222205046103 [VISHAY]
CAPACITOR, ALUMINUM ELECTROLYTIC, NON SOLID, POLARIZED, 25 V, 10000 uF, THROUGH HOLE MOUNT, RADIAL LEADED-5, ROHS COMPLIANT;型号: | 222205046103 |
厂家: | VISHAY |
描述: | CAPACITOR, ALUMINUM ELECTROLYTIC, NON SOLID, POLARIZED, 25 V, 10000 uF, THROUGH HOLE MOUNT, RADIAL LEADED-5, ROHS COMPLIANT 电容器 |
文件: | 总22页 (文件大小:132K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
BCcomponents
DATA SHEET
0 5 0 /0 5 2 P ED-P W
Alum inum e le ct rolyt ic ca pa cit ors
Powe r Eurodin Print e d Wiring
Product specification
2001 Nov 14
Supersedes data of 18th January 2000
File under BCcomponents, BC01
BCcomponents
Product specification
Alu m in u m e le ct r o ly t ic ca p a c it o r s
P o w e r Eu r o d in P r in t e d Wir in g
0 5 0 /0 5 2 P ED-P W
FEATURES
• Polarized aluminum electrolytic
capacitors, non-solid electrolyte
CCB066
• Large types, cylindrical aluminum
case, insulated with a blue sleeve
• Provided with keyed polarity
• 050 series also available in
solder-lug (SL) versions
• Very long useful life:
15 000 hours at 85 °C
• Low ESR, high ripple current
capability
• High resistance to shock and
vibration.
PW
PW
SL
APPLICATIONS
Fig.1 Component outlines.
• Computer, telecommunication and
industrial systems
• Smoothing and filtering
• Standard and switched mode power
supplies
051/053
PEC-PW
higher
CV/volume
162/163
PLL-PW
050/052
PED-PW
long life
105 °C
• Energy storage in pulse systems.
CCB035
QUICK REFERENCE DATA
DESCRIPTION
VALUE
050
052
Case size ( Dnom × Lnom in mm)
Rated capacitance range (E6 series), CR
Tolerance on CR
25 × 30 to 40 × 100
470 to 68000 µF
47 to 1000 µF
−10 to +30%
Rated voltage range, UR
10 to 100 V
250 to 400 V
Category temperature range
Endurance test at 85 °C
−40 to +85 °C
5 000 hours
15000 hours
250 000 hours
500 hours
Useful life at 85 °C
Useful life at 40 °C and 1.4 × IR applied
Shelf life at 0 V, 85 °C
Based on sectional specification
Climatic category IEC 60068
IEC 60384-4/EN130 300
40/085/56
2001 Nov 14
2
BCcomponents
Product specification
Alum inum e le ct rolyt ic ca pa cit ors
Powe r Eurodin Print e d Wiring
0 5 0 /0 5 2 PED-P W
Selection chart for CR, UR and relevant nominal case sizes ( D × L in mm) for 050 series
Preferred types in bold.
U
R (V)
CR
(µF)
10
16
25
40
63
100
470
−
−
−
−
−
25 × 30
680
1000
1500
−
−
−
−
25 × 40
−
−
−
−
25 × 30
30 × 40
−
−
−
−
−
25 × 30
−
25 × 30
25 × 40
35 × 40
25 × 40
30 × 40
35 × 50
2200
3300
4700
−
−
−
−
40 × 40
−
25 × 30
25 × 40
−
25 × 40
30 × 40
−
30 × 40
35 × 40
40 × 50
25 × 30
−
35 × 40
35 × 50
40 × 70
−
40 × 40
−
25 × 40
−
30 × 40
−
35 × 40
−
35 × 50
40 × 50
40 × 100
6800
10000
15000
22000
40 × 40
−
−
−
−
−
−
−
−
−
−
−
30 × 40
−
35 × 40
−
35 × 50
40 × 40
40 × 50
−
40 × 50
40 × 70
−
−
35 × 40
−
35 × 50
40 × 40
40 × 50
−
40 × 70
40 × 100
−
−
−
−
−
−
−
35 × 50
40 × 40
40 × 50
40 × 70
40 × 100
40 × 70
−
40 × 100
−
−
−
−
33000
47000
68000
40 × 70
40 × 100
−
40 × 100
−
−
Selection chart for CR, UR and relevant nominal case sizes ( D × L in mm) for 052 series
Preferred types in bold.
UR (V)
CR
(µF)
250
385
400
47
68
−
25 × 30
25 × 40
30 × 40
35 × 40
35 × 50
40 × 40
40 × 50
40 × 70
−
25 × 30
25 × 40
30 × 40
35 × 40
35 × 50
40 × 40
40 × 50
40 × 70
−
−
100
150
25 × 30
25 × 40
30 × 40
−
220
330
470
35 × 40
35 × 50
40 × 40
40 × 50
40 × 70
680
−
40 × 100
1000
−
−
2001 Nov 14
3
BCcomponents
Product specification
Alum inum e le ct rolyt ic ca pa cit ors
Powe r Eurodin Print e d Wiring
0 5 0 /0 5 2 PED-P W
MECHANICAL DATA AND PACKAGING QUANTITIES
2.5
D + 1 max.
2
5
10 0.1
1
L
L + 5 max.
1.3
(3x)
12.5
0.1
MGB266
5.1
±0.1
CCA975
Dimensions in mm; for L see Table 1.
Dimensions in mm.
1 = positive terminal; 5 = negative terminal.
Case D = 25 mm.
Case D = 25 mm.
Fig.3 Mounting hole diagram viewed
from component side.
Fig.2 Printed wiring pin version.
2.5
2
D + 1 max.
3
5
15 0.1
1
1.3
(4x)
L
L + 5 max.
7.5 0.1
MGB267
17.5 0.1
5.1
±0.1
CCA976
Dimensions in mm; for L see Table 1.
1 = positive terminal; 5 = negative terminal.
Case D = 30 mm.
Dimensions in mm.
Case D = 30 mm.
Fig.5 Mounting hole diagram viewed
from component side.
Fig.4 Printed wiring pin version.
2001 Nov 14
4
BCcomponents
Product specification
Alum inum e le ct rolyt ic ca pa cit ors
Powe r Eurodin Print e d Wiring
0 5 0 /0 5 2 PED-P W
2.5
2
3
D + 1 max.
5
15 0.1
1
1.3
(4x)
L
L + 5 max.
7.5 0.1
MGB268
17.5 0.1
5.1
±0.1
CCA977
Dimensions in mm; for L see Table 1.
1 = positive terminal; 5 = negative terminal.
Case D = 35 mm.
Dimensions in mm.
Case D = 35 mm.
Fig.7 Mounting hole diagram viewed
from component side.
Fig.6 Printed wiring pin version.
Table 1 PW versions; physical dimensions, mass and packaging information; see Figs 2, 4, 6 and 8
NOMINAL
CASE SIZE
D × L
CARDBOARD
BOX DIMENSIONS
l × w × h
Dmax
(mm)
Lmax
(mm)
MASS
(g)
PACKAGING QUANTITIES
(units per box)
(mm)
(mm)
25 × 30
25 × 40
30 × 40
35 × 40
35 × 50
40 × 40
40 × 50
40 × 70
40 × 100
26
26
31
36
36
41
41
41
41
35
45
≈24
≈28
100
100
100
50
290 × 280 × 50
290 × 280 × 60
340 × 330 × 60
390 × 198 × 60
390 × 198 × 70
440 × 223 × 60
440 × 223 × 70
440 × 223 × 90
440 × 223 × 120
45
≈38
45
≈51
55
≈66
50
45
≈78
50
55
≈82
50
75
≈110
≈176
50
105
50
2001 Nov 14
5
BCcomponents
Product specification
Alum inum e le ct rolyt ic ca pa cit ors
Powe r Eurodin Print e d Wiring
0 5 0 /0 5 2 PED-P W
2.5
D + 1 max.
3
1
5
2
4
20 0.1
1.3
(5x)
L
L + 5 max.
10 0.1
17.5 0.1
20 0.1
MGB269
5.1
±0.1
CCA978
Dimensions in mm; for L see Table 1.
1 = positive terminal; 5 = negative terminal.
Case D = 40 mm.
Dimensions in mm.
Case D = 40 mm.
Fig.9 Mounting hole diagram viewed
from component side.
Fig.8 Printed wiring pin version.
Mounting
When a number of capacitors are connected in a bank, they must not be closer together than 15 mm, when no derating of
ripple current and/or temperature is applied.
Pin numbers 2, 3 and 4 (if present) must be free from the electrical circuit.
2001 Nov 14
6
BCcomponents
Product specification
Alum inum e le ct rolyt ic ca pa cit ors
Powe r Eurodin Print e d Wiring
0 5 0 /0 5 2 PED-P W
0.8
5
1
D + 1 max.
L
L + 2 max.
10 ±1
T4 DIN 41497
10
CCA982
±0.5
Dimensions in mm; for L see Table 2.
1 = positive terminal; 5 = negative terminal.
See this handbook, section “Mounting Accessories”.
Fig.10 Solder-lug version (SL); only available in 050 series.
Table 2 SL versions (050 series only); physical dimensions, mass and packaging information; see Fig.10
NOMINAL
CASE SIZE
D × L
CARDBOARD BOX
Dmax
(mm)
Lmax
(mm)
MASS
(g)
PACKAGING QUANTITIES
(units per box)
DIMENSIONS
l × w × h
(mm)
(mm)
25 × 30
25 × 40
30 × 40
35 × 40
35 × 50
40 × 50
40 × 70
40 × 100
26
26
31
36
36
41
41
41
32
42
≈24
≈28
100
100
100
50
290 × 280 × 50
290 × 280 × 60
340 × 330 × 60
390 × 198 × 60
390 × 198 × 70
440 × 223 × 70
440 × 223 × 90
440 × 223 × 120
42
≈38
42
≈51
52
≈66
50
52
≈82
50
72
≈110
≈176
50
102
50
2001 Nov 14
7
BCcomponents
Product specification
Alum inum e le ct rolyt ic ca pa cit ors
Powe r Eurodin Print e d Wiring
0 5 0 /0 5 2 PED-P W
ELECTRICAL DATA AND ORDERING INFORMATION
Unless otherwise specified, all electrical values in Tables 3 and 4 apply at
Tamb = 20 °C, P = 86 to 106 kPa, RH = 45 to 75%.
Ordering example
Electrolytic capacitor 050 series
10000 µF/25 V; −10/+30%
SYMBOL
CR
DESCRIPTION
rated capacitance at 100 Hz
Nominal case size: 35 × 50 mm;
PW version
IR
rated RMS ripple current at 100 Hz, 85 °C or at 20 kHz, 70 °C
max. leakage current after 1 minute at UR
max. leakage current after 5 minutes at UR
max. equivalent series resistance at 100 Hz
max. impedance at 10 kHz
Catalogue number: 2222 050 56103.
IL1
IL5
ESR
Z
Table 3 Electrical data and ordering information for 050 series; preferred types in bold
NOMINAL
CASE SIZE 100 Hz 20 kHz
D × L
(mm)
IR
IR
CATALOGUE
NUMBER
(note 1)
2222 ... .....
CR
100 Hz
(µF)
IL1
1 min
(mA)
IL5
5 min
(mA)
ESR
Z
UR
(V)
100 Hz 10 kHz
(mΩ)
85 °C
(A)
70 °C
(A)
(mΩ)
10
16
25
4 700
6 800
25 × 30
25 × 40
30 × 40
35 × 40
35 × 50
40 × 40
40 × 50
40 × 70
40 × 100
25 × 30
25 × 40
30 × 40
35 × 40
35 × 50
40 × 40
40 × 50
40 × 70
40 × 100
25 × 30
25 × 40
30 × 40
35 × 40
35 × 50
40 × 40
40 × 50
40 × 70
40 × 100
2.4
3.2
3.8
4.1
5.0
4.2
5.0
6.8
9.2
2.4
3.1
3.7
4.1
5.0
4.2
5.0
6.7
9.1
2.3
3.1
3.7
4.1
5.0
4.2
5.0
6.8
9.2
4.6
6.1
0.28
0.41
0.60
0.90
1.32
1.32
1.98
2.82
4.08
0.32
0.45
0.65
0.96
1.44
1.44
2.12
3.17
4.51
0.33
0.49
0.70
1.02
1.50
1.50
2.25
3.30
4.95
0.10
0.14
0.20
0.30
0.44
0.44
0.66
0.94
1.36
0.11
0.15
0.22
0.32
0.48
0.48
0.71
1.06
1.51
0.11
0.17
0.24
0.34
0.50
0.50
0.75
1.10
1.65
74
51
39
35
27
36
29
20
15
75
52
40
36
28
36
29
20
15
78
53
42
37
28
36
29
20
15
50
37
29
26
21
27
22
17
14
50
37
30
27
21
27
22
17
14
52
38
31
28
21
27
22
17
14
050 54472
050 54682
050 54103
050 54153
050 54223
050 44223
050 54333
050 54473
050 54683
050 55332
050 55472
050 55682
050 55103
050 55153
050 45153
050 55223
050 55333
050 55473
050 56222
050 56332
050 56472
050 56682
050 56103
050 46103
050 56153
050 56223
050 56333
10 000
15 000
22 000
22 000
33 000
47 000
68 000
3 300
7.2
7.8
9.5
8.0
9.5
12.9
17.5
4.6
4 700
5.9
6 800
7.0
10 000
15 000
15 000
22 000
33 000
47 000
2 200
7.8
9.5
8.0
9.5
12.7
17.3
4.4
3 300
5.9
4 700
7.0
6 800
7.8
10 000
10 000
15 000
22 000
33 000
9.5
8.0
9.5
12.9
17.5
2001 Nov 14
8
BCcomponents
Product specification
Alum inum e le ct rolyt ic ca pa cit ors
Powe r Eurodin Print e d Wiring
0 5 0 /0 5 2 PED-P W
NOMINAL
CASE SIZE 100 Hz 20 kHz
D × L
(mm)
IR
IR
CATALOGUE
NUMBER
(note 1)
2222 ... .....
CR
100 Hz
(µF)
IL1
1 min
(mA)
IL5
5 min
(mA)
ESR
Z
UR
(V)
100 Hz 10 kHz
(mΩ)
85 °C
(A)
70 °C
(A)
(mΩ)
40
1 500
2 200
3 300
4 700
6 800
6 800
10 000
15 000
22 000
1 000
1 500
2 200
3 300
4 700
4 700
6 800
10 000
15 000
470
25 × 30
25 × 40
30 × 40
35 × 40
35 × 50
40 × 40
40 × 50
40 × 70
40 × 100
25 × 30
25 × 40
30 × 40
35 × 40
35 × 50
40 × 40
40 × 50
40 × 70
40 × 100
25 × 30
25 × 40
30 × 40
35 × 40
35 × 50
40 × 40
40 × 50
40 × 70
40 × 100
2.0
2.7
3.3
3.8
4.7
4.1
4.9
6.6
9.0
1.8
2.5
3.1
3.6
4.4
3.8
4.7
6.2
8.5
1.4
1.9
2.5
3.1
3.9
3.6
4.6
6.2
8.2
3.8
5.1
0.36
0.53
0.79
1.13
1.64
1.64
2.40
3.60
5.28
0.38
0.57
0.83
1.25
1.78
1.78
2.57
3.78
5.67
0.28
0.41
0.60
0.90
1.32
1.32
1.98
2.82
4.08
0.12
0.18
0.27
0.38
0.55
0.55
0.80
1.20
1.76
0.13
0.19
0.28
0.42
0.60
0.60
0.86
1.26
1.89
0.10
0.14
0.20
0.30
0.44
0.44
0.66
0.94
1.36
112
76
57
48
36
45
35
25
18
122
83
57
48
36
45
35
25
18
247
170
123
94
69
81
59
42
32
68
51
41
35
27
33
27
20
16
74
54
41
35
27
33
27
20
16
172
116
88
71
55
65
48
36
28
050 57152
050 57222
050 57332
050 57472
050 57682
050 47682
050 57103
050 57153
050 57223
050 58102
050 58152
050 58222
050 58332
050 58472
050 48472
050 58682
050 58103
050 58153
050 59471
050 59681
050 59102
050 59152
050 59222
050 49222
050 59332
050 59472
050 59682
6.3
7.2
8.9
7.8
9.3
12.5
17.1
3.4
63
4.7
5.9
6.8
8.3
7.2
8.9
11.8
16.1
2.7
100
680
3.6
1 000
1 500
2 200
2 200
3 300
4 700
6 800
4.7
5.8
7.4
6.8
8.7
11.7
15.5
Note
1. Catalogue number applies to the PW versions; for SL versions (not preferred) available in 050 series only
(case size 40 × 40 mm not available) replace the 8th digit by ‘1’: SL versions: 2222 050 1....
2001 Nov 14
9
BCcomponents
Product specification
Alum inum e le ct rolyt ic ca pa cit ors
Powe r Eurodin Print e d Wiring
0 5 0 /0 5 2 PED-P W
Table 4 Electrical data and ordering information for 052 series; preferred types in bold
NOMINAL
CASE SIZE 100 Hz 20 kHz
D × L
(mm)
IR
IR
CR
100 Hz
(µF)
IL1
1 min
(mA)
IL5
5 min
(mA)
ESR
Z
CATALOGUE
NUMBER
2222 ... .....
UR
(V)
100 Hz 10 kHz
(mΩ)
85 °C
(A)
70 °C
(A)
(mΩ)
250
385
400
100
150
220
330
470
470
680
1000
47
25 × 30
25 × 40
30 × 40
35 × 40
35 × 50
40 × 40
40 × 50
40 × 70
25 × 30
25 × 40
30 × 40
35 × 40
35 × 50
40 × 40
40 × 50
40 × 70
25 × 30
25 × 40
30 × 40
35 × 40
35 × 50
40 × 40
40 × 50
40 × 70
40 × 100
0.6
1.15
1.5
0.15
0.23
0.33
0.49
0.70
0.70
1.02
1.50
0.11
0.16
0.23
0.34
0.50
0.50
0.75
1.06
0.11
0.16
0.24
0.36
0.52
0.52
0.79
1.12
1.63
0.05
0.08
0.11
0.17
0.24
0.24
0.34
0.50
0.04
0.06
0.08
0.11
0.17
0.17
0.25
0.36
0.04
0.06
0.08
0.12
0.17
0.17
0.26
0.37
0.54
1 800
1 100
750
1300
850
550
400
290
350
190
140
1550
1100
950
635
430
430
300
215
2125
1470
1000
665
450
450
315
225
155
052 53101
052 53151
052 53221
052 53331
052 53471
052 43471
052 53681
052 53102
052 58479
052 58689
052 58101
052 58151
052 58221
052 48221
052 58331
052 58471
052 56479
052 56689
052 56101
052 56151
052 56221
052 46221
052 56331
052 56471
052 56681
0.8
1.0
1.9
1.4
2.65
3.4
500
1.8
360
1.8
3.4
420
2.3
4.4
250
3.0
5.7
170
0.5
0.94
1.27
1.59
2.14
2.8
2 370
1 640
1 275
850
68
0.67
0.84
1.13
1.48
1.48
1.97
2.7
100
150
220
220
330
470
47
580
2.8
580
3.73
5.11
0.89
1.29
1.59
2.14
2.67
2.67
3.52
4.81
6.75
385
270
0.47
0.63
0.84
1.13
1.41
1.41
1.86
2.54
3.56
2 700
1 875
1 275
850
68
100
150
220
220
330
470
680
650
650
435
305
210
2001 Nov 14
10
BCcomponents
Product specification
Alum inum e le ct rolyt ic ca pa cit ors
Powe r Eurodin Print e d Wiring
0 5 0 /0 5 2 PED-P W
Additional electrical data
PARAMETER
CONDITIONS
VALUE
Voltage
Surge voltage
≤250 V versions
≥385 V versions
Us = 1.15 × UR
Us = 1.1 × UR
Urev ≤ 1 V
Reverse voltage
Current
Leakage current
after 1 minute at UR
after 5 minutes at UR
IL1 ≤ 0.006CR × UR + 4 µA
IL5 ≤ 0.002CR × UR + 4 µA
Inductance
Equivalent series inductance (ESL)
case D = 25 mm
max. 25 nH
max. 30 nH
max. 35 nH
case D = 30 and 35 mm
case D = 40 mm
Capacitance (C)
MGB285
1.2
C
1
C
0
2
1.1
1.0
0.9
0.8
0.7
0.6
3
4
4
3
2
1
Curve 1: UR = 10 V.
Curve 2: UR = 25 V.
60
40
20
0
20
40
60
T
80
o
Curve 3: UR = 63 V.
( C)
amb
Curve 4: UR = 100 V, 250 V and 385 V.
C0 = capacitance at 20 °C, 100 Hz.
Fig.11 Typical multiplier of capacitance as a function of ambient temperature.
2001 Nov 14
11
BCcomponents
Product specification
Alum inum e le ct rolyt ic ca pa cit ors
Powe r Eurodin Print e d Wiring
0 5 0 /0 5 2 PED-P W
Equivalent series resistance (ESR)
MGB286
4
10
ESR
(mΩ)
3
10
1
2
3
4
5
6
7
8
2
10
9
Curve 1: case D × L = 25 × 30 mm.
Curve 2: case D × L = 25 × 40 mm.
Curve 3: case D × L = 30 × 40 mm.
Curve 4: case D × L = 35 × 40 mm.
Curve 5: case D × L = 40 × 40 mm.
Curve 6: case D × L = 35 × 50 mm.
Curve 7: case D × L = 40 × 50 mm.
Curve 8: case D × L = 40 × 70 mm.
Curve 9: case D × L = 40 × 100 mm.
ESR at 100 Hz and UR = 10 V.
10
1
50
0
50
100
o
T
( C)
amb
Fig.12 Typical ESR as a function of temperature.
MGB287
4
10
ESR
(mΩ)
3
2
1
2
3
4
5
6
7
8
9
10
10
Curve 1: case D × L = 25 × 30 mm.
Curve 2: case D × L = 25 × 40 mm.
Curve 3: case D × L = 30 × 40 mm.
Curve 4: case D × L = 35 × 40 mm.
Curve 5: case D × L = 40 × 40 mm.
Curve 6: case D × L = 35 × 50 mm.
Curve 7: case D × L = 40 × 50 mm.
Curve 8: case D × L = 40 × 70 mm.
Curve 9: case D × L = 40 × 100 mm.
ESR at 100 Hz and UR = 63 V.
10
1
50
0
50
100
o
T
( C)
amb
Fig.13 Typical ESR as a function of temperature.
12
2001 Nov 14
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0 5 0 /0 5 2 PED-P W
MGB288
4
10
ESR
(mΩ)
3
10
1
2
3
4
5
6
7
8
2
10
9
Curve 1: case D × L = 25 × 30 mm.
10
Curve 2: case D × L = 25 × 40 mm.
Curve 3: case D × L = 30 × 40 mm.
Curve 4: case D × L = 35 × 40 mm.
Curve 5: case D × L = 40 × 40 mm.
Curve 6: case D × L = 35 × 50 mm.
1
Curve 7: case D × L = 40 × 50 mm.
Curve 8: case D × L = 40 × 70 mm.
Curve 9: case D × L = 40 × 100 mm.
ESR at 100 Hz and UR = 100 V.
50
0
50
100
o
T
( C)
amb
Fig.14 Typical ESR as a function of temperature.
MGB289
5
10
ESR
(mΩ)
4
10
3
10
1
2
3
4
5
6
7
2
8
10
Curve 1: case D × L = 25 × 30 mm.
Curve 2: case D × L = 25 × 40 mm.
Curve 3: case D × L = 30 × 40 mm.
Curve 4: case D × L = 35 × 40 mm.
Curve 5: case D × L = 40 × 40 mm.
Curve 6: case D × L = 35 × 50 mm.
Curve 7: case D × L = 40 × 50 mm.
Curve 8: case D × L = 40 × 70 mm.
ESR at 100 Hz and UR = 385 V.
10
50
0
50
100
o
T
( C)
amb
Fig.15 Typical ESR as a function of temperature.
13
2001 Nov 14
BCcomponents
Product specification
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Powe r Eurodin Print e d Wiring
0 5 0 /0 5 2 PED-P W
Impedance (Z)
MGB290
3
10
Z
(mΩ)
1
2
3
4
2
10
5
6
7
8
10
Curve 1: case D × L = 25 × 30 mm.
Curve 2: case D × L = 25 × 40 mm.
Curve 3: case D × L = 30 × 40 mm.
Curve 4: case D × L = 35 × 40 mm.
Curve 5: case D × L = 35 × 50 and 40 × 40 mm.
Curve 6: case D × L = 40 × 50 mm.
Curve 7: case D × L = 40 × 70 mm.
Curve 8: case D × L = 40 × 100 mm.
Z at 10 kHz and UR = 10 V.
1
50
0
50
100
o
T
( C)
amb
Fig.16 Typical impedance as a function of temperature.
MGB291
3
10
Z
(mΩ)
1
2
3
4
5
6
7
8
2
10
10
Curve 1: case D × L = 25 × 30 mm.
Curve 2: case D × L = 25 × 40 mm.
Curve 3: case D × L = 30 × 40 mm.
Curve 4: case D × L = 35 × 40 mm.
Curve 5: case D × L = 35 × 50 and 40 × 40 mm.
Curve 6: case D × L = 40 × 50 mm.
Curve 7: case D × L = 40 × 70 mm.
Curve 8: case D × L = 40 × 100 mm.
Z at 10 kHz and UR = 63 V.
1
50
0
50
100
o
T
( C)
amb
Fig.17 Typical impedance as a function of temperature.
2001 Nov 14
14
BCcomponents
Product specification
Alum inum e le ct rolyt ic ca pa cit ors
Powe r Eurodin Print e d Wiring
0 5 0 /0 5 2 PED-P W
MGB292
4
10
Z
(mΩ)
1
2
3
3
2
4
5
6
7
8
10
10
10
1
Curve 1: case D × L = 25 × 30 mm.
Curve 2: case D × L = 25 × 40 mm.
Curve 3: case D × L = 30 × 40 mm.
Curve 4: case D × L = 35 × 40 mm.
Curve 5: case D × L = 35 × 50 and 40 × 40 mm.
Curve 6: case D × L = 40 × 50 mm.
Curve 7: case D × L = 40 × 70 mm.
Curve 8: case D × L = 40 × 100 mm.
Z at 10 kHz and UR = 100 V.
50
0
50
100
o
T
( C)
amb
Fig.18 Typical impedance as a function of temperature.
MGB293
5
10
Z
(mΩ)
4
10
3
10
1
2
3
4
5
6
7
8
2
10
Curve 1: case D × L = 25 × 30 mm.
Curve 2: case D × L = 25 × 40 mm.
Curve 3: case D × L = 30 × 40 mm.
Curve 4: case D × L = 35 × 40 mm.
Curve 5: case D × L = 40 × 40 mm.
Curve 6: case D × L = 35 × 50 mm.
Curve 7: case D × L = 40 × 50 mm.
Curve 8: case D × L = 40 × 70 mm.
Z at 10 kHz and UR = 385 V.
10
50
0
50
100
o
T
( C)
amb
Fig.19 Typical impedance as a function of temperature.
15
2001 Nov 14
BCcomponents
Product specification
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Powe r Eurodin Print e d Wiring
0 5 0 /0 5 2 PED-P W
MGB294
2
10
1
Z
(Ω)
2
10
3
4
1
5
1
10
Curve 1: 47 µF, 385 V.
Curve 2: 100 µF, 250 V.
Curve 3: 470 µF, 100 V.
Curve 4: 1000 µF, 63 V.
Curve 5: 4700 µF, 10 V.
Case D × L= 25 × 30 mm.
Tamb = 20 °C.
2
10
2
3
4
5
6
7
10
10
10
10
10
10
10
f (Hz)
Fig.20 Typical impedance as a function of frequency.
MGB295
2
10
1
Z
(Ω)
2
10
3
4
1
5
1
10
Curve 1: 68 µF, 385 V.
Curve 2: 150 µF, 250 V.
Curve 3: 680 µF, 100 V.
Curve 4: 1500 µF, 63 V.
Curve 5: 6800 µF, 10 V.
Case D × L= 25 × 40 mm.
Tamb = 20 °C.
2
10
2
3
4
5
6
7
10
10
10
10
10
10
10
f (Hz)
Fig.21 Typical impedance as a function of frequency.
16
2001 Nov 14
BCcomponents
Product specification
Alum inum e le ct rolyt ic ca pa cit ors
Powe r Eurodin Print e d Wiring
0 5 0 /0 5 2 PED-P W
MGB296
2
10
Z
(Ω)
1
2
10
3
4
1
5
1
10
Curve 1: 100 µF, 385 V.
Curve 2: 220 µF, 250 V.
Curve 3: 1000 µF, 100 V.
Curve 4: 2200 µF, 63 V.
Curve 5: 10000 µF, 10 V.
Case D × L= 30 × 40 mm.
Tamb = 20 °C.
2
10
2
3
4
5
6
7
10
10
10
10
10
10
10
f (Hz)
Fig.22 Typical impedance as a function of frequency.
MGB297
2
10
Z
(Ω)
1
10
2
3
1
1
4
5
10
10
Curve 1: 150 µF, 385 V.
Curve 2: 330 µF, 250 V.
Curve 3: 1500 µF, 100 V.
Curve 4: 3300 µF, 63 V.
Curve 5: 15000 µF, 10 V.
Case D × L= 35 × 40 mm.
Tamb = 20 °C.
2
2
3
4
5
6
7
10
10
10
10
10
10
10
f (Hz)
Fig.23 Typical impedance as a function of frequency.
17
2001 Nov 14
BCcomponents
Product specification
Alum inum e le ct rolyt ic ca pa cit ors
Powe r Eurodin Print e d Wiring
0 5 0 /0 5 2 PED-P W
MGB298
2
10
Z
(Ω)
1
10
2
3
1
4
1
5
10
10
Curve 1: 220 µF, 385 V.
Curve 2: 470 µF, 250 V.
Curve 3: 2200 µF, 100 V.
Curve 4: 4700 µF, 63 V.
Curve 5: 22000 µF, 10 V.
Case D × L= 35 × 50 mm.
Tamb = 20 °C.
2
2
3
4
5
6
7
10
10
10
10
10
10
10
f (Hz)
Fig.24 Typical impedance as a function of frequency.
MGB299
2
10
Z
(Ω)
1
10
2
3
1
4
5
1
10
10
Curve 1: 220 µF, 385 V.
Curve 2: 470 µF, 250 V.
Curve 3: 2200 µF, 100 V.
Curve 4: 4700 µF, 63 V.
Curve 5: 22000 µF, 10 V.
Case D × L= 40 × 40 mm.
Tamb = 20 °C.
2
2
3
4
5
6
7
10
10
10
10
10
10
10
f (Hz)
Fig.25 Typical impedance as a function of frequency.
18
2001 Nov 14
BCcomponents
Product specification
Alum inum e le ct rolyt ic ca pa cit ors
Powe r Eurodin Print e d Wiring
0 5 0 /0 5 2 PED-P W
MGB300
2
10
Z
(Ω)
10
1
2
1
1
3
4
10
10
5
Curve 1: 330 µF, 385 V.
Curve 2: 680 µF, 250 V.
Curve 3: 3300 µF, 100 V.
Curve 4: 6800 µF, 63 V.
Curve 5: 33000 µF, 10 V.
Case D × L= 40 × 50 mm.
Tamb = 20 °C.
2
2
3
4
5
6
7
10
10
10
10
10
10
10
f (Hz)
Fig.26 Typical impedance as a function of frequency.
MGB301
2
10
Z
(Ω)
10
1
2
1
3
4
1
10
5
Curve 1: 470 µF, 385 V.
Curve 2: 1000 µF, 250 V.
Curve 3: 4700 µF, 100 V.
Curve 4: 10000 µF, 63 V.
Curve 5: 47000 µF, 10 V.
Case D × L= 40 × 70 mm.
Tamb = 20 °C.
2
10
2
3
4
5
6
7
10
10
10
10
10
10
10
f (Hz)
Fig.27 Typical impedance as a function of frequency.
19
2001 Nov 14
BCcomponents
Product specification
Alum inum e le ct rolyt ic ca pa cit ors
Powe r Eurodin Print e d Wiring
0 5 0 /0 5 2 PED-P W
MGB302
10
Z
(Ω)
1
1
2
1
10
3
2
10
Curve 1: 6800 µF, 100 V.
3
10
2
3
4
5
6
Curve 2: 15000 µF, 63 V.
Curve 3: 68000 µF, 10 V.
Case D × L= 40 × 100 mm.
Tamb = 20 °C.
7
10
10
10
10
10
10
10
f (Hz)
Fig.28 Typical impedance as a function of frequency.
MARKING
The capacitors are marked (where possible) with the following information:
• Rated capacitance (in µF)
• Tolerance on rated capacitance (Q for −10/+30%)
• Rated voltage (in V)
• Climatic category in accordance with “IEC 60 068”
• Date code (year and week) in accordance with “IEC 60062”
• Code for factory of origin
• Name of manufacturer
• Polarity of the terminals and ‘−’ sign to indicate the negative terminal, visible from the top and/or side of the capacitor
• Code number.
2001 Nov 14
20
BCcomponents
Product specification
Alum inum e le ct rolyt ic ca pa cit ors
Powe r Eurodin Print e d Wiring
0 5 0 /0 5 2 PED-P W
RIPPLE CURRENT AND USEFUL LIFE
Table 5 Multiplier of ripple current (IR) as a function of frequency
FREQUENCY (Hz)
IR MULTIPLIER
50
100
0.83
1.00
1.10
1.15
1.19
1.20
200
400
1 000
≥2 000
MGA453
2.4
2.3
I
A
I
R
2.2
2.1
2.0
1.9
1.8
1.7
life multiplier
1.6
1.5
1.4
1.3
1.2
1.1
(1)
1.0
0.8
0.5
0.0
40
50
60
70
80
T
90
o
C)
(
amb
IA = actual ripple current at 100 Hz.
IR = rated ripple current at 100 Hz and 85 °C.
(1) Useful life at 85 °C and IR applied: 15000 hours.
Fig.29 Multiplier of useful life as a function of ambient temperature and ripple current load.
2001 Nov 14
21
BCcomponents
Product specification
Alum inum e le ct rolyt ic ca pa cit ors
Powe r Eurodin Print e d Wiring
0 5 0 /0 5 2 PED-P W
SPECIFIC TESTS AND REQUIREMENTS
General tests and requirements are specified in data handbook BC01, section “Tests and Requirements”.
Table 6 Test procedures and requirements
TEST
PROCEDURE
(quick reference)
REQUIREMENTS
NAME OF TEST
REFERENCE
Endurance
IEC 60384-4/
EN130 300
subclause 4.13
Tamb = 85 °C; UR applied;
5 000 hours
UR ≤ 100 V; ∆C/C: ±15%
UR > 100 V; ∆C/C: ±10%
ESR ≤ 1.3 × spec. limit
Z ≤ 2 × spec. limit
IL5 ≤ spec. limit
Useful life
CECC 30 301
Tamb = 85 °C; UR and IR applied;
UR ≤ 100 V; ∆C/C: ±45%
subclause 1.8.1
15 000 hours
UR > 100 V; ∆C/C: ±30%
ESR ≤ 3 × spec. limit
Z ≤ 3 × spec. limit
IL5 ≤ spec. limit
no short or open circuit,
no visible damage
total failure percentage:
UR ≤ 100 V: ≤1%;
UR > 100 V: ≤3%
Shelf life
(storage at
high temperature) subclause 4.17
IEC 60384-4/
EN130 300
Tamb = 85 °C; no voltage applied;
500 hours
∆C/C: ±10%
ESR ≤ 1.2 × spec. limit
IL5 ≤ 2 × spec. limit
after test: UR to be applied for 30 minutes,
24 to 48 hours before measurement
2001 Nov 14
22
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