118 AHT
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Aluminum Electrolytic Capacitors
Axial High Temperature
Fig. 1
FEATURES
Polarized aluminum electrolytic capacitors,
non-solid electrolyte
Axial leads, cylindrical aluminum case, insulated
with a blue sleeve
Mounting ring version not available in insulated form
Taped versions up to case Ø 15 mm x 30 mm available for
automatic insertion
Charge and discharge proof
Extra long useful life: up to 8000 h at 125 °C, high
reliability
Extended temperature range: 125 °C (usable up to
150 °C)
Miniaturized, high CV-product per unit volume
Material categorization: for definitions of compliance
please see www.vishay.com/doc?99912
APPLICATIONS
Automotive, industrial and telecommunication
Smoothing, filtering, coupling, decoupling, timing
For use after very long storage (10 years) without voltage
applied
Portable and mobile equipment (small size, low mass)
Low mounting height boards, vibration and shock
resistant
Outdoor applications, e.g. aerial amplifiers
MARKING
The capacitors are marked (where possible) with the
following information:
Rated capacitance (in μF)
Tolerance on rated capacitance, code letter in accordance
with IEC 60062 (M for ± 20 %)
Rated voltage (in V) at 125 °C and 85 °C
Date code, in accordance with IEC 60062
Code indicating factory of origin
Name of manufacturer
Negative terminal identification
Series number (118)
QUICK REFERENCE DATA
DESCRIPTION VALUE
Nominal case sizes
(Ø D x L in mm)
6.5 x 18
to 10 x 25
10 x 30
to 21 x 38
Rated capacitance range, CR4.7 μF to 10 000 μF
Tolerance on CR± 20 %
Rated voltage range, UR6.3 V to 200 V
Category temperature range -40 °C to
+125 °C
-55 °C to
+125 °C
Endurance test at 150 °C
(6.3 V to 100 V) 500 h 500 h
Endurance test at 125 °C 2000 h 3000 h
Useful life at 125 °C 4000 h 8000 h
Useful life at 40 °C,
1.8 x IR applied 500 000 h 1 000 000 h
Shelf life at 0 V, 125 °C:
UR = 6.3 V to 63 V 500 h
UR = 100 V and 200 V 100 h
Based on sectional
specification IEC 60 384-4 / EN130 300
Climatic category IEC 60068 40 / 125 / 56 55 / 125 / 56
118 AHT
125 °C 125 °C
138 AML
high ripple,
low impedance
105 °C 120 ATC
very high
ripple
119 AHT-DIN
118 AHT
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DIMENSIONS in millimeters AND AVAILABLE FORMS
Fig. 2 - Forms BA and BR Fig. 3 - Form AA
SELECTION CHART FOR CR, UR, AND RELEVANT NOMINAL CASE SIZES (Ø D x L in mm)
CR
(μF)
UR (V)
6.31016254063100200
4.7 - - - - - 6.5 x 18 6.5 x 18 -
10 - - - - - 6.5 x 18 6.5 x 18 -
15-------10 x 30
22 - - - - - 6.5 x 18 8 x 18 12.5 x 30
33 - - - - - - 10 x 25 15 x 30
47 - - - - 6.5 x 18 8 x 18 10 x 25 18 x 30
------10 x 30-
68 - - - - - - 12.5 x 30 18 x 38
100 - - - 6.5 x 18 8 x 18 10 x 25 12.5 x 30 21 x 38
-----10 x 30--
150 - - - - 10 x 18 12.5 x 30 15 x 30 -
220 - 6.5 x 18 8 x 18 10 x 18 10 x 25 12.5 x 30 18 x 30 -
----10 x 30---
330 - 8 x 18 10 x 18 10 x 25 12.5 x 30 15 x 30 18 x 38 -
470 - 8 x 18 10 x 18 10 x 25 12.5 x 30 18 x 30 21 x 38 -
- - - 10 x 30 - - - -
680 - - 10 x 30 12.5 x 30 15 x 30 18 x 38 - -
1000 10 x 18 10 x 25 12.5 x 30 12.5 x 30 18 x 30 21 x 38 - -
-10 x 30------
1500 10 x 25 12.5 x 30 12.5 x 30 15 x 30 18 x 38 - - -
2200 - 12.5 x 30 15 x 30 18 x 30 21 x 38 - - -
3300 - 15 x 30 18 x 30 18 x 38 - - - -
4700 - 18 x 30 18 x 38 21 x 38 - - - -
6800 - 18 x 38 21 x 38 - - - - -
10 000 - 21 x 38 - - - - - -
73 ± 1.6
Ø D
Ø d
L
F
Form BR: Taped on reel
Case Ø D x L = 6.5 mm x 18 mm to 15 mm x 30 mm
Form BA: Taped in box (ammopack)
Case Ø D x L = 6.5 mm x 18 mm to 10 mm x 25 mm
Form AA: Axial in box
Case Ø D x L = 10 mm x 30 mm to 21 mm x 38 mm
33 ± 1
Ø D
Ø d
IL
F
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Table 1
Note
Detailed tape dimensions see section “Packaging”.
Fig. 4 - Mounting hole diagram and outline; Form MR: With mounting ring and pins
Note
Unless otherwise specified, all electrical values in Table 2 apply
at Tamb = 20 °C, P = 86 kPa to 106 kPa, RH = 45 % to 75 %.
ORDERING EXAMPLE
Electrolytic capacitor 118 series
1000 μF / 10 V; ± 20 %
Nominal case size: Ø 10 mm x 30 mm; Form BR
Ordering code: MAL211824102E3
Former 12NC: 2222 118 24102
AXIAL; DIMENSIONS in millimeters, MASS AND PACKAGING QUANTITIES
NOMINAL
CASE SIZE
Ø D x L
CASE
CODE
AXIAL: FORM AA, BA AND BR MASS
(g)
PACKAGING QUANTITIES
Ø d I Ø Dmax. Lmax. Fmin. FORM
AA
FORM
BA
FORM
BR
6.5 x 18 4 0.8 - 6.9 18.5 25 1.3 - 1000 1000
8 x 18 5 0.8 - 8.5 18.5 25 1.7 - 500 500
10 x 18 6 0.8 - 10.5 18.5 25 2.5 - 500 500
10 x 25 7 0.8 - 10.5 25.5 30 3.3 - 500 500
10 x 30 00 0.8 55 ± 1 10.5 30.5 35 4.8 340 - 500
12.5 x 30 01 0.8 55 ± 1 13.0 30.5 35 7.4 260 - 400
15 x 30 02 0.8 55 ± 1 15.5 30.5 35 11.7 200 - 250
18 x 30 03 0.8 55 ± 1 18.5 30.5 35 12.9 120 - -
18 x 38 04 0.8 34 ± 1 18.5 39.5 44 19 125 - -
21 x 38 05 0.8 34 ± 1 21.5 39.5 44 24 100 - -
MOUNTING RING; DIMENSIONS in millimeters, MASS AND PACKAGING QUANTITIES
NOMINAL
CASE SIZE
Ø D x L
CASE
CODE
MOUNTING RING: FORM MR MASS
(g)
PACKAGING
QUANTITIES
Ø d1 Ø d2 Ø Dmax. Ø D2max. D3 Lmax.
15 x 30 02 0.8 1.0 + 0.4 15.5 17.5 16.5 ± 0.2 33 8.6 200
18 x 30 03 0.8 1.0 + 0.4 18.5 19.5 18.5 ± 0.2 33 11.5 240
18 x 38 04 0.8 1.0 + 0.4 18.5 19.5 18.5 ± 0.2 42 14.0 100
21 x 38 05 0.8 1.0 + 0.4 21.5 22.5 21.5 ± 0.2 42 19.0 100
D3
120 °C
(3 x)
d2
-
1.3 + 0.1
0(3 x)
1.05 + 0.03
- 0.1
3.6 + 0.2
- 0.2
(3 x)
1.3 + 0
(3 x)
Mounting holes
90° ± 2°
(3 x)
- 0.05
Case Ø D x L = 15 mm x 30 mm to 21 mm x 38 mm
Especially for applications with severe shocks and vibrations
Ø d1
D
L
Ø D2
1+ 1.0
- 0.5
ELECTRICAL DATA
SYMBOL DESCRIPTION
CRRated capacitance at 100 Hz, tolerance ± 20 %
IRRated RMS ripple current at 100 Hz, 125 °C
IL1 Max. leakage current after 1 min at UR
IL5 Max. leakage current after 5 min at UR
tan Max. dissipation factor at 100 Hz
ESR Equivalent series resistance at 100 Hz
(calculated from tan max. and CR)
Z Max. impedance at 10 kHz
118 AHT
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Table 2
ELECTRICAL DATA AND ORDERING INFORMATION
UR
(V)
CR
100 Hz
(μF)
NOMINAL
CASE SIZE
Ø D x L
(mm)
CASE
CODE
IR
100 Hz
125 °C
(mA)
IL1
1 min
(μA)
IL5
5 min
(μA)
tan
100 Hz
ESR
100 Hz
()
Z
10 kHz
()
ORDERING CODE MAL2118.......
IN BOX
FORM AA
TAPED
ON REEL
FORM BR
TAPED
IN BOX
FORM BA
MOUNTING
RING
FORM MR
6.3 1000 10 x 18 6 251 42 17 0.50 0.790 0.80 - 23102E3 33102E3 -
1500 10 x 25 7 352 61 23 0.50 0.530 0.53 - 90502E3 90503E3 -
10
220 6.5 x 18 4 109 20 8.4 0.35 2.530 2.10 - 24221E3 34221E3 -
330 8 x 18 5 150 24 11 0.35 1.690 1.40 - 24331E3 34331E3 -
470 8 x 18 5 179 32 13 0.35 1.190 1.00 - 24471E3 34471E3 -
1000 10 x 25 7 343 64 24 0.35 0.560 0.55 - 90504E3 90505E3 -
1000 10 x 30 00 550 64 24 0.32 0.505 0.45 14102E3 24102E3 - -
1500 12.5 x 30 01 740 94 34 0.32 0.340 0.28 14152E3 24152E3 - -
2200 12.5 x 30 01 830 136 48 0.40 0.290 0.27 14222E3 24222E3 - -
3300 15 x 30 02 1070 202 70 0.40 0.190 0.18 14332E3 24332E3 - 44332E3
4700 18 x 30 03 1350 286 98 0.46 0.155 0.15 14472E3 - - 44472E3
6800 18 x 38 04 1730 412 140 0.53 0.100 0.10 14682E3 - - 44682E3
10 000 21 x 38 05 1860 604 200 0.53 0.084 0.10 14103E3 - - 44103E3
16
220 8 x 18 5 145 25 11 0.25 1.810 1.50 - 25221E3 35221E3 -
330 10 x 18 6 204 36 15 0.25 1.210 1.20 - 25331E3 35331E3 -
470 10 x 18 6 243 49 19 0.25 0.850 0.83 - 25471E3 35471E3 -
680 10 x 30 00 510 69 30 0.22 0.525 0.45 15681E3 25681E3 - -
1000 12.5 x 30 01 720 100 36 0.22 0.345 0.28 15102E3 25102E3 - -
1500 12.5 x 30 01 790 148 52 0.29 0.305 0.27 15152E3 25152E3 - -
2200 15 x 30 02 1010 215 74 0.29 0.205 0.18 15222E3 25222E3 - 45222E3
3300 18 x 30 03 1300 321 110 0.34 0.165 0.15 15332E3 - - 45332E3
4700 18 x 38 04 1670 455 150 0.34 0.105 0.10 15472E3 - - 45472E3
6800 21 x 38 05 1790 657 220 0.38 0.088 0.10 15682E3 - - 45682E3
25
100 6.5 x 18 4 102 20 9 0.18 2.860 2.30 - 26101E3 36101E3 -
220 10 x 18 6 196 37 15 0.18 1.300 1.25 - 26221E3 36221E3 -
330 10 x 25 7 274 54 21 0.18 0.870 0.82 - 26331E3 36331E3 -
470 10 x 25 7 327 75 28 0.18 0.610 0.57 - 90508E3 90509E3 -
470 10 x 30 00 490 75 28 0.18 0.610 0.50 16471E3 26471E3 - -
680 12.5 x 30 01 680 106 38 0.18 0.420 0.30 16681E3 26681E3 - -
1000 12.5 x 30 01 760 154 54 0.24 0.375 0.28 16102E3 26102E3 - -
1500 15 x 30 02 980 229 79 0.25 0.263 0.22 16152E3 26152E3 - 46152E3
2200 18 x 30 03 1240 334 110 0.26 0.185 0.17 16222E3 - - 46222E3
3300 18 x 38 04 1610 499 170 0.26 0.120 0.11 16332E3 - - 46332E3
4700 21 x 38 05 1710 709 240 0.28 0.095 0.10 16472E3 - - 46472E3
40
47 6.5 x 18 4 89.8 20 7.8 0.11 3.720 2.80 - 27479E3 37479E3 -
100 8 x 18 5 147 28 12 0.11 1.750 1.30 - 27101E3 37101E3 -
150 10 x 18 6 207 40 16 0.11 1.170 1.00 - 27151E3 37151E3 -
220 10 x 25 7 287 57 22 0.11 0.800 0.68 - 90511E3 90512E3 -
220 10 x 30 00 390 57 22 0.10 0.700 0.55 17221E3 27221E3 - -
330 12.5 x 30 01 570 83 30 0.10 0.430 0.33 17331E3 27331E3 - -
470 12.5 x 30 01 620 117 42 0.11 0.380 0.30 17471E3 27471E3 - -
680 15 x 30 02 810 167 58 0.11 0.255 0.23 17681E3 27681E3 - 47681E3
1000 18 x 30 03 1070 244 84 0.13 0.205 0.18 17102E3 - - 47102E3
1500 18 x 38 04 1390 364 120 0.13 0.130 0.11 17152E3 - - 47152E3
2200 21 x 38 05 1540 532 180 0.15 0.105 0.10 17222E3 - - 47222E3
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63
4.7 6.5 x 18 4 35.6 20 4.6 0.07 24.0 8.90 - 28478E3 38478E3 -
10 6.5 x 18 4 51.9 20 5.3 0.07 11.0 5.60 - 28109E3 38109E3 -
22 6.5 x 18 4 77.0 20 6.8 0.07 5.10 3.20 - 28229E3 38229E3 -
47 8 x 18 5 126 22 9.9 0.07 2.40 1.50 - 28479E3 38479E3 -
100 10 x 25 7 243 42 17 0.07 1.10 0.70 - 90513E3 90514E3 -
100 10 x 30 00 340 42 17 0.07 1.91 1.62 18101E3 28101E3 - -
150 12.5 x 30 01 490 61 23 0.07 1.00 0.79 18151E3 28151E3 - -
220 12.5 x 30 01 550 87 32 0.08 0.94 0.82 18221E3 28221E3 - -
330 15 x 30 02 730 129 46 0.09 0.63 0.56 18331E3 28331E3 - 48331E3
470 18 x 30 03 970 182 63 0.09 0.44 0.39 18471E3 - - 48471E3
680 18 x 38 04 1230 261 90 0.09 0.30 0.26 18681E3 - - 48681E3
1000 21 x 38 05 1400 383 130 0.10 0.16 0.20 18102E3 - - 48102E3
100
4.7 6.5 x 18 4 36 20 4.9 0.07 24.0 19.0 - 29478E3 39478E3 -
10 6.5 x 18 4 52 20 6.0 0.07 11.0 9.00 - 29109E3 39109E3 -
22 8 x 18 5 91 20 8.4 0.07 5.10 4.00 - 29229E3 39229E3 -
33 10 x 25 7 140 24 11 0.07 3.40 2.70 - 29339E3 39339E3 -
47 10 x 25 7 170 33 13 0.07 2.60 2.00 - 90535E3 90536E3 -
47 10 x 30 00 240 33 13 0.08 2.60 2.00 19479E3 29479E3 - -
68 12.5 x 30 01 320 45 18 0.08 1.80 1.20 19689E3 29689E3 - -
100 12.5 x 30 01 380 64 24 0.09 1.40 1.15 19101E3 29101E3 - -
150 15 x 30 02 500 94 34 0.10 0.94 0.78 19151E3 29151E3 - 49151E3
220 18 x 30 03 690 136 48 0.10 0.66 0.55 19221E3 - - 49221E3
330 18 x 38 04 890 202 70 0.10 0.45 0.37 19331E3 - - 49331E3
470 21 x 38 05 1050 286 98 0.10 0.33 0.28 19471E3 - - 49471E3
200
15 10 x 30 00 150 22 10 0.046 4.76 3.75 92159E3 90012E3 - -
22 12.5 x 30 01 210 31 13 0.046 3.17 2.22 92229E3 90013E3 - -
33 15 x 30 02 290 44 17 0.046 2.11 1.11 92339E3 90014E3 - 90002E3
47 18 x 30 03 390 61 23 0.046 1.48 0.60 92479E3 - - 90003E3
68 18 x 38 04 500 86 31 0.046 1.02 0.42 92689E3 - - 90004E3
100 21 x 38 05 610 124 44 0.046 0.96 0.39 92101E3 - - 90005E3
ELECTRICAL DATA AND ORDERING INFORMATION
UR
(V)
CR
100 Hz
(μF)
NOMINAL
CASE SIZE
Ø D x L
(mm)
CASE
CODE
IR
100 Hz
125 °C
(mA)
IL1
1 min
(μA)
IL5
5 min
(μA)
tan
100 Hz
ESR
100 Hz
()
Z
10 kHz
()
ORDERING CODE MAL2118.......
IN BOX
FORM AA
TAPED
ON REEL
FORM BR
TAPED
IN BOX
FORM BA
MOUNTING
RING
FORM MR
118 AHT
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Table 3
Note
For applications at ambient temperatures of 85 °C, the rated voltage (UR) may be raised to UR2.
CAPACITANCE
Fig. 5 - Typical multiplier of capacitance
as a function of ambient temperature
Fig. 6 - Typical multiplier of capacitance
as a function of ambient temperature
ADDITIONAL ELECTRICAL DATA
PARAMETER CONDITIONS VALUE
AXIAL MOUNTING RING
Voltage
Surge voltage Us 1.15 x UR
Reverse voltage Urev 1 V
Current
Leakage current After 1 min at URIL1 0.006 CR x UR + 4 μA or 20 μA
(whichever is greater)
After 5 min at URIL5 0.002 CR x UR + 4 μA
Inductance
Equivalent series inductance (ESL)
Case Ø D x L mm:
6.5 x 18 Typ. 15 nH -
8 x 18 Typ. 35 nH -
10 x 18 Typ. 69 nH -
10 x 25 Typ. 38 nH -
10 x 30 Typ. 38 nH -
12.5 x 30 Typ. 46 nH -
15 x 30 Typ. 48 nH Typ. 39 nH
18 x 30 Typ. 50 nH Typ. 39 nH
18 x 38 Typ. 54 nH Typ. 39 nH
21 x 38 Typ. 59 nH Typ. 39 nH
UPRATING VALUES AT REDUCED AMBIENT TEMPERATURE
SYMBOL CONDITIONS VALUES UNIT
URTamb > 85 °C to 125 °C 6.3 10 16 25 40 63 100 200 V
UR2 Tamb 85 °C 10 16 25 40 63 100 125 250 V
Case Ø D x L = 6.5 mm x 18 mm to 10 mm x 25 mm
C0 = Capacitance at 20 °C, 100 Hz
Tamb (°C)
1
-50 0 50 100
10
10
ESR0
ESR
1
2
2
10-1
Curve 1: 63 V
Curve 2: 6.3 V
1.2
1.1
1.0
0.9
0.8
0.7
0.6
-60 -40 -20 0 20 40 60 80 100 120 140 160
C
C0
Case Ø D x L = 10 mm x 30 mm to 21 mm x 38 mm
C0 = Capacitance at 20 °C, 100 Hz
Tamb (°C)
3
4
4
1
2
1
Curve 1: 100 V; 200 V
Curve 2: 40 V; 63 V
Curve 3: 16 V; 25 V
Curve 4: 6.3 V; 10 V
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Fig. 7 - Typical multiplier of capacitance
as a function of frequency
Fig. 8 - Typical multiplier of capacitance
as a function of frequency
EQUIVALENT SERIES RESISTANCE (ESR)
Fig. 9 - Typical multiplier of ESR
as a function of ambient temperature
Fig. 10 - Typical multiplier of ESR
as a function of ambient temperature
Fig. 11 - Typical multiplier of ESR
as a function of frequency
Fig. 12 - Typical multiplier of ESR
as a function of frequency
Case Ø D x L = 6.5 mm x 18 mm to 10 mm x 25 mm
C0 = Capacitance at 20 °C, 100 Hz
0
105
104
103
102
10 f (Hz)
0.2
0.4
0.6
0.8
1.0
1.2
1
4
5
6
7
C
C0
2
3
Curve 1: 63 V to 200 V (< 15 µF)
Curve 2: 63 V; 100 V (< 15 µF)
Curve 3: 40 V
Curve 4: 25 V
Curve 5: 16 V
Curve 6: 10 V
Curve 7: 6.3 V
Case Ø D x L = 10 mm x 30 mm to 21 mm x 38 mm
C0 = Capacitance at 20 °C, 100 Hz
0.5
104
103
102
10 f (Hz)
0.6
0.7
0.8
0.9
1.0
1.1
1
C
C0
1
2
3
4
5
6
7
8
Curve 1: 200 V
Curve 2: 100 V
Curve 3: 63 V
Curve 4: 40 V
Curve 5: 25 V
Curve 6: 16 V
Curve 7: 10 V
Curve 8: 6.3 V
8
Tamb (°C)
1
10
102
ESR0
ESR
10-1
015050 100-50-100
1
2
3
Curve 1: 100 V; 200 V
Curve 2: 25 V; 40 V; 63 V
Curve 3: 6.3 V; 10 V; 16 V
Case Ø D x L = 6.5 mm x 18 mm to 10 mm x 25 mm
ESR0 = Typical at 20 °C, 100 Hz
Tamb (°C)
1
10
102
ESR0
ESR
10-1
015050 100-50-100
3
1
2
1
2
3Curve 1: 6.3 V to 10 V; 16 V
Curve 2: 25 V; 40 V; 63 V
Curve 3: 100 V; 200 V
Case Ø D x L = 18 mm x 30 mm to 21 mm x 38 mm
ESR0 = Typical at 20 °C, 100 Hz
Case Ø D x L = 6.5 mm x 18 mm to 10 mm x 25 mm
ESR0 = Typical at 20 °C, 100 Hz
0
105
104
103
102
10 f (Hz)
0.4
0.8
1.2
1.6
2.0
3
ESR0
ESR
4
2
1
2
3
4
1
3
Curve 1: 63 V to 100 V (< 15 µF)
Curve 2: 40 V
Curve 3: 25 V
Curve 4: 6.3 V; 10 V; 16 V
Case Ø D x L = 10 mm x 30 mm to 21 mm x 38 mm
ESR0 = Typical at 20 °C, 100 Hz
0
105
104
103
102
10 f (Hz)
0.4
0.8
1.2
1.6
3
2
ESR0
ESR
5
4
1
1
2
3
4
5
Curve 1: 200 V
Curve 2: 100 V
Curve 3: 40 V; 63 V
Curve 4: 16 V; 25 V
Curve 5: 6.3 V; 10 V
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IMPEDANCE (Z)
Fig. 13 - Typical impedance as a function of frequency Fig. 14 - Typical impedance as a function of frequency
Fig. 15 - Typical impedance as a function of frequency Fig. 16 - Typical impedance as a function of frequency
Fig. 17 - Typical impedance as a function of frequency Fig. 18 - Typical impedance as a function of frequency
Case Ø D x L = 8 mm x 18 mm Tamb (°C)
106
105
104
103
102
103
102
10
1
10-1
f (Hz)
2
Z
(Ω)
1
3
4
Curve 1: 47 V
Curve 2: 100 V
Curve 3: 220 V
Curve 4: 470 V
Case Ø D x L = 10 mm x 25 mm Tamb (°C)
106
105
104
103
102
103
102
10
1
10-1
f (Hz)
Z
(Ω)
1
4
2
3
Curve 1: 100 V
Curve 2: 220 V
Curve 3: 470 V
Curve 4: 1000 V
Case Ø D x L = 18 mm x 30 mm Tamb (40 °C)
103
102
10
1
10-1
Z
(Ω)
106
105
104
103
102
10 107
f (Hz)
2
3
4
5
6
7
8
9
11
10
1
Curve 1: 22 µF, 200 V
Curve 2: 68 µF, 100 V
Curve 3: 150 µF, 63 V
Curve 4: 220 µF, 63 V
Curve 5: 330 µF, 40 V
Curve 6: 470 µF, 40 V
Curve 7: 680 µF, 25 V
Curve 8: 1000 µF, 25 V
and 1000 µF, 16 V
Curve 9: 1500 µF, 16 V and 1500 µF, 10 V
Curve 10: 1500 µF, 10 V and 2200 µF, 6.3 V
Curve 11: 3300 µF, 6.3 V
Case Ø D x L = 12.5 mm x 30 mm Tamb (20 °C)
103
102
10
1
10-1
Z
(Ω)
106
105
104
103
102
10 107
f (Hz)
1
2
3
4
5
6
7
8
9
10
11
Curve 1: 22 µF, 200 V
Curve 2: 68 µF, 100 V
Curve 3: 150 µF, 63 V
Curve 4: 220 µF, 63 V
Curve 5: 330 µF, 40 V
Curve 6: 470 µF, 40 V
Curve 7: 680 µF, 25 V
Curve 8: 1000 µF, 25 V
Curve 9: 1500 µF, 16 V
Curve 10: 1500 µF, 10 V
and 2200 µF, 6.3 V
Curve 11: 3300 µF, 6.3 V
Case Ø D x L = 18 mm x 30 mm Tamb (40 °C)
103
102
10
1
10-1
Z
(Ω)
106
105
104
103
102
10 107
f (Hz)
1
3
2
4
5
6
7
Curve 1: 47 µF, 200 V
Curve 2: 220 µF, 100 V
Curve 3: 470 µF, 63 V
Curve 4: 1000 µF, 40 V
Curve 5: 2200 µF, 25 V
Curve 6: 3300 µF, 18 V
Curve 7: 4700 µF, 10 V
Curve 8: 6800 µF, 6.3 V
8
Case Ø D x L = 18 mm x 30 mm Tamb (20 °C)
106
105
104
103
102
10 107
f (Hz)
102
10-2
10
1
10-1
Z
( )
Ω
1
2
3
4
5
6
8
7
Curve 1: 47 µF, 200 V
Curve 2: 220 µF, 100 V
Curve 3: 470 µF, 63 V
Curve 4: 1000 µF, 40 V
Curve 5: 2200 µF, 25 V
Curve 6: 3300 µF, 18 V
Curve 7: 4700 µF, 10 V
Curve 8: 6800 µF, 6.3 V
118 AHT
www.vishay.com Vishay BCcomponents
Revision: 20-Apr-17 9Document Number: 28334
For technical questions, contact: aluminumcaps1@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
RIPPLE CURRENT AND USEFUL LIFE
Table 4
Note
Multiplier of useful life code: MBC242
Fig. 19 - Multiplier of useful life as a function of ambient temperature and ripple current load
ENDURANCE TEST DURATION AND USEFUL LIFE
NOMINAL CASE SIZE
Ø D x L
(mm)
ENDURANCE
AT 125 °C
(h)
USEFUL LIFE
AT 125 °C
(h)
6.5 x 18 2000 4000
8 x 18 2000 4000
10 x 18 2000 4000
10 x 25 2000 4000
10 x 30 3000 8000
12.5 x 30 3000 8000
15 x 30 3000 8000
18 x 30 3000 8000
18 x 38 3000 8000
21 x 38 3000 8000
3.8
3.7
3.6
3.5
3.4
3.3
3.2
3.0
2.8
2.6
2.4
2.2
2.0
1.8
1.6
1.4
1.2
1.0
0.8
0.5
0.0
3.1
40 50 60 70 80 90 100 110
Tamb (°C)
120 130
3.9
4.0
4.1
4.2
4.3
Lifetime multiplier
IA
IR
6.0
4.0
2.0
1.5
1.0
3.0
400
100
60
20
30
12
8.0
200
MBC242
IA = Actual ripple current at 100 Hz
IR = Rated ripple current at 100 Hz, 125 °C
(1) Useful life at 125 °C and IR applied:
Case Ø D x L = 6.5 mm x 18 mm to
10 mm x 25 mm: 4000 h
Case Ø D x L = 10 mm x 30 mm to
21 mm x 38 mm: 8000 h
(1)
118 AHT
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Revision: 20-Apr-17 10 Document Number: 28334
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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
Table 5
Table 6
Statements about product lifetime are based on calculations and internal testing. They should only be interpreted as estimations. Also due to external factors, the
lifetime in the field application may deviate from the calculated lifetime. In general, nothing stated herein shall be construed as a guarantee of durability.
MULTIPLIER OF RIPPLE CURRENT (IR) AS A FUNCTION OF FREQUENCY
UR
(V)
FREQUENCY (Hz)
50 100 300 1000 3000 10 000
IR MULTIPLIER
6.3 0.95 1.00 1.07 1.12 1.15 1.20
10 0.95 1.00 1.07 1.12 1.15 1.20
16 0.95 1.00 1.07 1.12 1.15 1.20
25 0.95 1.00 1.07 1.12 1.15 1.20
40 0.90 1.00 1.12 1.20 1.25 1.30
63 0.90 1.00 1.12 1.20 1.25 1.30
100 0.85 1.00 1.20 1.30 1.35 1.40
200 0.85 1.00 1.20 1.30 1.35 1.40
TEST PROCEDURES AND REQUIREMENTS
TEST PROCEDURE
(quick reference) REQUIREMENTS
NAME OF TEST REFERENCE
Endurance
IEC 60384-4 /
EN130300
subclause 4.13
Tamb = 125 °C; UR applied;
Case sizes:
6.5 mm x 18 mm to 10 mm x 25 mm: 2000 h;
10 mm x 30 mm to 21 mm x 38 mm: 3000 h
UR 6.3 V; C/C: +15 % / -30 %
UR > 6.3 V; C/C: ± 15 %
tan 1.3 x spec. limit
Z 2 x spec. limit
IL5 spec. limit
Useful life CECC 30301
subclause 1.8.1
Tamb = 125 °C; UR and IR applied;
Case Ø D x L = 6.5 mm x 18 mm to 10 mm x 25 mm:
4000 h
Case Ø D x L = 10 mm x 30 mm to 21 mm x 38 mm:
8000 h
UR 6.3 V; C/C: +45 % / -50 %
UR > 6.3 V; C/C: ± 45 %
tan 3 x spec. limit
Z 3 x spec. limit
IL5 spec. limit
no short or open circuit
total failure percentage: 1 %
(200 V 3 %)
Shelf life
(storage at high
temperature)
IEC 60384-4 /
EN130300
subclause 4.17
Tamb = 125 °C; no voltage applied;
UR = 6.3 V to 63 V: 500 h;
UR = 100 V and 200 V: 100 h
After test: UR to be applied for 30 min,
24 h to 48 h before measurement
C/C, tan , Z:
for requirements
see “Endurance test” above
IL5 2 x spec. limit
Reverse voltage
IEC 60384-4 /
EN130300
subclause 4.15
Tamb = 125 °C:
125 h at U = -1 V
followed by 125 h at UR
C/C: ± 20 %
tan spec. limit
IL5 spec. limit
Legal Disclaimer Notice
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Revision: 08-Feb-17 1Document Number: 91000
Disclaimer
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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.
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the continuing production of any product. To the maximum extent permitted by applicable law, Vishay disclaims (i) any and all
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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
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including but not limited to the warranty expressed therein.
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