
REA
Aluminum Electrolytic Capacitors
Features
•85℃
•
, 2000 ~ 3000 hours assured
Standard series for general purpose
SPECIFICATIONS
Items
Operating Temperature Range
Capacitance Tolerance
Leakage Current (at 20℃)
Dissipation Factor
(Tanδ at 120 Hz, 20℃)
Low Temperature
Characteristics (at 120Hz)
Load Life Test
Shelf Life Test
Ripple Current &
Frequency Multipliers
Ripple Current &
Temp erature Multipliers
Standards
CE04 Type
Performance
-40℃ ~ +85℃
±
20% (at 120Hz, 20℃)
Rated voltage ≦100V >100V
Time
Leakage Current
Where, C= rated capacitance in μF. V = rated DC working voltage in V.
Rated Voltage 6.3 10 16 25 35 50 63 100 160 200 250 350 400 450
Tanδ(max) 0.23 0.20 0.16 0.14 0.12 0.10 0.09 0.08 0.12 0.14 0.17 0.20 0.25 0.25
When the capacitance exceed s 1000μF, 0.02 shall be added every 1000μF increase.
Impedance ratio shall not exceed the values given i n the table below.
Rated Voltage 6.3 10 16 25 35 50 63 100 160 200 250 350 400 450
Z(-25℃)
Impedance
Ratio
* The above specifications shall be satisfied when t he capacitors are restor ed to 20℃after the rated
voltage applied for 2000/3000 hrs at 85℃.
* The above specifications shall be satisfied when the capacitors are restored to 20℃after
exposing them for 1000 hrs at 85℃ without voltage applied.
/Z(+20℃)
Z(-40℃)
/Z(+20℃)
Cap. (μF)
Under 100 0.70 1.00 1.30 1.40 1.50
100 to 1000 0.75 1.00 1.20 1.30 1.35
1000 up above 0.80 1.00 1.10 1.12 1.15
T emperature(℃) 70 85
after 2 minutes after 5 minutes
I = 0.01CV or 3 (μA)
whichever is greater
φD<
16 6 4 3 3 2 2 2 2
φD≧
16 8 6 4 4 3 3 3 3
φD<
16 10 8 6 6 4 3 3 3
φD≧
16 18 16 12 10 8 8 6 6
Test Time 2000 hrs (3000 hrs forφD≧10mm)
Capacitance Change With in ±20% of initial value
Dissipation Factor Less than 200% of specified value
Leakage Current Within specified value
Test Time 1000 hrs
Capacitance Change With in ±20% of initial value
Dissipation Factor Less than 200% of specified value
Leakage Current Within specified value
Freq. (Hz)
Multiplier 1.40 1.00
Satisfies Characteristic W of JIS C 5141
60
(50)
CV≦1000
I=0.03CV+15(μA)
120 500 1K
I=0.02CV+25(μA)
3 6 8 12 14 16
4 8 10 10 10 10
CV>1000
10K
up
10
E.CAP.No1.2001/2002

Aluminum Electrolytic Capacitors
CE04 Type
DIAGRAM OF DIMENSIONS
DIMENSION & PERMISSIB LE RIPPLE CURRENT
10000
22000
μμμμ
Case size in mark of “*” is smaller.
V. DC
Contents
μμμμF
4R7
4.7
100
10
220
22
330 5 × 11
33
470 5 × 11
47
101 5 × 11
100
221 6.3 × 11
220
331 8 × 11.5
330
471 8 × 11.5
470
102 8 × 11.5
1000
222 10 × 20
2200
332 13 × 20
3300
472 16 × 25
4700
682 16 × 25
6800
103 16 × 31.5
223 22 × 40
φ
φD×L
φφ
6.3V(0J) 10V(1A) 16V(1C) 25V(1E)
* φφφφD×L
mA
72
90
130
230 5 × 11 200
290 6.3 × 11 270
380 6.3 × 11 320
540
1000
1380 10 × 20 1185
1880 13 × 20 1545
2120 13 × 25 1880
2500 16 × 25 2330
3700 18 × 40 3320
mA
φ
φD×L
φφ
5 × 11
5 × 11
5 × 11
5 × 11
6.3 × 11
8 × 11.5
8 × 11.5
10 × 12.5
13 × 20
13 × 20
16 × 25
16 × 25
18 × 35.5
22 × 40
* φφφφD×L
mA
70
84
100
145
250 5 × 11 220
350 6.3 × 11 290
415 6.3 × 11 350
650
1240 10 × 20 1070
1420
1980 13 × 25 1780
2220
2880 16 × 35.5 2670
3790 18 × 40 3370
mA
φ
φD×L
φφ
5 × 11
5 × 11
5 × 11
5 × 11
6.3 × 11
8 × 11.5
8 × 11.5
10 × 12.5
10 × 16
13 × 20
16 × 25
16 × 31.5
16 × 31.5
18 × 40
22 × 40
V. DC
Contents
F
0R1
0.1
R22
0.22
R33
0.33
R47
0.47
010
1
2R2
2.2
3R3
3.3
4R7 5 × 11
4.7
100 5 × 11
10
220 5 × 11
22
330 6.3 × 11
33
470 6.3 × 11
47
101 8 × 11.5
100
221 10 × 12.5
220
331 10 × 16
330
471 10 × 16
470
102 13 × 20
1000
222 16 × 31.5
2200
332 18 × 35.5
3300
472 18 × 40
4700
φφφφ
5 × 11 1.5
35V(1V) 50V(1H) 63V(1J) 100V(2A)
D×L
*
D×L
φφφφ
mA
40
58
87
115 5 × 11 108
145 5 × 11 130
240 6.3 × 11 210
420 8 × 11.5 385
570 10 × 12.5 490
740
1145
1890 16 × 25 1785
2430 16 × 35.5 2275
2890 18 × 35.5 2700
mA
D×L
φφφφ
5 × 11
5 × 11
5 × 11
5 × 11
5 × 11
5 × 11
5 × 11
5 × 11
5 × 11
6.3 × 11
6.3 × 11
8 × 11.5
10 × 16
13 × 20
13 × 20
16 × 25
18 × 40
22 × 40
25 × 40
*
D×L
φφφφ
mA
3.5
5
7
15
29
35
42
65
95
136 5 × 11 125
165
260
490 10 × 12.5 455
635 10 × 16 585
860 10 × 20 755
1530 13 × 25 1340
2231 16 × 35.5 2075
2785 18 × 35.5 2500
3300 22 × 40 3155
mA
D×L
φφφφ
5 × 11
5 × 11
5 × 11
5 × 11
5 × 11
5 × 11
5 × 11
5 × 11
5 × 11
6.3 × 11
8 × 11.5
8 × 11.5
10 × 12.5
10 × 20
13 × 20
16 × 25
16 × 31.5
18 × 40
22 × 40
25 × 40
REA
Unit: mm
LEAD SPACING AND DIAMETER
φD
5 6.3 8 10 13 16 18 22 25
P 2.0 2.5 3.5 5.0 5.0 7.5 7.5 10 12.5
φd
0.5 0.6 0.8 1.0
α
β
1.0 1.5 2.0
0.5
Dimension: φD × L(mm)
Ripple Current: mA/rms at 120 Hz, 85°C
* φφφφD×L
mA
49
75
90
110
180 5 × 11 160
300 6.3 × 11 260
370
520 8 × 11.5 440
785
1295
1840 13 × 25 1655
2260 16 × 25 2090
2520
3080 18 × 35.5 2920
3900
*
D×L
φφφφ
mA
3
4.5
7.5
9.5
17
28
34
45
70
115
150 6.3 × 11 140
190 6.3 × 11 170
320
565 10 × 16 490
765 10 × 20 710
1050 13 × 20 900
1700 16 × 25 1560
2385
3000
3560
φ
mA
φD×L
φφ
5 × 11
5 × 11
5 × 11
5 × 11
5 × 11
6.3 × 11
8 × 11.5
10 × 12.5
10 × 16
13 × 20
16 × 25
16 × 31.5
18 × 35.5
18 × 35.5
22 × 40
* φφφφD×L
mA
31
54
80
97
115
190
320
470 8 × 11.5 440
620 10 × 12.5 545
1090 10 × 20 955
1660 13 × 25 1540
2070 16 × 25 1975
2520 16 × 31.5 2420
2880
3440 18 × 40 3080
mA
mA
D×L
φφφφ
5 × 11
5 × 11
5 × 11
5 × 11
5 × 11
5 × 11
5 × 11
5 × 11
6.3 × 11
8 × 11.5
10 × 16
10 × 16
10 × 20
13 × 25
16 × 31.5
18 × 35.5
22 × 40
*
D×L
φφφφ
mA
3
5.8
8.8
12
22
33
40
48
80
135 6.3 × 11 115
195 8 × 11.5 145
255 10 × 12.5 235
370
675 13 × 20 640
972 16 × 25 825
1135 16 × 31.5 1070
2600 18 × 40 2410
mA
E.CAP.No1.2001/2002
11

REA
DIMENSION & PERMISSIB LE RIPPLE CURRENT
μ
μF
μμ
Case size in mark of “*” is smaller.
Aluminum Electrolytic Capacitors
0.47
1
2.2
3.3
4.7
10
22
33
47
100
220
330
μ
μF
μμ
0.47
1
2.2
3.3
4.7
10
22
33
47
100
V. DC
Contents
R47
010
2R2
3R3
4R7
100
220
330
470
101
221
331
V. DC
Contents
R47
010
2R2
3R3
4R7
100
220
330
470
101
φ
φD×L
φφ
6.3 × 11 15 5 × 11 13 6.3 × 11 16 5 × 11 14 8 × 11.5 21
6.3 × 11 24 5 × 11 20 6.3 × 11 25 5 × 11 21 8 × 11.5 32
6.3 × 11 34 5 × 11 29 8 × 11.5 44 6.3 × 11 37 8 × 11.5 49 6.3 × 11 42
8 × 11.5 50 6.3 × 11 43 8 × 11.5 54 6.3 × 11 46 10 × 12.5 70 8 × 11.5 60
8 × 11.5 60 6.3 × 11 51 10 × 12.5 76 8 × 11.5 64 10 × 16 93 8 × 11.5 72
10 × 16 115 10 × 12.5 104 10 × 20 138 10 × 12.5 112 10 × 20 150 10 × 16 138
13 × 20 216 10 × 20 189 13 × 20 234 10 × 20 204 13 × 20 255 10 × 20 220
13 × 20 270 10 × 20 228 13 × 25 318 13 × 20 288 13 × 25 348 13 × 20 310
13 × 25 354 13 × 20 318 16 × 25 426 13 × 25 378 16 × 25 468 13 × 25 420
16 × 25 582 13 × 25 510 16 × 35.5 678 16 × 25 582 18 × 40 822 16 × 35.5 732
18 × 35.5 900 16 × 31. 5 792 18 × 40 1062 18 × 35.5 1002 22 × 40 1134
18 × 40 1010 18 × 35.5 984
φ
φD×L
φφ
8 × 11.5 21 6.3 × 11 18 10 × 12.5 26 8 × 11.5 21 10 × 12.5 26 8 × 11.5 21
8 × 11.5 32 6.3 × 11 27 10 × 12.5 38 8 × 11.5 32 10 × 12.5 38 8 × 11.5 32
10 × 16 63 8 × 11.5 49 10 × 16 63 10 × 12.5 57 10 × 16 63 10 × 12.5 57
10 × 16 78 10 × 12.5 70 10 × 20 86 10 × 16 78 10 × 20 86 10 × 16 78
10 × 20 103 10 × 16 93 13 × 20 120 10 × 20 103 13 × 20 120 10 × 20 103
13 × 20 174 10 × 20 150 13 × 25 192 13 × 20 174 13 × 25 192 13 × 20 174
13 × 25 282 13 × 20 255 16 × 25 318 13 × 25 280 16 × 25 354
16 × 31.5 438 16 × 25 390 16 × 35.5 426 16 × 25 325 18 × 35.5 426 16 × 31.5 378
16 × 35.5 500 16 × 31. 5 474 18 × 35.5 585 16 × 31.5 395 18 × 40 555 16 × 35.5 414
18 × 40 685 22 × 40 710 22 × 45 750
160V(2C) 200V(2D) 250V(2E)
* φφφφD×L
mA
mA
350V(2V) 400V(2G) 450V(2W)
* φφφφD×L
mA
mA
CE04 Type
φ
φD×L
φφ
φ
φD×L
φφ
mA
mA
* φφφφD×L
* φφφφD×L
Dimension: φD × L(mm)
Ripple Current: mA/rms at 120 Hz, 85°C
φ
mA
mA
φD×L
φφ
φ
φD×L
φφ
mA
mA
* φφφφD×L
* φφφφD×L
mA
mA
※Low-Profile Size
V. DC
μ
μF
μμ
Contents
22
33
47
68
471
102
222
332
472
682
103
V. DC
Contents
220
330
470
680
101
151
10000
μ
μF
μμ
470
1000
2200
3300
4700
6800
100
150
6.3V(0J) 10V(1A) 16V(1C) 25V(1E) 35V(1V) 50V(1H)
φ
φD×L
φφ
16 × 16 745
13 × 16 830 16 × 16 1010 16 × 20 1160
13 × 16 970 16 × 16 1160 16 × 20 1360 18 × 20 1560
16 × 16 1310 16 × 20 1460 18 × 20 1720 18 × 25 1970
16 × 16 1410 16 × 20 1560 18 × 20 1770 18 × 25 2070
16 × 20 1660 18 × 20 1870 18 × 25 2170
18 × 20 2020 18 × 25 2370
160V(2C) 200V(2D) 250V(2E)
φ
φD×L
φφ
13 × 16 280
16 × 16 350 16 × 16 350
16 × 16 420 16 × 20 420 16 × 20 420
16 × 20 490 18 × 20 490 18 × 20 490
18 × 20 590 18 × 25 590
18 × 25 710
mA
mA
φ
φD×L
φφ
φ
φD×L
φφ
mA
mA
φ
φD×L
φφ
φ
φD×L
φφ
mA
mA
φ
φD×L
φφ
mA
φ
φD×L
φφ
mA
φ
φD×L
φφ
mA
12
E.CAP.No1.2001/2002