M39006/30, M39006/31
www.vishay.com Vishay
Revison: 07-Mar-2019 1Document Number: 40160
For technical questions, contact: tantalum@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
Wet Tantalum Capacitors, Military Established Reliability,
MIL-PRF-39006/30/31 Qualified Styles CLR90, CLR91
FEATURES
Hermetically sealed
Metal cased
•Low ESR
Axial lead
•Tubular
STYLE, MILITARY SPECIFICATION
CLR90, M39006/30 MIL-PRF-39006/30
CLR91, M39006/31 MIL-PRF-39006/31
PERFORMANCE CHARACTERISTICS
www.vishay.com/doc?40188
Operating Temperature: -55 °C to +125 °C
Capacitance Range: M39006/30 - 1.7 μF to 1200 μF;
M39006/31 - 6.8 μF to 2200 μF
Capacitance Tolerance: ± 5 %, ± 10 %, ± 20 %
Voltage Rating: 6 VDC to 125 VDC
Established Reliability Tantalum Capacitors to Military
Specification MIL-PRF-39006: In accordance with the
military specification MIL-PRF-39006 all capacitors are
marked with the military part number (M39006/xx-xxxx)
rather than the older style designation (CLR90, CLR91) and
should be ordered as such.
For information on the performance characteristics of these
capacitors, please refer to the latest issue of the Military
Specification. MIL-PRF-39006 establishes 1000 h failure
rate levels of 1 %, 0.1 %, and 0.01 %. When ordering these
parts, care must be exercised that the correct part number
expressing the appropriate failure level be specified.
Each order for military style capacitors requiring
government inspection must state whether inspection is to
be at the destination or at the Vishay plant. Orders requiring
source inspection cannot be shipped until this has been
accomplished.
ORDERING INFORMATION
M39006 /30 -0512 H
BASIC
DOCUMENT NUMBER
SLASH SHEET DASH NUMBER DESIGNATION OF HIGH
VIBRATION (OPTIONAL)
Indicates the basic
specification; in this case
MIL-PRF-39006
Indicates the specification
sheet of the basic
military specification
Taken from Standard /
Extended Ratings tables
H, optional, if specified
M39006/30, M39006/31
www.vishay.com Vishay
Revison: 07-Mar-2019 2Document Number: 40160
For technical questions, contact: tantalum@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) Typical length, for reference only
DIMENSIONS in inches [millimeters]
CASE CODE
BARE CASE WITH INSULATING SLEEVE E
LEAD LENGTH
WEIGHT
(oz. / g)
(MAX.)
D L D (MAX.) L
(1)
T1 0.188 ± 0.016
[4.78 ± 0.41]
0.453 + 0.031 / - 0.016
[11.51 + 0.79 / - 0.41]
0.219
[5.56]
0.565
[14.35]
1.500 ± 0.250
[38.10 ± 6.35]
0.09
[2.6]
T2 0.281 ± 0.016
[7.14 ± 0.41]
0.641 + 0.031 / - 0.016
[16.28 + 0.79 / - 0.41]
0.312
[7.92]
0.785
[19.94]
2.250 ± 0.250
[57.15 ± 6.35]
0.22
[6.2]
T3 0.375 ± 0.016
[9.53 ± 0.41]
0.766 + 0.031 / - 0.016
[19.46 + 0.79 / - 0.41]
0.406
[10.31]
0.95
[24.13]
2.250 ± 0.250
[57.15 ± 6.35]
0.41
[11.6]
T4 0.375 ± 0.016
[9.53 ± 0.41]
1.062 + 0.031 / - 0.016
[26.97 + 0.79 / -0.41]
0.406
[10.31]
1.31
[33.27]
2.250 ± 0.250
[57.15 ± 6.35]
0.62
[17.7]
RATINGS AND CASE CODES - M39006/30
μF 6 8 10 15 25 30 50 60 75 100 125
1.7 T1
2.5 T1
3.5 T1
3.6 T1
4.0 T1
4.7 T1
5.0 T1
6.8 T1
8.0 T1
8.2 T1
9T2
10 T1 T1
11 T2
14 T2
15 T1 T1 T2
18 T3
20 T1 T2
22 T1 T2
25 T1 T2 T3
30 T1 T3
33 T1 T2
39 T2
40 T2 T3
43 T3
47 T1 T2
50 T2 T3
56 T1 T3 T4
60 T3
68 T1 T2 T3
70 T2
ELE
-+
Terminal
welded
to case
Tantalum feed-through
0.078 [1.98] max. dia.
0.250 [6.35]
max.
Term. loc. within
0.031 [0.79] R
of true position
Glass
Case
Circuit diagram
External
weld
Insulating sleeve
D dia.
0.025 ± 0.002
[0.64 ± 0.05]
0.094 [2.38]
max.
Style CLR90
Style CLR91
M39006/30, M39006/31
www.vishay.com Vishay
Revison: 07-Mar-2019 3Document Number: 40160
For technical questions, contact: tantalum@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
82 T3
86 T4
100 T2 T2 T3
110 T4
120 T2 T2 T3
140 T2 T4
150 T3
160 T4
170 T3
180 T2 T3
220 T2
250 T3
270 T2 T3
290 T3
300 T4
330 T3
350 T4
390 T3
430 T3
540 T4
560 T3
750 T4
850 T4
1200 T4
RATINGS AND CASE CODES - M39006/31
μF 6 8 10 15 25 30 50 60 75 100 125
6.8 T1
10 T1
22 T1
27 T1 T2
33 T1
39 T2
47 T3
56 T1
68 T1 T3
82 T2 T4
100 T1 T2
120 T2 T4
150 T1
180 T1 T3
220 T1 T2 T3 T4
270 T2 T3 T4
330 T4
390 T2
470 T3
560 T2 T3 T4
680 T2 T4
820 T2 T3
1000 T4
1200 T3
1500T3T3T4
1800 T4
2200 T4
RATINGS AND CASE CODES - M39006/30
μF 6 8 10 15 25 30 50 60 75 100 125
M39006/30, M39006/31
www.vishay.com Vishay
Revison: 07-Mar-2019 4Document Number: 40160
For technical questions, contact: tantalum@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
STANDARD RATINGS / EXTENDED RATINGS: CLR90, M39006/30-XXXX
CAPACITANCE
(μF)
CASE
CODE
CAP.
TOL.
(± %)
PART NO. M39006/30- (1)
FAILURE RATE LEVEL
(%/1000 h)
MAX. DCL (μA)
AT
MAX.
DF
AT
+25 °C
(%)
MAX.
IMP.
AT
-55 °C
()
MAX. CAPACITANCE
CHANGE (%) AT
MAX.
ESR
AT +25 °C
120 Hz
()
M
1.0
P
0.1
R
0.01 +25 °C +85 °C
+125 °C -55 °C +85 °C +125 °C
6 VDC AT +85 °C; 4 VDC AT +125 °C
30 T1 20 0001 0221 0441 1.0 2.0 4.5 100 -40 +10.5 +12 1.99
30 T1 10 0002 0222 0442 1.0 2.0 4.5 100 -40 +10.5 +12 1.99
30 T1 5 0003 0223 0443 1.0 2.0 4.5 100 -40 +10.5 +12 1.99
68 T1 20 0004 0224 0444 1.0 2.0 7.5 60 -40 +14 +16 1.58
68 T1 10 0005 0225 0445 1.0 2.0 7.5 60 -40 +14 +16 1.58
68 T1 5 0006 0226 0446 1.0 2.0 7.5 60 -40 +14 +16 1.58
140 T2 20 0007 0227 0447 1.0 3.0 10.5 40 -40 +14 +16 0.99
140 T2 10 0008 0228 0448 1.0 3.0 10.5 40 -40 +14 +16 0.99
140 T2 5 0009 0229 0449 1.0 3.0 10.5 40 -40 +14 +16 0.99
270 T2 20 0010 0230 0450 1.0 6.5 22.5 25 -44 +17.5 +20 1.11
270 T2 10 0011 0231 0451 1.0 6.5 22.5 25 -44 +17.5 +20 1.11
270 T2 5 0012 0232 0452 1.0 6.5 22.5 25 -44 +17.5 +20 1.11
330 T3 20 0013 0233 0453 2.0 7.9 18.0 20 -44 +14 +16 0.73
330 T3 10 0014 0234 0454 2.0 7.9 18.0 20 -44 +14 +16 0.73
330 T3 5 0015 0235 0455 2.0 7.9 18.0 20 -44 +14 +16 0.73
560 T3 20 0016 0236 0456 2.0 13.0 27.5 25 -64 +17.5 +20 0.65
560 T3 10 0017 0237 0457 2.0 13.0 27.5 25 -64 +17.5 +20 0.65
560 T3 5 0018 0238 0458 2.0 13.0 27.5 25 -64 +17.5 +20 0.65
1200 T4 20 0019 0239 0459 3.0 14.0 45.0 20 -80 +25 +25 0.50
1200 T4 10 0020 0240 0460 3.0 14.0 45.0 20 -80 +25 +25 0.50
8 VDC AT +85 °C; 5 VDC AT +125 °C
25 T1 20 0021 0241 0461 1.0 2.0 3.75 100 -40 +10.5 +12 1.99
25 T1 10 0022 0242 0462 1.0 2.0 3.75 100 -40 +10.5 +12 1.99
25 T1 5 0023 0243 0463 1.0 2.0 3.75 100 -40 +10.5 +12 1.99
56 T1 20 0024 0244 0464 1.0 2.0 7.0 59 -40 +14 +16 1.66
56 T1 10 0025 0245 0465 1.0 2.0 7.0 59 -40 +14 +16 1.66
56 T1 5 0026 0246 0466 1.0 2.0 7.0 59 -40 +14 +16 1.66
120 T2 20 0027 0247 0467 1.0 2.0 10.0 50 -44 +17.5 +20 1.11
120 T2 10 0028 0248 0468 1.0 2.0 10.0 50 -44 +17.5 +20 1.11
120 T2 5 0029 0249 0469 1.0 2.0 10.0 50 -44 +17.5 +20 1.11
220 T2 20 0030 0250 0470 1.0 7.0 18.5 30 -44 +17.5 +20 1.12
220 T2 10 0031 0251 0471 1.0 7.0 18.5 30 -44 +17.5 +20 1.12
220 T2 5 0032 0252 0472 1.0 7.0 18.5 30 -44 +17.5 +20 1.12
290 T3 20 0033 0253 0473 2.0 6.0 17.0 25 -64 +17.5 +20 0.78
290 T3 10 0034 0254 0474 2.0 6.0 17.0 25 -64 +17.5 +20 0.78
290 T3 5 0035 0255 0475 2.0 6.0 17.0 25 -64 +17.5 +20 0.78
430 T3 20 0036 0256 0476 2.0 14.0 23.0 25 -64 +17.5 +20 0.71
430 T3 10 0037 0257 0477 2.0 14.0 23.0 25 -64 +17.5 +20 0.71
430 T3 5 0038 0258 0478 2.0 14.0 23.0 25 -64 +17.5 +20 0.71
850 T4 20 0039 0259 0479 4.0 16.0 30.0 22 -80 +25 +25 0.47
850 T4 10 0040 0260 0480 4.0 16.0 30.0 22 -80 +25 +25 0.47
10 VDC AT +85 °C; 7 VDC AT +125 °C
20 T1 20 0041 0261 0481 1.0 2.0 3.0 175 -32 +10.5 +12 1.99
20 T1 10 0042 0262 0482 1.0 2.0 3.0 175 -32 +10.5 +12 1.99
20 T1 5 0043 0263 0483 1.0 2.0 3.0 175 -32 +10.5 +12 1.99
47 T1 20 0044 0264 0484 1.0 2.0 6.5 100 -36 +14 +16 1.84
47 T1 10 0045 0265 0485 1.0 2.0 6.5 100 -36 +14 +16 1.84
47 T1 5 0046 0266 0486 1.0 2.0 6.5 100 -36 +14 +16 1.84
100 T2 20 0047 0267 0487 1.0 4.0 7.5 60 -36 +14 +16 0.99
100 T2 10 0048 0268 0488 1.0 4.0 7.5 60 -36 +14 +16 0.99
100 T2 5 0049 0269 0489 1.0 4.0 7.5 60 -36 +14 +16 0.99
180 T2 20 0050 0270 0490 1.0 7.0 15.0 40 -36 +14 +16 1.11
180 T2 10 0051 0271 0491 1.0 7.0 15.0 40 -36 +14 +16 1.11
180 T2 5 0052 0272 0492 1.0 7.0 15.0 40 -36 +14 +16 1.11
250 T3 20 0053 0273 0493 2.0 10.0 15.0 30 -40 +14 +16 0.80
250 T3 10 0054 0274 0494 2.0 10.0 15.0 30 -40 +14 +16 0.80
250 T3 5 0055 0275 0495 2.0 10.0 15.0 30 -40 +14 +16 0.80
390 T3 20 0056 0276 0496 2.0 16.0 22.0 25 -64 +17.5 +20 0.75
Notes
(1) Dash number will include the letter “H” to indicate the optional vibration and shock requirements (i.e., 51 g random vibration, 80 g sinusoidal
vibration and 500 g shock)
(2) For ripple current limits at various temperatures, voltages and frequencies, see Ripple Current table
M39006/30, M39006/31
www.vishay.com Vishay
Revison: 07-Mar-2019 5Document Number: 40160
For technical questions, contact: tantalum@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
10 VDC AT +85 °C; 7 VDC AT +125 °C
390 T3 10 0057 0277 0497 2.0 16.0 22.0 25 -64 +17.5 +20 0.75
390 T3 5 0058 0278 0498 2.0 16.0 22.0 25 -64 +17.5 +20 0.75
750 T4 20 0059 0279 0499 4.0 16.0 25.0 23 -80 +25 +25 0.44
750 T4 10 0060 0280 0500 4.0 16.0 25.0 23 -80 +25 +25 0.44
15 VDC AT +85 °C; 10 VDC AT +125 °C
15 T1 20 0061 0281 0501 1.0 2.0 2.5 155 -24 +10.5 +12 1.99
15 T1 10 0062 0282 0502 1.0 2.0 2.5 155 -24 +10.5 +12 1.99
15 T1 5 0063 0283 0503 1.0 2.0 2.5 155 -24 +10.5 +12 1.99
33 T1 20 0064 0284 0504 1.0 2.0 5.0 90 -28 +14 +16 1.66
33 T1 10 0065 0285 0505 1.0 2.0 5.0 90 -28 +14 +16 1.66
33 T1 5 0066 0286 0506 1.0 2.0 5.0 90 -28 +14 +16 1.66
70 T2 20 0067 0287 0507 1.0 4.0 6.5 75 -28 +14 +16 1.11
70 T2 10 0068 0288 0508 1.0 4.0 6.5 75 -28 +14 +16 1.11
70 T2 5 0069 0289 0509 1.0 4.0 6.5 75 -28 +14 +16 1.11
120 T2 20 0070 0290 0510 1.0 7.0 9.0 50 -28 +17.5 +20 1.12
120 T2 10 0071 0291 0511 1.0 7.0 9.0 50 -28 +17.5 +20 1.12
120 T2 5 0072 0292 0512 1.0 7.0 9.0 50 -28 +17.5 +20 1.12
170 T3 20 0073 0293 0513 2.0 10.0 12.5 35 -32 +14 +16 0.78
170 T3 10 0074 0294 0514 2.0 10.0 12.5 35 -32 +14 +16 0.78
170 T3 5 0075 0295 0515 2.0 10.0 12.5 35 -32 +14 +16 0.78
270 T3 20 0076 0296 0516 2.0 16.0 16.0 30 -56 +17.5 +20 0.71
270 T3 10 0077 0297 0517 2.0 16.0 16.0 30 -56 +17.5 +20 0.71
270 T3 5 0078 0298 0518 2.0 16.0 16.0 30 -56 +17.5 +20 0.71
540 T4 20 0079 0299 0519 6.0 24.0 20.0 23 -80 +25 +25 0.47
540 T4 10 0080 0300 0520 6.0 24.0 20.0 23 -80 +25 +25 0.47
25 VDC AT +85 °C; 15 VDC AT +125 °C
10 T1 20 0081 0301 0521 1.0 2.0 2.0 220 -16 +8 +9 2.66
10 T1 10 0082 0302 0522 1.0 2.0 2.0 220 -16 +8 +9 2.66
10 T1 5 0083 0303 0523 1.0 2.0 2.0 220 -16 +8 +9 2.66
22 T1 20 0084 0304 0524 1.0 2.0 3.3 140 -20 +10.5 +12 1.99
22 T1 10 0085 0305 0525 1.0 2.0 3.3 140 -20 +10.5 +12 1.99
22 T1 5 0086 0306 0526 1.0 2.0 3.3 140 -20 +10.5 +12 1.99
50 T2 20 0087 0307 0527 1.0 2.0 5.5 70 -28 +13 +15 1.46
50 T2 10 0088 0308 0528 1.0 2.0 5.5 70 -28 +13 +15 1.46
50 T2 5 0089 0309 0529 1.0 2.0 5.5 70 -28 +13 +15 1.46
100 T2 20 0090 0310 0530 1.0 10.0 7.5 50 -28 +13 +15 0.99
100 T2 10 0091 0311 0531 1.0 10.0 7.5 50 -28 +13 +15 0.99
100 T2 5 0092 0312 0532 1.0 10.0 7.5 50 -28 +13 +15 0.99
120 T3 20 0093 0313 0533 2.0 6.0 10.5 38 -32 +13 +15 1.16
120 T3 10 0094 0314 0534 2.0 6.0 10.5 38 -32 +13 +15 1.16
120 T3 5 0095 0315 0535 2.0 6.0 10.5 38 -32 +13 +15 1.16
180 T3 20 0096 0316 0536 2.0 18.0 13.0 32 -48 +13 +15 0.96
180 T3 10 0097 0317 0537 2.0 18.0 13.0 32 -48 +13 +15 0.96
180 T3 5 0098 0318 0538 2.0 18.0 13.0 32 -48 +13 +15 0.96
350 T4 20 0099 0319 0539 7.0 28.0 17.5 24 -70 +25 +25 0.67
350 T4 10 0100 0320 0540 7.0 28.0 17.5 24 -70 +25 +25 0.67
30 VDC AT +85 °C; 20 VDC AT +125 °C
8 T1 20 0101 0321 0541 1.0 2.0 2.0 275 -16 +8 +12 3.32
8 T1 10 0102 0322 0542 1.0 2.0 2.0 275 -16 +8 +12 3.32
8 T1 5 0103 0323 0543 1.0 2.0 2.0 275 -16 +8 +12 3.32
15 T1 20 0104 0324 0544 1.0 2.0 2.5 175 -20 +10.5 +12 2.21
15 T1 10 0105 0325 0545 1.0 2.0 2.5 175 -20 +10.5 +12 2.21
15 T1 5 0106 0326 0546 1.0 2.0 2.5 175 -20 +10.5 +12 2.21
40 T2 20 0107 0327 0547 1.0 5.0 5.0 65 -24 +10.5 +12 1.66
40 T2 10 0108 0328 0548 1.0 5.0 5.0 65 -24 +10.5 +12 0.66
40 T2 5 0109 0329 0549 1.0 5.0 5.0 65 -24 +10.5 +12 0.66
STANDARD RATINGS / EXTENDED RATINGS: CLR90, M39006/30-XXXX
CAPACITANCE
(μF)
CASE
CODE
CAP.
TOL.
(± %)
PART NO. M39006/30- (1)
FAILURE RATE LEVEL
(%/1000 h)
MAX. DCL (μA)
AT
MAX.
DF
AT
+25 °C
(%)
MAX.
IMP.
AT
-55 °C
()
MAX. CAPACITANCE
CHANGE (%) AT
MAX.
ESR
AT +25 °C
120 Hz
()
M
1.0
P
0.1
R
0.01 +25 °C +85 °C
+125 °C -55 °C +85 °C +125 °C
Notes
(1) Dash number will include the letter “H” to indicate the optional vibration and shock requirements (i.e., 51 g random vibration, 80 g sinusoidal
vibration and 500 g shock)
(2) For ripple current limits at various temperatures, voltages and frequencies, see Ripple Current table
M39006/30, M39006/31
www.vishay.com Vishay
Revison: 07-Mar-2019 6Document Number: 40160
For technical questions, contact: tantalum@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
30 VDC AT +85 °C; 20 VDC AT +125 °C
68 T2 20 0110 0330 0550 1.0 8.0 6.5 60 -24 +13 +15 1.27
68 T2 10 0111 0331 0551 1.0 8.0 6.5 60 -24 +13 +15 1.27
68 T2 5 0112 0332 0552 1.0 8.0 6.5 60 -24 +13 +15 1.27
100 T3 20 0113 0333 0553 2.0 12.0 8.5 40 -28 +10.5 +12 1.13
100 T3 10 0114 0334 0554 2.0 12.0 8.5 40 -28 +10.5 +12 1.13
100 T3 5 0115 0335 0555 2.0 12.0 8.5 40 -28 +10.5 +12 1.13
150 T3 20 0116 0336 0556 2.0 18.0 11.5 35 -48 +13 +15 1.02
150 T3 10 0117 0337 0557 2.0 18.0 11.5 35 -48 +13 +15 1.02
150 T3 5 0118 0338 0558 2.0 18.0 11.5 35 -48 +13 +15 1.02
300 T4 20 0119 0339 0559 8.0 32.0 15.5 25 -60 +25 +25 0.69
300 T4 10 0120 0340 0560 8.0 32.0 15.5 25 -60 +25 +25 0.69
50 VDC AT +85 °C; 30 VDC AT +125 °C
5 T1 20 0121 0341 0561 1.0 2.0 1.5 400 -16 +5 +6 3.98
5 T1 10 0122 0342 0562 1.0 2.0 1.5 400 -16 +5 +6 3.98
5 T1 5 0123 0343 0563 1.0 2.0 1.5 400 -16 +5 +6 3.98
10 T1 20 0124 0344 0564 1.0 2.0 2.0 250 -24 +8 +9 2.66
10 T1 10 0125 0345 0565 1.0 2.0 2.0 250 -24 +8 +9 2.66
10 T1 5 0126 0346 0566 1.0 2.0 2.0 250 -24 +8 +9 2.66
25 T2 20 0127 0347 0567 1.0 5.0 4.0 95 -20 +10.5 +12 2.13
25 T2 10 0128 0348 0568 1.0 5.0 4.0 95 -20 +10.5 +12 2.13
25 T2 5 0129 0349 0569 1.0 5.0 4.0 95 -20 +10.5 +12 2.13
47 T2 20 0130 0350 0570 1.0 9.0 5.0 70 -28 +13 +15 1.56
47 T2 10 0131 0351 0571 1.0 9.0 5.0 70 -28 +13 +15 1.56
47 T2 5 0132 0352 0572 1.0 9.0 5.0 70 -28 +13 +15 1.56
60 T3 20 0133 0353 0573 2.0 12.0 6.0 45 -16 +10.5 +12 1.33
60 T3 10 0134 0354 0574 2.0 12.0 6.0 45 -16 +10.5 +12 1.33
60 T3 5 0135 0355 0575 2.0 12.0 6.0 45 -16 +10.5 +12 1.33
82 T3 20 0136 0356 0576 2.0 16.0 7.5 45 -32 +13 +15 1.22
82 T3 10 0137 0357 0577 2.0 16.0 7.5 45 -32 +13 +15 1.22
82 T3 5 0138 0358 0578 2.0 16.0 7.5 45 -32 +13 +15 1.22
160 T4 20 0139 0359 0579 6.0 32.0 8.5 27 -50 +25 +25 0.71
160 T4 10 0140 0360 0580 6.0 32.0 8.5 27 -50 +25 +25 0.71
60 VDC AT +85 °C; 40 VDC AT +125 °C
4.0 T1 20 0141 0361 0581 1.0 2.0 1.4 550 -16 +5 +6 4.65
4.0 T1 10 0142 0362 0582 1.0 2.0 1.4 550 -16 +5 +6 4.65
4.0 T1 5 0143 0363 0583 1.0 2.0 1.4 550 -16 +5 +6 4.65
8.2 T1 20 0144 0364 0584 1.0 2.0 2.0 275 -24 +8 +9 3.24
8.2 T1 10 0145 0365 0585 1.0 2.0 2.0 275 -24 +8 +9 3.24
8.2 T1 5 0146 0366 0586 1.0 2.0 2.0 275 -24 +8 +9 3.24
20 T2 20 0147 0367 0587 1.0 5.0 3.5 105 -16 +10.5 +12 2.32
20 T2 10 0148 0368 0588 1.0 5.0 3.5 105 -16 +10.5 +12 2.32
20 T2 5 0149 0369 0589 1.0 5.0 3.5 105 -16 +10.5 +12 2.32
39 T2 20 0150 0370 0590 1.0 9.0 5.0 90 -28 +10.5 +12 1.70
39 T2 10 0151 0371 0591 1.0 9.0 5.0 90 -28 +10.5 +12 1.70
39 T2 5 0152 0372 0592 1.0 9.0 5.0 90 -28 +10.5 +12 1.70
50 T3 20 0153 0373 0593 2.0 12.0 5.0 50 -16 +10.5 +12 1.33
50 T3 10 0154 0374 0594 2.0 12.0 5.0 50 -16 +10.5 +12 1.33
50 T3 5 0155 0375 0595 2.0 12.0 5.0 50 -16 +10.5 +12 1.33
68 T3 20 0156 0376 0596 2.0 16.0 6.5 50 -32 +10.5 +12 1.27
68 T3 10 0157 0377 0597 2.0 16.0 6.5 50 -32 +10.5 +12 1.27
68 T3 5 0158 0378 0598 2.0 16.0 6.5 50 -32 +10.5 +12 1.27
140 T4 20 0159 0379 0599 8.0 32.0 8.0 28 -40 +20 +20 0.76
140 T4 10 0160 0380 0600 8.0 32.0 8.0 28 -40 +20 +20 0.76
STANDARD RATINGS / EXTENDED RATINGS: CLR90, M39006/30-XXXX
CAPACITANCE
(μF)
CASE
CODE
CAP.
TOL.
(± %)
PART NO. M39006/30- (1)
FAILURE RATE LEVEL
(%/1000 h)
MAX. DCL (μA)
AT
MAX.
DF
AT
+25 °C
(%)
MAX.
IMP.
AT
-55 °C
()
MAX. CAPACITANCE
CHANGE (%) AT
MAX.
ESR
AT +25 °C
120 Hz
()
M
1.0
P
0.1
R
0.01 +25 °C +85 °C
+125 °C -55 °C +85 °C +125 °C
Notes
(1) Dash number will include the letter “H” to indicate the optional vibration and shock requirements (i.e., 51 g random vibration, 80 g sinusoidal
vibration and 500 g shock)
(2) For ripple current limits at various temperatures, voltages and frequencies, see Ripple Current table
M39006/30, M39006/31
www.vishay.com Vishay
Revison: 07-Mar-2019 7Document Number: 40160
For technical questions, contact: tantalum@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
75 VDC AT +85 °C; 50 VDC AT +125 °C
3.5 T1 20 0161 0381 0601 1.0 2.0 1.25 650 -16 +5 +6 4.74
3.5 T1 10 0162 0382 0602 1.0 2.0 1.25 650 -16 +5 +6 4.74
3.5 T1 5 0163 0383 0603 1.0 2.0 1.25 650 -16 +5 +6 4.74
6.8 T1 20 0164 0384 0604 1.0 2.0 1.75 300 -20 +8 +9 3.42
6.8 T1 10 0165 0385 0605 1.0 2.0 1.75 300 -20 +8 +9 3.42
6.8 T1 5 0166 0386 0606 1.0 2.0 1.75 300 -20 +8 +9 3.42
15 T2 20 0167 0387 0607 1.0 5.0 3.0 150 -16 +8 +9 2.66
15 T2 10 0168 0388 0608 1.0 5.0 3.0 150 -16 +8 +9 2.66
15 T2 5 0169 0389 0609 1.0 5.0 3.0 150 -16 +8 +9 2.66
33 T2 20 0170 0390 0610 1.0 10.0 5.0 90 -24 +10.5 +15 2.01
33 T2 10 0171 0391 0611 1.0 10.0 5.0 90 -24 +10.5 +15 2.01
33 T2 5 0172 0392 0612 1.0 10.0 5.0 90 -24 +10.5 +15 2.01
40 T3 20 0173 0393 0613 2.0 12.0 4.5 60 -16 +10.5 +12 1.50
40 T3 10 0174 0394 0614 2.0 12.0 4.5 60 -16 +10.5 +12 1.50
40 T3 5 0175 0395 0615 2.0 12.0 4.5 60 -16 +10.5 +12 1.50
56 T3 20 0176 0396 0616 2.0 17.0 5.5 60 -28 +10.5 +15 1.31
56 T3 10 0177 0397 0617 2.0 17.0 5.5 60 -28 +10.5 +15 1.31
56 T3 5 0178 0398 0618 2.0 17.0 5.5 60 -28 +10.5 +15 1.31
110 T4 20 0179 0399 0619 9.0 36.0 6.0 29 -35 +20 +20 0.73
110 T4 10 0180 0400 0620 9.0 36.0 6.0 29 -35 +20 +20 0.73
100 VDC AT +85 °C; 65 VDC AT +125 °C
2.5 T1 20 0181 0401 0621 1.0 2.0 1.0 950 -16 +7 +8 5.31
2.5 T1 10 0182 0402 0622 1.0 2.0 1.0 950 -16 +7 +8 5.31
2.5 T1 5 0183 0403 0623 1.0 2.0 1.0 950 -16 +7 +8 5.31
4.7 T1 20 0184 0404 0624 1.0 2.0 1.5 500 -16 +7 +8 4.24
4.7 T1 10 0185 0405 0625 1.0 2.0 1.5 500 -16 +7 +8 4.24
4.7 T1 5 0186 0406 0626 1.0 2.0 1.5 500 -16 +7 +8 4.24
11.0 T2 20 0187 0407 0627 1.0 4.0 2.5 200 -16 +8 +8 3.02
11.0 T2 10 0188 0408 0628 1.0 4.0 2.5 200 -16 +8 +8 3.02
11.0 T2 5 0189 0409 0629 1.0 4.0 2.5 200 -16 +8 +8 3.02
22.0 T2 20 0190 0410 0630 1.0 9.0 3.75 100 -16 +8 +8 2.26
22.0 T2 10 0191 0411 0631 1.0 9.0 3.75 100 -16 +8 +8 2.26
22.0 T2 5 0192 0412 0632 1.0 9.0 3.75 100 -16 +8 +8 2.26
30.0 T3 20 0193 0413 0633 2.0 12.0 3.5 80 -16 +8 +8 1.55
30.0 T3 10 0194 0414 0634 2.0 12.0 3.5 80 -16 +8 +8 1.55
30.0 T3 5 0195 0415 0635 2.0 12.0 3.5 80 -16 +8 +8 1.55
43.0 T3 20 0196 0416 0636 2.0 17.0 4.25 70 -20 +8 +8 1.31
43.0 T3 10 0197 0417 0637 2.0 17.0 4.25 70 -20 +8 +8 1.31
43.0 T3 5 0198 0418 0638 2.0 17.0 4.25 70 -20 +8 +8 1.31
86.0 T4 20 0199 0419 0639 9.0 36.0 5.0 30 -25 +15 +15 0.77
86.0 T4 10 0200 0420 0640 9.0 36.0 5.0 30 -25 +15 +15 0.77
125 VDC AT +85 °C; 85 VDC AT +125 °C
1.7 T1 20 0201 0421 0641 1.0 2.0 1.0 1250 -16 +7 +8 7.81
1.7 T1 10 0202 0422 0642 1.0 2.0 1.0 1250 -16 +7 +8 7.81
1.7 T1 5 0203 0423 0643 1.0 2.0 1.0 1250 -16 +7 +8 7.81
3.6 T1 20 0204 0424 0644 1.0 2.0 1.35 600 -24 +7 +8 4.98
3.6 T1 10 0205 0425 0645 1.0 2.0 1.35 600 -16 +7 +8 4.98
3.6 T1 5 0206 0426 0646 1.0 2.0 1.35 600 -16 +7 +8 4.98
9.0 T2 20 0207 0427 0647 1.0 5.0 2.5 240 -16 +7 +8 3.69
9.0 T2 10 0208 0428 0648 1.0 5.0 2.5 240 -16 +7 +8 3.69
9.0 T2 5 0209 0429 0649 1.0 5.0 2.5 240 -16 +7 +8 3.69
14.0 T2 20 0210 0430 0650 1.0 7.0 3.0 167 -16 +7 +8 2.85
14.0 T2 10 0211 0431 0651 1.0 7.0 3.0 167 -16 +7 +8 2.85
14.0 T2 5 0212 0432 0652 1.0 7.0 3.0 167 -16 +7 +8 2.85
STANDARD RATINGS / EXTENDED RATINGS: CLR90, M39006/30-XXXX
CAPACITANCE
(μF)
CASE
CODE
CAP.
TOL.
(± %)
PART NO. M39006/30- (1)
FAILURE RATE LEVEL
(%/1000 h)
MAX. DCL (μA)
AT
MAX.
DF
AT
+25 °C
(%)
MAX.
IMP.
AT
-55 °C
()
MAX. CAPACITANCE
CHANGE (%) AT
MAX.
ESR
AT +25 °C
120 Hz
()
M
1.0
P
0.1
R
0.01 +25 °C +85 °C
+125 °C -55 °C +85 °C +125 °C
Notes
(1) Dash number will include the letter “H” to indicate the optional vibration and shock requirements (i.e., 51 g random vibration, 80 g sinusoidal
vibration and 500 g shock)
(2) For ripple current limits at various temperatures, voltages and frequencies, see Ripple Current table
M39006/30, M39006/31
www.vishay.com Vishay
Revison: 07-Mar-2019 8Document Number: 40160
For technical questions, contact: tantalum@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
125 VDC AT +85 °C; 85 VDC AT +125 °C
18.0 T3 20 0213 0433 0653 2.0 9.0 2.5 129 -16 +7 +8 1.85
18.0 T3 10 0214 0434 0654 2.0 9.0 2.5 129 -16 +7 +8 1.85
18.0 T3 5 0215 0435 0655 2.0 9.0 2.5 129 -16 +7 +8 1.85
25.0 T3 20 0216 0436 0656 2.0 13.0 3.0 93 -16 +7 +8 1.59
25.0 T3 10 0217 0437 0657 2.0 13.0 3.0 93 -16 +7 +8 1.59
25.0 T3 5 0218 0438 0658 2.0 13.0 3.0 93 -16 +7 +8 1.59
56.0 T4 20 0219 0439 0659 10.0 40.0 3.25 32 -25 +15 +15 0.77
56.0 T4 10 0220 0440 0660 10.0 40.0 3.25 32 -25 +15 +15 0.77
STANDARD / EXTENDED RATINGS: CLR91, M39006/31-XXXX
CAPACITANCE
(μF)
CASE
CODE
CAP.
TOL.
(± %)
PART NO. M39006/31- (1)
FAILURE RATE LEVEL
(%/1000 h)
MAX. DCL (μA)
AT
MAX.
DF
AT
+25 °C
(%)
MAX.
IMP.
AT
-55 °C
()
MAX.. CAPACITANCE
CHANGE (%) AT
MAX.
ESR
AT +25 °C
120 Hz
()
M
1.0
P
0.1
R
0.01 +25 °C +85 °C
+125 °C -55 °C +85 °C +125 °C
6 VDC AT +85 °C; 4 VDC AT +125 °C
220 T1 20 0001 0089 0177 2 9 25 36 -64 +13 +16 1.51
220 T1 10 0002 0090 0178 2 9 25 36 -64 +13 +16 1.51
820 T2 20 0003 0091 0179 3 14 77.5 18 -88 +16 +20 1.26
820 T2 10 0004 0092 0180 3 14 77.5 18 -88 +16 +20 1.26
1500 T3 20 0005 0093 0181 5 20 86 18 -90 +20 +25 0.76
1500 T3 10 0006 0094 0182 5 20 86 18 -90 +20 +25 0.76
2200 T4 20 0007 0095 0183 6 24 85 13 -90 +25 +30 0.52
2200 T4 10 0008 0096 0184 6 24 85 13 -90 +25 +30 0.52
8 VDC AT +85 °C; 5 VDC AT +125 °C
180 T1 20 0009 0097 0185 2 9 20.5 45 -60 +13 +16 1.51
180 T1 10 0010 0098 0186 2 9 20.5 45 -60 +13 +16 1.51
680 T2 20 0011 0099 0187 3 14 65 22 -83 +16 +20 1.27
680 T2 10 0012 0100 0188 3 14 65 22 -83 +16 +20 1.27
1500 T3 20 0013 0101 0189 5 20 85 18 -90 +20 +25 0.75
1500 T3 10 0014 0102 0190 5 20 85 18 -90 +20 +25 0.75
1800 T4 20 0015 0103 0191 7 25 69 14 -90 +25 +30 0.51
1800 T4 10 0016 0104 0192 7 25 69 14 -90 +25 +30 0.51
10 VDC AT +85 °C; 7 VDC AT +125 °C
150 T1 20 0017 0105 0193 2 9 17 54 -55 +13 +16 1.51
150 T1 10 0018 0106 0194 2 9 17 54 -55 +13 +16 1.51
560 T2 20 0019 0107 0195 3 16 53 27 -77 +16 +20 1.26
560 T2 10 0020 0108 0196 3 16 53 27 -77 +16 +20 1.26
1200 T3 20 0021 0109 0197 5 20 68.5 18 -88 +20 +25 0.76
1200 T3 10 0022 0110 0198 5 20 68.5 18 -88 +20 +25 0.76
1500 T4 20 0023 0111 0199 7 25 57 15 -88 +25 +30 0.51
1500 T4 10 0024 0112 0200 7 25 57 15 -88 +25 +30 0.51
15 VDC AT +85 °C; 10 VDC AT +125 °C
100 T1 20 0025 0113 0201 2 9 15 72 -44 +13 +16 1.99
100 T1 10 0026 0114 0202 2 9 15 72 -44 +13 +16 1.99
390 T2 20 0027 0115 0203 3 16 37 31 -66 +16 +20 1.26
390 T2 10 0028 0116 0204 3 16 37 31 -66 +16 +20 1.26
820 T3 20 0029 0117 0205 6 24 55.5 22 -77 +20 +25 0.9
820 T3 10 0030 0118 0206 6 24 55.5 22 -77 +20 +25 0.9
1000 T4 20 0031 0119 0207 8 32 46 17 -77 +25 +30 0.61
1000 T4 10 0032 0120 0208 8 32 46 17 -77 +25 +30 0.61
Notes
(1) Dash number will include the letter “H” to indicate the optional vibration and shock requirements (i.e., 51 g random vibration, 80 g sinusoidal
vibration and 500 g shock)
(2) For ripple current limits at various temperatures, voltages and frequencies, see Ripple Current table
STANDARD RATINGS / EXTENDED RATINGS: CLR90, M39006/30-XXXX
CAPACITANCE
(μF)
CASE
CODE
CAP.
TOL.
(± %)
PART NO. M39006/30- (1)
FAILURE RATE LEVEL
(%/1000 h)
MAX. DCL (μA)
AT
MAX.
DF
AT
+25 °C
(%)
MAX.
IMP.
AT
-55 °C
()
MAX. CAPACITANCE
CHANGE (%) AT
MAX.
ESR
AT +25 °C
120 Hz
()
M
1.0
P
0.1
R
0.01 +25 °C +85 °C
+125 °C -55 °C +85 °C +125 °C
Notes
(1) Dash number will include the letter “H” to indicate the optional vibration and shock requirements (i.e., 51 g random vibration, 80 g sinusoidal
vibration and 500 g shock)
(2) For ripple current limits at various temperatures, voltages and frequencies, see Ripple Current table
M39006/30, M39006/31
www.vishay.com Vishay
Revison: 07-Mar-2019 9Document Number: 40160
For technical questions, contact: tantalum@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
25 VDC AT +85 °C; 15 VDC AT +125 °C
68 T1 20 0033 0121 0209 2 9 11 90 -40 +12 +15 2.15
68 T1 10 0034 0122 0210 2 9 11 90 -40 +12 +15 2.15
270 T2 20 0035 0123 0211 3 16 27.5 33 -62 +13 +16 1.35
270 T2 10 0036 0124 0212 3 16 27.5 33 -62 +13 +16 1.35
560 T3 20 0037 0125 0213 7 28 38 24 -72 +20 +25 0.9
560 T3 10 0038 0126 0214 7 28 38 24 -72 +20 +25 0.9
680 T4 20 0039 0127 0215 8 32 31.5 19 -72 +25 +30 0.62
680 T4 10 0040 0128 0216 8 32 31.5 19 -72 +25 +30 0.62
30 VDC AT +85 °C; 20 VDC AT +125 °C
56 T1 20 0041 0129 0217 2 9 11 100 -38 +12 +15 2.61
56 T1 10 0042 0130 0218 2 9 11 100 -38 +12 +15 2.61
220 T2 20 0043 0131 0219 3 16 21 36 -60 +13 +16 1.27
220 T2 10 0044 0132 0220 3 16 21 36 -60 +13 +16 1.27
470 T3 20 0045 0133 0221 8 32 32 25 -65 +20 +25 0.91
470 T3 10 0046 0134 0222 8 32 32 25 -65 +20 +25 0.91
560 T4 20 0047 0135 0223 9 36 27.5 20 -65 +25 +30 0.65
560 T4 10 0048 0136 0224 9 36 27.5 20 -65 +25 +30 0.65
50 VDC AT +85 °C; 30 VDC AT +125 °C
33 T1 20 0049 0137 0225 2 9 6.15 135 -29 +10 +12 2.48
33 T1 10 0050 0138 0226 2 9 6.15 135 -29 +10 +12 2.48
120 T2 20 0051 0139 0227 4 24 11.3 49 -42 +12 +15 1.25
120 T2 10 0052 0140 0228 4 24 11.3 49 -42 +12 +15 1.25
270 T3 20 0053 0141 0229 8 32 18.5 29 -46 +20 +25 0.91
270 T3 10 0054 0142 0230 8 32 18.5 29 -46 +20 +25 0.91
330 T4 20 0055 0143 0231 9 36 19 22 -46 +25 +30 0.77
330 T4 10 0056 0144 0232 9 36 19 22 -46 +25 +30 0.77
60 VDC AT +85 °C; 40 VDC AT +125 °C
27 T1 20 0057 0145 0233 3 12 5.1 144 -24 +10 +12 2.51
27 T1 10 0058 0146 0234 3 12 5.1 144 -24 +10 +12 2.51
100 T2 20 0059 0147 0235 4 20 9.5 54 -36 +12 +15 1.26
100 T2 10 0060 0148 0236 4 20 9.5 54 -36 +12 +15 1.26
220 T3 20 0061 0149 0237 8 32 15 29 -40 +16 +20 0.91
220 T3 10 0062 0150 0238 8 32 15 29 -40 +16 +20 0.91
270 T4 20 0063 0151 0239 9 36 13.5 23 -45 +20 +25 0.67
270 T4 10 0064 0152 0240 9 36 13.5 23 -45 +20 +25 0.67
75 VDC AT +85 °C; 50 VDC AT +125 °C
22 T1 20 0065 0153 0241 3 12 4.25 157 -19 +10 +12 2.57
22 T1 10 0066 0154 0242 3 12 4.25 157 -19 +10 +12 2.57
82 T2 20 0067 0155 0243 4 24 7.6 63 -30 +12 +15 1.23
82 T2 10 0068 0156 0244 4 24 7.6 63 -30 +12 +15 1.23
180 T3 20 0069 0157 0245 9 36 12.2 30 -35 +16 +20 0.9
180 T3 10 0070 0158 0246 9 36 12.2 30 -35 +16 +20 0.9
220 T4 20 0071 0159 0247 10 40 18.5 24 -40 +20 +25 1.12
220 T4 10 0072 0160 0248 10 40 18.5 24 -40 +20 +25 1.12
100 VDC AT +85 °C; 65 VDC AT +125 °C
10 T1 20 0073 0161 0249 3 12 2.25 200 -17 +10 +12 2.99
10 T1 10 0074 0162 0250 3 12 2.25 200 -17 +10 +12 2.99
39 T2 20 0075 0163 0251 5 24 5.2 80 -20 +12 +15 1.77
39 T2 10 0076 0164 0252 5 24 5.2 80 -20 +12 +15 1.77
68 T3 20 0077 0165 0253 10 40 5.65 40 -30 +14 +16 1.11
68 T3 10 0078 0166 0254 10 40 5.65 40 -30 +14 +16 1.11
120 T4 20 0079 0167 0255 12 48 12.5 30 -35 +15 +17 1.38
120 T4 10 0080 0168 0256 12 48 12.5 30 -35 +15 +17 1.38
STANDARD / EXTENDED RATINGS: CLR91, M39006/31-XXXX
CAPACITANCE
(μF)
CASE
CODE
CAP.
TOL.
(± %)
PART NO. M39006/31- (1)
FAILURE RATE LEVEL
(%/1000 h)
MAX. DCL (μA)
AT
MAX.
DF
AT
+25 °C
(%)
MAX.
IMP.
AT
-55 °C
()
MAX.. CAPACITANCE
CHANGE (%) AT
MAX.
ESR
AT +25 °C
120 Hz
()
M
1.0
P
0.1
R
0.01 +25 °C +85 °C
+125 °C -55 °C +85 °C +125 °C
Notes
(1) Dash number will include the letter “H” to indicate the optional vibration and shock requirements (i.e., 51 g random vibration, 80 g sinusoidal
vibration and 500 g shock)
(2) For ripple current limits at various temperatures, voltages and frequencies, see Ripple Current table
M39006/30, M39006/31
www.vishay.com Vishay
Revison: 07-Mar-2019 10 Document Number: 40160
For technical questions, contact: tantalum@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
1. At +125 °C the rated voltage of the capacitors decreases to 66 2/3 % of the +85 °C rated voltage.
2. The peak of the applied AC ripple voltage plus the applied DC voltage must not exceed the DC voltage rating of the capacitor either forward
or reverse
3. The ripple current listed represents a rating calculated using a maximum internal temperature rise (T) of +50 °C at 40 kHz at +85 °C ambient
with a maximum peak rated voltage of 66 2/3 % of the +85 °C peak voltage rating
4. The maximum allowable internal temperature rise (T) decreases linearly to a calculated +10 °C rise at +125 °C ambient
5. The internal temperature rise is directly proportional to the equivalent series resistance of the capacitor and equivalent series
resistance increases with decreasing frequency
125 VDC AT +85 °C; 85 VDC AT +125 °C
6.8 T1 20 0081 0169 0257 3 12 3 300 -14 +10 +12 5.86
6.8 T1 10 0082 0170 0258 3 12 3 300 -14 +10 +12 5.86
27 T2 20 0083 0171 0259 5 24 3.6 90 -18 +12 +15 1.77
27 T2 10 0084 0172 0260 5 24 3.6 90 -18 +12 +15 1.77
47 T3 20 0085 0173 0261 10 40 3.95 50 -26 +14 +16 1.12
47 T3 10 0086 0174 0262 10 40 3.95 50 -26 +14 +16 1.12
82 T4 20 0087 0175 0263 12 48 8.7 32 -30 +15 +17 1.41
82 T4 10 0088 0176 0264 12 48 8.7 32 -30 +15 +17 1.41
CLR90, CLR91 RIPPLE CURRENT MULTIPLIERS VS. FREQUENCY, TEMPERATURE AND
APPLIED PEAK VOLTAGE
FREQUENCY OF
APPLIED RIPPLE
CURRENT
120 Hz 800 Hz 1 kHz 10 kHz 40 kHz 100 kHz
AMBIENT
STILL AIR
TEMP °C TEMP °C TEMP °C TEMP °C TEMP °C TEMP °C
55 85 105 125
55 85 105 125
55 85 105 125
55 85 105 125
55 85 105 125
55 85 105 125
% OF
APPLIED
VOLTAGE
100 % 0.60 0.39 - - 0.71 0.43 - - 0.72 0.46 - - 0.88 0.55 - - 1.0 0.63 - - 1.1 0.69 - -
90 % 0.60 0.46 - - 0.71 0.55 - - 0.72 0.55 - - 0.88 0.67 - - 1.0 0.77 - - 1.1 0.85 - -
80 % 0.60 0.52 0.35 - 0.71 0.62 0.42 - 0.72 0.62 0.42 - 0.88 0.76 0.52 - 1.0 0.87 0.59 - 1.1 0.96 0.65 -
70 % 0.60 0.58 0.44 - 0.71 0.69 0.52 - 0.72 0.70 0.52 - 0.88 0.85 0.64 - 1.0 0.97 0.73 - 1.1 1.07 0.80 -
66 2/3 % 0.60 0.60 0.46 0.27 0.71 0.71 0.55 0.32 0.72 0.72 0.55 0.32 0.88 0.88 0.68 0.40 1.0 1.0 0.77 0.45 1.1 1.1 0.85 0.50
STANDARD / EXTENDED RATINGS: CLR91, M39006/31-XXXX
CAPACITANCE
(μF)
CASE
CODE
CAP.
TOL.
(± %)
PART NO. M39006/31- (1)
FAILURE RATE LEVEL
(%/1000 h)
MAX. DCL (μA)
AT
MAX.
DF
AT
+25 °C
(%)
MAX.
IMP.
AT
-55 °C
()
MAX.. CAPACITANCE
CHANGE (%) AT
MAX.
ESR
AT +25 °C
120 Hz
()
M
1.0
P
0.1
R
0.01 +25 °C +85 °C
+125 °C -55 °C +85 °C +125 °C
Notes
(1) Dash number will include the letter “H” to indicate the optional vibration and shock requirements (i.e., 51 g random vibration, 80 g sinusoidal
vibration and 500 g shock)
(2) For ripple current limits at various temperatures, voltages and frequencies, see Ripple Current table
Typical Performance Characteristics
www.vishay.com Vishay
Revision: 24-Nov-14 1Document Number: 40188
For technical questions, contact: tantalum@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
Wet Tantalum Capacitors
Military Styles CLR79, CLR81, CLR90, and CLR91
ELECTRICAL PERFORMANCE CHARACTERISTICS
ITEM PERFORMANCE CHARACTERISTICS
Operating temperature range -55 °C to +85 °C (to +125 °C with voltage derating)
Capacitance tolerance ± 20 %, ± 10 %, at 120 Hz, at +25 °C
Capacitance change by temperature Limit per Standard Ratings table
ESR Limit per Standard Ratings table, at +25 °C, 120 Hz
Impedance Limit per Standard Ratings table, at -55 °C, 120 Hz
DCL (Leakage current) Limit per Standard Ratings table
AC ripple current Limit per Standard Ratings table, at +85 °C and 40 kHz
Reverse voltage Reverse voltage rating at +85 °C is 3 VDC and at +125 °C is 2 VDC
Maximum operating voltage Rated (+85 °C)
VDC
Derated (+125 °C)
VDC
Surge (+85 °C)
VDC
646.9
859.2
10 7 11.5
15 10 17.2
25 15 28.8
30 20 34.5
50 30 57.5
60 40 69.0
75 50 86.2
100 65 115.0
125 85 144.0
Surge voltage The DC surge voltage is the maximum voltage to which the capacitor can be subjected under any
conditions including transients and peak ripple at the highest line voltage.
The DC surge voltage is 115 % of rated DC voltage
PERFORMANCE CHARACTERISTICS
ITEM CONDITION POST TEST PERFORMANCE
Surge voltage 85 °C 1000 successive test cycles at
the applicable DC surge voltage
specified in series with a 1 k resistor
at the rate of 30 s ON, 5.5 min OFF
The capacitors shall meet the requirements of MIL-PRF-39006:
DC leakage: not to exceed the specified value
Capacitance change: within ± 5 % of initial measurement
Dissipation factor: not to exceed the specified value
There shall be no evidence of mechanical damage or leakage of electrolyte
Life testing Method 108 of MIL-STD-202.
Capacitors shall be capable of
withstanding a 10 000 h life test at a
temperature +85 °C at rated voltage
The capacitors shall meet the requirements of MIL-PRF-39006:
DC leakage at 85 °C and 125 °C: not to exceed 125 % of the specified value
DC leakage at 25 °C: not to exceed the specified value
Capacitance change: within +10 %, -20 % of initial measurement
Dissipation factor: not to exceed 200 % of the specified value
Dielectric withstanding voltage: 2000 VDC, min.
Insulation resistance: 100 M, min.
AC ripple life As specified in MIL-PRF-39006:
2000 h, +85 °C
The capacitors shall meet the requirements of MIL-PRF-39006:
DC Leakage: not to exceed the specified value
Capacitance change: within ± 10 % of initial measurement
Dissipation factor: not to exceed the specified value
There shall be no damage, obliteration of marking, or leakage of electrolyte
Typical Performance Characteristics
www.vishay.com Vishay
Revision: 24-Nov-14 2Document Number: 40188
For technical questions, contact: tantalum@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
ENVIRONMENTAL CHARACTERISTICS
ITEM CONDITION POST TEST PERFORMANCE
Stability at low and
high temperatures
As specified in MIL-PRF-39006 The capacitors shall meet the requirements of MIL-PRF-39006
Moisture resistance Method 106 of MIL-STD-202 The capacitors shall meet the requirements of MIL-PRF-39006:
DC leakage: not to exceed 125 % of +25 °C specified value
Capacitance change: within ± 8 % of initial measurement
Dissipation factor: not to exceed 115 % of the specified value
Thermal shock Method 107 of MIL-STD-202, condition A
(with step 3 at +125 °C)
Number of cycles:
300 cycles for qualification and group C,
subgroup 7;
30 cycles for group B and group C,
subgroup 8
The capacitors shall meet the requirements of MIL-PRF-39006:
DC leakage: not to exceed 200 % of +25 °C specified value for
qualification and group C
DC leakage: not to exceed 125 % of +25 °C specified value for group B
Capacitance change: within ± 5 % of initial measurement
Dissipation factor: not to exceed 115 % of the specified value
Salt atmosphere
(corrosion)
Method 101 of MIL-STD-202, condition B
(48 h)
There shall be no harmful corrosion, and the finish shall protect at
least 90 % of any exposed metal surface of the capacitor. There
shall be no unwrapping of, or mechanical damage to, the insulating
sleeving, when applicable. Marking shall remain legible
Low temperature
storage
Method 502 of MIL-STD-810,
Storage temperature: -62 °C +0 °C, -3 °C.
Exposure time: 72 h followed by a 1 h
exposure at +125 °C, +7 °C, -0 °C within
24 h after low temperature storage
The capacitors shall meet the requirements of MIL-PRF-39006:
DC leakage: not to exceed the specified value
Capacitance change: within ± 5 % of initial measurement
Dissipation factor: not to exceed the specified value
There shall be no evidence of leakage of electrolyte
Seal Method 112 of MIL-STD-202,
conditions A or D, and C
When the capacitors are tested as specified in MIL-PRF-39006, there
shall be no evidence of leakage.
Barometric pressure
(reduced)
Method 105 of MIL-STD-202, condition E
(150 000 ft) (45 720.1 m)
There shall be no flashover, breakdown, or harmful deformation of
the case, and mechanical damage, obliteration of marking, or
leakage of electrolyte.
MECHANICAL PERFORMANCE CHARACTERISTICS
ITEM CONDITION POST TEST PERFORMANCE
Shock
(specified pulse)
Method 213 of MIL-STD-202,
condition I (100 g) or condition D (500 g) for
“H” designated units
The capacitors shall meet the requirements of MIL-PRF-39006
Vibration, high
frequency
Method 204 of MIL-STD-202,
condition D (20 g) or condition H (80 g) for
“H” designated units
The capacitors shall meet the requirements of MIL-PRF-39006
Random vibration
(“H” designated units
only)
Method 214 of MIL-STD-202,
condition II-K (51 g).
The capacitors shall meet the requirements of MIL-PRF-39006:
DC leakage: not to exceed 125 % of the specified value
Capacitance change: within ± 5 % of initial measurement
Dissipation factor: not to exceed 115 % of the specified value
There shall be no evidence of harmful corrosion, mechanical damage,
obliteration of marking, or leakage of electrolyte.
Solderability Method 208 of MIL-STD-202 The capacitors shall meet the requirements of MIL-PRF-39006
Terminal strength Pull test: method 211 of MIL-STD-202,
condition A.
Wire-lead bend: in accordance with
MIL-PRF-39006
There shall be no loosening of or permanent damage to the terminals,
terminal weld or solder, or seal.
Dielectric
withstanding voltage
Method 301 of MIL-STD-202,
2000 VDC min.
The capacitors shall meet the requirements of MIL-PRF-39006
Insulation resistance Method 302 of MIL-STD-202,
condition B (500 VDC ± 10 %)
The insulation resistance shall be not less than 100 M
Resistance to solvent Method 215 of MIL-STD-202 There shall be no mechanical or visual damage to capacitors
post-conditioning. Marking shall remain legible, no degradation of
the can material.
Resistance to
soldering heat
Method 210 of MIL-STD-202, condition C The capacitors shall meet the requirements of MIL-PRF-39006:
DC Leakage: not to exceed the specified value
Capacitance change: within ± 5 % of initial measurement
Dissipation factor: not to exceed the specified value
There shall be no evidence of mechanical damage
Legal Disclaimer Notice
www.vishay.com Vishay
Revision: 08-Feb-17 1Document Number: 91000
Disclaimer
ALL PRODUCT, PRODUCT SPECIFICATIONS AND DATA ARE SUBJECT TO CHANGE WITHOUT NOTICE TO IMPROVE
RELIABILITY, FUNCTION OR DESIGN OR OTHERWISE.
Vishay Intertechnology, Inc., its affiliates, agents, and employees, and all persons acting on its or their behalf (collectively,
“Vishay”), disclaim any and all liability for any errors, inaccuracies or incompleteness contained in any datasheet or in any other
disclosure relating to any product.
Vishay makes no warranty, representation or guarantee regarding the suitability of the products for any particular purpose or
the continuing production of any product. To the maximum extent permitted by applicable law, Vishay disclaims (i) any and all
liability arising out of the application or use of any product, (ii) any and all liability, including without limitation special,
consequential or incidental damages, and (iii) any and all implied warranties, including warranties of fitness for particular
purpose, non-infringement and merchantability.
Statements regarding the suitability of products for certain types of applications are based on Vishay’s knowledge of
typical requirements that are often placed on Vishay products in generic applications. Such statements are not binding
statements about the suitability of products for a particular application. It is the customer’s responsibility to validate that a
particular product with the properties described in the product specification is suitable for use in a particular application.
Parameters provided in datasheets and / or specifications may vary in different applications and performance may vary over
time. All operating parameters, including typical parameters, must be validated for each customer application by the customer’s
technical experts. Product specifications do not expand or otherwise modify Vishay’s terms and conditions of purchase,
including but not limited to the warranty expressed therein.
Except as expressly indicated in writing, Vishay products are not designed for use in medical, life-saving, or life-sustaining
applications or for any other application in which the failure of the Vishay product could result in personal injury or death.
Customers using or selling Vishay products not expressly indicated for use in such applications do so at their own risk.
Please contact authorized Vishay personnel to obtain written terms and conditions regarding products designed for
such applications.
No license, express or implied, by estoppel or otherwise, to any intellectual property rights is granted by this document
or by any conduct of Vishay. Product names and markings noted herein may be trademarks of their respective owners.
© 2017 VISHAY INTERTECHNOLOGY, INC. ALL RIGHTS RESERVED