136 RVI (MAL2136) Series Datasheet by Vishay Beyschlag/Draloric/BC Components

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Aluminum Electrolytic Capacitors
Radial Very Low Impedance
Fig. 1
FEATURES
Very low impedance and low ESR
Very long useful life:
4000 h to 10 000 h at 105 °C, very high reliability
Excellent ripple current capability
Polarized aluminum electrolytic capacitors, non-solid
electrolyte
Radial leads, cylindrical aluminum case with pressure
relief, insulated with a blue sleeve
Charge and discharge proof
Material categorization: for definitions of compliance
please see www.vishay.com/doc?99912
APPLICATIONS
Power supplies (SMPS, DC/DC converters) for general
industrial, EDP, audio-video, and telecommunications
Smoothing, filtering, buffering
MARKING
The capacitors are marked (where possible) with the
following information:
Rated capacitance value (in μF)
Tolerance on rated capacitance, code letter in accordance
with IEC 60062 (M for ± 20 %)
Rated voltage (in V)
Date code, in accordance with IEC 60062
Code indicating factory of origin
Name of manufacturer
Upper category temperature (105 °C)
Negative terminal identification
Series number (136)
QUICK REFERENCE DATA
DESCRIPTION VALUE
Nominal case sizes (Ø D x L in mm) 10 x 12 to 18 x 35
Rated capacitance range, CR22 μF to 10 000 μF
Tolerance on CR± 20 %
Rated voltage range, CR10 V to 100 V
Category temperature range -55 °C to +105 °C
Endurance test at 105 °C 3000 h to 5000 h
(dependent on case size)
Useful life at 105 °C 4000 h to 10 000 h
(dependent on case size)
Useful life at 40 °C,
1.8 x IR applied
200 000 h to 500 000 h
(dependent on case size)
Shelf life at 0 V, 105 °C 1000 h
Based on sectional specification IEC 60384-4 / EN130300
Climatic category IEC 60 068 55 / 105 / 56
150 RMI
148 RUS
136 RVI
048 RML
140 RTM
125 C
miniaturized
higher
temperature
higher
CV/volume
miniaturized
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SELECTION CHART FOR CR, UR, AND RELEVANT NOMINAL CASE SIZES (Ø D x L in mm)
CR
(μF)
UR (V)
10 16 25 35 50 63 100
22 - - - - - - 10 x 12
33 - - - - - - 10 x 12
47 - - - - - 10 x 12 10 x 16
56 - - - - - 10 x 12 -
68 - - - - - 10 x 16 10 x 20
82 - - - - 10 x 12 - -
100 - - - - 10 x 12 10 x 16 12.5 x 20
120 - - - 10 x 12 10 x 16 10 x 20 -
150 - - - 10 x 12 10 x 20 - 16 x 20
180 - - 10 x 12 - 10 x 20 - -
220 - - 10 x 12 10 x 16 - 12.5 x 20 16 x 25
270 - 10 x 12 - - - 12.5 x 25 -
330 - 10 x 12 10 x 16 10 x 20 12.5 x 20 16 x 20 16 x 31
390 10 x 12 - - - - - -
470 10 x 12 10 x 16 10 x 20 12.5 x 20 12.5 x 25 16 x 25 16 x 35
------18 x 31
560 - - - 12.5 x 20 - - -
680 10 x 16 10 x 20 - 12.5 x 25 16 x 20 16 x 31 18 x 35
-----18 x 25-
820 - - 12.5 x 20 - 16 x 25 16 x 35 -
1000 10 x 20 12.5 x 20 12.5 x 25 16 x 20 16 x 31 18 x 31 -
----18 x 20--
1200 - 12.5 x 20 - 16 x 25 16 x 35 - -
1500 12.5 x 20 12.5 x 25 16 x 20 16 x 25 18 x 31 18 x 35 -
1800 12.5 x 20 - 16 x 25 16 x 31 - - -
2200 12.5 x 25 16 x 20 16 x 31 16 x 35 18 x 35 - -
- - 18 x 20 18 x 31 - - -
2700 - 16 x 25 16 x 31 - - - -
3300 16 x 20 16 x 25 16 x 35 18 x 35 - - -
--18 x 31----
3900 16 x 25 16 x 31 - - - - -
4700 16 x 31 16 x 35 18 x 35 - - - -
-18 x 31-----
5600 16 x 31------
18 x 25------
6800 16 x 35 18 x 35 - - - - -
18 x 31------
10 000 18 x 35 - - - - - -
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DIMENSIONS in millimeters AND AVAILABLE FORMS
Fig. 2 - Form CA: Long leads Fig. 3 - Form CB: Cut leads
Fig. 4 - Form TFA: Taped in box (ammopack)
Table 1
Note
For detailed tape dimensions refer to packaging information: www.vishay.com/doc?28360
L
F
15
min.
5
min.
Ø d
Ø D
F
5 ± 1
Ø d
Ø D
L
DIMENSIONS in millimeters, MASS AND PACKAGING QUANTITIES
NOMINAL
CASE SIZE
Ø D x L
CASE
CODE Ø d Ø Dmax. Lmax. FMASS
(g)
PACKAGING QUANTITIES
FORM
CA
FORM
CB
FORM
TFA
10x12 14 0.6 10.5 13.5 5.0 ± 0.5 1.6 1000 500 800
10x16 15 0.6 10.5 17.5 5.0 ± 0.5 1.9 500 500 800
10x20 16 0.6 10.5 22.0 5.0 ± 0.5 2.2 500 500 800
12.5x20 17 0.6 13.0 22.0 5.0 ± 0.5 4.0 500 500 500
12.5x25 18 0.6 13.0 27.0 5.0 ± 0.5 5.0 250 250 500
16x20 19a 0.8 16.5 22.0 7.5 ± 0.5 6.0 250 250 250
16x25 19 0.8 16.5 27.0 7.5 ± 0.5 8.0 250 250 250
16x31 20 0.8 16.5 33.5 7.5 ± 0.5 9.0 100 100 250
16x35 21 0.8 16.5 37.5 7.5 ± 0.5 11.0 100 100 -
18x20 1820 0.8 18.5 22.0 7.5 ± 0.5 8.0 100 100 -
18x25 1825 0.8 18.5 27.0 7.5 ± 0.5 10.0 100 100 -
18x31 1831 0.8 18.5 33.5 7.5 ± 0.5 12.5 100 100 -
18x35 22 0.8 18.5 37.5 7.5 ± 0.5 14.5 100 100 -
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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 136 series
1000 μF / 25 V; ± 20 %
Nominal case size: Ø 12.5 mm x 25 mm; form TFA
Ordering code: MAL2 136 36102 E3
Former 12NC: 2222 136 36102
Table 2
ELECTRICAL DATA
SYMBOL DESCRIPTION
CRRated capacitance at 100 Hz, tolerance ± 20 %
IRRated RMS ripple current at 100 kHz, 105 °C
IL2 Max. leakage current after 2 min at UR
tan δMax. dissipation factor at 100 Hz
Z Max. impedance at 100 kHz
ELECTRICAL DATA AND ORDERING INFORMATION
UR
(V)
CR
100 Hz
(μF)
NOMINAL
CASE SIZE
Ø D x L
(mm)
IR
100 kHz
105 °C
(mA)
IL2
2 min
(μA)
tan δ
100 Hz
Z
100 kHz
+20 °C
(mΩ)
Z
100 kHz
-10 °C
(mΩ)
FREQ.
CODE (1)
ORDERING CODE
MAL2136.......
BULK PACKAGING TAPED
FORM CA FORM CB FORM TFA
10
390 10 x 12 630 39 0.19 120 240 MF1 54391E3 64391E3 34391E3
470 10 x 12 630 47 0.19 120 240 MF1 54471E3 64471E3 34471E3
680 10 x 16 830 68 0.19 84 170 MF1 54681E3 64681E3 34681E3
1000 10 x 20 1000 100 0.19 62 130 MF1 54102E3 64102E3 34102E3
1500 12.5 x 20 1300 150 0.19 46 92 MF1 54152E3 64152E3 34152E3
1800 12.5 x 20 1340 180 0.19 46 92 MF1 54182E3 64182E3 34182E3
2200 12.5 x 25 1700 220 0.21 34 68 MF1 54222E3 64222E3 34222E3
3300 16 x 20 1600 330 0.23 38 76 MF2 54332E3 64332E3 34332E3
3900 16 x 25 2100 390 0.23 28 56 MF2 54392E3 64392E3 34392E3
4700 16 x 31 2400 470 0.25 25 50 MF2 54472E3 64472E3 34472E3
5600 16 x 31 2400 560 0.27 25 50 MF2 54562E3 64562E3 34562E3
5600 18 x 25 2270 560 0.27 25 50 MF2 94565E3 94566E3 -
6800 16 x 35 2600 680 0.29 22 44 MF2 54682E3 64682E3 -
6800 18 x 31 2760 680 0.29 23 46 MF2 94685E3 94686E3 -
10 000 18 x 35 3180 1000 0.31 21 42 MF2 54103E3 64103E3 -
16
270 10 x 12 630 43 0.16 120 240 MF3 55271E3 65271E3 35271E3
330 10 x 12 630 53 0.16 120 240 MF3 55331E3 65331E3 35331E3
470 10 x 16 830 75 0.16 84 170 MF3 55471E3 65471E3 35471E3
680 10 x 20 1000 110 0.16 62 130 MF3 55681E3 65681E3 35681E3
1000 12.5 x 20 1300 160 0.16 48 96 MF3 55102E3 65102E3 35102E3
1200 12.5 x 20 1300 190 0.16 46 92 MF3 55122E3 65122E3 35122E3
1500 12.5 x 25 1700 240 0.16 34 68 MF3 55152E3 65152E3 35152E3
2200 16 x 20 1600 350 0.18 38 76 MF4 55222E3 65222E3 35222E3
2700 16 x 25 2100 430 0.18 28 56 MF4 55272E3 65272E3 35272E3
3300 16 x 25 2100 530 0.20 28 56 MF4 55332E3 65332E3 35332E3
3900 16 x 31 2400 620 0.20 25 50 MF4 55392E3 65392E3 35392E3
4700 16 x 35 2600 750 0.22 22 44 MF4 55472E3 65472E3 -
4700 18 x 31 2560 750 0.22 23 46 MF4 95475E3 95476E3 -
6800 18 x 35 3000 1090 0.24 21 42 MF4 55682E3 65682E3 -
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25
180 10 x 12 630 45 0.14 120 240 MF3 56181E3 66181E3 36181E3
220 10 x 12 630 55 0.14 120 240 MF3 56221E3 66221E3 36221E3
330 10 x 16 830 83 0.14 84 170 MF3 56331E3 66331E3 36331E3
470 10 x 20 1000 120 0.14 62 130 MF3 56471E3 66471E3 36471E3
820 12.5 x 20 1300 210 0.14 46 92 MF3 56821E3 66821E3 36821E3
1000 12.5 x 25 1700 250 0.14 34 68 MF3 56102E3 66102E3 36102E3
1500 16 x 20 1700 380 0.14 38 76 MF4 56152E3 66152E3 36152E3
1800 16 x 25 2100 450 0.14 28 56 MF4 56182E3 66182E3 36182E3
2200 16 x 31 2400 550 0.16 25 50 MF4 56222E3 66222E3 36222E3
2200 18 x 20 1680 550 0.16 28 56 MF4 96225E3 96226E3 -
2700 16 x 31 2400 680 0.16 25 50 MF4 56272E3 66272E3 36272E3
3300 16 x 35 2600 830 0.18 22 44 MF4 56332E3 66332E3 -
3300 18 x 31 2490 830 0.18 27 54 MF4 96335E3 96336E3 -
4700 18 x 35 3000 1180 0.20 21 42 MF4 56472E3 66472E3 -
35
120 10 x 12 630 42 0.12 120 240 MF5 50121E3 60121E3 30121E3
150 10 x 12 630 53 0.12 120 240 MF5 50151E3 60151E3 30151E3
220 10 x 16 830 77 0.12 84 170 MF5 50221E3 60221E3 30221E3
330 10 x 20 1000 120 0.12 62 130 MF5 50331E3 60331E3 30331E3
470 12.5 x 20 1300 170 0.12 48 96 MF5 50471E3 60471E3 30471E3
560 12.5 x 20 1300 200 0.12 46 92 MF5 50561E3 60561E3 30561E3
680 12.5 x 25 1700 240 0.12 34 68 MF5 50681E3 60681E3 30681E3
1000 16 x 20 1700 350 0.12 38 76 MF6 50102E3 60102E3 30102E3
1200 16 x 25 2100 420 0.12 28 56 MF6 50122E3 60122E3 30122E3
1500 16 x 25 2100 530 0.12 28 56 MF6 50152E3 60152E3 30152E3
1800 16 x 31 2400 630 0.12 25 50 MF6 50182E3 60182E3 30182E3
2200 16 x 35 2600 770 0.14 22 44 MF6 50222E3 60222E3 -
2200 18 x 31 2320 770 0.14 27 54 MF6 90225E3 90226E3 -
3300 18 x 35 2890 1160 0.16 21 42 MF6 50332E3 60332E3 -
50
82 10 x 12 480 41 0.10 200 400 MF5 51829E3 61829E3 31829E3
100 10 x 12 480 50 0.10 200 400 MF5 51101E3 61101E3 31101E3
120 10 x 16 760 60 0.10 100 200 MF5 51121E3 61121E3 31121E3
150 10 x 20 850 75 0.10 90 180 MF5 51151E3 61151E3 31151E3
180 10 x 20 950 90 0.10 75 150 MF5 51181E3 61181E3 31181E3
330 12.5 x 20 1200 170 0.10 59 120 MF5 51331E3 61331E3 31331E3
470 12.5 x 25 1500 240 0.10 44 88 MF5 51471E3 61471E3 31471E3
680 16 x 20 1400 340 0.10 50 100 MF6 51681E3 61681E3 31681E3
820 16 x 25 1900 410 0.10 34 68 MF6 51821E3 61821E3 31821E3
1000 16 x 31 2200 500 0.10 30 60 MF6 51102E3 61102E3 31102E3
1000 18 x 20 1510 500 0.10 41 82 MF6 91105E3 91106E3 -
1200 16 x 35 2300 600 0.10 27 54 MF6 51122E3 61122E3 -
1500 18 x 31 2200 750 0.10 31 62 MF6 51152E3 61152E3 -
2200 18 x 35 2650 1100 0.12 27 54 MF6 51222E3 61222E3 -
ELECTRICAL DATA AND ORDERING INFORMATION
UR
(V)
CR
100 Hz
(μF)
NOMINAL
CASE SIZE
Ø D x L
(mm)
IR
100 kHz
105 °C
(mA)
IL2
2 min
(μA)
tan δ
100 Hz
Z
100 kHz
+20 °C
(mΩ)
Z
100 kHz
-10 °C
(mΩ)
FREQ.
CODE (1)
ORDERING CODE
MAL2136.......
BULK PACKAGING TAPED
FORM CA FORM CB FORM TFA
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Note
(1) Determines the applicable row in the table “Multiplier of Ripple Current (IR) as a Function of Frequency”
63
47 10 x 12 380 30 0.10 300 750 MF7 58479E3 68479E3 38479E3
56 10 x 12 420 35 0.10 270 680 MF7 58569E3 68569E3 38569E3
68 10 x 16 520 43 0.10 210 530 MF7 58689E3 68689E3 38689E3
100 10 x 16 580 63 0.10 190 480 MF7 58101E3 68101E3 38101E3
120 10 x 20 650 76 0.10 160 400 MF7 58121E3 68121E3 38121E3
220 12.5 x 20 870 140 0.10 110 280 MF7 58221E3 68221E3 38221E3
270 12.5 x 25 1200 170 0.10 74 190 MF7 58271E3 68271E3 38271E3
330 16 x 20 1100 210 0.10 85 220 MF8 58331E3 68331E3 38331E3
470 16 x 25 1500 300 0.10 55 140 MF8 58471E3 68471E3 38471E3
680 16 x 31 1700 430 0.10 46 120 MF8 58681E3 68681E3 38681E3
680 18 x 25 1470 430 0.10 54 108 MF8 98685E3 98686E3 -
820 16 x 35 1900 520 0.10 40 100 MF8 58821E3 68821E3 -
1000 18 x 31 1950 630 0.10 39 78 MF8 58102E3 68102E3 -
1500 18 x 35 2350 950 0.10 33 66 MF8 58152E3 68152E3 -
100
22 10 x 12 300 22 0.07 450 2300 MF7 59229E3 69229E3 39229E3
33 10 x 12 320 33 0.07 390 2000 MF7 59339E3 69339E3 39339E3
47 10 x 16 450 47 0.07 320 1600 MF7 59479E3 69479E3 39479E3
68 10 x 20 520 68 0.07 240 1200 MF7 59689E3 69689E3 39689E3
100 12.5 x 20 800 100 0.07 150 750 MF7 59101E3 69101E3 39101E3
150 16 x 20 1000 150 0.07 110 550 MF8 59151E3 69151E3 39151E3
220 16 x 25 1300 220 0.07 81 400 MF8 59221E3 69221E3 39221E3
330 16 x 31 1600 330 0.07 58 290 MF8 59331E3 69331E3 39331E3
470 16 x 35 1800 470 0.07 45 230 MF8 59471E3 69471E3 -
470 18 x 31 1800 470 0.07 45 230 MF8 99475E3 99476E3 -
680 18 x 35 2000 680 0.07 39 200 MF8 59681E3 69681E3 -
ADDITIONAL ELECTRICAL DATA
PARAMETER CONDITIONS VALUE
Voltage
Surge voltage Us 1.15 x UR
Reverse voltage Urev 1 V
Current
Leakage current After 2 min at URIL2 0.01 CR x UR
Inductance
Equivalent series inductance (ESL) Case Ø D = 10 mm Typ. 16 nH
Case Ø D 12.5 mm Typ. 18 nH
Resistance
Equivalent series resistance (ESR) Calculated from tan δmax. and CR (see Table 2) ESR = tan δ/2 π f CR
ELECTRICAL DATA AND ORDERING INFORMATION
UR
(V)
CR
100 Hz
(μF)
NOMINAL
CASE SIZE
Ø D x L
(mm)
IR
100 kHz
105 °C
(mA)
IL2
2 min
(μA)
tan δ
100 Hz
Z
100 kHz
+20 °C
(mΩ)
Z
100 kHz
-10 °C
(mΩ)
FREQ.
CODE (1)
ORDERING CODE
MAL2136.......
BULK PACKAGING TAPED
FORM CA FORM CB FORM TFA
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CAPACITANCE (C)
Fig. 5 - Typical multiplier of capacitance as a function
of ambient temperature
Fig. 6 - Typical multiplier of capacitance as a function
of frequency
EQUIVALENT SERIES RESISTANCE (ESR)
Fig. 7 - Typical multiplier of ESR as a function
of ambient temperature
Fig. 8 - Typical multiplier of ESR as a function of frequency
Curve 1: 63 V
Curve 2: 10 V
1.2
C
C0
1.1
1.0
0.9
0.8
- 60 - 40 - 20 0 20 40 60 80 100 120
Tamb (°C)
1
1
2
2
C0 = Typical capacitance at 20 °C, 100 Hz
1.2
C
C0
1.0
0.6
0.8
0.4
0.2
010 102103104105
f (Hz)
2
3
5
4
1
C0 = Typical capacitance at 20 °C, 100 Hz Tamb = 20 °C
Curve 1: 63 V
Curve 2: 50 V
Curve 3: 35 V
Curve 4: 25 V
Curve 5: 10 V
20
ESR
ESR0
10
1
- 60 - 40 - 20 0 20 40 60 80 100 120
Tamb (°C)
ESR0 = Typical ESR at 20 °C, 100 Hz
2.0
ESR
ESR0
1.6
1.2
0.8
0.4
010 102103104105
f (Hz)
ESR0 = Typical ESR at 20 °C, 100 Hz Tamb = 20 °C
1
1
2
2
Curve 1: 63 V
Curve 2: 10 V
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IMPEDANCE (Z)
Fig. 9 - Typical multiplier of impedance as a function
of ambient temperature
Fig. 10 - Typical impedance as a function of frequency
Fig. 11 - Typical impedance as a function of frequency Fig. 12 - Typical impedance as a function of frequency
Curve 1: 10 V
Curve 2: 50 V
Curve 3: 63 V
Z0 = Typical impedance at 20 °C, 100 kHz
UR = 10 V and 16 V
Curve 1: 470 µF, 16 V; Ø 10 x 16 mm
Curve 2: 680 µF, 10 V; Ø 10 x 16 mm
Curve 3: 1000 µF, 10 V; Ø 10 x 20 mm
Curve 4: 2200 µF, 10 V; Ø 12.5 x 25 mm
Curve 5: 4700 µF, 16 V; Ø 16 x 35 mm
Curve 6: 10 000 µF, 10 V; Ø 18 x 35 mm
Tamb = 20 °C
UR
= 25 V and 35 V
Curve 1: 220 µF, 25 V; Ø 10 x 12 mm
Curve 2: 220 µF, 35 V; Ø 10 x 16 mm
Curve 3: 330 µF, 35 V; Ø 10 x 20 mm
Curve 4: 470 µF, 25 V; Ø 10 x 20 mm
Curve 5: 470 µF, 35 V; Ø 12.5 x 20 mm
Curve 6: 1000 µF, 25 V; Ø 12.5 x 25 mm
Curve 7: 1200 µF, 35 V; Ø 16 x 25 mm
Curve 8: 2200 µF, 35 V; Ø 16 x 35 mm
Curve 9: 3300 µF, 25 V; Ø 16 x 35 mm
T
amb
= 20 °C
T
amb = 20 °C
UR = 50 V
Curve 1: 100 µF, 50 V; Ø 10 x 12 mm
Curve 2: 470 µF, 50 V; Ø 12.5 x 25 mm
Curve 3: 680 µF, 50 V; Ø 16 x 20 mm
Curve 4: 1000 µF, 50 V; Ø 16 x 31 mm
Curve 5: 2200 µF, 50 V; Ø 18 x 35 mm
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Fig. 13 - Typical impedance as a function of frequency
RIPPLE CURRENT AND USEFUL LIFE
Table 3
Note
Multiplier of useful life code: CCC206
ENDURANCE TEST DURATION AND USEFUL LIFE
NOMINAL CASE SIZE
Ø D x L
(mm)
CASE CODE
ENDURANCE TEST
AT 105 °C
(h)
USEFUL LIFE
AT 105 °C
(h)
10 x 12 14 3000 4 000
10 x 16 15 3000 6 000
10 x 20 16 3000 6 000
12.5 x 20 17 3000 7000
12.5 x 25 18 5000 8000
16 x 20 19a 3000 7000
16 x 25 19 5000 10 000
16 x 31 20 5000 10 000
16 x 35 21 5000 10 000
18 x 20 1820 3000 7000
18 x 25 1825 5000 10 000
18 x 31 1831 5000 10 000
18 x 35 22 5000 10 000
Tamb = 20 °C
UR = 63 V
Curve 1: 47 µF, 63 V; Ø 10 x 12 mm
Curve 2: 68 µF, 63 V; Ø 10 x 16 mm
Curve 3: 100 µF, 63 V; Ø 10 x 20 mm
Curve 4: 220 µF, 63 V; Ø 12.5 x 20 mm
Curve 5: 270 µF, 63 V; Ø 12.5 x 25 mm
Curve 6: 470 µF, 63 V; Ø 16 x 25 mm
Curve 7: 680 µF, 63 V; Ø 16 x 31 mm
VISHAY. Ccczne eume mu ‘ we! AC LES a‘ummumcagsmwshamom www.v\shay,com/doc?91000
136 RVI
www.vishay.com Vishay BCcomponents
Revision: 16-Mar-2021 10 Document Number: 28321
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Fig. 14 - Multiplier of useful life as a function of ambient temperature and ripple current load
Table 4
Table 5
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
FREQ.
CODE
FREQUENCY (Hz)
100 300 1000 3000 10 000 30 000 100 000
IR MULTIPLIER
MF1 0.70 0.80 0.88 0.92 0.96 0.99 1.00
MF2 0.83 0.90 0.95 0.98 0.99 1.00 1.00
MF3 0.63 0.72 0.80 0.88 0.92 0.98 1.00
MF4 0.69 0.79 0.87 0.92 0.96 0.99 1.00
MF5 0.50 0.61 0.72 0.81 0.88 0.94 1.00
MF6 0.60 0.71 0.80 0.88 0.93 0.96 1.00
MF7 0.35 0.51 0.66 0.76 0.85 0.92 1.00
MF8 0.50 0.64 0.74 0.83 0.90 0.95 1.00
TEST PROCEDURES AND REQUIREMENTS
TEST PROCEDURE
(quick reference) REQUIREMENTS
NAME OF TEST REFERENCE
Endurance IEC 60384-4 / EN130300
subclause 4.13
Tamb = 105 °C; UR applied;
for test duration see Table 3
ΔC/C: ± 20 %
tan δ 2 x spec. limit
IL2 spec. limit
Useful life CECC 30301
subclause 1.8.1
Tamb = 105 °C; UR and IR applied;
for test duration see Table 3
ΔC/C: ± 30 %
tan δ ≤ 3 x spec. limit
IL2 spec. limit
no short or open circuit
total failure percentage: 1 %
Shelf life
(storage at high
temperature)
IEC 60384-4 / EN130300
subclause 4.17
Tamb = 105 °C; no voltage applied;
1000 h
after test: UR to be applied for 30 min,
24 h to 48 h before measurement
ΔC/C: ± 20 %
tan δ ≤ 2 x spec. limit
IL2 spec. limit
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
Lifetime multiplier
(1)
200
100
60
1.0
30
150
20
6.0
4.0
2.0
1.5
12
8.0
3.0
Tamb (°C)
IA
IR
CCC206
IA = Actual ripple current at 100 Hz
IR = Rated ripple current at 100 Hz, 105 °C
(1) Useful life at 105 °C and IR applied;
see Table 3
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