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UFW1E102MPD

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ALUMINUM ELECTROLYTIC CAPACITORS


UFW1E102MPD
UFW1E102MPD

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Description
ALUMINUM ELECTROLYTIC CAPACITORS FW Standard, For Audio Equipment series Compliant to the RoHS directive (2002/95/EC).
FG High Grade KW High Sound Quality FW Specifications Item Category Temperature Range Rated Voltage Range Rated Capacitance Range Capacitance Tolerance Leakage Current Performance Characteristics – 40 to +85°C 6.
3 to 100V 0.
1 to 33000µF ± 20% at 120Hz, 20°C After 1 minute's application of rated voltage, leakage current is not more than 0.
03 CV or 4 (µA) , whichever is greater.
After 2 minutes' application of rated voltage, leakage current is not more than 0.
01 CV or 3 (µA) , whichever is greater.
Tangent of loss angle (tan δ) Rated voltage (V) tan δ (MAX.
) 6.
3 0.
28 10 0.
24 16 0.
20 25 0.
16 35 0.
14 50 0.
12 For capacitance of more than 1000µF, add 0.
02 for every increase of 1000µF.
63 0.
10 Rated voltage (V) 6.
3 10 16 25 Stability at Low Temperature Impedance ratio Z– 25°C / Z+20°C 5 4 3 2 ZT / Z20 (MAX.
) Z– 40°C / Z+20°C 12 10 8 5 100 0.
08 35 2 4 Measurement frequency : 120Hz, Temperature : 20°C Measurement frequency : 120Hz 50 63 100 222 333 Endurance Shelf Life Marking The specifications listed at right shall be met when the capacitors are restored to 20°C after the rated voltage is applied for 2000 hours at 85°C.
Capacitance change tan δ Leakage current Within ±20% of the initial capacitance value 200% or less than the initial specified value Less than or equal to the initial specified value After sroring the capacitors under no load at 85°C for 1000 hours and then performing voltage treatment based on JIS C 5101-4 clause 4.
1 at 20°C, they shall meet the specified values for the endurance characteristics listed above.
Printed with black color letter on Gold sleeve.
φD+ MAX.
P ± 0.
5 Radial Lead Type Sleeve (P.
E.
T.
) φd Pressure relief vent (φ6.
3up) L+ MAX.
15MIN 4MIN (mm) φD 5 6.
3 8 10 12.
5 16 18 20 22 25 P 2.
0 2.
5 3.
5 5.
0 5.
0 7.
5 7.
5 10 10 12.
5 φd 0.
5 0.
5 0.
6 0.
6 0.
6 0.
8 0.
8 1.
0 1.
0 1.
0 0.
5 0.
5 0.
5 0.
5 0.
5...



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