Active and preferred
RoHS Compliant

EVAL-FFXMR20KM1HDR

Evaluation board for CoolSiC™ MOSFET 2000 V 62 mm half-bridge modules

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EVAL-FFXMR20KM1HDR
EVAL-FFXMR20KM1HDR

Product details

  • Applications
    DC/DC Converter, Solar, Solid-State Transformer, UPS
  • Board Type
    Evaluation Board
  • Dimensions
    110x61 mm
  • Family
    CoolSiC™ MOSFET
  • Frequency
    1 kHz to 100 kHz
  • Input Type
    DC
  • Interfaces
    5X2 pin, I²C
  • Motor Power
    7500 W
  • Mounting
    Surface Mount (SMD)
  • Output Current max
    400 A
  • Output Voltage max
    40 V
  • Product Name
    EVAL-FFXMR20KM1HDR
  • Qualification
    Industrial
  • Supply Voltage
    15 V to 24 V
  • Topology
    Half Bridge
OPN
EVALFFXMR20KM1HDRTOBO1
Product Status active and preferred
Infineon Package -
Package Name N/A
Packing Size 1
Packing Type BLISTER TRAY
Moisture Level N/A
Moisture Packing NON DRY
Lead-free No
Halogen Free No
RoHS Compliant Yes
Infineon stock last updated:

Product Status
Active
Infineon Package -
Package Name -
Packing Size 1
Packing Type BLISTER TRAY
Moisture Level -
Moisture Packing NON DRY
Lead Free
Halogen Free
RoHS Compliant
The EVAL-FFXMR20KM1HDR is a gate driver board for driving 62 mm modules with our latest CoolSiC™ MOSFET technology in a half-bridge configuration. It shows a reliable and fast controllability of such devices using the famous 1ED3890MC12M compact gate driver together with a booster stage to increase the driver output power.

Features

  • Half-bridge driver for 62 mm, 2kV modules with CoolSiC™ Trench MOSFET technology
  • Separate source and sink for optimized gate driving
  • Driver IC 1ED3890MC12M or 1ED3890MU12M (X3 digital) with I2C bus for parameter adjustment
  • Hardware undervoltage lockout (UVLO) protection
  • Proper PCB design to limit the PCB heating during operation

Benefits

  • Two-level turn-off (TLTO) with adjustable slopes, plateau time, and plateau level
  • Negative voltage adjustment from -5 V to 0 V
  • Plug-and-play, ready to use board solution for device testing
  • Positive voltage adjustment for high switching frequencies
  • PCB design to limit the PCB heating during operation

Documents

Design resources