CBB81-0.1uF-2000V

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High voltage metallized polypropylene capacitor 0.1uF/2000V for power electronics and snubber applications.

Product Overview

Description

The CBB81-0.1uF-2000V is a high voltage metallized polypropylene film capacitor designed for power electronics applications.

With 0.1uF capacitance and 2000V DC rating, this capacitor is ideal for snubber circuits, resonant converters, and high voltage filtering. The high dV/dt capability makes it suitable for IGBT snubbers.

Features include low ESR, high pulse current capability, and excellent self-healing properties. The axial lead construction provides reliable mounting.

Product Series

CBB

Primary Application

IGBT snubbers

Key Features

  • 2000V high voltage rating
  • High dV/dt capability
  • Low ESR
  • High pulse current
  • Self-healing properties
  • Axial lead construction

Specifications

Capacitance 0.1uF ±5%
Voltage Rating 2000V DC
Temperature Range -40°C to +105°C
Lead Style Axial
Package Cylindrical
dV/dt High dV/dt capable
Dissipation Factor ≤0.0010 (1kHz)
Insulation Resistance ≥30000MΩ

Applications

IGBT snubbers

Electronic system design

Resonant converters

Power conversion and supply

High voltage filtering

Electronic system design

Power supplies

Electronic system design

Documents & Resources

FAE Expert Insights

D

"The CBB81-0.1uF-2000V is excellent for high voltage snubber applications. The 2000V rating provides good margin for 1200V IGBT protection. The high dV/dt capability handles fast switching transients well. I've used this in numerous inverter designs with excellent results."

Excellent for high voltage snubber circuits

— David Wang, BeiLuo

Frequently Asked Questions

How do I calculate snubber capacitor value?

For IGBT snubbers: C = L × I² / V², where L is stray inductance, I is peak current, V is allowable overvoltage. Typical values are 0.1-0.47uF for medium power IGBTs. Always verify with actual circuit testing.

Calculate based on stray inductance and peak current, then verify.

snubber calculation IGBT protection