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600 V Bare Die Silicon Carbide Schottky Diodes – Gen 3

Product rendering of a Wolfspeed Silicon Carbide Bare Die Schottky diode.
600 V, 3 A, Gen 3 Bare Die SiC Schottky Diode
Wolfspeed's Gen 3 family of 600 V bare die Silicon Carbide (SiC) Schottky diodes feature extremely fast switching, zero forward &, reverse recovery, and high-frequency operation. Optimized for power applications like Switch Mode Power Supplies (SMPS), boost diodes in PFC or DC/DC stages, free wheeling diodes in inverter stages, AC/DC converters, solar energy systems, and more.


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600 V Bare Die Silicon Carbide Schottky Diodes – Gen 3

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600 V Bare Die Silicon Carbide Schottky Diodes – Gen 3

Product SKU
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Data Sheet
Blocking Voltage
Current Rating
Total Capacitive Charge (QC (typ))
Maximum Junction Temperature
Recommended For New Design?
600 V
3 A
6.7 nC
175 °C
Gen 3

Product Details

  • 600-Volt Schottky Rectifier
  • Zero Forward and Reverse Recovery
  • High-Frequency Operation
  • Temperature-Independent Switching Behavior
  • Extremely Fast Switching
  • Positive temperature coefficient on VF
  • Reduces system size; weight; and cooling requirements
  • Increased power density
  • Parallel mode operation possible
  • Switch Mode Power Supplies (SMPS)
  • Boost diodes in PFC or DC/DC stages
  • Free Wheeling Diodes in Inverter stages
  • AC/DC converters
  • Solar energy systems

Documents, Tools & Support

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Document Name
Application Notes
Data Sheets
Sales Terms
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
Sales Terms
Technical SupportPower Applications Forum

Knowledge Center

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Benefits of Designing with Wolfspeed Silicon Carbide in Low Voltage Motor Drives

Wolfspeed evaluates SiC in industrial low voltage motor drives at three different power levels to evaluate efficiency improvements, and compares improvements realized when smaller heat sinks are combined with SiC.
Continue Reading  Technical Articles


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