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ECQU2A822KL

Panasonic

Metallized Polyester Film Capacitor


ECQU2A822KL
ECQU2A822KL

PDF File ECQU2A822KL PDF File


Description
Plastic Film Capacitors Metallized Polyester Film Capacitor Type: ECQUL [Class X2] [Class Y2/X2] In accordance with UL/CSA and European safety regulation class X2 or class Y2/X2 I Features •Compact •Flame-retardant plastic case and non-combustible resin •RoHS directive compliant IRecommended Applications •Interference suppressors I Explanation of Part Numbers 1 2 3 4 5 6 7 8 9 10 11 ECQU 2 A L Product code Dielectric & construction Rated voltage Capacitance Cap.
tol.
Suffix IApplicable Standard K ±10 % M ±20 % UL CSA UL 1414 Across - The - Line Capacitors Antenna - Coupling and Line - By - Pass Components (0.
0010 µF to 1.
0 µF) UL 1283 Electromagnetic Interference Filters (1.
2 µF to 2.
2 µF) CSA C22.
2 No.
1 Across - the - line capacitors Antenna - isolation and line - by - pass capacitors (0.
0010 µF to 1.
0 µF) CSA C22.
2 No.
8 - M1986 Electromagnetic Interference (EMI) Filters (1.
2 µF to 2.
2 µF) VDE IEC60384 - 14 EN132400 Class Y2/X2 Class X2 (0.
0010 µF to 0.
0068 µF) (0.
0082 µF to 2.
2 µF) ❈When applying this capacitor to European and American safety standards, please use type designation and rating such as ECQUL, 0.
1 µF.
❈Approval number (File No.
) of safety regulations are subject to revision without notice.
Ask factory for a copy of the latest file No ❈This capacitor is recognized for European standards by VDE only.
But, there are no problems using this capacitor in a device which will get approvals from certification bodies in Europe, SEMKO, DEMKO, NEMKO, FIMKO and SEV etc.
except VDE.
I Specifications Category temp.
range - 40 : to + 100 ˚C (85 ˚C max.
on UL/CSA spec.
) Rated voltage Capacitance range Capacitance tolerance Dissipation factor (tan ) 275 VAC (IEC60384-14), 250 VAC (UL/CSA) 0.
0010 µF to 2.
2 µF ± 10 % (K), ± 20 %(M) tan <=1.
0 % (20 ˚C, 1 kHz) Withstand voltage Between terminals: 575 VAC, 1768 VDC 60 s (0.
0082 µF to 2.
2 µF) Between terminals: 1500 VAC, 2121 VDC 60 s (0.
0010 µF to 0.
0068 µF) Between terminals to enclosur...



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