Radial Leaded for Power Semiconductor Circuits
Unit of Measure

Specifications

Available

N/A {0}

Manufacturer Stock

N/A {0}

Brands

N/A Cornell Dubilier

Manufacturer

N/A Cornell Dubilier

Working Direct Current (DC) Voltage

N/A 1000 V

Capacitance

N/A 0.1 µF

dv/dt Rating

N/A 1850 V/µs

Operating Temperature Range

N/A -55 to +105 ºC

Capacitance Tolerance (±) at 1 Kilohertz (kHz) Frequency, 25 Degree Celsius (ºC) Temperature

N/A 10 %

Optional Capacitance Tolerance (±)

N/A 5 %

Frequency Range

N/A 50 Hz60 Hz

Alternating Current (AC) Voltage at 1000 Volts (V) Working Direct Current (DC) Voltage

N/A 630 V

Self-Inductance

N/A <1 Nano-Henry per mm of lead spacing

Insulation Resistance at 25 Degree Celsius (ºC) Temperature (<70 % Relative Humidity (RH)) for 1 Minute at 100 Direct Current (DC) Voltage (VDC) Applied

N/A 100000 MΩ

Capacitance Drift Factor

N/A <0.5 % after 2 years at 40 ºC

Capacitance Temperature Coefficient

N/A ±100 ppm/ºC-200 ppm/ºC

Dielectric

N/A Polypropylene

Construction

N/A Metallized Film

Plastic Case and Epoxy Resin

N/A Flame Retardant Materials (UL 94V-0)

Leads

N/A Lead free tinned copper leads

Dimensions

Dimension L

N/A 32 mm

Dimension H

N/A 20 mm

Dimension T

N/A 11 mm

Dimension S

N/A 27.5 mm

Dimension d

N/A 0.8 mm

Maximum Dissipation Factor 25 Degree Celsius (ºC) Temperature

Maximum Dissipation Factor at 25 Degree Celsius (ºC) Temperature, 1 Kilohertz (kHz) Frequency

N/A 0.05 %

Maximum Dissipation Factor at 25 Degree Celsius (ºC) Temperature, 10 Kilohertz (kHz) Frequency

N/A 0.05 %

Maximum Dissipation Factor at 25 Degree Celsius (ºC) Temperature, 100 Kilohertz (kHz) Frequency

N/A 0.16 %

Load Life

Load Life

N/A 2000 Hours, +85 ºC with 125 % of rated voltage

Capacitance Change (Load Life)

N/A ≤ 1 % of Initially Measured Value

Dissipation Factor (Load Life)

N/A ≤ 0.001 at 10 kHz and 25 ºC for C ≤ 1 µF
≤ 0.001 at 11 kHz and 25 ºC for C > 1 µF

Insulation Resistance (Load Life)

N/A ≥ 50 % of Maximum Specified Value

Reliability (0.5 x Rated Voltage, 40 Degree Celsius (ºC)) 1 FIT=1 Failure/1 Billion Component Hours

Reliability (0.5 x Rated Voltage, 40 Degree Celsius (ºC) Temperature) 1 FIT=1 Failure/1 Billion Component Hours

N/A 2 Fit, VDC ≤ 400 WVDC
1 Fit, VDC > 400 WVDC

Capacitance Change (Reliability (0.5 x Rated Voltage, 40 Degree Celsius (ºC) Temperature) 1 FIT=1 Failure/1 Billion Component Hours)

N/A ≤ 10 % of initially measured value

Dissipation Factor (Reliability (0.5 x Rated Voltage, 40 Degree Celsius (ºC) Temperature) 1 FIT=1 Failure/1 Billion Component Hours)

N/A ≤ 200 % of initially measured value

Insulation Resistance (Reliability (0.5 x Rated Voltage, 40 Degree Celsius (ºC) Temperature) 1 FIT=1 Failure/1 Billion Component Hours)

N/A ≥ 50 % of maximum specified value

Damp Heat Test

Note for Damp Heat Test

N/A 56 days at 40 ºC with 90 to 95 % RH, +40 ºC and no voltage applied

Capacitance Change (Damp Heat Test)

N/A ≤ 5 % of initially measured value

Dissipation Factor (Damp Heat Test)

N/A ≤ 0.005 at 1 kHz and 25 ºC

Insulation Resistance (Damp Heat Test)

N/A ≥ 50 % of maximum specified value

Dielectric Strength

Terminal to Terminal Dielectric Strength

N/A 160 % of rated VDC or 150 % VAC applied for 2 Seconds and 25ºC

Terminal to Case Dielectric Strength

N/A 3 kVAC at 50/60 Hz applied between terminals and case for 60 seconds at 25 ºC

Features

Features

N/A
  • High Pulse Currents
  • High voltage

Applications

Applications

N/A
  • Power Semiconductor Circuits
  • SCR Commutation
  • Ballast controls
  • Switching Power Supplies