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Product rendering of a Wolfspeed Silicon Carbide Bare Die Schottky diode.
1700 V, 50 A, Gen 6 Bare Die SiC Schottky Diode
6th generation of high voltage, high performance Z-Rec© Silicon Carbide (SiC) Schottky diode in a packageless bare die format to be implemented into any custom module design The lower forward voltage, smaller reverse leakage current, zero reverse recovery, and high thermal conductivity make this schottky diode ideal for high frequency switching applications including high density DC to DC converters. This schottky diode can be used in conjunction with either IGBT or MOSFET as an anti-parallel diode, or as a rectifier.


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1700 V Bare Die Silicon Carbide Schottky Diodes

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1700 V Bare Die Silicon Carbide Schottky Diodes

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Data Sheet
Blocking Voltage
Current Rating
Total Capacitive Charge (QC (typ))
Maximum Junction Temperature
1700 V
50 A
479 nC
175 °C
Gen 6

Product Details

  • Zero Reverse Recovery
  • Zero Forward Recovery
  • High-Frequency Operation
  • Temperature-Independent Switching Behavior
  • Extremely Fast Switching
  • Positive Temperature Coefficient on VF
  • Improves System Efficiency with lower switching and conduction losses
  • Reduces System Size, Weight, and Cooling Requirements
  • Enables high switching frequency operation
  • Easy to parallel and compatible with standard gate drive design
  • Solar Inverters
  • Motor Drives
  • EV Chargers
  • UPS
  • Industrial Power Supplies

Documents, Tools & Support

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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
Sales Terms
Technical SupportPower Applications Forum

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Design Resources

Simulate Designing Industrial Motor Drives with SiC using SpeedFit™ Design Simulator

Use the SpeedFit™ Design Simulator to design smaller and quieter industrial motor drive systems including industrial low voltage motor drives, servo drives, and compressors for heat pumps and air conditioners.
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Low Load Efficiency Simulations with Silicon Carbide

Power electronics devices are almost never working at maximum of their capabilities because of safety, reliability but even application mission profile. Our experts will demonstrate how Wolfspeed's free SpeedFit simulation tool is the perfect starting point before moving to accurate LTSpice simulations.
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