RNG
Aluminum Electrolytic Capacitors
CE04 Type
Features
•
105
℃
, 2000 hours assured, standard non-polarized series
•
Suitable for use in circuits which has a reversed or unknown
polarity
SPECIFICATIONS
Items
Operating Temperature Range
Capacitance Tolerance
Rated voltage
Time
≦100V
after 2 minutes
I = 0.03CV or 4 (μA)
whichever is greater
Performance
-40℃ ~ +105℃
±20%
>100V
after 5 minutes
CV≦1000
I=0.03CV+15(μA)
CV>1000
I=0.02CV+25(μA)
(at 120Hz, 20℃)
Leakage Current (at 20℃)
Leakage Current
Where, C= rated capacitance in
μF.
V = rated DC working voltage in V.
Dissipation Factor
(Tanδat 120Hz, 20℃)
Rated Voltage
Tanδ(max)
6.3
0.25
10
0.22
16
0.18
25
0.16
35
0.14
50
0.12
63
0.10
100
0.09
160
0.15
200
0.15
250
0.20
When the capacitance exceeds 1000μF, 0.02shall be added every 1000μF increase.
Impedance ratio shall not exceed the values given in the table below.
Low Temperature
Characteristics (at 120Hz)
Rated Voltage
Impedance
Ratio
Z(-25℃)/Z(+20℃)
Z(-40℃)/Z(+20℃)
6.3
4
8
10
3
6
16
3
6
25
2
4
35
2
4
50
2
3
63
2
3
100 160 200 250
2
3
2
4
2
4
3
6
Test Time
2000 Hrs
Within
±20%of
initial value
Less than 200% of specified value
Within specified value
Load Life Test
(After application of the rated
voltage at 105℃, the polarity
inverted every 250hrs.)
Capacitance Change
Dissipation Factor
Leakage Current
* The above specifications shall be satisfied when the capacitors are restored to 20℃after the rated voltage
applied for 2000 hrs at 105℃.
Test Time
Capacitance Change
500 Hrs
Within
±20%of
initial value
Less than 200% of specified value
Within specified value
Shelf Life Test
Dissipation Factor
Leakage Current
* The above specifications shall be satisfied when the capacitors are restored to 20℃after exposing them for
500 hrs at 105℃without voltage applied.
Other Standards
JIS C 5101-4
46
E.CAP.No1.2002/2003
Aluminum Electrolytic Capacitors
CE04 Type
DIAGRAM OF DIMENSIONS
RNG
Unit: mm
LEAD SPACING AND DIAMETER
φD
P
φd
α
β
5
2.0
0.5
1.0
0.5
6.3
2.5
8
3.5
10
5.0
0.6
1.5
13
5.0
16
7.5
0.8
18
7.5
DIMENSION & PERMISSIBLE RIPPLE CURRENT
V.DC
μF
0.1
0.22
0.33
0.47
1
2.2
3.3
4.7
10
22
33
47
100
220
330
470
1000
2200
Contents
Dimension:
φD
× L(mm)
Ripple Current: mA/rms at 120 Hz, 105°C
25V
(1E)
35V
(1V)
mA
φD×L
mA
6.3V
(0J)
φD×L
mA
10V
(1A)
φD×L
mA
16V
(1C)
φD×L
mA
50V
(1H)
φD×L
5 × 11
5 × 11
5 × 11
5 × 11
5 × 11
5 × 11
5 × 11
63V
(1J)
mA
4
5
6
7
10
15
18
22
37
63
77
105
190
340
460
590
100V
(2A)
mA
5
6
6
8
11
16
20
24
40
68
98
130
225
405
535
680
φD×L
φD×L
5 × 11
5 × 11
5 × 11
5 × 11
5 × 11
5 × 11
5 × 11
6.3 × 11
6.3 × 11
8 × 11.5
10 × 12.5
10 × 16
13 × 20
16 × 25
16 × 31.5
18 × 35.5
φD×L
5 × 11
5 × 11
5 × 11
5 × 11
5 × 11
6.3 × 11
6.3 × 11
6.3 × 11
8 × 11.5
10 × 16
10 × 20
13 × 20
16 × 25
16 × 35.5
mA
5
6
7
8
12
20
25
30
50
97
140
170
300
510
0R1
R22
R33
R47
010
2R2
3R3
4R7
100
220
330
470
101
221
331
471
102
222
V.DC
5 × 11
5 × 11
5 × 11
6.3 × 11
8 × 11.5
8 × 11.5
10 × 12.5
10 × 20
13 × 25
34
45
54
90
150
185
260
460
820
5 × 11
5 × 11
5 × 11
6.3 × 11
8 × 11.5
10 × 16
10 × 16
13 × 20
16 × 25
34
45
54
90
150
240
290
510
940
5 × 11
5 × 11
5 × 11
6.3 × 11
8 × 11.5
10 × 12.5
10 × 16
10 × 20
13 × 25
27
40
49
67
110
195
265
345
605
5 × 11
6.3 × 11
6.3 × 11
6.3 × 11
8 × 11.5
10 × 16
13 × 20
13 × 25
16 × 25
27
46
56
67
110
215
320
380
670
5 × 11
5 × 11
6.3 × 11.5
8 × 11.5
8 × 11.5
10 × 16
13 × 20
13 × 20
13 × 25
16 × 31.5
21
30
51
72
86
160
290
350
465
805
5 × 11
6.3 × 11
8 × 11.5
8 × 11.5
10 × 12.5
10 × 20
13 × 25
16 × 25
16 × 31.5
16 × 31.5 1070
18 × 35.5 1140
160V
(2C)
φD×L
5 × 11
6.3 × 11
8 × 11.5
8 × 11.5
10 × 12.5
10 × 16
13 × 20
13 × 20
16 × 25
200V
(2D)
mA
8
11
18
26
31
60
117
143
188
250V
(2E)
mA
9
12
22
30
37
66
117
158
μF
0.47
1
2.2
3.3
4.7
10
22
33
47
Contents
φD×L
6.3 × 11
8 × 11.5
8 × 11.5
10 × 12.5
10 × 16
10 × 20
13 × 20
13 × 25
φD×L
6.3 × 11
8 × 11.5
10 × 12.5
10 × 16
10 × 20
10 × 20
13 × 25
16 × 25
mA
10
13
26
37
50
79
138
169
R47
010
2R2
3R3
4R7
100
220
330
470
E.CAP.No1.2002/2003
47