1700 V Discrete Silicon Carbide Schottky Diodes

1700 V Discrete Silicon Carbide Schottky Diodes

Product shot of two 1700V Discrete SiC Schottky Diodes
Wolfspeed 1700 V Discrete Silicon Carbide Schottky Diodes
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Wolfspeed 1700 V Silicon Carbide (SiC) Schottky Diodes enable smaller and more efficient power conversion systems. The 1700 V platform is optimized for high-frequency power electronics; including renewable-energy inverters; battery charging systems; and industrial power supply applications.

Compared to silicon-based solutions; Wolfspeed Silicon Carbide technology enables increased system power density; higher switching frequencies; smaller designs; cooler components; reduced size of components like inductors; capacitors; filters & transformers; and overall cost benefits.

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Blocking Voltage
Current Rating
Forward Voltage(VF(type))
Maximum Continuous Current (IF)
Total Power Dissipation (PTOT)
Recommended For New Design?
1700 V
25 A
Gen 5
1.5 V
25 A
384 W
1700 V
10 A
Gen 5
1.7 V
10 A
185 W
1700 V
5 A
Gen 5
1.5 V
5 A
115 W
  • High blocking voltage with low RDS(on)
  • High speed switching with low capacitances
  • Fast intrinsic diode with low reverse recovery (Qrr)
  • Easy to parallel and simple to drive
  • Resistant to latch-up
  • Halogen-free; RoHS-compliant
  • Low parasitic inductance
  • Higher system efficiency
  • Reduced cooling requirements
  • Increased power density
  • Increased system switching frequency
  • Surface mount package with separate kelvin source pin lowers source inductance and provides up to 30% lower switching losses
  • Optimized packing with wide creepage and clearance distance between drain and source (~8mm) providing extra electrical isolation suitable for high pollution environments
  • Auxiliary power supplies
  • Switch mode power supplies
  • Power inverters
  • 1500 V solar inverters
  • High voltage DC-DC converters
  • Motor drives
  • Pulsed power applications
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Join Wolfspeed’s Guy Moxey and special guest Bodo Arlt, founder of Bodo’s Power Systems, at PCIM as they discuss the history of silicon, the big milestones bringing us to today’s breakthrough markets enabled by Silicon Carbide, and the future being all about wide bandgap semiconductors.
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