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ALUMINUM ELECTROLYTIC CAPACITORS

ALUMINUM ELECTROLYTIC CAPACITORS

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LARGE CAPACITANCE <strong>ALUMINUM</strong> <strong>ELECTROLYTIC</strong> <strong>CAPACITORS</strong> Long life snap-ins, 105C<br />

@Endurance with ripple current : 5,000 hours at 105C<br />

@Non solvent resistant type<br />

@RoHS Compliant<br />

?SPECIFICATIONS<br />

Category<br />

Temperature Range<br />

Rated Voltage Range<br />

Capacitance Tolerance<br />

Leakage Current<br />

Dissipation Factor<br />

(tane)<br />

Low Temperature<br />

Characteristics<br />

(Max. Impedance Ratio)<br />

Endurance<br />

Shelf Life<br />

Items<br />

-40 to +105C<br />

?DIMENSIONS [mm]<br />

10 to 100Vdc<br />

P20% (M)<br />

I=0.02CV or 3mA, whichever is smaller.<br />

Where, I : Max. leakage current (MA), C : Nominal capacitance (MF), V : Rated voltage (V)<br />

Rated voltage (Vdc)<br />

tanE (Max.)<br />

?PART NUMBERING SYSTEM<br />

10V<br />

0.60<br />

16V<br />

0.45<br />

25V<br />

0.30<br />

35V<br />

0.25<br />

50V<br />

0.20<br />

Characteristics<br />

63V<br />

0.15<br />

80 & 100V<br />

0.15<br />

Longer life<br />

(at 20C, 120Hz)<br />

(at 20C after 5 minutes)<br />

(at 20C, 120Hz)<br />

Capacitance change : Capacitance at the lowest operating temperature shall not be less than 70% of the 20C value.<br />

Rated voltage (Vdc) 10V 16V 25V 35V 50V 63V 80 & 100V<br />

Z(-25C)/Z(+20C) 4 4 3 3 2 2 2<br />

Z(-40C)/Z(+20C) 15 15 10 8 6 6 5<br />

(at 120Hz)<br />

The following specifications shall be satisfied when the capacitors are restored to 20C after subjected to DC voltage with rated ripple<br />

current is applied for 5,000 hours at 105C.<br />

Capacitance change [P25% of the initial value<br />

D.F. (tanE) [250% of the initial specified value<br />

Leakage current [The initial specified value<br />

The following specifications shall be satisfied when the capacitors are restored to 20C after exposing them for 500 hours at 105C without<br />

voltage applied. Before the measurement, the capacitor shall be preconditioned by applying voltage according to Item 4.1 of JIS C 5101-4.<br />

Capacitance change [P20% of the initial value<br />

D.F. (tanE) [150% of the initial specified value<br />

Leakage current [The initial specified value<br />

@Terminal Code : VS (F22 to F35) : Standard<br />

FD+1max.<br />

Vent<br />

Sleeve (PET : Brown) Negative mark PC board pin-out<br />

LP2<br />

*FD=35mm : 3.5P0.5mm<br />

*<br />

4.0P0.5<br />

The standard design has no plastic disc.<br />

1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18<br />

E L X G A A A V S N A A A M A A A S<br />

10<br />

2-F2<br />

Supplement code<br />

Size code<br />

Capacitance tolerance code<br />

Capacitance code (ex. 390MF:391, 3,300MF:332)<br />

Dummy terminal code<br />

Terminal code (VS, LI)<br />

Voltage code (ex. 10V:100, 100V:101)<br />

Series code<br />

Category<br />

Please refer to "Product code guide (snap-in type)"<br />

?RATED RIPPLE CURRENT MULTIPLIERS<br />

@Frequency Mul ti pli ers<br />

Frequency (Hz)<br />

10 to 50Vdc<br />

63 to 100Vdc<br />

50<br />

0.95<br />

0.92<br />

120<br />

1.00<br />

1.00<br />

300<br />

1.03<br />

1.07<br />

1k<br />

1.05<br />

1.13<br />

10k<br />

1.08<br />

1.19<br />

50k<br />

1.08<br />

1.20<br />

FD+1max.<br />

Vent<br />

LP2<br />

LXG<br />

KMH<br />

@Terminal Code : LI (F35)<br />

Sleeve (PET : Brown)<br />

4.5P1<br />

Negative mark<br />

PC board pin-out<br />

2-1.2B6<br />

The endurance of capacitors is reduced with internal heating produced by ripple current at the rate of halving the lifetime with every 5C rise.<br />

When long life performance is required in actual use, the rms ripple current has to be reduced.<br />

(1/3)<br />

14.2P1<br />

4.2P0.5<br />

5P0.5<br />

CAT. No. E1001H

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