Infineon FP75R12KT4_B16 IGBT Module
Infineon FP75R12KT4_B16 IGBT Module



The EconoPIM™ 3 is a Three-Phase PIM IGBT module designed for motor management and drive purposes. It encompasses a quick TRENCHSTOP™ IGBT4, Emitter Managed 4 diode, and NTC (Detrimental Temperature Coefficient) for improved efficiency. The module operates at 1200 V and 75 A, providing excessive reliability and energy density.
Listed here are the important thing options of the EconoPIM™ 3 module:
Integration of rectifier and brake chopper: This enables for system value financial savings by combining a number of functionalities right into a single module.
Thermal Interface Materials (TIM) choice: The module is out there with a thermal interface materials to boost warmth dissipation.
Low stray inductance module design: This design minimizes stray inductance, leading to improved system efficiency.
Copper base plate: The module features a copper base plate that optimizes warmth unfold and thermal administration.
Solderable pins: The module options solderable pins for safe and dependable electrical connections.
Low switching losses: It affords lowered switching losses, resulting in increased total effectivity.
Excessive switching frequency: The module helps excessive switching frequencies for exact management and sooner response occasions.
RoHS-compliant: The EconoPIM™ 3 module is compliant with the Restriction of Hazardous Substances (RoHS) directive.
Compact module idea: The module is designed to be compact, permitting for space-efficient integration into varied purposes.
Optimized buyer’s improvement cycle time and price: The module’s design and options contribute to streamlined improvement cycles and lowered prices.
Configuration flexibility: The module gives flexibility in its configuration to accommodate completely different software necessities.
The EconoPIM™ 3 module finds purposes in motor management and drives, residential air-con programs (for motor management, system management, and monitoring), and servo motor purposes. Its excessive reliability, energy density, and optimized warmth dissipation make it appropriate for demanding industrial and residential environments.
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