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1000 V Discrete SiC MOSFETs

Image that includes both the front and back of the TO-247-4 package used for Wolfspeed's discrete Silicon Carbide power devices including SiC MOSFETs and Schottky diodes.
Angled product photo of the front and back of the TO-263-7 package used for Wolfspeed's Discrete Silicon Carbide MOSFETs.
1000 V; 120 mΩ; 22 A; TO-247-4 package; Gen 3 Discrete Silicon Carbide (SiC) MOSFET

Wolfspeed offers a series of 1000 V Silicon Carbide (SiC) MOSFETs optimized for fast switching devices such as electric-vehicle charging systems; industrial power supplies; and renewable energy systems.

The 1000 V Silicon Carbide MOSFETs address many power design challenges by providing a unique device with low on-Resistance; very low output capacitance; and low source inductance for a perfect blend of low switching losses and low conduction losses. Compared to silicon-based solutions; Wolfspeed silicon carbide power device technology enables increased system power density; higher switching frequencies; reduced component-count; and reduced size of components like inductors; capacitors; filters & transformers.


1000 V Discrete SiC MOSFETs

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1000 V Discrete SiC MOSFETs

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1000 V
120 mΩ
Gen 3
22 A
21.5 nC
40 pF
83 W
150 °C

Product Details

  • Minimum of 1kV Vbr across entire operating temperature range (no need to derate)
  • High-speed switching with low output capacitance
  • Fast intrinsic diode with low reverse recovery (Qrr)
  • Easy to parallel and simple to drive
  • Kelvin source pin to reduce switching losses and ringing
  • Enables a reduction in overall system cost
  • Improves system efficiency while decreasing system-size
  • Enables a 30% reduction in component-count while achieving more than 3x increase in power density and a 33% increase in output power
  • Enables hard switching topologies
  • Industrial power supplies
  • Renewable energy systems
  • Fast electric vehicle charging systems
  • Onboard electric vehicle charging

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This document details the production packaging details including container type, quantity, MOQ, and dimensions as well as the moisture sensitivity level (MSL) for discrete SiC Schottky Diodes and MOSFETs
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