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Copper nut leads,small size,easy installation.
Myra tape encapsulation,dry resin infusion.
Low ESL and ESR.
High-frequency current capacity.
High pulse current,high dv/dt withstand capability.
Operating temperature range | Max.Operating temperature.Top,max:+85℃ Upper category temperatuer:+85℃ Lower category temperatuer:-40℃ |
Capacitance range | 0.22μF~3μF |
Rated voltage | 3000V.DC~10000V.DC |
Cap.tol | ±5%(J); ±10%(K) |
Withstand voltage | 1.35Un/10s |
Dissipation factor | tgδ≤0.001 f=1kHZ |
lnsulation resistance | C≤0.33μF Rs≥15000MΩ(at 20℃ 100V.DC 60s) C>0.33μF Rs×C≥5000s(at 20℃ 100V.DC 60s) |
Withstand strike current | See attached table |
Life expectancy | 100000h(UN; θhotspot≤70℃) |
Reference standard | IEC61071 |
Double sided metallized
To use double sided metallized film as electrode to enhance dv/dt property.
dielectric
Double sided metallized film,polypropylene dielectric, non-inductive winding.
High peak current
Withstanding very high peak to peak value of current Ipp and high frequency effective value of current Irms.
Copper nut leads,small size,easy installation.
Myra tape encapsulation,dry resin infusion.
Low ESL and ESR.
High-frequency current capacity.
High pulse current,high dv/dt withstand capability.
Operating temperature range | Max.Operating temperature.Top,max:+85℃ Upper category temperatuer:+85℃ Lower category temperatuer:-40℃ |
Capacitance range | 0.22μF~3μF |
Rated voltage | 3000V.DC~10000V.DC |
Cap.tol | ±5%(J); ±10%(K) |
Withstand voltage | 1.35Un/10s |
Dissipation factor | tgδ≤0.001 f=1kHZ |
lnsulation resistance | C≤0.33μF Rs≥15000MΩ(at 20℃ 100V.DC 60s) C>0.33μF Rs×C≥5000s(at 20℃ 100V.DC 60s) |
Withstand strike current | See attached table |
Life expectancy | 100000h(UN; θhotspot≤70℃) |
Reference standard | IEC61071 |
Double sided metallized
To use double sided metallized film as electrode to enhance dv/dt property.
dielectric
Double sided metallized film,polypropylene dielectric, non-inductive winding.
High peak current
Withstanding very high peak to peak value of current Ipp and high frequency effective value of current Irms.