F339X1 330VAC
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Revision: 30-Jun-15 1Document Number: 28185
For technical questions, contact: rfi@vishay.com
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
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Interference Suppression Film Capacitor - Class X1
Radial MKP 330 VAC - Standard Across the Line
FEATURES
7.5 mm to 27.5 mm lead pitch
Small dimensions
High voltage capability
Material categorization:
for definitions of compliance please see
www.vishay.com/doc?99912
APPLICATIONS
For standard across the line X1 applications
See also application note: www.vishay.com/doc?28153
Note
•For more detailed data and test requirements, contact rfi@vishay.com
Note
•Ø d
t ± 10 % of standard diameter specified
QUICK REFERENCE DATA
Capacitance range (E12 series) 0.001 µF to 2.2 µF (preferred values according to E6)
Capacitance tolerance ± 20 %; ± 10 %; (± 5 % on request)
Climatic testing class according to IEC 60068-1 55/110/56/B
Rated AC voltage 330 VAC; 50 Hz to 60 Hz
Permissible DC voltage 800 VDC at 85 °C
Maximum application temperature 110 °C
Reference standards
IEC 60384-14 and EN 60384-14
IEC 60065 requires pass. flamm. class B
CSA-E384-14; UL 60384-14
CQC
Dielectric Polypropylene film
Electrodes Metallized
Construction
Mono construction
Encapsulation Plastic case, epoxy resin sealed, flame retardant
UL-class 94 V-0
Leads Tinned wire
Marking
C-value; tolerance; rated voltage; sub-class; manufacturer’s type;
code for dielectric material; manufacturer location, year and week;
manufacturer's logo or name; safety approvals
DIMENSIONS in millimeters
w
Ø dt
l
P
h
lt
F339X1 330VAC
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Revision: 30-Jun-15 2Document Number: 28185
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COMPOSITION OF CATALOG NUMBER
Notes
For detailed tape specifications refer to packaging information www.vishay.com/doc?28139
(1) Packaging will be bulk for all capacitors with pitch 15 mm and such with long leads (> 5 mm).
Capacitors with short leads up to 5 mm and pitch > 15 mm will be in tray and asking code will be “T”.
0.1 2
13
10 4
100 5
1000 6
10 000 7
22 pins
(#) Customized
0 = Standard
Other = Special
33 = 330 VAC
1 2 3 4 5 6 7 8 9 10 11 12 1314 15 16 17
F 3 3 9 X 1 4 1 0 3 3MFM 2B0
± 20 %
± 10 %
± 5 %
M
K
J
ASpecial
tolerance
B/T Bulk/loose (1) Not for bent back
W Tape and reel (H: 18.5 mm; 500 mm) Pitch ≤ 22.5 mm
3.5 + 1, - 0.5 A 7.5 and 10
3.5 ± 0.3 P ≥ 15
5 ± 1 M All
25 ± 2 I All
0: Space holder
MULTIPLIER (nF)
7.5 C
10 D
15 F
22.5 I
27.5 K
P1 (mm) PITCH CODECODE
Example:
310 10 nF 0.01 µF
410 100 nF 0.1 µF
510 1000 nF 1.0 µF
VOLTAGE
CLASS
TYPE
SPECIAL CODE FOR TERMINAL
SPECIAL
TOLERANCE
PACKING CODE PACKING STYLE REMARK
lt (mm) LEAD LENGTH CODE PITCH (mm)
F339X1 330VAC
www.vishay.com Vishay BCcomponents
Revision: 30-Jun-15 3Document Number: 28185
For technical questions, contact: rfi@vishay.com
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000
Note
(1) See “Voltage Proof Test for Metalized Film Capacitors”: www.vishay.com/doc?28169
SPECIFIC REFERENCE DATA
DESCRIPTION VALUE
Rated AC voltage (URAC)330 V
Permissible DC voltage (URDC)800 V
Tangent of loss angle At 1 kHz At 10 kHz
C < 100 nF 10 x 10-4 20 x 10-4
470 nF C 2.2 µF 20 x 10-4 70 x 10-4
Rated voltage pulse slope (dU/dt)R at 465 VDC 100 V/µs
R between leads, for C 0.33 µF at 100 V; 1 min > 15 000 M
RC between leads, for C > 0.33 µF at 100 V; 1 min > 5000 s
R between leads and case; 100 V; 1 min > 30 000 M
Withstanding (DC) voltage (cut off current 10 mA) (1); rise time 1000 V/s:
C 2.2 µF 3400 V; 1 min
C > 2.2 µF 2200 V; 1 min
Withstanding (AC) voltage between leads and case 2160 V; 1 min
Maximum application temperature 110 °C
ELECTRICAL DATA AND ORDERING INFORMATION
URAC
(V)
CAP.
(μF)
DIMENSIONS
w x h x l
(mm)
MASS
(g) (3)
CATALOG NUMBER F339X1... AND PACKAGING
LOOSE IN BOX TAPED REEL
SHORT LEADS LONG LEADS
lt = 3.5 mm
+ 1 mm/- 0.5 mm
( 10 mm)
or 3.5 mm ± 0.3 mm
( 15 mm)
lt = 5.0 mm
± 1.0 mm SPQ lt = 25.0 mm
± 2.0 mm SPQ
Ø = 500 mm (1)(2)
H = 18.5 mm;
P0 = 12.7 mm
SPQ
330
PITCH = 7.5 mm ± 0.4 mm; dt = 0.50 mm ± 0.05 mm; C-TOL. = ± 20 %
0.0010
4.0 x 9.0 x 10.0 0.4
21033MCA2B0 21033MCM2B0
1500
21033MCI2B0
1000
21033MC02W0
25000.0015 21533MCA2B0 21533MCM2B0 21533MCI2B0 21533MC02W0
0.0022 22233MCA2B0 22233MCM2B0 22233MCI2B0 22233MC02W0
0.0033 5.0 x 10.5 x 10.0 0.4 23333MCA2B0 23333MCM2B0 1000 23333MCI2B0 1250 23333MC02W0 2000
0.0047 6.0 x 11.5 x 10.0 0.8 24733MCA2B0 24733MCM2B0 750 24733MCI2B0 1000 24733MC02W0 1900
PITCH = 10.0 mm ± 0.4 mm; dt = 0.60 mm ± 0.06 mm; C-TOL. = ± 20 %
0.0010
4.0 x 10.0 x 12.5 0.6
21033MDA2B0 21033MDM2B0
1000
21033MDI2B0
1250
21033MD02W0
1400
0.0015 21533MDA2B0 21533MDM2B0 21533MDI2B0 21533MD02W0
0.0022 22233MDA2B0 22233MDM2B0 22233MDI2B0 22233MD02W0
0.0033 23333MDA2B0 23333MDM2B0 23333MDI2B0 23333MD02W0
0.0047 24733MDA2B0 24733MDM2B0 24733MDI2B0 24733MD02W0
0.0068 26833MDA2B0 26833MDM2B0 26833MDI2B0 26833MD02W0
0.010 31033MDA2B0 31033MDM2B0 31033MDI2B0 31033MD02W0
0.015 31533MDA2B0 31533MDM2B0 31533MDI2B0 31533MD02W0
0.022 5.0 x 11.0 x 12.5 0.82 32233MDA2B0 32233MDM2B0 1000 32233MDI2B0 1000 32233MD02W0 1100
0.033 6.0 x 12.0 x 12.5 1.1 33333MDA2B0 33333MDM2B0 750 33333MDI2B0 750 33333MD02W0 900
PITCH = 15.0 mm ± 0.4 mm; dt = 0.60 mm ± 0.06 mm; C-TOL. = ± 20 %
0.010
5.0 x 11.0 x 17.5 1.0
31033MFP2B0 31033MFM2B0
1250
31033MFI2B0
1000
31033MF02W0
1100
0.015 31533MFP2B0 31533MFM2B0 31533MFI2B0 31533MF02W0
0.022 32233MFP2B0 32233MFM2B0 32233MFI2B0 32233MF02W0
0.033 33333MFP2B0 33333MFM2B0 33333MFI2B0 33333MF02W0
0.047 34733MFP2B0 34733MFM2B0 34733MFI2B0 34733MF02W0
0.068 6.0 x 12.0 x 17.5 1.4 36833MFP2B0 36833MFM2B0 1000 36833MFI2B0 1000 36833MF02W0 900
PITCH = 15.0 mm ± 0.4 mm; dt = 0.80 mm ± 0.08 mm; C-TOL. = ± 20 %
0.10 7.0 x 13.5 x 17.5 1.8 41033MFP2B0 41033MFM2B0 750 41033MFI2B0 500 41033MF02W0 800
0.15 8.5 x 15.0 x 17.5 2.4 41533MFP2B0 41533MFM2B0 750 41533MFI2B0 500 41533MF02W0 650
0.22 10.0 x 16.5 x 17.5 3.0 42233MFP2B0 42233MFM2B0 500 42233MFI2B0 450 42233MF02W0 600
F339X1 330VAC
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Revision: 30-Jun-15 4Document Number: 28185
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330
PITCH = 22.5 mm ± 0.4 mm; dt = 0.80 mm ± 0.08 mm; C-TOL. = ± 20 %
0.10 6.0 x 15.5 x 26.0 2.4 41033MIP2T0 41033MIM2T0 300 41033MII2B0 250 41033MI02W0 600
0.15 41533MIP2T0 41533MIM2T0 41533MII2B0 41533MI02W0
0.22 7.0 x 16.5 x 26.0 2.9 42233MIP2T0 42233MIM2T0 200 42233MII2B0 250 42233MI02W0 500
0.33 8.5 x 18.0 x 26.0 3.8 43333MIP2T0 43333MIM2T0 200 43333MII2B0 250 43333MI02W0 450
0.47 10.0 x 19.5 x 26.0 6.8 44733MIP2T0 44733MIM2T0 200 44733MII2B0 200 44733MI02W0 350
0.68 12.0 x 22.0 x 26.0 7.8 46833MIP2T0 46833MIM2T0 150 46833MII2B0 200 46833MI02W0 300
0.82 12.5 x 22.5 x 26.5 7.8 48233MIP2T0 48233MIM2T0 140 48233MII2B0 400 48233MI02W0 300
PITCH = 27.5 mm ± 0.4 mm; dt = 0.80 mm ± 0.08 mm; C-TOL. = ± 20 %
0.22
9.0 x 19.0 x 31.5 5.5
42233MKP2T0 42233MKM2T0
100
42233MKI2B0
150
--
0.33 43333MKP2T0 43333MKM2T0 43333MKI2B0
0.47 44733MKP2T0 44733MKM2T0 44733MKI2B0
0.68 11.0 x 21.0 x 31.0 7.4 46833MKP2T0 46833MKM2T0 100 46833MKI2B0 125
1.0 13.0 x 23.0 x 31.0 9.2 51033MKP2T0 51033MKM2T0 100 51033MKI2B0 125
1.5 18.0 x 28.0 x 31.5 16.1 51533MKP2T0 51533MKM2T0 100 51533MKI2B0 100
2.2 21.0 x 31.0 x 31.0 20.3 52233MKP2T0 52233MKM2T0 50 52233MKI2B0 75
PITCH = 7.5 mm ± 0.4 mm; dt = 0.50 mm ± 0.05 mm; C-TOL. = ± 10 %
0.0010
4.0 x 9.0 x 10.0 0.4
21033KCA2B0 21033KCM2B0
1500
21033KCI2B0
1000
21033KC02W0
2500
0.0012 21233KCA2B0 21233KCM2B0 21233KCI2B0 21233KC02W0
0.0015 21533KCA2B0 21533KCM2B0 21533KCI2B0 21533KC02W0
0.0018 21833KCA2B0 21833KCM2B0 21833KCI2B0 21833KC02W0
0.0022 22233KCA2B0 22233KCM2B0 22233KCI2B0 22233KC02W0
0.0027 22733KCA2B0 22733KCM2B0 22733KCI2B0 22733KC02W0
0.0033 5.0 x 10.5 x 10.0 0.4 23333KCA2B0 23333KCM2B0 1000 23333KCI2B0 1250 23333KC02W0 2000
0.0039 23933KCA2B0 23933KCM2B0 23933KCI2B0 23933KC02W0
0.0047 6.0 x 11.5 x 10.0 0.8 24733KCA2B0 24733KCM2B0 750 24733KCI2B0 1000 24733KC02W0 1900
0.0056 25633KCA2B0 25633KCM2B0 25633KCI2B0 25633KC02W0
PITCH = 10.0 mm ± 0.4 mm; dt = 0.60 mm ± 0.06 mm; C-TOL. = ± 10 %
0.0010
4.0 x 10.0 x 12.5 0.6
21033KDA2B0 21033KDM2B0
1000
21033KDI2B0
1250
21033KD02W0
1400
0.0012 21233KDA2B0 21233KDM2B0 21233KDI2B0 21233KD02W0
0.0015 21533KDA2B0 21533KDM2B0 21533KDI2B0 21533KD02W0
0.0018 21833KDA2B0 21833KDM2B0 21833KDI2B0 21833KD02W0
0.0022 22233KDA2B0 22233KDM2B0 22233KDI2B0 22233KD02W0
0.0027 22733KDA2B0 22733KDM2B0 22733KDI2B0 22733KD02W0
0.0033 23333KDA2B0 23333KDM2B0 23333KDI2B0 23333KD02W0
0.0039 23933KDA2B0 23933KDM2B0 23933KDI2B0 23933KD02W0
0.0047 24733KDA2B0 24733KDM2B0 24733KDI2B0 24733KD02W0
0.0056 25633KDA2B0 25633KDM2B0 25633KDI2B0 25633KD02W0
0.0068 26833KDA2B0 26833KDM2B0 26833KDI2B0 26833KD02W0
0.0082 28233KDA2B0 28233KDM2B0 28233KDI2B0 28233KD02W0
0.010 31033KDA2B0 31033KDM2B0 31033KDI2B0 31033KD02W0
0.012 31233KDA2B0 31233KDM2B0 31233KDI2B0 31233KD02W0
0.015 31533KDA2B0 31533KDM2B0 31533KDI2B0 31533KD02W0
0.018 5.0 x 11.0 x 12.5 0.82 31833KDA2B0 31833KDM2B0 1000 31833KDI2B0 1000 31833KD02W0 1100
0.022 32233KDA2B0 32233KDM2B0 32233KDI2B0 32233KD02W0
0.027 6.0 x 12.0 x 12.5 1.1 32733KDA2B0 32733KDM2B0 750 32733KDI2B0 750 32733KD02W0 900
0.033 33333KDA2B0 33333KDM2B0 33333KDI2B0 33333KD02W0
ELECTRICAL DATA AND ORDERING INFORMATION
URAC
(V)
CAP.
(μF)
DIMENSIONS
w x h x l
(mm)
MASS
(g) (3)
CATALOG NUMBER F339X1... AND PACKAGING
LOOSE IN BOX TAPED REEL
SHORT LEADS LONG LEADS
lt = 3.5 mm
+ 1 mm/- 0.5 mm
( 10 mm)
or 3.5 mm ± 0.3 mm
( 15 mm)
lt = 5.0 mm
± 1.0 mm SPQ lt = 25.0 mm
± 2.0 mm SPQ
Ø = 500 mm (1)(2)
H = 18.5 mm;
P0 = 12.7 mm
SPQ
F339X1 330VAC
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Revision: 30-Jun-15 5Document Number: 28185
For technical questions, contact: rfi@vishay.com
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000
Notes
SPQ = Standard Packing Quantity
(1) Reel diameter = 356 mm is available on request
(2) H = in-tape height; P0 = sprocket hole distance; for detailed specifications refer to “Packaging Information”
(3) Weight for short lead product only
330
PITCH = 15.0 mm ± 0.4 mm; dt = 0.60 mm ± 0.06 mm; C-TOL. = ± 10 %
0.010
5.0 x 11.0 x 17.5 1.0
31033KFP2B0 31033KFM2B0
1000
31033KFI2B0
1000
31033KF02W0
1100
0.012 31233KFP2B0 31233KFM2B0 31233KFI2B0 31233KF02W0
0.015 31533KFP2B0 31533KFM2B0 31533KFI2B0 31533KF02W0
0.018 31833KFP2B0 31833KFM2B0 31833KFI2B0 31833KF02W0
0.022 32233KFP2B0 32233KFM2B0 32233KFI2B0 32233KF02W0
0.027 32733KFP2B0 32733KFM2B0 32733KFI2B0 32733KF02W0
0.033 33333KFP2B0 33333KFM2B0 33333KFI2B0 33333KF02W0
0.039 33933KFP2B0 33933KFM2B0 33933KFI2B0 33933KF02W0
0.047 34733KFP2B0 34733KFM2B0 34733KFI2B0 34733KF02W0
0.056 6.0 x 12.0 x 17.5 1.4 35633KFP2B0 35633KFM2B0 1000 35633KFI2B0 1000 35633KF02W0 900
0.068 36833KFP2B0 36833KFM2B0 36833KFI2B0 36833KF02W0
PITCH = 15.0 mm ± 0.4 mm; dt = 0.80 mm ± 0.08 mm; C-TOL. = ± 10 %
0.082 7.0 x 13.5 x 17.5 1.8 38233KFP2B0 38233KFM2B0 1000 38233KFI2B0 500 38233KF02W0 800
0.100 41033KFP2B0 41033KFM2B0 41033KFI2B0 41033KF02W0
0.120 8.5 x 15.0 x 17.5 2.4 41233KFP2B0 41233KFM2B0 1000 41233KFI2B0 500 41233KF02W0 650
0.150 41533KFP2B0 41533KFM2B0 41533KFI2B0 41533KF02W0
0.180 10.0 x 16.5 x 17.5 3.0 41833KFP2B0 41833KFM2B0 500 41833KFI2B0 500 41833KF02W0 600
PITCH = 22.5 mm ± 0.4 mm; dt = 0.80 mm ± 0.08 mm; C-TOL. = ± 10 %
0.10
6.0 x 15.5 x 26.0 2.4
41033KIP2T0 41033KIM2T0
300
41033KII2B0
250
41033KI02W0
6000.12 41233KIP2T0 41233KIM2T0 41233KII2B0 41233KI02W0
0.15 41533KIP2T0 41533KIM2T0 41533KII2B0 41533KI02W0
0.18 7.0 x 16.5 x 26.0 2.9 41833KIP2T0 41833KIM2T0 200 41833KII2B0 250 41833KI02W0 500
0.22 42233KIP2T0 42233KIM2T0 42233KII2B0 42233KI02W0
0.27 8.5 x 18.0 x 26.0 3.8 42733KIP2T0 42733KIM2T0 200 42733KII2B0 250 42733KI02W0 450
0.33 43333KIP2T0 43333KIM2T0 43333KII2B0 43333KI02W0
0.39 10.0 x 19.5 x 26.0 6.8 43933KIP2T0 43933KIM2T0 200 43933KII2B0 200 43933KI02W0 350
0.47 12.0 x 22.0 x 26.0 7.8 44733KIP2T0 44733KIM2T0 150 44733KII2B0 200 44733KI02W0 300
0.56 45633KIP2T0 45633KIM2T0 45633KII2B0 45633KI02W0
0.68 12.5 x 22.5 x 26.5 8.0 46833KIP2T0 46833KIM2T0 150 46833KII2B0 200 46833KI02W0 300
PITCH = 27.5 mm ± 0.4 mm; dt = 0.80 mm ± 0.08 mm; C-TOL. = ± 10 %
0.22
9.0 x 19.0 x 31.5 5.5
42233KKP2T0 42233KKM2T0
100
42233KKI2B0
150
--
0.27 42733KKP2T0 42733KKM2T0 42733KKI2B0
0.33 43333KKP2T0 43333KKM2T0 43333KKI2B0
0.39 43933KKP2T0 43933KKM2T0 43933KKI2B0
0.47 11.0 x 21.0 x 31.0 7.4 44733KKP2T0 44733KKM2T0 100 44733KKI2B0 125
0.56 45633KKP2T0 45633KKM2T0 45633KKI2B0
0.68 13.0 x 23.0 x 31.0 9.2 46833KKP2T0 46833KKM2T0 100 46833KKI2B0 125
0.82 48233KKP2T0 48233KKM2T0 48233KKI2B0
1.0 15.0 x 25.0 x 31.5 12.3 51033KKP2T0 51033KKM2T0 100 51033KKI2B0 125
1.2 51233KKP2T0 51233KKM2T0 51233KKI2B0
1.5 18.0 x 28.0 x 31.5 16.1 51533KKP2T0 51533KKM2T0 100 51533KKI2B0 100
1.8 21.0 x 31.0 x 31.0 20.3 51833KKP2T0 51833KKM2T0 50 51833KKI2B0 75
2.2 52233KKP2T0 52233KKM2T0 52233KKI2B0
ELECTRICAL DATA AND ORDERING INFORMATION
URAC
(V)
CAP.
(μF)
DIMENSIONS
w x h x l
(mm)
MASS
(g) (3)
CATALOG NUMBER F339X1... AND PACKAGING
LOOSE IN BOX TAPED REEL
SHORT LEADS LONG LEADS
lt = 3.5 mm
+ 1 mm/- 0.5 mm
( 10 mm)
or 3.5 mm ± 0.3 mm
( 15 mm)
lt = 5.0 mm
± 1.0 mm SPQ lt = 25.0 mm
± 2.0 mm SPQ
Ø = 500 mm (1)(2)
H = 18.5 mm;
P0 = 12.7 mm
SPQ
F339X1 330VAC
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Revision: 30-Jun-15 6Document Number: 28185
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THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
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MOUNTING
Normal Use
The capacitors are designed for mounting on printed-circuit boards. The capacitors packed in bandoliers are designed for
mounting on printed-circuit boards by means of automatic insertion machines.
For detailed tape specifications refer to packaging information www.vishay.com/docs?28139
Specific Method of Mounting to Withstand Vibration and Shock
In order to withstand vibration and shock tests, it must be ensured that the stand-off pips are in good contact with the
printed-circuit board:
For original pitch 15 mm the capacitors shall be mechanically fixed by the leads
For larger pitches the capacitors shall be mounted in the same way and the body clamped
Space Requirements on Printed-Circuit Board
The maximum space for length (lmax.), width (wmax.) and height (hmax.) of film capacitors to take in account on the printed circuit
board is shown in the drawings.
For products with pitch 15 mm, w = l = 0.3 mm and h = 0.1 mm
For products with 15 mm < pitch 27.5 mm, w =l = 0.5 mm and h = 0.1 mm
Eccentricity defined as in drawing. The maximum eccentricity is smaller than or equal to the lead diameter of the product
concerned.
SOLDERING CONDITIONS
For general soldering conditions and wave soldering profile we refer to the document “Soldering Guidelines for Film
Capacitors”: www.vishay.com/doc?28171
STORAGE TEMPERATURE
Tstg = -25 °C to +35 °C with RH maximum 75 % without condensation
RATINGS AND CHARACTERISTICS REFERENCE CONDITIONS
Unless otherwise specified, all electrical values apply to an ambient free temperature of 23 °C ± 1 °C, an atmospheric pressure
of 86 kPa to 106 kPa and a relative humidity of 50 % ± 2 %.
For reference testing, a conditioning period shall be applied over 96 h ± 4 h by heating the products in a circulating air oven at
the rated temperature and a relative humidity not exceeding 20 %.
APPROVALS
SAFETY APPROVALS X1 VOLTAGE VALUE FILE NUMBERS LINK
EN 60384-14 (ENEC)
(= IEC 60384-14 ed-3) 330 VAC 1 nF to 2.2 µF 40031978 www.vishay.com/doc?28229
UL 60384-14 330 VAC 1 nF to 2.2 µF E354331B www.vishay.com/doc?28210
CSA-E384-14 330 VAC 1 nF to 2.2 µF E354331B www.vishay.com/doc?28210
CQC 330 VAC 1 nF to 2.2 µF 12001067597 (L) www.vishay.com/doc?28235
12001067600 (F) www.vishay.com/doc?28236
CB-test certificate 330 VAC 1 nF to 2.2 µF DE1-48009/M1 www.vishay.com/doc?28218
The ENEC-approval together with the CB-certificate replace all national marks of the following countries (they have already signed the
ENEC-agreement): Austria; Belgium; Czech. Republic; Denmark; Finland; France; Germany; Greece; Hungary; Ireland; Italy; Luxembourg;
Netherlands; Norway; Portugal; Slovenian; Spain; Sweden, Switzerland and United Kingdom.
CBA116
Eccentricity
wmax. = w + Δw
hmax. = h + Δh
Imax. = I + ΔI
Seating plane
F339X1 330VAC
www.vishay.com Vishay BCcomponents
Revision: 30-Jun-15 7Document Number: 28185
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THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000
CHARACTERISTICS
Capacitance as a function of ambient temperature
(typical curve)
Impedance as a function of frequency
(typical curve)
Max. RMS voltage as a function of frequency
Tangent of loss angle as a function of frequency
(typical curve)
Resonant frequency as a function of capacitance
(typical curve)
Max. RMS current as a function of frequency
- 6
- 2
- 4
0
2
4
- 50 0 50 100
ΔC/C (%)
Tamb (°C)
Typical
Max.
Min.
0.001
0.01
0.1
1
10
100
1000
10 000 100 000 1 000 000 10 000 000 100 000 000
Z ()
f (Hz)
100 nF
470 nF
1 µF
2.2 µF
1 nF
4.7 nF
10 nF
47 nF
10
100
1000
10 100 1000 10 000 100 000 1 000 000
AC Voltage (V)
f (Hz)
Tamb 110 °C
1
10
100
1000
10 100 1000 10 000 100 000
Dissipation Factor (x 10-4)
f (Hz)
220 nF C 2.2 µF
47 nF C 220 nF
10 nF C 47 nF
C 10 nF
0.1
1
10
100
1 10 100 1000 10 000 100 000
f (MHz)
C (nF)
X1
1
10
100
1000
10 000
1000 10 000 100 000 1 000 000
AC Current (mA)
f (Hz)
2.2 µF
1 µF
470 nF
1 nF
4.7 nF
10 nF
47 nF
100 nF
F339X1 330VAC
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Insulation resistance as a function of ambient temperature
(typical curve)
APPLICATION NOTES
For X1 electromagnetic interference suppression in standard across the line applications (50 Hz/60 Hz) with a maximum
mains voltage of 330 VAC
For series impedance applications we refer to the application note: www.vishay.com/doc?28153
For capacitors connected in parallel, normally the proof voltage and possibly the rated voltage must be reduced. For
information depending of the capacitance value and the number of parallel connections contact: rfi@vishay.com
These capacitors are not intended for continuous pulse applications. For these situations, capacitors of the AC and pulse
programs must be used.
The maximum ambient temperature must not exceed 110 °C.
Rated voltage pulse slope:
if the pulse voltage is lower than the rated voltage, the values of the specific reference data can be multiplied by 465 VDC and
divided by the applied voltage.
INSPECTION REQUIREMENTS
General Notes
Sub-clause numbers of tests and performance requirements refer to the “Sectional Specification, Publication
IEC 60384-14 ed-3 and Specific Reference Data”.
GROUP C INSPECTION REQUIREMENTS
SUB-CLAUSE NUMBER AND TEST CONDITIONS PERFORMANCE REQUIREMENTS
SUB-GROUP C1A PART OF SAMPLE OF
SUB-GROUP C1
4.1 Dimensions (detail) As specified in chapters “General Data” of this
specification
Initial measurements Capacitance
Tangent of loss angle at 10 kHz for C 1 µF
Tangent of loss angle at 1 kHz for C > 1 µF
4.3 Robustness of
terminations
Tensile: load 10 N; 10 s
Bending: load 5 N; 4 x 90°
No visible damage
4.4 Resistance to soldering heat No pre-drying
Method: 1A
Solder bath: 280 °C ± 5 °C
Duration: 10 s
104
105
106
0 20406080100
RC (s)
Tamb (°C)
F339X1 330VAC
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SUB-GROUP C1A PART OF SAMPLE OF
SUB-GROUP C1
4.19 Component solvent
resistance
Isopropylalcohol at room temperature
Method: 2
Immersion time: 5 min ± 0.5 min
Recovery time: min. 1 h, max. 2 h
4.4.2 Final measurements Visual examination No visible damage
Legible marking
Capacitance |C/C| 5 % of the value measured initially
Tangent of loss angle Increase of tan 0.008 for 1 µF
Increase of tan 0.005 for C > 1 µF
Compared to values measured initially
Insulation resistance As specified in section “Insulation
Resistance” of this specification
SUB-GROUP C1B OTHER PART OF
SAMPLE OF SUB-GROUP C1
Initial measurements Capacitance
Tangent of loss angle at 10 kHz for C 1 µF
Tangent of loss angle at 1 kHz for C > 1 µF
4.20 Solvent resistance of the marking Isopropyl alcohol at room temperature
Method: 1
Rubbing material: cotton wool
Immersion time: 5 min ± 0.5 min
No visible damage
Legible marking
4.6 Rapid change of temperature A = -55 °C
B = +110 °C
5 cycles
Duration t = 30 min
4.6.1 Inspection Visual examination No visible damage
4.7 Vibration Mounting: see section “Mounting” of this
specification
Procedure B4:
frequency range: 10 Hz to 55 Hz
Amplitude: 0.75 mm or
Acceleration 98 m/s
(whichever is less severe)
Total duration 6 h
4.7.2 Final inspection Visual examinationNo visible damage
4.9 Shock Mounting: see section “Mounting” for more
information
Pulse shape: half sine
Acceleration: 490 m/s
Duration of pulse: 11 ms
4.9.2 Final measurements Visual examination No visible damage
Capacitance |C/C| 5 % of the value measured initially
Tangent of loss angle Increase of tan 0.008 for 1 µF
Increase of tan 0.005 for C > 1 µF
Compared to values measured initially
Insulation resistance As specified in section “Insulation
Resistance” of this specification
GROUP C INSPECTION REQUIREMENTS
SUB-CLAUSE NUMBER AND TEST CONDITIONS PERFORMANCE REQUIREMENTS
F339X1 330VAC
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SUB-GROUP C1
COMBINED SAMPLE OF SPECIMENS
OF SUB-GROUPS C1A AND C1B
4.11 Climatic sequence
4.11.1 Initial measurements Capacitance
Measured in 4.4.2 and 4.9.2
Tangent of loss angle:
measured initially in C1A and C1B
4.11.2 Dry heat Temperature: 110 °C
4.11.3 Damp heat cyclic
Test Db
First cycle
Duration: 16 h
4.11.4 Cold Temperature: -55 °C
4.11.5 Damp heat cyclic
Test Db
remaining cycles
Duration: 2 h
4.11.6 Final measurements Visual examination No visible damage
Legible marking
Capacitance |C/C| 5 % of the value measured in 4.11.1.
Tangent of loss angle Increase of tan 0.008 for 1 µF
Increase of tan 0.005 for C > 1 µF
Compared to values measured in 4.11.1
Voltage proof
1900 VDC; 1 min between terminations
No permanent breakdown or flash-over
Insulation resistance 50 % of values specified in section
“Insulation Resistance” of this specification
SUB-GROUP C2
4.12 Damp heat steady state 56 days, 40 °C, 90 % to 95 % RH,
no load
4.12.1 Initial measurements Capacitance
Tangent of loss angle at 1 kHz
4.12.3 Final measurements Visual examination No visible damage
Legible marking
Capacitance|C/C| 5 % of the value measured in 4.12.1.
Tangent of loss angle Increase of tan 0.008
Compared to values measured in 4.12.1.
Voltage proof
1900 VDC; 1 min between terminations
No permanent breakdown or flash-over
Insulation resistance 50 % of values specified in section
“Insulation Resistance” of this specification
GROUP C INSPECTION REQUIREMENTS
SUB-CLAUSE NUMBER AND TEST CONDITIONS PERFORMANCE REQUIREMENTS
F339X1 330VAC
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SUB-GROUP C3
4.13.1 Initial measurements Capacitance
Tangent of loss angle at 10 kHz for C 1 µF
Tangent of loss angle at 1 kHz for C > 1 µF
4.13 Impulse voltage 3 successive impulses, full wave, peak
voltage:
X1: 4.0 kV for C 1 µF
X1: 4.0 kV/C for C > 1 µF
Max. 24 pulses
No self healing breakdowns or flash-over
4.14 Endurance Duration: 1000 h
1.25 x URAC at 110 °C
Once in every hour the voltage is increased
to 1000 VRMS for 0.1 s via resistor of
47 ± 5 %
4.14.7 Final measurements Visual examination No visible damage
Legible marking
Capacitance |C/C| 10 % compared to values measured
in 4.13.1.
Tangent of loss angle Increase of tan 0.008 for 1 µF
Increase of tan 0.005 for C > 1 µF
Compared to values measured in 4.13.1
Voltage proof
1900 VDC; 1 min between terminations
2160 VAC; 1 min between terminations and
case
No permanent breakdown or flash-over
Insulation resistance 50 % of values specified in section
“Insulation Resistance” of this specification
SUB-GROUP C4
4.15 Charge and discharge 10 000 cycles
charged to 465 VDC
Discharge resistance:
Rmin. = 2.2 for pitch 37.5 mm and 52.5 mm
4.15.1 Initial measurements Capacitance
Tangent of loss angle at 10 kHz for C 1 µF
Tangent of loss angle at 1 kHz for C > 1 µF
4.15.3 Final measurements Capacitance |C/C| 10 % compared to values measured
in 4.15.1.
Tangent of loss angle Increase of tan 0.008 for 1 µF
Increase of tan 0.005 for C > 1 µF
Compared to values measured in 4.15.1
Insulation resistance 50 % of values specified in section
“Insulation Resistance” of this specification
GROUP C INSPECTION REQUIREMENTS
SUB-CLAUSE NUMBER AND TEST CONDITIONS PERFORMANCE REQUIREMENTS
R465 VDC
1.5 x C (dU/dt)
----------------------------------------
=
F339X1 330VAC
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SUB-GROUP C5
4.16 Radio frequency characteristic Resonance frequency 0.9 times the value as specified in section
“Resonant Frequency” of this specification
SUB-GROUP C6
4.17 Passive flammability
Class B
Bore of gas jet: Ø 0.5 mm
Fuel: butane
Test duration for actual volume V in mm3:
V 250: 10 s
250 < V 500: 20 s
500 < V 1750: 30 s
V > 1750: 60 s
One flame application
After removing test flame from capacitor, the
capacitor must not continue to burn for more
than 10 s. No burning particle must drop from
the sample.
SUB-GROUP C7
4.18 Active flammability 20 cycles of 4 kV discharges on the test
capacitor connected to URAC
The cheese cloth around the capacitors shall
not burn with a flame.
No electrical measurements are required.
GROUP C INSPECTION REQUIREMENTS
SUB-CLAUSE NUMBER AND TEST CONDITIONS PERFORMANCE REQUIREMENTS
45.0 °
~ 8 mm
12 mm
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