FCH041N60E − N-Channel SuperFET® II MOSFET 600V, 77A, 41mΩ

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SuperFET®II MOSFET is Fairchild’s brand-new high voltage super-junction MOSFET family, utilizes advanced charge-balance technology for outstandingly low on-state resistance and lower gate charge. This advanced MOSFET is tailored not only to minimize conduction loss but also to achieve superior switching performance. Besides these advantages, it also provides extremely higher dv/dt rate and bigger avalanche energy than conventional super-junction MOSFETs. SuperFET II MOSFET is suitable for various switching power applications aiming for system miniaturization and higher efficiency

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Product Status/Pricing/Packaging

Product Product & Eco Status *Pricing Packaging & Packing Info **Package Marking Convention Qualification Support Compliance Certificates
0 PCFC041N60EW Full Production. Special Order.
Green
N/A  Details
RAIL

Line 1:N/A
RƟJA :  40  °C/W
RƟJC :  0.21  °C/W
0 FCH041N60E Full Production
ROHS Compliant
$10  Details
4.7 x 15.62 x 20.57mm
RAIL

Line 1:$Y (Fairchild logo)
&Z (Plant Code)
&3 (3-Digit Date Code)
&K
Line 2:FCH
Line 3:041N60E
RƟJA :  40  °C/W
RƟJC :  0.21  °C/W

Features

  • Max. RDS(on) = 41mΩ
  • Ultra Low Gate Charge (Typ. Qg = 285nC)
  • Low Effective Output Capacitance (Typ. Coss.eff = 735pF)
  • 100% Avalanche Tested
  • RoHS Compliant

Applications

  • AC-DC Merchant Power Supply
  • AC-DC Merchant Power Supply - Servers & Workstations
  • Energy Generation & Distribution
  • External AC-DC Merchant Power Supply - Data Processing

Application Notes

Models

For additional information please visit the Models page.

Package Condition Temperature Range Vcc Range Software Version Revision Date
PSPICE
TO-247 3L Physical;Electro-Thermal -55°C to 175°C 0V to 600V OrCAD 16.6 Apr 29, 2014
LTspice
TO-247 3L Electro-Thermal -55°C to 150°C 0V to 600V LTSPICE IV Jul 08, 2014
SIMetrix SPICE
TO-247 3L Physical;Electro-Thermal -55°C to 175°C 0V to 600V SIMetrix 7.10R May 13, 2014

Design Tools

Design Tool Design Tool
ODT-00024 Power factor correction (PFC) power discrete (MOSFET, IGBT, rectifier) device power loss analysis tool that evaluates device junction temperature (Tj), power train power loss, and efficiency.
Power Factor Correction (CCM PFC and CrCM/BCM) Power factor correction (PFC) power discrete (MOSFET, IGBT, rectifier) device power loss analysis tool that evaluates device junction temperature (Tj), power train power loss, and efficiency.


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