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IKW75N65ES5
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IKW75N65ES5 Description
IKW75N65ES5 Description
The IKW75N65ES5 from Infineon Technologies is a high-performance 650V, 80A IGBT (Insulated Gate Bipolar Transistor) belonging to the TRENCHSTOP™ 5 S5 series. Designed for through-hole mounting, this single-configuration device leverages advanced trenchstop technology to deliver superior efficiency, low conduction losses, and robust thermal performance. With a collector-emitter saturation voltage (VCE(sat)) of 1.42V, it ensures minimal power dissipation (395W) even under high-current conditions. The IGBT operates reliably up to +175°C, making it suitable for demanding industrial environments. Packaged in a tube, it features a compact footprint (15.87mm × 5.31mm × 20.7mm) and complies with RoHS and EAR99 regulations.
IKW75N65ES5 Features
- High Voltage & Current Rating: 650V VCEO and 80A continuous current at 25°C.
- Low Power Losses: Optimized VCE(sat) (1.42V) and gate-emitter leakage current (100nA) enhance efficiency.
- Robust Thermal Performance: 395W power dissipation and 175°C max operating temperature ensure durability.
- Advanced Trenchstop Technology: Reduces switching losses and improves reliability in high-frequency applications.
- Compact & Compliant: Through-hole design with RoHS compliance and EAR99 classification for global use.
IKW75N65ES5 Applications
- Motor Drives: Ideal for industrial motor control due to high current handling and low saturation voltage.
- Power Supplies: Suited for SMPS (Switched-Mode Power Supplies) and UPS systems requiring efficient switching.
- Renewable Energy: Used in solar inverters and wind turbine converters for high-voltage DC-AC conversion.
- Welding Equipment: Benefits from its high-temperature tolerance and robust thermal design.
- Induction Heating: Excels in high-frequency, high-power applications.
Conclusion of IKW75N65ES5
The IKW75N65ES5 stands out as a high-efficiency, high-reliability IGBT for power electronics, combining Infineon’s TRENCHSTOP™ 5 technology with industry-leading thermal and electrical performance. Its low conduction losses, high current capability, and rugged design make it a top choice for industrial, renewable energy, and high-power switching applications. Engineers can leverage its compact form factor and compliance certifications to design next-generation systems with enhanced efficiency and longevity.



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