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RoHS Compliant
Lead-free

IPP65R041CFD7

The 650V CoolMOS™ CFD7 superjunction MOSFET with integrated fast body diode is the perfect choice for resonant high power topologies
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IPP65R041CFD7
IPP65R041CFD7
ea.

Product details

  • Budgetary Price €/1k
    3.37
  • ID max
    50 A
  • ID (@25°C) max
    50 A
  • IDpuls max
    211 A
  • Mounting
    THT
  • Operating Temperature
    -55 °C to 150 °C
  • Package
    TO220
  • Polarity
    N
  • Ptot max
    227 W
  • QG
    102 nC
  • QG (typ @10V)
    102 nC
  • RDS (on) (@ Tj = 25°C)
    36 mΩ
  • Special Features
    Fast recovery diode
  • VDS max
    650 V
  • VGS(th)
    4 V
OPN
IPP65R041CFD7XKSA1
Product Status active
Infineon Package
Package Name TO220
Packing Size 500
Packing Type TUBE
Moisture Level NA
Moisture Packing NON DRY
Lead-free Yes
Halogen Free Yes
RoHS Compliant Yes
Infineon stock last updated:
ea. in stock

Product Status
Active
Infineon Package
Package Name TO220
Packing Size 500
Packing Type TUBE
Moisture Level NA
Moisture Packing NON DRY
Lead Free
Halogen Free
RoHS Compliant
ea.
in stock
Infineon’s 650V CoolMOS™ CFD7 superjunction MOSFET IPP65R041CFD7 in a TO-220 package is ideally suited for resonant topologies in industrial applications, such as server, telecom, solar, and EV-charging stations, in which it enables significant efficiency improvements compared to competition.  As a successor to the CFD2 SJ MOSFET family, it comes with reduced gate charge, improved turn-off behavior, and reduced reverse recovery charge enabling highest efficiency and power density as well as additional 50V breakdown voltage.

Features

  • Ultrafast body diode and very low Qrr
  • 650V breakdown voltage
  • Significantly reduced switching losses compared to competition
  • Lowest RDS(on) dependency over temperature

Benefits

  • Excellent hard-commutation ruggedness
  • Extra safety margin for designs with increased bus voltage
  • Enabling increased power density
  • Outstanding light-load efficiency in industrial SMPS applications
  • Improved full-load efficiency in industrial SMPS applications
  • Price competitiveness compared to alternative offerings in the market

Documents

Design resources

Developer community

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