MINIATURE ALUMINUM ELECTROLYTIC CAPACITORS
SAW
SAW
SERIES
UPGRADE
105℃ Overvoltgae Venting Specification, Miniaturized
◆FEATURES
・
Load Life : 105℃ 2000 hours.
・
This series has specification of vent operation in overvoltage situation.
Please consult us for any further details.
・
Smaller size than SXW series.
・
RoHS compliance.
◆DIMENSIONS
SLEEVE(PET)
(mm)
φd
◆SPECIFICATIONS
Items
Category Temperature Range
Characteristics
L+α MAX
15MIN
4MIN
φD+0.5MAX
−25∼+105℃
200∼450Vdc
±20%
(20℃,
120Hz)
φD 12.5 16
φd
F
α
0.6
5.0
18
0.8
7.5
1.5
Rated Voltage Range
Capacitance Tolerance
I=3
Leakage Current(MAX)
CV
(After 5 minutes application of rated voltage)
◆STANDARD SIZE
Rated
Voltage
(Vdc)
Capacitance
(μF)
Size
φD×L
(㎜)
Rated Ripple Current
(A r.m.s./105℃,120Hz)
I=
Leakage Current
(μA) C=
Capacitance
(μF) V=
Rated Voltage
(Vdc)
(tanδ)
Dissipation Factor(MAX)
0.15
(20℃,
120Hz)
200
After applying rated voltage with rated ripple current for 2000 hours at 105℃,
the capacitors shall meet the following requirements.
Endurance
Capacitance Change
Dissipation Factor
Leakage Current
Within ±20% of the initial value.
Not more than 200% of the specified value.
Not more than the specified value.
Low Temperature Stability
Impedance Ratio(MAX)
Rated Voltage
(Vdc)
Z
(−25℃) (20℃)
/Z
200
3
400, 450
8
(120Hz)
400
◆MULTIPLIER FOR RIPPLE CURRENT
Frequency
(Hz)
Coefficient
60
(50)
0.80
0.80
120
1.00
1.00
500
1.10
1.05
1k
1.14
1.10
10k≦
1.18
1.15
200Vdc
400, 450Vdc
◆OPTION
Code
PET Sleeve
450
EFC
◆PART NUMBER
□□□
Rated Voltage
120
150
180
180
220
220
270
18
22
27
27
33
39
39
47
47
56
56
68
68
82
82
100
120
39
47
56
68
68
82
16×20
18×20
16×30
18×25
16×30
18×25
18×30
12.5×20
12.5×25
12.5×25
16×20
16×20
16×25
18×20
16×25
18×20
16×30
18×25
16×35
18×25
16×40
18×30
18×35
18×40
18×25
18×25
18×35
18×31.5
18×35
18×40
0.49
0.53
0.66
0.62
0.71
0.71
0.81
0.14
0.16
0.18
0.19
0.21
0.25
0.25
0.28
0.28
0.30
0.30
0.35
0.33
0.40
0.38
0.44
0.50
0.25
0.32
0.45
0.45
0.47
0.51
SAW
Series
□□□□□
Capacitance
M
Capacitance Tolerance
□□□
Option
□□
Lead Forming
D×L
Case Size
F
±0.5