MINIATURE ALUMINUM ELECTROLYTIC CAPACITORS
NFC
Series
•
105℃ 2,000~5,000Hrs assured.
•Non-solvent proof.
•High Ripple, Long Life.
•For SMPS, IP-Board, Adaptor.
•RoHS
compliant.
•Halogen-free
capacitors are also available.
NZE
Long Life
NFC
SPECIFICATIONS
ltem
Rated Voltage Range
Operating Temperature Range
Capacitance Tolerance
160 ~ 400 V
DC
-40 ~+ 105℃
±20%(M)
Characteristics
420~ 500 V
DC
-25 ~ +105℃
(at 20℃, 120Hz)
After 5 minutes
I=0.03CV+15
I=0.02CV+25
c
・
v
Leakage Current
≦ 1000
> 1000
Time
After 1 minute
I=0.1CV+40
I=0.04CV+100
Where, I:Max. Leakage current(㎂) C:Nominal capacitance (㎌) V:Rated voltage (V
DC
) (at 20℃)
Dissipation Factor(Tanδ
)
Rated Voltage(V
DC
)
Tanδ
(Max.)
Rated Voltage(V
DC
)
Z(–25℃)/Z(+20℃)
Z(–40℃)/Z(+20℃)
160~250
0.20
350~500
0.24
(at 20℃, 120Hz)
Temperature Characteristics
(Max. Impedance ratio)
160~250
3
6
350~400
5
6
420~500
6
(at 120Hz)
The following specifications shall be satisfied when the capacitors are restored to 20℃ after the
rated voltage with the rated ripple current is applied (the peak voltage shall not exceed the
rated voltage) for 5,000 hours at 105℃. (where, 2,000 hours for
Ø
6.3)
Load Life
Capacitance change
Tan δ
Leakage current
≦ ±20% of the initial value
≦ 200% of the initial specified value
≦ The initial specified value
Shelf Life
The following specifications shall be satisfied when the capacitors are restored to 20℃ after
exposing them for 1,000 hours at 105℃ without voltage applied. The rated voltage shall be
applied to the capacitors for a minimum of 30 minutes, at least 24 hours and not more than 48
hours before the measurements.
Capacitance change
Tan δ
Leakage current
≦ ±20% of the initial value
≦ 200% of the initial specified value
≦ 500% of the initial specified value
Others
Satisfied characteristics KS C IEC 60384-4
NFC
DIMENSIONS OF NFC Series
Series
Unit
(mm)
Marking : DARK BROWN SLEEVE, SILVER INK
ØD 6.3 8
20
18
10 12.5 16
Ød 0.5 0.6 0.6 0.6 0.8 0.8 0.8
F
2.5 3.5 5.0 5.0 7.5 7.5 7.5
ØD′
ØD+0.5 max.
L′ L+1.5 max.
L+2.0 max.
※Ø8 x 50L, L′ L+2.0
≦
22
0.8
10.0
147