ELM/EBM
Vishay Roederstein
Aluminum Capacitors
Axial Capacitor Style
FEATURES
•
Polarized aluminum electrolytic capacitors
•
•
•
•
High CU product
Miniature size
Charge/discharge proof
High ripple current capability
S
N
6 x 10 to 10 x 25
750
63
→
→
→
4.5 x 11
6 x 10
-
6.5 x 18
8 x 18
10 x 25
-
-
-
-
-
RoHS
COMPLIANT
Component outlines
DESCRIPTION
Nominal case size (Ø D x L)
Rated capacitance range C
R
Capacitance tolerance
Rated voltage range
Category temperature range
Endurance test at upper category temp.
Useful life at 105 °C and I
R
applied
Useful life at 85 °C and I
R
applied
Useful life at 40 °C and I
R
applied
Shelf life at (0 V, upper category temperature)
Failure rate (0.8 U
R
, 40 °C)
Based on sectional specification
UNIT
mm
µF
%
V
°C
h
h
h
h
h
D
4.5 x 10
QUICK REFERENCE DATA
E
•
General purpose, industrial electronics, audio/video
systems
•
Coupling, smoothing, filtering, buffering and timing
•
Portable and mobile units
•
Vibration and shock resistant
E
U
R
(V)
25
→
→
→
→
→
4.5 x 11
4.5 x 11
6 x 10
6.5 x 18
10 x 18
10 x 25
-
-
-
W
500
40
→
→
→
→
4.5 x 11
-
6 x 10
6.5 x 18
10 x 18
10 x 25
-
-
-
-
N
R
10
-9
/h
Climatic category IEC 68068
FO
Based on detailed specifications
similar to CECC 30301-044,
similar to DIN 45910 Part 126, without quality assessment
40/085/56 GPF
SELECTION CHART FOR C
R
, U
R
> 100 V AND RELEVANT NOMINAL CASE SIZES
(Ø D x L in mm)
T
C
R
(µF)
1.0
2.2
4.7
10
22
33
47
100
220
470
680
1000
1500
2200
6.3
10
→
→
→
ELM
→
→
→
4.5 x 11
6 x 10
6.5 x 18
8 x 18
10 x 18
10 x 25
-
16
→
→
→
→
→
→
→
→
→
8 x 18
10 x 18
10 x 25
-
-
S
50
→
→
→
→
→
-
→
→
EBM
-
-
-
-
-
LOW VOLTAGE
1.0 to 2200
± 20
6.3 to 100
- 40 to + 85
1000
2500
70 000
500
≤
130
IEC 60384-4/EN 130300
IG
APPLICATIONS
100
4.5 x 11
4.5 x 11
4.5 x 11
6 x 10
6.5 x 18
-
8 x 18
10 x 25
-
-
-
-
-
-
→
→
→
→
→
→
→
→
→
→
→
8 x 18
10 x 18
10 x 25
N
O
Document Number: 25112
Revision: 18-Jun-08
For technical questions, contact: aluminumcaps1@vishay.com
www.vishay.com
1
ELM/EBM
Vishay Roederstein
Aluminum Capacitors
Axial Capacitor Style
DIMENSIONS
in millimeters
AND AVAILABLE FORMS
B
Ød
L
+
N
ØD
AXIAL STYLE: DIMENSIONS
in millimeters,
MASS, PACKAGING QUANTITIES AND ORDERING CODE
NOMINAL
CASE
SIZE
ØDxL
4.5 x 11
6 x 10
6.5 x 18
8 x 18
10 x 18
10 x 25
0.6
0.6
0.8
0.8
0.8
0.8
5
6.3
6.9
8.5
10.5
10.5
11.0
10.5
18.5
18.5
18.5
25.0
15
15
25
25
25
30
63.5 ± 1.5
63.5 ± 1.5
73.0 ± 1.6
73.0 ± 1.6
73.0 ± 1.6
73.0 ± 1.6
MASS
APPROX.
g
PACKAGING, ENDING OF ORDERING CODE, QUANTITIES
Ød
B
D
Ø D
max.
L
max.
A
min.
TAPED ON REEL
PCS.
3000
1000
1000
500
500
500
E
S
CODE
..A0W
..A0W
..A0W
..A0W
..A0W
..A0W
IG
TAPED AMMO
CODE
..B0W
..B0W
..B0W
..B0W
..B0W
..B0W
PCS.
1000
1000
1000
500
500
500
L
A
N
Axial style capacitors are insulated.
R
E
ELECTRICAL DATA
SYMBOL
U
R
C
R
tan
δ
R
ESR
Z
I
R
T
a
rated voltage
FO
DESCRIPTION
rated capacitance at 100 Hz
max. dissipation factor at 100 Hz
W
0.5
0.7
1.3
1.7
2.5
3.3
ORDERING EXAMPLE
The following table gives the ordering number.
The 16
th
place of ordering code refers to packaging for axial
lead capacitors:
MALAEBM00GD422B...
MALAEBM00GD422BA0W
MALAEBM00GD422BB0W
EBM 2200 µF 6.3 V 10 x 25
A = taped on reel
B = taped ammo
max. impedance at 10 kHz
O
T
equivalent series resistance at 100 Hz, (calculated
from tan
δ
max
and C
R
)
rated alternating current (rms) at 100 Hz and upper
category temperature
ambient temperature
upper category temperature
relative humidity
ambient pressure
Please see table “Axial Styles” for available versions.
N
T
uc
P
RH
Note
Unless otherwise specified, all electrical values
T
a
= 20 °C, P = 80 to 106 kPa, RH = 45 to 75 %.
apply
at
www.vishay.com
2
For technical questions, contact: aluminumcaps1@vishay.com
Document Number: 25112
Revision: 18-Jun-08
S
Ød
ØD
ELM/EBM
Aluminum Capacitors
Axial Capacitor Style
ELECTRICAL DATA AND ORDERING INFORMATION
U
R
(V)
C
R
100 Hz
(µF)
1000
6.3
1500
2200
100
220
10
470
680
1000
1500
470
16
680
1000
33
47
25
100
220
470
680
22
47
40
100
220
470
10
22
63
47
100
220
1.0
2.2
4.7
100
10
22
47
100
NOMINAL
CASE SIZE
ØDxL
(mm)
8 x 18
10 x 18
10 x 25
4.5 x 11
6 x 10
6.5 x 18
8 x 18
10 x 18
10 x 25
8 x 18
10 x 18
10 x 25
4.5 x 11
4.5 x 11
6 x 10
6.5 x 18
10 x 18
10 x 25
4.5 x 11
6 x 10
6.5 x 18
10 x 18
10 x 25
4.5 x 11
6 x 10
8 x 18
6.5 x 18
10 x 25
tan
δ
100 Hz
MAX.
0.25
0.25
0.29
0.20
0.20
0.20
0.20
0.20
0.23
0.16
0.16
0.16
0.14
0.14
0.14
0.14
0.14
0.14
0.11
0.11
0.11
0.11
R
ESR
100 Hz
(Ω)
0.400
0.270
0.210
3.200
1.500
0.680
0.470
0.320
0.250
0.550
0.380
0.260
6.700
4.800
2.300
1.000
Z
10 kHz
MAX.
(Ω)
0.500
0.320
0.160
2.000
0.910
0.430
0.290
0.200
0.180
0.340
0.240
0.180
3.500
2.600
I
R
100 Hz
T
UC
(A)
0.44
0.56
0.71
0.10
0.16
0.31
0.40
CATALOG
NUMBER
MALA...
Vishay Roederstein
EBM00GL415BA0W
IG
0.55
S
U
rev
≤
1 V
0.69
0.38
0.50
0.66
0.07
0.08
0.15
0.25
0.45
0.56
0.06
E
D
1.200
0.550
0.260
0.180
3.200
1.500
0.700
0.320
0.160
5.500
2.500
1.200
0.550
0.250
90.000
41.000
19.000
9.000
4.100
1.900
0.900
U
R
, 300 s
W
0.480
0.330
E
8.000
3.800
0.11
0.19
0.33
0.52
0.05
0.09
0.15
0.25
0.43
0.01
0.02
0.03
0.07
0.10
0.16
0.30
N
1.800
0.800
0.370
13.000
5.800
2.700
1.300
0.600
130.000
58.000
27.000
13.000
5.800
2.700
1.300
0.11
0.08
0.08
0.08
R
FO
0.08
0.08
0.08
0.08
0.08
0.08
0.08
0.08
0.08
4.5 x 11
4.5 x 11
4.5 x 11
6 x 10
T
6.5 x 18
8 x 18
10 x 25
O
N
ADDITIONAL ELECTRICAL DATA
PARAMETER
Voltage
Surge voltage
Reverse voltage
U
R
≤
100 V
-
U
s
= 1.15 x U
R
CONDITIONS
VALUE
Current
Leakage current
U
R
≤
100 V
I
L
/µA
≤
0.002 x C
R
/µF x U
R
/V + 3
N
EBM00GD422BA0W
ELM00BA310CA0W
EBM00CK322CA0W
EBM00DL347CA0W
EBM00FL368CA0W
EBM00GL410CA0W
EBM00GD415CA0W
EBM00FL347DA0W
EBM00GL368DA0W
EBM00GD410DA0W
ELM00BA233EA0W
ELM00BA247EA0W
EBM00CK310EA0W
EBM00DL322EA0W
EBM00GL347EA0W
EBM00GD368EA0W
ELM00BA222GA0W
EBM00CK247GA0W
EBM00DL310GA0W
EBM00GL322GA0W
EBM00GD347GA0W
ELM00BA210JA0W
EBM00CK222JA0W
EBM00DL247JA0W
EBM00FL310JA0W
EBM00GD322JA0W
ELM00BA110LA0W
ELM00BA122LA0W
ELM00BA147LA0W
EBM00CK210LA0W
EBM00DL222LA0W
EBM00FL247LA0W
EBM00GD310LA0W
Document Number: 25112
Revision: 18-Jun-08
For technical questions, contact: aluminumcaps1@vishay.com
S
EBM00FL410BA0W
www.vishay.com
3
ELM/EBM
Vishay Roederstein
LOW TEMPERATURE BEHAVIOUR
Table for the calculation of the maximum 10 kHz impedance at low temperatures:
Tabular value
Z
(
10 kHz
) [ Ω ]
=
----------------------------------------
C
R
[
µF
]
Aluminum Capacitors
Axial Capacitor Style
6.3
2100
7600
10
1600
5700
16
1250
3500
25
680
1870
40
390
1150
50
375
N
63
240
650
80
2.0
2.0
1.9
1.8
1.6
1.4
1.2
1.0
85
90
95
0.87 0.64 0.47 0.34
0.72 0.53 0.39 0.29
combination
not
permitted
T
a
(°C)
- 25
- 40
RATED VOLTAGE (V)
1100
IG
LIFETIME TABLE
U
R
≤
100 V
INTERRELATION BETWEEN ALTERNATING CURRENT, AMBIENT TEMPERATURE AND LIFETIME
I/I
R
(FREQUENCY DEPENDENT)
FREQUENCY [Hz]
50
0
0.18
0.36
0.54
0.72
0.90
1.08
1.26
1.44
1.62
1.80
1.98
2.16
2.34
2.52
2.70
2.88
3.06
3.24
3.42
100
0
0.20
0.40
0.60
0.80
1.00
1.20
1.40
1.60
1.80
2.00
2.20
2.40
2.60
2.80
3.00
3.20
3.40
3.60
3.80
250
0
0.22
0.44
0.66
0.88
1.10
1.32
1.54
1.76
1.98
2.20
2.42
2.64
2.86
3.08
3.30
500
0
0.23
0.46
0.69
0.92
1.15
1.38
1.61
1.84
2.07
2.30
2.53
2.76
2.99
3.22
3.45
3.68
3.91
4.14
4.37
1000 > 2500
0
0.24
0.48
0.72
0.96
1.20
1.44
1.68
1.92
2.16
2.40
2.64
2.88
3.12
3.36
3.60
3.84
4.08
4.32
4.56
0
0.25
0.50
0.75
1.00
1.25
1.50
1.75
2.00
2.25
2.50
2.75
3.00
3.25
3.50
3.75
4.00
4.25
4.50
4.75
10 K
0
0.26
0.52
0.78
1.04
1.30
1.56
1.82
2.08
2.34
2.60
2.86
3.12
3.38
3.64
3.90
4.16
4.42
4.68
4.94
40
56
54
49
43
36
29
23
18
13
10
7.3
5.3
3.8
2.7
1.9
1.4
45
35
34
31
28
24
19
16
12
9.4
7.1
5.3
3.9
2.8
2.1
1.5
1.1
LIFETIME MULTIPLIER L (depending on I/I
R
and T
a
)
AMBIENT TEMPERATURE T
a
[°C]
60
9.7
9.4
8.8
8.0
7.0
6.0
5.0
4.1
3.3
2.6
2.0
1.6
1.2
65
6.4
6.3
5.9
5.4
4.8
4.1
3.5
2.9
2.3
1.9
1.5
1.2
70
4.3
4.2
4.0
3.7
3.3
2.9
2.4
2.0
1.7
1.4
1.1
75
3.0
2.9
2.7
2.5
2.3
2.0
1.7
1.5
1.2
1.0
100
105
W
50
55
23
15
D
E
1.42 1.00 0.71 0.51 0.37
1.40 0.98 0.70 0.50 0.36
1.33 0.94 0.67 0.48 0.35
1.24 0.88 0.63 0.45 0.33
1.13 0.80 0.58 0.42 0.31
1.00 0.72 0.52 0.38 0.28
0.88 0.63 0.46 0.34
0.75 0.55 0.40 0.29
E
22
14
13
12
10
8.8
7.3
5.9
4.7
3.6
2.8
2.1
1.6
1.2
20
18
16
13
11
R
N
8.5
6.6
5.1
3.8
2.9
2.1
1.6
1.1
FO
0.85 0.63 0.47 0.35
0.89 0.66 0.50 0.37 0.28
T
0.89 0.67 0.51 0.39 0.29
0.87 0.67 0.51 0.39 0.30
O
0.82 0.64 0.49 0.38 0.30
3.52
3.74
3.96
4.18
0.95 0.75 0.59 0.46 0.36 0.28
0.66 0.53 0.42 0.34
0.46 0.37
0.32
N
I
R
100 Hz alternating current [A] at upper category temperature T
UC
taken from data sheet
I
L
User current [A]
Lifetime multiplier
T
a
Ambient temperature of capacitor [°C]
Regard L as a function of ambient temperature (x-axis) and of current (y-axis); use the current-axis according to the frequency
S
In practical operation the lower limit of the series resistance and impedance is given by the ohmic part of the contact points and the foil resistance
values. Therefore it will not always be possible to achieve calculated values below 0.05
Ω.
0.80 0.59 0.43 0.32
www.vishay.com
4
For technical questions, contact: aluminumcaps1@vishay.com
Document Number: 25112
Revision: 18-Jun-08
S
100
200
500
ELM/EBM
Aluminum Capacitors
Axial Capacitor Style
Vishay Roederstein
TEST PROCEDURES AND REQUIREMENTS
TEST
NAME OF TEST
Endurance
REFERENCE
IEC 60384-4/
EN 130300
subclause 4.13
PROCEDURE
(quick reference)
T
A
= upper cat. temp.; U
R
applied
6.3 V
≤
U
R
≤
100 V: 1000 h
T
A
= 85 °C; U
R
applied
Useful life
CECC 30301
subclause 1.8.1
T
A
= 105 °C; U
R
and I
R
applied;
6.3 V
≤
U
R
≤
100 V
Cases 4.5 x 11: 500 h
Cases 6 x 10to 10 x 25: 750 h
T
A
= 85 °C; U
R
and I
R
applied
REQUIREMENTS
U
R
= 6.3 V: - 40 %
≤ ΔC/C ≤
25 %
U
R
> 6.3 V: - 30 %
≤ ΔC/C ≤
30 %
tan
δ ≤
1.5 x spec. limit
I
L
(300s)
≤
spec. limit
E
D
Shelf life
(storage at
high temperature)
IEC 60384-4/
EN130300
subclause 4.17
T
A
= upper cat. temp.; no voltage applied
6.3 V
≤
U
R
≤
100 V
Cases 4.5 x 11 to 10 x 25: 500 h
N
O
T
FO
R
N
E
W
After test: U
R
to be applied for 30 minutes
24 to 48 hours before measurement
S
I
L
(300s)
≤
spec. limit
No short circuit, no open circuit
Total failure percentage:
≤
1 %
U
R
= 6.3 V: - 40 %
≤ ΔC/C ≤
25 %
U
R
> 6.3 V: - 30 %
≤ ΔC/C ≤
30 %
tan
δ ≤
1.5 x spec. limit
Z
≤
3 x spec. limit
I
L
(300s)
≤
2 x spec. limit
IG
U
R
= 6.3 V:
- 50 %
≤ ΔC/C ≤
45 %
- 45 %
≤ ΔC/C ≤
45 %
U
R
> 6.3 V:
tan
δ ≤
3 x spec. limit
Z
≤
3 x spec. limit
N
Z
≤
3 x spec. limit
Document Number: 25112
Revision: 18-Jun-08
For technical questions, contact: aluminumcaps1@vishay.com
S
www.vishay.com
5