MINIATURE ALUMINUM ELECTROLYTIC CAPACITORS
NEW
BW
For Ballast, High Temperature
Series
Low ESR characteristic for 125 C high temperature
Suitable for compact energy saving lamp
Item
Operating temperature range
Rated voltage range
Leakage current max.
Capacitance tolerance
Dissipation factor max.
(at 120Hz, 20 C)
Low temperature characteristics
(Impedance ratio at 120Hz)
Characteristics
-40 ~ +125 C (160~250V), -25 ~ +125 C (350~450V)
160 ~ 450 V.DC
I = 0.03CV + 15 A (CV 1000)
I = 0.02CV + 25 A (after 5 minutes)
20% at 120Hz, 20 C
WV
tan
WV
Z-25 C/Z+20 C
Z-40 C/Z+20 C
160
0.15
160
3
4
200
0.15
200
3
4
250
0.15
250
3
4
350
0.20
350
4
-
400
0.20
400
6
-
450
0.20
450
6
-
Load life
After an application of DC bias voltage plus the rated AC ripple current for 3000 hours at 125 C
( 10 : 2000 hours). The measurement shall meet the following limits.
Less than specified value
Leakage current
Within 20% of initial value
Capacitance change
Less than 200% of specified value
tan
After 1000 hours no load test, leakage current, capacitance and tan are same as load life value.
The measurement shall be performed after exposure for 24 hours at room temperature after
application of DC rated voltage to the capacitors for 30 minutes.
Unit : mm
Shelf life (at 125 C)
DRAWING
Insulating sleeve
d 0.05 Tinned copper-ply wire
D 0.5 max.
D
P
d
L
Safety vent
max.
15 min.
4 min.
10
5.0
0.6
12.5
5.0
0.6
2.0
16
7.5
0.8
DIMENSIONS & MAXIMUM PERMISSIBLE RIPPLE CURRENT
F
1.0
2.2
3.3
4.7
10
22
33
47
10
10
10
12.5
12.5
12.5
16
20
20
25
90
140
280
400
520
10
10
10
12.5
12.5
12.5
16
20
20
20
100
160
280
400
520
10
10
10
12.5
12.5
16
12.5
16
20
20
25
25
90
100
170
300
450
580
10
10
10
12.5
16
12.5
16
16
20
20
80
110
130
220
350
WV
160V
200V
250V
350V
10
10
10
10
12.5
16
400V
12.5
12.5
16
20
20
25
60
90
120
130
250
400
10
10
10
10
12.5
450V
16
16
16
20
25
60
70
100
130
200
Ripple current (mA rms) at 125 C, 100kHz
Case size D L (mm)
FREQUENCY COEFFICIENT OF PERMISSIBLE RIPPLE CURRENT
Frequency(Hz)
Coefficient
60
0.4
120
0.5
300
0.6
1k
0.8
10k ~ 50k
0.9
100k
1.0