capacitance value
K
Tolerance
K = 10%
J = 5%
--
Suffix Packaging
-- = Bulk
BC = tape & reel
diameter: 330mm
VOLTAGE (Vdc / Vac)
Capacitance 63 Vdc / 40 Vac 100 Vdc / 63 Vac 250 Vdc - 160 Vac 400 Vdc / 200 Vac 630 Vdc / 250 Vac
Value Cap Size Code H max Size Code H max Size Code H max Size Code H max Size Code H max
Code
0.010μF 0103 2220 2.4 2220 2.8
0.015 0153 2220 2.4 2220 4.0
0.022 0223 2220 3.0 2824 3.4
0.033 0333 2220 4.2 2824 5.0
0.047 0473 2220 3.0 2824 4.5 4030 3.6
0.068 0683 2220 4.1 4030 3.6 4030 5.2
0.100 0104 2220 4.55 4030 4.7 5040 5.0
0.150 0154 2824 4.3 5040 4.6 5040 6.9
0.220 0224 2220 3.3 2824 4.9 6054 4.0 6054 5.8
0.330 0334 2220 3.3 2220 4.0 4030 5.6 6054 5.6
0.470 0474 2220 3.5 2824 4.4 4030 6.15
0.680 0684 2220 4.0 2824 5.2 5040 6.5
1.0μF 0105 2220 4.0 2824 5.7 6054 6.0
1.5 0155 2824 5.4 4030 6.1 6054 7.0
2.2 0225 4030 5.7 5040 5.5
3.3 0335 6054 5.5 6054 5.2
4.7 0475 6054 4.9 6054 7.1
LEAD-FREE
COMPATIBLE
COMPONENT
W
L
H
T
Size Code Equivalent Size Length (L) Width (W)
04 2220 5.8±0.50 (0.228±0.020) 5.0±0.50 (0.197±0.020)
05 2824 7.2±0.50 (0.283±0.020) 6.1±0.50 (0.240±0.020)
16 4030 10.5±0.60 (0.413±0.024) 7.6±0.80 (0.299±0.031)
17 5040 12.8±0.60 (0.504±0.024) 10.2±0.80 (0.402±0.031)
18 6054 15.3±0.60 (0.602±0.024) 13.7±0.80 (0.539±0.031)
millimeters (inches)
82 | www.avx.com
For other values: upon request
*Special length: 7.3 +0.7/-0.3 (0.287 +0.028/-0.012)
**Only available in tolerance 10%
50V
63V
VOLTAGE (Vdc / Vac)
Capacitance 25 Vdc / 16 Vac 50-63 Vdc / 40 Vac 100 Vdc - 63 Vac 250 Vdc / 160 Vac 400 Vdc / 200 Vac 630 Vdc / 250 Vac
Value Cap Size Code H max Size Code H max Size Code H max Size Code H max Size Code H max Size Code H max
Code
0.001μF 0102 1206 1.15 1206 1812 1.15 1.9 1206 1.15 1812 2.0 1812 2.0 1812 2.0
0.0015 0152 1206 1.15 1206 1812 1.15 1.9 1206 1.15 1812 2.0 1812 2.0 1812 2.0
0.0022 0222 1206 1.15 1206 1812 1.15 1.9 1206 1.15 1812 2.0 1812 2.0 1812 2.0
0.0033 0332 1206 1.15 1206 1812 1.15 1.9 1206 1.15 1812 2.0 1812 2.0 1812 2.0
0.0047 0472 1206 1.15 1206 1812 1.15 2.0 1206 1.15 1812 2.0 1812 2.0 1812 2.5
0.0068 0682 1206 1.15 1206 1812 1.15 2.0 1206 1.15 1812 2.0 1812 2.0 2220 2.0
0.010 0103 1206 1.15 1206 1812 1.15 2.0 1206 1.15 1812 2.0 2220 1.9 2220 2.4
0.015 0153 1206 1.15 1206 1812 1.15 2.4 1210 1.8 1812 2.4 2220 2.2 2220 3.4
0.022 0223 1206 1.15 1206 1812 1.15 2.0 1210 1.8 1812 2.9 2220 2.8 2824 3.4
0.033 0333 1210 1.8 1210 1812 1.8 2.0 1812 2.0 2220 2.2 2220 3.9 2824 4.8
0.047 0473 1210 1.8 1210 1812 1.8 2.7 1812 2.6 2220 2.9 2824 3.2 4030 4.0
0.068 0683 1210 1.8 1210 1812 1.8 2.0 1812 2.0 2220 4.0 2824 4.4 4030 5.5
0.100 0104 1210 2.3 1210 1812 2.3 2.8 1812 3.0 2220 4.5 4030 5.3 5040 5.2
0.150 0154 1812 2.0 2220 3.3 2824 4.7 4030 6.0 5040** 6.9
0.220 0224 1812 3.0 2220 4.0 2824 5.7 5040 5.0 6054 6.0
0.330 0334 2220 4.0 2220 4.2 4030 6.1 6054 5.9
0.470 0474 2220 4.0 2824* 4.5 5040 5.5 6054 6.5
0.680 0684 2220 3.9 2824* 4.5 6054 4.6
1 0105 2824* 4.7 4030 6.0 6054 6.4
1.5 0155 2824* 4.7 5040 5.5
2.2 0225 4030 6.1 5040 6.9
3.3 0335 6054 5.3 6054 7.1
4.7 0475 6054 7.2
HOW TO ORDER
Film Chip Capacitors
CB-PEN Series PEN Dielectric
Film chip capacitor using a naked and stacked construction with metallized PEN
(polyethylene naphtalate).
Use of high temperature dielectric films makes these capacitors suitable for IR or
vapor phase reflow processes. This chip is built without specific encapsulation.
The intrinsic elasticity of the dielectric film allows an excellent compatibility of the
capacitor with all types of material for printed circuit boards.
The self-healing property of film technology results in a safe open circuit failure
mode and better overall reliability.
• Excellent thermal shock resistance
• Low dissipation factor, ESR & ESL
• No piezoelectric effect
• Available in tape and reel suitable for automatic placement
• Non-polar construction.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/cb-pen.pdf
CB
Type
SMD Lead Free
7
Dielectric
7 = PEN
D
Voltage
C = 25V
D = 50/63V
E = 100V
G = 250V
I = 400V
K = 630V
0103
Capacitance
EIA Code
1st digit: 0
2nd & 3rd digit: the 2nd significant
figures of the capacitance value
4th digit: the number of zeros to be
added to the capacitance value
J
Tolerance
K = 10%
J = 5%
BA
Suffix Packaging
-- = Bulk
BA = tape & reel
diameter: 180mm
BC = tape & reel
diameter: 330mm
W
L
H
T
Size Code Equivalent Size Length (L) Width (W)
01 1206 3.3±0.30 (0.130±0.012) 1.6±0.30 (0.063±0.012)
02 1210 3.3±0.30 (0.130±0.012) 2.5±0.30 (0.098±0.012)
03 1812 4.7±0.50 (0.185±0.020) 3.2±0.50 (0.126±0.020)
04 2220 5.8±0.50 (0.228±0.020) 5.0±0.50 (0.197±0.020)
05 2824 7.2±0.50 (0.283±0.020) 6.1±0.50 (0.240±0.020)
16 4030 10.5±0.60 (0.413±0.024) 7.6±0.80 (0.299±0.031)
17 5040 12.8±0.60 (0.504±0.024) 10.2±0.80 (0.402±0.031)
18 6054 15.3±0.60 (0.602±0.024) 13.7±0.80 (0.539±0.031)
millimeters (inches)
01 = 1206
02 = 1210
03 = 1812
04 = 2220
05 = 2824
16 = 4030
17 = 5040
18 = 6054
01
Size
LEAD-FREE
COMPATIBLE
COMPONENT
www.avx.com | 83
HOW TO ORDER
Film Chip Capacitors
CB-PPS Series PPS Dielectric
Film chip capacitor using a naked and stacked construction with metallized PPS
(polyphenylene sulfide film).
• Applicable for both flow and reflow soldering
• Very constant Capacitance value with temperature
• Low dielectric absorption
The intrinsic elasticity of the dielectric film provides an excellent compatibility of
the capacitor with all types of material for printed circuit boards
• Excellent thermal shock resistance
• Low dissipation factor, ESR and ESL
• No piezoelectric effect
• Available in tape and reel suitable for automatic placement
• Non-polar construction.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/cb-pps.pdf
For other values : upon request
CB
Type
SMD Lead Free
02
Size
01 = 1206
02 = 1210
03 = 1812
8
Dielectric
8 = PPS
B
Voltage
B = 16V
D = 50V
0104
Capacitance
EIA Code
1st digit: 0
2nd & 3rd digit:
the 2nd significant figures
of the capacitance value
4th digit: the number of
zeros to be added to the
capacitance value
G
Tolerance
G = 2%
J = 5%
K = 10%
--
Suffix Packaging
-- = Bulk
BA = tape & reel
diameter: 180mm
VOLTAGE (Vdc / Vac)
Capacitance 16 Vdc / 10 Vac 50 Vdc / 40 Vac
Value Cap Size Code H max Size Code H max
Code
0.001μF 0102 1206 1.15 1206 1.15
0.0015 0152 1206 1.15 1206 1.15
0.0022 0222 1206 1.15 1206 1.15
0.0033 0332 1206 1.15 1206 1.15
0.0047 0472 1206 1.15 1206 1.15
0.0068 0682 1206 1.15 1206 1.15
0.010 0103 1206 1.15 1206 1.15
0.015 0153 1206 1.15 1210 1.8
0.022 0223 1206 1.15 1210 1.8
0.033 0333 1206 1.15 1210 2.1
0.047 0473 1210 1.8 1812 2.4
0.068 0683 1210 1.8 1812 2.4
0.100 0104 1210 1.8 1812 2.4
0.150 0154 1812 2.3
0.180 0184 1812 2.5
W
L
H
T
Size Code Equivalent Size Length (L) Width (W)
01 1206 3.3±0.30 (0.130±0.012) 1.6±0.30 (0.063±0.012)
02 1210 3.3±0.30 (0.130±0.012) 2.5±0.30 (0.098±0.012)
03 1812 4.5±0.50 (0.177±0.020) 3.2±0.50 (0.126±0.020)
millimeters (inches)
LEAD-FREE
COMPATIBLE
COMPONENT
84 | www.avx.com
HOW TO ORDER
SR Series
SkyCap®Radial Conformal Coated NP0 Dielectric
AVX SR Series is a conformally coated radial leaded capacitor. We offer NP0, X7R,
and Z5U dielectrics standard. Alternative dielectrics are also available upon request.
Voltages range from 50V to 500V, with lower voltages available as well.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/skycap.pdf
SR21
AVX Style
SR15
SR20
SR21
SR22
SR27
SR30
SR40
SR50
5
Voltage
5 = 50V
1 = 100V
2 = 200V
A
Temperature
Coefficient
A = C0G (NP0)
104
Capacitance
First two digits are the significant
figures of capacitance. Third digit
indicates the additional number of
zeros. For example, order
100,000 pF as 104. (For values
below 10pF use “R” in place of
decimal point, e.g., 1R4 = 1.4pF.)
F
Capacitance
Tolerance
C = ±.25pF
D = ±.5pF
F = ±1%
(>50pF only)
G = ±2%
(>25pF only)
J = ±5%
K = ±10%
A
Failure Rate
A = Not Applicable
R
Leads
R = RoHS
C0G (NP0) Dielectric
For other styles, voltages, tolerances and lead lengths see Part No. Codes or contact factory.
*Other capacitance values available upon special request.
= Industry preferred values
= SR20 only
200 100 50 200 100 50 200 100 50 200 100 50 100 50 100 50 100 50
AVX Style SR15 SR20 SR21 SR22 SR27 SR30 SR40 SR50
AVX “Insertable” SR07 SR29 SR59 N/A N/A SR65 SR75 N/A
Cap. in.* Industry Preferred WVDC WVDC WVDC WVDC WVDC WVDC WVDC WVDC
pF Values in Blue 200 100 50
1.0-9.9 SR151A1R0DAR
10 SR151A100KAR
15 SR-----A150KAR
22 SR-----A220KAR
33 SR-----A330KAR
39 SR-----A390KAR
47 SR-----A470KAR
68 SR-----A680KAR
100 SR151A101KAR
150 SR-----A151KAR
220 SR-----A221KAR
330 SR-----A331KAR
390 SR-----A391KAR
470 SR-----A471KAR
680 SR-----A681KAR
1000 SR211A102KAR
1500 SR-----A152KAR
2200 SR-----A222KAR
3900 SR-----A392KAR
4700 SR-----A472KAR
6800 SR-----A682KAR
8200 SR-----A822KAR
10,000 SR305A103KAR
15,000 SR-----A153KAR
22,000 SR-----A223KAR
33,000 SR-----A333KAR
39,000 SR-----A393KAR
47,000 SR-----A473KAR
68,000 SR-----A683KAR
100,000 SR-----A104KAR
NOTE: Capacitance Ranges available for SR12 same as SR15
SR62 same as SR21
SR64 same as SR30
SR89 same as SR21
www.avx.com | 85
SR Series
SkyCap®Radial Conformal Coated X7R Dielectric
HOW TO ORDER
AVX SR Series is a conformally coated radial leaded capacitor. We offer NP0, X7R,
and Z5U dielectrics standard. Alternative dielectrics are also available upon request.
Voltages range from 50V to 500V, with lower voltages available as well.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/skycap.pdf
SR21
AVX Style
SR15
SR20
SR21
SR22
SR27
SR30
SR40
SR50
5
Voltage
5 = 50V
1 = 100V
2 = 200V
C
Temperature
Coefficient
C = X7R
104
Capacitance
First two digits are the significant
figures of capacitance. Third digit
indicates the additional number of
zeros. For example, order
100,000 pF as 104. (For values
below 10pF use “R” in place of
decimal point, e.g., 1R4 = 1.4pF.)
M
Capacitance
Tolerance
J = ±5%
K = ±10%
M = ±20%
A
Failure Rate
A = Not Applicable
For other styles, voltages, tolerances and lead lengths see Part No. Codes or contact factory. *Other capacitance values available upon special request.
AVX Style SR15 SR20 SR21 SR22 SR27 SR30 SR40 SR50
AVX “Insertable” SR07 SR29 SR59 N/A N/A SR65 SR75 N/A
Width 3.81 5.08 5.08 5.08 6.604 7.62 10.16 12.70
(W) (.150) (.200) (.200) (.200) (.260) (.300) (.400) (.500)
Height 3.81 5.08 5.08 5.08 6.35 7.62 10.16 12.70
(H) (.150) (.200) (.200) (.200) (.250) (.300) (.400) (.500)
Thickness 2.54 3.175 3.175 3.175 4.06 3.81 3.81 5.08
(T) (.100) (.125) (.125) (.125) (.160) (.150) (.150) (.200)
Lead Spacing 2.54 2.54 5.08 6.35 7.62 5.08 5.08 10.16
(L.S.) (.100) (.100) (.200) (.250) (.300) (.200) (.200) (.400)
Lead Diameter .508 .508 .508 .508 .508 .508 .508 .635
(L.D.) (.020) (.020) (.020) (.020) (.020) (.020) (.020) (.025)
Cap. in.* Industry Preferred WVDC WVDC WVDC WVDC WVDC WVDC WVDC WVDC
pF Values in Blue 200 100 50 200 100 50 200 100 50 100 50 100 50 200 100 50 200 100 50 200 100 50
470 SR-----C471KAR
1000 SR155C102KAR
1500 SR-----C152KAR
2200 SR-----C222KAR
3300 SR-----C332KAR
4700 SR-----C472KAR
6800 SR-----C682KAR
10,000 SR215C103KAR
15,000 SR-----C153KAR
22,000 SR-----C223KAR
33,000 SR-----C333KAR
47,000 SR-----C473KAR
68,000 SR-----C683KAR
100,000 SR215C104KAR
150,000 SR-----C154KAR
220,000 SR215C224KAR
330,000 SR-----C334KAR
390,000 SR-----C394KAR
470,000 SR305C474KAR
1.0 μF SR305C105KAR
2.2 μF SR405C225KAR
2.7 μF SR505C275KAR
4.7 μF SR505C475KAR
= Industry preferred values
= SR20 only
= Extended range
= Extended range, SR20 only
= Extended range with 0.150" thickness maximum
NOTE: Capacitance Ranges available for SR12 same as SR15
SR62 same as SR21
SR64 same as SR30
SR89 same as SR21
R
Leads
R = RoHS
X7R Dielectric
86 | www.avx.com
HOW TO ORDER
SR Series
SkyCap®Radial Conformal Coated Z5U Dielectric
AVX SR Series is a conformally coated radial leaded capacitor. We offer NP0, X7R,
and Z5U dielectrics standard. Alternative dielectrics are also available upon request.
Voltages range from 50V to 500V, with lower voltages available as well.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/skycap.pdf
SR21
AVX Style
SR15
SR20
SR21
SR22
SR27
SR30
SR40
SR50
5
Voltage
5 = 50V
1 = 100V
E
Temperature
Coefficient
E = Z5U
104
Capacitance
First two digits are the significant
figures of capacitance. Third digit
indicates the additional number of
zeros. For example, order
100,000 pF as 104. (For values
below 10pF use “R” in place of
decimal point, e.g., 1R4 = 1.4pF.)
M
Capacitance
Tolerance
M = ±20%
Z = +80%
-20%
A
Failure Rate
A = Not Applicable
For other styles, voltages, tolerances and lead lengths see Part No. Codes or contact factory.
*Other capacitance values available upon special request.
= Industry preferred values
= SR20 only
Z5U Dielectric
R
Leads
R = RoHS
AVX Style SR15 SR20 SR21 SR22 SR27 SR30 SR40 SR50
AVX “Insertable” SR07 SR29 SR59 N/A N/A SR65 SR75 N/A
Cap. in.* Industry Preferred WVDC WVDC WVDC WVDC WVDC WVDC WVDC WVDC
pF Values in Blue 100 50 100 50 100 50 100 50 100 50 100 50 100 50 100 50
10,000 SR155E103ZAR
47,000 SR-----E473ZAR
100,000 SR215E104ZAR
150,000 SR-----E154ZAR
220,000 SR215E224ZAR
330,000 SR215E334ZAR
470,000 SR215E474ZAR
680,000 SR-----E684ZAR
1.0 μF SR-----105ZAR
1.5 μF SR30E155ZAR
2.2 μF SR30E225ZAR
3.3 μF SR30E335ZAR
4.7 μF SR30E475ZAR
www.avx.com | 87
HOW TO ORDER
SL Series
SkyCap®Radial Conformal Coated NP0 Dielectric
AVX SL Series is a conformally coated radial leaded capacitor. We offer NP0, X7R,
and Z5U dielectrics standard. Alternative dielectrics are also available upon request.
Voltages range from 50V to 500V, with lower voltages available as well.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/skycap.pdf
SL21
AVX Style
SL15
SL20
SL21
SL22
SL27
SL30
SL40
SL50
5
Voltage
5 = 50V
1 = 100V
2 = 200V
A
Temperature
Coefficient
A = C0G (NP0)
104
Capacitance
First two digits are the significant
figures of capacitance. Third digit
indicates the additional number of
zeros. For example, order
100,000 pF as 104. (For values
below 10pF use “R” in place of
decimal point, e.g., 1R4 = 1.4pF.)
F
Capacitance
Tolerance
C = ±.25pF
D = ±.5pF
F = ±1%
(>50pF only)
G = ±2%
(>25pF only)
J = ±5%
K = ±10%
A
Failure Rate
A = Not Applicable
B
Leads
B = Tin/Lead
C0G (NP0) Dielectric
For other styles, voltages, tolerances and lead lengths see Part No. Codes or contact factory.
*Other capacitance values available upon special request.
= Industry preferred values
= SL20 only
NOTE: Capacitance Ranges available for SL12 same as SL15
SL62 same as SL21
SL64 same as SL30
SL89 same as SL21
200 100 50 200 100 50 200 100 50 200 100 50 100 50 100 50 100 50
AVX Style SL15 SL20 SL21 SL22 SL27 SL30 SL40 SL50
AVX “Insertable” SL07 SL29 SL59 N/A N/A SL65 SL75 N/A
Cap. in.* Industry Preferred WVDC WVDC WVDC WVDC WVDC WVDC WVDC WVDC
pF Values in Blue 200 100 50
1.0-9.9 SL151A1R0DAB
10 SL151A100KAB
15 SL-----A150KAB
22 SL-----A220KAB
33 SL-----A330KAB
39 SL-----A390KAB
47 SL-----A470KAB
68 SL-----A680KAB
100 SL151A101KAB
150 SL-----A151KAB
220 SL-----A221KAB
330 SL-----A331KAB
390 SL-----A391KAB
470 SL-----A471KAB
680 SL-----A681KAB
1000 SL211A102KAB
1500 SL-----A152KAB
2200 SL-----A222KAB
3900 SL-----A392KAB
4700 SL-----A472KAB
6800 SL-----A682KAB
8200 SL-----A822KAB
10,000 SL305A103KAB
15,000 SL-----A153KAB
22,000 SL-----A223KAB
33,000 SL-----A333KAB
39,000 SL-----A393KAB
47,000 SL-----A473KAB
68,000 SL-----A683KAB
100,000 SL-----A104KAB
88 | www.avx.com
SL Series
SkyCap®Radial Conformal Coated X7R Dielectric
X7R Dielectric
HOW TO ORDER
AVX SL Series is a conformally coated radial leaded capacitor. We offer NP0, X7R,
and Z5U dielectrics standard. Alternative dielectrics are also available upon request.
Voltages range from 50V to 500V, with lower voltages available as well.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/skycap.pdf
SL21
AVX Style
SL15
SL20
SL21
SL22
SL27
SL30
SL40
SL50
5
Voltage
5 = 50V
1 = 100V
2 = 200V
C
Temperature
Coefficient
C = X7R
104
Capacitance
First two digits are the significant
figures of capacitance. Third digit
indicates the additional number of
zeros. For example, order
100,000 pF as 104. (For values
below 10pF use “R” in place of
decimal point, e.g., 1R4 = 1.4pF.)
M
Capacitance
Tolerance
J = ±5%
K = ±10%
M = ±20%
A
Failure Rate
A = Not Applicable
B
Leads
B = Tin/Lead
For other styles, voltages, tolerances and lead lengths see Part No. Codes or contact factory. *Other capacitance values available upon special request.
= Industry preferred values
= SL20 only
= Extended range
= Extended range, SL20 only
= Extended range with 0.150" thickness maximum
NOTE: Capacitance Ranges available for SL12 same as SL15
SL62 same as SL21
SL64 same as SL30
SL89 same as SL21
AVX Style SL15 SL20 SL21 SL22 SL27 SL30 SL40 SL50
AVX “Insertable” SL07 SL29 SL59 N/A N/A SL65 SL75 N/A
Width 3.81 5.08 5.08 5.08 6.604 7.62 10.16 12.70
(W) (.150) (.200) (.200) (.200) (.260) (.300) (.400) (.500)
Height 3.81 5.08 5.08 5.08 6.35 7.62 10.16 12.70
(H) (.150) (.200) (.200) (.200) (.250) (.300) (.400) (.500)
Thickness 2.54 3.175 3.175 3.175 4.06 3.81 3.81 5.08
(T) (.100) (.125) (.125) (.125) (.160) (.150) (.150) (.200)
Lead Spacing 2.54 2.54 5.08 6.35 7.62 5.08 5.08 10.16
(L.S.) (.100) (.100) (.200) (.250) (.300) (.200) (.200) (.400)
Lead Diameter .508 .508 .508 .508 .508 .508 .508 .635
(L.D.) (.020) (.020) (.020) (.020) (.020) (.020) (.020) (.025)
Cap. in.* Industry Preferred WVDC WVDC WVDC WVDC WVDC WVDC WVDC WVDC
pF Values in Blue 200 100 50 200 100 50 200 100 50 100 50 100 50 200 100 50 200 100 50 200 100 50
470 SL-----C471KAB
1000 SL155C102KAB
1500 SL-----C152KAB
2200 SL-----C222KAB
3300 SL-----C332KAB
4700 SL-----C472KAB
6800 SL-----C682KAB
10,000 SL215C103KAB
15,000 SL-----C153KAB
22,000 SL-----C223KAB
33,000 SL-----C333KAB
47,000 SL-----C473KAB
68,000 SL-----C683KAB
100,000 SL215C104KAB
150,000 SL-----C154KAB
220,000 SL215C224KAB
330,000 SL-----C334KAB
390,000 SL-----C394KAB
470,000 SL305C474KAB
1.0 μF SL305C105KAB
2.2 μF SL405C225KAB
2.7 μF SL505C275KAB
4.7 μF SL505C475KAB
www.avx.com | 89
HOW TO ORDER
SL Series
SkyCap®Radial Conformal Coated Z5U Dielectric
AVX SL Series is a conformally coated radial leaded capacitor. We offer NP0, X7R,
and Z5U dielectrics standard. Alternative dielectrics are also available upon request.
Voltages range from 50V to 500V, with lower voltages available as well.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/skycap.pdf
SL21
AVX Style
SL15
SL20
SL21
SL22
SL27
SL30
SL40
SL50
5
Voltage
5 = 50V
1 = 100V
E
Temperature
Coefficient
E = Z5U
104
Capacitance
First two digits are the significant
figures of capacitance. Third digit
indicates the additional number of
zeros. For example, order
100,000 pF as 104. (For values
below 10pF use “R” in place of
decimal point, e.g., 1R4 = 1.4pF.)
M
Capacitance
Tolerance
M = ±20%
Z = +80%
-20%
A
Failure Rate
A = Not Applicable
B
Leads
B = Tin/Lead
For other styles, voltages, tolerances and lead lengths see Part No. Codes or contact factory.
*Other capacitance values available upon special request.
= Industry preferred values
= SL20 only
Z5U Dielectric
AVX Style SL15 SL20 SL21 SL22 SL27 SL30 SL40 SL50
AVX “Insertable” SL07 SL29 SL59 N/A N/A SL65 SL75 N/A
Cap. in.* Industry Preferred WVDC WVDC WVDC WVDC WVDC WVDC WVDC WVDC
pF Values in Blue 100 50 100 50 100 50 100 50 100 50 100 50 100 50 100 50
10,000 SL155E103ZAB
47,000 SL-----E473ZAB
100,000 SL215E104ZAB
150,000 SL-----E154ZAB
220,000 SL215E224ZAB
330,000 SL215E334ZAB
470,000 SL215E474ZAB
680,000 SL-----E684ZAB
1.0 μF SL-----105ZAB
1.5 μF SL30E155ZAB
2.2 μF SL30E225ZAB
3.3 μF SL30E335ZAB
4.7 μF SL30E475ZAB
90 | www.avx.com
AR Series (Automotive)
SkyCap®Radial Conformal Coated C0G (NP0) Dielectric
AVX AR Series is a conformally coated radial leaded capacitor. We offer NP0, X7R,
and X8R dielectrics standard. Alternative dielectrics are also available upon request.
Voltages range from 50V to 200V.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/skycap.pdf
HOW TO ORDER
AR21
AVX Style
5
Voltage
5 = 50V
1 = 100V
2 = 200V
A
Temperature
Coefficient
A = C0G (NP0)
100
Capacitance
First two digits are the significant
figures of capacitance. Third digit
indicates the additional number of
zeros. For example, order
100,000 pF as 104. (For values
below 10pF use “R” in place of
decimal point, e.g., 1R4 = 1.4pF.)
F
Capacitance
Tolerance
C = ±.25pF
D = ±.5pF
F = ±1% (>50pF only)
G = ±2% (>25pF only)
J = ±5%
K = ±10%
4
Failure Rate
4 = AEC-Q200
EIA Characteristic Dimensions: Millimeters (Inches)
Notes:
“Insertable” make reference to alternative AVX style using the same range of capacitance available on the matrix.
For others Styles, voltages, tolerance and lead lengths see Skycap catalog or contact factory.
Others capacitance values available upon special request.
Others styles available: AR12, AR14, AR62, AR89.
C0G (NP0) Dielectric
R
Leads
R = RoHS
AVX Style AR15 AR20 AR21
AVX “Insertable” AR07 AR29 AR59
Cap Industry Preferred WVDC WVDC WVDC
in pF Values in Blue 200 100 50 200 100 50 200 100 50
1 AR-----A1R0D4R
10 AR-----A100K4R
15 AR-----A150K4R
22 AR-----A220K4R
33 AR-----A330K4R
39 AR-----A390K4R
47 AR-----A470K4R
68 AR-----A680K4R
100 AR-----A101K4R
150 AR-----A151K4R
220 AR-----A221K4R
330 AR-----A331K4R
390 AR-----A391K4R
470 AR-----A471K4R
680 AR-----A681K4R
1,000 AR-----A102K4R
1,500 AR-----A152K4R
2,200 AR-----A222K4R
3,900 AR-----A392K4R
4,700 AR-----A472K4R
6800 AR-----A682K4R
8200 AR-----A822K4R
www.avx.com | 91
AR Series (Automotive)
SkyCap®Radial Conformal Coated X7R Dielectric
AVX AR Series is a conformally coated radial leaded capacitor. We offer NP0, X7R,
and X8R dielectrics standard. Alternative dielectrics are also available upon request.
Voltages range from 50V to 200V.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/skycap.pdf
HOW TO ORDER
AR21
AVX Style
5
Voltage
5 = 50V
1 = 100V
C
Temperature
Coefficient
C = X7R
104
Capacitance
First two digits are the significant
figures of capacitance. Third digit
indicates the additional number of
zeros. For example, order
100,000 pF as 104. (For values
below 10pF use “R” in place of
decimal point, e.g., 1R4 = 1.4pF.)
M
Capacitance
Tolerance
J = ±5%
K = ±10%
M = ±20%
4
Failure Rate
4 = AEC-Q200
EIA Characteristic Dimensions: Millimeters (Inches)
X7R Dielectric
R
Leads
R = RoHS
Notes:
“Insertable” make reference to alternative AVX style using the same range of capacitance available on the matrix.
For others Styles, voltages, tolerance and lead lengths see Skycap catalog or contact factory.
Others capacitance values available upon special request.
Others styles available: AR12, AR14, AR62, AR89, AR32, AR38.
AVX Style AR15 AR20 AR21 AR30 AR40
AVX “Insertable” AR07 AR29 AR59 AR65 AR75
Cap
Industry Preferred
WVDC WVDC WVDC WVDC WVDC
in pF Values in Blue 100 50 100 50 100 50 100 50 100 50
470 AR-----C471K4R
1000 AR-----C102K4R
1500 AR-----C152K4R
2200 AR-----C222K4R
3300 AR-----C332K4R
4700 AR-----C472K4R
6800 AR-----C682K4R
10,000 AR-----C103K4R
15,000 AR-----C153K4R
22,000 AR-----C223K4R
33,000 AR-----C333K4R
47,000 AR-----C473K4R
68,000 AR-----C683K4R
100,000 AR-----C104K4R
150,000 AR-----C154K4R
220,000 AR-----C224K4R
330,000 AR-----C334K4R
390,000 AR-----C394K4R
470,000 AR-----C474K4R
680,000 AR-----C684K4R
1.0 uF AR-----C105K4R
4,700,000 AR-----C475K4R
6,800,000 AR-----C685K4R
10.0 uF AR-----C106K4R
92 | www.avx.com
AR Series (Automotive)
SkyCap®Radial Conformal Coated X8R Dielectric
AVX AR Series is a conformally coated radial leaded capacitor. We offer NP0, X7R,
and X8R dielectrics standard. Alternative dielectrics are also available upon request.
Voltages range from 50V to 200V.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/skycap.pdf
HOW TO ORDER
AR21
AVX Style
5
Voltage
5 = 50V
1 = 100V
2 = 200V
F
Temperature
Coefficient
F = X8R
104
Capacitance
First two digits are the significant
figures of capacitance. Third digit
indicates the additional number of
zeros. For example, order
100,000 pF as 104. (For values
below 10pF use “R” in place of
decimal point, e.g., 1R4 = 1.4pF.)
M
Capacitance
Tolerance
J = ±5%
K = ±10%
M = ±20%
4
Failure Rate
4 = AEC-Q200
R
Leads
R = RoHS
EIA Characteristic Dimensions: Millimeters (Inches)
X8R Dielectric
AVX Style AR20 AR21
AVX “Insertable” AR29 AR59
Cap Industry Preferred WVDC WVDC
in pF Values in Blue 200 100 50 200 100 50
1,000 AR-----F102K4R
10,000 AR-----F103K4R
100,000 AR-----F104K4R
330,000 AR-----F334K4R
Notes:
“Insertable” make reference to alternative AVX style using the same range of capacitance available on the matrix.
For others Styles, voltages, tolerance and lead lengths see Skycap catalog or contact factory.
Others capacitance values available upon special request.
Others styles available: AR14, AR62, AR89.
www.avx.com | 93
= Industry preferred values
For trimmed leads see “How To Order”.
For other tolerances see “How To Order”.
For other voltages see “How To Order”.
MR Series
Molded Radial MLCC NP0 Dielectric
1.14 (.045)
Max.
W
W
L
L
T
T
L.D.
L.D.
L.S.
L.S.
31.7 (1.25)
Min.
31.7 (1.25)
Min.
Style MR05
Styles MR04, MR06,
MR07, MR08
Dimensions: Millimeters (Inches)
AVX MR series is a molded radial leaded capacitor. We offer NP0, X7R, and
Z5U dielectrics. Voltage available are 50, 100, & 200 VDC. AVX also offers
military grade molded radials per MIL-PRF-39014, MIL-C-11015, and MIL-
PRF-20.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/rceralam.pdf
HOW TO ORDER
MR05
AVX Style
MR04
MR05
MR06
MR07
MR08
1
Voltage
5 = 50V
1 = 100V
2 = 200V
A
Dielectric
A = C0G (NP0)
561
Capacitance
First two digits are the significant
figures of capacitance. Third digit
indicates the additional number
of zeros. For example, order
100,000 pF as 104. (For values
below 10pF use “R” in place of
decimal point, e.g., 1R4 = 1.4pF.)
J
Capacitance
Tolerance
D = ±.5pF
(>10pF only)
F = ±1%
(>50pF only)
G = ±2%
(>25pF only)
J = ±5%
K = ±10%
A
Failure Rate
A = Not Applicable
A
Leads
A = Standard
Solderable
T1= Trimmed Leads
.230" ± .030"
1Trimmed lead length
for the MR05 style will
be measured from
the bend in the lead
(seating plane).
AVX Style MR04 MR05 MR06 MR07 MR08
Cap. in Typical AVX WVDC WVDC WVDC WVDC WVDC
pF Part Nos.
1.0 MR-----5A1R0DAA
to
9.1 MR-----5A9R1DAA
10 MR-----5A100KAA
12 MR-----5A120KAA
15 MR-----5A150KAA
18 MR-----5A180KAA
22 MR-----5A220KAA
27 MR-----5A270KAA
33 MR-----5A330KAA
39 MR-----5A390KAA
47 MR-----5A470KAA
56 MR-----5A560KAA
68 MR-----5A680KAA
82 MR-----5A820KAA
100 MR-----5A101KAA
120 MR-----5A121KAA
150 MR-----5A151KAA
180 MR-----5A181KAA
220 MR-----5A221KAA
270 MR-----5A271KAA
330 MR-----5A331KAA
390 MR-----5A391KAA
470 MR-----5A471KAA
560 MR-----5A561KAA
680 MR-----5A681KAA
820 MR-----5A821KAA
1000 MR-----5A102KAA
1200 MR-----5A122KAA
1500 MR-----5A152KAA
1800 MR-----5A182KAA
2200 MR-----5A222KAA
2700 MR-----5A272KAA
3300 MR-----5A332KAA
3900 MR-----5A392KAA
4700 MR-----5A472KAA
5600 MR-----5A562KAA
6800 MR-----5A682KAA
8200 MR-----5A822KAA
10,000 MR-----5A103KAA
12,000 MR-----5A123KAA
15,000 MR-----5A153KAA
18,000 MR-----5A183KAA
22,000 MR-----5A223KAA
27,000 MR-----5A273KAA
33,000 MR-----5A333KAA
39,000 MR-----5A393KAA
47,000 MR-----5A473KAA
56,000 MR-----5A563KAA
68,000 MR-----5A683KAA
82,000 MR-----5A823KAA
100,000 MR-----5A104KAA
120,000 MR-----5A124KAA
150,000 MR-----5A154KAA
C0G (NP0) Dielectric
94 | www.avx.com
MR Series
Molded Radial MLCC X7R Dielectric
= Industry preferred values
For trimmed leads see “How To Order”.
For other tolerances see “How To Order”.
For other voltages see “How To Order”.
1.14 (.045)
Max.
W
W
L
L
T
T
L.D.
L.D.
L.S.
L.S.
31.7 (1.25)
Min.
31.7 (1.25)
Min.
Style MR05
Styles MR04, MR06,
MR07, MR08
Dimensions: Millimeters (Inches)
AVX MR series is a molded radial leaded capacitor. We offer NP0, X7R, and
Z5U dielectrics. Voltage available are 50, 100, & 200 VDC. AVX also offers
military grade molded radials per MIL-PRF-39014, MIL-C-11015, and MIL-
PRF-20.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/rceralam.pdf
HOW TO ORDER
MR05
AVX Style
MR04
MR05
MR06
MR07
MR08
1
Voltage
5 = 50V
1 = 100V
2 = 200V
C
Dielectric
C = X7R
561
Capacitance
First two digits are the significant
figures of capacitance. Third digit
indicates the additional number
of zeros. For example, order
100,000 pF as 104. (For values
below 10pF use “R” in place of
decimal point, e.g., 1R4 = 1.4pF.)
J
Capacitance
Tolerance
J = ±5%
K = ±10%
M = ±20%
A
Failure Rate
A = Not Applicable
T = CECC
A
Leads
A = Standard
Solderable
T1= Trimmed Leads
.230" ± .030"
1Trimmed lead length
for the MR05 style
will be measured
from the bend in the
lead (seating plane).
AVX Style MR04 MR05 MR06 MR07 MR08
Cap. in Typical AVX WVDC WVDC WVDC WVDC WVDC
pF Part Nos.
100 MR-----5C101KAA
120 MR-----5C121KAA
150 MR-----5C151KAA
180 MR-----5C181KAA
220 MR-----5C221KAA
270 MR-----5C271KAA
330 MR-----5C331KAA
390 MR-----5C391KAA
470 MR-----5C471KAA
560 MR-----5C561KAA
680 MR-----5C681KAA
820 MR-----5C821KAA
1000 MR-----5C102KAA
1200 MR-----5C122KAA
1500 MR-----5C152KAA
1800 MR-----5C182KAA
2200 MR-----5C222KAA
2700 MR-----5C272KAA
3300 MR-----5C332KAA
3900 MR-----5C392KAA
4700 MR-----5C472KAA
5600 MR-----5C562KAA
6800 MR-----5C682KAA
8200 MR-----5C822KAA
10,000 MR-----5C103KAA
12,000 MR-----5C123KAA
15,000 MR-----5C153KAA
18,000 MR-----5C183KAA
22,000 MR-----5C223KAA
27,000 MR-----5C273KAA
33,000 MR-----5C333KAA
39,000 MR-----5C393KAA
47,000 MR-----5C473KAA
56,000 MR-----5C563KAA
68,000 MR-----5C683KAA
82,000 MR-----5C823KAA
100,000 MR-----5C104KAA
120,000 MR-----5C124KAA
150,000 MR-----5C154KAA
180,000 MR-----5C184KAA
220,000 MR-----5C224KAA
270,000 MR-----5C274KAA
330,000 MR-----5C334KAA
390,000 MR-----5C394KAA
470,000 MR-----5C474KAA
560,000 MR-----5C564KAA
680,000 MR-----5C684KAA
820,000 MR-----5C824KAA
1.0 μF MR-----5C105KAA
1.2 μF MR-----5C125KAA
1.5 μF MR-----5C155KAA
1.8 μF MR-----5C185KAA
2.0 μF MR-----5C205KAA
2.2 μF MR-----5C225KAA
2.7 μF MR-----5C275KAA
3.3 μF MR-----5C335KAA
3.9 μF MR-----5C395KAA
4.7 μF MR-----5C475KAA
X7R Dielectric
www.avx.com | 95
MR Series
Molded Radial MLCC Z5U Dielectric
= Industry preferred values
For trimmed leads see “How To Order”.
For other tolerances see “How To Order”.
For other voltages see “How To Order”.
1.14 (.045)
Max.
W
W
L
L
T
T
L.D.
L.D.
L.S.
L.S.
31.7 (1.25)
Min.
31.7 (1.25)
Min.
Style MR05
Styles MR04, MR06,
MR07, MR08
Dimensions: Millimeters (Inches)
AVX MR series is a molded radial leaded capacitor. We offer NP0, X7R, and
Z5U dielectrics. Voltage available are 50, 100, & 200 VDC. AVX also offers
military grade molded radials per MIL-PRF-39014, MIL-C-11015, and MIL-
PRF-20.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/rceralam.pdf
HOW TO ORDER
MR05
AVX Style
MR04
MR05
MR06
MR07
MR08
1
Voltage
5 = 50V
1 = 100V
A
Dielectric
A = C0G (NP0)
C = X7R
E = Z5U
561
Capacitance
First two digits are the significant
figures of capacitance. Third digit
indicates the additional number
of zeros. For example, order
100,000 pF as 104. (For values
below 10pF use “R” in place of
decimal point, e.g., 1R4 = 1.4pF.)
Z
Capacitance
Tolerance
M = ±20%
Z = +80%
-20%
A
Failure Rate
A = Not Applicable
A
Leads
A = Standard
Solderable
T1= Trimmed Leads
.230" ± .030"
1Trimmed lead length
for the MR05 style
will be measured
from the bend in the
lead (seating plane).
AVX Style MR04 MR05 MR06 MR07 MR08
Cap. in Typical AVX WVDC WVDC WVDC WVDC WVDC
pF Part Nos. 100 50 100 50 100 50 100 50 100 50
10,000 MR-----5E103ZAA
12,000 MR-----5E123ZAA
15,000 MR-----5E153ZAA
18,000 MR-----5E183ZAA
22,000 MR-----5E223ZAA
27,000 MR-----5E273ZAA
33,000 MR-----5E333ZAA
39,000 MR-----5E393ZAA
47,000 MR-----5E473ZAA
56,000 MR-----5E563ZAA
68,000 MR-----5E683ZAA
82,000 MR-----5E823ZAA
100,000 MR-----5E104ZAA
120,000 MR-----5E124ZAA
150,000 MR-----5E154ZAA
180,000 MR-----5E184ZAA
220,000 MR-----5E224ZAA
270,000 MR-----5E274ZAA
330,000 MR-----5E334ZAA
390,000 MR-----5E394ZAA
470,000 MR-----5E474ZAA
560,000 MR-----5E564ZAA
680,000 MR-----5E684ZAA
820,000 MR-----5E824ZAA
1.0 μF MR-----5E105ZAA
1.2 μF MR-----5E125ZAA
1.5 μF MR-----5E155ZAA
1.8 μF MR-----5E185ZAA
2.2 μF MR-----5E225ZAA
2.7 μF MR-----5E275ZAA
3.3 μF MR-----5E335ZAA
3.9 μF MR-----5E395ZAA
4.7 μF MR-----5E475ZAA
5.6 μF MR-----5E565ZAA
6.8 μF MR-----5E685ZAA
8.2 μF MR-----5E825ZAA
10.0 μF MR-----5E106ZAA
Z5U Dielectric
96 | www.avx.com
MD Series
2 Pin DIP
AVX MD series is a Molded 2 Pin DIP capacitor. We offer NP0, X7R, and
Z5U dielectrics. Voltages available are 50 and 100Vdc.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/dipguard.pdf
HOW TO ORDER
MD01
AVX Style
MD01
CKR22*
CKS22**
MD02
CKR23*
CKS23*
MD03
CKR24*
CKS24**
5
Voltage
5 = 50V
1 = 100V
E
Temperature
Coefficient
A = C0G (NP0)
C = X7R
E = Z5U
104
Capacitance
First two digits are the significant
figures of capacitance. Third digit
indicates the additional number
of zeros. For example, order
100,000 pF as 104.
M
Capacitance
Tolerance
A
Failure Rate
A = Not Applicable
B
Assembly
Method
A = Hand
Assembled
B = Automated
Assembly
C0G (NP0):
F = ±1%
J = ±5%
K = ±10%
X7R:
J = ±5%
K = ±10%
M = ±20%
Z5U:
M = ±20%
Z = +80%
-20%
For other voltages and tolerances see Part No. Codes.
For other voltages and tolerances see Part No. Codes.
EIA
Characteristic X7R
AVX Style MD01
Cap. in WVDC
pF* 100 50
220 MD015C221KAB
330 MD015C331KAB
470 MD015C471KAB
680 MD015C681KAB
1000 MD015C102KAB
1500 MD015C152KAB
2200 MD015C222KAB
3300 MD015C332KAB
4700 MD015C472KAB
6800 MD015C682KAB
10,000 MD011C103KAB
15,000 MD015C153KAB
22,000 MD015C223KAB
33,000 MD015C333KAB
47,000 MD015C473KAB
68,000 MD015C683KAB
100,000 MD015C104KAB
AVX Style MD02
Cap. in WVDC
pF* 100 50
150,000 MD025C154KAB
220,000 MD025C224KAB
AVX Style MD03
Cap. in WVDC
pF* 100 50
330,000 MD035C334KAA
470,000 MD035C474KAA
680,000 MD035C684KAA
1,000,000 MD035C105KAA
For other voltages and tolerances see Part No. Codes.
*Other capacitance values available
upon special request.
= Industry preferred values
EIA
Characteristic C0G (NP0)
AVX Style MD01
Cap. in WVDC
pF* 100 50
10 MD015A100KAB
15 MD015A150KAB
22 MD015A220KAB
33 MD015A330KAB
47 MD015A470KAB
68 MD015A680KAB
100 MD015A101KAB
150 MD015A151KAB
220 MD015A221KAB
330 MD015A331KAB
470 MD015A471KAB
680 MD015A681KAB
1000 MD015A102KAB
1500 MD015A152KAB
2200 MD015A222KAB
3300 MD015A332KAB
AVX Style MD02
Cap. in WVDC
pF* 100 50
4700 MD025A472KAB
6800 MD025A682KAB
10000 MD025A103KAB
EIA
Characteristic Z5U
AVX Style MD01
Cap. in WVDC
pF* 100 50
10,000 MD015E103ZAB
15,000 MD015E153ZAB
22,000 MD015E223ZAB
33,000 MD015E333ZAB
47,000 MD015E473ZAB
68,000 MD015E683ZAB
100,000 MD015E104ZAB
150,000 MD015E154ZAB
220,000 MD015E224ZAB
330,000 MD015E334ZAB
AVX Style MD02
Cap. in WVDC
pF* 100 50
470,000 MD025E474ZAB
AVX Style MD03
Cap. in WVDC
pF* 100 50
680,000 MD035E684ZAA
1,000,000 MD035E105ZAA
C0G (NP0) X7R Z5U
www.avx.com | 97
= Industry preferred values
For other tolerances see Part No. Codes
For other voltages see Part No. Codes
AVX Style *“C&D” Tolerance Only
SA Series
SpinGuard®Axial Conformal Coated NP0 Dielectric
AVX SA series is a conformally coated axial leaded capacitor. We offer NP0, X7R,
X5R, and Z5U dielectrics. Voltages available are 10, 50, 100, and 200Vdc. Lower
voltages available upon request.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/spingrd.pdf
HOW TO ORDER
SA10
Conformal
Axial Size
SA05
SA10
SA11
SA20
SA30
SA40
5
Voltage
5 = 50V
1 = 100V
2 = 200V
A
Dielectric
A = C0G (NP0)
104
Capacitance
First two digits are the significant
figures of capacitance. Third digit
indicates the additional number
of zeros. For example, order
100,000 pF as 104. (For values
below 10pF use “R” in place of
decimal point, e.g., 1R4 = 1.4pF.)
F
Capacitance
Tolerance
C = ±.25pF
D = ±.5pF
F = ±1%
G = ±2%
J = ±5%
K = ±10%
A
Failure Rate
A = Not Applicable
R
Leads
Standard (Solderable)
R = RoHS Compliant
A = Standard Solderable
AVX Style SA05 SA10 SA11 SA20 SA30 SA40
Cap. in Typical AVX WVDC WVDC WVDC WVDC WVDC WVDC
pF Part Nos. 200 100 200 100 50 100 50 100 50 100 50 100 50
1.0* SA102A1R0DAR
++
9.1* SA102A9R1DAR
10 SA102A100JAR
12 SA102A120JAR
15 SA102A150JAR
18 SA102A180JAR
22 SA102A220JAR
27 SA102A270JAR
33 SA102A330JAR
39 SA102A390JAR
47 SA102A470JAR
56 SA102A560JAR
68 SA102A680JAR
82 SA102A820JAR
100 SA102A101JAR
120 SA102A121JAR
150 SA101A151JAR
180 SA101A181JAR
220 SA101A221JAR
270 SA101A271JAR
330 SA101A331JAR
390 SA101A391JAR
470 SA101A471JAR
560 SA101A561JAR
680 SA101A681JAR
820 SA101A821JAR
1000 SA105A102JAR
1200 SA201A122JAR
1500 SA201A152JAR
1800 SA205A182JAR
2200 SA301A222JAR
2700 SA301A272JAR
3300 SA301A332JAR
3900 SA301A392JAR
4700 SA305A472JAR
5600 SA401A562JAR
6800 SA401A682JAR
8200 SA405A822JAR
10,000 SA405A103JAR
12,000 SA405A123JAR
NP0 Dielectric
98 | www.avx.com
AVX SA series is a conformally coated axial leaded capacitor. We offer NP0, X7R,
X5R, and Z5U dielectrics. Voltages available are 10, 50, 100, and 200Vdc. Lower
voltages available upon request.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/spingrd.pdf
HOW TO ORDER
SA10
Conformal
Axial Size
SA05
SA10
SA11
SA20
SA30
SA40
5
Voltage
5 = 50V
1 = 100V
2 = 200V
C
Dielectric
C = X7R
104
Capacitance
First two digits are the significant
figures of capacitance. Third digit
indicates the additional number
of zeros. For example, order
100,000 pF as 104. (For values
below 10pF use “R” in place of
decimal point, e.g., 1R4 = 1.4pF.)
K
Capacitance
Tolerance
J = ±5%
K = ±10%
M = ±20%
A
Failure Rate
A = Not Applicable
= Industry preferred values
SA Series
SpinGuard®Axial Conformal Coated X7R Dielectric
R
Leads
Standard (Solderable)
R = RoHS Compliant
A = Standard Solderable
For other tolerances see Part No. Codes
For other voltages see Part No. Codes
AVX Style
X7R Dielectric
AVX Style SA05 SA10 SA11 SA20 SA30 SA40
Cap. in Typical AVX WVDC WVDC WVDC WVDC WVDC WVDC
pF Part Nos. 200 100 50 200 100 50 100 50 100 50 100 50 100 50
220 SA102C221KAR
270 SA102C271KAR
330 SA102C331KAR
390 SA102C391KAR
470 SA102C471KAR
560 SA101C561KAR
680 SA101C681KAR
820 SA101C821KAR
1000 SA101C102KAR
1200 SA101C122KAR
1500 SA101C152KAR
1800 SA101C182KAR
2200 SA101C222KAR
2700 SA101C272KAR
3300 SA101C332KAR
3900 SA101C392KAR
4700 SA101C472KAR
5600 SA101C562KAR
6800 SA101C682KAR
8200 SA105C822KAR
10,000 SA105C103KAR
12,000 SA105C123KAR
15,000 SA105C153KAR
18,000 SA105C183KAR
22,000 SA105C223KAR
27,000 SA105C273KAR
33,000 SA105C333KAR
39,000 SA105C393KAR
47,000 SA105C473KAR
56,000 SA115C563KAR
68,000 SA115C683KAR
82,000 SA115C823KAR
100,000 SA115C104KAR
120,000 SA305C124KAR
150,000 SA305C154KAR
180,000 SA305C184KAR
220,000 SA305C224KAR
270,000 SA305C274KAR
330,000 SA305C334KAR
470,000 SA405C474KAR
1,000,000 SA305C105KAR
www.avx.com | 99
AVX SA series is a conformally coated axial leaded capacitor. We offer NP0, X7R,
X5R, and Z5U dielectrics. Voltages available are 10, 50, 100, and 200Vdc. Lower
voltages available upon request.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/spingrd.pdf
SA Series
SpinGuard®Axial Conformal Coated X5R Dielectric
= Industry preferred values
For other tolerances see Part No. Codes
For other voltages see Part No. Codes
AVX Style
AVX Style SA10
Length 4.32
(L) (.170")
Diameter 2.54
(D) (.100")
Lead .445
Diameter (.0175")
Lead 25.4
Length (1.00")
Cap. in Typical AVX WVDC
μF Part Nos. 10
1.8 SA10ZD185KAR
2.7 SA10ZD275KAR
3.3 SA10ZD335KAR
4.7 SA10ZD475KAR
Dimensions: Millimeters (Inches)
HOW TO ORDER
SA10
Conformal
Axial Size
SA10
5
Voltage
Z = 10V
D
Dielectric
D = X5R
104
Capacitance
First two digits are the significant
figures of capacitance. Third digit
indicates the additional number
of zeros. For example, order
100,000 pF as 104. (For values
below 10pF use “R” in place of
decimal point, e.g., 1R4 = 1.4pF.)
K
Capacitance
Tolerance
K = ±10%
M = ±20%
A
Failure Rate
A = Not Applicable
R
Leads
Standard (Solderable)
R = RoHS Compliant
A = Standard Solderable
100 | www.avx.com
AVX SA series is a conformally coated axial leaded capacitor. We offer NP0, X7R,
X5R, and Z5U dielectrics. Voltages available are 10, 50, 100, and 200Vdc. Lower
voltages available upon request.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/spingrd.pdf
HOW TO ORDER
SA10
Conformal
Axial Size
SA05
SA10
SA11
SA20
SA30
SA40
5
Voltage
5 = 50V
1 = 100V
E
Dielectric
E = Z5U
104
Capacitance
First two digits are the significant
figures of capacitance. Third digit
indicates the additional number
of zeros. For example, order
100,000 pF as 104. (For values
below 10pF use “R” in place of
decimal point, e.g., 1R4 = 1.4pF.)
Z
Capacitance
Tolerance
M = ±20%
Z = +80%
-20%
A
Failure Rate
A = Not Applicable
SA Series
SpinGuard®Axial Conformal Coated Z5U Dielectric
= Industry preferred values
For other tolerances see Part No. Codes
For other voltages see Part No. Codes
AVX Style
*Preferred Industry Decoupling Capacitor — Insertable on .300" centers.
SA105E104ZAA
R
Leads
Standard (Solderable)
R = RoHS Compliant
A = Standard Solderable
Z5U Dielectric
AVX Style SA05 SA10 SA11 SA20 SA30 SA40
Cap. in Typical AVX WVDC WVDC WVDC WVDC WVDC WVDC
pF Part Nos. 50 100 50 100 50 100 50 100 50 100 50
10,000 SA105E103ZAR
15,000 SA105E153ZAR
22,000 SA105E223ZAR
33,000 SA105E333ZAR
47,000 SA105E473ZAR
68,000 SA105E683ZAR
*
100,000 SA105E104ZAR
150,000 SA105E154ZAR
220,000 SA105E224ZAR
330,000 SA115E334ZAR
470,000 SA305E474ZAR
680,000 SA305E684ZAR
820,000 SA305E824ZAR
1,000,000 SA305E105ZAR
www.avx.com | 101
For other tolerances see Part No. Codes
For other voltages see Part No. Codes.
AVX Style
MA Series
Molded Axial NP0 Dielectric
HOW TO ORDER
MA10
Molded
Axial Size
MA10
MA20
MA30
MA40
MA50
MA60
5
Voltage
5 = 50V
1 = 100V
2 = 200V
A
Dielectric
A = C0G (NP0)
104
Capacitance
First two digits are the significant
figures of capacitance. Third digit
indicates the additional number
of zeros. For example, order
100,000 pF as 104. (For values
below 10pF use “R” in place of
decimal point, e.g., 1R4 = 1.4pF.)
J
Capacitance
Tolerance
F = ±1%
J = ±5%
K = ±10%
M = ±20%
D = ±5.pF
<10pF only
A
Failure Rate
A = Not Applicable
A
Leads
A = Standard
‡ C tolerance available C0G (NP0) from 1.0 to 9.1 pF only. Minimum
tolerance for values 10 pF - 100 pF is D or F whichever is greater.
L
LD
D
Lead Length
Min.
AVX MA series is a molded axial leaded capacitor. We offer NP0, X7R, and Z5U
dielectrics. Voltages available are 50V, 100V, and 200Vdc. AVX also offers military grade
molded axials per MIL-C-11015, MIL-PRF-39014, and MIL-PRF-20.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/aceralam.pdf
200 100 50 200 100 50 200 100 50 200 100 50 200 100 50 200 100 50
AVX Style MA10 MA20 MA30 MA40 MA50 MA60
Cap. in Typical AVX WVDC WVDC WVDC WVDC WVDC WVDC
pF Part Nos.
1.0 MA-----5A1R0DAA
to
9.1 MA-----5A9R1DAA
10 MA-----5A100KAA
12 MA-----5A120KAA
15 MA-----5A150KAA
18 MA-----5A180KAA
22 MA-----5A220KAA
27 MA-----5A270KAA
33 MA-----5A330KAA
39 MA-----5A390KAA
47 MA-----5A470KAA
56 MA-----5A560KAA
68 MA-----5A680KAA
82 MA-----5A820KAA
100 MA-----5A101KAA
120 MA-----5A121KAA
150 MA-----5A151KAA
180 MA-----5A181KAA
220 MA-----5A221KAA
270 MA-----5A271KAA
330 MA-----5A331KAA
390 MA-----5A391KAA
470 MA-----5A471KAA
560 MA-----5A561KAA
680 MA-----5A681KAA
820 MA-----5A821KAA
1000 MA-----5A102KAA
1200 MA-----5A122KAA
1500 MA-----5A152KAA
1800 MA-----5A182KAA
2200 MA-----5A222KAA
2700 MA-----5A272KAA
3300 MA-----5A332KAA
3900 MA-----5A392KAA
4700 MA-----5A472KAA
5600 MA-----5A562KAA
6800 MA-----5A682KAA
8200 MA-----5A822KAA
10,000 MA-----5A103KAA
12,000 MA-----5A123KAA
15,000 MA-----5A153KAA
18,000 MA-----5A183KAA
22,000 MA-----5A223KAA
27,000 MA-----5A273KAA
33,000 MA-----5A333KAA
39,000 MA-----5A393KAA
47,000 MA-----5A473KAA
56,000 MA-----5A563KAA
68,000 MA-----5A683KAA
82,000 MA-----5A823KAA
100,000 MA-----5A104KAA
120,000 MA-----5A124KAA
150,000 MA-----5A154KAA
NP0 Dielectric
102 | www.avx.com
MA Series
Molded Axial X7R Dielectric
For other tolerances see Part No. Codes
For other voltages see Part No. Codes.
AVX Style
HOW TO ORDER
MA10
Molded
Axial Size
MA10
MA20
MA30
MA40
MA50
MA60
5
Voltage
5 = 50V
1 = 100V
2 = 200V
C
Dielectric
C = X7R
104
Capacitance
First two digits are the significant
figures of capacitance. Third digit
indicates the additional number
of zeros. For example, order
100,000 pF as 104. (For values
below 10pF use “R” in place of
decimal point, e.g., 1R4 = 1.4pF.)
J
Capacitance
Tolerance
J = ±5%
K = ±10%
M = ±20%
A
Failure Rate
A = Not Applicable
A
Leads
A = Standard
‡ C tolerance available C0G (NP0) from 1.0 to 9.1 pF only. Minimum
tolerance for values 10 pF - 100 pF is D or F whichever is greater.
L
LD
D
Lead Length
Min.
AVX MA series is a molded axial leaded capacitor. We offer NP0, X7R, and Z5U
dielectrics. Voltages available are 50V, 100V, and 200Vdc. AVX also offers military grade
molded axials per MIL-C-11015, MIL-PRF-39014, and MIL-PRF-20.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/aceralam.pdf
200 100 50 200 100 50 200 100 50 200 100 50 200 100 50 200 100 50
AVX Style MA10 MA20 MA30 MA40 MA50 MA60
Cap. in Typical AVX WVDC WVDC WVDC WVDC WVDC WVDC
pF Part Nos.
220 MA-----5C221KAA
270 MA-----5C271KAA
330 MA-----5C331KAA
390 MA-----5C391KAA
470 MA-----5C471KAA
560 MA-----5C561KAA
680 MA-----5C681KAA
820 MA-----5C821KAA
1000 MA-----5C102KAA
1200 MA-----5C122KAA
1500 MA-----5C152KAA
1800 MA-----5C182KAA
2200 MA-----5C222KAA
2700 MA-----5C272KAA
3300 MA-----5C332KAA
3900 MA-----5C392KAA
4700 MA-----5C472KAA
5600 MA-----5C562KAA
6800 MA-----5C682KAA
8200 MA-----5C822KAA
10,000 MA-----5C103KAA
12,000 MA-----5C123KAA
15,000 MA-----5C153KAA
18,000 MA-----5C183KAA
22,000 MA-----5C223KAA
27,000 MA-----5C273KAA
33,000 MA-----5C333KAA
39,000 MA-----5C393KAA
47,000 MA-----5C473KAA
56,000 MA-----5C563KAA
68,000 MA-----5C683KAA
82,000 MA-----5C823KAA
100,000 MA-----5C104KAA
120,000 MA-----5C124KAA
150,000 MA-----5C154KAA
180,000 MA-----5C184KAA
220,000 MA-----5C224KAA
270,000 MA-----5C274KAA
330,000 MA-----5C334KAA
390,000 MA-----5C394KAA
470,000 MA-----5C474KAA
560,000 MA-----5C564KAA
680,000 MA-----5C684KAA
820,000 MA-----5C824KAA
1.0 μF MA-----5C105KAA
1.2 μF MA-----5C125KAA
1.5 μF MA-----5C155KAA
1.8 μF MA-----5C185KAA
2.2 μF MA-----5C225KAA
2.7 μF MA-----5C275KAA
3.3 μF MA-----5C335KAA
3.9 μF MA-----5C395KAA
X7R Dielectric
www.avx.com | 103
MA Series
Molded Axial Z5U Dielectric
For other tolerances see Part No. Codes
For other voltages see Part No. Codes.
AVX Style
200 100 50 200 100 50 200 100 50 200 100 50 200 100 50 200 100 50
HOW TO ORDER
MA10
Molded
Axial Size
MA10
MA20
MA30
MA40
MA50
MA60
5
Voltage
5 = 50V
1 = 100V
2 = 200V
E
Dielectric
E = Z5U
104
Capacitance
First two digits are the significant
figures of capacitance. Third digit
indicates the additional number
of zeros. For example, order
100,000 pF as 104. (For values
below 10pF use “R” in place of
decimal point, e.g., 1R4 = 1.4pF.)
Z
Capacitance
Tolerance
M = ±20%
Z = +80%
-20%
A
Failure Rate
A = Not Applicable
A
Leads
A = Standard
‡ C tolerance available C0G (NP0) from 1.0 to 9.1 pF only. Minimum
tolerance for values 10 pF - 100 pF is D or F whichever is greater.
L
LD
D
Lead Length
Min.
AVX MA series is a molded axial leaded capacitor. We offer NP0, X7R, and Z5U
dielectrics. Voltages available are 50V, 100V, and 200Vdc. AVX also offers military grade
molded axials per MIL-C-11015, MIL-PRF-39014, and MIL-PRF-20.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/aceralam.pdf
Z5U Dielectric
AVX Style MA10 MA20 MA30 MA40 MA50 MA60
Cap. in Typical AVX WVDC WVDC WVDC WVDC WVDC WVDC
pF Part Nos.
1000 MA----5E102ZAA
1200 MA----5E122ZAA
1500 MA----5E152ZAA
1800 MA----5E182ZAA
2200 MA----5E222ZAA
2700 MA----5E272ZAA
3300 MA----5E332ZAA
3900 MA----5E392ZAA
4700 MA----5E472ZAA
5600 MA----5E562ZAA
6800 MA----5E682ZAA
8200 MA----5E822ZAA
10,000 MA----5E103ZAA
12,000 MA----5E123ZAA
15,000 MA----5E153ZAA
18,000 MA----5E183ZAA
22,000 MA----5E223ZAA
27,000 MA----5E273ZAA
33,000 MA----5E333ZAA
39,000 MA----5E393ZAA
47,000 MA----5E473ZAA
56,000 MA----5E563ZAA
68,000 MA----5E683ZAA
82,000 MA----5E823ZAA
100,000 MA----5E104ZAA
120,000 MA----5E124ZAA
150,000 MA----5E154ZAA
180,000 MA----5E184ZAA
220,000 MA----5E224ZAA
270,000 MA----5E274ZAA
330,000 MA----5E334ZAA
390,000 MA----5E394ZAA
470,000 MA----5E474ZAA
560,000 MA----5E564ZAA
680,000 MA----5E684ZAA
820,000 MA----5E824ZAA
1.0 μF MA----5E105ZAA
1.2 μF MA----5E125ZAA
1.5 μF MA----5E155ZAA
1.8 μF MA----5E185ZAA
2.2 μF MA----5E225ZAA
2.7 μF MA----5E275ZAA
3.3 μF MA----5E335ZAA
3.9 μF MA----5E395ZAA
4.7 μF MA----5E475ZAA
5.6 μF MA----5E565ZAA
6.8 μF MA----5E685ZAA
8.2 μF MA----5E825ZAA
104 | www.avx.com
www.avx.com | 105
Leaded High Voltage MLCC
SV Series Radial Capacitors – C0G Dielectric
High value, low leakage and small size are difficult parameters to obtain in
capacitors for high voltage systems. AVX special high voltage MLC radial leaded
capacitors meet these performance characteristics. The added advantage of these
capacitors lies in special internal design minimizing the electric field stresses within
the MLC. These special design criteria result in significant reduction of partial
discharge activity within the dielectric and having, therefore, a major impact on long-
term reliability of the product. The SV high voltage radial capacitors are conformally
coated with high insulation resistance, high dielectric strength epoxy eliminating the
possibility of arc flashover.
The SV high voltage radial MLC designs exhibit low ESRs at high frequency.
The same criteria governing the high voltage design carries the added benefits of
extremely low ESR in relatively low capacitance and small packages. These
capacitors are designed and are ideally suited for applications such as snubbers in
high frequency power converters, resonators in SMPS, and high voltage cou-
pling/DC blocking.
HOW TO ORDER
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/sv.pdf
Note 1:
No suffix signifies bulk packaging
which is AVX standard packaging.
Use suffix “TR1” if tape and reel is
required. Parts are reel packaged
per EIA-468.
C0G
Style 600/630V 1000V 1500V 2000V 2500V 3000V 4000V 5000V
min./max.
min./max. min./max. min./max. min./max. min./max. min./max. min./max.
SV01 100 pF / 1500 pF 100 pF / 1000 pF 10 pF / 330 pF 10 pF / 220 pF 10 pF / 120 pF 10 pF / 82 pF
SV02/SV52 100 pF / 6800 pF 100 pF / 4700 pF 100 pF / 1500 pF 10 pF / 1000 pF 10 pF / 680 pF 10 pF / 560 pF 10 pF / 150 pF 10 pF / 100 pF
SV03/SV53 100 pF / 0.012 μF 100 pF / 8200 pF 100 pF / 2700 pF 100 pF/ 1800 pF 10 pF / 1000 pF 10 pF / 680 pF 10 pF / 390 pF 10 pF / 220 pF
SV04/SV54 100 pF / 3900 pF 100 pF / 2700 pF 10 pF / 820 pF 10 pF / 560 pF 10 pF / 270 pF 10 pF / 180 pF 10 pF / 100 pF 10 pF / 68 pF
SV05/SV55 1000 pF / 0.027 μF 1000 pF / 0.018 μF 100 pF / 6800 pF 100 pF / 4700 pF 100 pF / 2700 pF 100 pF / 1500 pF 10 pF /1000 pF 10 pF / 560 pF
SV06/SV56 100 pF / 0.012 μF 100 pF / 0.010 μF 100 pF / 3300 pF 100 pF/ 2200 pF 10 pF / 1200 pF 10 pF / 820 pF 10 pF / 470 pF 10 pF / 390 pF
SV07/SV57 1000 pF / 0.056 μF 1000 pF / 0.033 μF 1000 pF / 0.015 μF 100 pF /0.010 μF 100 pF /5600 pF 100 pF / 3900 pF 100 pF /2200 pF 10 pF /1200 pF
SV08/SV58 1000 pF / 0.082 μF 1000 pF / 0.047 μF 1000 pF / 0.022 μF 1000 pF /0.015 μF 100 pF /0.010 μF 100 pF / 6800 pF 100 pF /3300 pF 100 pF /2200 pF
SV09/SV59 1000 pF / 0.150 μF 1000 pF / 0.082 μF 1000 pF / 0.039 μF 1000 pF /0.022 μF 1000 pF /0.015 μF 100 pF / 8200 pF 100 pF /4700 pF 100 pF /3300 pF
SV10 1000 pF / 0.100 μF 1000 pF / 0.056 μF 1000 pF / 0.022 μF 1000 pF /0.012 μF 100 pF /8200 pF 100 pF / 5600 pF 100 pF /3300 pF 100 pF /2200 pF
SV11 1000 pF / 0.150 μF 1000 pF / 0.082 μF 1000 pF / 0.039 μF 1000 pF /0.022 μF 1000 pF /0.015 μF 100 pF / 8200 pF 100 pF /4700 pF 100 pF /3300 pF
SV12 0.01 μF /0.220 μF 0.01 μF / 0.15 μF 1000 pF / 0.056 μF 1000 pF/0.033 μF 1000 pF /0.022 μF 1000 pF /0.015 μF 100 pF /8200 pF 100 pF /5600 pF
SV13/SV63 100 pF / 0.018 μF 100 pF / 0.012 μF 100 pF / 4700 pF 100 pF/ 2700 pF 100 pF /1800 pF 100 pF / 1000 pF 10 pF / 470 pF 10 pF / 390 pF
SV14/SV64 1000 pF / 0.039 μF 1000 pF / 0.022 μF 100 pF / 8200 pF 100 pF / 5600 pF 100 pF / 3300 pF 100 pF / 1800 pF 10 pF / 820 pF 10 pF / 680 pF
SV15/SV65 1000 pF / 0.056 μF 1000 pF / 0.033 μF 1000 pF /0.015 μF 100 pF / 0.01 μF 100 pF / 5600 pF 100 pF / 2700 pF 100 pF /1800 pF 100 pF /1200 pF
SV16/SV66 1000 pF / 0.120 μF 1000 pF / 0.082 μF 1000 pF /0.039 μF 1000 pF/0.027 μF 1000 pF /0.015 μF 100 pF / 8200 pF 100 pF /4700 pF 100 pF /3300 pF
SV17/SV67 1000 pF / 0.150 μF 1000 pF / 0.10 μF 1000 pF /0.056 μF 1000 pF/0.039 μF 1000 pF /0.022 μF 1000 pF /0.012 μF 100 pF /6800 pF 100 pF /4700 pF
Note: Contact factory for other voltage ratings or values.
SV01
AVX
Style
A
Voltage
C = 600V/630V
A = 1000V
S = 1500V
G = 2000V
W = 2500V
H = 3000V
J = 4000V
K = 5000V
A
Temperature
Coefficient
C0G = A
102
Capacitance
Code
(2 significant digits
+ no. of zeros)
Examples:
10 pF = 100
100 pF = 101
1,000 pF = 102
22,000 pF = 223
220,000 pF = 224
1 μF = 105
K
Capacitance
Tolerance
J = ±5%
K = ±10%
M = ±20%
A
Test Level
A = Standard
B = Hi-Rel*
A
Leads
A = Tin/Lead
R = RoHS
Compliant
*
Packaging
(See Note 1)
*Hi-Rel screening consists of 100% Group A, Subgroup 1 per MIL-PRF-49467.
(Except partial discharge testing is not performed and DWV is at 120% rated voltage).
106 | www.avx.com
Leaded High Voltage MLCC
SV Series Radial Capacitors – X7R Dielectric
Note: Contact factory for other voltage ratings or values.
High value, low leakage and small size are difficult parameters to obtain in
capacitors for high voltage systems. AVX special high voltage MLC radial leaded
capacitors meet these performance characteristics. The added advantage of these
capacitors lies in special internal design minimizing the electric field stresses within
the MLC. These special design criteria result in significant reduction of partial
discharge activity within the dielectric and having, therefore, a major impact on long-
term reliability of the product. The SV high voltage radial capacitors are conformally
coated with high insulation resistance, high dielectric strength epoxy eliminating the
possibility of arc flashover.
The SV high voltage radial MLC designs exhibit low ESRs at high frequency.
The same criteria governing the high voltage design carries the added benefits of
extremely low ESR in relatively low capacitance and small packages. These
capacitors are designed and are ideally suited for applications such as snubbers in
high frequency power converters, resonators in SMPS, and high voltage cou-
pling/DC blocking.
HOW TO ORDER
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/sv.pdf
Note 1:
No suffix signifies bulk packaging
which is AVX standard packaging.
Use suffix “TR1” if tape and reel is
required. Parts are reel packaged
per EIA-468.
Note: Capacitors with X7R dielectrics are not intended for applications across
AC supply mains or AC line filtering with polarity reversal. Contact plant for
recommendations.
*Hi-Rel screening consists of 100% Group A, Subgroup 1 per MIL-PRF-49467.
(Except partial discharge testing is not performed and DWV is at 120% rated voltage).
X7R
Style 600/630V 1000V 1500V 2000V 2500V 3000V 4000V 5000V
min./max.
min./max. min./max. min./max. min./max. min./max. min./max. min./max.
SV01 1000 pF / 0.018 μF 1000 pF / 0.012 μF 100 pF / 5600 pF 100 pF / 3900 pF
SV02/SV52 1000 pF / 0.082 μF 1000 pF / 0.047 μF 1000 pF / 0.015 μF 100 pF / 6800 pF 100 pF / 3900 pF 100 pF / 2700 pF
SV03/SV53 1000 pF / 0.180 μF 1000 pF / 0.082 μF 1000 pF / 0.018 μF 1000 pF / 0.01 μF 100 pF /6800 pF 100 pF / 4700 pF 100 pF /1800 pF
SV04/SV54 1000 pF / 0.056 μF 1000 pF / 0.033 μF 100 pF / 6800 pF 100 pF / 3900 pF 100 pF / 2200 pF 100 pF / 1800 pF 100 pF / 820 pF
SV05/SV55 0.01 μF /0.470 μF 0.01 μF / 0.22 μF 1000 pF /0.056 μF 1000 pF/0.027 μF 1000 pF /
0.018 μ
F 1000 pF /0.012 μF 100 pF /4700 pF
SV06/SV56 0.01 μF /0.180 μF 0.01 μF / 0.10 μF 1000 pF /0.033 μF 1000 pF/0.012 μF 100 pF /8200 pF 100 pF / 6800 pF 100 pF /2700 pF 100 pF /1200 pF
SV07/SV57 0.01 μF /0.820 μF 0.01 μF / 0.39 μF 0.01 μF / 0.10 μF 1000 pF/0.047 μF 1000 pF /
0.033 μ
F 1000 pF /0.027 μF 1000 pF / 0.01 μF 100 pF /6800 pF
SV08/SV58 0.01 μF / 1.20 μF 0.01 μF / 0.68 μF 0.01 μF / 0.18 μF 1000 pF/0.082 μF 1000 pF /
0.068 μ
F 1000 pF /0.047 μF 1000 pF /0.018 μF 1000 pF /0.012 μF
SV09/SV59 0.10 μF / 1.80 μF 0.10 μF / 1.00 μF 0.01 μF / 0.27 μF 0.01 μF / 0.12 μF 0.01 μF /
0.10 μ
F 1000 pF /0.068 μF 1000 pF /0.027 μF 1000 pF /0.018 μF
SV10 0.01 μF / 1.50 μF 0.01 μF / 0.82 μF 0.01 μF / 0.22 μF 0.01 μF/ 0.10 μF 1000 pF /
0.082 μ
F 1000 pF /0.056 μF 1000 pF /0.022 μF 1000 pF /0.022 μF
SV11 0.10 μF / 2.20 μF 0.10 μF / 1.2 μF 0.01 μF / 0.39 μF 0.01 μF/ 0.18 μF 0.01 μF /
0.15 μ
F 0.01 μF / 0.10 μF 1000 pF /0.039 μF 1000 pF /0.027 μF
SV12 0.10 μF / 3.90 μF 0.10 μF / 2.20 μF 0.01 μF / 0.56 μF 0.01 μF/ 0.27 μF 0.01 μF /
0.22 μ
F 0.01 μF / 0.15 μF 1000 pF /0.056 μF 1000 pF /0.033 μF
SV13/SV63 0.01 μF /0.270 μF 0.01 μF / 0.10 μF 1000 pF /0.033 μF 1000 pF/0.012 μF 1000 pF /
0.01 μ
F 100 pF / 6800 pF 100 pF /2700 pF
SV14/SV64 0.01 μF /0.470 μF 0.01 μF / 0.18 μF 1000 pF /0.068 μF 1000 pF/0.022 μF 1000 pF /
0.018 μ
F 1000 pF /0.015 μF 100 pF /5600 pF
SV15/SV65 0.01 μF /0.680 μF 0.01 μF / 0.33 μF 0.01 μF / 0.10 μF 1000 pF/0.033 μF 1000 pF /
0.027 μ
F 1000 pF /0.022 μF 1000 pF /8200 pF 100 pF /4700 pF
SV16/SV66 0.01 μF / 1.80 μF 0.01 μF / 1.0 μF 0.01 μF / 0.27 μF 0.01 μF / 0.12 μF 0.01 μF /
0.10 μ
F 1000 pF /0.068 μF 1000 pF /0.027 μF 1000 pF /0.018 μF
SV17/SV67 0.01 μF / 2.20 μF 0.01 μF / 1.2 μF 0.01 μF / 0.39 μF 0.01 μF / 0.15 μF 0.01 μF /
0.12 μ
F 1000 pF /0.082 μF 1000 pF /0.039 μF 1000 pF /0.027 μF
SV01
AVX
Style
A
Voltage
A = 1000V
S = 1500V
G = 2000V
W = 2500V
H = 3000V
J = 4000V
K = 5000V
A
Temperature
Coefficient
X7R = C
102
Capacitance
Code
(2 significant digits
+ no. of zeros)
Examples:
10 pF = 100
100 pF = 101
1,000 pF = 102
22,000 pF = 223
220,000 pF = 224
1 μF = 105
K
Capacitance
Tolerance
K = ±10%
M = ±20%
Z = +80
-20%
A
Test Level
A = Standard
B = Hi-Rel*
A
Leads
A = Tin/Lead
R = RoHS
Compliant
*
Packaging
(See Note 1)
www.avx.com | 107
TAP Series
Dipped Radial Tantalum Capacitors
TAP is a professional grade device manufactured with a flame retardant coating and featuring
low leakage current and impedance, very small physical sizes and exceptional temperature
stability. It is designed and conditioned to operate to +125°C and is available loose or taped
and reeled for auto insertion. The 15 case sizes with wide capacitance and working voltage
ranges means the TAP can accommodate almost any application.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/tap.pdf
HOW TO ORDER
Capacitance Range (letter denotes case size)
Capacitance Rated voltage DC (VR)
μF Code 6.3V 10V 16V 20V 25V 35V 50V
0.1 104 AA
0.15 154 AA
0.22 224 AA
0.33 334 AA
0.47 474 AA
0.68 684 AB
1.0 105 A A A C
1.5 155 A A A A D
2.2 225 A A A A B E
3.3 335 A A A B B C F
4.7 475 A A B C C E G
6.8 685 A B C D D F H
10 106 B C D E E F J
15 156 C D E F F H K
22 226 D E F H H K L
33 336 E F F J J M
47 476 F G J K M N
68 686 G H L N N
100 107 H K N N
150 157 K N N
220 227 M P R
330 337 P R
Values outside this standard range may be available on request.
AVX reserves the right to supply capacitors to a higher voltage rating, in the same case size, than that ordered.
TAP
Type
475
Capacitance Code
pF code: 1st two digits
represent significant
figures, 3rd digit
represents multiplier
(number of zeros
to follow)
M
Capacitance
Tolerance
K = ±10%
M = ±20%
(For J = ±5% tolerance,
please consult factory)
035
Rated
DC Voltage
SCS
Suffix
indicating
wire form and
packaging
108 | www.avx.com
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/tep.pdf
TEP Series
Dipped Radial Capacitors – Tin/Lead Finish
TEP is a Tin–Lead finish version of the conformally coated tantalum radial lead-
ed capacitor (TAP), It is a professional grade device manufactured with a flame
retardant coating and featuring low leakage current and impedance, very small
physical sizes and exceptional temperature stability, available in bulk and T&R
packaging for auto insertion. The wide range of Capacitance, working voltages
and case sizes enables TEP to accommodate to almost any application.
Capacitance Range (letter denotes case size)
Capacitance Rated voltage DC (VR)
μF Code 6.3V 10V 16V 20V 25V 35V 50V
0.1 104 AA
0.15 154 AA
0.22 224 AA
0.33 334 AA
0.47 474 AA
0.68 684 AB
1.0 105 A A A C
1.5 155 A A A A D
2.2 225 A A A A B E
3.3 335 A A A B B C F
4.7 475 A A B C C E G
6.8 685 A B C D D F H
10 106 B C D E E F J
15 156 C D E F F H K
22 226 D E F H H K L
33 336 E F F J J M
47 476 F G J K M N
68 686 G H L N N
100 107 H K N N
150 157 K N N
220 227 M P R
330 337 P R
Values outside this standard range may be available on request.
AVX reserves the right to supply capacitors to a higher voltage rating, in the same case size, than that ordered.
HOW TO ORDER
TEP
Type
106
Capacitance Code
pF code: 1st two digits
represent significant
figures, 3rd digit
represents multiplier
(number of zeros
to follow)
M
Capacitance
Tolerance
K = ±10%
M = ±20%
(For J = ±5% tolerance,
please consult factory)
016
Rated
DC Voltage
SCS
Suffix
indicating
wire form and
packaging
www.avx.com | 109
BZ 0 1 5 A 503 Z A B XX
BestCap®Standard Case Size Rated Series Capacitance Capacitance Lead Packaging Not Used For
1 = 28mmx17mm Voltage A = Maximum Code Tolerance Format B = Bulk Standard
2 = 48mmx30mm 3 = 3.6V Capacitance (Farad Code) Z = (-20/+80)% A, C, H, L Product
5 = 20mmx15mm 4 = 4.5V B = Low Profile N or S (Consult
9 = 17mmx15mm 5 = 5.5V Factory For
9 = 9.0V Special
C = 12.0V Requirements)
F = 15.0V
HOW TO ORDER
BestCap®
Pulse Supercapacitors
AVX’s BestCap®technology provides excellent high power pulse characteristics based upon the
combination of very high capacitance and ultra-low ESR, together with extremely low leakage
current.
Based on a unique patented aqueous chemistry and an innovative design, this series offers high
capacitance, even with short pulse applications such as in GSM, GPRS, Edge and PCS based
systems.
While BestCap®technology offers more efficient energy savings in battery circuits than conventional
supercapacitors, its Low ESR results in a high current handling capability, making this an ideal
solution for any portable or wireless device requiring high power availability.
The Low Profile versions are ideally suited to PCMCIA, PDA, DSC and similar applications.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/bestcap.pdf
A-SERIES – MAXIMUM CAPACITANCE
Capacitance Rated Voltage DC at 25°C
mF Code 3.6V 5.5V 9.0V 12.0V
Case Lead Case Lead Case Lead Case Lead
Size Styles Size Styles Size Styles Size Styles
10 103 BZ05 C, N, S
22 223 BZ01 A, C, H, S
33 333 BZ05 C, N, S BZ01 A, C, H, S
47 473
50 503 BZ01 A, C, H, S
68 683 BZ05 S
70 703 BZ01 A, C, H, S
90 903 BZ02 A, H, L
100 104 BZ01 A, H, S
120 124 BZ02 A, H, L
140 144 BZ01 A, H, S
150 154
200 204 BZ02 A, H, L
280 284 BZ02 A, H, L
400 404 BZ02 A, H, L
560 564 BZ02 A, H, L
1000 105 BZ12 A, H, L
B-SERIES – LOW PROFILE
Capacitance Rated Voltage DC at 25°C
mF Code 3.6V 4.5V 5.5V 9.0V 12.0V 15.0V
Case Lead Case Lead Case Lead Case Lead Case Lead Case Lead
Size Styles Size Styles Size Styles Size Styles Size Styles Size Styles
6.8 682 BZ05 C, N, S
15 153 BZ09 N, S BZ05 C, N, S BZ01 A, H, S
22 223 BZ05 N, S BZ01 A, H, S
30 303 BZ01 C, S
33 333 BZ01 C, S BZ05 S
47 473 BZ15 N, S
50 503 BZ01 C, S
60 603 BZ01 A, H, S
100 104 BZ11 C, S
110 | www.avx.com
TLN PulseCapTM Series
Tantalum Solid Electrolytic Chip Capacitors
TLN
Type
6
Case Size
228
Capacitance Code
pF code: 1st two digits
represent significant figures,
3rd digit represents multiplier
M
Tolerance
M = ±20%
006
Rated DC Voltage
004 = 4Vdc
006 = 6.3Vdc
010 = 10Vdc
HOW TO ORDER
R
Packaging
R = Standard
0055
ESR in mΩ
• Large case size for maximum capacitance
• 3x reflow 260°C compatible
• Low profile solution
• Consumer applications
(e.g. PCMCIA/USB wireless express cards etc.)
• CV range: 1000-3300μF / 4-10V
• 2 case sizes available
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/tlnpulse.pdf
LEAD-FREE COMPATIBLE
COMPONENT
Capacitance Voltage Rating DC (VR) to 85°C
μF Code 4V (G) 6.3V (J) 10V (A)
1000 108 4(100)*/6(55)
1500 158 4(100) 6(55)
2200 228 6(55)
3300 338 6(55)
Available Codes (ESR ratings in mOhms in brackets)
Engineering samples - please contact manufacturer
*Codes under development – subject to change
Note: Voltage ratings are minimum values. AVX reserves the right to supply
higher ratings in the same case size, to the same reliability standards.
www.avx.com | 111
Sub pF Varistor
AVX Multilayer Ceramic Transient Voltage Suppressors
ESD Protection for any Circuit Sensitive to Capacitance
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/aguard-sub.pdf
GENERAL DESCRIPTION
AVX offers ultra-low capacitance ESD protection in the Sub 1pF
range for use in circuits that are sensitive to capacitance. The Sub
pF Varistor (SPV) is available in 0.8pF and 0.4pF capacitance val-
ues in a compact 0402 low profile package. SPV devices provide
excellent response time to ESD strikes to protect sensitive circuits
from over voltage conditions.
The development of new information processing technologies call
for ever increasing digital system speeds. Higher speeds necessi-
tate the use of ultra-low capacitance values in order to minimize
signal distortion.
HOW TO ORDER
VC H4 AG 10 0R8 M A T W A
Varistor Chip Size Varistor Series Working Capacitance Tolerance N/A Termination Reel Reel
Chip Thin 0402 AntennaGuard Voltage 0R8 = 0.8pF M = ±20% T = Ni/Sn Alloy Size Quantity
10 = 10V 0R4 = 0.47pF W = 7" A = 10k
15 = 15V
FEATURES
• High Reliability
• Capacitance <1pF
• Bi-Directional protection
• Fastest response time to ESD strikes
• Multi-strike capability
• Low insertion loss
• Low profile 0402 case size
APPLICATIONS
• Antennas
• Optics
• HDMI
• RF circuits
• FlexRay
• Portable devices
• Analog sensors
• Any circuit sensitive to capacitance
ANTENNAGUARD CATALOG PART NUMBERS/ELECTRICAL VALUES
AVX Part Number VW (DC) VBILCap Cap Tolerance 3db Freq (MHz) Case Size
VCH4AG100R8MA ≤10 125 <10 nA 0.8 ±20% 5800 LP 0402
VCH4AG150R8MA ≤15 125 <10 nA 0.96 pF Max Max 5800 LP 0402
VCH4AG150R4MA ≤15 135 <100 nA 0.47 pF Max ±20% 6700 LP 0402
VW(DC) DC Working Voltage (V)
VBTypical Breakdown Voltage (V @ 1mADC)
ILTypical leakage current at the working voltage
Cap Typical capacitance (pF) @ frequency specified and 0.5VRMS
Freq Frequency at which capacitance is measured (M = 1MHz)
TransFeed, Feedthrough Filter
AVX Multilayer Ceramic Transient Voltage Suppressors
TVS Protection and EMI Attenuation in a Single Chip
AVX has combined the best electrical characteristics of its TransGuard®
Transient Voltage Suppressors (TVS) and its Feedthru Capacitors into a sin-
gle chip for state-of-the-art overvoltage circuit protection and EMI reduc-
tion over a broad range of frequencies. This unique combination of multi-
layer ceramic construction in a feedthru configuration gives the circuit
designer a single 0805 chip that responds to transient events faster than
any TVS device on the market today, and provides significant EMI attenu-
ation when in the off-state.
The reduction in parallel inductance, typical of the feedthru chip construc-
tion when compared to the construction of standard TVS or ceramic
capacitor chips, gives the TransFeed product two very important electrical
advantages: (1) faster “turn-on” time. Calculated response times of <200
pSec are not unusual with this device, and measured response times range
from 200 – 250 pSec; (2) the second electrical advantage of lower parallel
inductance, coupled with optimal series inductance, is the enhanced atten-
uation characteristics of the TransFeed product. Typical applications
include filtering/protection on Microcontroller I/O Lines, Interface I/O Lines,
Power Line Conditioning and Power Regulation.
Y
Capaci tance
Tolerance
Y = +100/-50%
2
DC Resistance
1 = 0.150 Ohms
2 = 0.200 Ohms
3 = 0.250 Ohms
E
Feedthru
Current
D = 500 mA
E = 750 mA
F = 1.0 Amp
D
Packaging
Code
Pcs./Reel
D = 1,000
R = 4,000
T = 10,000
V
Varistor
2
Chip
Size
2 = 0805
3 = 0612
F
Feedthru
Capacitor
1
No. of
Elements
05
Voltage
05 = 5.6VDC
09 = 9.0VDC
14 = 14.0VDC
18 = 18.0VDC
A
Energy
Rating
X = 0.05J
A = 0.1J
C = 0.3J
150
Varistor
Clamping
Voltage
150 = 18V
200 = 22V
300 = 32V
400 = 42V
500 = 50V
P
Termination
Finish
P = Ni/Sn Alloy
(Plated)
M = Ni/Sn Pb
(Plated)
HOW TO ORDER
Schematic Diagram Electrical Model
IN OUT
IN LSLS
RVCRP
RON
LP
OUT
TRANSFEED ELECTRICAL SPECIFICATIONS
AVX Working Working Breakdown Clamping Maximum Transient Peak Typical DC Maximum
Part Number Voltage Voltage Voltage Voltage Leakage Energy Current Cap Resistance Feedthru
(DC) (AC) Current Rating Rating Current
V2F105A150Y2E _ _ 5.6 4.0 8.5±20% 18 35 0.10 30 800 0.200 0.75
V2F105C150Y1F _ _ 5.6 4.0 8.5±20% 18 35 0.30 120 2500 0.150 1.00
V2F109A200Y2E _ _ 9.0 6.4 12.7±15% 22 25 0.10 30 575 0.200 0.75
V2F109C200Y1F _ _ 9.0 6.4 12.7±15% 22 25 0.30 120 1800 0.150 1.00
V2F114A300Y2E _ _ 14.0 10.0 18.5±12% 32 15 0.10 30 300 0.200 0.75
V2F114C300Y1F _ _ 14.0 10.0 18.5±12% 32 15 0.30 120 900 0.150 1.00
V2F118A400Y2E _ _ 18.0 13.0 25.5±10% 42 10 0.10 30 200 0.200 0.75
V2F118C400Y1F _ _ 18.0 13.0 25.5±10% 42 10 0.30 120 500 0.150 1.00
V2F118X500Y3D _ _ 18.0 13.0 25.5±10% 50 10 0.05 20 75 0.250 0.50
Termination Finish Code
Packaging Code
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/tfeed.pdf
112 | www.avx.com
TransFeed Array Filter
AVX Multilayer Ceramic Transient Voltage Suppressors
TVS Protection and EMI Attenuation in a Single Chip
AVX has combined the best electrical characteristics of its TransGuard®
Transient Voltage Suppressors (TVS) and its Feedthru Capacitors into a sin-
gle chip for state-of-the-art overvoltage circuit protection and EMI reduc-
tion over a broad range of frequencies. This unique combination of multi-
layer ceramic construction in a feedthru configuration gives the circuit
designer a single 0805 chip that responds to transient events faster than
any TVS device on the market today, and provides significant EMI attenu-
ation when in the off-state.
The reduction in parallel inductance, typical of the feedthru chip construc-
tion when compared to the construction of standard TVS or ceramic
capacitor chips, gives the TransFeed product two very important electrical
advantages: (1) faster “turn-on” time. Calculated response times of <200
pSec are not unusual with this device, and measured response times range
from 200 – 250 pSec; (2) the second electrical advantage of lower parallel
inductance, coupled with optimal series inductance, is the enhanced atten-
uation characteristics of the TransFeed product. Typical applications
include filtering/protection on Microcontroller I/O Lines, Interface I/O Lines,
Power Line Conditioning and Power Regulation.
Y
Capaci tance
Tolerance
Y = +100/-50%
3
DC Resistance
3 = 0.250 Ohms
G
Feedthru
Current
G = 200 mA
D
Packaging
Code
Pcs./Reel
D = 1,000
R = 4,000
T = 10,000
V
Array
3
Chip
Size
2 = 0805
3 = 0612
F
Feedthru
Capacitor
4
No. of
Elements
18
Voltage
18 = 18.0VDC
X
Energy
Rating
X = 0.05J
A = 0.1J
500
Varistor
Clamping
Voltage
400 = 42V
500 = 50V
P
Termination
Finish
P = Ni/Sn Alloy
(Plated)
M = Ni/Sn Pb
(Plated)
HOW TO ORDER
Schematic Diagram Electrical Model
IN OUT
IN LSLS
RVCRP
RON
LP
OUT
AVX Working Working Breakdown Clamping Maximum Transient Peak Typical DC Maximum
Part Number Voltage Voltage Voltage Voltage Leakage Energy Current Cap Resistance Feedthru
(DC) (AC) Current Rating Rating Current
V3F418A400Y3G _ _ 18.0 13.0 25.5±10% 42 10 0.10 20 150 0.200 0.30
V3F418X500Y3G _ _ 18.0 13.0 25.5±10% 50 10 0.05 15 65 0.250 0.20
Termination Finish Code
Packaging Code
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/tfeed.pdf
www.avx.com | 113
114 | www.avx.com
Surface Mount Devices
Important: For part number identification only, not for construction of part numbers.
The information below only defines the numerical value of part number digits, and cannot be used to construct a desired set of electrical limits. Please refer
to the TransGuard® part number data for the correct electrical ratings.
PART NUMBER IDENTIFICATION
ELECTRICAL CHARACTERISTICS RANGE
TransGuard®
Transient Voltage Suppressors
V
Product
Designator
V = Varistor
C
Case
Style
C = Chip
05
Working
Voltage
03 = 3.3 VDC
05 = 5.6 VDC
09 = 9.0 VDC
12 = 12.0 VDC
14 = 14.0 VDC
18 = 18.0 VDC
26 = 26.0 VDC
30 = 30.0 VDC
48 = 48.0 VDC
60 = 60.0 VDC
D
Energy
150
Clamping*
Voltage
100 = 12V
150 = 18V
200 = 22V
250 = 27V
300 = 32V
390 = 42V
400 = 42V
500 = 50V
560 = 60V
580 = 60V
620 = 67V
650 = 67V
101 = 100V
121 = 120V
M
Termination
Finish
M = Ni/Sn Pb
(Plated)
A = 0.1J
B = 0.2J
C = 0.3J
D = 0.4J
E = 0.5J
F = 0.7J
G = 0.9J
H = 1.2J
J = 1.5J
K = 0.6J
L = 0.8J
M = 1.0J
N = 1.1J
P = 3.0J
Q = 1.3J
R = 1.7J
S = 1.9-2.0J
T = 0.01J
U = 4.0-5.0J
V = 0.02J
W = 6.0J
X = 0.05J
Y = 12.0J
Z = 25.0J
Size Length Width
0402 1.00±0.10mm 0.5±0.10mm
(0.040"±0.004") (0.020"±0.004")
0603 1.60±0.15mm 0.8±0.15mm
(0.063"±0.006") (0.032"±0.006")
0805 2.01±0.2mm 1.25±0.2mm
(0.079"±0.008") (0.049"±0.008")
1206 3.20±0.2mm 1.60±0.2mm
(0.126"±0.008") (0.063"±0.008")
1210 3.20±0.2mm 2.49±0.2mm
(0.126"±0.008") (0.098"±0.008")
Style “D” “R” “T” “W”
VC0402 N/A N/A N/A 10,000
VC0603 1,000 4,000 10,000 N/A
VC0805 1,000 4,000 10,000 N/A
VC1206 1,000 4,000 10,000 N/A
VC1210 1,000 2,000 10,000 N/A
Marking
All standard surface mount TransGuard®chips will not be marked.
TransGuard®acts as an EMI filter in the “off state” and a transient voltage
suppressor in the “on state”. They are bidirectional and therefore act as
back to back zener diodes, but offer other advantages, for example, fast
turn-on time (sub 1ns) and repetitive strike capability. Package options
include EIA case sizes 0402, 0603, 0805, 1206, 1210, 1812 and 2220, as
well as axial leaded configuration.
Working Breakdown Clamping Test Maximum Transient Peak Typical
Range Voltage Voltage Voltage Current Leakage Energy Current Cap
(DC) For VCCurrent Rating Rating
Lowest Value 3.3 5.0±20% 12 1 100 0.05 20 65
Highest Value 65 82.0±10% 135 10 10 4.80 800 5000
DESC drawing Series AA55562
* Please check the AVX website for actual clamping to working voltage available on these devices.
1206
Case Size Designator
R
Packaging (Pcs/Reel)
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/tguard.pdf
www.avx.com | 115
MultiGuard TVS Array
AVX Multilayer Ceramic Transient Voltage Suppression
Arrays – ESD Protection for CMOS and Bi Polar Systems
ELECTRICAL CHARACTERISTICS PER ELEMENT
Termination Finish Code
Packaging Code
MG042S05X150 _ _ 5.6 4.0 8.5±20% 18 1 35 0.05 15 300
MG042L14V400 _ _ 14.0 10.0 18.5±12% 32 1 15 0.02 15 45
MG042L18V500 _ _ 18.0 14.0 N/A 50 1 10 0.02 15 40
AVX’s Transient Voltage Suppression (TVS) Arrays address six trends in today’s electronic circuits: (1) mandato-
ry ESD protection, (2) mandatory EMI control, (3) signal integrity improvement, (4) PCB downsizing, (5) reduced
component placement costs, and (6) protection from induced slow speed transient voltages and currents.
AVX’s MultiGuard products offer numerous advantages, which include a faster turn-on-time (<1nS), repetitive
strike capability, and space savings. In some cases, MultiGuard consumes less than 75% of the PCB real
estate required for the equivalent number of discrete chips. This size advantage, coupled with the savings
associated with placing only one chip, makes MultiGuard the TVS component of choice for ESD protection
of I/O lines in portable equipment and programming ports in cellular phones. Other applications include dif-
ferential data line protection, ASIC protection and LCD driver protection for portable computing devices.
Where multiple lines require the ESD protection, the 4-element 0612 or 0508 chip is an ideal solution. While
the 2-element 0405 MultiGuard is the smallest TVS array, the 4-element 0508 MultiGuard is the smallest 4-
element TVS device available in the market today.
Available with standard working voltage of 5.6V up to 18V with low capacitance in the 3 case sizes, AVX
MultiGuard arrays offer a very broad range of integrated TVS solutions to the design community.
AVX Working Working Breakdown Clamping Test Maximum Transient Peak Typical
Part Number Voltage Voltage Voltage Voltage Current Leakage Energy Current Cap
(DC) (AC) For VCCurrent Rating Rating
2 Element
0405 Chip
MG052S05A150 _ _ 5.6 4.0 8.5±20% 18 1 35 0.10 30 825
MG052S09A200 _ _ 9.0 6.4 12.7±15% 22 1 25 0.10 30 550
MG052S14A300 _ _ 14.0 10.0 19.5±12% 32 1 15 0.10 30 425
MG052S18A400 _ _ 18.0 14.0 25.5±10% 42 1 10 0.10 30 225
MG052L18X500 _ _ ≤18.0 ≤14.0 N/A 50 1 10 0.10 20 50
2 Element
0508 Chip
MG054S05X150 _ _ 5.6 4.0 8.5±20% 18 1 35 0.05 15 400
MG054S09X200 _ _ 9.0 6.4 12.7±15% 22 1 25 0.05 15 300
MG054S14X300 _ _ 14.0 10.0 19.5±12% 32 1 15 0.05 15 150
MG054S18X400 _ _ 18.0 14.0 25.5±10% 42 1 10 0.05 15 120
MG054L18V500 _ _ ≤18.0 ≤14.0 N/A 50 1 10 0.02 15 50
4 Element
0508 Chip
MG064S05A150 _ _ 5.6 4.0 8.5±20% 18 1 35 0.10 30 825
MG064S09A200 _ _ 9.0 6.4 12.7±15% 22 1 25 0.10 30 550
MG064S14A300 _ _ 14.0 10.0 19.5±12% 32 1 15 0.10 30 425
MG064S18A400 _ _ 18.0 14.0 25.5±10% 42 1 10 0.05 15 120
MG064L18X500 _ _ ≤18.0 ≤14.0 N/A 50 1 10 0.10 20 75
4 Element
0612 Chip
VCClamping Voltage (V @ IVC )
IVC Test Current for VC (A, 8x20μS)
ILMaximum Leakage Current at the Working Voltage (μA)
ETTransient Energy Rating (J, 10x1000μS)
IPPeak Current Rating (A, 8x20μS)
Cap Typical Capacitance (pF) @ 1MHz and 0.5 VRMS
VW(DC) DC Working Voltage (V)
VW(AC) AC Working Voltage (V)
VBTypical Breakdown Voltage
(V @ 1mADC )
VB Tol VB Tolerance is ± from Typical Value
P
Termination
Finish
P = Ni/Sn Alloy
(Plated)
M = Ni/Sn Pb (Plated)
MG
MultiGuard
04
Case
Size
04 = 0405
05 = 0508
06 = 0612
2
Configuration
2 = 2 Elements
4 = 4 Elements
L
Style
S = Standard
Construction
L = Low
Capacitance
14
Working
Voltage
05 = 5.6VDC
09 = 9.0VDC
14 = 14.0VDC
18 = 18.0VDC
A
Energy
Rating
A = 0.10 Joules
V = 0.02 Joules
X = 0.05 Joules
300
Clamping
Voltage
150 = 18V
200 = 22V
300 = 32V
400 = 42V
500 = 50V
T
Packaging
(PCS/REEL)
D = 1,000
R = 4,000
T = 10,000
HOW TO ORDER
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/tguard.pdf
116 | www.avx.com
NB12, Surface Mount Thermistors
NC 12 – NC 20
Chip thermistors are a high quality and low cost device especially
developed for surface mounting applications. They are widely used
for temperature compensation but can also achieve temperature
control of printed circuits. Its silver - palladium - platinum metallization
provides a high degree of resistance to dewetting of the terminations
during soldering (typically 260°C / 30 s).
HOW TO ORDER
NC 20
Type
K 0
Material Code
K
0103
Resistance
10,000 Ω
M
Tolerance
M (±20%)
J (±5%)
K (±10%)
BA
Suffix: Packaging
– –: Bulk
BA: Plastic tape
(180mm diam. reel)
BE: Plastic tape (1/2 reel)
BC: Plastic tape
(330mm diam. reel)
BB: Cardboard tape
(180mm diam. reel)
BF: Cardboard tape (1/2 reel)
BD: Cardboard tape
(330mm diam. reel)
NC 12
IEC SIZE : 0805
Types Rn at 25°C Material B (K) at 25°C
(Ω) Code (B/B )(%/°C)
NC 12 KC 0 180 18 KC 3470 ± 5% – 3.9
NC 12 KC 0 101 100
NC 12 MC 0 121 120 MC 3910 ± 3% – 4.4
NC 12 MC 0 332 3,300
NC 12 J 0 0332 3,300 J 3480 ± 3% – 3.9
NC 12 J 0 0562 5,600
NC 12 K 0 0682 6,800 K 3630 ± 3% – 4.0
NC 12 K 0 0123 12,000
NC 12 L 0 0153 15,000 L 3790 ± 3% – 4.2
NC 12 L 0 0183 18,000
NC 12 M 0 0223 22,000 M 3950 ± 3% – 4.4
NC 12 M 0 0393 39,000
NC 12 N 0 0473 47,000 N 4080 ± 3% – 4.6
NC 12 N 0 0563 56,000
NC 12 L 2 0683 68,000 L2 3805 ± 3% – 4.1
NC 12 N 0 0823 82,000 N 4080 ± 3% – 4.6
NC 12 P 0 0104 100,000 P 4220 ± 3% – 4.7
NC 12 P 0 0184 180,000
NC 12 Q 0 0224 220,000 Q 4300 ± 3% -4.7
NC 20
IEC SIZE : 1206
Types Rn at 25°C Material B (K) at 25°C
(Ω) Code (B/B )(%/°C)
NC 20 KC 0 100 10 KC 3470 ± 5% – 3.9
NC 20 KC 0 101 100
NC 20 MC 0 121 120 MC 3910 ± 3% – 4.4
NC 20 MC 0 152 1,500
NC 20 I 0 0182 1,800 I 3250 ± 5% – 3.7
NC 20 I 0 0332 3,300
NC 20 J 0 0392 3,900 J 3480 ± 3% – 3.9
NC 20 J 0 0682 6,800
NC 20 K 0 0822 8,200 K 3630 ± 3% – 4.0
NC 20 K 0 0153 15,000
NC 20 L 0 0183 18,000 L 3790 ± 3% – 4.2
NC 20 L 0 0223 22,000
NC 20 M 0 0273 27,000 M 3950 ± 3% – 4.4
NC 20 M 0 0473 47,000
NC 20 N 0 0563 56,000 N 4080 ± 3% – 4.6
NC 20 N 0 0104 100,000
NC 20 P 0 0124 120,000 P 4220 ± 3% – 4.7
NC 20 P 0 0224 220,000
NC 20 Q 0 0274 270,000 Q 4300 ± 3% – 4.7
NC 20 Q 0 0474 470,000
NC 20 R 0 0564 560,000 R 4400 ± 3% – 4.8
NC 20 R 0 0105 1,000,000
(1) ± 5%
(2) ± 3%
(1) ± 5%
(2) ± 3%
TABLE OF VALUES (Min/Max)
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/nb12-20.pdf
www.avx.com | 117
F
Product
Fuse
1206
Size
See table for
standard sizes
A
Fuse Version
A=Accu-Guard®
B=Accu-Guard® II
C=Accu-Guar II
0603
D=Accu-Guar II
0612
E=Accu-Guard® II
0402, 0603
0R20
Rated Current
Current expressed in
Amps. Letter R
denotes decimal
point. e.g.
0.20A=0R20
1.75A=1R75
F
Fuse Speed
F=Fast
W
Termination
S=Nickel/Lead-
Free Solder
=coated
(Sn 100)
W=Nickel/solder
=coated
(Sn 63, Pb 37)
TR
Packaging
TR=Tape and reel
HOW TO ORDER
Surface Mount Fuse
Accu-Guard®II is a version of Accu-Guard®fuses for a wider
range of current and voltage ratings. Con struct ed on alumina
substrates, Accu-Guard®II fuses display superior electrical,
mechanical and en vi ron men tal properties.Accu-Guard®II dimen-
sions are standard 0402, 0603, 0805, 1206 and 0612 chip sizes.
Current Resistance Voltage Drop Fusing Current Pre-Arc Rated
Type Part Number Rating 10% x I rated, 25°C @1 x I rated, 25°C (within 5 sec), 25°C I
2
t @ 50A Voltage
A Ω (max.) mV (max.) A A
2
-sec V
F0402E0R25FSTR 0.25 0.650 220 0.625 0.00005* 32
F0402E0R50FSTR 0.50 0.250 180 1.25 0.0003 32
F0402E0R75FSTR 0.75 0.200 180 1.875 0.003 32
F0402E F0402E1R00FSTR 1.00 0.130 160 2.50 0.008 32
F0402E1R50FSTR 1.50 0.060 140 3.75 0.03 32
F0402E2R00FSTR 2.00 0.040 120 5.00 0.06 32
F0603E0R25FSTR 0.25 0.650 220 0.625 0.00005* 32
F0603E0R37FSTR 0.375 0.450 220 0.940 0.0001 32
F0603E0R50FSTR 0.50 0.250 180 1.25 0.0003 32
F0603E0R75FSTR 0.75 0.200 180 1.875 0.003 32
F0603E1R00FSTR 1.00 0.130 160 2.50 0.008 32
F0603E F0603E1R25FSTR 1.25 0.090 140 3.125 0.01 32
F0603E1R50FSTR 1.50 0.060 140 3.75 0.03 32
F0603E1R75FSTR 1.75 0.050 120 4.375 0.04 32
F0603E2R00FSTR 2.00 0.040 120 5.00 0.06 32
F0603E2R50FSTR 2.50 0.035 100 6.25 0.12 32
F0603E3R00FSTR 3.00 0.030 100 7.50 0.25 32
F0603C0R25FWTR 0.25 0.800 280 0.50 0.00003* 32
F0603C0R37FWTR 0.375 0.500 280 0.75 0.0001 32
F0603C0R50FWTR 0.50 0.320 280 1.00 0.0002 32
F0603C0R75FWTR 0.75 0.300 280 1.50 0.0015 32
F0603C F0603C1R00FWTR 1.00 0.200 240 2.00 0.004 32
F0603C1R25FWTR 1.25 0.170 240 2.50 0.007 32
F0603C1R50FWTR 1.50 0.110 240 3.00 0.012 32
F0603C1R75FWTR 1.75 0.090 240 3.50 0.02 24
F0603C2R00FWTR 2.00 0.075 240 4.00 0.03 24
F0603C2R50FWTR 2.50 0.055 200 5.00 0.05 16
F0603C3R00FWTR 3.00 0.045 200 6.00 0.1 16
F0805B0R25FWTR 0.25 0.750 280 0.50 0.00003* 63
F0805B0R50FWTR 0.50 0.350 280 1.00 0.0002 63
F0805B0R75FWTR 0.75 0.270 280 1.50 0.001 63
F0805B F0805B1R00FWTR 1.00 0.220 280 2.00 0.003 63
F0805B1R25FWTR 1.25 0.170 280 2.50 0.007 63
F0805B1R50FWTR 1.50 0.120 240 3.00 0.010 63
F0805B2R00FWTR 2.00 0.080 220 4.00 0.030 63
F0805B2R50FWTR 2.50 0.060 220 5.00 0.050 63
F0805B3R00FWTR 3.00 0.050 220 6.00 0.10 63
F1206B0R25FWTR 0.25 0.750 280 0.50 0.00003 63
F1206B0R50FWTR 0.50 0.350 280 1.00 0.0002 63
F1206B F1206B1R00FWTR 1.00 0.180 240 2.00 0.003 63
F1206B1R50FWTR 1.50 0.120 240 3.00 0.010 63
F1206B2R00FWTR 2.00 0.080 220 4.00 0.030 63
F1206B3R00FWTR 3.00 0.050 220 6.00 0.10 63
F0612D F0612D4R00FWTR 4.00 0.040 260 10 0.10 32
F0612D5R00FWTR 5.00 0.025 200 12.5 0.25 32
*Current is limited to less than 50A at 32V due to internal fuse resistance.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/fuses.pdf
118 | www.avx.com
Military Product Line
CERAMIC CAPACITORS_______________
Surface Mount Multilayer Ceramic
Capacitors
MIL PRF 123* DSCC 03028(0603)*
MIL PRF 55681 (CDR) DSCC 05001 (0805)*
DSCC 03029 (0402)* DSCC 05006(0805)*
DSCC 05002 (0603)* ESCC 3009
DSCC 05007 (1206)* CECC 32101
AEC Q200 (Automotive) Medical Grade
Professional Series (APS)
LD Series (Tin/Lead Termination)
Switch Mode Power Supply
Capacitors (SMPS)
DSCC 87106/88011
MIL PRF 49470 (M and T Levels)
CECC 30601
CECC 30701
TurboCapTM
Leaded Multilayer Ceramic Capacitors
MIL PRF 20 ESCC 3001
MIL C 11015 CECC 30601
MIL PRF 123 CECC 30701
MIL PRF 39014
High Voltage
DSCC 87046 DSCC 87114
DSCC 87043 DSCC 87047
DSCC 87040 DSCC 87076
DSCC 87077 DSCC 89044
DSCC 87070 DSCC 87081
AEC Q200* MIL 49467 (Compliant)
Leaded Capacitor Arrays (SIP)
DSCC 87112 DSCC 87120
DSCC 87116 DSCC 87122
DSCC 87119 DSCC 88019
DSCC 89086
Glass Capacitor
MIL PRF 23269
MIL C 11272
TANTALUM CAPACITORS_____________
Surface Mount Tantalum Capacitors
MIL PRF 55365 (CWR)
MIL PRF 55365 (T Level - Space)
SRC 9000 (NASA)*
ESCC 3012
CECC 30801
DSCC 07016 (Low ESR)*
DSCC 95158*
DSCC 04053 (Fused)*
DSCC 09009 (Module)*
COTS-Plus Tin/Lead Termination
Medical Grade
HRC 5000
Leaded Tantalum Capacitors
CECC 30201
Dipped Radial
Niobium Oxide / OxiCap®
COTS-Plus
Wet Tantalum
DSCC 93026*
RF CAPACITORS_____________________
Surface Mount Multilayer Ceramic
Capacitors
MIL PRF 55681 (CDR11-14)
DSCC 06019*
DSCC 06022*
CIRCUIT PROTECTION________________
MLV Transient Voltage Suppressors
DSCC AA555682
*New Addition
www.avx.com | 119
Military Product Line
LOW INDUCTANCE/SIGNAL INTEGRITY_
Low Inductance Capacitor Array
MIL C 123 Compliant
LD Series (Tin/Lead)
EMI Filters
MIL PRF 28861 MIL PRF 15733
NASA SSQ 21215-21218 Medical Grade
CONNECTORS_____________________
MIL C 55074 Hermaphrocom Style
M55032 Din
Rack and Panel
ESTABLISHED RELIABILITY PRODUCTS_
Film Capacitors
High Voltage Film
Medium Power Film
DC Filtering Caps
EMI Filters (SMD)
Feedthru Cap and Array
High Current Filters
Transfeed (Transient + Feed Thru)
Circuit Protection
Transient Protection
Thermistor
Fuse
Pulse Power
BestCap®Supercapacitor
PulseCapTM
Signal Integrity
Low Inductance Capacitors
Low Inductance Arrays
TESTING CAPABILITIES_____________
DPA
Solderability
Group A
Group B
Group C
Source Inspection
Thermal Shock
Life Test
Low Voltage Humidity
Volt Temperature Limits
Moisture Sensitivity
Temperature Cycling
X-Ray Analysis
Ultrasonic Scan
CSAM Scanning
SEM (Scanning Electron Microscope)
Terminal Strength
Matched Pairs
Failure Analysis
NAVAR Solderability
Resistance to Solder Heat
Thermal Shock
HALT Testing
Low Voltage Breakdown
ESR Testing
Pulse Testing
Barometric Testing
Salt Fog
First Article
Surge Testing
Hi Frequency Testing
Low Frequency Testing
Power Testing
Lightning Strikes (DO 160)
RF Characterization
Transient Analysis
Shake And Vibration
Weibull Testing
PMAE Test
120 | www.avx.com
TAZ Series
CWR09 - MIL-PRF-55365/4 Established Reliability, COTS-Plus & Space Level
This is the original high reliability molded tantalum chip series and the case
sizes still represent the most flexible of surface mount form factors. TAZ offers
nine case sizes, eight of which (A through H) are fully qualified to MIL-PRF-
55365/4, and also includes the original sub-miniature R case (non-QPL).
This series is fully interchangeable with CWR06 conformal types, while offering
the advantages of molded body / compliant termination construction
(ensuring no TCE mismatch with any substrate). This construction is
compatible with a wide range of SMT board assembly processes including
wave or reflow solder, conductive epoxy or compression bonding techniques.
The parts also carry full polarity and capacitance / voltage marking. The five
smaller cases are characterized by their low profile construction, with the A
case being the world’s smallest molded military tantalum chip.
All 4V to 50V ratings are qualified to MIL-PRF-55365 Weibull “B”, “C”, “D” and
“T” levels, with all surge options (“A”, “B” & “C”) available.
For Space Level applications, AVX SRC 9000 qualification is recommended
(see ratings table for part number availability).
There are four termination finishes available: solder plated, fused solder plated,
hot solder dipped and gold plated (these are “H”, “K”, “C” and “B” termination,
respectively, per MIL-PRF-55365). In addition, the molding compound has
been selected to meet the requirements of UL94V-0 (Flame Retardancy) and
outgassing requirements of NASA SP-R-0022A.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/taz.pdf
CWR09 P/N CROSS REFERENCE:
SPACE LEVEL OPTIONS TO SRC9000*:
*
Capacitance
Tolerance
M = ±20%
K = ±10%
J = ±5%
Packaging
B = Bulk
R = 7" T&R
S = 13" T&R
W = Waffle
++
Surge Test
Option
00 = None
23 = 10 Cycles, +25ºC
24 = 10 Cycles,
-55ºC & +85ºC
45 = 10 cycles,
-55ºC & +85ºC
before Weibull
TAZ
Type
H
Case
Size
C
Standard or
Low ESR
Range
C = Std ESR
L = Low ESR
#
Inspection Level
S = Std.
Conformance
L = Group A
HOW TO ORDER
COTS-PLUS & MIL QPL (CWR09):
006
Voltage
Code
004 = 4Vdc
006 = 6Vdc
010 = 10Vdc
015 = 15Vdc
020 = 20Vdc
025 = 25Vdc
035 = 35Vdc
050 = 50Vdc
686
Capacitance
Code
pF code:
1st two digits
represent
significant
figures 3rd digit
represents
multiplier
(number of zeros
to follow)
@
Reliability Grade
Weibull:
B = 0.1%/1000 hrs.
90% conf.
C = 0.01%/1000 hrs.
90% conf.
D = 0.001%/1000
hrs.
90% conf.
T = T Level
Z = Non-ER
0
Qualification
Level
0 = N/A
^
Termination Finish
H = Solder Plated
0 = Fused Solder Plated
8 = Hot Solder Dipped
9 = Gold Plated
7 = Matte Sn
(COTS-Plus only)
M = MIL (JAN)
CWR09
9 = SRC9000
*
Capacitance
Tolerance
M = ±20%
K = ±10%
J = ±5%
Packaging
B = Bulk
R = 7" T&R
S = 13" T&R
W = Waffle
++
Surge Test
Option
00 = 10 Cycles,
-55ºC & +85ºC
45 = 10 cycles,
-55ºC & +85ºC
before Weibull
TAZ
Type
H
Case
Size
C
Standard or
Low ESR
Range
C = Std ESR
L = Low ESR
L
Inspection Level
L = Group A
006
Voltage
Code
004 = 4Vdc
006 = 6Vdc
010 = 10Vdc
015 = 15Vdc
020 = 20Vdc
025 = 25Vdc
035 = 35Vdc
050 = 50Vdc
686
Capacitance
Code
pF code:
1st two digits
represent
significant
figures 3rd digit
represents
multiplier
(number of zeros
to follow)
@
Reliability Grade
Weibull:
B = 0.1%/1000 hrs.
90% conf.
C = 0.01%/1000 hrs.
90% conf.
D = 0.001%/1000 hrs.
90% conf.
9
Qualification
Level
9 = SRC9000
^
Termination Finish
H = Solder Plated
0 = Fused Solder Plated
8 = Hot Solder Dipped
9 = Gold Plated
*
Capacitance
Tolerance
M = ±20%
K = ±10%
J = ±5%
Packaging
Bulk = Standard
\TR = 7" T&R
\TR13 = 13" T&R
\W = Waffle
+
Surge Test
Option
A = 10 cycles, +25°C
B = 10 cycles,
-55°C & +85°C
C = 10 cycles,
-55°C & +85°C
before Weibull
If blank,
None required
CWR09
Type
D
Voltage
Code
C = 4Vdc
D = 6Vdc
F = 10Vdc
H = 15Vdc
J = 20Vdc
K = 25Vdc
M = 35Vdc
N = 50Vdc
^
Termination
Finish
H = Solder Plated
K = Solder Fused
C = Hot Solder Dipped
B = Gold Plated
686
Capacitance
Code
pF code:
1st two digits represent
significant
figures 3rd digit represents
multiplier
(number of zeros to follow)
@
Reliability
Grade
Weibull:
B = 0.1%/1000 hrs.
90% conf.
C = 0.01%/1000 hrs.
90% conf.
D = 0.001%/1000 hrs.
90% conf.
T = T Level
A = Non-ER
*Contact factory for AVX SRC9000 Space Level SCD details.
Capacitance Rated Voltage DC (VR) at 85ºC
μF Code 4V (C) 6V (D) 10V (F) 15V (H) 20V (J) 25V (K) 35V (M) 50V (N)
0.10 104 A
0.15 154 A
0.22 224 AB
0.33 334 R R A B
0.47 474 R A B C
0.68 684 A B B C D
1.0 105 A/R B C D E
1.5 155 A B C D E F
2.2 225 A/R B C D E F
3.3 335 B C D E F G
4.7 475 B C D E F G H
6.8 685 C D E F G H
10 106 D E F G
15 156 E F G H
22 226 F G H
33 336 F G H
47 476 G H
68 686 G H
100 107 H
150 157
220 227
* Z, B Reliability Levels only available.
www.avx.com | 121
TAZ Series
CWR19 - MIL-PRF-55365/11
An extended range of capacitor ratings beyond CWR09 that is fully qualified
to MIL-PRF-55365/11, this series represents the most flexible of surface
mount form factors, offering nine case sizes (the original A through H of
CWR09) and adds the new X case size.
The molded body / compliant termination construction ensures no TCE mis-
match with any substrate. This construction is compatible with a wide range
of SMT board assembly processes including wave or reflow solder, conduc-
tive epoxy or compression bonding techniques. The parts also carry full
polarity and capacitance / voltage marking.
The four smaller cases are characterized by their low profile construction,
with the A case being the world’s smallest molded military tantalum chip.
The series is qualified to MIL-PRF-55365 Weibull “B”, “C”, “D” and “T” levels,
with all surge options (“A”, “B” & “C”) available.
For Space Level applications, AVX SRC 9000 qualification is recommended
(see ratings table for part number availability).
There are four termination finishes available: solder plated, fused solder plat-
ed, hot solder dipped and gold plated (these are “H”, “K”, “C” and “B” termi-
nation, respectively, per MIL-PRF-55365). In addition, the molding com-
pound has been selected to meet the requirements of UL94V-0 (Flame
Retardancy) and outgassing requirements of NASA SP-R-0022A.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/taz.pdf
CWR09 P/N CROSS REFERENCE:
SPACE LEVEL OPTIONS TO SRC9000*:
*
Capacitance
Tolerance
M = ±20%
K = ±10%
J = ±5%
Packaging
B = Bulk
R = 7" T&R
S = 13" T&R
W = Waffle
++
Surge Test
Option
00 = None
23 = 10 Cycles, +25ºC
24 = 10 Cycles,
-55ºC & +85ºC
45 = 10 cycles,
-55ºC & +85ºC
before Weibull
TAZ
Type
H
Case
Size
C
Standard or
Low ESR
Range
C = Std ESR
L = Low ESR
#
Inspection Level
S = Std.
Conformance
L = Group A
HOW TO ORDER
COTS-PLUS & MIL QPL (CWR19):
006
Voltage
Code
004 = 4Vdc
006 = 6Vdc
010 = 10Vdc
015 = 15Vdc
020 = 20Vdc
025 = 25Vdc
035 = 35Vdc
050 = 50Vdc
227
Capacitance
Code
pF code:
1st two digits
represent
significant
figures 3rd digit
represents
multiplier
(number of zeros
to follow)
@
Reliability Grade
Weibull:
B = 0.1%/1000 hrs.
90% conf.
C = 0.01%/1000 hrs.
90% conf.
D = 0.001%/1000
hrs.
90% conf.
T = T Level
Z = Non-ER
0
Qualification
Level
0 = N/A
^
Termination Finish
H = Solder Plated
0 = Fused Solder Plated
8 = Hot Solder Dipped
9 = Gold Plated
7 = Matte Sn
(COTS-Plus only)
M = MIL (JAN)
CWR09
9 = SRC9000
*
Capacitance
Tolerance
M = ±20%
K = ±10%
J = ±5%
Packaging
B = Bulk
R = 7" T&R
S = 13" T&R
W = Waffle
++
Surge Test
Option
00 = 10 Cycles,
-55ºC & +85ºC
45 = 10 cycles,
-55ºC & +85ºC
before Weibull
TAZ
Type
H
Case
Size
C
Standard or
Low ESR
Range
C = Std ESR
L = Low ESR
L
Inspection Level
L = Group A
006
Voltage
Code
004 = 4Vdc
006 = 6Vdc
010 = 10Vdc
015 = 15Vdc
020 = 20Vdc
025 = 25Vdc
035 = 35Vdc
050 = 50Vdc
227
Capacitance
Code
pF code:
1st two digits
represent
significant
figures 3rd digit
represents
multiplier
(number of zeros
to follow)
@
Reliability Grade
Weibull:
B = 0.1%/1000 hrs.
90% conf.
C = 0.01%/1000 hrs.
90% conf.
D = 0.001%/1000 hrs.
90% conf.
9
Qualification
Level
9 = SRC9000
^
Termination Finish
H = Solder Plated
0 = Fused Solder Plated
8 = Hot Solder Dipped
9 = Gold Plated
*
Capacitance
Tolerance
M = ±20%
K = ±10%
J = ±5%
Packaging
Bulk = Standard
\TR = 7" T&R
\TR13 = 13" T&R
\W = Waffle
+
Surge Test
Option
A = 10 cycles, +25°C
B = 10 cycles,
-55°C & +85°C
C = 10 cycles,
-55°C & +85°C
before Weibull
Z = None required
CWR19
Type
H
Case
Size
D
Voltage
Code
C = 4Vdc
D = 6Vdc
F = 10Vdc
H = 15Vdc
J = 20Vdc
K = 25Vdc
M = 35Vdc
N = 50Vdc
^
Termination
Finish
H = Solder Plated
K = Solder Fused
C = Hot Solder Dipped
B = Gold Plated
227
Capacitance
Code
pF code:
1st two digits represent
significant
figures 3rd digit represents
multiplier
(number of zeros to follow)
@
Reliability
Grade
Weibull:
B = 0.1%/1000 hrs.
90% conf.
C = 0.01%/1000 hrs.
90% conf.
D = 0.001%/1000 hrs.
90% conf.
T = T Level
A = Non-ER
*Contact factory for AVX SRC9000 Space Level SCD details.
Capacitance Rated voltage DC (VR) at 85ºC
μF Code 4V (C) 6V (D) 10V (F) 15V (H) 20V (J) 25V (K) 35V (M)
0.10 104
0.15 154
0.22 224
0.33 334 A
0.47 474 A
0.68 684 A
1.0 105 AAB
1.5 155 AB
2.2 225 A A B D
3.3 335 A A A B D E
4.7 475 A A B/C B/C/D E
6.8 685 A B B/C/D D/E E F G
10 106 B B B/C/D/E D/E E/F H
15 156 B B/D/E D/E E/F F G
22 226 B/D D/E E F G G/H
33 336 D/E E F F/G H H
47 476 E F F/G G/H H/X
68 686 E F/G G G/H
100 107 F G G/H H
150 157 G G H/X
220 227 H H H
330 337 H H
TAZ Series
CWR29 - MIL-PRF-55365/11 Established Reliability, COTS-Plus & Space Level
A low ESR version of CWR09 and CWR19 that is fully qualified to MIL-PRF-
55365/11, the CWR29 series represents the most flexible of surface mount
form factors and the optimum power handing for all filtering applications. It is
offered in nine case sizes (the original A through H of CWR09 and adding the
new X case size).
The molded body / compliant termination construction ensures no TCE mis-
match with any substrate. This construction is compatible with a wide range
of SMT board assembly processes including wave or reflow solder, conduc-
tive epoxy or compression bonding techniques. The parts also carry full
polarity and capacitance / voltage marking.
The five smaller cases are characterized by their low profile construction, with
the A case being the world’s smallest molded military tantalum chip.
The series is qualified to MIL-PRF-55365 Weibull “B”, “C”, “D” and “T” levels,
with all surge options (“A”, “B” & “C”) available.
For Space Level applications, AVX SRC 9000 qualification is recommended
(see ratings table for part number availability).
There are four termination finishes available: solder plated, fused solder plat-
ed, hot solder dipped and gold plated (these are “H”, “K”, “C” and “B” termi-
nation, respectively, per MIL-PRF-55365). In addition, the molding com-
pound has been selected to meet the requirements of UL94V-0 (Flame
Retardancy) and outgassing requirements of NASA SP-R-0022A.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/taz.pdf
CWR09 P/N CROSS REFERENCE:
SPACE LEVEL OPTIONS TO SRC9000*:
*
Capacitance
Tolerance
M = ±20%
K = ±10%
J = ±5%
Packaging
B = Bulk
R = 7" T&R
S = 13" T&R
W = Waffle
++
Surge Test
Option
00 = None
23 = 10 Cycles, +25ºC
24 = 10 Cycles,
-55ºC & +85ºC
45 = 10 cycles,
-55ºC & +85ºC
before Weibull
TAZ
Type
H
Case
Size
C
Standard or
Low ESR
Range
C = Std ESR
L = Low ESR
#
Inspection Level
S = Std.
Conformance
L = Group A
HOW TO ORDER
COTS-PLUS & MIL QPL (CWR29):
006
Voltage
Code
004 = 4Vdc
006 = 6Vdc
010 = 10Vdc
015 = 15Vdc
020 = 20Vdc
025 = 25Vdc
035 = 35Vdc
050 = 50Vdc
227
Capacitance
Code
pF code:
1st two digits
represent
significant
figures 3rd digit
represents
multiplier
(number of zeros
to follow)
@
Reliability Grade
Weibull:
B = 0.1%/1000 hrs.
90% conf.
C = 0.01%/1000 hrs.
90% conf.
D = 0.001%/1000
hrs.
90% conf.
T = T Level
Z = Non-ER
0
Qualification
Level
0 = N/A
^
Termination Finish
H = Solder Plated
0 = Fused Solder Plated
8 = Hot Solder Dipped
9 = Gold Plated
7 = Matte Sn
(COTS-Plus only)
M = MIL (JAN)
CWR09
9 = SRC9000
*
Capacitance
Tolerance
M = ±20%
K = ±10%
J = ±5%
Packaging
B = Bulk
R = 7" T&R
S = 13" T&R
W = Waffle
++
Surge Test
Option
00 = 10 Cycles,
-55ºC & +85ºC
45 = 10 cycles,
-55ºC & +85ºC
before Weibull
TAZ
Type
H
Case
Size
C
Standard or
Low ESR
Range
C = Std ESR
L = Low ESR
L
Inspection Level
L = Group A
006
Voltage
Code
004 = 4Vdc
006 = 6Vdc
010 = 10Vdc
015 = 15Vdc
020 = 20Vdc
025 = 25Vdc
035 = 35Vdc
050 = 50Vdc
227
Capacitance
Code
pF code:
1st two digits
represent
significant
figures 3rd digit
represents
multiplier
(number of zeros
to follow)
@
Reliability Grade
Weibull:
B = 0.1%/1000 hrs.
90% conf.
C = 0.01%/1000 hrs.
90% conf.
D = 0.001%/1000 hrs.
90% conf.
9
Qualification
Level
9 = SRC9000
^
Termination Finish
H = Solder Plated
0 = Fused Solder Plated
8 = Hot Solder Dipped
9 = Gold Plated
*
Capacitance
Tolerance
M = ±20%
K = ±10%
J = ±5%
CWR29
Type
D
Voltage
Code
C = 4Vdc
D = 6Vdc
F = 10Vdc
H = 15Vdc
J = 20Vdc
K = 25Vdc
M = 35Vdc
N = 50Vdc
^
Termination
Finish
H = Solder Plated
K = Solder Fused
C = Hot Solder Dipped
B = Gold Plated
227
Capacitance
Code
pF code:
1st two digits represent
significant
figures 3rd digit represents
multiplier
(number of zeros to follow)
@
Reliability
Grade
Weibull:
B = 0.1%/1000 hrs.
90% conf.
C = 0.01%/1000 hrs.
90% conf.
D = 0.001%/1000 hrs.
90% conf.
T = T Level
A = Non-ER
*Contact factory for AVX SRC9000 Space Level SCD details.
Capacitance Rated voltage DC (VR) at 85ºC
μF Code 4V (C) 6V (D) 10V (F) 15V (H) 20V (J) 25V (K) 35V (M) 50V (N)
0.10 104 A
0.15 154 A
0.22 224 AB
0.33 334 AAB
0.47 474 AABC
0.68 684 AA/B B C D
1.0 105 A A A/B B/C D E
1.5 155 A A/B B/C D E F
2.2 225 A A/B A/C B/D D/E F
3.3 335 A A/B A/C B/D D/E E F G
4.7 475 A/B A/C B/C/D B/C/D/E E F G H
6.8 685 A/C B/D B/C/D/E D/E E/F F/G G/H
10 106 B/D B/E B/C/D/E D/E/F E/F G H
15 156 B/E B/D/E D/E/F E/F F/G G/H
22 226 B/D D/E/F E F/G G/H G/H
33 336 D/E/F E F/G F/G/H H H
47 476 E F/G F/G/H G/H H/X
68 686 E/G F/G/H G G/H
100 107 F/H G G/H H
150 157 G G H/X
220 227 H H H
330 337 H H
Packaging
Bulk = Standard
\TR = 7" T&R
\TR13 = 13" T&R
\W = Waffle
+
Surge Test
Option
A = 10 cycles, +25°C
B = 10 cycles,
-55°C & +85°C
C = 10 cycles,
-55°C & +85°C
before Weibull
Z = None required
H
Case
Size
122 | www.avx.com
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/taz.pdf
TAZ Series
Extended Range – 63V COTS-Plus
The TAZ part has fully molded, compliant
leadframe construction designed for use in
applications utilizing solder (Reflow, Wave or
Vapor Phase), conductive adhesive or thermal
compression bonding techniques. Each chip is
marked with polarity, capacitance code and rated
voltage. The 63 volt rated parts are ideal for
avionic output power supply filtering. Many
systems utilize a 28 volt bus and this new rating
surpasses the recommended
50% derating for optimized reliability in these
applications. The series has Weibull “B” level
and all surge options (“A”, “B” & “C) available.
There are four termination finishes available:
solder plated, fused solder plated, hot solder
dipped and gold plated (These are “H”, “K”, “C”
and “B” termination respectively per MIL-PRF-
55365).
HOW TO ORDER
*
Capacitance
Tolerance
M = ±20%
K = ±10%
J = ±5%
Packaging
B = Bulk
R = 7" T&R
S = 13" T&R
W = Waffle
++
Surge Test
Option
00 = None
23 = 10 Cycles, +25ºC
24 = 10 Cycles,
-55ºC & +85ºC
45 = 10 cycles,
-55ºC & +85ºC
before Weibull
TAZ
Type
H
Case
Size
C
Standard or
Low ESR
Range
C = Std ESR
#
Inspection Level
L = Group A
S = Standard
Conformance
063
Voltage
Code
63 = 63Vdc
685
Capacitance
Code
pF code:
1st two digits
represent
significant
figures 3rd digit
represents
multiplier
(number of
zeros to follow)
@
Reliability Grade
Weibull:
B = 0.1%/1000 hrs.
90% conf.
Z = Non - ER
0
Qualification
Level
0 = NA
^
Termination Finish
H = Solder Plated
0 = Fused Solder
Plated
7 = Matte Sn
8 = Hot Solder
Dipped
9 = Gold Plated
*Contact factory for AVX SRC9000 Space Level SCD details.
Capacitance
Rated voltage DC (V
R
) at 85ºC
μF Code 63V
0.68 684 D
1.0 105 E
1.5 155 F
2.2 225 F
3.3 335 G
4.7 475 H
6.8 685 H
CAPACITANCE AND RATED VOLTAGE, VR(VOLTAGE CODE) RANGE (LETTER DENOTES CASE SIZE)
www.avx.com | 123
TCP Series
Low ESR Tantalum Modules
TCP Series tantalum modules represents the
highest packing density for high capacitance /
voltage available in surface mount tantalum.
These modules feature stacked assemblies of
CWR29 capacitors which provide ultra low ESR
and utilize established reliability capacitors
(Weibull Grade voltage conditioning) in accor-
dance with MIL-PRF-55365. They can also be
supplied with SRC9000 Space Level compo-
nents.
The stacked construction of fully molded capaci-
tors is compatible with a wide range of SMT board
assembly processes including wave or reflow sol-
der or conductive epoxy.
There are two termination finishes available: hot
solder dipped (“C”) and gold plated (“B”).
The molding compound has been selected to
meet the requirements of UL94V-0 and outgassing
requirements of NASA SP-R-0022A.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/tcp.pdf
K
Capacitance
Tolerance
M = ±20%
K = ±10%
J = ±5%
R
Packaging
B = Bulk
R = 7" T&R
++
Surge Test
Option
00 = None
23 = 10 Cycles, +25ºC
24 = 10 Cycles,
-55ºC & +85ºC
45 = 10 cycles,
-55ºC & +85ºC
before Weibull
TC
Type
2H
Case
Size
L
Standard or
Low ESR
Range
L = Low ESR
#
Inspection Level
S = Std.
Conformance
L = Group A
D = DSCC DWG
HOW TO ORDER
050
Voltage
Code
006 = 6Vdc
010 = 10Vdc
015 = 15Vdc
020 = 20Vdc
025 = 25Vdc
035 = 35Vdc
050 = 50Vdc
945
Capacitance
Code
pF code:
1st two digits
represent
significant
figures 3rd digit
represents
multiplier
(number of
zeros to follow)
@
Reliability Grade
Weibull:
B = 0.1%/1000 hrs.
90% conf.
C = 0.01%/1000 hrs.
90% conf.
D = 0.001%/1000 hrs.
90% conf.
Z = Non-ER
0
Qualification
Level
0 = N/A
9 = SRC9000
^
Termination Finish
8 = Hot Solder
Dipped
9 = Gold Plated
Capacitance Rated voltage DC (VR) to 85ºC
μF Code 6V 10V 15V 20V 25V 35V 50V
9.4 945 2H (200)
18.8 196 4H (100)
20 206 2H (200)
28.2 286 6H (67)
40 406 4H (100)
60 606 6H (67)
66 666 2H (85)
94 946 2H (75)
132 137 4H (43)
188 197 4H (38)
198 207 6H (28)
200 207 2H (63)
282 287 6H (25)
400 407 4H (31)
440 447 2H (50)
600 607 6H (21)
660 667 2H (50)
880 887 4H (25)
1,320 138 4H (25) 6H (17)
1,980 208 6H (17)
124 | www.avx.com
TBJ Series
CWR11 - MIL-PRF-55365/8 Established Reliability, COTS-Plus & Space Level
Fully qualified to MIL-PRF-55365/8, the CWR11 is the military version of EIA-
535BAAC, with four case sizes designed for maximum packaging
efficiency on 8mm & 12mm tape for high volume production (ensuring no
TCE mismatch with any substrate). This construction is compatible with a
wide range of SMT board assembly processes including wave or reflow sol-
der, conductive epoxy or compression bonding techniques. The part also
carries full polarity, capacitance / voltage and JAN brand marking.
The series is qualified to MIL-PRF-55365 Weibull “B”, “C”, “D” and “T” levels,
with all surge options (“A”, “B” & “C”) available.
For Space Level applications, AVX SRC9000 qualification is recommended
(see ratings table for part number availability).
There are four termination finishes available: solder plated, fused solder plat-
ed, hot solder dipped and gold plated (these are “H”, “K”, “C” and “B” termi-
nation, respectively, per MIL-PRF-55365).
The molding compound has been selected to meet the requirements of
UL94V-0 (Flame Retardancy) and outgassing requirements of NASA
SP-R-0022A.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/tbj.pdf
CWR09 P/N CROSS REFERENCE:
SPACE LEVEL OPTIONS TO SRC9000*:
*
Capacitance
Tolerance
M = ±20%
K = ±10%
J = ±5%
Packaging
B = Bulk
R = 7" T&R
S = 13" T&R
W = Waffle
++
Surge Test
Option
00 = None
23 = 10 Cycles, +25ºC
24 = 10 Cycles,
-55ºC & +85ºC
45 = 10 cycles,
-55ºC & +85ºC
before Weibull
TBJ
Type
D
Case
Size
C
Standard or
Low ESR
Range
C = Std ESR
L = Low ESR
#
Inspection Level
S = Std.
Conformance
L = Group A
HOW TO ORDER
COTS-PLUS & MIL QPL (CWR11):
006
Voltage
Code
004 = 4Vdc
006 = 6.3Vdc
010 = 10Vdc
015 = 15Vdc
020 = 20Vdc
025 = 25Vdc
035 = 35Vdc
050 = 50Vdc
686
Capacitance
Code
pF code:
1st two digits
represent
significant
figures 3rd digit
represents
multiplier
(number of zeros
to follow)
@
Reliability Grade
Weibull:
B = 0.1%/1000 hrs.
90% conf.
C = 0.01%/1000 hrs.
90% conf.
D = 0.001%/1000
hrs.
90% conf.
T = T Level
Z = Non-ER
0
Qualification
Level
0 = N/A
^
Termination Finish
H = Solder Plated
0 = Fused Solder Plated
8 = Hot Solder Dipped
9 = Gold Plated
7 = Matte Sn
(COTS-Plus only)
M = MIL (JAN)
CWR09
9 = SRC9000
*
Capacitance
Tolerance
M = ±20%
K = ±10%
J = ±5%
Packaging
B = Bulk
R = 7" T&R
S = 13" T&R
W = Waffle
++
Surge Test
Option
00 = 10 Cycles,
-55ºC & +85ºC
45 = 10 cycles,
-55ºC & +85ºC
before Weibull
TBJ
Type
D
Case
Size
C
Standard or
Low ESR
Range
C = Std ESR
L = Low ESR
L
Inspection Level
L = Group A
006
Voltage
Code
004 = 4Vdc
006 = 6Vdc
010 = 10Vdc
015 = 15Vdc
020 = 20Vdc
025 = 25Vdc
035 = 35Vdc
050 = 50Vdc
686
Capacitance
Code
pF code:
1st two digits
represent
significant
figures 3rd digit
represents
multiplier
(number of zeros
to follow)
@
Reliability Grade
Weibull:
B = 0.1%/1000 hrs.
90% conf.
C = 0.01%/1000 hrs.
90% conf.
D = 0.001%/1000 hrs.
90% conf.
9
Qualification
Level
9 = SRC9000
^
Termination Finish
H = Solder Plated
0 = Fused Solder Plated
8 = Hot Solder Dipped
9 = Gold Plated
*
Capacitance
Tolerance
M = ±20%
K = ±10%
J = ±5%
Packaging
Bulk = Standard
\TR = 7" T&R
\TR13 = 13" T&R
\W = Waffle
+
Surge Test
Option
A = 10 cycles, +25°C
B = 10 cycles,
-55°C & +85°C
C = 10 cycles,
-55°C & +85°C
before Weibull
Z = None required
CWR11
Type
D
Voltage
Code
C = 4Vdc
D = 6Vdc
F = 10Vdc
H = 15Vdc
J = 20Vdc
K = 25Vdc
M = 35Vdc
N = 50Vdc
^
Termination
Finish
H = Solder Plated
K = Solder Fused
C = Hot Solder Dipped
B = Gold Plated
686
Capacitance
Code
pF code:
1st two digits represent
significant
figures 3rd digit represents
multiplier
(number of zeros to follow)
@
Reliability
Grade
Weibull:
B = 0.1%/1000 hrs.
90% conf.
C = 0.01%/1000 hrs.
90% conf.
D = 0.001%/1000 hrs.
90% conf.
T = T Level
A = Non-ER
*Contact factory for AVX SRC9000 Space Level SCD details.
Capacitance Rated voltage DC (VR) to 85ºC
μF Code 4V (C) 6V (D) 10V (F) 15V (H) 20V (J) 25V (K) 35V (M) 50V (N)
0.10 104 AA
0.15 154 AB
0.22 224 AB
0.33 334 AAB
0.47 474 AABC
0.68 684 A A B B C
1.0 105 A A A B B C
1.5 155 A A A B B C D
2.2 225 A A A B B C C D
3.3 335 A B B B C C D
4.7 475 A B B B C C D D
6.8 685 B B B C D D
10 106 B B C D
15 156 B C C D D
22 226 C D D
33 336 C D D
47 476 D D
68 686 D D
100 107 D
150 157
220 227
330 337
www.avx.com | 125
TBJ Series
COTS-Plus – DSCC Dwgs 07016 & 95158 Weibull Grade & Space Level
TBJ COTS-Plus series, based on the CWR11 form factor, is a high reliability
series encompassing the current range of EIA Low ESR ratings.
Qualifications include DSCC 95158 and DSCC 07016, the latter having the
widest range of case sizes, capacitance / voltage ratings and also offering
Weibull Grade “B” and “C” reliability and all MIL-PRF-55365 surge test
options (“A”, “B” & “C”).
For Space Level applications, AVX SRC 9000 qualification is recommended
(see ratings table for part number availability).
There are four termination finishes available: solder plated, fused solder plat-
ed, hot solder dipped and gold plated (these correspond to “H”, “K”, “C”
and “B” termination, respectively, per MIL-PRF-55365).
The molding compound has been selected to meet the requirements of
UL94V-0 (Flame Retardancy) and outgassing requirements of NASA SP-R-
0022A.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/tbj.pdf
DSCC DWG P/N CROSS REFERENCE:
SPACE LEVEL OPTIONS TO SRC9000*:
*
Capacitance
Tolerance
M = ±20%
K = ±10%
J = ±5%
Packaging
B = Bulk
R = 7" T&R
S = 13" T&R
W = Waffle
++
Surge Test
Option
00 = None
23 = 10 Cycles, +25ºC
24 = 10 Cycles,
-55ºC & +85ºC
45 = 10 cycles,
-55ºC & +85ºC
before Weibull
TBJ
Type
D
Case
Size
C
Standard or
Low ESR
Range
C = Std ESR
L = Low ESR
#
Inspection Level
S = Std.
Conformance
L = Group A
HOW TO ORDER
COTS-PLUS & DSCC DWG (95158 & 07016):
006
Voltage
Code
004 = 4Vdc
006 = 6Vdc
010 = 10Vdc
015 = 15Vdc
020 = 20Vdc
025 = 25Vdc
035 = 35Vdc
050 = 50Vdc
686
Capacitance
Code
pF code:
1st two digits
represent
significant
figures 3rd digit
represents
multiplier
(number of zeros
to follow)
@
Reliability Grade
Weibull:
B = 0.1%/1000 hrs.
90% conf.
C = 0.01%/1000 hrs.
90% conf.
D = 0.001%/1000
hrs.
90% conf.
T = T Level
Z = Non-ER
0
Qualification
Level
0 = N/A
^
Termination Finish
H = Solder Plated
0 = Fused Solder Plated
8 = Hot Solder Dipped
9 = Gold Plated
7 = Matte Sn
(COTS-Plus only)
D = DSCC DWG
9 = SRC9000
*
Capacitance
Tolerance
M = ±20%
K = ±10%
J = ±5%
Packaging
B = Bulk
R = 7" T&R
S = 13" T&R
W = Waffle
++
Surge Test
Option
00 = 10 Cycles,
-55ºC & +85ºC
45 = 10 cycles,
-55ºC & +85ºC
before Weibull
TBJ
Type
D
Case
Size
C
Standard or
Low ESR
Range
C = Std ESR
L = Low ESR
L
Inspection Level
L = Group A
006
Voltage
Code
004 = 4Vdc
006 = 6Vdc
010 = 10Vdc
015 = 15Vdc
020 = 20Vdc
025 = 25Vdc
035 = 35Vdc
050 = 50Vdc
686
Capacitance
Code
pF code:
1st two digits
represent
significant
figures 3rd digit
represents
multiplier
(number of zeros
to follow)
@
Reliability Grade
Weibull:
B = 0.1%/1000 hrs.
90% conf.
C = 0.01%/1000 hrs.
90% conf.
D = 0.001%/1000 hrs.
90% conf.
9
Qualification
Level
9 = SRC9000
^
Termination Finish
H = Solder Plated
0 = Fused Solder Plated
8 = Hot Solder Dipped
9 = Gold Plated
*Contact factory for AVX SRC9000 Space Level SCD details.
K
Capacitance
Tolerance
K = ±10%
M = ±20%
A
Surge Test
Option
A = 10 cycles, +25°C
B = 10 cycles,
-55°C & +85°C
C = 10 cycles,
-55°C & +85°C
before Weibull
Z = None required
Per MIL-PRF-55365
07016
DSCC DWG
07016
-001
Dash
Number
B
Reliability
Grade
B = B Weibull
C = C Weibull
D = D Weibull
K
Capacitance
Tolerance
K = ±10%
M = ±20%
95158
DSCC DWG
95158
-01
Dash
Number
H
Termination Finish
B = Gold Plated (10 microinch minimum)
H = Solder Plated (100 microinch minimum)
C
Termination Finish
B = Gold Plated (10 microinch minimum)
H = Solder Plated (50 microinch minimum)
C = Hot Solder Dip (60 microinch minimum)
Capacitance Rated Voltage DC (VR) to 85ºC
μF Code 4V (G) 6V (J) 10V (A) 16V (C) 20V (D) 25V (E) 35V (V) 50V (T)
0.15 154 A(15000)
0.22 224 A(18000)
0.47 474 A(12000) A(9500)/B(9500)
0.68 684 A(10000) A(8000) A(7900)
1.0 105 A(8000) A(7500) A(6600)/B(7000)
1.5 155 A(6500) A(3000,7500) A(7500)/B(5200) C(2000)/D(1500)
2.2 225 A(5500) A(3000) A(7000)/B(2000) B(2000) D(1200)
3.3 335 A(8000) A(3500,5000) B(2000) B(1000) D(800)
4.7 475 A(6000) A(5000) A(2000) A(1800,4000) A(3100) B(1500) D(300)
B(1000) B(700,1500) C(600)/D(450) E(300)
6.8 685 A(5000) A(4000) A(1500/B(1200) B(1000) B(700,2800) C(350)/D(400) D(300,600)
C(200) E(300) E(400)
10 106 A(4000) A(1800,3000) A(3000)/B(900) B(500,1000) C(300,500) C(1600)/D(125,300) E(400)
C(700) E(250)
15 156 A(3500) A(1000,3200) B(500,800) B(500)/C(450) D(275)/E(200) C(450)/D(100,300) E(250)
B(600) D(275) E(250)
22 226 A(3000)/B(600) B(500,700) B(600)/C(175,375) B(600)/C(400) C(275,400) D(400)/D(125)
C(300) B(500) D(275) D(100,200)/E(225) E(125,300)
33 336 A(3000) B(600) A(700)/B(425,650) C(100,300) C(300) D(90,300) D(200,300)
C (500) D(250) D(100, 200) E(90,175) E(300)
47 476 C(300) C(200,350) C(110,350) D(100,200) D(175,250) E(250)/V(200)
D(200) D(80,150) E(150)
68 686 A(1500) B(500)/C(200) C(80,300) D(150) D(70,200) V(95)
D(175) D(150)/E(150) E(125,200)
100 107 A(1400) C(75,150) C(75,200) D(50,125) V(60)
B(900) D(50,100)/E(100) E(100)
150 157 D(125)/E(125) D(50,100)/E(100) D(60,150)/V(45)
220 227 D(50,125) D(50,150) V(50)
E(100) E(50,100)
330 337 E(50,150) D(50,150)
E(50,100)/V(40)
470 477 E(50,200)/V(40) E(50,200)/V(40)
1000 108 E(200)
NOTE: EIA standards for Low ESR solid tantalum capacitors allow an ESR movement of 1.25 times initial limit post mounting.
126 | www.avx.com
TBM Multianode
Tantalum Ultra Low ESR COTS-Plus Weibull Grade & Space Level
TBM COTS-Plus series uses an internal multi-anode
design to achieve ultra-low ESR which improves
performance in high ripple power applications.
TBM is available with Weibull Grade “B” reliability and all
MIL-PRF-55365 surge test options (“A”, “B” & “C”).
There are four termination finishes available: solder
plated, fused solder plated, hot solder dipped and gold
plated (these correspond to “H”, “K”, “C” and “B”
termination, respectively, per MIL-PRF-55365).
The molding compound has been selected to meet the
requirements of UL94V-0 (Flame Retardancy) and
outgassing requirements of NASA SP-R-0022A.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/tbm.pdf
SPACE LEVEL OPTIONS TO SRC9000*:
*
Capacitance
Tolerance
M = ±20%
K = ±10%
J = ±5%
Packaging
B = Bulk
R = 7" T&R
S = 13" T&R
W = Waffle
++
Surge Test
Option
00 = None
23 = 10 Cycles, +25ºC
24 = 10 Cycles,
-55ºC & +85ºC
45 = 10 cycles,
-55ºC & +85ºC
before Weibull
TBM
Type
TBM
Type
E
Case
Size
C
Standard or
Low ESR
Range
C = Std ESR
L = Low ESR
#
Inspection Level
S = Std.
Conformance
L = Group A
D = DSCC DWG
(Pending)
HOW TO ORDER
COTS-PLUS:
006
Voltage
Code
002 = 2.5Vdc
004 = 4Vdc
006 = 6.3Vdc
010 = 10Vdc
016 = 15Vdc
020 = 20Vdc
025 = 25Vdc
035 = 35Vdc
477
Capacitance
Code
pF code:
1st two digits
represent
significant
figures 3rd digit
represents
multiplier
(number of
zeros to follow)
@
Reliability Grade
Weibull:
B = 0.1%/1000 hrs.
90% conf.
C = 0.01%/1000 hrs.
90% conf.
D = 0.001%/1000 hrs.
90% conf.
T = T Level
Z = Non-ER
^
Termination Finish
H = Solder Plated
0 = Fused Solder
Plated
8 = Hot Solder
Dipped
9 = Gold Plated
7 = Matte Sn
(COTS-Plus only)
9 = SRC9000
*
Capacitance
Tolerance
M = ±20%
K = ±10%
J = ±5%
Packaging
B = Bulk
R = 7" T&R
S = 13" T&R
W = Waffle
++
Surge Test
Option
00 = 10 Cycles,
-55ºC & +85ºC
45 = 10 cycles,
-55ºC & +85ºC
before Weibull
H
Case
Size
C
Standard or
Low ESR
Range
C = Std ESR
L = Low ESR
L
Inspection Level
L = Group A
006
Voltage
Code
002 = 2.5Vdc
004 = 4Vdc
006 = 6.3Vdc
010 = 10Vdc
016 = 15Vdc
020 = 20Vdc
025 = 25Vdc
035 = 35Vdc
227
Capacitance
Code
pF code:
1st two digits
represent
significant
figures 3rd digit
represents
multiplier
(number of
zeros to follow)
@
Reliability Grade
Weibull:
B = 0.1%/1000 hrs.
90% conf.
C = 0.01%/1000 hrs.
90% conf.
D = 0.001%/1000 hrs.
90% conf.
9
Qualification
Level
9 = SRC9000
^
Termination Finish
H = Solder Plated
0 = Fused Solder
Plated
8 = Hot Solder
Dipped
9 = Gold Plated
*Qualifications Pending
Capacitance Rated Voltage DC (VR) to 85°C
μF Code 2.5V (e) 4V (G) 6V (J) 10V (A) 15V (C) 20V (D) 25V (E) 35V (V)
10 106
15 156
22 226 E(60)
33 336 E(50)
47 476 E(55)
68 686 E(45)
100 107 E(35)
150 157 E(30)
220 227 E(25)
330 337 E(23)
470 477 E(18) E(23)
680 687 E(18) E(18), V(23)
1000 108 E(18), V(18)
1500 158 E(12) E(15)
NOTE: EIA standards for Low ESR solid tantalum capacitors allow an ESR movement of 1.25 times initial limit post mounting.
0
Qualification
Level
0 = N/A
www.avx.com | 127
TBW Series
Tantalum Fused DSCC Dwg 04053 COTS-Plus Weibull Grade & Space Level
TBW Fused Tantalum Capacitors offer protection from pos-
sible damaging short circuit failure modes. This is accom-
plished with an internal fuse in series with the capacitor. See
the photograph on the right. The AVX fused tantalum offers
lower ESR limits than competitive fused tantalum capacitors,
and is available with Weibull and surge testing per MIL-PRF-
55365.
Anode, fuse and leadframe assembly
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/tbw.pdf
DSCC DWG P/N CROSS REFERENCE:
*
Capacitance
Tolerance
M = ±20%
K = ±10%
J = ±5%
Packaging
B = Bulk
R = 7" T&R
S = 13" T&R
W = Waffle
++
Surge Test
Option
00 = None
23 = 10 Cycles, +25ºC
24 = 10 Cycles,
-55ºC & +85ºC
45 = 10 cycles,
-55ºC & +85ºC
before Weibull
TBW
Type
D
Case
Size
C
Standard or
Low ESR
Range
C = Std ESR
L = Low ESR
HOW TO ORDER
COTS-PLUS & DSCC DWG (04053):
006
Voltage
Code
004 = 4Vdc
006 = 6Vdc
010 = 10Vdc
015 = 15Vdc
020 = 20Vdc
025 = 25Vdc
035 = 35Vdc
050 = 50Vdc
686
Capacitance
Code
pF code:
1st two digits
represent
significant
figures 3rd digit
represents
multiplier
(number of
zeros to follow)
@
Reliability Grade
Weibull:
B = 0.1%/1000 hrs.
90% conf.
C = 0.01%/1000 hrs.
90% conf.
Z = Non-ER
^
Termination Finish
H = Solder Plated
0 = Fused Solder
Plated
8 = Hot Solder
Dipped
9 = Gold Plated
7 = Matte Sn
(COTS-Plus only)
D = DSCC DWG 9 = SRC9000
04053
DSCC DWG
04053
-01
Dash
Number
NOTE: DSCC DWG 04053 specifies 20% capacitance tolerance and solder
plated termination options only. For 10% capacitance tolerance, solder fused
finish, Weibull grading and MIL surge options, order using AVX part number
above.
SPACE LEVEL OPTIONS TO SRC9000*:
TBW
Type
D
Case
Size
*
Capacitance
Tolerance
M = ±20%
K = ±10%
J = ±5%
Packaging
B = Bulk
R = 7" T&R
S = 13" T&R
W = Waffle
++
Surge Test
Option
00 = 10 Cycles,
-55ºC & +85ºC
45 = 10 cycles,
-55ºC & +85ºC
before Weibull
C
Standard or
Low ESR
Range
C = Std ESR
L = Low ESR
L
Inspection Level
L = Group A
006
Voltage
Code
004 = 4Vdc
006 = 6Vdc
010 = 10Vdc
015 = 15Vdc
020 = 20Vdc
025 = 25Vdc
035 = 35Vdc
050 = 50Vdc
686
Capacitance
Code
pF code:
1st two digits
represent
significant
figures 3rd digit
represents
multiplier
(number of
zeros to follow)
@
Reliability Grade
Weibull:
B = 0.1%/1000 hrs.
90% conf.
C = 0.01%/1000 hrs.
90% conf.
9
Qualification
Level
9 = SRC9000
^
Termination Finish
H = Solder Plated
0 = Fused Solder
Plated
8 = Hot Solder
Dipped
9 = Gold Plated
*Qualifications Pending
Capacitance Rated Voltage DC (VR) to 85°C
μF 4 6 10 16 20 25 35 50
0.47 C
0.68 C
1 C
1.5 C C
2.2 C C D
3.3 C C D
4.7 C C D D
6.8 C C C D
10 C C C C/D E E(20%)
15 C C C D D D/E
22 C C C/D D D/E E
33 C C/D D E
47 C/D C/D D/E E
68 C C/D D E
100 C D/E D/E
150 D D D/E
220 D D/E E
330 E E
470 E
#
Inspection Level
S = Std.
Conformance
L = Group A
0
Qualification
Level
0 = N/A
128 | www.avx.com
TBC Series
CWR15 Military Approved Microchip
AVX announces the world’s smallest military approved tantalum chip capacitors. The CWR15 offers
0603, 0805 and 1206 case sizes in capacitance voltage combinations previously only available in much
larger packages. The revolutionary AVX TACmicrochip®technology offers designers significant oppor-
tunity to downsize circuits for military and aerospace applications. The product is manufactured in the
AVX Tantalum high reliability facility in Biddeford, Maine which is also home to the CWR09, CWR11,
CWR19 and CWR29 product lines.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/tbc.pdf
CWR15 P/N CROSS REFERENCE:
SPACE LEVEL OPTIONS TO SRC9000*:
*
Capacitance
Tolerance
M = ±20%
K = ±10%
J = ±5%
Packaging
B = Bulk
R = 7" T&R
S = 13" T&R
W = Waffle
++
Surge Test
Option
00 = None
23 = 10 Cycles, +25ºC
24 = 10 Cycles,
-55ºC & +85ºC
45 = 10 cycles,
-55ºC & +85ºC
before Weibull
TBC
Type
L
Case
Size
C
Standard or
Low ESR
Range
C = Std ESR
#
Inspection Level
S = Std.
Conformance
L = Group A
HOW TO ORDER
COTS-PLUS & MIL QPL (CWR29):
004
Voltage
Code
004 = 4Vdc
006 = 6Vdc
010 = 10Vdc
020 = 20Vdc
685
Capacitance
Code
pF code:
1st two digits
represent
significant
figures 3rd digit
represents
multiplier
(number of zeros
to follow)
@
Reliability Grade
Weibull:
B = 0.1%/1000 hrs.
90% conf.
C = 0.01%/1000 hrs.
90% conf.
D = 0.001%/1000 hrs.
90% conf.
Z = Non-ER
0
Qualification
Level
0 = N/A
^
Termination Finish
H = Solder Plated
0 = Fused Solder Plated
9 = Gold Plated
7 = Matte Sn
(COTS-Plus only)
M = MIL (JAN)
CWR15
9 = SRC9000
*
Capacitance
Tolerance
M = ±20%
K = ±10%
J = ±5%
Packaging
B = Bulk
R = 7" T&R
S = 13" T&R
W = Waffle
++
Surge Test
Option
00 = 10 Cycles,
-55ºC & +85ºC
45 = 10 cycles,
-55ºC & +85ºC
before Weibull
TBC
Type
L
Case
Size
C
Standard or
Low ESR
Range
C = Std ESR
L = Low ESR
L
Inspection Level
L = Group A
004
Voltage
Code
004 = 4Vdc
006 = 6Vdc
010 = 10Vdc
020 = 20Vdc
685
Capacitance
Code
pF code:
1st two digits
represent
significant
figures 3rd digit
represents
multiplier
(number of zeros
to follow)
@
Reliability Grade
Weibull:
B = 0.1%/1000 hrs.
90% conf.
C = 0.01%/1000 hrs.
90% conf.
D = 0.001%/1000 hrs.
90% conf.
9
Qualification
Level
9 = SRC9000
^
Termination Finish
H = Solder Plated
0 = Fused Solder Plated
9 = Gold Plated
*
Capacitance
Tolerance
M = ±20%
K = ±10%
J = ±5%
+
Surge Test
Option
A = +25°C after
Weibull
B = -55°C & +85°C
after Weibull
C = -55°C & +85°C
before Weibull
L
Case Size
CWR15
Type
F
Voltage
Code
C = 4Vdc
D = 6Vdc
F = 10Vdc
C
Termination
Finish
H = Solder Plated
K = Solder Fused
B = Gold Plated
685
Capacitance
Code
pF code:
1st two digits represent
significant
figures 3rd digit represents
multiplier
(number of zeros to follow)
Product Level
Designator
Weibull:
B = 0.1
C = 0.01
D = 0.001
*Contact factory for AVX SRC9000 Space Level SCD details.
Further extensions of the CWR15 product are planned for later in 2009. A new case size will be added, and the voltage range will be
extended to 20 volts. Ratings of 100 μF at 4 volts to 10 μF at 20 volts will be included in this extension of the product line.
Capacitance Voltage Rating DC (VR) at 85°C
μF Code 4V (C) 6V (D) 10V (F) 15V (H) 20V (J)
0.33 334
0.47 474 L L
0.68 684 L
1.0 105 L
1.5 155 L
2.2 225 L
3.3 335 L R
4.7 475 L R
6.8 685 L R R
10 106 R R R
15 156 R R A
22 226 R A
33 336 R A
47 476 A
68 686 A
www.avx.com | 129
TBC Series
COTS-Plus
TBC COTS-Plus series extends the range of CWR15. TBC is available with Weibull
grade “B” reliability and all MIL-PRF-55365 surge test options (“A”, “B” & “C”).
For Space Level applications, AVX SRC9000 ratings are available as shown in the
rating table.
There are four termination finishes available: solder plated, fused solder plated, hot
solder dipped and gold plated (these correspond to “H”, “K”, “C” and “B” termina-
tion, respectively, per MIL-PRF 55365).
SPACE LEVEL OPTIONS TO SRC9000*:
*
Capacitance
Tolerance
M = ±20%
K = ±10%
J = ±5%
Packaging
B = Bulk
R = 7" T&R
S = 13" T&R
W = Waffle
++
Surge Test
Option
00 = None
23 = 10 Cycles, +25ºC
24 = 10 Cycles,
-55ºC & +85ºC
45 = 10 cycles,
-55ºC & +85ºC
before Weibull
TBC
Type
L
Case
Size
TBC
Type
L
Case
Size
C
Standard or
Low ESR
Range
C = Std ESR
#
Inspection Level
S = Std.
Conformance
L = Group A
HOW TO ORDER
COTS-PLUS:
004
Voltage
Code
004 = 4Vdc
006 = 6Vdc
010 = 10Vdc
020 = 20Vdc
685
Capacitance
Code
pF code:
1st two digits
represent
significant
figures 3rd digit
represents
multiplier
(number of
zeros to follow)
@
Reliability Grade
Weibull:
B = 0.1%/1000 hrs.
90% conf.
C = 0.01%/1000 hrs.
90% conf.
D = 0.001%/1000 hrs.
90% conf.
Z = Non-ER
None required
^
Termination Finish
H = Solder Plated
0 = Fused Solder
Plated
9 = Gold Plated
7 = Matte Sn
(COTS-Plus only)
9 = SRC9000
*
Capacitance
Tolerance
M = ±20%
K = ±10%
J = ±5%
Packaging
B = Bulk
R = 7" T&R
S = 13" T&R
W = Waffle
++
Surge Test
Option
00 = 10 Cycles,
-55ºC & +85ºC
45 = 10 cycles,
-55ºC & +85ºC
before Weibull
C
Standard or
Low ESR
Range
C = Std ESR
L = Low ESR
L
Inspection Level
L = Group A
004
Voltage
Code
004 = 4Vdc
006 = 6Vdc
010 = 10Vdc
020 = 20Vdc
685
Capacitance
Code
pF code:
1st two digits
represent
significant
figures 3rd digit
represents
multiplier
(number of
zeros to follow)
@
Reliability Grade
Weibull:
B = 0.1%/1000 hrs.
90% conf.
C = 0.01%/1000 hrs.
90% conf.
D = 0.001%/1000 hrs.
90% conf.
9
Qualification
Level
9 = SRC9000
^
Termination Finish
H = Solder Plated
0 = Fused Solder
Plated
9 = Gold Plated
*Contact factory for AVX SRC9000 Space Level SCD details.
Capacitance Voltage Rating DC (VR) at 85°C
μF Code 3V 4V 6V 10V 16V 20V 25V
0.33 334 L
0.47 474 K / L L L
0.68 684 L L
1.0 105 K L L
1.5 155 L
2.2 225 L L
3.3 335 L / R R
4.7 475 L L / R R
6.8 685 R R
10 106 R R R R
15 156 R R A
22 226 R R / A
33 336 R R A
47 476 A
68 686 A
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/tbc.pdf
0
Qualification
Level
0 = N/A
130 | www.avx.com
NBS Series
COTS-Plus
NBS, Niobium Oxide COTS-Plus Capacitors offer a non-burn solution for Military and Space
applications. Niobium Oxide COTS-Plus Capacitors may be specified with failure rate grading to
Weibull “B” or “C” and surge current tested in accordance with Mil-PRF-55365 options A or B.
*
Capacitance
Tolerance
M = ±20%
Packaging
B = Bulk
R = 7" T&R
S = 13" T&R
W = Waffle
++
Surge Test
Option
00 = None
23 = 10 Cycles, +25ºC
24 = 10 Cycles,
-55ºC & +85ºC
45 = 10 cycles,
-55ºC & +85ºC
before Weibull
NBS
Type
E
Case
Size
C
Standard or
Low ESR
Range
L = Low ESR
#
Inspection Level
S = Std.
Conformance
L = Group A
D = DSCC DWG
HOW TO ORDER
006
Voltage
Code
001 = 1.8Vdc
002 = 2.5Vdc
004 = 4Vdc
006 = 6.3Vdc
227
Capacitance
Code
pF code:
1st two digits
represent
significant
figures 3rd digit
represents
multiplier
(number of
zeros to follow)
@
Reliability Grade
Weibull:
B = 0.1%/1000 hrs.
90% conf.
C = 0.01%/1000 hrs.
90% conf.
0
Qualification
Level
0 = N/A
^
Termination Finish
H = Solder Plated
0 = Fused Solder
Plated
8 = Hot Solder
Dipped
9 = Gold Plated
7 = Matte Sn
(COTS-Plus only)
Capacitance Rated Voltage DC (VR) to 85°C / 0.66 DC to 105ºC / 0.5 DC to 125ºC
μF Code 1.8V (x) 2.5V (e) 4.0V (G) 6.3V (J)
4.7 475
6.8 685
10 106 A(1000,2000)
15 156 A(1500) B(600)
22 226 A(900) B(600) B(600)
33 336 B(600)* B(600) B(600)/C(500)
47 476 B(500) B(500)/C(300) C(300)
68 686 C(200) C(200) C(75,200)
100 107 B(350) C(150) C(70,150) C(150)/D(80,100)
150 157 C(65,150) C(90,150) D(50,70,100)
220 227 C(125) C(80,125) D(60,150) D(60,100)
E(80,100)
330 337 D(35,50,100) D(55,100)/E(100) E(80,100)
470 477 D(55,100)/E(100) D(35,40,100) V(75)
E(75,100)
680 687 E(60) V(75)
1000 108 V(50)
1500 158
*Please Contact Manufacturer
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/nbs.pdf
www.avx.com | 131
NBM Multianode
OxiCap®Ultra Low ESR Capacitor COTS-Plus Weibull Grade
NBM OxiCap®capacitors are the COTS-Plus version of the popular NOM Low ESR multianode
capacitor. Capacitors are available to Weibull failure rates B and C along with surge current testing
per Mil-PRF-55365. Niobium oxide technology offers non-burn characteristics along with excellent
reliability and reduced derating.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/nbm.pdf
*
Capacitance
Tolerance
M = ±20%
Packaging
B = Bulk
R = 7" T&R
S = 13" T&R
W = Waffle
++
Surge Test
Option
00 = None
23 = 10 Cycles, +25ºC
24 = 10 Cycles,
-55ºC & +85ºC
45 = 10 cycles,
-55ºC & +85ºC
before Weibull
NBM
Type
E
Case
Size
C
Standard or
Low ESR
Range
L = Low ESR
#
Inspection Level
S = Std.
Conformance
L = Group A
D = DSCC DWG
HOW TO ORDER
006
Voltage
Code
001 = 1.8Vdc
002 = 2.5Vdc
004 = 4Vdc
006 = 6.3Vdc
227
Capacitance
Code
pF code:
1st two digits
represent
significant
figures 3rd digit
represents
multiplier
(number of
zeros to follow)
@
Reliability Grade
Weibull:
B = 0.1%/1000 hrs.
90% conf.
C = 0.01%/1000 hrs.
90% conf.
0
Qualification
Level
0 = N/A
^
Termination Finish
H = Solder Plated
0 = Fused Solder
Plated
8 = Hot Solder
Dipped
9 = Gold Plated
7 = Matte Sn
(COTS-Plus only)
Capacitance
Rated Voltage DC (
VR
) to 85°C / 0.66 DC to 105ºC / 0.5 DC to 125ºC
μF Code 1.8V (x) 2.5V (e) 4.0V (G) 6.3V (J)
150 157
220 227 E(40)
330 337 E(35) E(23)
470 477 E(30) E(23)
680 687 E(23) E(23)
1000 108
132 | www.avx.com
TWA Series
Wet Electrolytic Tantalum Capacitor
The TWA series is an axial leaded wet electrolytic tantalum capacitor and represents a
new level of high CV (capacitance / voltage) previously unavailable in this technology.
TWA incorporates a novel, very high capacitance cathode system that allows for higher
CV designs, well beyond values specified in the Mil-PRF-39006 drawing. TWA products
are listed in DSCC 93026 Rev. P, which includes new high capacitance / voltage ratings.
This design includes a welded tantalum can and header assembly that provides a her-
metic seal to withstand the harsh shock and vibration requirements of 39006.
Customized capacitance and voltage packages are possible and welcomed. Contact
the factory about design possibilities beyond those contained in this catalog.
00
Termination
Finish
00 = Tin/Lead
90/10
DSCC PART IDENTIFICATION NUMBER (PIN):
*
Capacitance
Tolerance
Packaging
B = Tray Pack
TWA
Type
D
Case
Size
Insulation Sleeve
C = Without Sleeve
S = With Sleeve
S
Qualification
D = DSCC 93026
S = COTS-Plus
Z
Reliability
Z = Non-ER
Insulation Sleeve
C = Without Sleeve
S = With Sleeve
HOW TO ORDER
35
Voltage
Code
227
Capacitance
Code
pF code:
1st two digits
represent significant
figures 3rd digit
represents multiplier
(number of zeros to
follow)
00
Custom Test
Options
00 = Standard
93026
Drawing
Number
-XX
Dash
Number
*
Capacitance
Tolerance
K = 10%
M = ±20%
Voltage (DC)
Rated Voltage: (Ur) 85ºC 25 30 50 60 75 100 125
Derated Voltage: (Uc) 125ºC 15 20 30 40 50 65 85
Surge Voltage: (Us) 85ºC 28.8 34.5 57.5 69 86.3 115 144
VOLTAGE RATINGS (Operating Temperature -55ºC to 125ºC)
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/twa.pdf
Capacitance Voltage Rating DC (VR) at 85°C
μF Code 25V 30V 50V 60V 75V 100V 125V
10 106 A
15 156 A
33 336 A
47 476 A B
68 686 A B
100 107 A D
110 107 B
120 127 A
150 157 B D E
220 227 B E
330 337 D
390 397 D
470 477 B D E
560 567 B E
680 687 E
1000 108 D E
1200 128 D
1500 158 E
1800 106 E
2200 155 E
www.avx.com | 133
MIL 123 and Leaded Ceramic Capacitors
TEST DESCRIPTION MIL-PRF-123
MIL-PRF-39014
MIL-PRF-20 MIL-PRF-55681
NDT 100% Ultrasonic Scan or No No No
(Non-Destructive Test) Neutron-Radiography
Pre-Cap Visual
100% No No No(Pre-Encapsulation
Visual Examination)
D.P.A. Lot by Lot—Pre-Termination No No No
(Destructive Physical Analysis) Lot by Lot—Finished Product
Pre-Cap
Terminal Strength Lot by Lot No No No
(Pre-Encapsulation Pull Test)
Life Test Lot by Lot—1000 Hours No No No
(Lot by Lot)
Low Voltage Lot by Lot No No No
Humidity
Thermal Shock Lot by Lot No No No
100 Cycles
CROSS REFERENCE MIL-SPEC TEST REQUIREMENTS
HOW TO ORDER
Military Type Designation: Capacitors, Fixed, Ceramic Dielectric,
(Temperature Stable and General Purpose), High Reliability
M123
Mil-Spec
Number
A
Modification
Spec.
01
Slash Sheet
Number
B
Voltage
B = 50
C = 100
103
Capacitance
Code
BX
Temperature
Characteristic
Capacitance change with
reference to 25ºC over temperature
range -55ºC to +125ºC
Symbol Without With Rated
Voltage DC Voltage
BP 0 ± 30 ppm/ºC 0 ±30 ppm/ºC
BX ±15, -15% ±15, -25%
K
Capacitance
Tolerance
C = ±0.25pF
D = ±0.5pF
F = ±1%
J = ±5%
K = ±10%
C
Termination
C = Copper, solder
coated (type C-4
or C-5 of
MIL-STD-1276)
W = Copper clad
steel, solder
coated, 60 micro
inches minimum.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/mil123.pdf
134 | www.avx.com
MIL-PRF-123/Chips
HOW TO ORDER
Military Type Designation: Capacitors, Fixed, Ceramic Dielectric,
(Temperature Stable and General Purpose), High Reliability
M123
Mil-Spec
Number
A
Modification
Spec.
01
Slash
Sheet
Number
B
Voltage
B = 50
C = 100
103
Capacitance
Code
BX
Temperature
Characteristic
Capacitance change with
reference to 25ºC over temperature
range -55ºC to +125ºC
Symbol Without With Rated
Voltage DC Voltage
BP 0 ± 30 ppm/ºC 0 ±30 ppm/ºC
BX ±15, -15% ±15, -25%
K
Capacitance
Tolerance
C = ±0.25pF
D = ±0.5pF
F = ±1%
J = ±5%
K = ±10%
S
Termination
G = Silver – Nickel - Gold
M = Palladium/Silver
S = Silver – Nickel – Solder Coated
Z = Silver – Nickel – Solder Plated
(tin/lead alloy with a minimum
of 4 percent lead)
AVX Corp.’s M123 Series MIL-qualified ceramic capacitors are designed for high
performance applications in BX and BR voltage levels, and for temperature stable
applications in BP and BG voltage levels. The M123A10-M123A13 have been
tested in accordance with MIL-PRF-123 specifications and are available in a wide
range of values and tolerances.
M123 Series capacitors offer design and component engineers a proven technology
for SMD processing and applications requiring space-level reliability. They are
designed for use in critical frequency applications, timing circuits, and applications
where absolute stability is required (BP and BG), as well as in applications where a
wider capacitance variation in temperature, voltage, frequency, and life span can be
tolerated (BX and BR).
Slash Sheet Case Size Dielectric Cap Range
10 0805 BP 1.0-680
BX 330-470000
11 1210 BP 300-3,300
BX 5,600-100,000
12 1808 BP 300-1,000
BX 5,600-100,000
13 2225 BP 1,100-10,000
BX 120,000-1,000,000
21 1206 BP 1.0-2,200
BX 4,700-39,000
22 1812 BP 1,200-10,000
BX 27,000-180,000
23 1825 BP 3,900-20,000
BX 56,000-470,000
L
W
S
T
(L) Length (W) Width (T) Thickness (S) Termination
Band
CKS51, /10, 0805 Size Chip
2.03 (0.080) 1.27 (0.050) 0.508 (0.020) Min. 0.508 (0.020)
± 0.381 (0.015) ± 0.381 (0.015) 1.40 (0.055) Max. ± 0.254 (0.010)
CKS52, /11, 1210 Size Chip
3.05 (0.120) 2.54 (0.100) 0.508 (0.020) Min. 0.508 (0.020)
± 0.381 (0.015) ± 0.381 (0.015) 1.65 (0.065) Max. ± 0.254 (0.010)
CKS52, /12, 1808 Size Chip
4.57 (0.180) 2.03 (0.080) 0.508 (0.020) Min. 0.508 (0.020)
± 0.381 (0.015) ± 0.381 (0.015) 1.65 (0.065) Max. ± 0.254 (0.010)
CKS54, /13, 2225 Size Chip
5.59 (0.220) 6.35 (0.250) 0.508 (0.020) Min. 0.508 (0.020)
± 0.381 (0.015) ± 0.381 (0.015) 1.78 (0.070) Max. ± 0.254 (0.010)
CKS55, /21, 1206 Size Chip
3.05 (0.120) 1.52 (0.0600) 0.508 (0.020) Min. 0.508 (0.020)
± 0.381 (0.015) ± 0.381 (0.015) 1.65 (0.065) Max. ± 0.254 (0.010)
CKS56, /22, 1812 Size Chip
4.57 (0.180) 3.18 (0.125) 0.508 (0.020) Min. 0.508 (0.020)
± 0.381 (0.015) ± 0.381 (0.015) 2.03 (0.080) Max. ± 0.254 (0.010)
CKS56, /23, 1825 Size Chip
4.57 (0.180) 6.35 (0.250) 0.508 (0.020) Min. 0.508 (0.020)
± 0.381 (0.015) ± 0.381 (0.015) 2.03 (0.080) Max. ± 0.254 (0.010)
DIMENSIONS
mm (inches)
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/mil123.pdf
www.avx.com | 135
136 | www.avx.com
S
Termination
Finish
M = Palladium Silver
N = Silver Nickel Gold
S = Solder-Coated
U = Base Metallization/Barrier
Metal/Solder Coated*
W = Base
Metallization/Barrier
Metal/Tinned (Tin or
Tin/Lead Alloy)
*Solder shall have a melting
point of 200ºC or less.
MIL-PRF-55681 Chips
CDR01-CDR06
CDR01
MIL Style
CDR01
CDR02
CDR03
CDR04
CDR05
CDR06
101
Capacitance
Two digit figures
followed by multiplier
(number of zeros to
be added)
e.g. 101 = 100pF
B
Rated
Voltage
A = 50V
B = 100V
K
Capacitance
Tolerance
J = ±5%
K = ±10%
M = ±20%
BP
Voltage Temperature
Limits
BP = 0 ± 30 ppm/ºC
without voltage;
0 ± 30 ppm/ºC with
rated voltage from
-55ºC to +125ºC
BX = ±15% without voltage;
+15 -25% with rated
voltage from -55ºC to
+125ºC
M
Failure
Rate Level
M = 1.0%
P = .1%
R = .01%
S = .001%
HOW TO ORDER
PACKAGING
Bulk is standard packaging. Tape and reel per RS481 is available upon request.
NOTE: Contact factory for availability of Termination and
Tolerance Options for Specific Part Numbers.
The CDR01 through CDR06 series (MIL-PRF-55681) of high
reliability, high frequency capacitors are available in BP and BX,
voltage/temperature options. They are offered in 50 and 100V
versions and capacitance tolerance varies with capacitance and
voltage specifications. Failure rates are between “S” = 0.001% and
“M” = 1.0%.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/cdr01-06.pdf
www.avx.com | 137
MIL-PRF-55681 Chips
CDR01-CDR06
CDR01 thru CDR06 to MIL-PRF-55681
Military Rated temperature WVDC
Type Capacitance Capacitance and voltage-
Designation in pF tolerance temperature limits
AVX Style 0805/CDR01
CDR01BP100B--- 10 J,K BP 100
CDR01BP120B--- 12 J BP 100
CDR01BP150B--- 15 J,K BP 100
CDR01BP180B--- 18 J BP 100
CDR01BP220B--- 22 J,K BP 100
CDR01BP270B--- 27 J BP 100
CDR01BP330B--- 33 J,K BP 100
CDR01BP390B--- 39 J BP 100
CDR01BP470B--- 47 J,K BP 100
CDR01BP560B--- 56 J BP 100
CDR01BP680B--- 68 J,K BP 100
CDR01BP820B--- 82 J BP 100
CDR01BP101B--- 100 J,K BP 100
CDR01B--121B--- 120 J,K BP,BX 100
CDR01B--151B--- 150 J,K BP,BX 100
CDR01B--181B--- 180 J,K BP,BX 100
CDR01BX221B--- 220 K,M BX 100
CDR01BX271B--- 270 K BX 100
CDR01BX331B--- 330 K,M BX 100
CDR01BX391B--- 390 K BX 100
CDR01BX471B--- 470 K,M BX 100
CDR01BX561B--- 560 K BX 100
CDR01BX681B--- 680 K,M BX 100
CDR01BX821B--- 820 K BX 100
CDR01BX102B--- 1000 K,M BX 100
CDR01BX122B--- 1200 K BX 100
CDR01BX152B--- 1500 K,M BX 100
CDR01BX182B--- 1800 K BX 100
CDR01BX222B--- 2200 K,M BX 100
CDR01BX272B--- 2700 K BX 100
CDR01BX332B--- 3300 K,M BX 100
CDR01BX392A--- 3900 K BX 50
CDR01BX472A--- 4700 K,M BX 50
AVX Style 1805/CDR02
CDR02BP221B--- 220 J,K BP 100
CDR02BP271B--- 270 J BP 100
CDR02BX392B--- 3900 K BX 100
CDR02BX472B--- 4700 K,M BX 100
CDR02BX562B--- 5600 K BX 100
CDR02BX682B--- 6800 K,M BX 100
CDR02BX822B--- 8200 K BX 100
CDR02BX103B--- 10,000 K,M BX 100
CDR02BX123A--- 12,000 K BX 50
CDR02BX153A--- 15,000 K,M BX 50
CDR02BX183A--- 18,000 K BX 50
CDR02BX223A--- 22,000 K,M BX 50
Add appropriate failure rate
Add appropriate termination finish
Capacitance Tolerance
Military Rated temperature WVDC
Type Capacitance Capacitance and voltage-
Designation in pF tolerance temperature limits
AVX Style 1808/CDR03
CDR03BP331B--- 330 J,K BP 100
CDR03BP391B--- 390 J BP 100
CDR03BP471B--- 470 J,K BP 100
CDR03BP561B--- 560 J BP 100
CDR03BP681B--- 680 J,K BP 100
CDR03BP821B-- 820 J BP 100
CDR03BP102B--- 1000 J,K BP 100
CDR03BX123B-- 12,000 K BX 100
CDR03BX153B--- 15,000 K,M BX 100
CDR03BX183B--- 18,000 K BX 100
CDR03BX223B--- 22,000 K,M BX 100
CDR03BX273B--- 27,000 K BX 100
CDR03BX333B--- 33,000 K,M BX 100
CDR03BX393A--- 39,000 K BX 50
CDR03BX473A--- 47,000 K,M BX 50
CDR03BX563A--- 56,000 K BX 50
CDR03BX683A--- 68,000 K,M BX 50
AVX Style 1812/CDR04
CDR04BP122B--- 1200 J BP 100
CDR04BP152B--- 1500 J,K BP 100
CDR04BP182B--- 1800 J BP 100
CDR04BP222B--- 2200 J,K BP 100
CDR04BP272B--- 2700 J BP 100
CDR04BP332B--- 3300 J,K BP 100
CDR04BX393B--- 39,000 K BX 100
CDR04BX473B--- 47,000 K,M BX 100
CDR04BX563B--- 56,000 K BX 100
CDR04BX823A--- 82,000 K BX 50
CDR04BX104A--- 100,000 K,M BX 50
CDR04BX124A--- 120,000 K BX 50
CDR04BX154A--- 150,000 K,M BX 50
CDR04BX184A--- 180,000 K BX 50
AVX Style 1825/CDR05
CDR05BP392B--- 3900 J,K BP 100
CDR05BP472B--- 4700 J,K BP 100
CDR05BP562B--- 5600 J,K BP 100
CDR05BX683B--- 68,000 K,M BX 100
CDR05BX823B--- 82,000 K BX 100
CDR05BX104B--- 100,000 K,M BX 100
CDR05BX124B--- 120,000 K BX 100
CDR05BX154B--- 150,000 K,M BX 100
CDR05BX224A--- 220,000 K,M BX 50
CDR05BX274A--- 270,000 K BX 50
CDR05BX334A--- 330,000 K,M BX 50
AVX Style 2225/CDR06
CDR06BP682B--- 6800 J,K BP 100
CDR06BP822B--- 8200 J,K BP 100
CDR06BP103B--- 10,000 J,K BP 100
CDR06BX394A--- 390,000 K BX 50
CDR06BX474A--- 470,000 K,M BX 50
Add appropriate failure rate
Add appropriate termination finish
Capacitance Tolerance
138 | www.avx.com
S
Termination
Finish
M = Palladium Silver
N = Silver Nickel Gold
S = Solder-Coated
Y = 100% Tin
U = Base Metallization/Barrier
Metal/Solder Coated*
W = Base Metallization/Barrier
Metal/Tinned (Tin or
Tin/Lead Alloy)
*Solder shall have a melting
point of 200ºC or less.
MIL-PRF-55681 Chips
CDR31-CDR35
CDR31
MIL Style
CDR31
CDR32
CDR33
CDR34
CDR35
101
Capacitance
Two digit figures
followed by multiplier
(number of zeros to
be added)
e.g. 101 = 100pF
B
Rated
Voltage
A = 50V
B = 100V
K
Capacitance
Tolerance
C = ±.25 pF
D = ±.5 pF
F = ±1%
J = ±5%
K = ±10%
M = ±20%
BP
Voltage Temperature
Limits
BP = 0 ± 30 ppm/ºC
without voltage;
0 ± 30 ppm/ºC with
rated voltage from
-55ºC to +125ºC
BX = ±15% without voltage;
+15 -25% with rated
voltage from -55ºC to
+125ºC
M
Failure
Rate Level
M = 1.0%
P = .1%
R = .01%
S = .001%
HOW TO ORDER
NOTE: Contact factory for availability of Termination and
Tolerance Options for Specific Part Numbers.
CDR31 thru CDR35 to MIL-PRF-55681
Type Dielectric Capacitance Tolerance Voltage
pF WVDC
CDR31 BP 1.0 - 2.4 B,C 100
CDR31 BP 2.7 - 9.1 B,C,D 100
CDR31 BP 10.0 - 470 F,J,K 100
CDR31 BP 510 - 680 F,J,K 50
CDR31 BX 470 - 4,700 K,M 100
CDR31 BX 5,600 - 18,000 K,M 100
CDR32 BP 1.0 - 2.4 B,C 100
CDR32 BP 2.7 - 9.1 B,C,D 100
CDR32 BP 10.0 - 1,000 F,J,K 100
CDR32 BP 1,100 - 2,200 F,J,K 50
CDR32 BX 4,700 - 15,000 K,M 100
CDR32 BX 18,000 - 39,000 K,M 50
CDR33 BP 1,000 - 2,200 F,J,K 100
CDR33 BP 2,700 - 3,300 F,J,K 50
CDR33 BX 15,000 - 27,000 K,M 100
CDR33 BX 39,000 - 100,000 K,M 50
CDR34 BP 2,200 - 4,700 F,J,K 100
CDR34 BP 5,100 - 10,000 F,J,K 50
CDR34 BX 27,000 - 56,000 K,M 100
CDR34 BX 100,000 - 180,000 K,M 50
CDR35 BP 4,700 - 10,000 F,J,K 100
CDR35 BP 11,000 - 22,000 F,J,K 50
CDR35 BX 56,000 - 150,000 K,M 100
CDR35 BX 180,000 - 470,000 K,M 50
PACKAGING
Bulk is standard packaging. Tape and reel per RS481 is available upon request.
The CDR31 through CDR35 series (MIL-PRF-55681) of high reliability,
high frequency capacitors are available in BP and BX,
voltage/temperature options. They have a metric dimension body size
and are offered in 50 and 100V versions. Capacitance tolerance varies
with capacitance and voltage specifications and failure rates are
between “S” = 0.001% and “M” = 1.0%.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/cdr31-35.pdf
www.avx.com | 139
Additional Surface Mount MLCC
with DSCC Approvals
These additional ranges of surface mount multilayer ceramic capacitors
provide additional capability in 0603 and 0402 case sizes. DSCC 03028
covers 0603 case size BP and BR dielectric and DSCC 03029 is for
0402 case size in BP and BR dielectric.
For RF surface mount capacitor versions DSCC 06019 covers 0605
case size for BP and BG dielectric. DSCC 06022 is for 1210 case size
and BP and BG dielectric devices.
DSCC 05002 covers RF capacitors in 0603 case size, C0G dielectric.
DSCC 03028 0603 Case Size
Type Dielectric Capacitance Tolerance Voltage
pF WVDC
DSCC 03028 BP 0.5 - 9.1 C,D 6.3/10/16/25/50/100
DSCC 03028 BP 10 - 330 F,G,J 6.3/10/16/25/50/100
DSCC 03028 BP 390 - 1,000 F,G,J 6.3/10/16/25/50
DSCC 03028 BP 1,200 - 1,500 F,G,J 6.3/10/16/25
DSCC 03028 BR 100 - 1,000 K,M
6.3/10/16/25/50/100/200
DSCC 03028 BR 1,200 - 12,000 K,M 6.3/10/16/25/50/100
DSCC 03028 BR 15,000 - 39,000 K,M 6.3/10/16/25/50
DSCC 03028 BR 47,000 K,M 6.3/10/16/25
DSCC 03028 BR 56,000 - 100,000 K,M 6.3/10/16
DSCC 03028 BR 120,000 - 220,000 K,M 6.3/10
DSCC 06019 RF Capacitor 0605 Case Size
Type Dielectric Capacitance Tolerance Voltage
pF WVDC
DSCC 06019 BP,BG 0.1 - 0.2 B 50/150
DSCC 06019 BP,BG 0.3 - 0.4 B,C 50/150
DSCC 06019 BP,BG 0.5 - 6.2 B,C,D 50/150
DSCC 06019 BP,BG 6.8 - 9.1 B,C,J,K,M 50/150
DSCC 06019 BP,BG 10 - 100 F,G,J,K,M 50/150
DSCC 06019 BP,BG 110 - 1,000 F,G,J,K,M 50
DSCC 05002 0603 Case Size
Type Dielectric Capacitance Tolerance Voltage
pF WVDC
DSCC 05002 C0G 0.1 - 0.2 A,B 50/100/200/250
DSCC 05002 C0G 0.3 - 1 A,B,C 50/100/200/250
DSCC 05002 C0G 1.1 - 6.2 A,B,C,D 50/100/200/250
DSCC 05002 C0G 6.8 - 100
B,C,J,K,M
50/100/200/250
DSCC 06022 RF Capacitor 1210 Case Size
Type Dielectric Capacitance Tolerance Voltage
pF WVDC
DSCC 06022 BP,BG 0.1 - 0.2 B 200/500
DSCC 06022 BP,BG 0.3 - 0.4 B,C 200/500
DSCC 06022 BP,BG 0.5 - 6.2 B,C,D 200/500
DSCC 06022 BP,BG 6.8 - 9.1 B,C,J,K,M 200/500
DSCC 06022 BP,BG 10 - 100 F,G,J,K,M 200/500
DSCC 06022 BP,BG 110 - 200 F,G,J,K,M 200/300
DSCC 06022 BP,BG 220 - 470 F,G,J,K,M 200
DSCC 06022 BP,BG 510 - 620 F,G,J,K,M 100
DSCC 06022 BP,BG 680 - 1,000 F,G,J,K,M 50
DSCC 06022 BP 1,100 - 5,100 F,G,J,K,M 50
DSCC 03029 0402 Case Size
Type Dielectric Capacitance Tolerance Voltage
pF WVDC
DSCC 03029 BP 0.5 - 9.1 C,D 6.3/10/16/25/50
DSCC 03029 BP 10 - 220 F,G,J 6.3/10/16/25/50
DSCC 03029 BP 270 - 330 F,G,J 6.3/10/16
DSCC 03029 BR 100 - 3,300 K,M 6.3/10/16/25/50
DSCC 03029 BR 3,900 - 4,700 K,M 6.3/10/16/25
HOW TO ORDER
U
Termination Finish
M = Palladium Silver
U = Solder Coated
(4% Lead min)
Melting Point of 200ºC
Z = Tin/Lead Alloy with
4% Lead
03028
Case Size
03028 (0403)
03029 (0402)
05002 (0603)
05006 (0805)
05007 (1206)
06022 (1210)
06019 (0605)
102
Capacitance
EIA Capacitance
Code in pF
First two digits =
significant figures or
“R” for decimal place
Third digit = number
of zeros or after “R”
significant figures.
B
Rated
Voltage
W = 6.3V
X = 10V
Y = 16V
Z = 25V
A = 50V
B = 100V
C = 200V
J
Capacitance
Tolerance
B =
±
.1 pF
C =
±
.25 pF
D =
±
.5 pF
F =
±
1%
G = ±2%
J =
±
5%
K =
±
10%
M =
±
20%
BX
Voltage Temperature
Limits
BP = 0 ± 30 ppm/ºC
without voltage;
0 ± 30 ppm/ºC with rated
voltage from
-55ºC to +125ºC
BR = ±15% without voltage;
+15 -40% with rated voltage
from -55ºC to +125ºC
BX = ±15% without voltage;
+15 -25% with rated voltage
from -55ºC to +125ºC
Options
C = Full Group G
L = 2000 Hour Life
M = 1000 Hour Life
H = Low Voltage
Humidity
140 | www.avx.com
Extended Range Surface Mount MLCC
to DSCC Drawings
DSCC 05006 0805 Case Size
Type Dielectric Capacitance Tolerance Voltage
pF WVDC
DSCC 05006 BP 0.5 C,D 16/25/50/100/200
DSCC 05006 BP 1 - 8.2 C,D 16/25/50/200
DSCC 05006 BP 10 - 470 F,G,J 16/25/50/200
DSCC 05006 BP 560 - 680 F,G,J 16/25/100/200
DSCC 05006 BP 820 - 1,000 F,G,J 16/25/50/100
DSCC 05006 BP 1,200 - 3,900 F,G,J 16/25/50
DSCC 05006 BP 4,700 - 5,600 F,G,J 16/25
DSCC 05006 BP 6,800 - 8,200 F,G,J 16
DSCC 05006 BR 330 - 22,000 K,M 10/16/25/50/100/200
DSCC 05006 BR 33,000 - 47,000 K,M 10/16/25/50/100
DSCC 05006 BR 68,000 - 100,000 K,M 10/16/25/50/100
DSCC 05006 BR 150,000 K,M 10/16/25/50
DSCC 05006 BR 220,000 K,M 10/16/25
DSCC 05006 BR 330,000 - 470,000 K,M 10/16
DSCC 05006 BR 680,000 - 1μF K,M 10
DSCC 05007 1206 Case Size
Type Dielectric Capacitance Tolerance Voltage
pF WVDC
DSCC 05007 BP 0.5 - 8.2 C,D 16/25/50/100/200
DSCC 05007 BP 10 - 680 F,G,J 16/25/50/100/200
DSCC 05007 BP 820 - 1,000 F,G,J 16/25/50/100
DSCC 05007 BP 1,200 - 3,900 F,G,J 16/25/50
DSCC 05007 BP 4,700 - 5,600 F,G,J 16/25
DSCC 05007 BP 6,800 - 8,200 F,G,J 16
DSCC 05007 BR 1,500 - 6,800 K,M 10/16/25/50/100/200
DSCC 05007 BR 10,000 K,M 10/16/25/50/100
DSCC 05007 BR 15,000 - 33,000 K,M 10/16/25/50
DSCC 05007 BR 47,000 K,M 10/16/25
DSCC 05007 BR 68,000 K,M 10/16
DSCC 05007 BR 100,000 K,M 10/16/25
DSCC 05007 BR 150,000 - 220,000 K,M 10
These extended range surface mount, multilayer ceramic capacitors
provide options for lower voltages and higher capacitance versions to
DSCC drawings. Dielectric options are BP, BR and BX. DSCC 05006
covers 0805 case size and DSCC 05007 provides the 1206 case size
capability.
HOW TO ORDER
U
Termination Finish
M = Palladium Silver
U = Solder Coated
(4% Lead min)
Melting Point of 200ºC
Z = Tin/Lead Alloy with
4% Lead
03028
Case Size
03028 (0403)
03029 (0402)
05002 (0603)
05006 (0805)
05007 (1206)
06022 (1210)
06019 (0605)
102
Capacitance
EIA Capacitance
Code in pF
First two digits =
significant figures or
“R” for decimal place
Third digit = number
of zeros or after “R”
significant figures.
B
Rated
Voltage
W = 6.3V
X = 10V
Y = 16V
Z = 25V
A = 50V
B = 100V
C = 200V
J
Capacitance
Tolerance
B =
±
.1 pF
C =
±
.25 pF
D =
±
.5 pF
F =
±
1%
G = ±2%
J =
±
5%
K =
±
10%
M =
±
20%
BX
Voltage Temperature
Limits
BP = 0 ± 30 ppm/ºC
without voltage;
0 ± 30 ppm/ºC with rated
voltage from
-55ºC to +125ºC
BR = ±15% without voltage;
+15 -40% with rated voltage
from -55ºC to +125ºC
BX = ±15% without voltage;
+15 -25% with rated voltage
from -55ºC to +125ºC
Options
C = Full Group G
L = 2000 Hour Life
M = 1000 Hour Life
H = Low Voltage
Humidity
www.avx.com | 141
Stacked Leaded MLC Capacitors
SM0 Series
AVX IS QUALIFIED TO MIL-PRF-49470/1 AND MIL-PRF-49470/2
The SMPS capacitors are designed for high current, high-power and high-temperature applications. These
capacitors have very low ESR (Equivalent Series Resistance) and ESL (Equivalent Series Inductance).
SMPS Series capacitors offer design and component engineers a proven technology specifically designed
for programs requiring high reliability performance in harsh environments.
MIL-PRF-49470 SMPS Series capacitors are primarily used in input/output filters of high-power and high-
voltage power supplies as well as in bus filters and DC snubbers for high power inverters and other
high-current applications. These capacitors are available with through-hole and surface mount leads. The
operating temperature is -55°C to +125°C.
The MIL-PRF-49470 capacitors are preferred over the DSCC drawing 87106 capacitors. MIL-PRF-49470
specification was created to produce a robust replacement for DSCC 87106. MIL-PRF-49470 offers two
product levels.
Level “B” is the standard reliability. Level “T” is the high reliability suitable for space application.
AVX is qualified to supply MIL-PRF-49470/1 parts. These are unencapsulated ceramic dielectric, switch mode power
supply capacitors. AVX is also qualified to supply MIL-PRF-49470/2 parts. These are encapsulated ceramic dielectric,
switch
mode power supply capacitors.
SM0
AVX Style
Size
SM0 = Uncoated
SM5 = Epoxy
Coated
1
Size
7
Voltage
5 = 50V
1 = 100V
2 = 200V
7 = 500V
C
Temperature
Coefficient
C0G = A
X7R = C
106
Capacitance Code
(2 significant digits +
no. of zeros)
10 pF = 100
100 pF = 101
1,000 pF = 102
22,000 pF = 223
220,000 pF = 224
1 μF = 105
10 μF = 106
100 μF = 107
M
Capacitance
Tolerance
C0G: J = ±5%
K = ±10%
M = ±20%
X7R: K = ±10%
M = ±20%
Z = +80%,
-20%
B
Tes t L ev el
B = Hi-Rel*
N
Termination
N = Straight Lead
J = Leads formed in
L = Leads formed
out
650
Height
Max Dimension
“A”
120 = 0.120"
240 = 0.240"
360 = 0.360"
480 = 0.480"
650 = 0.650"
Note: Capacitors with X7R and Z5U dielectrics are not intended for applications
across AC supply mains or AC line filtering with polarity reversal. Contact plant
for recommendations.
*Hi-Rel screening for C0G and X7R only. Screening consists of 100% Group A
(B Level), Subgroup 1 per MIL-PRF-49470.
HOW TO ORDER AVX Styles: SM-1, SM-2, SM-3, SM-4, SM-5, SM-6
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/sm01-06.pdf
www.avx.com | 141
SIZE CODE CASE CODE 1 CASE CODE 2 CASE CODE 3 CASE CODE 4 CASE CODE 5 CASE CODE 6
CAP WVDC WVDC WVDC WVDC WVDC WVDC
μFCodeBXBXBRBQBXBXBRBQBXBXBRBQBXBXBRBQBXBXBRBQBXBXBRBQ
50 100 200 500 50 100 200 500 50 100 200 500 50 100 200 500 50 100 200 500 50 100 200 500
0.15 154
0.18 184
0.22 224
0.27 274
0.33 334
0.39 394
0.47 474
0.56 564
0.68 684
0.82 824
1.0 105
1.2 125
1.5 155
1.8 185
2.2 225
2.7 275
3.3 335
3.9 395
4.7 475
5.6 565
6.8 685
8.2 825
10 106
12 126
15 156
18 186
22 226
27 276
33 336
39 396
47 476
56 566
68 686
82 826
100 107
120 127
150 157
180 187
220 227
270 277
142 | www.avx.com
CV
Style
Code
HOW TO ORDER
52
Size
Code
5
Voltage
Code
5 = 50V
1 = 100V
2 = 200V
7 = 500V
C
Dielectric
Code
A = C0G
C = X7R
Stacked Leaded MLC Capacitors
CH-CV Series
10nF to 180 μF BS9100 approved
50V to 500 VDC Low ESR/ESL
-55ºC to +125ºC 1B/C0G and 2C1/X7R Dielectrics
50-500V ESCC 3001/030 1-3kV ESCC 3001/034
This range allows SMPS engineers to select the best volumetric solution for input and output
filter applications in high reliability designs. Utilizing advanced multilayer ceramic techniques
to minimize ESR/ESL giving high current handling properties appropriate for filtering,
smoothing and decoupling circuits. CH-CV series parts are qualified for ESA.
106
Capacitance Code
(2 significant digits
+ no. of zeros)
Examples:
1 μF = 105
10 μF = 106
100 μF = 107
M
Capacitance
Tolerance
J = ±5%
K = ±10%
M = ±20%
P = -0 +100%
G
Specification Code
A = Non-customized
G = 9100
3
Finish Code
3 = Uncoated
8 = Coated
(classified as
uninsulated)
0
Lead Dia.
Code
0 = Standard
A
Lead Space
Code
A =
Standard
2
Lead Style
Code
2 = 2 Terminal
4 = 4 Terminal
This style is
only available in
3 & 4 chip
assemblies
CH
Style
Code
52
Size
Code
5
Voltage
Code
5 = 50V
1 = 100V
2 = 200V
7 = 500V
C
Dielectric
Code
A = C0G
C = X7R
106
Capacitance Code
(2 significant digits
+ no. of zeros)
Examples:
1 μF = 105
10 μF = 106
100 μF = 107
M
Capacitance
Tolerance
J = ±5%
K = ±10%
M = ±20%
P = -0 +100%
G
Specification Code
A = Non-customized
G = 9100
3
Finish Code
3 = Uncoated
8 = Coated
(classified as
uninsulated)
0
Lead Dia.
Code
0 = Standard
A
Lead Space
Code
A =
Standard
0
Lead Style
Code
0 = Straight
dual in line
4 = 4 Terminal
C0G C0G X7R X7R
Min Cap μF Max Cap μF Min Cap μF Max Cap μF
CH/CV41-44 50 0.068 0.39 1.8 12
100 0.047 0.33 1.0 10
200 0.033 0.27 0.33 2.2
500 0.01 0.068 0.12 1.0
CH/CV51-54 50 0.12 0.68 3.9 22
100 0.10 0.47 2.2 15
200 0.068 0.39 0.68 3.9
500 0.022 0.1 0.27 1.5
CH/CV61-64 50 0.22 1.2 6.8 39
100 0.15 1.0 4.7 33
200 0.12 0.68 1.0 10
500 0.033 0.22 0.47 3.3
CH/CV71-74 50 0.39 2.2 12 68
100 0.27 1.8 8.2 47
200 0.22 1.2 2.2 12
500 0.068 0.39 0.82 5.6
CH/CV76-79 50 0.39 2.2 12 68
100 0.27 1.8 8.2 47
200 0.22 1.2 2.2 12
500 0.068 0.39 0.82 5.6
CH/CV81-84 50 0.39 2.7 15 82
100 0.27 2.2 12 47
200 0.22 1.8 2.2 12
500 0.068 0.56 0.82 5.6
CH/CV86-89 50 0.68 3.9 22 120
100 0.56 3.3 15 68
200 0.39 2.7 3.9 27
500 0.12 0.82 1.5 8.2
CH/CV91-94 50 1.2 5.6 39 180
100 1.0 4.7 33 150
200 0.82 3.9 8.2 39
500 0.22 1.5 2.7 18
CAPACITANCE VALUE
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/ch&cvca.pdf
www.avx.com | 143
Leaded SMPS MLCC
BR Series (CECC) for Output Filtering
AVX also offers ESA qualified and CECC approved SMPS capacitors, the BR series. These are
coated radial capacitors that are offered in ranges from 50V to 500V and available in C0G and
X7R type dielectrics. These capacitors are designed to withstand the harsh conditions found
in input and output filtering requirements for today’s demanding switch mode power supply
applications. Customized and custom versions are also available.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/smpscecc.pdf
HOW TO ORDER
Note: If tape and reel is required, add TR to the end of the part number.
1B/C0G 2C1/X7R
CECC 30 601 801 Issue 1 CECC 30 701 801 Issue 1
50V 100V 200V 500V 50V 100V 200V 500V
BR40 683-104 473-683 333-473 4R5-153 185-275 125-185 334-474 473-154
BR50 124-224 104-154 683-104 820-333 395-475 225-395 684-105 104-394
BR84 104-564 104-474 104-334 223-104 475-186 475-156 105-335 474-155
CECC Offering
BR
Style
Code
84
Size
Code
1
Voltage
Code
5 = 50V
1 = 100V
2 = 200V
7 = 500V
C
Dielectric
Code
A = C0G
C = X7R
156
Capacitance
Code
2 Sig. Digits +
Number of Zeros
K
Capacitance
Tolerance
G = ±2%
C0G only
J = ±5%
C0G only
K = ±10%
M = ±20%
P = -0 +100%
T
Specification
Code
T = CECC
A
Lead Length
Code
A = 31.7mm min.
144 | www.avx.com
High Voltage Ceramic Capacitors
Type HP/HW
Type HD/HE
HIGH VOLTAGE / AC USES
• The main applications include live line indicators, AC dividers,
grading systems for power distribution network, protection for
HV switches and power circuit breakers. Coupling, by-pass-
ing high frequency circuits also use HV ceramic disc capaci-
tors.
• These applications require:
- a high internal resistance.
- a high dielectric strength.
- low or moderate losses at working frequencies (from 50
Hz up to 10 kHz).
The active power (or losses) being:
Wa = 2ΠFC tg δV2= k (Ctg δ) (FV2)
This shows that improved performances are obtained
when:
- Good dielectric properties (low tg δ) and
- No long term overvoltage are present and
- Capacitors free of “partial discharge” (corona) effect,
up to rated rms voltage.
TPC is able to perform “discharge free test” and may
guarantee a rate as low as 5 picocoulombs at Vrms upon
request.
• High voltage capacitors for AC uses are mainly made of type
II dielectrics. Most of these materials except strontium titanate
exhibit a significant non-linearity. Consequently, the capaci-
tance value depends on the voltage across the component
and on the frequency of the applied signal.
HIGH ENERGY PULSES
Laser pulses circuitry, high energy/high voltage test equip-
ment (HV accelerators, physics research) require products
especially adapted to their specific requirements.
Because of the high energy involved, the design of the capac-
itors have to provide:
- a very low ESR (equivalent series resistance) to mini-mize
the lossed energy.
W
=
ip
(E
SR ⭈⌱
2) di
- a very low ESL (equivalent series inductance) to keep the
correct pulse shape.
Typically due to the design of the electrodes, the products
exhibit:
- ESR: ~ 10 mΩ
- ESL: < 30 nH
- peak current up to 50 kA
- a high withstanding of very large dV
dt or short signal rise
time.
- a high energy density J
J = 1
2k εoεrE2 (with E = V/m)
even under high electric field, (implying that εris very lit-
tle voltage dependent).
Through the use of almost linear or non-voltage depend-
ent capacitors, the stored energy can reach 50 to 100
J/liter for the HP/HW products.
To ensure these properties, traditional ferroelectric type II
capacitors cannot be used due to their electrostrictive and
piezoelectric properties. The capacitors use quasi “paraelec-
tric”, strontium-based, ceramic material.
The main applications are coupling, decoupling, multipliers
circuits, HV DC power supplies, high voltage dividers.
Main Signal Application Series Type Size Finish
Component
Pulses High Energy Molded discs HP 30 Epoxy
AC or DC Pulses with 40 potted
or AC connections 50
or DC 60
Uncoated HW 30 Uncoated
discs with 40
connections 50
60
AC AC Voltage Molded discs HD 30 Epoxy
dividers at with 40 potted
line frequency connectors 60
Uncoated HE 30 Uncoated
discs with 40
connectors 60
GENERAL CHARACTERISTICS
SELECTION GUIDE
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/hp-hw-hk.pdf
www.avx.com | 145
SIZE SPECIFICATIONS
Dimensions: Millimeters (Inches)
CKR Series
Molded Ceramic Capacitors
The CKR series of multilayer ceramic capacitors are molded
radial and molded axial leaded devices. They provide a rugged
construction and are designed specifically for military applica-
tions. Terminations are Tin/Lead for improved solderability.
Available to military specifications MIL-PRF-39014, MIL-PRF-20
and MIL-C-11014.
L.D.
L.D.
L.D.
L.D.
L.S. L.S.
L.S.
L.S.
W
W
W
W
T
T
T
L
L
L
L
1.250 Min. 1.250 Min.
Figure 1
Figure 2
Figure 4
Figure 3
PACKAGING REQUIREMENTS
Packaging: 100 Pcs/bag; Radial Tape and Reel Packaging
available upon request (2500 pcs./reel).
Per Mil Spec Case Size
Length Width Thickness Lead Lead
MIL-PRF-39014
(L) (W) (T) Spacing Diameter
(L.S.) (L.D.)
CKR04 4.83±.25 4.83±.25 2.29±.25 2.54±.38 .64±.05
(Fig. 2) (.190±.010) (.190±.010) (.090±.010) (.100±.015) (.025±.002)
CKR05 4.83±.25 4.83±.25 2.29±.25 5.08±.38 .64±.05
(Fig. 1, 4) (.190±.010) (.190±.010) (.090±.010) (.200±.015) (.025±.002)
CKR06 7.37±.25 7.37±.25 2.29±.25 5.08±.38 .64±.05
(Fig. 2, 3) (.290±.010) (.290±.010) (.090±.010) (.200±.015) (.025±.002)
CKR08 7.37±.25 7.37±.25 3.68±.38 5.08±.38 .64±.05
(Fig. 2) (.290±.010) (.290±.010) (.145±.015) (.200±.015) (.025±.002)
MARKING RADIAL LEAD
Front
M390
14/01
1595
J AVX
0710
A
M39014
2-1350
AVX
0710A
J 50V
105K
Abb. Military Part Number
Military Slash/Dash Number
Mfg. I.D. Symbol
Mfg. I.D. Symbol
Date Code
Lot Code
Abb. Military Part Number
Military Slash Number
Military Dash Number
Date Code
Lot Code
J for JAN
Voltage Rating
Capacitance Value
(3 digit Code)
& Cap. Tol.
J for JAN
Back
CKR04/CKR05
CKR06/CKR08
HOW TO ORDER
Military Type Designation: Styles CKR04, CKR05, CKR06, CKR08, CKR11, CKR12, CKR14, CKR15, CKR16
Dash Number Option: MIL-PRF-39014/01 (Appropriate Dash Number)
CKR05
Style
CK = General purpose,
ceramic dielectric,
fixed capacitors
R = Established
Reliability Parts
05 = Remaining two
numbers identify
shape and
dimension
11 = Remaining two
numbers identify
shape and
dimension
104
Capacitance
First two digits are the significant
figures of capacitance. Third digit
indicates the additional number
of zeros. For example, order
100,000 pF as 104. (For values
below 10pF use “R” in place of
decimal point, e.g., 1R4 = 1.4pF.)
K
Capacitance
Tolerance
K = ±10%
M = ±20%
S
Military
Failure Rate
M = 1% per 1000 hours
P = 0.1% per 1000 hours
R = 0.01% per 1000 hours
S = 0.001% per 1000 hours
Note:
AVX reserves the right to substi-
tute a lower failure rate part per
MIL-PRF-39014. Substitutability
for failure rate levels shall be as
follows:
(V)
Standoff
Option
To order standoff
option, place “V”
at the end of the
part number.
Example:
CKR05BX104KSV
BX
Voltage-
Temperature Limits
First letter identifies
temperature range.
B = -55ºC to +125ºC
Second letter identifies
voltage-temperature coefficient.
Capacitance Change
with Reference to 25°C
Second No Rated
Letter Voltage Voltage
X +15, -15% +15, -25%
R
Axial +15, -15% +15, -40%
Only
Failure Rate Level Will Replace
Failure Rate Level
S (STD) (X-ray) R, P, M, L
R (STD) (No X-ray) P, M, L
P M,L
ML
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/ckr04-24.pdf
146 | www.avx.com
Single-In-Line Packages (SIP)
Capacitor Arrays
SIP-style, MLC ceramic capacitor arrays are Single-In-Line, conformally
coated packages. These capacitor networks incorporate multiple capacitors
into a single substrate and, therefore, offer excellent TC tracking. The utiliza-
tion of SIP capacitor arrays minimizes board real estate and reduces com-
ponent count in the assembly. Various circuit configurations and capaci-
tance/voltage values are available.
SP
AVX Style
A
Circuit
1
Lead Style
1
Voltage
5 = 50V
1 = 100V
A
Temperature
Coefficient
C0G = A
X7R = C
Z5U = E
561
Capacitance Code
(2 significant digits +
no. of zeros)
10 pF = 100
100 pF = 101
1,000 pF = 102
22,000 pF = 223
220,000 pF = 224
1 μF = 105
10 μF = 106
100 μF = 107
K
Capacitance
Tolerance
C0G: J = ±5%
K = ±10%
M = ±20%
X7R: K = ±10%
M = ±20%
Z = +80%,
-20%
A
Tes t L ev el
A = Standard
HOW TO ORDER
SPECIFICATION # DESCRIPTION CIRCUIT LEADS CAPACITANCE RANGE
87112 BX-100 VDC A 8 1000 pF - 0.1 μF
87116 C0G-100 VDC A 8 10 pF - 820 pF
87119 BX-100 VDC C 10 1000 pF - 0.1 μF
87120 C0G-100 VDC C 10 10 pF - 1000 pF
87122 BX-100 VDC B 8 1000 pF - 0.1 μF
88019 BX-100 VDC A 10 1000 pF - 0.1 μF
89086 C0G-100 VDC B 8 10 pF - 820 pF
AVX IS QUALIFIED TO THE FOLLOWING DSCC DRAWINGS
Maximum Capacitance*
50V 100V
C0G 2200 pF 1500 pF
X7R 0.10 μF 0.033 μF
Z5U 0.39 μF 0.10 μF
2 = 2
3 = 3
4 = 4
5 = 5
6 = 6
7 = 7
8 = 8
9 = 9
A = 10
B = 11
C = 12
D = 13
E = 14
A
Number of Leads
*For dimensions, voltages, or capacitance values not specified, please contact factory.
www.avx.com | 147
HOW TO ORDER
U
Termination Finish
(Military Designations)
Code
M = Palladium Silver
(CDR11 & 13 only)
N = Silver, Nickel, Gold
(CDR11 & 13 only)
S = Solder-Coated, Final
(CDR12 & 14 only)
U = Base Metallization/Barrier
Metal/Solder Coated*
(CDR12 & 14 only)
W = Base
Metallization/Barrier
Metal/Tinned (Tin or
Tin/Lead Alloy)
(CDR12 & 14 only)
Y = 100% Tin
Z = Base Metallization,
Barrier Metal
(Tin/Lead Alloy with
4% Lead Min.)
MIL-PRF-55681 Chips
CDR11-CDR14
CDR12
MIL Style
CDR11
CDR12
CDR13
CDR14
101
Capacitance
EIA Capacitance
Code in pF
First two digits =
significant figures or
“R” for decimal place
Third digit = number
of zeros or after “R”
significant figures.
A
Rated
Voltage
A = 50V
B = 100V
C = 200V
D = 300V
E = 500V
K
Capacitance
Tolerance
B =
±
.1 pF
C =
±
.25 pF
D =
±
.5 pF
F =
±
1%
G = ±2%
J =
±
5%
K =
±
10%
M =
±
20%
BG
Voltage Temperature
Limits
BG = +90 ± 20 ppm/ºC
with and without
rated voltage from
-55ºC to +125ºC
BP =
0 ± 30 ppm/ºC
with and without
rated voltage from
-55ºC to +125ºC
S
Failure
Rate Level
M = 1.0%
P = .1%
R = .01%
S = .001%
CDR11 thru CDR14 to MIL-PRF-55681
Type Dielectric Capacitance Tolerance Voltage
pF WVDC
CDR11/12 BG,BP 0.1 - 0.2 B 50
CDR11/12 BG,BP 0.3 - 0.4 B,C 50
CDR11/12 BG,BP 0.5 - 6.2 B,C,D 50
CDR11/12 BG,BP 6.8 - 9.1 B,C,J,K,M 50
CDR11/12 BG,BP 10 - 100 F,G,J,K,M 50
CDR11/12 BP 110 - 1,000 F,G,J,K,M 50
CDR13/14 BG,BP 0.1 - 0.2 B 200/500
CDR13/14 BG,BP 0.3 - 0.4 B,C 200/500
CDR13/14 BG,BP 0.5 - 6.2 B,C,D 200/500
CDR13/14 BG,BP 6.8 - 9.1 B,C,J,K,M 200/500
CDR13/14 BG,BP 10 - 100 F,G,J,K,M 200/500
CDR13/14 BG,BP 110 - 200 F,G,J,K,M 200/300
CDR13/14 BG,BP 220 - 470 F,G,J,K,M 200
CDR13/14 BG,BP 510 - 620 F,G,J,K,M 100
CDR13/14 BG,BP 680 - 1,000 F,G,J,K,M 50
CDR13/14 BP 1,100 - 5,100 F,G,J,K,M 50
PACKAGING
Standard packaging = Waffle Pack (maximum quantity is 80)
The CDR11 through CDR14 series (MIL-PRF-55681) of high reliability,
high frequency capacitors are available in BG and BP,
voltage/temperature options. They are offered in versions from 50 to
500V. Case sizes are 0605 for CDR11 & 12 and 1111
for CDR13 & 14. Failure rate are between “S” = 0.001% and
“M” = 1.0%.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/cdr11-14.pdf
148 | www.avx.com
Solder-in Style EMI Filter
AVX solder-in style C and L section filters, utilize patented conductive
polymer technology to provide effective attenuation in the RF to microwave
frequency spectrum from 10MHz to 50GHz. Designed in accordance with
MIL-PRF-28861, they perform well in high impedance circuits where large
capacitance values are not practical. They are ideal for filtering signal/data
lines of high impedance source and load systems. These filters are designed
to be soldered into a package, bracket or bulkhead (and maintain
hermeticity).
CHARACTERISTICS
• Miniature and Microminiature versions for Aerospace applications
• High temperature construction, withstands 300ºC installation temperatures
• Rugged monolithic discoidal capacitor construction
• Custom lead lengths and capacitance values available on request
• Glass hermetic seal on one end with epoxy on the opposite end
High purity gold plating provides excellent solderability
or compatibility with thermal and ultrasonic wire bonding
• Rated DC current up to 10A
• NASA SSQ 21215-21218
HOW TO ORDER
ZS
Style
ZZ = (.118 Dia.)
M28861/12
ZYS* = (.105 Dia.)
ZXS* = (.075 Dia.)
ZZS* = (.120 Dia.)
ZS* = (.128 Dia.)
M28861/12
ZR* = (.128 Dia.)
M28861/12
YS* = (.165 Dia.)
M28861/15
YR* = (.165 Dia.)
M28861/15
XS* = (.250 Dia.)
M28861/14
XR* = (.250 Dia.)
M28861/14
WS* = (.400 Dia.)
M28861/13
WR* = (.400 Dia.)
M28861/13
2
Circuit
1 = C Section
(Feed Thru)
2 = L-Section
8 = Grounded
Feed Thru
C
Voltage
A = 100 VDC
B = 200 VDC
C = 50 VDC
E = 400 VDC/230 VAC
OR 400 VDC
K = 250 VDC
L = 300 VDC OR
200 VDC/115 VAC
M = 350 VDC
N = 70 VDC
Y = 300 VDC
Z = 400 VDC
X = 500 VDC
2
Options
1 = Copper
(std. for non-hermetic)
2 = Nickel Iron (std.)
3 = Special
4 = Aluminum compatible
with seating flange
(std. lead)
5 = Aluminum compatible
with seating flange
(special lead)
D = Aluminum compatible
with centering flange
(std. lead)
E = Aluminum compatible
with centering flange
(special lead)
F = Aluminum compatible
special design
Y = Solder
B
MIL-28861
Screening
B = Class B
S = Class S
103
3 Digit
Capacitor
Code (in pF)
H
H = Polyimide
Y = Solder
Z = Braze
*Glass Seal Orientation:
S = Standard
R = Reverse
N = No Glass
(Epoxy both Sides)
M = Mid Flange
Style Capacitance Range (in pF if not indicated) Current Circuit
50VDC 100VDC 200VDC/115VAC 400VDC/230VAC 500VDC Rating Available
ZXS 5-5,600 5-1,800 5-1,000 1.5A C
ZYS 5-22,000 5-8,200 5-4,700 5-2,700 2.5A C
ZZS 5-27,000 5-10,000 5-5,600 5-3,300 5-1,800 5A C, L
ZZ 5-27,000 5-10,000 5-5,600 5-3,300 5-1,800 5A C
ZS/ZR 5-33,000 5-12,000 5-6,800 5-3,900 5-2,200 5A C, L
YS/YR 5-68,000 5-27,000 5-18,000 5-10,000 5-6,800 5A C, L
XS/XR 5pF-.39μF 5pF-.15μF 5pF-.1μF 5pF-.056μF 5pF-.033μF 10A C, L
WS/WR 5pF-1.8μF 5pF-.68μF 5pF-.39μF 5pF-.22μF 5pF-.15μF 15A C, L
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/zs-zr.pdf
www.avx.com | 149
Style Capacitance Range (in pF if not indicated) Current Circuit
50VDC 100VDC 200VDC/115VAC 400VDC/230VAC 500VDC Rating Available
SXD 5-5,600 5-1,800 5-1,000 – 3A C, L
SYD 5-6,200 5-2,200 5-1,200 – 3A C, L
SZD 5-22,000 5-8,200 5-4,700 5-2,700 5A C, L
SA 5-33,000 5-12,000 5-6,800 5-3,900 5-2,200 5A C, L
SG 5-33,000 5-12,000 5-6,800 5-3,900 5-2,200 5A C, L
SB/SM 5-33,000 5-12,000 5-6,800 5-3,900 5-2,200 10A C, L,
SH 5pF-.33μF 5pF-.12μF 5pF-.082μF 5pF-.047μF 5pF-.027μF 10A C, L,
SJ/SC/SP/SN 5pF-.33μF 5pF-.12μF 5pF-.082μF 5pF-.047μF 5pF-.027μF 10A C, L,
SL/SD/SF 5pF-1.5μF 5pF-.56μF 5pF-.39μF 5pF-.22μF 5pF-.12μF 25A C, L,
Bolt-in Style EMI Filter
AVX bolt-in style Pi filters, utilize discoidal capacitor technology to provide
effective attenuation in the RF to microwave frequency spectrum from
10MHz to 26GHz.
Some versions offer large hex sizes which mean much higher capacitance
levels are available and that a 125 VAC/400Hz rating can be offered for
certain values.
In the “L” section version an internal ferrite bead element provides both
inductance and series resistance which improves insertion loss and provides
superior transient performance. They are ideal for filtering signal/data lines of
high impedance source and load systems. These filters are designed to be
mounted in a tapped bulkhead or with a standard nut and lock-washer
provided.
CHARACTERISTICS (Varies with series)
• Miniature and Subminiature versions available
• Rugged monolithic discoidal capacitor construction
• Epoxy seal at both ends
• Conservatively rated for 125VAC/400Hz
• Pi design offers steeper insertion loss
• NASA SSQ 21215-21218
HOW TO ORDER
SB
Style
SXD = 1-64 Epoxy Sealed
SYD = 2-56 Epoxy Sealed
SZD = 2-56 Epoxy Sealed
SA = 4-40 Epoxy Sealed
SG = 6-32 Epoxy Sealed
SB = 8-32 Epoxy Sealed
SM = 8-32 Hermetic Sealed
SH = 10-32 Epoxy Sealed
SJ = 12-28 Epoxy Sealed
SC = 12-32 Epoxy Sealed
(.187 HEX)
SP = 12-32 Epoxy Sealed
(.250 HEX)
SN = 12-32 Hermetic Sealed
SL = 14-28 Epoxy Sealed
SD = 5/16-24 Epoxy Sealed
SF = 5/16-32 Epoxy Sealed
2
Circuit
1 = Feed Thru (C)
2 = L-Section (L)
3 = PI-Section ()
8 = Grounded Feed
Thru
A
Voltage Rating
A = 100 VDC
B = 200 VDC
C = 50 VDC
F = 500 VDC
G = 1000 VDC
H = 150 VDC
J = 600 VDC
K = 250 VDC
L = 200 VDC/125 VAC
M = 350 VDC
N = 70 VDC
X = 500 VDC
Y = 300 VDC
1
Options
1 = Copper
2 = Steel
3 = Special Lead Design
4 = Beryllium Copper
G = Olean Exact Equivalent
MIL-28861
Screening
B = Class B
S = Class S
103
3 Digit
Capacitor
Code (in pF)
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/sbbolt.pdf
150 | www.avx.com
Style Capacitance Range Current Circuit
50VDC 100VDC 200VDC/115VAC 400VDC/230VAC 500VDC Rating Available
BL 5pF-1.5μF 5pF-.56μF 5pF-.39μF 5pF-.22μF 5pF-.12μF 15A C, L
BK 5pF-1.5μF 5pF-.56μF 5pF-.39μF 5pF-.22μF 5pF-.12μF 15A C, L
AK 5pF-1.8μF 5pF-.68μF 5pF-.39μF 5pF-.27μF 5pF-.15μF 15A C, L
CK 5pF-1.5μF 5pF-.56μF 5pF-.39μF 5pF-.22μF 5pF-.12μF 15A C, L
GK 5pF-1.5μF 5pF-.56μF 5pF-.39μF 5pF-.22μF 5pF-.12μF Up to 15A C, L, , T
HK 5pF-1.8μF 5pF-.68μF 5pF-.39μF 5pF-.27μF 5pF-.15μF Up to 15A C, L, , T
JD 5pF-1.8μF 5pF-.68μF 5pF-.39μF 5pF-.27μF 5pF-.15μF Up to 15A C, L, , T
Cylindrical Style EMI Filter
AVX cylindrical style EMI filters offer effective filtering from 14KHz to 10GHz.
Sealing options include epoxy sealed at both ends to optimize volumetric
efficiency and cost, and a glass to metal hermetic seal version for severe
moisture environments. They are designed for bulkhead mounting in a
slotted hole with a nut and lockwasher supplied. These are ideal for low to
medium impedance circuits where large amounts of capacitance to ground
can be tolerated. In the “L” section version, an internal wound toroidal or
ferrite bead element provides both inductance and series resistance which
improves insertion loss at lower current ratings as well as superior transient
performance.
CHARACTERISTICS (Varies with series)
• High DC current rating up to 25A
• Impervious to high moisture, solvents and other severe
environmental conditions
• High capacitance values
• A 230VAC “T” section can handle very high pulse currents
• NASA SSQ 21215-21218
HOW TO ORDER
G
Basic Style
A = Button Type
(.410 Dia.)
B = Button Type
(.375 Dia.)
C =
Extended Button
G = .375 Dia.
J = .690 Dia.
H = .410 Dia.
Q = Special
K
Thread Type
K = 14-28 Herm. Seal
L = 14-28 Epoxy Seal
M = 8-32 Herm. Seal
N = 12-32 Herm.
Seal
T = 14-28 Post
Terminal (Both
Ends)
V = 14-28 Post and
Flag Terminal
X = 14-28 Hex Adapter
Y = 5/8-24 Epoxy
Sealed
D = 5/16-24
F = 5/16-32
Z = Special
2
Circuit
0 = Feed Thru Lead
(Without Capacitor)
1 = Feed Thru
Capacitor
2 = L-Section Filter
3 = PI Filter
4 = T-Section
5 = Double L-Section
6 = Five Element
Cap Input
7 = Five Element
IND Input
8 = Grounded Feed
Thru
A
Voltage
A = 100 VDC
B = 200 VDC
C = 50 VDC
E = 400 VDC/230 VAC
F = 500 VDC
G = 1000 VDC
H = 150 VDC
J = 600 VDC
K = 250 VDC
L = 200 VDC/125 VAC
(EXCEPT JD SERIES
300 VDC/125 VAC)
M = 350 VDC
N = 70 VDC
X = 500 VDC
Y = 300 VDC
W = 400 VDC
MIL-28861
Screening
B = Class B
S = Class S
A
Thread
Length
A = .187
B = .312
C = Special
S07 X
Plating
Finish
G = Gold
S = Silver
Feed Thrus
and BK2, CK2
XXX
Capacitance
in Picofarads
Current Rating
All Other
Circuit Types
Circuit
S = Standard L
(Inductor on
Thread End)
R = Reverse L
(Capacitor at
Thread End)
P = PI Circuit
T = T Circuit
Code Current Code Current
01 .06 Amp 09 2
02 .1 10 3
03 .15 11 5
04 .25 12 10
05 .3 16 4
06 .45 17 6
07 .5 18 .75
08 1 19 1.5
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/gkcyl.pdf
www.avx.com | 151
Custom EMI Filter Assemblies
AVX filters has expanded its portfolio of custom and customized filters and fil-
ter plates/filter assemblies. These designs are suitable for use in low frequen-
cy to high frequency applications and can be configured in a variety of capac-
itive and inductive filter elements. Also available are high current assemblies
and filter assemblies that are geared toward harsh environments such as high
temperature, high shock and vibration. All of these solutions are ideal for
industrial, avionic, downhole exploration and space level applications.
HOW TO ORDER
MFB
Bracket Array
007
Number of
Filters
001 - 999
Q
Hermeticity
Q = Hermetic (Glass Both Sides)
H = Hermetic (Glass One Side)
N = No Hermeticity Requirements
001
Customer
Dash Number*
T1
Customer
ID Code
XX
Customer
Drawing
152 | www.avx.com
W 3 F 1 5 C 223 8 A T 3 A
Style Size Feedthru Number Voltage* Dielectric Capacitance Capacitance Failure Terminations Packaging Code Quantity Code
2=0805 of 1=100v A=NP0 Code Tolerance Rate T=Plated (Reel Size) (Pcs./Reel)
3=1206 Elements 5=50v C=X7R 8=+50/-20% A=Not 1=7" Reel F=1,000
Applicable Embossed Tape A=2,000,
3=13" Reel 4,000 or
Embossed Tape 10,000
PERFORMANCE CHARACTERISTICS
CAPACITOR VALUES
NP0 X7R
Capacitance Tolerance
+50%, -20% +50%, -20%
Voltage Rating 100V 50V
Current Rating 300mA 300mA
Insulation Resistance 1000MΩ 1000MΩ
DC Resistance <0.6Ω <0.6Ω
Operating Temperature Range -55 to +125°C
Part Number Size Voltage Dielectric Capacitance
W2F11A 220 8ATxx 0805 100V NP0 22pF
W2F11A 470 8ATxx 0805 100V NP0 47pF
W2F11A 101 8ATxx 0805 100V NP0 100pF
W2F11A 221 8ATxx 0805 100V NP0 220pF
W2F11A 471 8ATxx 0805 100V NP0 470pF
W2F15C 102 8ATxx 0805 50V X7R 1000pF
W2F15C 222 8ATxx 0805 50V X7R 2200pF
W2F15C 472 8ATxx 0805 50V X7R 4700pF
W2F15C 103 8ATxx 0805 50V X7R 10000pF
W2F15C 223 8ATxx 0805 50V X7R 22000pF
W2F15C 473 8ATxx 0805 50V X7R 47000pF
W3F11A 220 8ATxx 1206 100V NP0 22pF
W3F11A 470 8ATxx 1206 100V NP0 47pF
W3F11A 101 8ATxx 1206 100V NP0 100pF
W3F11A 221 8ATxx 1206 100V NP0 220pF
W3F11A 471 8ATxx 1206 100V NP0 470pF
W3F15C 102 8ATxx 1206 50V X7R 1000pF
W3F15C 222 8ATxx 1206 50V X7R 2200pF
W3F15C 472 8ATxx 1206 50V X7R 4700pF
W3F15C 103 8ATxx 1206 50V X7R 10000pF
W3F15C 223 8ATxx 1206 50V X7R 22000pF
W3F15C 473 8ATxx 1206 50V X7R 47000pF
HOW TO ORDER
Feedthru 0805/1206 Capacitors
W2F/W3F Series
GENERAL DESCRIPTION
Available in both a standard 0805 and 1206 size, AVX’s line of
feedthru capacitors are ideal choices for EMI suppression,
broadband I/O filtering, or Vcc power line conditioning. The
unique construction of a feedthru capacitor provides low paral-
lel inductance and offers excellent decoupling capability for all
high di/dt environments and provides significant noise reduction
in digital circuits to <5 GHz. A large range of capacitor values
are available in either NP0 or X7R ceramic dielectrics.
SIGNAL LINE - INPUT OUTPUT
GROUND
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/w2f-w3f.pdf
*Note: NP0 available in 100V only and X7R available in 50V only.
www.avx.com | 153
W2H1
Size & Style
W2H1=0805
W3H1=0612
5
Voltage
3 = 25V
5 = 50V
1 = 100V
C
Dielectric
A = NP0
C = X7R
473
Capacitance
Code
8
Capacitance
Tolerance
8 = +50/-20%
M = ±20%
A
Failure
Rate
A=Not
Applicable
T
Terminations
T = Plated Ni
And Sn
1A
Packaging
1A = 7" Reel
4000 pcs
3A = 13" Reel
4000 pcs
High Current Feedthru Filter
W2H/W3H Series
HOW TO ORDER
High current feedthru capacitors are designed as a broadband EMI
filter that is specially structured to have high current handling capa-
bility. These SMT feedthru filters offer an optimized frequency
response with high attenuation across a wide RF spectrum due to
optimized parallel and series inductances. These W2H/W3H
feedthru filters can actually replace discrete L/C filter networks.
ELECTRICAL PARAMETERS
Insulation Resistance 1000 mOhms Minimum
DC Resistance <150 mOhms
Operating Temperature -55C to +125C
CAPACITOR VALUES
Part Number Size Dielectric Capacitance Tolerance Voltage Current
W2H13C 104 8AT 0805 X7R 100,000pF +50%, -20% 25V 2A
W2H15C 473 8AT 0805 X7R 47,000pF +50%, -20% 50V 2A
W2H15C 223 8AT 0805 X7R 22,000pF +50%, -20% 50V 1A
W2H15C 103 8AT 0805 X7R 10,000pF +50%, -20% 50V 1A
W2H15C 102 8AT 0805 X7R 1,000pF +50%, -20% 50V 1A
W2H11A 471 8AT 0805 NP0 470pF +50%, -20% 100V 0.5A
W2H11A 221 8AT 0805 NP0 220pF +50%, -20% 100V 0.5A
W2H11A 101 8AT 0805 NP0 100pF +50%, -20% 100V 0.5A
W2H11A 470 8AT 0805 NP0 47pF +50%, -20% 100V 0.5A
W2H11A 220 8AT 0805 NP0 22pF +50%, -20% 100V 0.5A
W3H13C 104 8AT 0612 X7R 100,000pF +50%, -20% 25V up to 5A
W3H15C 473 8AT 0612 X7R 47,000pF +50%, -20% 50V up to 5A
W3H15C 223 8AT 0612 X7R 22,000pF +50%, -20% 50V up to 4A
W3H15C 103 8AT 0612 X7R 10,000pF +50%, -20% 50V up to 3A
W3H11A 471 8AT 0612 NP0 470pF +50%, -20% 100V up to 4A
W3H11A 221 8AT 0612 NP0 220pF +50%, -20% 100V up to 4A
W3H11A 101 8AT 0612 NP0 100pF +50%, -20% 100V up to 4A
W3H11A 470 8AT 0612 NP0 47pF +50%, -20% 100V up to 3A
W3H11A 220 8AT 0612 NP0 22pF +50%, -20% 100V up to 3A
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/w2h-w3h.pdf
154 | www.avx.com
Tin/Lead Feedthru 0805/1206 Capacitors
L2F/L3F Series
L 3 F 1 5 C 223 8 A B 3 A
Style Size Feedthru Number Voltage* Dielectric Capacitance Capacitance Failure Terminations Packaging Code Quantity Code
2=0805 of 1=100v A=NP0 Code Tolerance Rate B=Tin/Lead (Reel Size) (Pcs./Reel)
3=1206 Elements 5=50v C=X7R 8=+50/-20% A=Not min 5% 1=7" Reel F=1,000
Applicable Embossed Tape A=2,000,
3=13" Reel 4,000 or
Embossed Tape 10,000
GENERAL DESCRIPTION
Available in both a standard 0805 and 1206 size, AVX’s line of
feedthru capacitors are ideal choices for EMI suppression,
broadband I/O filtering, or Vcc power line conditioning. The
unique construction of a feedthru capacitor provides low paral-
lel inductance and offers excellent decoupling capability for all
high di/dt environments and provides significant noise reduction
in digital circuits to <5 GHz. A large range of capacitor values
are available in either NP0 or X7R ceramic dielectrics.
PERFORMANCE CHARACTERISTICS
CAPACITOR VALUES
NP0 X7R
Capacitance Tolerance
+50%, -20% +50%, -20%
Voltage Rating 100V 50V
Current Rating 300mA 300mA
Insulation Resistance 1000MΩ 1000MΩ
DC Resistance <0.6Ω <0.6Ω
Operating Temperature Range -55 to +125°C
SIGNAL LINE - INPUT OUTPUT
GROUND
Part Number Size Voltage Dielectric Capacitance
L2F11A 220 8ATxx 0805 100V NP0 22pF
L2F11A 470 8ATxx 0805 100V NP0 47pF
L2F11A 101 8ATxx 0805 100V NP0 100pF
L2F11A 221 8ATxx 0805 100V NP0 220pF
L2F11A 471 8ATxx 0805 100V NP0 470pF
L2F15C 102 8ATxx 0805 50V X7R 1000pF
L2F15C 222 8ATxx 0805 50V X7R 2200pF
L2F15C 472 8ATxx 0805 50V X7R 4700pF
L2F15C 103 8ATxx 0805 50V X7R 10000pF
L2F15C 223 8ATxx 0805 50V X7R 22000pF
L2F15C 473 8ATxx 0805 50V X7R 47000pF
L3F11A 220 8ATxx 1206 100V NP0 22pF
L3F11A 470 8ATxx 1206 100V NP0 47pF
L3F11A 101 8ATxx 1206 100V NP0 100pF
L3F11A 221 8ATxx 1206 100V NP0 220pF
L3F11A 471 8ATxx 1206 100V NP0 470pF
L3F15C 102 8ATxx 1206 50V X7R 1000pF
L3F15C 222 8ATxx 1206 50V X7R 2200pF
L3F15C 472 8ATxx 1206 50V X7R 4700pF
L3F15C 103 8ATxx 1206 50V X7R 10000pF
L3F15C 223 8ATxx 1206 50V X7R 22000pF
W3F15C 473 8ATxx 1206 50V X7R 47000pF
HOW TO ORDER
Check for up-to-date CV Tables at
www.avx.com/docs/catalogs/l2f-l3f.pdf
*Note: NP0 available in 100V only and X7R available in 50V only.
www.avx.com | 155
Tin/Lead High Current Feedthru Filter
L2H/L3H Series
High current feedthru capacitors are designed as a broadband EMI
filter that is specially structured to have high current handling capa-
bility. These SMT feedthru filters offer an optimized frequency
response with high attenuation across a wide RF spectrum due to
optimized parallel and series inductances. These W2H/W3H
feedthru filters can actually replace discrete L/C filter networks.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/l2h-l3h.pdf
HOW TO ORDER
L2H1
Size & Style
L2H1 = 0805
L3H1 = 0612
5
Voltage
3 = 25V
5 = 50V
1 = 100V
C
Dielectric
A = NP0
C = X7R
473
Capacitance
Code
8
Capacitance
Tolerance
8 = +50/-20%
M = ±20%
A
Failure
Rate
A = Not
Applicable
B
Terminations
B = Tin/Lead
min 5% Lead
1A
Packaging
1A = 7" Reel
4000 pcs
3A = 13" Reel
4000 pcs
ELECTRICAL PARAMETERS
Insulation Resistance 1000 mOhms Minimum
DC Resistance <150 mOhms
Operating Temperature -55C to +125C
CAPACITOR VALUES
Part Number Size Dielectric Capacitance Tolerance Voltage Current
L2H13C 104 8AB 0805 X7R 100,000pF +50%, -20% 25V 2A
L2H15C 473 8AB 0805 X7R 47,000pF +50%, -20% 50V 2A
L2H15C 223 8AB 0805 X7R 22,000pF +50%, -20% 50V 1A
L2H15C 103 8AB 0805 X7R 10,000pF +50%, -20% 50V 1A
L2H15C 102 8AB 0805 X7R 1,000pF +50%, -20% 50V 1A
L2H11A 471 8AB 0805 NP0 470pF +50%, -20% 100V 0.5A
L2H11A 221 8AB 0805 NP0 220pF +50%, -20% 100V 0.5A
L2H11A 101 8AB 0805 NP0 100pF +50%, -20% 100V 0.5A
L2H11A 470 8AB 0805 NP0 47pF +50%, -20% 100V 0.5A
L2H11A 220 8AB 0805 NP0 22pF +50%, -20% 100V 0.5A
L3H13C 104 8AB 0612 X7R 100,000pF +50%, -20% 25V up to 5A
L3H15C 473 8AB 0612 X7R 47,000pF +50%, -20% 50V up to 5A
L3H15C 223 8AB 0612 X7R 22,000pF +50%, -20% 50V up to 4A
L3H15C 103 8AB 0612 X7R 10,000pF +50%, -20% 50V up to 3A
L3H11A 471 8AB 0612 NP0 470pF +50%, -20% 100V up to 4A
L3H11A 221 8AB 0612 NP0 220pF +50%, -20% 100V up to 4A
L3H11A 101 8AB 0612 NP0 100pF +50%, -20% 100V up to 4A
L3H11A 470 8AB 0612 NP0 47pF +50%, -20% 100V up to 3A
L3H11A 220 8AB 0612 NP0 22pF +50%, -20% 100V up to 3A
156 | www.avx.com
Part Number Roll Off Frequency Center Frequency 10 db Point 20 db Range
W3F41A2208AT 270 MHz 2640 MHz 970 MHz 1780 MHz 3500 MHz
W3F41A4708AT 65 MHz 2000 MHz 185 MHz 600 MHz 3400 MHz
W3F41A1018AT 65 MHz 2030 MHz 185 MHz 560 MHz 3500 MHz
W3F45C2218AT 35 MHz 1885 MHz 120 MHz 470 MHz 3300 MHz
W3F45C4718AT 20 MHz 1860 MHz 60 MHz 220 MHz 3500 MHz
W2F43A2208AT 208 MHz 4750 MHz 616 MHz 1407 MHz 7300 MHz
W2F43A4708AT 110 MHz 2750 MHz 330 MHz 900 MHz 4600 MHz
W2F43A1018AT 60 MHz 1300 MHz 179 MHz 501 MHz 7200 MHz
Feedthru Array Filters – W2F4/W3F4 Series
EMI Filtering, Broadband Filtering, LCD Filtering
Available in a 4-Element 0508 and 0612 Feedthru Array package, AVX’s line of
Feedthrus is an ideal choice for EMI suppression, broadband I/O filtering, LCD filter-
ing and Vcc power line conditioning. The unique construction of the Feedthru capac-
itor provides low parallel inductance and offers excellent decoupling capability for all
high di/dt environments and provides significant noise reduction in digital circuits up
to 5 GHz. A range of filtering characteristics is available. The Feedthru Array contains
four elements with a common ground connection, making it an ideal choice for multi-
line designs. Additional benefits of the multi-element array package are reduced
placement costs, reduced component counts and PCB space savings. Feedthru fil-
ters can be used to meet IEC, MIL-STD-461E, FCC, and SAE radiated and con-
ducted emission requirements.
FREQUENCY CHARACTERISTICS
Part Number Case Size Current Rating DC Resistance Voltage Rating
W3F41A2208AT
W3F41A4708AT 0612 300 mA < 0.6_ 100 V
W3F41A1018AT
W3F45C2218AT 0612 300 mA < 0.6_ 50 V
W3F45C4718AT
W2F43A2208AT
W2F43A4708AT 0508 50 mA < 3.0_ 25 V
W2F43A1018AT
Part Number Typical Capacitance Insulation Resistance Temperature Characteristics
W3F41A2208AT 22pF > 1000 M_ NP0
W3F41A4708AT 47pF > 1000 M_ NP0
W3F41A1018AT 100pF > 1000 M_ NP0
W3F45C2218AT 220pF > 1000 M_ X7R
W3F45C4718AT 470pF > 1000 M_ X7R
W2F43A2208AT 22pF > 1000 M_ NP0
W2F43A4708AT 47pF > 1000 M_ NP0
W2F43A1018AT 100pF > 1000 M_ NP0
CAPACITOR VALUES & PERFORMANCE CHARACTERISTICS
CASE SIZE & VOLTAGE RATINGS
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/w2f4-w3f4.pdf
www.avx.com | 157
TRAFIM, DC Filtering Capacitors
APPLICATIONS
DC voltage filtering for:
DC link
Resonant filtering
Active correction (FACTS, UPFC, DVR...)
Speed converters (drives and traction)
Windmills
Substation
PACKAGING
Rectangular stainless steel case sandblasted. Grounding is via a threaded screw
located on the cover of the case.
ELECTRICAL CHARACTERISTICS – STANDARD PRODUCTS
Capacitance range Cn610μF to 15600μF
Tolerance on Cn ±10%
DC voltage range 1200V to 5000V
Maximum hot-spot temperature 85°C
Life duration at nominal voltage and 70°C hot-spot temperature 100000 hours
Stray inductance <400nH
Test voltage between terminals 1.5Vnduring 10s
Test voltage between short terminals and case 10kVrms (at 50Hz during 1mn)
Standard reference Conforms with IEC 61071 and 61881, 61373,
60068 and 60077
ELECTRICAL CHARACTERISTICS – CUSTOM PRODUCTS
Capacitance range Cn83μF to 15300μF
Tolerance on Cn (±5% or ±2% available for specific requirements) ±10%
DC voltage range 1200V to 6000V
Maximum hot-spot temperature 85°C
Life duration at nominal voltage and 70°C hot-spot temperature 100,000 hours
Stray inductance 200nH to 430nH
On option low inductance for IGBT and other applications down to 40nH
Test voltage between terminals 1.5Vnduring 10s
Test voltage between short terminals and case 10kVrms (at 50Hz during 1mn)
Standard reference Conforms with IEC 61071, 61881 and 61373,
IEC 60068 and IEC 60077
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/filmcaps.pdf
PART NUMBER / HOW TO ORDER
DKT FM 1 B M B 5 85 7
Section and Option Terminal Type Fixing Voltage Capacitance
1 340x117 2 terminals A, B, C or D W=without A = 1200 to 1500V H = 3500V EIA Code
2 340x117 4 terminals See drawings M=brackets B = 1850V I = 4000V
3 340x165 2 terminals C = 2000V J = 4500V
4 340x165 4 terminals D = 2250V K = 5000V
E = 2500V L = 5500V
F = 2750V M = 6000V
G = 3000V
158 | www.avx.com
TRAFIM, DC Filtering Capacitors
Height Vn = 1200 to 1500V Vn = 1850V
millimeters (inches)
C (μF) Rs Part Number C (μF) Rs Part Number
(mΩ) (mΩ)
215 (8.465) 1900 0.60 DKTFMXXXA1907 1420 0.64 DKTFMXXXB1427
290 (11.42) 2850 0.48 DKTFMXXXA2857 2140 0.49 DKTFMXXXB2147
365 (14.37) 3800 0.42 DKTFMXXXA3807 2850 0.42 DKTFMXXXB2857
440 (17.32) 4750 0.39 DKTFMXXXA4757 3560 0.38 DKTFMXXXB3567
515 (20.28) 5700 0.37 DKTFMXXXA5707 4270 0.36 DKTFMXXXB4277
590 (23.23) 6750 0.36 DKTFMXXXA6757 4980 0.35 DKTFMXXXB4987
705 (27.76) 8100 0.35 DKTFMXXXA8107 6050 0.33 DKTFMXXXB6057
815 (32.09) 9500 0.34 DKTFMXXXA9507 7120 0.32 DKTFMXXXB7127
Height Vn = 2000V Vn = 2250V
millimeters (inches)
C (μF) Rs Part Number C (μF) Rs Part Number
(mΩ) (mΩ)
215 (8.465) 1260 0.67 DKTFMXXXC1267 1000 0.73 DKTFMXXXD1007
290 (11.42) 1880 0.51 DKTFMXXXC1887 1500 0.55 DKTFMXXXD1507
365 (14.37) 2510 0.44 DKTFMXXXC2517 2000 0.47 DKTFMXXXD2007
440 (17.32) 3140 0.40 DKTFMXXXC3147 2500 0.42 DKTFMXXXD2507
515 (20.28) 3770 0.37 DKTFMXXXC3777 3000 0.39 DKTFMXXXD3007
590 (23.23) 4400 0.36 DKTFMXXXC4407 3500 0.37 DKTFMXXXD3507
705 (27.76) 5340 0.34 DKTFMXXXC5347 4250 0.36 DKTFMXXXD4257
815 (32.09) 6280 0.33 DKTFMXXXC6287 5000 0.35 DKTFMXXXD5007
Height Vn = 2500V Vn = 2750V
millimeters (inches)
C (μF) Rs Part Number C (μF) Rs Part Number
(mΩ) (mΩ)
215 (8.465) 810 0.79 DKTFMXXXE0817 675 0.86 DKTFMXXXF6756
290 (11.42) 1220 0.60 DKTFMXXXE1227 1010 0.64 DKTFMXXXF1017
365 (14.37) 1620 0.50 DKTFMXXXE1627 1350 0.53 DKTFMXXXF1357
440 (17.32) 2030 0.44 DKTFMXXXE2037 1680 0.47 DKTFMXXXF1687
515 (20.28) 2440 0.41 DKTFMXXXE2447 2020 0.44 DKTFMXXXF2027
590 (23.23) 2840 0.39 DKTFMXXXE2847 2360 0.41 DKTFMXXXF2367
705 (27.76) 3450 0.37 DKTFMXXXE3457 2860 0.39 DKTFMXXXF2867
815 (32.09) 4060 0.36 DKTFMXXXE4067 3370 0.37 DKTFMXXXF3377
Height Vn = 3000V Vn = 3500V
millimeters (inches)
C (μF) Rs Part Number C (μF) Rs Part Number
(mΩ) (mΩ)
215 (8.465) 570 0.92 DKTFMXXXG0577 365 0.62 DKTFMXXXH3656
290 (11.42) 850 0.68 DKTFMXXXG0857 545 0.48 DKTFMXXXH5456
365 (14.37) 1140 0.56 DKTFMXXXG1147 730 0.41 DKTFMXXXH0737
440 (17.32) 1420 0.50 DKTFMXXXG1427 910 0.38 DKTFMXXXH0917
515 (20.28) 1700 0.46 DKTFMXXXG1707 1090 0.35 DKTFMXXXH1097
590 (23.23) 1990 0.43 DKTFMXXXG1997 1280 0.34 DKTFMXXXH1287
705 (27.76) 2410 0.40 DKTFMXXXG2417 1550 0.33 DKTFMXXXH1557
815 (32.09) 2840 0.39 DKTFMXXXG2847 1820 0.32 DKTFMXXXH1827
Base 340mm x 117mm (Length x Width)
TABLE OF VALUES
www.avx.com | 159
TRAFIM, DC Filtering Capacitors
Height Vn = 1200 to 1500V Vn = 1850V
millimeters (inches)
C (μF) Rs Part Number C (μF) Rs Part Number
(mΩ) (mΩ)
215 (8.465) 3100 0.78 DKTFMXXXA3107 2110 0.92 DKTFMXXXB2117
290 (11.42) 4630 0.60 DKTFMXXXA4637 3170 0.69 DKTFMXXXB3177
365 (14.37) 6200 0.52 DKTFMXXXA6207 4230 0.58 DKTFMXXXB4237
440 (17.32) 7700 0.47 DKTFMXXXA7707 5290 0.52 DKTFMXXXB5297
515 (20.28) 9300 0.44 DKTFMXXXA9307 6340 0.48 DKTFMXXXB6347
590 (23.23) 10800 0.42 DKTFMXXXA1088 7400 0.46 DKTFMXXXB7407
705 (27.76) 13200 0.40 DKTFMXXXA1328 8980 0.43 DKTFMXXXB8987
815 (32.09) 15500 0.39 DKTFMXXXA1558 10600 0.42 DKTFMXXXB1068
Height Vn = 2000V Vn = 2250V
millimeters (inches)
C (μF) Rs Part Number C (μF) Rs Part Number
(mΩ) (mΩ)
215 (8.465) 1680 1.00 DKTFMXXXC1687 1420 1.08 DKTFMXXXD1427
290 (11.42) 2520 0.75 DKTFMXXXC2527 2140 0.80 DKTFMXXXD2147
365 (14.37) 3360 0.63 DKTFMXXXC3367 2850 0.66 DKTFMXXXD2857
440 (17.32) 4200 0.56 DKTFMXXXC4207 3570 0.58 DKTFMXXXD3577
515 (20.28) 5040 0.51 DKTFMXXXC5047 4280 0.53 DKTFMXXXD4287
590 (23.23) 5880 0.48 DKTFMXXXC5887 5000 0.50 DKTFMXXXD5007
705 (27.76) 7140 0.45 DKTFMXXXC7147 6070 0.47 DKTFMXXXD6077
815 (32.09) 8400 0.44 DKTFMXXXC8407 7140 0.45 DKTFMXXXD7147
Height Vn = 2500V Vn = 2750V
millimeters (inches)
C (μF) Rs Part Number C (μF) Rs Part Number
(mΩ) (mΩ)
215 (8.465) 1130 1.18 DKTFMXXXE1137 955 1.27 DKTFMXXXF9556
290 (11.42) 1700 0.87 DKTFMXXXE1707 1430 0.93 DKTFMXXXF1437
365 (14.37) 2260 0.71 DKTFMXXXE2267 1910 0.76 DKTFMXXXF1917
440 (17.32) 2830 0.63 DKTFMXXXE2837 2380 0.66 DKTFMXXXF2387
515 (20.28) 3400 0.57 DKTFMXXXE3407 2860 0.60 DKTFMXXXF2867
590 (23.23) 3950 0.53 DKTFMXXXE3957 3340 0.56 DKTFMXXXF3347
705 (27.76) 4820 0.49 DKTFMXXXE4827 4060 0.52 DKTFMXXXF4067
815 (32.09) 5670 0.47 DKTFMXXXE5677 4770 0.49 DKTFMXXXF4777
Height Vn = 3000V Vn = 3500V
millimeters (inches)
C (μF) Rs Part Number C (μF) Rs Part Number
(mΩ) (mΩ)
215 (8.465) 800 1.37 DKTFMXXXG0807* 555 1.60 DKTFMXXXH5556*
290 (11.42) 1200 0.99 DKTFMXXXG1207 833 1.15 DKTFMXXXH8336
365 (14.37) 1600 0.81 DKTFMXXXG1607 1110 0.92 DKTFMXXXH1117
440 (17.32) 2000 0.70 DKTFMXXXG2007 1390 0.79 DKTFMXXXH1397
515 (20.28) 2400 0.63 DKTFMXXXG2407 1660 0.71 DKTFMXXXH1667
590 (23.23) 2800 0.59 DKTFMXXXG2807 1940 0.65 DKTFMXXXH1947
705 (27.76) 3400 0.54 DKTFMXXXG3407 2360 0.59 DKTFMXXXH2367
815 (32.09) 4000 0.51 DKTFMXXXG4007 2780 0.56 DKTFMXXXH2787
Base 340mm x 165mm (Length x Width)
* see particular Rms current value on page 20
TABLE OF VALUES
160 | www.avx.com
TRAFIM, DC Filtering Capacitors
Height Vn = 4000V Vn = 4500V
millimeters (inches)
C (μF) Rs Part Number C (μF) Rs Part Number
(mΩ) (mΩ)
215 (8.465) 438 1.78 DKTFMXXXI4386* 335 1.08 DKTFMXXXJ3356
290 (11.42) 657 1.26 DKTFMXXXI6576 503 0.80 DKTFMXXXJ5036
365 (14.37) 876 1.00 DKTFMXXXI8766 670 0.67 DKTFMXXXJ0677
440 (17.32) 1090 0.87 DKTFMXXXI1097 839 0.59 DKTFMXXXJ8396
515 (20.28) 1310 0.77 DKTFMXXXI1317 1000 0.54 DKTFMXXXJ1007
590 (23.23) 1530 0.70 DKTFMXXXI1537 1170 0.50 DKTFMXXXJ1177
705 (27.76) 1860 0.64 DKTFMXXXI1867 1420 0.47 DKTFMXXXJ1427
815 (32.09) 2190 0.59 DKTFMXXXI2197 1680 0.45 DKTFMXXXJ1687
Height Vn = 5000V Vn = 5500V
millimeters (inches)
C (μF) Rs Part Number C (μF) Rs Part Number
(mΩ) (mΩ)
215 (8.465) 266 1.19 DKTFMXXXK2666 224 1.28 DKTFMXXXL2246
290 (11.42) 400 0.87 DKTFMXXXK0407 336 0.93 DKTFMXXXL3366
365 (14.37) 532 0.72 DKTFMXXXK5326 448 0.76 DKTFMXXXL4486
440 (17.32) 666 0.63 DKTFMXXXK6666 560 0.67 DKTFMXXXL0567
515 (20.28) 800 0.57 DKTFMXXXK0807 672 0.60 DKTFMXXXL6726
590 (23.23) 932 0.53 DKTFMXXXK9326 785 0.56 DKTFMXXXL7856
705 (27.76) 1130 0.50 DKTFMXXXK1137 953 0.52 DKTFMXXXL9536
815 (32.09) 1330 0.47 DKTFMXXXK1337 1120 0.49 DKTFMXXXL1127
Height Vn = 6000V
millimeters (inches)
C (μF) Rs Part Number
(mΩ)
215 (8.465) 188 1.38 DKTFMXXXM1886*
290 (11.42) 282 1.00 DKTFMXXXM2826
365 (14.37) 376 0.81 DKTFMXXXM3766
440 (17.32) 470 0.70 DKTFMXXXM0477
515 (20.28) 564 0.64 DKTFMXXXM5646
590 (23.23) 659 0.59 DKTFMXXXM6596
705 (27.76) 800 0.54 DKTFMXXXM0807
815 (32.09) 940 0.51 DKTFMXXXM0947
Base 340mm x 165mm (Length x Width)
* see particular Rms current value
Particular Rms Current Value
Part Number Irms max (A)
DKTFMXXXG0807 244
DKTFMXXXH5556 204
DKTFMXXXI4386 181
DKTFMXXXM1886 244
TABLE OF VALUES
www.avx.com | 161
Medium Power Film Capacitors
FFB (RoHS Compliant)
The FFB series uses a non-impregnated metallized polypropy-
lene or polyester dielectric with the controlled
self-healing process, specially treated to have a very high
dielectric strength in operating conditions up to 105°C.
The FFB has been designed for printed circuit board mounting.
Its performance allows the FFB to be a very interesting alterna-
tive to electrolytic technology as it can withstand much higher
levels of surge voltage.
APPLICATIONS
The FFB capacitor is particularly designed for DC filtering, low
reactive power.
HOT SPOT CALCULATION
See Hot Spot Temperature, page 3.
θhot spot = θambient + (Pd+ Pt) x Rth
with Pd(Dielectric losses) = Q x tgδ0
Q x tgδ0[ 12x Cnx (Vpeak to peak)2x f ] x tgδ0
tgδ0(tan delta)
For polypropylene, tgδ0 = 2 x 10-4 for frequencies
up to 1MHz and is independent of temperatures.
For polyester, tgδ0 values are shown in graph 4 on
page 3.
Pt(Thermal losses) = Rsx (Irms)2
where Cnin Farad Irms in Ampere f in Hertz
Vin Volt R
sin Ohm θin °C
Rth in °C/W
WORKING TEMPERATURE
(according to the power to be dissipated) -55°C to +105°C
LIFETIME EXPECTANCY
One unique feature of this technology (as opposed to electrolyt-
ics) is how the capacitor reacts at the end of its lifetime. Unlike
aluminum, electrolytic film capacitors do not have a catastrophic
failure mode. Film capacitors simply experience a parametric
loss of capacitance of about 2%, with no risk of short circuit.
Please note that this is theoretical, however, as the capacitor
continues to be functional even after this 2% decrease.
PACKAGING MATERIAL
Self-extinguishing plastic case (V0 = in accordance with UL 94)
filled thermosetting resin.
Self-extinguishing thermosetting resin (V0 = in accordance with UL
94; I3F2 = in accordance with NF F 16-101).
STANDARDS
IEC 61071-1, IEC 61071-2: Power electronic capacitors
IEC 60384-16: Fixed metallized polypropylene
film dielectric DC capacitors
IEC 60384-16-1: Fixed metallized polypropylene
film dielectric DC capacitors
Assessment level E
IEC 60384-17: Fixed metallized polypropylene
film dielectric AC and pulse
capacitors
IEC 60384-17-1: Fixed metallized polypropylene
film dielectric AC and pulse
capacitors
Assessment level E
IEC 60384-2: Fixed metallized polyester capaci-
tors
HOW TO ORDER
FFB
Series
1
Case
Size
1
2
3
4
5
4
Dielectric
4 = Polyester
6 = Polypropylene
D
Voltage
Code
D = 75Vdc
E = 100Vdc
H = 300Vdc
I = 400Vdc
J = 525Vdc
A = 720Vdc
C = 900Vdc
L = 1100Vdc
0336
Capacitance
Code
0 + pF code
0336 = 33μF
0686 = 68μF
0117 = 110μF
etc.
K
Capacitance
Tolerances
K = ±10%
––
Lead Styles
= 2 Leaded
JC = 4 Leaded
Consult Factory
for Special
Options
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/filmcaps.pdf
162 | www.avx.com
Medium Power Film Capacitors
FFB (RoHS Compliant) – Polyester Dielectric
Part Number Capacitance Case Style Irms max. RSRth Typical
(μF) (A) (m) (°C/W) Weight (g)
Vndc 75V Vrms max.: 45 volts Voltage Code: D
FFB14D0336K-- 33 PO 3 3 40.7 15
FFB24D0476K-- 47 18 4.3 2 33.3 20
FFB34D0686K-- 68 19 6.2 1.7 29.9 25
FFB44D0826K-- 82 26 7.4 1.6 26.7 32
FFB54D0117K-- 110 R68 10 1.4 22.9 40
(2 terminals)
FFB54D0117KJC 110 R68 10 1.4 22.9 40
(4 terminals)
Vndc 100V Vrms max.: 60 volts Voltage Code: E
FFB14E0206K-- 20 PO 2.6 3 40.5 15
FFB24E0276K-- 27 18 3.5 2.5 33.3 20
FFB34E0396K-- 39 19 5 2 29.8 25
FFB44E0476K-- 47 26 6 1.7 26.6 32
FFB54E0686K-- 68 R68 9 1.4 22.8 40
(2 terminals)
FFB54E0686KJC 68 R68 9 1.4 22.8 40
(4 terminals)
Vndc 300V Vrms max.: 90 volts Voltage Code: H
FFB14H0755K-- 7.5 PO 2.4 16 40.7 15
FFB24H0116K-- 11 18 3.6 11 33.5 20
FFB34H0166K-- 16 19 5.2 8 29.9 25
FFB44H0186K-- 18 26 6 7 27.1 32
FFB54H0276K-- 27 R68 9 5 22.9 40
(2 terminals)
FFB54H0276KJC 27 R68 9 5 22.9 40
(4 terminals)
Vndc 400V Vrms max.: 105 volts Voltage Code: I
FFB14I0625K-- 6.2 PO 2.5 17 40.5 15
FFB24I0755K-- 7.5 18 3.1 14 33.5 20
FFB34I0126K-- 12 19 5 9 29.9 25
FFB44I0156K-- 15 26 6.2 7 26.4 32
FFB54I0206K-- 20 R68 8.2 5.5 22.8 40
(2 terminals)
FFB54I0206KJC 20 R68 8.2 5.5 22.8 40
(4 terminals)
RATINGS AND PART NUMBER REFERENCE – POLYESTER DIELECTRIC
Climatic category 55/105/56 (IEC 60068)
Test voltage between terminals @ 25°C 1.5 x Vndc
Capacitance range Cn6.2μF to 110μF
Tolerance on Cn±10%
Rated DC voltage Vndc 75 to 400 V
Dielectric polyester
Max Stray Inductance 20nH
ELECTRICAL CHARACTERISTICS
POLYESTER DIELECTRIC
POLYESTER DIELECTRIC FOR LOW VOLTAGE DC FILTERING
50°C
60°C
70°C
95°C
85°C
105°C
Vw/Vndc
1.2
1.1
1.0
0.8
0.9
0.7
0.6
0.5
0.4
0.3
100 1000 10000 100000
Lifetime Expectancy (hours)
LIFETIME EXPECTANCY vs VOLTAGE
AND HOT SPOT TEMPERATURE
POLYESTER DIELECTRIC
Vw = Permanent working or operating DC voltage.
www.avx.com | 163
Medium Power Film Capacitors
FFB (RoHS Compliant) – Polypropylene Dielectric
50°C60°C
70°C
95°C
85°C
80°C
105°C
Vw/Vndc
1.2
1.1
1.0
0.8
0.7
0.9
100 1000 10000 100000
Lifetime Expectancy (hours)
LIFETIME EXPECTANCY vs VOLTAGE
AND HOT SPOT TEMPERATURE
POLYPROPYLENE DIELECTRIC
Vw = Working DC Voltage • Vn = Rated DC Voltage
Climatic category 55/105/56 (IEC 60068)
Test voltage between terminals @ 25°C 1.5 x Vndc
Capacitance range Cn1.5μF to 13μF
Tolerance on Cn±10%
Rated DC voltage Vndc 525 to 1100 V
Dielectric polypropylene
ELECTRICAL CHARACTERISTICS
POLYPROPYLENE DIELECTRIC
POLYPROPYLENE DIELECTRIC FOR INDUSTRIAL DC FILTERING
These capacitors have been designed principally for high and medium power DC filtering applications.
Part Number Capacitance Case Style Irms max. RSRth Typical
(μF) (A) (m) (°C/W) Weight (g)
Vndc 525V Vrms max.: 105 volts Voltage Code: J
FFB16J0395K-- 3.9 PO 5.1 30 45.7 15
FFB26J0565K-- 5.6 18 7.4 21 36.4 20
FFB36J0825K-- 8.2 19 10.9 15 32.6 25
FFB46J0106K-- 10 26 12 12 29.8 32
FFB56J0136K-- 13 R68 12 9 24.3 40
(2 terminals)
FFB56J0136KJC 13 R68 16.7 9 24.3 40
(4 terminals)
Vndc 720V Vrms max.: 120 volts Voltage Code: A
FFB16A0335K-- 3.3 PO 5.0 31 45.0 15
FFB26A0435K-- 4.3 18 6.5 24 36.2 20
FFB36A0625K-- 6.2 19 9.4 17 32.7 25
FFB46A0755K-- 7.5 26 11.4 14 29.9 32
FFB56A0106K-- 10 R68 12 11 24.2 40
(2 terminals)
FFB56A0106KJC 10 R68 15.2 11 24.2 40
(4 terminals)
Vndc 900V Vrms max.: 150 volts Voltage Code: C
FFB16C0205K-- 2 PO 3.6 41 45.7 15
FFB26C0275K-- 2.7 18 4.9 30 36.6 20
FFB36C0395K-- 3.9 19 7.2 21 32.9 25
FFB46C0515K-- 5.1 26 9.3 16 29.7 32
FFB56C0685K-- 6.8 R68 12 12 24.1 40
(2 terminals)
FFB56C0685KJC 6.8 R68 12.5 12 24.1 40
(4 terminals)
Vndc 1100V Vrms max.: 180 volts Voltage Code: L
FFB16L0155K-- 1.5 PO 3.3 45 45.2 15
FFB26L0185K-- 1.8 18 3.9 40 36.5 20
FFB36L0245K-- 2.4 19 5.3 28 33.4 25
FFB46L0305K-- 3 26 6.6 23 30.2 32
FFB56L0475K-- 4.7 R68 10.3 15 24.1 40
(2 terminals)
FFB56L0475KJC 4.7 R68 10.3 15 24.1 40
(4 terminals)
RATINGS AND PART NUMBER REFERENCE – POLYPROPYLENE DIELECTRIC
164 | www.avx.com
Medium Power Film Capacitors
FFV3 (RoHS Compliant)
The series uses a non-impregnated metallized polypropylene or
polyester dielectric, with the controlled self-healing process,
specially treated to have a very high dielectric strength in oper-
ating conditions up to 105°C.
The FFV3 has been designed for printed circuit board mounting.
DC FILTERING
APPLICATIONS
The FFV3 capacitors are particularly designed for DC filtering,
low reactive power.
STANDARDS
IEC 61071-1, IEC 61071-2: Power electronic capacitors
IEC 60384-16: Fixed metallized polypropylene
film dielectric DC capacitors
IEC 60384-16-1: Fixed metallized polypropylene
film dielectric DC capacitors
Assessment level E
IEC 60384-17: Fixed metallized polypropylene
film dielectric AC and pulse
capacitors
IEC 60384-17-1: Fixed metallized polypropylene
film dielectric AC and pulse
capacitors
Assessment level E
IEC 60384-2: Fixed metallized polyester capaci-
tors
LIFETIME EXPECTANCY
One unique feature of this technology (as opposed to electrolyt-
ics) is how the capacitor reacts at the end of its lifetime. Unlike
aluminum, electrolytics film capacitors do not have a cata-
strophic failure mode. Film capacitors simply experience a
parametric loss of capacitance of about 2%, with no risk of
short circuit.
Please note that this is theoretical, however, as the capacitor
continues to be functional even after this 2% decrease.
PACKAGING MATERIAL
Self-extinguishing plastic case (V0 = in accordance with UL 94)
filled thermosetting resin.
Self-extinguishing thermosetting resin (V0 = in accordance with UL
94; I3F2 = in accordance with NF F 16-101).
HOT SPOT CALCULATION
See Hot Spot Temperature, page 3.
θhot spot = θambient + (Pd+ Pt) x (Rth + 7.4)
θhot spot = θcase + (Pd+ Pt) x Rth
with Pd(Dielectric losses) = Q x tgδ0
[ 12x Cnx (Vpeak to peak)2x f ] x tgδ0
tgδ0(tan delta)
For polypropylene, tgδ0 = 2 x 10-4 for frequencies up
to 1MHz and is independent of temperatures. For
polyester, tgδ0 values are shown in graph 4 on page
3.
Pt(Thermal losses) = Rsx (Irms)2
where Cnin Farad Irms in Ampere f in Hertz
Vin Volt R
sin Ohm θin °C
Rth in °C/W Rth : Rth case/hot spot in °C/W
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/filmcaps.pdf
www.avx.com | 165
Medium Power Film Capacitors
FFV3 (RoHS Compliant) for Low Voltage Applications
HOW TO ORDER
FFV3
Series
4
Dielectric
4 = Polyester
6 = Polypropylene
D
Voltage Code
K
Capacitance
Tolerances
K = ±10%
––
Lead Styles
= Standard
Consult Factory
for Special
Options
D = 75Vdc
E = 100Vdc
F = 160Vdc
H = 300Vdc
I = 400Vdc
J = 500Vdc
A = 700Vdc
C = 900Vdc
L = 1100Vdc
Climatic category 40/105/56 (IEC 60068)
Test voltage between terminals @ 25°C 1.5 x Vndc during 10s
Test voltage between terminals and case @ 25°C “ @ 4 kVrms @ 50 Hz during 1 min.
Capacitance range Cn30μF to 160μF
Tolerance on Cn±10%
Rated DC voltage Vndc 75 to 400 V
Dielectric polyester
Max Stray Inductance 15nH
ELECTRICAL CHARACTERISTICS – POLYESTER DIELECTRIC
RATINGS AND PART NUMBER REFERENCE – POLYESTER DIELECTRIC
50°C
60°C
70°C
85°C
95°C
105°C
Vw/Vndc
1.2
1.1
1.0
0.8
0.9
0.7
0.6
0.5
0.4
0.3
100 1000 10000
Lifetime Expectancy (hours)
100000
Part Number Capacitance Irms max. (I2t)10 shots (I2t)1000 shots RsRth Typical
(μF) (A) (A2s) (A2s) (m) (°C/W) Weight (g)
Vndc = 75 V Vrms = 45 v max Voltage Code: D
FFV34D0137K-- 130 23 370 37 0.56 5.60 90
FFV34D0167K-- 160 28 560 56 0.47 5.00 90
Vndc = 100 V Vrms = 60 v max Voltage Code: E
FFV34E0806K-- 80 19 250 25 0.67 6.16 90
FFV34E0107K-- 100 24 390 39 0.55 5.42 90
Vndc = 160 V Vrms = 75 v max Voltage Code: F
FFV34F0556K-- 55 17 180 18 0.77 6.56 90
FFV34F0656K-- 65 20 260 26 0.66 5.97 90
Vndc = 300 V Vrms = 90 v max Voltage Code: H
FFV34H0406K-- 40 20 150 15 2.80 9.58 90
FFV34H0506K-- 50 26 230 23 2.25 8.46 90
Vndc = 400 V Vrms = 105 v max Voltage Code: I
FFV34I0306K-- 30 17 110 11 2.93 9.92 90
FFV34I0406K-- 40 23 200 20 2.21 8.41 90
LIFETIME EXPECTANCY vs Vw/VnAND HOT SPOT TEMPERATURE
POLYESTER DIELECTRIC
Vw = Permanent working
or operating DC voltage.
166 | www.avx.com
Medium Power Film Capacitors
FFV3 (RoHS Compliant) DC for Medium and High Voltage Applications
Climatic category 40/105/56 (IEC 60068)
Test voltage between terminals @ 25°C 1.5 x Vndc during 10s
Test voltage between terminals and case @ 25°C “ @ 4 kVrms @ 50 Hz during 1 min.
Capacitance range Cn6μF to 25μF
Tolerance on Cn±10%
Rated DC voltage Vndc 500 to 1100 V
Dielectric polypropylene
Max Stray Inductance 15nH
ELECTRICAL CHARACTERISTICS – POLYPROPYLENE DIELECTRIC
50°C
60°C
70°C
80°C
85°C
95°C
105°C
Vw/Vndc
1.9
1.2
1.1
0.7
1.0
0.8
100 1000 10000
Lifetime Expectancy (hours)
100000
LIFETIME EXPECTANCY vs Vw/VnAND HOT SPOT TEMPERATURE
POLYPROPYLENE DIELECTRIC
DC FILTERING
Vw = Permanent working or operating DC voltage.
RATINGS AND PART NUMBER REFERENCE – POLYESTER DIELECTRIC
Part Number Capacitance Irms max. (I2t)10 shots (I2t)1000 shots RsRth Typical
(μF) (A) (A2s) (A2s) (m) (°C/W) Weight (g)
Vndc = 500 V Vrms = 105 v max Voltage Code: J
FFV36J0206K-- 20 27 3200 320 5.88 3.53 90
FFV36J0256K-- 25 33 5000 500 4.72 3.14 90
Vndc = 700 V Vrms = 120 v max Voltage Code: A
FFV36A0146K-- 14 21 2000 200 7.34 3.73 90
FFV36A0206K-- 20 30 4200 420 5.15 3.05 90
Vndc = 900 V Vrms = 150 v max Voltage Code: C
FFV36C0106K-- 10 19 1600 160 8.21 3.37 90
FFV36C0136K-- 13 25 2800 280 6.33 2.91 90
Vndc = 1100 V Vrms = 180 v max Voltage Code: L
FFV36L0605K-- 6 13 800 80 11.4 3.71 90
FFV36L0905K-- 9 20 1900 190 7.61 2.92 90
www.avx.com | 167
HOT SPOT CALCULATION
θhot spot = θterminal + (Pd+ Pt) x Rth
with Pd(Dielectric losses) = Q x tgδ0 and tgδ0= 2.10, where Q = I2rms
C.2.π.f
Pt(Thermal losses) = Rsx Irms2
where Cnin Farad Irms in Ampere f in Hertz
Vin Volt R
sin Ohm θin °C
Rth in °C/W
Medium Power Film Capacitors
FFG Design (FFH-RoHS Compliant)
DIMENSIONS (CASE SIZES)
plastic case – Outputs: threaded insert M8 filled with
thermosetting resin
DC FILTERING
GENERAL DESCRIPTION
The FFG series uses a non-impregnated metallized dielectric,
which features a controlled self-healing process.
PACKAGING MATERIAL
Self-extinguishing plastic case (V0 = in accordance with UL 94)
filled thermosetting resin.Self-extinguishing thermosetting resin (V0
= in accordance with UL 94; I3F1 = in accordance with NF F 16-
101).
STANDARDS
IEC 61071-1, IEC 61071-2: Power electronic capacitors
IEC 60068-1: Environmental testing
UL 94: Fire requirement
TPC
Ø4 (0.16)
A
A
Tinned Output
Dimensions: millimeters (inches)
General Tolerance: ±2 (0.079)
M8/8
Plastic Case o
r
Resin Molding
Resin
h ±2.00
(0.079)
h ±2.00
(0.079)
H ±1.0
(0.040)
Ød
ØD max
H 62.5
Max Torque: 8.5Nm (M8)
HOW TO ORDER
FFG
Series
FFG = Standard
FFH = RoHS Compliant
8
Case
Size
8
6
Dielectric
6 = Polypropylene
K
Voltage
Code
K = 600Vdc
B = 800Vdc
C = 900Vdc
L = 1000Vdc
U = 1200Vdc
N = 1900Vdc
0376
Capacitance
Code
0 + pF code
0376 = 36μF
0256 = 25μF
0505 = 5μF
etc.
K
Capacitance
Tolerances
K = ±10%
––
Voltage
Range
––= < 1kV
J7 = ≥ 1kV
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/filmcaps.pdf
168 | www.avx.com
Medium Power Film Capacitors
FFG (FFH RoHS Compliant)
50°C
70°C
85°C
95°C
105°C
Vw/Vndc
1.8
1.6
1.4
1.2
1.0
0.8
0.6
100 1000 10000
Lifetime Expectancy (hours)
100000 1000000
Cn Height h DdI
2tI
rms RsRth Typical
Part Number (μF) ±1 ±2 max
)
±0.50 max max (mΩ) (°C/W)
Weight (g
(±0.039) (±0.079) (±0.020) (A2s) (A)
Undc 600 V (Voltage Code K)
FFG86K0376K-- 37 52 (2.072) 5 (0.197) 60 (2.362) 22 (0.866) 4 28 1.3 10.1 190
FFG86K0586K-- 58 52 (2.072) 5 (0.197) 72 (2.835) 22 (0.866) 10 44 1 6.4 260
FFG86K0806K-- 80 52 (2.072) 5 (0.197) 82 (3.228) 22 (0.866) 20 61 0.7 4.9 320
FFG86K0167K-- 160 62.5 (2.461) 5 (0.197) 92 (3.622) 22 (0.866) 32 76 0.8 5.8 475
Undc 800 V (Voltage Code B)
FFG86B0236K-- 23 52 (2.072) 5 (0.197) 60 (2.362) 22 (0.866) 3 26 1.7 10.1 190
FFG86B0376K-- 37 52 (2.072) 5 (0.197) 72 (2.835) 22 (0.866) 8 43 1.2 6.5 260
FFG86B0516K-- 51 52 (2.072) 5 (0.197) 82 (3.228 22 (0.866) 15 59 0.9 4.8) 320
FFG86B0107K-- 100 62.5 (2.461) 5 (0.197) 92 (3.622) 22 (0.866) 24 73 1 5.9 475
Undc 900 V (Voltage Code C)
FFG86C0166K-- 16 52 (2.072) 5 (0.197) 60 (2.362) 22 (0.866) 2.8 27 2 9.8 190
FFG86C0266K-- 26 52 (2.072) 5 (0.197) 72 (2.835) 22 (0.866) 7 44 1.3 6.5 260
FFG86C0356K-- 35 52 (2.072) 5 (0.197) 82 (3.228) 22 (0.866) 13 60 1 4.8 320
FFG86C0706K-- 70 62.5 (2.461) 5 (0.197) 92 (3.622) 22 (0.866) 20 75 1.2 5.8 475
LIFETIME EXPECTANCY vs HOT SPOT TEMPERATURE AND VOLTAGE
Vw = Permanent working or operating DC voltage.
Operating temperature: –40°C + 105°C
Storage temperature: –55°C + 85°C
Capacitance range: 5μF to 160μF
Rated DC voltage Vndc: 600 to 900 V
Capacitance tolerance: ±10%
Test voltage between terminals: @ 25°C: 1.5 x Undc during 10s
Test voltage between terminals and case: @ 25°C: @ 4 kVrms @ 50 Hz during 1 mn (test type)
Dielectric Polypropylene
ELECTRICAL CHARACTERISTICS
RATINGS AND PART NUMBER REFERENCE (600V TO 900V)
Dimensions millimeters (inches)
www.avx.com | 169
Medium Power Film Capacitors
FFG (FFH RoHS Compliant)
50°C
70°C
85°C
95°C
100°C
105°C
1.6
1.5
1.4
1.3
1.2
1.1
1.0
0.9
0.8
0.7
0.6
100 1,000 10,000
Lifetime Expectancy (Hours)
100,000 1,000,000
VW/Vndc
LIFETIME EXPECTANCY vs HOT SPOT TEMPERATURE AND VOLTAGE
Vw = Permanent working or operating DC voltage.
Operating temperature: –40°C + 105°C
Storage temperature: –55°C + 85°C
Capacitance range: 5μF to 160μF
Rated DC voltage Vndc: 1000 to 1900 V
Capacitance tolerance: ±10%
Test voltage between terminals: @ 25°C: 1.5 x Undc during 10s
Test voltage between terminals and case: @ 25°C: @ 4 kVrms @ 50 Hz during 1 mn (test type)
Dielectric Polypropylene
ELECTRICAL CHARACTERISTICS
Dimensions millimeters (inches)
Cn Height h DdI
2tI
rms RsRth Typical
Part Number (μF) ±1 ±2 max
)
±0.50 max max (mΩ) (°C/W)
Weight (g
(±0.039) (±0.079) (±0.020) (A2s) (A)
Undc 1000 V (Voltage Code K)
FFG86L0256KJ7 25 52 (2.072) 5 (0.197) 60 (2.362) 22 (0.866) 1.9 21 3.6 9.9 190
FFG86L0406KJ7 40 52 (2.072) 5 (0.197) 72 (2.835) 22 (0.866) 5 34 2.32 6.4 260
FFG86L0556KJ7 55 52 (2.072) 5 (0.197) 82 (3.228) 22 (0.866) 9.5 46 1.74 4.7 320
FFG86L0117KJ7 110 62.5 (2.461) 5 (0.197) 92 (3.622) 22 (0.866) 14.9 58 1.86 5.7 475
Undc 1200 V (Voltage Code U)
FFG86U0176KJ7 17 52 (2.072) 5 (0.197) 60 (2.362) 22 (0.866) 1.3 19 4.33 9.9 190
FFG86U0276KJ7 27 52 (2.072) 5 (0.197) 72 (2.835) 22 (0.866) 3.3 30 2.8 6.5 260
FFG86U0376KJ7 37 52 (2.072) 5 (0.197) 82 (3.228) 22 (0.866) 6.2 41 2.1 4.8 320
FFG86U0766KJ7 76 62.5 (2.461) 5 (0.197) 92 (3.622) 22 (0.866) 10.3 53 2.2 5.6 475
Undc 1900 V (Voltage Code N)
FFG86N0505KJ7 5 52 (2.072) 5 (0.197) 60 (2.362) 22 (0.866) 1.7 19 2.77 11.3 190
FFG86N0905KJ7 9 52 (2.072) 5 (0.197) 72 (2.835) 22 (0.866) 5.5 35 1.63 6.6 260
FFG86N0126KJ7 12 52 (2.072) 5 (0.197) 82 (3.228) 22 (0.866) 9.9 46 1.27 5 320
FFG86N0256KJ7 25 62.5 (2.461) 5 (0.197) 92 (3.622) 22 (0.866) 18 63 1.2 5.2 475
RATINGS AND PART NUMBER REFERENCE (600V TO 900V)
170 | www.avx.com
Medium Power Film Capacitors
FFVE/FFVI (FFWE/FFWI RoHS Compliant)
PACKAGING MATERIAL
Self-extinguishing plastic case (V0 = in accordance
with UL 94) filled thermosetting resin.
Self-extinguishing thermosetting resin (V0 = in
accordance with UL 94; I3F1 = in accordance with
NF F 16-101).
*Mounting with Thermal Interface Grease
Dimensions: millimeters (inches)
General Tolerance: ±0.5 (0.020)
Tightening Torque
3 N.m max
Ø16 (0.63)min
Ø84
(3.307) max
Ø5.5 (0.217)
Ø20 (0.787)
±1 (0.039)
Plastic Case
Resin
Tinned Output
22
(0.866)
0.6
(0.024)
20
(0.787)
71.7 (2.822)
84.5 (3.327) max
71.7 (2.822)
84.5 (3.327) max
5 (0.197)
5 (0.197)
1.0
(0.039)
H±1
(0.039)
5 (0.197)
5 (0.197)
H±1
(0.039)
45±1
(1.772±0.039)
101
(3.976)
Max Torque 8.5 N.m for M8
Max Torque 2.5 N.m for M5
– – Male Threaded
Terminal Code
JE or 7X
Female Threaded
M8
M5x7.5
LABEL LABEL
DIMENSIONS
GENERAL DESCRIPTION
The FFV capacitor is specifically designed for DC fil-
tering, low reactive power.
The series uses a non-impregnated metallized
polypropylene or polyester dielectric, which features a
controlled self-healing process, specially treated to
have a very high dielectric strength in operating con-
ditions up to 105°C.
The FFV special design gives this series a very low
level of stray inductance (18 nH to 40 nH).
Furthermore, the performance levels of the FFVE
capacitor makes them a very interesting alternative to
electrolytic technology, because they can withstand
much higher levels of surge voltage, very high rms
current ratings, and longer lifetimes.
FFVE capacitors meet the Level 2 requirement of the fire behavior standard NF F 16-102.
Rs(f) = (Rs-a) + k a
H=34: a 0.20
H=40: a 0.21
H=51: a 0.23
H=64: a 0.24
3.5
3.0
2.5
2.0
1.5
1.0 110
Frequency (kHz)
K
100 1000
Rs(f) vs FREQUENCY
For frequency higher than 1 kHz
use following curve
Also available with
threaded female
connections -
M5 x 7.5mm max
Torque 2.5Nm
HOW TO ORDER
FFVE
Series
FFVE = Standard
FFVI = Standard
FFWE = RoHS Compliant
FFWI = RoHS Compliant
4
Dielectric
4 = Polyester
6 = Polypropylene
H
Voltage Code
0187
Capacitance
Code
0 + pF code
0187 = 180μF
0356 = 35μF
etc.
K
Capacitance
Tolerances
K = ±10%
––
Terminal Code
JE = Female Threaded
= Male Threaded
• FFVE/FFWE – Polyester
• FFVE/FFWE – Polypropylene
< 1kv
• FFVI/FFWI
7X = Female Threaded
J7 = Male Threaded
• FFVE/FFWE – Polypropylene
≥ 1kv
H = 300V
I = 400V
J = 500V
K = 600V
A = 700V
B = 800V
C = 900V
L = 1000V (FFVE/FFWE)
L = 1100V (FFVI/FFWI)
U = 1200V
N = 1900V
HOT SPOT CALCULATION
See Hot Spot Temperature, page 3.
θhot spot = θambient + (Pd+ Pt) x Rth
with Pd(Dielectric losses) = Q x tgδ0
Q x tgδ0[ 12x Cnx (Vpeak to peak)2x f ] x tgδ0
tgδ0(tan delta)
For polypropylene, tgδ0 = 2 x 10-4 for frequen-
cies up to 1MHz and is independent of temper-
atures. For polyester, tgδ0 values are shown in
graph 4 on page 3.
Pt(Thermal losses) = Rsx (Irms)2
where Cnin Farad Irms in Ampere f in Hertz
Vin Volt R
sin Ohm θin °C
Rth in °C/W
θcase = bottom center of case
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/filmcaps.pdf
www.avx.com | 171
Medium Power Film Capacitors
FFVE/FFVI (FFWE/FFWI RoHS Compliant)
*Change “--” to “JE” for female connectors M5 x 7.5mm
LIFETIME EXPECTANCY
FFVE POLYESTER
50°C
60°C
70°C
85°C
95°C
105°C
Vw/Vndc
1.5
1.4
1.3
1.2
1.1
1.0
0.4
0.5
0.6
0.7
0.8
0.9
100 1000 10000
Lifetime Expectancy (hours)
100000 1000000
Vw: permanent working or operating DC voltage.
The FFVE for low voltage DC filtering are polyester dielectric capacitors.
Working temperature -40°C to +105°C (according to the power to be dissipated)
Capacitance range 100μF to 400μF
Capacitance tolerance ±10%
Rated DC voltage 300 to 400 V
Test voltage between terminals @ 25°C 1.5 x Vndc 10s
Insulation voltage between
shorted terminals and earth 7 kVrms/60sec/50Hz
Dielectric Polyester
ELECTRICAL CHARACTERISTICS – FFVE/FFWE POLYESTER DIELECTRIC
Dimensions millimeters (inches)
RATINGS AND PART NUMBER REFERENCE – POLYESTER DIELECTRIC
Part Number* Capacitance Height Irms max. Ls max. Rs Rth Typical
(μF) (A) (nH) (m) (°C/W) Weight (g)
Vndc 300 volts (Voltage Code H)
FFVE4H0187K-- 180 34 (1.339) 100 18 0.8 4.7 300
FFVE4H1956K-- 195 34 (1.339) 100 18 0.8 4.4 300
FFVE4H0257K-- 250 40 (1.575) 100 25 0.6 5.2 350
FFVE4H0357K-- 350 51 (2.008) 100 32 0.8 7.2 420
FFVE4H0407K-- 400 51 (2.008) 110 32 0.8 7.1 420
Vndc 400 volts (Voltage Code I)
FFVE4I0107K-- 100 34 (1.339) 80 18 0.7 4.7 300
FFVE4I0127K-- 120 34 (1.339) 100 18 0.6 4.1 300
FFVE4I0157K-- 150 40 (1.575) 100 25 0.7 5.0 350
FFVE4I0187K-- 180 51 (2.008) 80 32 1.0 8.5 420
FFVE4I0227K-- 220 51 (2.008) 100 32 0.9 7.2 420
172 | www.avx.com
Medium Power Film Capacitors
FFVE/FFVI (FFWE/FFWI RoHS Compliant)
The FFVE for low voltage DC filtering are polyester dielectric capacitors.
Working temperature -40°C to +105°C (according to the power to be dissipated)
Capacitance range 12μF to 220μF
Capacitance tolerance ±10%
Rated DC voltage 600 to 1900 V
Test voltage between terminals @ 25°C 1.5 x Vndc 10s
Insulation voltage between
shorted terminals and earth 7 kVrms/60sec/50Hz
Dielectric Polypropylene
ELECTRICAL CHARACTERISTICS – FFVE/FFWE POLYPROPYLENE DIELECTRIC
Dimensions millimeters (inches)
*Change “--” to “JE” for female connectors M5 x 7.5mm
*Change “J7” to “7X” for female connectors M5 x 7.5mm
LIFETIME EXPECTANCY FOR FFVE POLYPROPYLENE
Vw: permanent working or operating DC-voltage.
50°C
70°C
85°C
95°C
105°C
Vw/Vndc
1.6
1.8
1.4
1.2
1.0
0.8
0.6
100 1000 10000
Lifetime Expectancy (hours)
100000 1000000
-- and JE
Vw: permanent working or operating DC-voltage.
70°C
85°C
95°C
105°C
100°C
50°C
Vw/Vndc
1.6
1.5
1.4
1.3
1.2
1.1
1.0
0.6
0.7
0.8
0.9
100 1000 10000
Lifetime Expectancy (hours)
100000 1000000
J7 and 7X
RATINGS AND PART NUMBER REFERENCE – POLYESTER DIELECTRIC
Part Number* Capacitance Height Irms max. Ls max. Rs Rth Typical
(μF) (A) (nH) (m) (°C/W) Weight (g)
Vndc 600 volts (Voltage Code K)
FFVE6K0256K-- 25 34 (1.339) 90 18 0.7 4.3 300
FFVE6K0107K-- 100 40 (1.575) 100 25 0.6 4.8 350
FFVE6K0157K-- 150 51 (2.008) 110 32 0.9 6.9 420
FFVE6K0227K-- 220 64 (2.520) 100 40 1.0 8.4 500
Vndc 800 volts (Voltage Code B)
FFVE6B0666K-- 66 40 (1.575) 100 25 0.7 4.7 350
FFVE6B0107K-- 100 51 (2.008) 90 32 1.0 6.7 420
FFVE6B0147K-- 140 64 (2.520) 100 40 1.3 8.4 500
Vndc 900 volts (Voltage Code C)
FFVE6C0126K-- 12 34 (1.339) 70 18 0.9 4.4 300
FFVE6C0386K-- 38 34 (1.339) 100 18 1.6 3.9 300
FFVE6C0476K-- 47 40 (1.575) 100 25 0.8 4.6 350
FFVE6C0706K-- 70 51 (2.008) 100 32 1.2 6.7 420
FFVE6C0107K-- 100 64 (2.520) 90 40 1.1 8.2 500
Vndc 1000 volts (Voltage Code L)
FFVE6L0666KJ7 66 40 (1.575) 70 25 1.5 5.1 350
FFVE6L0107KJ7 100 51 (2.008) 64 32 2.0 7.3 420
FFVE6L0147KJ7 140 64 (2.520) 51 40 2.5 9.2 500
Vndc 1200 volts (Voltage Code U)
FFVE6U0476KJ7 47 40 (1.575) 66 25 1.7 4.9 350
FFVE6U0706KJ7 70 51 (2.008) 59 32 2.4 7.2 420
FFVE6U0107KJ7 100 64 (2.520) 49 40 2.9 8.9 500
Vndc 1900 volts (Voltage Code N)
FFVE6N0156KJ7 15 40 (1.575) 73 25 1.1 5.2 350
FFVE6N0246KJ7 24 51 (2.008) 73 32 1.3 6.5 420
FFVE6N0356KJ7 35 64 (2.520) 67 40 1.6 8.4 500
www.avx.com | 173
Medium Power Film Capacitors
FFVE/FFVI (FFWE/FFWI RoHS Compliant)
The FFVE for low voltage DC filtering are polyester dielectric capacitors.
Working temperature -40°C to +105°C (according to the power to be dissipated)
Capacitance range 47μF to 275μF
Capacitance tolerance ±10%
Rated DC voltage 500 to 1100V
Test voltage between terminals @ 25°C 1.25 x Vndc 10s
Insulation voltage between
shorted terminals and earth 7 kVrms/60sec/50Hz
Dielectric Polypropylene
ELECTRICAL CHARACTERISTICS – FFVI/FFWI POLYPROPYLENE DIELECTRIC
Dimensions millimeters (inches)
LIFETIME EXPECTANCY FOR FFVI
Vw: permanent working or operating DC-voltage.
50°C
70°C
85°C
95°C
105°C
Vw/Vndc
1.2
1.1
1.0
0.9
0.8
0.7
0.6
0.5
100 1000 10000
Lifetime Expectancy (hours)
100000
RATINGS AND PART NUMBER REFERENCE – POLYESTER DIELECTRIC
Part Number* Capacitance Height Irms max. Ls max. Rs Rth Typical
(μF) (A) (nH) (m) (°C/W) Weight (g)
Vndc 500 volts (Voltage Code J)
FFVI6J1256K-- 125 40 (1.575) 90 25 0.6 5.0 350
FFVI6J0207K-- 200 51 (2.008) 90 32 0.8 6.7 420
FFVI6J2756K-- 275 64 (2.520) 90 40 0.9 8.7 500
Vndc 700 volts (Voltage Code A)
FFVI6A0107K-- 100 40 (1.575) 100 25 0.6 4.8 350
FFVI6A0157K-- 150 51 (2.008) 100 32 0.9 6.9 420
FFVI6A0227K-- 220 64 (2.520) 100 40 1.0 8.4 500
Vndc 900 volts (Voltage Code C)
FFVI6C0666K-- 66 40 (1.575) 100 25 0.7 4.7 350
FFVI6C0107K-- 100 51 (2.008) 90 32 1.0 6.7 420
FFVI6C0147K-- 140 64 (2.520) 100 40 1.3 8.4 500
Vndc 1100 volts (Voltage Code L)
FFVI6L0476K-- 47 40 (1.575) 100 25 0.8 4.6 350
FFVI6L0706K-- 70 51 (2.008) 100 32 1.2 6.7 420
FFVI6L0107K-- 100 64 (2.520) 90 40 1.1 8.2 500
174 | www.avx.com
FFVS series is a specific range of DC filtering capacitors
designed for use in high frequency, high ripple applications
beyond the limits of standard FFVE or FFVI.
Typical applications include DC power supply for induction
heating, resonant DC power supply for scanner, X-ray
machines, etc.
Due to the sophisticated internal design, stray inductance is
extremely low, between 8 and 13nH.
FFVS products are RoHs compliant.
PACKAGING MATERIAL
Self extinguishing plastic case (V0: in accordance with UL 94)
filled thermosetting resin.
Self extinguishing thermosetting resin (V0: in accordance with
UL 94; I3F1: in accordance with NF F 16-101).
DIMENSIONS
Threaded female terminals version M5 x 7.5mm are also avail-
able, To order, the suffix becomes “JE” instead of “--”
84.5 (3.327) max
71.7 (2.823)
5.00
(0.197)
H+6.50±2.00
(H+0.256±0.079)
H±1.00
(H±0.039)
0.60
(0.024)
Ø84
(3.307)
M5x7.50
45.0±1.00
(1.772±0.039)
TPC
LABEL
84.5 (3.327) max
M8
20.0±1.00
(0.787±0.039)
H+6.00±2.00
(H+0.236±0.079)
45.0±1.00
(1.772±0.039)
TPC
LABEL
5.00
(0.197)
71.7 (2.823)
H±1.00
(H±0.039)
Coded date according to CEI62
Max Torque M5: 2.5Nm
Max Torque M8: 8.5Nm
* Mounting with Thermal interface Grease
Dimensions in millimeters (inches)
General Tolerance ±0.5 (±0.002)
101 (3.976)
(0.024)
Tightening Torque:
3N.m max
Plastic Case
Ø16.0 (0.630) min
Tinned Output
Resin
Ø5.50 [x2]
(0.217 [x0.079])
(3.307)
Threaded Female
Terminal Code JE
Threaded Male
Terminal Code --
Medium Power Film Capacitors
FFVS (RoHS Compliant)
Low Inductance Range Capacitor for Power Electronics
See Hot Spot Temperature, page 3.
θhot spot = θambient + (Pd+ Pt) x Rth
with Pd(Dielectric losses) = Q x tgδ0
Q x tgδ0[ 12x Cnx (Vpeak to peak)2x f ] x tgδ0
tgδ0(tan delta)
For polypropylene, tgδ0 = 2 x 10-4 for frequencies
up to 1MHz and is independent of temperatures.
For polyester, tgδ0 values are shown in graph 4 on
page 3.
Pt(Thermal losses) = Rsx (Irms)2
where Cnin Farad Irms in Ampere f in Hertz
Vin Volt R
sin Ohm θin °C
Rth in °C/W
θcase = bottom center of case
HOW TO ORDER
FFVS
Series
6
Dielectric
6 = Polypropylene
K
Voltage
Code
K = 600V
B = 800V
C = 900V
L = 1000V
U = 1200V
N = 1900V
0226
Capacitance Code
K
Capacitance
Tolerances
K = ±10%
––
Terminal Code
= Male Threaded
JE = Female Threaded
Capacitance Values
with 2 significant digits:
0 + pF code
0226 = 22μF
0147 = 140μF
etc.
Capacitance Values
with 3 significant digits:
1956 = 195μF
1286 = 138μF
1356 = 135μF
HOT SPOT CALCULATION
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/filmcaps.pdf
www.avx.com | 175
Working temperature -40°C +105°C (according to the power to be dissipated)
Capacitance range CN22 μF to 200 μF
Tolerance on CN± 10 %
Rated dc voltage UNdc 600V to 1900V
Test voltage between terminals @ 25°C: 1.5 x UNdc during 10s
Insulation voltage between shorted terminals and earth (type test) @ 4 kVrms @ 50Hz during 1 min.
ELECTRICAL CHARACTERISTICS
Part Number Capacitance Height Irms I2tL
sRSRth Typical
(μF) mm (inches) (A) (A2s) max. (mΩ) (ºC/W) Weight (g)
(nH)
Undc 600 volts (Voltage Code K)
FFVS6K0226K-- 22 34 (1.339) 78 11.5 8 0.74 4.2 320
FFVS6K0906K-- 90 40 (1.575) 84 24 9 0.60 4.9 345
FFVS6K0147K-- 140 51 (2.008) 82 23.5 11 0.83 6.8 405
FFVS6K1956K-- 195 64 (2.520) 84 24 13 1.04 8.6 475
Undc 800 volts (Voltage Code B)
FFVS6B0586K-- 58 40 (1.575) 83 19 9 0.72 4.9 345
FFVS6B0926K-- 92 51 (2.008) 83 19 11 0.99 6.7 405
FFVS6B1286K-- 128 64 (2.520) 84 19.5 13 1.25 8.5 475
Undc 900 volts (Voltage Code C)
FFVS6C0306K-- 30 34 (1.339) 56 7 8 1.55 4.2 320
FFVS6C0406K-- 40 40 (1.575) 85 16.5 9 0.85 5.0 345
FFVS6C0656K-- 65 51 (2.008) 86 17 11 1.15 6.7 405
FFVS6C0906K-- 90 64 (2.520) 87 17 13 1.46 8.5 475
Undc 1000 volts (Voltage Code L)
FFVS6L0536K-- 53 40 (1.575) 61 9.5 9 1.56 4.9 345
FFVS6L0956K-- 95 51 (2.008) 63 11 11 1.98 6.7 405
FFVS6L1356K-- 135 64 (2.520) 65 11.5 13 2.42 8.3 475
Undc 1200 volts (Voltage Code U)
FFVS6U0406K-- 40 40 (1.575) 57 7.5 9 1.77 4.9 345
FFVS6U0656K-- 65 51 (2.008) 57 7.5 11 2.38 6.8 405
FFVS6U0866K-- 86 64 (2.520) 58 7 13 3.02 8.5 475
Undc 1900 volts (Voltage Code N)
FFVS6N0146K-- 14 40 (1.575) 66 12.5 10 1.05 4.9 345
FFVS6N0226K-- 22 51 (2.008) 68 13.5 13 1.26 6.3 405
FFVS6N0326K-- 32 64 (2.520) 68 13.5 16 1.58 8.1 475
Medium Power Film Capacitors
FFVS (RoHS Compliant)
Low Inductance Range Capacitor for Power Electronics
RATINGS AND PART NUMBER REFERENCE
Dimensions millimeters (inches)
LIFETIME EXPECTANCY
Vw: permanent working or operating DC-voltage.
50ºC
70ºC
85ºC
95ºC
105ºC
100 1000 10000
Lifetime Expectancy (hours)
100000 1000000
Vw/Vndc
1.8
1.6
1.4
1.0
1.2
0.8
0.6
FFVS for 600V, 800V and 900V
Vw: permanent working or operating DC-voltage.
50ºC
70ºC
85ºC
95ºC
100ºC
105ºC
Vw/Vndc
1.6
1.5
1.4
1.2
1.3
1.1
1.0
0.9
0.8
0.7
0.6
100 1000 10000
Lifetime Expectancy (hours)
100000 1000000
FFVS for 1000V, 1200V and 1900V
176 | www.avx.com
Capacitors for Power Electronics
FFLI (RoHS Compliant)
USUAL APPLICATIONS
The FFLI capacitor is specifically designed for DC filtering,
PACKAGING MATERIAL
Aluminium cylindrical case filled thermosetting resin.
Self extinguishing thermosetting resin (V0 : in accordance with
UL 94 ; M2F1 : in accordance with NF F 16-101).
Self extinguishing plastic cover (V0 : in accordance with UL 94)
ROHS components
LIFETIME EXPECTANCY
One unique feature of this technology (as opposed to
electrolytics) is how the capacitor reacts at the end of its lifetime.
With an electrolytic there is a strong risk of explosion of the case.
However with our line of film capacitors, the capacitor will simply
experience at the end of life a loss of capacitance of about 5%,
with no risk of explosion.
Please note that this is theoretical, however, the capacitor
continues to be functional even after this 5% decrease.
Expected life time for FFLI range:
100 000 Hrs / Undc / Hot-spot temperature = 65°C.
STANDARDS
IEC 61071: Power electronic capacitors
IEC 60068-1: Environmental testing
IEC 61373: Shocks and vibrations
UL 94: Fire requirements
UL810: Capacitors
HOT SPOT CALCULATION
See Hot Spot Temperature, page 3.
For all applications, the hot spot temperature must be lower than
95°C.
θhot spot = θambient + [tgδ.Q+Rs.(Irms)2].Rth
With:
Q : Reactive power in Var
RSin Ohm
Irms in Ampere
Rth : Rth ambient / hot spot in °C/W
tg δ0.(10-4) is the tangent of loss angle for polypropylene
dielectric. Polypropylene has a constant dielectric losses
factor of 2x10-4 irrespective of temperature and frequency
(up to 1 MHz).
θ Ambient : Ambient Temperature in ºC
M6 x 10
Marking Marking
M8 x 20
M12 x 16
H1 – 10
H1± 2
1.5
D±2
Aluminium can
MARKING
Capacitance value Max Torque M6 = 4.5.Nm
Nominal dc voltage Max Torque M8 = 8.5Nm
Maximum rms current Max Torque M12 = 15Nm
Batch number
Coded date according IEC62
DIMENSIONS
Terminal Code JE
Threaded Female
Terminal Code --
Threaded Male
A±1
Ø15
Self ex
plas
Tinned
outputs
Ø15
Self extinguishing
plastic cover
Tinned
outputs
HOW TO ORDER
FFLI
Series
6
Dielectric
6 = Polypropylene
L
Voltage
Code
L = 1000V
U = 1200V
Q = 1400V
0337
Capacitance Code
Capacitance Values with
2 significant digits:
0 + pF code
0397 = 390μF
0167 = 160μF
etc.
K
Capacitance
Tolerances
K = ±10%
––
Terminal Code
= Male Threaded
JE = Female Threaded
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/filmcaps.pdf
www.avx.com | 177
Capacitors for Power Electronics
FFLI Design
Part Number
Capacitance
DH1AIrms I2tL
SRSRth Typical
(μF) (A) (A2s) max. (nH) (m) (°C/W) Weight (g)
Undc 800V
FFLI6B0297K-- 290 75 (2.953) 105 (4.134) 32 (1.260) 50 13 60 4.1 4.1 500
FFLI6B0397K-- 390 85 (3.346) 105 (4.134) 32 (1.260) 62 23 60 2.9 3.6 600
FFLI6B0507K-- 500 75 (2.953) 155 (6.102) 32 (1.260) 45 13 85 5.6 3.6 600
FFLI6B0687K-- 680 85 (3.346) 155 (6.102) 32 (1.260) 53 24 85 4.3 3.3 900
FFLI6B0817K-- 810 85 (3.346) 180 (7.087) 32 (1.260) 50 23 100 5.1 3.1 1100
FFLI6B1007K-- 1000 100 (3.937) 155 (6.102) 50 (13.78) 65 52 85 3.2 3.0 1200
FFLI6B1207K-- 1200 100 (3.937) 180 (7.087) 50 (13.78) 61 52 100 3.7 2.9 1500
FFLI6B1357K-- 1350 116 (4.567) 155 (6.102) 50 (13.78) 77 95 85 2.5 2.6 1700
FFLI6B1607K-- 1600 116 (4.567) 180 (7.087) 50 (13.78) 72 93 100 3.0 2.6 2000
FFLI6B1907K-- 1900 116 (4.567) 240 (9.449) 50 (13.78) 110 300 140 1.4 2.4 2600
FFLI6B2407K-- 2400 116 (4.567) 290 (11.42) 50 (13.78) 100 300 170 1.6 2.2 3200
FFLI6B3007K-- 3000 116 (4.567) 340 (13.39) 50 (13.78) 100 320 200 1.9 2.0 3800
Undc 1000V
FFLI6L0197K-- 190 75 (2.953) 105 (4.134) 32 (1.260) 46 8 60 4.5 4.1 200
FFLI6L0267K-- 260 85 (3.346) 105 (4.134) 32 (1.260) 56 15 60 3.4 3.6 300
FFLI6L0337K-- 330 75 (2.953) 155 (6.102) 32 (1.260) 40 8 85 6.8 3.6 600
FFLI6L0457K-- 450 85 (3.346) 155 (6.102) 32 (1.260) 48 16 85 5.2 3.3 900
FFLI6L0547K-- 540 85 (3.346) 180 (7.087) 32 (1.260) 45 16 100 6.1 3.1 1100
FFLI6L0657K-- 650 100 (3.937) 155 (6.102) 50 (13.78) 60 33 85 3.8 3.0 1200
FFLI6L0787K-- 780 100 (3.937) 180 (7.087) 50 (13.78) 55 33 100 4.5 2.9 1500
FFLI6L0907K-- 900 116 (4.567) 155 (6.102) 50 (13.78) 72 64 85 2.9 2.6 1700
FFLI6L1107K-- 1100 116 (4.567) 180 (7.087) 50 (13.78) 68 66 100 3.4 2.6 2000
FFLI6L1307K-- 1300 116 (4.567) 240 (9.449) 50 (13.78) 100 210 140 1.5 2.4 2600
FFLI6L1807K-- 1800 116 (4.567) 290 (11.42) 50 (13.78) 95 200 170 1.9 2.2 3200
FFLI6L2207K-- 2200 116 (4.567) 340 (13.39) 50 (13.78) 95 200 200 2.2 2.0 3800
Undc 1150V
FFLI6U0157K-- 150 75 (2.953) 105 (4.134) 32 (1.260) 44 6 60 5.0 4.1 500
FFLI6U0207K-- 200 85 (3.346) 105 (4.134) 32 (1.260) 53 11 60 3.9 3.6 600
FFLI6U0267K-- 260 75 (2.953) 155 (6.102) 32 (1.260) 39 7 85 7.4 3.6 600
FFLI6U0357K-- 350 85 (3.346) 155 (6.102) 32 (1.260) 45 12 85 5.9 3.3 900
FFLI6U0437K-- 430 85 (3.346) 180 (7.087) 32 (1.260) 43 12 100 6.8 3.1 1100
FFLI6U0537K-- 530 100 (3.937) 155 (6.102) 50 (13.78) 57 27 85 4.1 3.0 1200
FFLI6U0637K-- 630 100 (3.937) 180 (7.087) 50 (13.78) 53 27 100 4.9 2.9 1500
FFLI6U0727K-- 720 116 (4.567) 155 (6.102) 50 (13.78) 69 51 85 3.2 2.6 1700
FFLI6U0867K-- 860 116 (4.567) 180 (7.087) 50 (13.78) 64 50 100 3.8 2.6 2000
FFLI6U1007K-- 1000 116 (4.567) 240 (9.449) 50 (13.78) 95 160 140 1.7 2.4 2600
FFLI6U1307K-- 1300 116 (4.567) 290 (11.42) 50 (13.78) 90 160 170 2.0 2.2 3200
FFLI6U1607K-- 1600 116 (4.567) 340 (13.39) 50 (13.78) 90 160 200 2.3 2.0 3800
Undc 1400V
FFLI6Q1056K-- 105 75 (2.953) 105 (4.134) 32 (1.260) 41 5 60 5.8 4.1 500
FFLI6Q0147K-- 140 85 (3.346) 105 (4.134) 32 (1.260) 50 8 60 4.5 3.6 600
FFLI6Q1856K-- 185 75 (2.953) 155 (6.102) 32 (1.260) 35 5 85 8.8 3.6 600
FFLI6Q0257K-- 250 85 (3.346) 155 (6.102) 32 (1.260) 42 9 85 6.7 3.3 900
FFLI6Q0307K-- 300 85 (3.346) 180 (7.087) 32 (1.260) 40 9 100 7.9 3.1 1100
FFLI6Q0367K-- 360 100 (3.937) 155 (6.102) 50 (13.78) 52 18 85 4.8 3.0 1200
FFLI6Q0447K-- 440 100 (3.937) 180 (7.087) 50 (13.78) 50 19 100 5.6 2.9 1500
FFLI6Q0507K-- 500 116 (4.567) 155 (6.102) 50 (13.78) 65 36 85 3.7 2.6 1700
FFLI6Q0607K-- 600 116 (4.567) 180 (7.087) 50 (13.78) 60 35 100 4.3 2.6 2000
FFLI6Q0707K-- 700 116 (4.567) 240 (9.449) 50 (13.78) 90 120 140 1.9 2.4 2600
FFLI6Q0907K-- 900 116 (4.567) 290 (11.42) 50 (13.78) 90 120 170 2.3 2.2 3200
FFLI6Q1107K-- 1100 116 (4.567) 340 (13.39) 50 (13.78) 85 120 200 2.7 2.0 3800
ELECTRICAL CHARACTERISTICS
Dry with controlled self-healing metallized polypropylene dielectric.
Climatic Category 40/95/56 (IEC68)
Working temperature -40°C / + 95°C (according to the power dissipated )
Storage temperature -40°C / +85°C
Test voltage between terminals @ 25°C: 1.5 x Undc during 10s
Test voltage between terminals and case @ 25°C:@ 4 kVrms @ 50Hz during 1 min.
Dielectric Polypropylene
*Change “--” to “JE” for female terminals Dimensions millimeters (inches)
RATINGS AND PART NUMBER REFERENCE
178 | www.avx.com
Medium Power Film Capacitors
FFLC (RoHS Compliant)
DC FILTERING
TPC
Max Torque 15N.m
1234
24
13
Contact
Area
33 (1.299)
±1 (0.039)
M10 (0.394)
20 (0.787)
// 1.5 (0.060) A
A
* Dimension take on
the contact area
M10: 15Nm (0.591)
General tolerance: ±3
*65
(2.559)
±0.5
(0.020)
*65
(2.559)
±0.5
(0.020)
*65
(2.559)
±0.5
(0.020)
0/+1 (0/0.039)
335 (13.19)
355 (13.98) ±0.50 (0.020)
5.5 (0.217) ±0.20 (0.008)
±2.00 (0.079)
80 (3.150) ±2.00 (0.079)
375 (14.76)
Width
Width
-10
(0.394)
E
(H +7) ±2
(H +0.278)
±0.079
H ±1
(±0.039)
A
E/2
±0.5
(0.020)
Width E
170 100
145 100
95 50
APPLICATIONS
FFLC series is specifically designed for DC filtering, low reactive
power.
PACKAGING MATERIAL
Non-painted rectangular resin filled aluminum case
FFLC capacitors meet the level 2 requirement of flammability
standard NF F 16 102.
4 x M10 terminals*
NEW Available with M10 X 12 female terminal upon request
STANDARDS
IEC 61071-1: Power electronic capacitors
IEC 61071-2: Power electronic capacitors
IEC 60068-1: Environmental testing
IEC 60077: Rules for electric traction equipment
UL 94: Fire requirements
NF F 16-101
NF F 16-102: Fire and smoke requirements
IEC 61881: Railway applications, rolling stock equip-
ment, capacitors for power electronics
DIMENSIONS
Terminal Code – for male threaded
Terminal Code JE for female threaded
HOW TO ORDER
FFLC
Series
6
Dielectric
6 = Polypropylene
A
Voltage
Code
A = 680Vdc
L = 1000Vdc
U = 1200Vdc
8807
Capacitance Code
4 diget pF code 1st
3 digets are capacitance,
last digit is multiplier, e.g.
8807 = 8800μF
5067 = 5060μF
2247 = 2240μF
etc.
K
Capacitance
Tolerances
K = ±10%
––
Terminal Code
= Male Terminal
JE = Female Terminal
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/filmcaps.pdf
www.avx.com | 179
Medium Power Film Capacitors
FFLC (RoHS Compliant)
Climatic Category 40/85/56 (IEC 60068)
Test Voltage Between Terminals @ 25°C: 1.5 x UNdc for 10s
Test Voltage Between Terminals and Case @ 25°C: @ 4 kVrms @ 50Hz for 1 min.
Capacitance range Cn1120μF to 8800μF (other values available upon request)
Tolerance on Cn±10%
Rated DC voltage Vndc 680 to 1200 V
FFLC overvoltage: (Vs): Vs= 2 Vndc and limited at 1800V
Maximum overvoltage Peak value Maximum duration
1.67 Vndc 100 ms 1 time per week
1.25 Vndc 100 ms 1 time per day
1.1 Vndc 1 min 1 time per day
Maximum rms current Irms max 140 Arms to 300 Arms
Stray inductance Ls* 28 nH to 40 nH
Dielectric Polypropylene
ELECTRICAL CHARACTERISTICS
Part Capacitance Height Width Irms Ls* Rs Rth Typical
Number (μF) mm (in) mm (in) (A) (nH) (m) (°C/W) Weight (g)
U
N
dc 680 V (Voltage Code A)
FFLC6A8807K-- 8800 240 (9.449) 170 (6.693) 220 40 0.58 1.2 18000
FFLC6A7157K-- 7150 240 (9.449) 145 (5.709) 230 38 0.50 1.2 13200
FFLC6A6507K-- 6500 240 (9.449) 145 (5.709) 210 38 0.55 1.3 15500
FFLC6A5607K-- 5600 170 (6.693) 170 (6.693) 140 35 0.88 1.8 15500
FFLC6A4557K-- 4550 170 (6.693) 145 (5.709) 150 30 0.77 1.8 11300
FFLC6A4187K-- 4180 240 (9.449) 95 (3.740) 300 35 0.34 1.0 10300
FFLC6A2667K-- 2660 170 (6.693) 95 (3.740) 170 28 0.49 1.6 7300
U
N
dc 1000 V (Voltage Code L)
FFLC6L5067K-- 5060 240 (9.449) 170 (6.693) 250 40 0.61 1.2 17200
FFLC6L3207K-- 3200 170 (6.693) 170 (6.693) 150 35 0.89 1.9 12400
FFLC6L4307K-- 4300 240 (9.449) 145 (5.709) 300 38 0.52 1.1 15500
FFLC6L2737K-- 2730 170 (6.693) 145 (5.709) 170 30 0.75 1.6 11300
FFLC6L2537K-- 2530 240 (9.449) 95 (3.740) 300 35 0.36 0.8 10300
FFLC6L1607K-- 1600 170 (6.693) 95 (3.740) 170 28 0.51 1.2 7300
U
N
dc 1200 V (Voltage Code U)
FFLC6U3527K-- 3520 240 (9.449) 170 (6.693) 250 40 0.71 1.2 18800
FFLC6U2247K-- 2240 170 (6.693) 170 (6.693) 150 35 1.1 1.9 12700
FFLC6U3007K-- 3000 240 (9.449) 145 (5.709) 300 38 0.60 1.1 15500
FFLC6U1907K-- 1900 170 (6.693) 145 (5.709) 170 30 0.87 1.6 11300
FFLC6U1757K-- 1750 240 (9.449) 95 (3.740) 300 35 0.41 0.8 10300
FFLC6U1127K-- 1120 170 (6.693) 95 (3.740) 170 28 0.59 1.2 7300
RATINGS AND PART NUMBER REFERENCE
*Very low stray inductance for high frequency applications on request.
Dimensions millimeters (inches)
LIFETIME EXPECTANCY vs HOT SPOT
TEMPERATURE AND VOLTAGE
50°C
70°C
85°C
Vw/Vndc
1.6
1.4
1.2
1.0
0.8
100 1000 10000
Lifetime Expectancy (hours)
100000 1000000
Vw: permanent working or operating DC-voltage.
HOT SPOT CALCULATION
See Hot Spot Temperature, page 3.
θhot spot = θambient + (Pd+ Pt) x Rth
with Pd(Dielectric losses) = Q x tgδ0
[ 12x Cnx (Vpeak to peak)2x f ] x (2 x 10-4)
Pt(Thermal losses) = Rsx (Irms)2
where Cnin Farad Irms in Ampere f in Hertz
Vin Volt R
sin Ohm θin °C
Rth in °C/W
180 | www.avx.com
FEATURES
Metallized polypropylene dielectric specially treat-
ed to withstand high DC voltage stresses up to
85°C.
Controlled self-healing.
Internal geometry and connections specially
developed for high currents (Irms up to 100 A).
No liquid impregnant.
Special metallization for DC voltage and high
currents.
PACKAGING MATERIAL
Self-extinguishing rectangular plastic case (in
accordance with UL 94 VO) (12 kV/50 Hz isola-
tion).
Filled with thermosetting resin.
M8 outputs.
Fixing in two planes.
Vibrations and shocks resistant to IEC 60077.
Average weight 0.95 kg.
Climatic category 40/085/56
Working temperature -40°C to +85°C
(according to the power
to be dissipated)
Capacitance range Cn20μF to 54μF
Tolerance on Cn±10%
Rated DC voltage Vndc 750 to 1350 V
Allowable overvoltages Vs=1.1 V
ndc – 1/3 of the time
1.3 Vndc – 1 min./day
2 Vndc – 100 ms/day for Vndc
= ≤ 1150 V
1.75 Vndc – 100 ms/day for Vndc
= 1350 V
DC test voltage between 10s at 20°C ± 15°C
terminals Vedc – 1.5 Vndc (IEC 61071)
RMS current Irms max. = 65 to 105 A
Impulse current I2.t max. = 100 to 270 A2s
Tangent of loss angle Tg: see table of values
Series inductance Ls≤ 25 nH
Thermal resistance Rth ambient/hot spot = 9.2°C/W
Rth case/hot spot = 3.3°C/W
Dielectric Polypropylene
ELECTRICAL CHARACTERISTICS
MARKING
Logo TPC
FSM
Capacitance and tolerance in clear
Nominal voltage in clear
RMS current in clear
Date of manufacture (IEC coding)
APPLICATIONS
Recovery capacitor for G.T.O. switching (secondary snubber or clamp capacitor).
High current DC filtering.
DIMENSIONS
Medium Power Film Capacitors
FSM (FSN RoHS Compliant)
New Design can use FFV Range
HOW TO ORDER
FSM
Series
FSM = Standard
FSN = RoHS Compliant
2
Case Size
2 = Standard
6
Dielectric
6 = Polypropylene
A
Voltage
Code
A = 750Vdc
C = 900Vdc
L = 1000Vdc
U = 1150Vdc
V = 1350Vdc
0546
Capacitance
Code
0 + pF code
0546 = 54μF
0336 = 33μF
0206 = 20μF
etc.
K
Capacitance
Tolerances
K = ±10%
––
Voltage Range
= Standard
(Male Threaded)
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/filmcaps.pdf
www.avx.com | 181
Choice of voltage:
V1≤ Vndc
Repetitive surge:
1.1 Vndc – 1/3 of the time
Non-repetitive surge:
1.3 Vndc – 1 min./day
Occasional max. surge:
2 Vndc – 100 ms/day for Vndc = ≤ 1150 V
1.75 Vndc – 100 ms/day for Vndc = 1350 V
RMS current limits:
The currents given in the tables are maximum. The
thermal limits of the dielectric (85°C) must be respected.
The self-heating can be calculated from the series resist-
ance, Tgand the thermal resistance given in the table
of values
ΔØ= P x Rth ≤ 85°C -Ø ambient
Rth: is given for still air with the capacitor not being
subjected to any other heat source.
P = (Irms)2x Rs+ π
2x C (V1- V2)2x frx 10-4
Temperature measuring point*
Measurement of the case temperature (B) together with
the losses gives the temperature of the hot spot.
= (RthB x P) + B ≤ 85°C
*Important for series/parallel operations.
Important
Due to the modular nature of this capacitors series
parallel assemblies can be made to increase the capacitance
and/or voltage.
Ensure that suitable sized connections are used so that the
capacitors will not be overheated. The inductance
of the connections must be low enough to ensure equal cur-
rent sharing of capacitors in parallel.
For series assemblies, connect resistor across each capaci-
tor. Optimal resistance value will be:
R # 30 M/C in μF
(1.5 Mfor C = 20 μF).
2) DC FILTERING
Nominal Capacitance
Typical application
1) RECOVERY OF G.T.O. SWITCHING ENERGY
*Function of power dissipation
RATINGS AND PART NUMBER REFERENCE – POLYESTER DIELECTRIC
Part Number Capacitance Vndc Irms max.* (I2.t) max. TgδRs Typical
(μF) (V) (A) (A2s) (fkHz) (10-4)(m) Weight (g)
FSM26A0546K-- 54 750 105 270 2 + 3.4 f 1 9500
FSM26C0446K-- 42 900 100 220 2 + 2.8 f 1.05 9500
FSM26L0336K-- 33 1000 95 170 2 + 2.3 f 1.1 9500
FSM26U0286K-- 28 1150 85 150 2 + 2 f 1.15 9500
FSM26V0206K-- 20 1350 65 100 2 + 1.6 f 1.25 9500
Medium Power Film Capacitors
FSM (FSN RoHS Compliant)
New Design can use FFV Range
182 | www.avx.com
GENERAL DESCRIPTION
Metallized polypropylene dielectric capacitor with controlled self-
healing.
Reinforced metallization developed for high impulse currents.
APPLICATIONS
• IGBT protection
• IGBT clamping
PACKAGING MATERIAL
• Plastic case backfilled with thermosetting resin
Medium Power Film Capacitors
FSB (RoHS Compliant)
ELECTRICAL CHARACTERISTICS
Capacitance Range Cn0.10μF to 2.5μF
Tolerance on Cn±5%: FSB1...5 ±10%: FSB6
Rated DC Voltage Vndc 850 to 2000 V
Stray Inductance ≤ 25 nH
RMS Current Irms max. = up to 28A
The currents shown in the tables are maximum.
It is necessary to maintain operation within the maximum temperature of the dielectric
85°C. See “Hot spot temperature calculation”
Insulation Resistance Rix C ≥ 30,000 s
Impulse Current I2.t max. = up to 1.69 A2s
Spikes or peak currents in the capacitors may cause a deterioration of the bonding
between the metallization and the connections. These bonds are capable of with-
standing only a limited amount of energy for each spike. The table shows the maxi-
mum energy permitted in the form (I2.t), where I is in Amperes, and t is in seconds.
Note: The formula (I2.t) replaces dv/dt which is less easy to use as it is not an expression of energy (I = C.dv/dt).
This type of capacitor has been designed to withstand high (I2.t) values.
Variation of Capacitance with Temperature ΔC
C≤ ±2% between -40 and +85°C
Climatic Category 40/085/56 (IEC 68)
Test Voltage Between Terminals @ 25°C 1.6 Vndc during 10s
Withstanding Voltage Between Terminals
and Case @ 25°C @ 3 kVrms @ 50Hz during 1 min.
HOW TO ORDER
FSB
Series
1
Case Size
1 = PO Style
2 = 18 Style
3 = 19 Style
4 = 26 style
5 = R28 Style
(2 terminal
or 4 terminal)
6
Dielectric
6 = Polypropylene
U
Voltage
Code
B = 850Vdc
U = 1200Vdc
M = 1600Vdc
N = 2000Vdc
0154
Capacitance
Code
0 + pF code
0154 = 0.15μF
0334 = 0.33μF
0255 = 2.5μF
etc.
J
Capacitance
Tolerances
J = ± 5%
K = ±10%
(Case size 6 only)
––
Voltage Range
= 2 Terminal
JC = 4 Terminal
(Case Size 5
option only)
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/filmcaps.pdf
www.avx.com | 183
Length
Height
LS 0.4 min
(0.015 min) 5.5 ±1
(0.216 ±0.039)
Width
Ø Lead
General Tolerance: ±0.5mm (0.020)
32 (1.259)
37 (1.456)
0.4 min
(0.015 min)
5.5 ±1
(0.216 ±0.039)
1.2 ±0.1
(0.047 ±0.003)
12.7 ±0.5
(0.5 ±0.020)
Width
Ep 0.6 (0.023)
General Tolerance: ±0.5mm (0.020)
22 (0.866)
27.5 ±0.5
(1.082 ±0.019)
DIMENSIONS: millimeters (inches)
Length Width Height Dimensions LS
Case Size
Case Style mm ±0.40 mm ±0.40 mm ±0.30 lead mm +10% -0.05 mm ±0.40
(inches) (inches) (inches) (inches) (inches)
1PO 31.1 (1.230) 13.0 (0.051) 22.4 (0.880) Ø 0.80 (0.031) 27.5 (1.083)
218 31.1 (1.230) 14.6 (0.580) 25.7 (1.010) Ø 0.80 (0.031) 27.5 (1.083)
319 31.1 (1.230) 17.3 (0.068) 29.8 (1.170) Ø 0.80 (0.031) 27.5 (1.083)
426 31.1 (1.230) 20.8 (0.820) 31.3 (1.230) Ø 1.00 (0.039) 27.5 (1.083)
R68
2 Terminals 32.5 (1.280) 22.0 (0.870) 37.0 (1.460) Ø 1.00 (0.039) 27.5 (1.083)
5Version
R68 1.20 x 0.60
4 Terminals 32.5 (1.280) 22.0 (0.870) 37.0 (1.460) (0.047 x 0.023) 27.5 (1.083)
Version
GENERAL DESCRIPTION
Medium Power Film Capacitors
FSB (RoHS Compliant)
Part Number Capacitance Case Style
(I2t)
Irms Rs Rth Typical
(μF)
(A2s)
(A) (m) (hotspot/amb.) Weight (g)
U
N
dc = 1200V Vpeak = 1600V Vrms = 560V Vs = 2000V (Voltage Code U)
FSB16U0154J-- 0.15 P0 0.05 3 14.3 45.9 15
FSB26U0274J-- 0.27 18 0.15 7.6 8.4 36.8 20
FSB36U0394J-- 0.39 19 0.31 11 6.2 32.2 25
FSB46U0474J-- 0.47 26 0.41 12 5.6 29.4 32
FSB56U0684J-- 0.68 R68 (2 terminals) 0.94 12 3.8 23.7 40
FSB56U0684JJC 0.68 R68 (4 terminals) 0.94 16.7 3.8 23.7 40
U
N
dc = 1600V Vpeak = 2000V
Vrms = 630V
Vs = 2300V (Voltage Code M)
FSB16M0134J-- 0.13 P0 0.05 4.6 13.3 44.9 15
FSB26M0184J-- 0.18 18 0.1 6.4 9.9 35.9 20
FSB36M0244J-- 0.24 19 0.18 8.5 7.8 32.4 25
FSB46M0334J-- 0.33 26 0.35 11.7 5.6 28.6 32
FSB56M0434J-- 0.43 R68 (2 terminals) 0.59 12 4.6 23.8 40
FSB56M0434JJC 0.43 R68 (4 terminals) 0.59 15.2 4.6 23.8 40
U
N
dc = 2000V Vpeak = 2400V
Vrms = 700V
Vs = 2600V (Voltage Code N)
FSB16N0104J-- 0.1 P0 0.05 4.2 14.3 44.6 15
FSB26N0134J-- 0.13 18 0.08 5.5 11.3 35.7 20
FSB36N0184J-- 0.18 19 0.15 7.6 8.5 32.1 25
FSB46N0224J-- 0.22 26 0.22 9.3 6.8 29.1 32
FSB56N0304J-- 0.3 R68 (2 terminals) 0.41 12 5.3 23.8 40
FSB56N0304JJC 0.3 R68 (4 terminals) 0.41 12.7 5.3 23.8 40
RATINGS AND PART NUMBER REFERENCE
STYLE: P0; 18; 19; 26; R68
ALL CASE SIZES
2 TERMINALS VERSION
STYLE: R68
CASE SIZE 5 ONLY
4 TERMINALS VERSION
184 | www.avx.com
Part Number Capacitance (I2t) Irms max. RsRth Typical
(μF) (A2s) (A) (m) (°C/W) Weight (g)
FSB 850V Vndc = 850V Vpeak = 1200V Vrms = 450V Vs= 1500V (Voltage Code B)
FSB66B0205K-- 2 0.99 25 3.4 19.1 87
FSB66B0225K-- 2.2 1.19 28 3.1 18.6 87
FSB66B0255K-- 2.5 1.54 28 2.7 17.8 87
FSB 1200V Vndc = 1200V Vpeak = 1600V Vrms = 560V Vs= 2000V (Voltage Code U)
FSB66U0105K-- 1 1.47 25 3.6 17.2 87
FSB66U0125K-- 1.2 1.69 26 3.4 17.5 87
FSB66U0155K-- 1.5 1 26 3.4 17.5 87
FSB 2000V Vndc = 2000V Vpeak = 2400V Vrms = 700V Vs= 2600V (Voltage Code N)
FSB66N0474K-- 0.47 0.41 22 6.3 19.4 87
FSB66N0564K-- 0.56 0.62 23 5.2 17.9 87
FSB66N0684K-- 0.68 0.91 24 4.4 17.3 87
CASE SIZE 6 Plastic case resin filled
Dimensions: millimeters (inches)
42.5
(1.670)
30.0
(1.180)
45.0
(1.770)
52.0 +0 -1
(2.047 +0 -0.040)
12.0 (0.472)
14.0
(0.551)
6.00 +1 -0.5 (0.263 +0.040 -0.020)
17.5 +1 -0.5 (0.689 +0.040 -0.020)
28.6 +1 -0.5 (1.126 +0.040 -0.020)
GENERAL TOLERANCES: ±0.50mm (±0.020 inches)
0.80 ±0.10
(0.031 ±0.004)
47.0 ±1.00
(1.850 ±0.04)
7.00 +0.5 -1.5
(0.276 +0.020 -0.060)
17.0
(0.669)
7.00
(0.276)
6.20 ±0.20
(0.244 ±0.008)
Medium Power Film Capacitors
FSB (RoHS Compliant)
RATINGS AND PART NUMBER REFERENCE
www.avx.com | 185
Medium Power Film Capacitors
FSB (RoHS Compliant)
STANDARDS
IEC 61071-1, IEC 61071-2: Power electronic capacitors
TANGENT OF LOSS ANGLE (TANδ0) FOR
POLYPROPYLENE DIELECTRIC
Polypropylene has a constant dielectric loss factor of 2x10-4
irrespective of temperature and frequency (up to 1 MHz).
IGBT SNUBBER
HOT SPOT TEMPERATURE CALCULATION
See Hot Spot Temperature, page 3.
θhot spot = θambient + (Pd+ Pt) x Rth
with Pd(Dielectric losses) = Q x tgδ0
[ 12x Cnx (Vripple peak to peak)2x f ] x (2 x 10-4)
Pt(Thermal losses) = Rsx (Irms)2
Rth : Rth ambient / hot spot in °C/W
where Cnin Farad Irms in Ampere f in Hertz
Vin Volt R
sin Ohm θin °C
Due to the design of the capacitor and its technology, the ther-
mal impedance between the terminations and the core
of the capacitor is low, it is necessary to take care that
the capacitor is never overheated by use of wrongly sized con-
nections.
Do not use the capacitor as a heat sink.
Due to the complexity of the IGBT / capacitor thermal
exchanges, we recommend that thermal measurements shall
be made on the different components. We would be pleased
to advise you on specific applications.
WORKING TEMPERATURE
(according to the power to be dissipated) -40°C to +85°C
MARKING
TPC logo
Capacitance and tolerance in clear
Nominal DC voltage in clear
RMS current in clear
Date of manufacture (IEC coding)
T = 1/fr
I
U
U0
t
t
With
L = stray inductance IGBT + capacitor
R = serial resistance IGBT + capacitor
Ieff =
Cb
2
U
02
2
j
b
0
e
–2
T
b
2 +
a
2
1
T
[
b
sin(2
b
T
) –
a
cos(2
b
T
)
]
+
1
e
–2
T
+
a
a
b
2 +
a
2
1
a
b
0 =
;
b
=
b
0
2
a
2
1
LC
R
2
L
;
a
=
with
186 | www.avx.com
GENERAL DESCRIPTION
Metallized dielectric capacitor and metal foil, low serial inductance and high RMS
current.
APPLICATIONS
• Protection of semi conductors
• High frequency decoupling
• Tunning
PACKAGING MATERIAL
• Cylindrical with polyester tape wrapping, sealed with polyurethane resin
• Radial connections
Medium Power Film Capacitors
FSV (RoHS Compliant)
25.0 MAX
(0.984)
*27.0 ±2.00
(1.063 ±0.079)
15.0 MIN
(0.591)
MARKING
*PITCH DIMENSION AT 2.00mm (0.079) LENGTH OF LEADS
Ø1 (0.039)
+10%
-0.05 (-0.002)
D MAX.
25.0 MAX
(0.984)
*27.0 ±2.00
(1.063 ±0.079)
15.0 MIN
(0.591)
MARKING
*PITCH DIMENSION AT 2.00mm (0.079) LENGTH OF LEADS
*15.0 ±2.00
(0.591 ±0.079)
Ø1 (0.039)
+10%
-0.05 (-0.002)
D MAX.
DIMENSIONS
Case 1 Case 2
HOW TO ORDER
FSV
Series
1
Case Size
Case Size 1
Case Size 2
6
Dielectric
6 = Polypropylene
K
Voltage
Code
K = 600Vdc
B = 800Vdc
L = 1000Vdc
U = 1200Vdc
R = 1500Vdc
N = 2000Vdc
0683
Capacitance
Code
0 + pF code
0683 = 0.068μF
0333 = 0.033μF
0203 = 0.020μF
etc.
K
Capacitance
Tolerances
K = ±10%
––
Voltage Range
= Standard
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/filmcaps.pdf
www.avx.com | 187
Medium Power Film Capacitors
FSV (RoHS Compliant)
Part Number Capacitance D max. Irms Rs Rth Typical
(μF) mm (in) A (m) °C/W Weight (g)
FSV 600 V Vndc = 600V Vrms = 300V (Voltage Code K)
FSV16K0683K-- 0.068 22 (0.866) 10 2.5 35 15
FSV26K0104K-- 0.10 25 (0.984) 15 2.1 25 25
FSV26K0154K-- 0.15 30 (1.181) 23 1.8 17 25
FSV 800 V Vndc = 800V Vrms = 400V
(Voltage Code B
FSV16B0473K-- 0.047 22 (0.866) 10 2.6 33 15
FSV26B0683K-- 0.068 25 (0.984) 15 2.2 23 25
FSV26B0823K-- 0.082 28 (1.102) 18 2.1 21 25
FSV26B0104K-- 0.100 30 (1.181) 23 1.9 16 25
FSV 1000 V Vndc = 1000V Vrms = 450V
(Voltage Code L)
FSV16L0333K-- 0.033 22 (0.866) 8 2.8 31 15
FSV26L0473K-- 0.047 25 (0.984) 12 2.3 22 25
FSV26L0683K-- 0.068 30 (1.181) 17 2.0 16 25
FSV 1200 V Vndc = 1200V Vrms = 500V
(Voltage Code U)
FSV16U0223K-- 0.022 22 (0.866) 7 3.2 34 15
FSV26U0333K-- 0.033 25 (0.984) 10 2.2 23 25
FSV26U0473K-- 0.047 30 (1.181) 14 2.1 16 25
FSV 1500 V Vndc = 1500V Vrms = 600V
(Voltage Code R)
FSV16R0153K-- 0.015 22 (0.866) 5 3.5 34 15
FSV26R0223K- 0.022 25 (0.984) 8 2.8 22 25
FSV26R0333K- 0.033 30 (1.181) 12 2.2 16 25
FSV 2000 V Vndc = 2000V Vrms = 650V
(Voltage Code N)
FSV16N0103K-- 0.010 22 (0.866) 5 3.4 34 15
FSV26N0153K-- 0.015 25 (0.984) 7 2.9 21 25
FSV26N0203K-- 0.020 27 (1.063) 10 2.4 16 25
FSV26N0223K-- 0.022 30 (1.181) 11 2.4 14 25
ELECTRICAL CHARACTERISTICS
Capacitance Range Cn 0.010μF to 0.15μF
Tolerance on Cn 10%
Rated DC Voltage Vndc 600 to 2000 V
Rated AC Voltage 300 to 650 Vrms
Test Voltage
between terminals @ 25°C 1.5 Vndc during 10s
High dV/dt 10000 V/μs
RMS Current Irms max = up to 23A
The currents shown in the tables are maximum.
It is necessary to respect the thermal limits of the dielectric 85°C
See “Hot spot temperature calculation”
Working Temperature -40°C +85°C
(according to the power to be dissipated)
Climatic Category 40/085/56 (IEC 60068)
Hot Spot Calculation See Hot Spot Temperature page 3
For all applications, the temperature in the hot spot capacitor must be lower than 85°C
Hot spot = ambient + (tanδ0x Q + RsIrms2) x Rth
With tg δo= 2.10-4
Q in vars Rs in Irms in A Rth in °C/W
Dieleictric Polypropylene
RATINGS AND PART NUMBER REFERENCE
188 | www.avx.com
Medium Power Film Capacitors
FPX/FPY (RoHS Compliant)
PROTECTION
HOW TO ORDER
FPX
Series
FPX = Standard
FPY = RoHS Compliant
6
Case Size
Case Size 6
Case Size 8
(See Case
Style)
6
Dielectric
6 = Polypropylene
N
Voltage
Code
N = 2000V
P = 2500V
X = 3500V
Z = 4500V
Y = 4600V
0105
Capacitance
Code
0 + pF code
0105 = 1.0μF
0335 = 3.5μF
0504 = 0.5μF
etc.
J
Capacitance
Tolerances
K = ±5%
––
Terminal Code
= Standard
DIMENSIONS
Plastic Case Style M6 / 6 or M8 / 8
MARKING
Logo
Withstanding surge voltage
Capacitance and tolerance in clear
Nominal DC voltage in clear
RMS current in clear
Date of manufacture (IEC coding)
Plastic Case Style M8 / 10
ØDmax
Ød
M6/6 or M8/8
h ±2 (0.079)
Max Torque: 8.5Nm (M8)
4.5Nm (M6)
H ±0.5
(0.020)
h ±2 (0.079)
TPC
H 62
Dimensions: millimeters (inches)
General tolerance: ±2
A
Ø4 (0.16) A Plastic Case or
(Resin Molding)
Resin
Tinned Output
TPC
Max Torque: 8.5Nm
The positions of the connections
of each side are not indexed
H 79 +0 -3.0mm
(3.11 +0 -0.12)
M8 (0.315)
/10 (0.394)
M8 (0.315)
/10 (0.394)
6.00 (0.236) 6.00 (0.236)
Dimensions: millimeters (inches)
General tolerance: ±2
A
Ø4 (0.16) A
Ø28 (1.103) ±0.1 (0.004)
Plastic Case
D Max
Resin
Tinned Output
23 (0.906) ±0.50 (0.020)
APPLICATIONS
Protection of thyristors.
Protection of gate turn-off thyristor (G.T.O.).
Clamping (Secondary snubber).
TECHNOLOGY
Metallized polypropylene dielectric capacitor with controlled
self-healing.
Reinforced metallization developed for high impulse currents.
Axial connections specially developed to reduce series induc-
tance and to provide rigid mechanical mounting.
PACKAGING MATERIAL
Cylindrical in plastic case filled with thermosetting resin.
Outputs: threaded inserts either M6 or M8.
HOT SPOT TEMPERATURE CALCULATION
See Hot Spot Temperature page 3.
θhot spot = θterminals + (Pd+ Pt) x Rth
with
Pd(Dielectric losses) = Q x tgδ0
[ 12x Cnx (Vpeak to peak)2x f ] x (2 x 10-4)
Pt(Thermal losses) = Rsx (Irms)2
where
Cnin Farads
Vin Volts
Irms in Amperes
Rsin Ohms
f in Hertz
θin °C
Rth in °C/W
Due to the design of the capacitor and its technology,
the thermal impedance between the terminations and the core of
the capacitor is low, it is necessary to take care that the capacitor is
never overheated by use of incorrect sized connections.
In the case where the series diodes are screwed to the capacitor,
cooling of the diodes must be taken in account.
Do not use the capacitor as a heat sink.
Due to the complexity of the diode/capacitor thermal exchanges, we
recommend that thermal measurements shall be made on the differ-
ent components. We would be pleased to advise you on specific
problems.
WORKING TEMPERATURE
(according to the power to be dissipated) -40°C to +85°C
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/filmcaps.pdf
www.avx.com | 189
Medium Power Film Capacitors
FPX/FPY (RoHS Compliant)
Capacitance range Cn0.5μF to 6μF
Tolerance on Cn±5%
Rated DC voltage Vndc 1000 to 3000 V
Peak voltage Vpeak 1600 to 4000 V
Allowable overvoltage Vs(for 10 s/day) 2000 to 4600 V
Stray inductance 5 to 20 nH
RMS current Irms max. = up to 160 A
The currents shown in the tables are maximum.
It is necessary to respect the thermal limits of the dielectric 85°C
see “Hot spot temperature calculation”
Insulation resistance Rix C ≥ 30,000 s
Impulse current I2.t maxi. = up to 729 A
2
.s
Spikes or peak currents in the capacitors may cause a deterioration of the bonding
between the metallization and the connections. These bonds are capable of with-
standing only a limited amount of energy for each spike. The table shows the maxi-
mum energy permitted in the form (I2.t), where I is in Ampere, and t is in seconds.
Note: The formula (I2.t) replaces dV/dt which is less easy to use as it is not an expression of energy (I = C.dV/dt).
This type of capacitor has been designed to withstand high (I2.t) values.
Variation of capacitance with temperature ΔC
C≤ ±2% between -40 and 85°C
Climatic category 40/085/56 (IEC 60068)
Test voltage between terminals @ 25°C Vsfor 10s
Test voltage between terminals
and case @ 25°C (Type test) @ 7 kVrms @ 50 Hz for 1 min.
Dielctric Polypropylene
ELECTRICAL CHARACTERISTICS
PROTECTION
APPLICATIONS NOTES
G.T.O. THYRISTOR CLAMPING
V
0
T - 1/fr
V2
V1
t
Choice of voltage: V1≤ Vpeak
V2≤ Vndc
Choice of voltage: V1≤ Vpeak
V2≤ Vndc
Nominal DC voltage (Vndc) and peak
voltage (Vpeak) are given in the tables.
V
t
0V
V1
Choice of voltage: V1≤ Vpeak
Note that V1is the voltage peak to
peak and cannot be
symmetrical vs 0 V
Peak voltage is given in the tables.
Nominal DC voltage (Vndc) and peak
voltage (Vpeak) are given in the tables.
190 | www.avx.com
* Tol: +0 / -3mm for H ≥ 118mm
Medium Power Film Capacitors
FPX/FPY (RoHS Compliant) Table of Values
Dimensions I
2
.t I
rms
Rs Rth
Cn Case H* h d max. max. Typical
Part Number (μF) Style ±0.5 ±2 D ±0.5 (A
2
.s) (A) (m) (°C/W) Weight (g)
(±0.020) (±0.079) max. (±0.020)
FPX 2000V V
n
dc = 1000V V
peak
= 1600V V
rms
= 560V V
s
= 2000V (Voltage Code N)
FPX66N0105J-- 1 Plastic case M6/6 52 (2.072) 5 (0.197) 40 (1.575 18 (0.709) 2 15 2.4 14) 120
FPX86N0205J-- 2 Plastic case M8/8 52 (2.072) 5 (0.197) 60 (2.362) 22 (0.866) 8 30 1.2 6.1 190
FPX86N0305J-- 3 Plastic case M8/8 52 (2.072) 5 (0.197) 72 (2.835) 22 (0.866) 18 45 0.9 4.5 260
FPX86N0355J-- 3.5 Plastic case M8/8 52 (2.072) 5 (0.197) 72 (2.835) 22 (0.866) 25 50 0.85 4.5 260
FPX86N0405J-- 4 Plastic case M8/8 52 (2.072) 5 (0.197) 82 (3.228) 22 (0.866) 32 60 0.75 3.5 320
FPX86N0505J-- 5 Plastic case M8/8 52 (2.072) 5 (0.197) 82 (3.228) 22 (0.866) 50 70 0.65 2.5 320
FPX 2500V V
n
dc = 1300V V
peak
= 2000V V
rms
= 700V V
s
= 2500V (Voltage Code P)
FPX66P0504J-- 0.5 Plastic case M6/6 52 (2.072) 5 (0.197) 40 (1.575) 18 (0.709) 1 15 3 14 120
FPX86P0105J-- 1 Plastic case M8/8 52 (2.072) 5 (0.197) 60 (2.362) 22 (0.866) 3 20 2.3 10.5 190
FPX86P0155J-- 1.5 Plastic case M8/8 52 (2.072) 5 (0.197) 60 (2.362) 22 (0.866) 7 30 1.5 6.1 190
FPX86P0205J-- 2 Plastic case M8/8 52 (2.072) 5 (0.197) 72 (2.835) 22 (0.866) 12.7 40 1.1 4.5 260
FPX86P0255J-- 2.5 Plastic case M8/8 52 (2.072) 5 (0.197) 72 (2.835) 22 (0.866) 20 60 0.89 3.7 260
FPX86P0305J-- 3 Plastic case M8/8 52 (2.072) 5 (0.197) 82 (3.228) 22 (0.866) 28 60 0.85 3.2 320
FPX86P0355J-- 3.5 Plastic case M8/8 52 (2.072) 5 (0.197) 82 (3.228) 22 (0.866) 39 65 0.78 2.9 320
FPX 3500V V
n
dc = 2000V V
peak
= 2400V V
rms
= 850V V
s
= 3500V (Voltage Code X)
FPX86X0205J-- 2 Plastic case M8/8 62 (2.441) 5 (0.197) 72 (2.835) 22 (0.866) 23 41 1.24 6.1 310
FPX86X0305J-- 3 Plastic case M8/8 62 (2.441) 5 (0.197) 92 (3.622) 22 (0.866) 50 62 0.92 3.9 475
FPX86X0355J-- 3.5 Plastic case M8/8 62 (2.441) 5 (0.197) 92 (3.622) 22 (0.866) 70 72 0.83 3.4 475
FPX86X0405J-- 4 Plastic case M8/8 62 (2.441) 5 (0.197) 92 (3.622) 22 (0.866) 85 80 0.78 3.1 475
FPX 2000V V
n
dc = 1000V V
peak
= 1600V V
rms
= 560V V
s
= 2000V (Voltage Code Z)
FPX86Z0904J-- 0.9 Plastic case M8/8 62 (2.441) 5 (0.197) 72 (2.835) 22 (0.866) 15 40 1.5 6.2 310
FPX86Z0105J-- 1 Plastic case M8/8 62 (2.441) 5 (0.197) 72 (2.835) 22 (0.866) 15 38 1.4 6.2 310
FPX86Z0205J-- 2 Plastic case M8/8 62 (2.441) 5 (0.197) 92 (3.622) 22 (0.866) 70 75 0.85 3.1 475
FPX 4600V V
n
dc = 3000V V
peak
= 4000V V
rms
= 1400V V
s
s
= 4600V (Voltage Code Y)
FPX86Y0504J-- 0.5 Plastic case M8/8 62 (2.441) 5 (0.197) 72 (2.835) 22 (0.866) 7 40 1.7 12 310
FPX86Y0684J-- 0.68 Plastic case M8/8 62 (2.441) 5 (0.197) 72 (2.835) 22 (0.866) 14 35 1.59 6.2 310
FPX86Y1254J-- 1.25 Plastic case M8/8 62 (2.441) 5 (0.197) 92 (3.622) 22 (0.866) 50 65 1 3.3 475
FPX86Y0155J-- 1.5 Plastic case M8/10 79 (3.110) 6 (0.236) 98 (3.858) 32 60 1.4 8.3 630
FPX86Y0175J-- 1.7 Plastic case M8/10 79 (3.110) 6 (0.236) 98 (3.858) 40 70 1.3 7.4 630
FPX86Y0205J-- 2 Plastic case M8/10 79 (3.110) 6 (0.236) 98 (3.858) 56 80 1.1 6.3 630
FPX86Y0255J-- 2.5 Plastic case M8/10 118 (4.646) 6 (0.236) 98 (3.858) 200 130 0.8 1.1 1020
FPX86Y0275J-- 2.7 Plastic case M8/10 118 (4.646) 6 (0.236) 98 (3.858) 232 140 0.7 1.1 1020
FPX86Y0305J-- 3 Plastic case M8/10 143 (5.630) 6 (0.236) 98 (3.858) 128 100 0.9 1.5 1280
FPX86Y0355J-- 3.5 Plastic case M8/10 143 (5.630) 6 (0.236) 98 (3.858) 170 110 0.8 1.4 1280
FPX86Y0405J-- 4 Plastic case M8/10 143 (5.630) 6 (0.236) 98 (3.858) 224 115 0.8 1.4 1280
FPX86Y0455J-- 4.5 Plastic case M8/10 163 (6.417) 6 (0.236) 98 (3.858) 522 120 0.6 1.7 1500
FPX86Y0505J-- 5 Plastic case M8/10 163 (6.417) 6 (0.236) 98 (3.858) 600 130 0.6 1.7 1500
FPX86Y0605J-- 6 Plastic case M8/10 163 (6.417) 6 (0.236) 98 (3.858) 729 160 0.5 1.7 1500
PROTECTION Dimensions: millimeters (inches)
www.avx.com | 191
Medium Power Film Capacitors
FPG/FPH (RoHS Compliant)
PROTECTION
ØDmax
Ød
M6/6 or M8/8
h ±2 (0.079)
Max Torque: 8.5Nm (M8)
4.5Nm (M6)
H ±0.5
(0.020)
h ±2 (0.079)
TPC
H 62
Dimensions: millimeters (inches)
General tolerance: ±2
A
Ø4 (0.16) A Plastic Case or
(Resin Molding)
Resin
Tinned Output
DIMENSIONS millimeters (inches)
MARKING
Logo
Withstanding surge voltage
Capacitance and tolerance in clear
Nominal DC voltage in clear
RMS current in clear
Date of manufacture (IEC coding)
PACKAGING MATERIAL
Cylindrical in either plastic case (preferred packaging) or a resin
molding.
Outputs: threaded inserts either M6 or M8.
Filled with thermosetting resin.
Metallized polypropylene dielectric capacitor with controlled self-
healing.
Reinforced metallization on margins developed for high impulse
currents.
Axial connections specially developed to reduce series induc-
tance and to provide rigid mechanical mounting.
APPLICATIONS
Protection of gate turn-off thyristor (G.T.O.).
Medium frequency tuning.
HOT SPOT TEMPERATURE CALCULATION
See Hot Spot Temperature page 3.
θhot spot = θterminals + (Pd+ Pt) x Rth
with
Pd(Dielectric losses) = Q x tgδ0
[ 12x Cnx (Vpeak to peak)2x f ] x (2 x 10-4)
Pt(Thermal losses) = Rsx (Irms)2
where
Cnin Farads
Vin Volts
Irms in Amperes
Rsin Ohms
f in Hertz
θin °C
Rth in °C/W
Due to the design of the capacitor and its technology,
the thermal impedance between the terminations and the core
of the capacitor is low, it is necessary to take care that the
capacitor is never overheated by use of incorrect sized connec-
tions.
In the case where the series diodes are screwed to the capaci-
tor, cooling of the diodes must be taken in account.
Do not use the capacitor as a heat sink.
Due to the complexity of the diode/capacitor thermal
exchanges, we recommend that thermal measurements shall be
made on the different components. We would be pleased to
advise you on specific problems.
WORKING TEMPERATURE
(according to the power to be dissipated) -40°C to +85°C
HOW TO ORDER
FPG
Series
FPG = Standard
FPH = RoHS Compliant
8
Case Size
Case Size 8
6
Dielectric
6 = Polypropylene
R
Voltage
Code
R = 1500V
N = 2000V
P = 2500V
W = 2600V
X = 3500V
Z = 4500V
Y = 4600V
0105
Capacitance
Code
0 + pF code
0105 = 1.0μF
0405 = 4.0μF
0604 = 0.6μF
etc.
J
Capacitance
Tolerances
K = ±5%
––
Terminal Code
= Standard
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/filmcaps.pdf
192 | www.avx.com
Medium Power Film Capacitors
FPG/FPH (RoHS Compliant)
PROTECTION
APPLICATION NOTES
G.T.O. PROTECTION
Choice of voltage: V1≤ Vpeak
V2≤ Vndc
Maximum overvoltage ≤ Vs (10 s/day)
Capacitance range Cn0.12μF to 6μF
Tolerance on Cn±5%
Rated DC voltage Vndc 800 to 3000 V
Peak voltage Vpeak 1200 to 4000 V
Allowable overvoltage Vs(for 10 s/day) 1500 to 4600 V
Nominal RMS voltage Vndc 500 to 1400 V
Stray inductance 10 nH
RMS current Irms max. = up to 80 A
The currents shown in the tables are maximum.
It is necessary to respect the thermal limits of the dielectric 85°C
see “Hot spot temperature calculation”
Insulation resistance Rix C ≥ 30,000 s
Impulse current I2.t max. given in the tables
Spikes or peak currents in the capacitors may cause a deterioration of the bonding
between the metallization and the connections. These bonds are capable of with-
standing only a limited amount of energy for each spike. The table shows the maxi-
mum energy permitted in the form (I2.t), where I is in Ampere, and t is in seconds.
Note: The formula (I2.t) replaces dV/dt which is less easy to use as it is not an expression of energy (I = C.dV/dt).
This type of capacitor has been designed to withstand high (I2.t) values.
Variation of capacitance with temperature ΔC
C≤ ±2% between -40 and 85°C
Climatic category 40/085/56 (IEC 60068)
Test voltage between terminals @ 25°C Vsduring 10s
Test voltage between terminals
and case @ 25°C (Type test) @ 4 kVrms @ 50 Hz during 1 min.
Dielectric Polypropylene
ELECTRICAL CHARACTERISTICS
Nominal DC voltage (Vndc) and peak voltage (Vpeak) are given
in the table of values.
www.avx.com | 193
Medium Power Film Capacitors
FPG/FPH (RoHS Compliant) Table of Values
PROTECTION Dimensions: millimeters (inches)
Dimensions I
2
.t I
rms
Rs Rth
Cn Case H* h d max. max. Typical
Part Number (μF) Style ±0.5 ±2 D ±0.5 (A
2
.s) (A) (m) (°C/W) Weight (g)
(±0.020) (±0.079) max. (±0.020)
FPG 1500V V
n
dc = 800V V
peak
= 1200V V
rms
= 500V V
s
= 1500V (Voltage Code R)
FPG66R0105J-- 1
Plastic Case
M6/6 52 (2.047) 5 (0.197) 40 (1.575) 18 (0.709) 2 15 2.4 14 120
FPG66R0155J-- 1.5
Plastic Case
M6/6 52 (2.047) 5 (0.197) 55 (2.165) 18(0.709) 4.6 20 1.6 10.5 160
FPG86R0205J-- 2
Plastic Case
M8/8 52 (2.047) 5 (0.197) 60 (2.362) 22 (0.866) 8 30 1.2 6.1 190
FPG86R0305J-- 3
Plastic Case
M8/8 52 (2.047) 5 (0.197) 72 (2.835) 22 (0.866) 18 45 0.9 4.5 260
FPG86R0355J-- 3.5
Plastic Case
M8/8 52 (2.047) 5 (0.197) 72 (2.835) 22 (0.866) 25 50 0.85 4.5 260
FPG86R0405J-- 4
Plastic Case
M8/8 52 (2.047) 5 (0.197) 82 (1.575) 22 (0.866) 32 60 0.75 3.5 320
FPG86R0505J-- 5
Plastic Case
M8/8 52 (2.047) 5 (0.197) 82 (3.622) 22 (0.866) 50 70 0.65 2.5 320
FPG86R0605J-- 6
Plastic Case
M8/8 52 (2.047) 5 (0.197) 92 (3.622) 22 (0.866) 73 75 0.6 2.5 400
FPG 2000V V
n
dc = 1000V V
peak
= 1600V V
rms
= 600V V
s
= 2000V (Voltage Code N)
FPG66N0504J-- 0.5
Plastic Case
M6/6 52 (2.047) 5 (0.197) 40 (1.575) 18 (0.709) 1 15 3 14 120
FPG86N0105J-- 1
Plastic Case
M8/8 52 (2.047) 5 (0.197) 60 (2.362) 22 (0.866) 3 20 2.3 10.5 190
FPG86N0155J-- 1.5
Plastic Case
M8/8 52 (2.047) 5 (0.197) 60 (2.362) 22 (0.866) 7 30 1.5 6.1 190
FPG86N0205J-- 2
Plastic Case
M8/8 52 (2.047) 5 (0.197) 72 (2.835) 22 (0.866) 12.7 40 1.1 4.5 260
FPG86N0255J-- 2.5
Plastic Case
M8/8 52 (2.047) 5 (0.197) 72 (2.835) 22 (0.866) 20 60 0.89 3.7 260
FPG86N0305J-- 3
Plastic Case
M8/8 52 (2.047) 5 (0.197) 82 (3.228) 22 (0.866) 28 60 0.85 3.2 320
FPG86N0355J-- 3.5
Plastic Case
M8/8 52 (2.047) 5 (0.197) 82 (3.228) 22 (0.866) 39 65 0.78 2.9 320
FPG86N0405J-- 4
Plastic Case
M8/8 52 (2.047) 5 (0.197) 92 (3.622) 22 (0.866) 50 70 0.7 2.5 400
FPG 2500V V
n
dc = 1300V V
peak
= 2000V V
rms
= 700V V
s
= 2500V (Voltage Code P)
FPG66P0474J-- 0.47
Plastic Case
M6/6 62 (2.441) 5 (0.197) 40 (1.575) 18 (0.709) 0.7 15 6 25 160
FPG66P0105J-- 1
Plastic Case
M6/6 62 (2.441) 5 (0.197) 55 (2.165) 18 (0.709) 2 18 3 13 180
FPG66P0155J-- 1.5
Plastic Case
M6/6 62 (2.441) 5 (0.197) 60 (2.362) 22 (0.866) 4.5 25 2 10 220
FPG86P0205J-- 2
Plastic Case
M8/8 62 (2.441) 5 (0.197) 72 (2.835) 22 (0.866) 8 35 1.5 6.5 310
FPG86P0255J-- 2.5
Plastic Case
M8/8 62 (2.441) 5 (0.197) 72 (2.835) 22 (0.866) 12.5 40 1.3 4.8 310
FPG86P0305J-- 3
Plastic Case
M8/8 62 (2.441) 5 (0.197) 82 (3.228) 22 (0.866) 18 50 1.15 4.4 410
FPG86P0405J-- 4
Plastic Case
M8/8 62 (2.441) 5 (0.197) 92 (3.622) 22 (0.866) 32 65 0.95 3.4 475
FPG 2600V V
n
dc = 1750V V
peak
= 2000V V
rms
= 800V V
s
= 2600V (Voltage Code W)
FPG66W0474J-- 0.47
Plastic Case
M6/6 62 (2.441) 5 (0.197) 40 (1.575) 18 (0.709) 1.4 12 4.04 28 160
FPG66W0105J-- 1
Plastic Case
M6/6 62 (2.441) 5 (0.197) 55 (2.165) 18 (0.709) 5.7 21 2.17 10.9 180
FPG66W0155J-- 1.5
Plastic Case
M6/6 62 (2.441) 5 (0.197) 60 (2.362) 18 (0.709) 12.9 31 1.55 7.7 220
FPG86W0205J-- 2
Plastic Case
M8/8 62 (2.441) 5 (0.197) 72 (2.835) 22 (0.866) 23 41 1.24 6.1 310
FPG86W0255J-- 2.5
Plastic Case
M8/8 62 (2.441) 5 (0.197) 82 (3.228) 22 (0.866) 36 51 1.05 4.5 410
FPG86W0305J-- 3
Plastic Case
M8/8 62 (2.441) 5 (0.197) 92 (3.622) 22 (0.866) 50 62 0.92 3.9 475
FPG86W0355J-- 3.5
Plastic Case
M8/8 62 (2.441) 5 (0.197) 92 (3.622) 22 (0.866) 70 72 0.83 3.4 475
FPG86W0395J-- 3.9
Plastic Case
M8/8 62 (2.441) 5 (0.197) 92 (3.622) 22 (0.866) 85 80 0.78 3.1 475
FPG 3500V V
n
dc = 2000V V
peak
= 2400V V
rms
= 1000V V
s
= 3500V (Voltage Code X)
FPG66X0334J-- 0.33
Plastic Case
M6/6 62 (2.441) 5 (0.197) 40 (1.575) 18 (0.709) 2 15 2.5 28 160
FPG66X0504J-- 0.5
Plastic Case
M6/6 62 (2.441) 5 (0.197) 55 (2.165) 18 (0.709) 5 19 2.5 11.2 180
FPG86X0105J-- 1
Plastic Case
M8/8 62 (2.441) 5 (0.197) 72 (2.835) 22 (0.866) 15 38 1.4 6.2 310
FPG86X0155J-- 1.5
Plastic Case
M8/8 62 (2.441) 5 (0.197) 82 (3.228) 22 (0.866) 40 56 1.03 3.9 410
FPG86X0205J-- 2
Plastic Case
M8/8 62 (2.441) 5 (0.197) 92 (3.622) 22 (0.866) 70 75 0.85 3.1 475
FPG 4500V V
n
dc = 2500V V
peak
= 3200V V
rms
= 1200V V
s
= 4500V (Voltage Code Z)
FPG66Z0224J-- 0.22
Plastic Case
M6/6 62 (2.441) 5 (0.197) 40 (1.575) 18 (0.709) 1.5 15 3.8 25 160
FPG66Z0474J-- 0.47
Plastic Case
M6/6 62 (2.441) 5 (0.197) 60 (2.362) 18 (0.709) 7 24 2.16 8.5 220
FPG86Z0684J-- 0.68
Plastic Case
M8/8 62 (2.441) 5 (0.197) 72 (2.835) 22 (0.866) 14 35 1.59 6.2 310
FPG86Z0105J-- 1
Plastic Case
M8/8 62 (2.441) 5 (0.197) 82 (3.228) 22 (0.866) 30 52 1.18 4 410
FPG86Z1254J-- 1.25
Plastic Case
M8/8 62 (2.441) 5 (0.197) 92 (3.622) 22 (0.866) 50 65 1 3.3 475
FPG 4600 V V
n
dc = 3000 V V
peak
= 4000 V V
rms
= 1400 V V
s
= 4600 V (Voltage Code Y)
FPG66Y0124J-- 0.12
Plastic Case
M6/6 62 (2.441) 5 (0.197) 40 (1.575) 18 (0.709) 0.8 15 6 28 160
FPG66Y0224J-- 0.22
Plastic Case
M6/6 62 (2.441) 5 (0.197) 60 (2.362) 18 (0.709) 3 20 3.48 11 220
FPG86Y0334J-- 0.33
Plastic Case
M8/8 62 (2.441) 5 (0.197) 72 (2.835) 22 (0.866) 6.8 25 2.42 7.7 310
FPG86Y0474J-- 0.47
Plastic Case
M8/8 62 (2.441) 5 (0.197) 82 (3.228) 22 (0.866) 13.8 35 1.79 5.2 410
FPG86Y0604J-- 0.60
Plastic Case
M8/8 62 (2.441) 5 (0.197) 92 (3.622) 22(0.866) 22 45 1.47 4.2 475
194 | www.avx.com
Controlled self-healing film capacitor technology, is ideal for discharge applica-
tions. DISFIM capacitors range from 2kV to 75kV and the maximum energy per
can is 150kJ. Each capacitor is divided into several million elementary capaci-
tances. The weak points in the dielectric are insulated and the capacitor contin-
ues to work without a short circuit or risk of explosion. They are designed to lose
less than 5% of their capacitance during their lifetime.
DISFIM High Voltage Film Capacitors
10000
1000
Electromagnetic
and ETC guns
Power
laser
Cable failure
detection
150kJ
High voltage
supplies
Marx
generators
Voltage (V)
Capacitance μF (C)
500J
100
10
1
2000 10000 20000 30000 40000 50000 60000 70000
Specific energy (J/l)
Specific energy vs number of shots
0
200
400
600
800
1000
1200
1400
1600
1800
2000
2200
10 100 1,000 10,000 100,000 1,000,000 10,000,000
Number of shots
*
(*) on specific applications, we can reach specific energy more than 2000J/I
Lifetime derating vs voltage reversal
0
0.2
0.4
0.6
0.8
1
10 30 50 70 90
Voltage reversal (%)
Lifetime factor
Lifetime derating vs hold time
0.4
0.6
0.8
1
5 1015202530
Hold time (s)
Lifetime factor
Temperature (ºC)
Lifetime derating vs temperature
0.2
0.4
0.6
0.8
1
20 30 40 50 60 70
Lifetime factor
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/filmcaps.pdf
www.avx.com | 195
Cap. Value Part Number*
(pF) Capacitance Tolerance
CYR10 M23269/01- (cont’d.)
500 Volts** ±1% ±2% ±5%
13
*
035 *
036
15
037 038
16
039 040
18
041 042
20
043 044
22
045 046
24
047 048
27 *
049 050 051
30 052 053 054
33 055 056 057
36 058 059 060
39 061 062 063
43 064 065 066
47 067 068 069
51 070 071 072
56 073 074 075
62 076 077 078
68 079 080 081
75 082 083 084
82 085 086 087
91 088 089 090
100 091 092 093
110 094 095 096
120 097 098 099
130 100 101 102
150 103 104 105
160 106 107 108
180 109 110 111
200 112 113 114
RATINGS & PART NUMBER REFERENCE
MARKING
M23269
Style
Military Specification
Established Reliability
Glass Capacitor
01
Case Size
01 = CYR10
02 = CYR15
3
Failure Rate
3 = M level 1%/1000 hrs.
7 = S level .001%/1000 hrs.
(100 volt rating only)
001
Capacitance Code
Capacitance value
coded in accordance
with MIL-PRF-23269 –
(see Part Number section)
HOW TO ORDER
M23269J
02-3057
AVX 07 B
M23269 = Military specification
established reliability
glass capacitor
J = JAN Trademark
02 = Case size (CYR15)
3 = Failure rate (M level)
057 = Dash Number –
(capacitance in pF and
capacitance tolerance)
AVX = AVX Corporation
07 = Year
B = Lot Code
Cap. Value Part Number*
(pF) Capacitance Tolerance
CYR10 M23269/01-
500 Volts** ±.25pF ±.5pF ±5%
.5 *
001
––
1.0 002
––
1.5 003
––
2.2 004 *
005
2.7 006
––
3.0 007 008
3.3 009
––
3.6 010 011
3.9 012
––
4.3 013 014
4.7 015
––
5.1 016
––
5.6 017
*
018
6.2 019
020
6.8 021
022
7.5 023
024
8.2 025
026
9.1 027
028
10 029
030
11 031
032
12 033
034
CYR15
CYR10
JCY7A
0R5JM
AVX
0R5 = Capacitance code –
0R5 = 0.5pF
J = Capacitance tolerance –
J = ±5%, G = ±2%, F = ±1%
M = Failure level
AVX = AVX Corporation
J = JAN Trademark
C = Capacitor
Y = Glass Dielectric
7 = Last digit of year
A = 4 week lot code
* Add first digit to indicate failure rate.
** S LEVEL = 100V rating for all values.
/
Cap. Value Part Number*
(pF) Capacitance Tolerance
CYR10 M23269/01- (cont’d.)
300 Volts** ±1% ±2% ±5%
220 115 116 117
240 118 119 120
270 121 122 123
300 124 125 126
CYR15 M23269/02-
500 Volts** ±1% ±2% ±5%
220 *
001 *
002 *
003
240 004 005 006
270 007 008 009
300 010 011 012
330 013 014 015
360 016 017 018
390 019 020 021
430 022 023 024
470 025 026 027
510 028 029 030
300 Volts** ±1% ±2% ±5%
560 031 032 033
620 034 035 036
680 037 038 039
750 040 041 042
820 043 044 045
910 046 047 048
1,000 049 050 051
1,100 052 053 054
1,200 055 056 057
Case Lead Dia.
Size L W T +0.1(+0.004)
-0.03(±0.001)
CYR10 8.74 ± 1.19 4.37 ± .79 1.98 ± .79 .51
(0.344 ± 0.047) (0.172 ± 0.031) (0.078 ± 0.031) (0.020)
CYR15 11.91 ± 1.19 6.76 ± .79 2.77 ± 1.19 .51
(0.469 ± 0.047) (0.266 ± 0.031) (0.109 ± 0.047) (0.020)
JCY7E
151JM
AVX
CYR10
CYR15
M23269J
02-3042
AVX 07 B
DIMENSIONS: millimeters (inches)
Note: Standard leads are solder-coated Dumet.
L T
W
28.58
(1.125)
Min.
Glass Dielectric Capacitors
MIL-PRF-23269
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/glasscaps.pdf
196 | www.avx.com
DIMENSIONS: millimeters (inches)
Case LWTS
Lead Dia.
Size ±0.13 ±0.25 ±0.13 ±0.51 ±0.051
(±0.005) (±0.010) (±0.005) (±0.020) (±0.002)
CYR51 7.62 5.08 2.92 5.08 .51
(0.300) (0.200) (0.115) (0.200) (0.020)
CYR52 7.62 7.62 2.92 5.08 .51
(0.300) (0.300) (0.115) (0.200) (0.020)
CYR53 12.70 7.62 2.92 10.16 .51
(0.500) (0.300) (0.115) (0.400) (0.020)
Note: Leads are solderable and weldable gold-plated Dumet, per MIL-STD-1276, Type D.
M23269J
10-3126
AVX 07 B
CYR51 CYR52 CYR53
M23269J
10-3214
AVX 07 B
M23269J
10-3327
AVX 07 B
L
S
T
W
31.75
(1.250)
Min.
MARKING
CROSS REFERENCE
M23269J
10-3001
AVX 07 B
M23269 = Military specification established
reliability glass capacitor
J = JAN Trademark
10 = Slash sheet for case sizes –
CYR51, CYR52, CYR53
3 = Failure rate (M level)
001 = Capacitance value coded in
accordance with MIL-C-23269
AVX = AVX Corporation
07 = Year
B = Lot Code
CYR51, 52, 53
MIL-C-23269 MIL-C-11272
Style Style
CYR10 CY10
CYR15 CY15
CYR20 CY20
CYR30 CY30
CYR51 CY06
CYR52 CY07
CYR53 CY08
M23269
Style
Military Specification
Established Reliability
Glass Capacitor
10
Case Size
Slash sheet
CYR51
CYR52
CYR53
3
Failure Rate
3 = M level, 1%/1000 hrs.
001
Capacitance Code
Capacitance value
coded in accordance
with MIL-C-23269 –
(see Part Number section)
HOW TO ORDER
/
Cap. Value Part Number
(pF) Capacitance Tolerance
CYR51 M23269/10- (cont’d)
300 Volts ±1% ±2% ±5%
27 3052 3053 3054
30 3055 3056 3057
33 3058 3059 3060
36 3061 3062 3063
39 3064 3065 3066
43 3067 3068 3069
47 3070 3071 3072
51 3073 3074 3075
56 3076 3077 3078
62 3079 3080 3081
68 3082 3083 3084
75 3085 3086 3087
82 3088 3089 3090
91 3091 3092 3093
100 3094 3095 3096
110 3097 3098 3099
120 3100 3101 3102
130 3103 3104 3105
150 3106 3107 3108
160 3109 3110 3111
180 3112 3113 3114
200 3115 3116 3117
220 3118 3119 3120
240 3121 3122 3123
270 3124 3125 3126
300 3127 3128 3129
330 3130 3131 3132
360 3133 3134 3135
390 3136 3137 3138
430 3139 3140 3141
470 3142 3143 3144
510 3145 3146 3147
560 3148 3149 3150
RATINGS & PART NUMBER REFERENCE
Cap. Value Part Number
(pF) Capacitance Tolerance
CYR51 M23269/10-
300 Volts ±.25pF ±2% ±5%
1 3001
1.5 3002
2.2 3003
2.7 3004
3.0 3005
3.3 3006
3.6 3007
3.9 3008
4.3 3009
4.7 3010
5.1 3011 3012
5.6 3013 3014
6.2 3015 3016
6.8 3017 3018
7.5 3019 3020
8.2 3021 3022
9.1 3023 3024
10 3025 3026
11 3027 3028
12 3029 3030
13 3031 3032 3033
15 3034 3035 3036
16 3037 3038 3039
18 3040 3041 3042
20 3043 3044 3045
22 3046 3047 3048
24 3049 3050 3051
*Add first digit to indicate failure rate.
Cap. Value Part Number
(pF) Capacitance Tolerance
CYR52 M23269/10-
300 Volts ±1% ±2% ±5%
620 3201 3202 3203
680 3204 3205 3206
750 3207 3208 3209
820 3210 3211 3212
910 3213 3214 3215
1,000 3216 3217 3218
CYR53 M23269/10-
1,100 3301 3302 3303
1,200 3304 3305 3306
1,300 3307 3308 3309
1,500 3310 3311 3312
1,600 3313 3314 3315
1,800 3316 3317 3318
2,000 3319 3320 3321
2,200 3322 3323 3324
2,400 3325 3326 3327
Glass Dielectric Capacitors
MIL-PRF-23269
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/glasscaps.pdf
www.avx.com | 197
Designed for mobile, transportable,
and semi-permanent military
communications facilities (telephone,
telegraph, teletype, radio, etc.)
High-reliability Hermaphrocon
connectors are designed for speedy,
foolproof interconnections under
extreme field conditions, are
impossible to mismate, even in the
dark
Hermaphroconplugs mate
interchangeably with both
receptacles and plugs, permitting
connection of either cable end to any
other cable end of distribution box
Redundant Hermaphrocondesign
provides 104 contacts for 52 cable
conductors (52 pairs) assures circuit
continuity with up to 50% contact
damage (jumpers linking redundant
contact pairs are welded for
reliability)
Rugged, waterproof Hermaphrocon
connectors resist wear and damage
caused by dragging on the ground or
through water, even without covers
PLUG, ELECTRICAL
U-185B/G CONNECTOR
RECEPTACLE, ELECTRICAL
U-186C/G CONNECTOR
RECEPTACLE, ELECTRICAL
U-187A/G CONNECTOR
CONTACT ASSEMBLY, ELECTRICAL
MX-3227/G
(as applicable)
HOUSINGS:
Die-cast aluminum alloy with
protective finish per MIL-F-14072
GASKETS AND GLANDS:
Silicone rubber
INSULATORS:
Fortron-PPS-Black
INSULATION RESISTANCE:
1000 megohms, minimum
CONTACTS:
Beryllium copper, gold plated
CONTACT RESISTANCE:
7 milliohms, maximum
IMMERSION:
per MIL-C-55074
MOISTURE RESISTANCE:
per MIL-C-55074
AIR LEAKAGE:
per MIL-C-55074
VIBRATION:
per MIL-C-55074
TEMPERATURE:
–65°F to 150°F
OVERALL DIMENSIONS (approx.):
U-185B/G 2.437" x 2.750" x 13.125"
U-186C/G 3.500" x 4.000" x 6.375"
U-187A/G 2.375" x 3.125" x 6.375"
MILITARY SPECIFICATION:
MIL-C-55074, MIL-STD-454
PART ELCO MILITARY DESCRIPTION
PART NUMBER PART NUMBER
ELCO
08 2260 0110 00 000 U-185B/G M-55074/1-01 HERMAPHROCON™ PLUG, cable type
HERMAPHROCON™
08 2276 0110 00 000 U-186C/G M-55074/2-01 HERMAPHROCON™ RECEPTACLE, panel type
CONNECTORS
08 2263 0110 00 000 U-187A/G M-55074/3-01 HERMAPHROCON™ RECEPTACLE, panel type
08 2260 9010 00 000 MX-3227/G M-55074/4-01 HERMAPHROCON™ CONTACT ASSEMBLY
08 2264 0110 00 000 SIG. CORPS. DWG. # SHORT SPRING BINDING POST ASSEMBLY
SC-C-136011 with O-ring, flat washer, split washer and nut - White
BINDING
08 2264 0120 00 000 SIG. CORPS. DWG. # SHORT SPRING BINDING POST ASSEMBLY
POSTS
SC-C-136001 without hardware - White
08 2264 0130 00 000 SIG. CORPS. DWG. # LONG SPRING BINDING POST
SC-C-136001 with O-ring, flat washer, split washer and nut - White
08 2264 0121 00 000 SIG. CORPS. DWG. # LONG SPRING BINDING POST
SC-C-136001 without hardware - White
MIL-C-55074
HermaphroconConnecting System
Plug (Cable Connector)
Receptacle
U-185B/G
U-187A/G
MX-3227/G
U-186C/G Bottom Mount
Side Mount
Contact Assembly
Binding Post
ELCO P/N 08 2264 0130 00 000
MATERIAL: Brass, machined (terminal)
Nylon (housing)
SC-C-136011
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/conns.pdf
FEATURES:
SPECIFICATIONS:
198 | www.avx.com
001 = Receptacle
Without 002 = Plug, parallel board mounting
Keying 005 = Plug, perpendicular board mounting
Code Contact Type “X”
No. Dim.
722 Wire hole tail .187
721 P. C. solder tail .250
736 P. C. solder tail .281
737 P. C. solder tail .562
753 P. C. solder tail .125
771 P. C. solder tail .484
Varicon®
Series 8219 – 0.050" Staggered Dual Row
FEATURES
For p.c. card-to-card applications
High contact density
Low withdrawal force contacts
Rugged, color coded end guides
Parallel or perpendicular p.c. board mounting
Mates with Series 8218
TECHNICAL SPECIFICATIONS
ORDERING CODE
00 8219 042
Number of Contacts
018, 030, 036, 042, 054, 072
722
Contact Code
(see below)
001
Variation Code
Current Rating:
5 amperes, maximum
Contact Resistance:
6 milliohms, maximum
Contact Material and Plating:
Phosphor Bronze
Gold, 10 microinches minimum,
over nickel, 50 to 100 microinches
Insulator Material:
Diallyl phthalate, glass-filled, flame resist-
ant per MIL-M-14F, Type SDGF.
Guidance Hardware:
Left hand guides: Metal, gold color
Right hand guides: Metal, silver color
Insulation Resistance:
5,000 megohms, minimum
Dielectric Withstanding Voltage:
Sea Level: 1000 Volts rms
3.4" Hg: 500 Volts rms
Insertion/Withdrawal Force:
2 to 8 ounces per contact
For Variation = 001
Code Contact Type
No.
000 P. C. solder tails formed
722 Wire hole tail unformed
For Variation = 002
Code Contact Type “Y”
No. Dim.
722 Wire hole tail .157
721 P. C. solder tail .219
736 P. C. solder tail .250
737 P. C. solder tail .531
753 P. C. solder tail .093
771 P. C. solder tail .453
For Variation = 005
NOTE: Connector is supplied with
mounting screws or eyelets, as applicable
(see drawings).
Contact Factory for Special Variations.
When Keying is ordered with part number, the Key is installed at the factory.
POLARIZING SYSTEM 1
3
5
7
9
11
13
15
17
2
4
6
8
10
12
14
16
18
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/conns.pdf
www.avx.com | 199
Varicon®
Series 8223 – 0.100" Dual Row Square Grid
FEATURES
Wide range of contact terminations including wire wrapping,
P.C. solder tail, wire hole, wire crimp
For 116", 332" P.C. card
Polarity and keying are built into the connector body to pre-
vent mismating
Perpendicular or parallel connector mounting
Proven Varicon®contact reliability
Protected male; recessed female contacts
Current Rating:
5 amperes with 22 AWG wire
Contact Resistance:
6 milliohms, maximum
Contact Material and Plating:
Phosphor Bronze
Nickel plate, 50 to 100 micro -
inches, followed by gold plate.
10 microinches minimum
Material:
Diallyl Phthalate, glass-filled,
flame resistant, per MIL-M-14-F,
Type SDGF
Insulation Resistance:
5,000 megohms, minimum
Dielectric Withstanding
Voltage:
Sea Level: 1,000 Volts rms
Insertion/Withdrawal Force:
2 to 8 ounces per contact
TECHNICAL SPECIFICATIONS
CONTACTS INSULATORS
Code Profile Description Part No. H Board
Dim. Thk.
Coined Tail Formed 60 8223 0223 .080
000 90° after installing 60 8223 0213 .062
(Max. 0236 Diag.)
Coined Tail Formed 60 8223 0243 .093
000 90° after installing 60 8223 0253
(Max. 0236 Diag.)
722 Wire Hole Tail 60 8200 1613 .162
(.032 x .050)
721 P.C. Tail .020 Sq. 60 8200 1623 .228
736 P.C. Tail .020 Sq. 60 8200 1633 .259
737 P.C. Tail .020 Sq. 60 8200 1643 .541
753 P.C. Tail .020 Sq. 60 8200 1653 .103
771 P.C. Tail .020 Sq. 60 8200 1663 .462
Crimp Contact
000 (Reel 3000) 60 8216 0323
22-30 AWG
000 Crimp Contact (Loose) 60 8216 0313
22-30 AWG
491 Wrappable/Removable 60 8216 0413 .560
Contact (.025 Sq.)
ORDERING CODE
00 8223 024 000
Contact Code
001
Variation Code
Number of Contacts
024, 048, 072 & 096
Accessories
Insulator Variation Contact Style Guide Pins Board
Type Sockets (R) Thickness
Keying
001 Formed Contact Terminal X .080 2.03
.062 1.57
Male PC Terminal X
(Exposed 002 Wire Hole Terminal X
Contacts) PC Straight Terminal X
Crimp Contact X
003 Wrappable Removable X
004 Formed Contact Terminal X .093 2.36
901 Formed Contact Terminal X .080 2.03
.062 1.57
Female PC Terminal X
(Exposed 902 Wire Hole Terminal X
Contacts) PC Straight Terminal X
Crimp Contact X
903 Wrappable Removable X
904 Formed Contact Terminal X .093 2.36
Use three digit code number when contacts are
to be factory installed. If contacts are to be sup-
plied loose, or contact tails to be formed, use
three zeros (000) in contact code section. Note
that the wire crimp tail contacts can only be
ordered as separate items by part numbers.
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/conns.pdf
200 | www.avx.com
M55302 Two Piece Edge Board Connectors
• M55302 Qualified
• 64 & 96 Pin Male and Female
• Vertical and Right Angle
• Gold Plated Contacts
• Certified to M55302 (500 mating cycles)
• Marked with Military number
• Group A & B testing standard
M55302 / XXX - XX
131 = 96 Pin R/A Male
132 = 96 Pin Vert Female
133 = 64 Pin R/A Male
134 = 64 Pin Vert Female
157 = 64 Pin Vert Male
148 = 64 Pin R/A Female
01-09 =
Contact Style
Contact Tail Length
Check for up-to-date CV Tables at
http://www.avx.com/docs/catalogs/conns.pdf
PERFORMANCE CLASS AND LOADING VARIATIONS
Military Designation
M55302/131-01 M55302/134-02
M55302/131-02 M55302/134-04
M55302/132-01 M55302/134-05
M55302/132-02 M55302/134-07
M55302/132-04 M55302/134-08
M55302/132-05 M55302/157-01
M55302/132-06 M55302/157-02
M55302/133-01 M55302/157-03
M55302/133-02 M55302/157-04
M55302/133-03 M55302/158-01
M55302/134-01 M55302/158-02
Class M55302 & DIN41612 DIN 41612 DIN 41612
Class I Class II Class III
Cycle Life 500+ Mating Cycles 400 Mating Cycles 50 Mating Cycles
QUALIFIED MILITARY PART NUMBERS
S-MAXCAP10M410-C
A KYOCERA GROUP COMPANY
http://www.avx.com
Contact:
AVX Myrtle Beach, SC
Tel: 843-448-9411
AVX Northwest, WA
Tel: 360-699-8746
AVX Midwest, IN
Tel: 317-861-9184
AVX Mid/Pacific, CA
Tel: 408-988-4900
AVX Northeast, MA
Tel: 617-479-0345
AVX Southwest, CA
Tel: 949-859-9509
AVX Canada
Tel: 905-238-3151
AVX South America
Tel: +55-11-4688-1960
AVX Limited, England
Tel: +44-1252-770000
AVX S.A.S., France
Tel: +33-1-69-18-46-00
AVX GmbH, Germany
Tel: +49-8131-9004-0
AVX SRL, Italy
Tel: +39-02-614-571
AVX Czech Republic
Tel: +420-57-57-57-521
AVX/ELCO UK
Tel: +44-1638-675000
ELCO Europe GmbH
Tel: +49-2741-299-0
AVX S.A., Spain
Tel: +34-91-63-97-197
AVX Benelux
Tel: +31-187-489-337
AVX/Kyocera (S) Pte Ltd.,
Singapore
Tel: +65-6286-7555
AVX/Kyocera, Asia, Ltd.,
Hong Kong
Tel: +852-2363-3303
AVX/Kyocera Yuhan Hoesa,
South Korea
Tel: +82-2785-6504
AVX/Kyocera HK Ltd.,
Taiwan
Tel: +886-2-2698-8778
AVX/Kyocera (M) Sdn Bhd,
Malaysia
Tel: +60-4228-1190
AVX/Kyocera International
Trading Co. Ltd.,
Shanghai
Tel: +86-21-6215-5588
AVX/Kyocera Asia Ltd.,
Shenzen
Tel: +86-755-3336-0615
AVX/Kyocera International
Trading Co. Ltd.,
Beijing
Tel: +86-10-6588-3528
AVX/Kyocera India
Liaison Office
Tel: +91-80-6450-0715
AMERICAS EUROPE ASIA-PACIFIC
KED Hong Kong Ltd.
Tel: +852-2305-1080/1223
KED Hong Kong Ltd.
Shenzen
Tel: +86-755-3398-9600
KED Company Ltd.
Shanghai
Tel: +86-21-6217-1201
KED Hong Kong Ltd.
Beijing
Tel: +86-10-5869-4655
KED Taiwan Ltd.
Tel: +886-2-2950-0268
KED Korea Yuhan Hoesa,
South Korea
Tel: +82-2-783-3604/6126
KED (S) Pte Ltd.
Singapore
Tel: +65-6509-0328
Kyocera Corporation
Japan
Tel: +81-75-604-3449
ASIA-KED
(KYOCERA Electronic Devices)