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NGTB75N65FL2WG
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NGTB75N65FL2WG Description
NGTB75N65FL2WG Description
The NGTB75N65FL2WG from onsemi is a high-performance 650V, 100A trench field-stop IGBT designed for demanding power electronics applications. Housed in a TO-247 package, this device combines low conduction and switching losses with robust thermal performance, making it ideal for high-power switching. With a collector-emitter saturation voltage (Vce(on)) of just 2V @ 15V, 75A, it ensures efficient power handling while minimizing heat dissipation. The IGBT features a fast reverse recovery time (trr) of 80ns and optimized switching energy (1.5mJ on, 1mJ off), enhancing its suitability for high-frequency applications.
NGTB75N65FL2WG Features
- Trench Field Stop Technology: Delivers superior efficiency with reduced switching losses.
- High Current Handling: 100A continuous (200A pulsed) current rating ensures reliability in high-load conditions.
- Low Gate Charge (310nC): Enables faster switching and reduced drive power requirements.
- Optimized Switching Performance: 110ns turn-on / 270ns turn-off delays at 25°C for precision control.
- Robust Thermal Design: 595W max power dissipation and TO-247 package for effective heat management.
- Compliance & Reliability: ROHS3, REACH Unaffected, and MSL Not Applicable for environmental and handling resilience.
NGTB75N65FL2WG Applications
This IGBT excels in high-power switching environments, including:
- Motor Drives & Inverters: Efficiently controls large inductive loads in industrial and automotive systems.
- Uninterruptible Power Supplies (UPS): Ensures stable energy conversion with minimal losses.
- Renewable Energy Systems: Solar inverters and wind turbine converters benefit from its high voltage and current ratings.
- Welding Equipment: Provides precise power modulation in high-current welding applications.
- Induction Heating: Fast switching and thermal stability make it ideal for high-frequency heating systems.
Conclusion of NGTB75N65FL2WG
The NGTB75N65FL2WG stands out as a high-efficiency, rugged IGBT for power electronics, offering a balance of low conduction losses, fast switching, and thermal robustness. Its trench field-stop design and compliance with industry standards make it a preferred choice for engineers designing high-performance inverters, motor drives, and energy systems. Whether in industrial automation or renewable energy, this component delivers reliability and performance under demanding conditions.



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