119 AHT-DIN Datasheet

119 AHT-DIN
www.vishay.com
Vishay BCcomponents
Aluminum Electrolytic Capacitors
Axial High Temperature, DIN-Based
FEATURES
119 AHT-DIN
125 °C
smaller dimensions
higher ripple
• Extra long useful life: up to 8000 h at 125 °C
• High stability, high reliability
• Extended temperature range: 125 °C (usable up
to 150 °C)
• High ripple current capability
• Taped versions up to case Ø 15 mm x 30 mm available for
automatic insertion
• 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
• Charge and discharge proof
• Material categorization: for definitions of compliance
please see www.vishay.com/doc?99912
120 ATC
125 °C
smaller
dimensions
118 AHT
Fig. 1
APPLICATIONS
QUICK REFERENCE DATA
DESCRIPTION
• Military, industrial control, EDP and telecommunication
• Smoothing, filtering, buffering in SMPS; coupling,
decoupling
• For use where low mounting height is important; vibration
and shock resistant
VALUE
Nominal case sizes
(Ø D x L in mm)
6.5 x 18
to 10 x 25
Rated capacitance range, CR
10 x 30
to 21 x 38
4.7 μF to 4700 μF
Tolerance on CR
-10 %/+50 %
Rated voltage range, UR
10 V to 100 V
Category temperature range
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 (T for -10 % to +50 %)
• Rated voltage (in V) at 125 °C and 85 °C
• Date code, in accordance with IEC 60062
• Code for factory of origin
• Name of manufacturer
• Negative terminal identification
• Series number (119)
-55 °C to +125 °C
Endurance test at 150 °C
500 h
500 h
Endurance test at 125 °C
2000 h
4000 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 = 10 V to 63 V
500 h
UR = 100 V
100 h
Based on sectional
specification
IEC 60384-4 / EN 130300
Climatic category IEC 60068
55/125/56
SELECTION CHART FOR CR, UR, AND RELEVANT NOMINAL CASE SIZES (Ø D x L in mm)
UR (V)
CR
(μF)
10
16
25
40
63
100
4.7
-
-
-
-
-
6.5 x 18
10
-
-
-
-
6.5 x 18
8 x 18
22
-
-
6.5 x 18
-
8 x 18
10 x 18
-
6.5 x 18
-
8 x 18
10 x 18
10 x 25
-
-
-
-
-
10 x 30
12.5 x 30
47
68
-
-
-
-
10 x 30
100
6.5 x 18
8 x 18
10 x 18
10 x 25
10 x 30
15 x 30
150
-
-
-
12.5 x 30
15 x 30
15 x 30
Revision: 26-Apr-16
Document Number: 28335
1
For technical questions, contact: [email protected]
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
119 AHT-DIN
www.vishay.com
Vishay BCcomponents
SELECTION CHART FOR CR, UR, AND RELEVANT NOMINAL CASE SIZES (Ø D x L in mm)
UR (V)
CR
(μF)
220
10
16
25
40
63
100
10 x 18
10 x 25
10 x 25
12.5 x 30
15 x 30
18 x 30
-
-
12.5 x 30
-
-
-
-
12.5 x 30
12.5 x 30
15 x 30
18 x 30
18 x 38
10 x 25
12.5 x 30
12.5 x 30
15 x 30
18 x 38
21 x 38
-
330
470
12.5 x 30
-
-
-
-
680
12.5 x 30
15 x 30
18 x 30
18 x 30
21 x 38
-
1000
15 x 30
15 x 30
18 x 30
18 x 38
21 x 38
-
1500
18 x 30
18 x 30
18 x 38
21 x 38
-
-
2200
18 x 30
18 x 38
21 x 38
21 x 38
-
-
3300
18 x 38
21 x 38
-
-
-
-
4700
21 x 38
21 x 38
-
-
-
-
DIMENSIONS in millimeters AND AVAILABLE FORMS
I
73 ± 1.6
ØD
L
33 ± 1
L
Ød
Ød
ØD
F
F
Form BR: Taped on reel
Case Ø D x L = 6.5 mm x 18 mm to 15 mm x 30 mm
Form AA: Axial in box
Case Ø D x L = 10 mm x 30 mm to 21 mm x 38 mm
Form BA: Taped in box (ammopack)
Case Ø D x L = 6.5 mm x 18 mm to 10 mm x 25 mm
Fig. 2 - Forms BA and BR
Fig. 3 - Form AA
Table 1
AXIAL; DIMENSIONS in millimeters, MASS, AND PACKAGING QUANTITIES
AXIAL FORM AA, BA, AND BR
NOMINAL
CASE SIZE
ØDxL
CASE
CODE
Ød
I
Ø Dmax.
Lmax.
Fmin.
MASS
(g)
6.5 x 18
4
0.8
-
6.9
18.5
25
8 x 18
5
0.8
-
8.5
18.5
25
10 x 18
6
0.8
-
10.5
18.5
25
10 x 25
7
0.8
-
10.5
25.5
30
10 x 30
00
0.8
55 ± 1
10.5
30.5
35
PACKAGING QUANTITIES
FORM
AA
FORM
BA
FORM
BR
 1.3
-
1000
1000
 1.7
-
500
500
 2.5
-
500
500
 3.3
-
500
500
 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
 19.0
125
-
-
21 x 38
05
0.8
34 ± 1
21.5
39.5
44
 24.0
100
-
-
Note
• For detailed tape dimensions please see www.vishay.com/doc?28361
Revision: 26-Apr-16
Document Number: 28335
2
For technical questions, contact: [email protected]
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
119 AHT-DIN
www.vishay.com
Vishay BCcomponents
D
120 °C
(3 x)
3.6 + 0.2
- 0.2
D3
90° ± 2°
(3 x)
-
L
1.05 + 0.03 (3 x)
- 0.1
1.3 + 0
(3 x)
- 0.05
d2
1.3 + 0.1 (3 x)
0
+ 1.0
1 - 0.5
Mounting holes
Ø d1
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 D2
Fig. 4 - Mounting hole diagram and outline; form MR: with mounting ring and pins
Table 2
MOUNTING RING; DIMENSIONS in millimeters, MASS, AND PACKAGING QUANTITIES
NOMINAL
CASE SIZE
ØDxL
CASE
CODE
MOUNTING RING: FORM MR
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
18 x 30
03
0.8
1.0 + 0.4
18.5
19.5
18 x 38
04
0.8
1.0 + 0.4
18.5
21 x 38
05
0.8
1.0 + 0.4
21.5
MASS
(g)
PACKAGING
QUANTITIES
33
 8.6
200
18.5 ± 0.2
33
 11.5
240
19.5
18.5 ± 0.2
42
 14.0
100
22.5
21.5 ± 0.2
42
 19.2
100
ORDERING EXAMPLE
ELECTRICAL DATA
Electrolytic capacitor 119 series
SYMBOL
DESCRIPTION
CR
Rated capacitance at 100 Hz, tolerance -10 %/+50 %
Nominal case size: Ø 12.5 mm x 30 mm; form BR
IR
Rated RMS ripple current at 100 Hz, 125 °C
IL1
Max. leakage current after 1 min at UR
Ordering code: MAL211925471E3
Former 12NC: 2222 119 25471
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
470 μF/16 V; -10 %/+50 %
Max. impedance at 10 kHz
Note
• Unless otherwise specified, all electrical values in Table 3 apply
at Tamb = 20 °C, P = 86 kPa to 106 kPa, RH = 45 % to 75 %.
Revision: 26-Apr-16
Document Number: 28335
3
For technical questions, contact: [email protected]
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
119 AHT-DIN
www.vishay.com
Vishay BCcomponents
Table 3
ELECTRICAL DATA AND ORDERING INFORMATION
UR
(V)
10
16
25
40
NOMINAL
IR
IL1
IL5
ESR
CR
CASE SIZE CASE 100 Hz
tan 
100 Hz
1 min 5 min
100 Hz
ØDxL
CODE 125 °C
100 Hz
(μF)
(μA)
(μa)
()
(mA)
(mm)
Z
10 kHz
()
ORDERING CODE MAL2119.......
IN BOX
FORM AA
TAPED
TAPED
MOUNTING
ON REEL
IN BOX
RING
FORM BR FORM BA FORM MR
100
6.5 x 18
4
130
10
6
0.20
3.50
2.20
-
24101E3
34101E3
-
220
10 x 18
6
240
17
8.4
0.18
1.30
1.00
-
24221E3
34221E3
-
470
10 x 25
7
380
32
13
0.18
0.61
0.49
-
90501E3
90502E3
-
470
12.5 x 30
01
550
32
13
0.16
0.54
0.38
14471E3
24471E3
-
-
680
12.5 x 30
01
640
45
18
0.20
0.47
0.38
14681E3
24681E3
-
-
1000
15 x 30
02
830
64
24
0.20
0.32
0.24
14102E3
24102E3
-
44102E3
1500
18 x 30
03
1100
94
34
0.22
0.23
0.17
14152E3
-
-
44152E3
2200
18 x 30
03
1190
136
48
0.26
0.19
0.17
14222E3
-
-
44222E3
3300
18 x 38
04
1550
202
70
0.27
0.13
0.10
14332E3
-
-
44332E3
4700
21 x 38
05
1700
286
90
0.30
0.10
0.09
14472E3
-
-
44472E3
47
6.5 x 18
4
110
10
5.5
0.13
4.40
2.20
-
25479E3
35479E3
-
100
8 x 18
5
170
14
7.2
0.13
2.10
1.30
-
25101E3
35101E3
-
220
10 x 25
7
300
25
11
0.13
0.94
0.55
-
25221E3
35221E3
-
330
12.5 x 30
01
560
36
15
0.13
0.63
0.38
15331E3
25331E3
-
-
470
12.5 x 30
01
570
50
19
0.15
0.51
0.38
15471E3
25471E3
-
-
680
15 x 30
02
750
69
26
0.15
0.35
0.24
15681E3
25681E3
-
45681E3
1000
15 x 30
02
850
100
36
0.19
0.30
0.24
15102E3
25102E3
-
45102E3
1500
18 x 30
03
1120
148
52
0.20
0.21
0.17
15152E3
-
-
45152E3
2200
18 x 38
04
1440
215
74
0.20
0.14
0.10
15222E3
-
-
45222E3
3300
21 x 38
05
1650
321
110
0.22
0.11
0.09
15332E3
-
-
45332E3
4700
21 x 38
05
1710
455
154
0.28
0.09
0.09
15472E3
-
-
45472E3
22
6.5 x 18
4
85
10
5.1
0.10
7.20
3.20
-
26229E3
36229E3
-
100
10 x 18
6
210
19
9
0.10
1.60
1.00
-
26101E3
36101E3
-
220
10 x 25
7
350
37
15
0.10
0.72
0.58
-
90503E3
90504E3
-
220
12.5 x 30
01
500
37
15
0.09
0.65
0.38
16221E3
26221E3
-
-
330
12.5 x 30
01
580
54
21
0.11
0.53
0.38
16331E3
26331E3
-
-
470
12.5 x 30
01
630
75
28
0.13
0.44
0.38
16471E3
26471E3
-
-
680
18 x 30
03
990
106
38
0.13
0.30
0.17
16681E3
-
-
46681E3
1000
18 x 30
03
1090
154
54
0.13
0.21
0.17
16102E3
-
-
46102E3
1500
18 x 38
04
1420
229
79
0.13
0.14
0.10
16152E3
-
-
46152E3
2200
21 x 38
05
1550
334
114
0.13
0.11
0.09
16222E3
-
-
46222E3
47
8 x 18
5
150
15
7.8
0.08
2.70
1.50
-
27479E3
37479E3
-
100
10 x 25
7
260
28
12
0.08
1.30
0.70
-
27101E3
37101E3
-
150
12.5 x 30
01
440
40
16
0.08
0.85
0.51
17151E3
27151E3
-
-
220
12.5 x 30
01
500
57
22
0.09
0.65
0.48
17221E3
27221E3
-
-
330
15 x 30
02
630
83
30
0.09
0.43
0.37
17331E3
27331E3
-
47331E3
470
15 x 30
02
720
117
42
0.12
0.41
0.37
17471E3
27471E3
-
47471E3
680
18 x 30
03
970
167
58
0.12
0.28
0.22
17681E3
-
-
47681E3
1000
18 x 38
04
1250
244
84
0.12
0.19
0.14
17102E3
-
-
47102E3
1500
21 x 38
05
1410
364
124
0.14
0.15
0.12
17152E3
-
-
47152E3
2200
21 x 38
05
1550
532
180
0.18
0.13
0.11
17222E3
-
-
47222E3
Revision: 26-Apr-16
Document Number: 28335
4
For technical questions, contact: [email protected]
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
119 AHT-DIN
www.vishay.com
Vishay BCcomponents
ELECTRICAL DATA AND ORDERING INFORMATION
UR
(V)
NOMINAL
IR
IL1
IL5
ESR
CR
CASE SIZE CASE 100 Hz
tan 
100 Hz
1 min 5 min
100 Hz
ØDxL
CODE 125 °C
100 Hz
(μF)
(μA)
(μa)
()
(mA)
(mm)
10
63
100
6.5 x 18
4
68
20
5.3
0.07
11.0
ORDERING CODE MAL2119.......
Z
10 kHz
()
IN BOX
FORM AA
5.60
-
TAPED
TAPED
MOUNTING
ON REEL
IN BOX
RING
FORM BR FORM BA FORM MR
28109E3
38109E3
-
22
8 x 18
5
110
20
6.7
0.07
5.10
2.80
-
28229E3
38229E3
-
47
10 x 18
6
180
22
9.9
0.07
2.40
1.30
-
28479E3
38479E3
-
68
10 x 25
7
230
30
13
0.07
1.60
1.00
-
90505E3
90506E3
-
68
10 x 30
00
300
30
13
0.07
1.60
0.92
18689E3
28689E3
-
-
100
10 x 30
00
360
42
17
0.08
1.30
0.75
18101E3
28101E3
-
-
150
15 x 30
02
560
61
23
0.08
0.85
0.37
18151E3
28151E3
-
48151E3
220
15 x 30
02
640
87
32
0.08
0.58
0.37
18221E3
28221E3
-
48221E3
330
18 x 30
03
880
129
46
0.09
0.43
0.23
18331E3
-
-
48331E3
470
18 x 38
04
1130
182
63
0.09
0.30
0.15
18471E3
-
-
48471E3
680
21 x 38
05
1290
261
90
0.09
0.21
0.12
18681E3
-
-
48681E3
1000
21 x 38
05
1430
382
130
0.10
0.16
0.11
18102E3
-
-
48102E3
4.7
6.5 x 18
4
44
20
10
0.08
27.00
10.0
-
29478E3
39478E3
-
10
8 x 18
5
70
20
10
0.08
13.00
6.00
-
29109E3
39109E3
-
22
10 x 18
6
112
20
10
0.08
5.80
3.50
-
29229E3
39229E3
-
47
10 x 25
7
178
32
13
0.08
2.70
2.00
-
90518E3
90519E3
-
47
10 x 30
00
240
32
13
0.08
2.70
2.00
19479E3
29479E3
-
-
68
12.5 x 30
01
330
45
18
0.08
1.90
1.20
19689E3
29689E3
-
-
100
15 x 30
02
440
64
24
0.09
1.40
0.96
19101E3
29101E3
-
49101E3
150
15 x 30
02
520
94
34
0.10
1.10
0.78
19151E3
29151E3
-
49151E3
220
18 x 30
03
710
136
48
0.10
0.72
0.55
19221E3
-
-
49221E3
330
18 x 38
04
920
202
70
0.10
0.48
0.37
19331E3
-
-
49331E3
470
21 x 38
05
1070
286
98
0.10
0.34
0.28
19471E3
-
-
49471E3
ADDITIONAL ELECTRICAL DATA
VALUE
PARAMETER
CONDITIONS
AXIAL
MOUNTING RING
Voltage
Us  1.15 x UR
Surge voltage
Urev  1 V
Reverse voltage
Current
After 1 min:
UR = 10 V to 40 V
IL1  0. 006 CR x UR + 4 μA, or 10 μA
(whichever is greater)
UR = 63 V to 100 V
IL1  0. 006 CR x UR + 4 μA, or 20 μA
(whichever is greater)
Leakage current
After 5 min:
Revision: 26-Apr-16
UR = 10 V to 63 V
IL5  0. 002 CR x UR + 4 μA
UR = 100 V
IL5  0. 002 CR x UR + 4 μA, or 10 μA
(whichever is greater)
Document Number: 28335
5
For technical questions, contact: [email protected]
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
119 AHT-DIN
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Vishay BCcomponents
ADDITIONAL ELECTRICAL DATA
VALUE
PARAMETER
CONDITIONS
AXIAL
MOUNTING RING
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
-
Inductance
Case Ø D x L mm:
Equivalent series inductance (ESL)
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
Table 4
UPRATING VALUES AT REDUCED AMBIENT TEMPERATURE
SYMBOL
CONDITIONS
UR
Tamb > 85 °C to 125 °C
10
16
25
VALUES
40
63
100
UNIT
UR2
Tamb  85 °C
16
25
40
63
100
125
V
Note
• For applications at ambient temperatures of  85 °C, the rated voltage (UR) may be raised to UR2.
CAPACITANCE (C)
1.1
1.2
C
C0
1.1
3
2
1
1.0
0.9
C
C0
1.0
5
1
0.9
1
2
3
0.8
4
5
1
0.7
0.8
2
Curve 1: 63 V to 100 V
Curve 2: 25 V; 40 V
Curve 3: 10 V; 16 V
0.7
0.6
3
- 60 - 40
0.6
0.5
- 20
0
20
C0 = Capacitance at 20 °C, 100 Hz
40
60
80
100
120 140 160
Tamb (°C)
Fig. 5 - Typical multiplier of capacitance
as a function of ambient temperature
Revision: 26-Apr-16
10
Curve 1: 63 V to 100 V
Curve 2: 40 V
Curve 3: 25 V
Curve 4: 16 V
Curve 5: 10 V
10 2
10 3
f (Hz)
10 4
C0 = Capacitance at 20 °C, 100 Hz
Fig. 6 - Typical multiplier of capacitance
as a function of ambient temperature
Document Number: 28335
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EQUIVALENT SERIES RESISTANCE (ESR)
102
102
ESR
ESR 0
Curve 1: 25 V to 100 V
Curve 2: 10 V; 16 V
2
1
ESR
ESR 0
Curve 1: 25 V to 100 V
Curve 2: 10 V; 16 V
2
1
10
10
1
1
1
1
2
2
10 -1
10 -1
- 100
- 50
0
50
100
- 100
150
Case Ø D x L = 6.5 mm x 18 mm to 15 mm x 30 mm
ESR0 = Typical at 20 °C, 100 Hz
- 50
Fig. 7 - Typical multiplier of ESR
as a function of ambient temperature
2.0
ESR
ESR 0
1.6
50
100
150
Fig. 8 - Typical multiplier of ESR
as a function of ambient temperature
1.4
ESR
ESR0
1.2
Curve 1: 63 V and 100 V
Curve 2: 25 V; 40 V
Curve 3: 10 V; 16 V
1
0
Case Ø D x L = 18 mm x 30 mm to 21 mm x 38 mm
ESR0 = Typical at 20 °C, 100 Hz
2
Curve 1: 10 V
Curve 2: 16 V; 25 V
Curve 3: 40 V to 100 V
3
2
1
1.0
3
1.2
0.8
1
2
3
0.6
0.8
3
2
1
0.4
0.4
0.2
0
0
10 2
10
10 3
10 4
f (Hz)
10 5
10 2
10
10 3
10 4
f (Hz)
10 5
Case Ø D x L = 10 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
Fig. 9 - Typical multiplier of ESR as a function of frequency
Fig. 10 - Typical multiplier of ESR as a function of frequency
IMPEDANCE (Z)
103
103
Curve 1: 22 µF
Curve 2: 47 µF
Curve 3: 100 µF
Z
(Ω)
102
Curve 1: 100 µF
Curve 2: 220 µF
Curve 3: 470 µF
Z
(Ω)
1
102
2
1
3
2
10
10
3
1
1
10-1
10-1
10
102
103
104
105
106 f (Hz) 107
Case Ø D x L = 8 mm x 18 mm
Fig. 11 - Typical impedance as a function of frequency
Revision: 26-Apr-16
10
102
103
Case Ø D x L = 8 mm x 18 mm
104
105
106 f (Hz) 107
Tamb (°C)
Fig. 12 - Typical impedance as a function of frequency
Document Number: 28335
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IMPEDANCE (Z)
103
103
Curve 1: 150 µF; 40 V
Curve 2: 220 µF; 40 V; 25 V
Curve 3: 330 µF; 25 V; 16 V
Curve 4: 470 µF; 25 V; 16 V; 10 V
Curve 5: 680 µF; 10 V
Z
(Ω)
102
102
1
2
3
4
5
10
Curve 1: 150 µF; 40 V
Curve 2: 220 µF; 40 V; 25 V
Curve 3: 330 µF; 25 V; 16 V
Curve 4: 470 µF; 25 V; 16 V; 10 V
Curve 5: 680 µF; 10 V
Z
(Ω)
1
2
3
4
5
10
1
1
10-1
10-1
102
10
103
104
105
Case Ø D x L = 12.5 mm x 30 mm
106 f (Hz) 107
102
10
103
104
105
Case Ø D x L = 18 mm x 30 mm
Tamb 40 °C
Fig. 13 - Typical impedance as a function of frequency
106 f (Hz) 107
Tamb 20 °C
Fig. 14 - Typical impedance as a function of frequency
103
102
Curve 1: 150 µF; 40 V
Curve 2: 220 µF; 40 V; 25 V
Curve 3: 330 µF; 25 V; 16 V
Curve 4: 470 µF; 25 V; 16 V; 10 V
Curve 5: 680 µF; 10 V
Z
(Ω)
102
1
10
2
3
4
5
1
10
Curve 1: 330 µF; 63 V
Curve 2: 680 µF; 40 V; 25 V
Curve 3: 1000 µF; 25 V
Curve 4: 1500 µF; 16 V; 10 V
Curve 5: 2200 µF; 10 V
Z
(Ω)
1
2
3
4
5
10-1
1
10-1
10-2
10
10
2
10
3
Case Ø D x L = 12.5 mm x 30 mm
4
10
5
10
6
10 f (Hz) 10
Tamb 20 °C
Fig. 15 - Typical impedance as a function of frequency
Revision: 26-Apr-16
7
10
102
103
Case Ø D x L = 18 mm x 30 mm
104
105
7
106 f (Hz) 10
Tamb 20 °C
Fig. 16 - Typical impedance as a function of frequency
Document Number: 28335
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Vishay BCcomponents
RIPPLE CURRENT AND USEFUL LIFE
MBC242
IA 4.3
IR
4.2
4.1
4.0
3.9
3.8
3.7
3.6
3.5
3.4
3.3
3.2
3.1
3.0
Lifetime multiplier
2.8
0
1.
5
1.
2.6
0
2.
0
3.
2.4
0
4.
0
6.
2.2
0
8.
2.0
12
30
60
1.4
1.2
1.0
0.8
0.5
0.0
0
20
(1)
0
40
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
1.6
0
10
(1)
20
1.8
IA = Actual ripple current at 100 Hz
IR = Rated ripple current at 100 Hz, 125 °C
40
50
60
70
80
90
100
110
120
130
Tamb (°C)
Fig. 17 - Multiplier of useful life as a function of ambient temperature and ripple current load
Table 5
MULTIPLIER OF RIPPLE CURRENT (IR) AS A FUNCTION OF FREQUENCY
IR MULTIPLIER
FREQUENCY
(Hz)
UR = 10 V AND 16 V
UR = 25 V AND 40 V
UR = 63 V TO 100 V
50
0.95
0.90
0.85
100
1.00
1.00
1.00
300
1.07
1.12
1.20
1000
1.12
1.20
1.30
3000
1.15
1.25
1.35
 10 000
1.20
1.30
1.40
Revision: 26-Apr-16
Document Number: 28335
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Table 6
TEST PROCEDURES AND REQUIREMENTS
TEST
NAME OF TEST
REFERENCE
PROCEDURE
(quick reference)
REQUIREMENTS
IEC 60384-4 /
EN 130300
subclause 4.13
Tamb = 125 °C; UR applied;
Case Ø D x L = 6.5 mm x 18 mm to
10 mm x 25 mm: 2000 h;
Case Ø D x L = 1 0 mm x 30 mm to 
2 1 mm x 38 mm: 4000 h
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
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 %
Shelf life
(storage at high
temperature)
IEC 60384-4 /
EN 130300
subclause 4.17
Tamb = 125 °C; no voltage applied;
UR = 10 V to 63 V: 500 h;
UR = 100 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 /
EN 130300
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
Endurance
Revision: 26-Apr-16
Document Number: 28335
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Revision: 02-Oct-12
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