Microchip Technology, Inc. Silicon Carbide Test/Evaluation Products MSCSICPFC/REF5

Description
DOCUMENTATION ONLY/NO HARDWARE The MSCSICPFC/REF5 is a three-phase Vienna PFC reference design for hybrid electric vehicle (HEV)/electric vehicle (EV) charger and high power switch mode power supply applications. This reference design achieves 98.5 % efficiency at 20 kW output power and is capable of operation to 30 kW. Key features of this three-phase Vienna rectifier reference design: Initial operation at 20 kW and designed for 30 kW applications Microsemi’s next generation SiC diodes and SiC MOSFETs with high avalanche/repetitive unclamped inductive switching (UIS) Three-phase, 380/400 V RMS, 50Hz or 60 Hz input voltage 140 kHz switching frequency 780 V DC output voltage PCB layout with consideration for safety, current stress, mechanical stress, and noise immunity Open source software for digital control Maximum ambient temperature at 60 °C
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Description
DOCUMENTATION ONLY/NO HARDWARE The MSCSICPFC/REF5 is a three-phase Vienna PFC reference design for hybrid electric vehicle (HEV)/electric vehicle (EV) charger and high power switch mode power supply applications. This reference design achieves 98.5 % efficiency at 20 kW output power and is capable of operation to 30 kW. Key features of this three-phase Vienna rectifier reference design: Initial operation at 20 kW and designed for 30 kW applications Microsemi’s next generation SiC diodes and SiC MOSFETs with high avalanche/repetitive unclamped inductive switching (UIS) Three-phase, 380/400 V RMS, 50Hz or 60 Hz input voltage 140 kHz switching frequency 780 V DC output voltage PCB layout with consideration for safety, current stress, mechanical stress, and noise immunity Open source software for digital control Maximum ambient temperature at 60 °C
Request a Quote Datasheet

Suppliers

Company
Product
Description
Supplier Links
Silicon Carbide Test/Evaluation Products - MSCSICPFC/REF5 - Richardson RFPD
Downers Grove, IL, United States
Silicon Carbide Test/Evaluation Products
MSCSICPFC/REF5
Silicon Carbide Test/Evaluation Products MSCSICPFC/REF5
DOCUMENTATION ONLY/NO HARDWARE The MSCSICPFC/REF5 is a three-phase Vienna PFC reference design for hybrid electric vehicle (HEV)/electric vehicle (EV) charger and high power switch mode power supply applications. This reference design achieves 98.5 % efficiency at 20 kW output power and is capable of operation to 30 kW. Key features of this three-phase Vienna rectifier reference design: Initial operation at 20 kW and designed for 30 kW applications Microsemi’s next generation SiC diodes and SiC MOSFETs with high avalanche/repetitive unclamped inductive switching (UIS) Three-phase, 380/400 V RMS, 50Hz or 60 Hz input voltage 140 kHz switching frequency 780 V DC output voltage PCB layout with consideration for safety, current stress, mechanical stress, and noise immunity Open source software for digital control Maximum ambient temperature at 60 °C

DOCUMENTATION ONLY/NO HARDWARE

The MSCSICPFC/REF5 is a three-phase Vienna PFC reference design for hybrid electric vehicle (HEV)/electric vehicle (EV) charger and high power switch mode power supply applications. This reference design achieves 98.5 % efficiency at 20 kW output power and is capable of operation to 30 kW.

Key features of this three-phase Vienna rectifier reference design:

  • Initial operation at 20 kW and designed for 30 kW applications
  • Microsemi’s next generation SiC diodes and SiC MOSFETs with high avalanche/repetitive unclamped inductive switching (UIS)
  • Three-phase, 380/400 V RMS, 50Hz or 60 Hz input voltage
  • 140 kHz switching frequency
  • 780 V DC output voltage
  • PCB layout with consideration for safety, current stress, mechanical stress, and noise immunity
  • Open source software for digital control
  • Maximum ambient temperature at 60 °C
Supplier's Site Datasheet

Technical Specifications

  Richardson RFPD
Product Category Electronic Development Boards
Product Number MSCSICPFC/REF5
Product Name Silicon Carbide Test/Evaluation Products
Category Developement Board
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