SMD Aluminum Electrolytic Capacitors
VE
Features
‧ 3 ~ 18φ, 85℃, 2,000 hours assured
‧ Chip type large capacitance capacitors
‧ Designed for surface mounting on high density PC board
‧ RoHS Compliance
Marking color: Black
SPECIFICATIONS
Items
Category Temperature Range
Capacitance Tolerance
Performance
-40℃ ~ +85℃
±20%
Rated Voltage
Time
Case size
Leakage Current (at 20℃)
(at 120Hz, 20℃)
6.3 ~ 100V
after 2 minutes
160 ~ 450V
after 5 minutes
3 ~ 10φ
12.5 ~ 18φ
12.5 ~ 18φ
I = 0.01CV or 3µA,
I = 0.03CV or 4µA,
Leakage Current
I = 0.04CV +100µA
whichever is greater
whichever is greater
Where, C = rated capacitance in µF
V = rated DC working voltage in V
Dissipation Factor
(Tanδ at 120Hz, 20℃)
Rated Voltage
4
6.3
10
16
25
35
50
63
100 160 ~ 250 400 ~ 450
0.42 0.28 0.24 0.20 0.14 0.12 0.10 0.10 0.10
3 ~ 10φ
0.38 0.34 0.30 0.26 0.22 0.18 0.14 0.10
0.20
0.25
12.5 ~ 16φ
When the capacitance exceeds 1,000µF, 0.02 shall be added every 1,000µF increase.
Impedance ratio shall not exceed the values given in the table below.
Rated Voltage
4.0 6.3 10
16
25
35
50
63 100 160 ~ 250 400 ~ 450
Z(-25℃) φD<12.5 7
4
4
3
2
2
2
2
2
Impedance /Z(+20℃) φD≧12.5 5
5
4
2
2
2
2
2
3
6
Z(-40℃) φD<12.5 15
Ratio
8
5
4
3
3
3
3
3
/Z(+20℃) φD≧12.5 14
12
10
5
4
3
3
3
6
10
Low Temperature
Characteristics (at 120Hz)
Test Time
2,000 Hrs
Capacitance Change
Within ±20% of initial value (4V: ±30%)
Dissipation Factor
Less than 200% of specified value (4V: ±300%)
Leakage Current
Within specified value
* The above specifications shall be satisfied when the capacitors are restored to 20℃after the rated voltage applied
for 2,000 hours at 85℃.
Test time: 1,000 hours; other items are the same as those for the Endurance.
The rated voltage shall be applied to the capacitors before the measurements for 160 ~ 450V (Refer to JIS C 5101-4
4.1).
Endurance
Shelf Life Test
Freq. (Hz)
Cap. ( μF)
Under 1,000
1,000 < C ≦ 4,700
Ripple Current &
Frequency Multipliers
50
120
1k
10k up
0.80
0.85
1.00
1.00
1.25
1.15
1.40
1.25
DIAGRAM OF DIMENSIONS
Fig. 1
φD±0.5
Vent≧8φ×10L
LEAD SPACING AND DIAMETER
B±0.2
W
L
0.3 Max
A± 0.2
0.4 max
P
C±0.2
Fig. 2
φD±0.5
Vent
B±0.2
W
0.4 Max
L
A±0.2
1.0 Max
P
C±0.2
2011 Version
φD
3
4
5
6.3
6.3
8
8
10
10
10
12.5
12.5
16
18
L
5.3 ± 0.2
5.3 ± 0.2
5.3 ± 0.2
5.3 ± 0.2
7.7 ± 0.3
10 ± 0.5
10.3 ± 0.5
7.7 ± 0.3
10 ± 0.5
10.3 ± 0.5
13.5 ± 0.5
16 ± 0.5
16.5 ± 0.5
16.5 ± 0.5
A
3.3
4.3
5.3
6.6
6.6
8.4
8.4
10.4
10.4
10.4
13.0
13.0
17.0
19.0
B
3.3
4.3
5.3
6.6
6.6
8.4
8.4
10.4
10.4
10.4
13.0
13.0
17.0
19.0
Unit: mm
P ± 0.2 Fig. No.
C
W
4.1 0.45 ~ 0.75 0.8
1
5.1
0.5 ~ 0.8
1.0
1
6.1
0.5 ~ 0.8
1.5
1
7.4
0.5 ~ 0.8
2.0
1
7.4
0.5 ~ 0.8
2.0
1
9.2
0.7 ~ 1.1
3.1
1
9.2
0.7 ~ 1.1
3.1
1
11.2
0.7 ~ 1.1
4.7
1
11.2
0.7 ~ 1.1
4.7
1
11.2
0.7 ~ 1.1
4.7
1
15.0
1.1 ~ 1.4
4.4
2
15.0
1.1 ~ 1.4
4.4
2
19.0
1.1 ~ 1.4
6.4
2
21.0
1.1 ~ 1.4
6.4
2
SMD Aluminum Electrolytic Capacitors
VE
MARKING
φD = 3 mm
Negative
polarity
φD = 4 ~ 6.3mm
Rated cap.
4.7
a16
Negative
polarity
a1
10
16V
Rated voltage
Date code
φD = 8 ~ 10 mm
Date code
Negative
polarity
Rated cap.
Rated voltage
φD ≧ 12.5mm
a1
VE
470
6.3V
V. DC
Contents
4V (0G)
φD×L
6.3V (0J)
mA
φD×L
mA
10V (1A)
φD×L
mA
a1
VE
2200
6.3V
Negative
polarity
Series name
Rated cap.
Rated voltage
Date
code
Series
name
Rated
cap.
Rated
voltage
Dimension: φD × L(mm)
Ripple Current: mA/rms at 120 Hz, 85°C
DIMENSION & PERMISSIBLE RIPPLE CURRENT
µF
Date code
16V (1C)
φD×L
mA
25V (1E)
φD×L
mA
35V (1V)
φD×L
mA
50V (1H)
63 (1J)
φD×L
mA
φD×L
mA
0.1
0R1
4×5.3
3
4×5.3
2
0.22
R22
4×5.3
5
4×5.3
3
0.33
R33
4×5.3
6
4×5.3
4
0.47
R47
4×5.3
7
4×5.3
5
1
010
4×5.3
10
4×5.3
8
2.2
2R2
4×5.3
14
4×5.3
12
3.3
3R3
4.7
4R7
10
100
22
33
47
68
220
330
470
3×5.3
3×5.3
4×5.3
4×5.3
16
31
34
16
3×5.3
14
3×5.3
14
4×5.3
17
5×5.3
22
3×5.3
14
3×5.3
14
4×5.3
26
4×5.3
26
4×5.3
20
5×5.3
25
4×5.3
26
4×5.3
26
5×5.3
44
5×5.3
44
5×5.3
35
6.3×5.3
40
30
44
47
59
55
67
75
98
5×5.3
6.3×5.3
6.3×5.3
6.3×7.7
47
59
67
85
6.3×5.3
6.3×7.7
50
65
8×10
139
6.3×7.7
75
8×10
139
6.3×7.7
98
6.3×7.7
8×10
75
190
10×10
200
26
5×5.3
44
4×5.3
5×5.3
4×5.3
31
4×5.3
5×5.3
31
55
5×5.3
55
4×5.3
5×5.3
5×5.3
6.3×5.3
34
55
58
89
6.3×5.3
75
5×5.3
6.3×5.3
55
75
5×5.3
6.3×5.3
5×5.3
6.3×5.3
6.3×5.3
6.3×7.7
5×5.3
6.3×5.3
6.3×5.3
6.3×7.7
58
89
89
109
6.3×5.3
89
6.3×7.7
109
6.3×7.7
109
8×10
190
10×10
226
6.3×5.3
6.3×7.7
89
109
6.3×7.7
109
8×10
252
8×10
190
10×10
226
6.3×7.7
8×10
8×10
10×7.7
124
270
290
290
8×10
10×7.7
270
270
10×7.7
8×10
10×10
252
270
370
10×10
320
12.5×13.5
500
10×10
400
10×10.3
400
12.5×13.5
600
12.5×16
600
10×10
400
10×10
400
12.5×13.5
750
12.5×16
740
16×16.5
850
10×10
410
12.5×13.5
680
12.5×13.5
680
16×16.5
1,000
18×16.5
1,100
18×16.5
1,350
4×5.3
680
5×5.3
58
100
101
5×5.3
6.3×5.3
58
89
6.3×5.3
89
150
151
220
221
6.3×5.3
6.3×7.7
89
124
6.3×5.3
6.3×7.7
89
124
6.3×7.7
8×10
124
270
330
331
6.3×7.7
124
6.3×7.7
124
8×10
290
470
471
8×10
290
8×10
290
680
681
10×7.7
290
10×7.7
10×10
10×10
290
400
410
1,000
102
10×10
430
10×10
430
12.5×13.5
750
12.5×13.5
750
16×16.5
1,100
2,200
222
12.5×13.5
890
12.5×13.5
890
16×16.5
1,100
16×16.5
1100
18×16.5
1,450
3,300
332
12.5×16
1,000
16×16.5
1,300
16×16.5
1,300
18×16.5
1,450
4,700
472
16×16.5
1,400
16×16.5
1,400
18×16.5
1,600
6,800
682
18×16.5
1,700
18×16.5
1,700
V. DC
µF
Contents
100V (2A)
φD×L
mA
160V (2C)
φD×L
4.7
4R7
10
100
8×10
90
22
220
8×10
90
33
330
10×10
120
12.5×13.5
47
470
10×10
120
mA
200V (2D)
φD×L
mA
250V (2E)
φD×L
mA
400V (2G)
450V (2W)
φD×L
mA
φD×L
mA
12.5×13.5
120
12.5×13.5
120
12.5×13.5
150
12.5×13.5
120
12.5×16
130
12.5×13.5
240
12.5×13.5
150
16×16.5
140
16×16.5
140
290
12.5×16
310
12.5×16
240
16×16.5
140
18×16.5
180
12.5×16
370
16×16.5
420
16×16.5
340
18×16.5
280
18×16.5
440
68
680
12.5×13.5
380
16×16.5
500
16×16.5
420
100
101
12.5×13.5
440
18×16.5
650
18×16.5
550
220
221
16×16.5
600
330
331
18×16.5
780
2011 Verison
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