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FGA6065ADF Description
FGA6065ADF Description
The FGA6065ADF from onsemi is a high-performance 650V, 120A trench field-stop IGBT housed in a TO-3PN package. Designed for robust power switching applications, it features a low Vce(on) of 2.3V @ 15V, 60A, ensuring efficient conduction losses. With a collector-emitter breakdown voltage of 650V and a maximum power dissipation of 306W, this IGBT is engineered for demanding high-voltage, high-current environments. Its trench field-stop technology enhances switching efficiency and reduces thermal resistance, making it suitable for high-frequency operations.
FGA6065ADF Features
- High Voltage & Current Handling: 650V/120A continuous current (180A pulsed) for heavy-duty applications.
- Low Switching Losses: Td(on/off) of 25.6ns/71ns and switching energy of 2.46mJ (on)/520µJ (off) ensure fast, efficient transitions.
- Optimized Conduction: Vce(on) of 2.3V @ 15V, 60A minimizes power dissipation.
- Robust Construction: Trench Field Stop IGBT technology improves thermal performance and reliability.
- Compliance: ROHS3 Compliant and REACH Unaffected, meeting environmental standards.
- Gate Charge: 84 nC for efficient drive requirements.
FGA6065ADF Applications
The FGA6065ADF is ideal for:
- Motor Drives: High-efficiency inverters for industrial and automotive systems.
- Power Supplies: High-voltage SMPS and UPS systems requiring reliable switching.
- Welding Equipment: Demanding applications needing high current and voltage tolerance.
- Renewable Energy: Solar inverters and wind power converters.
- Induction Heating: Fast-switching capabilities for precision thermal management.
Conclusion of FGA6065ADF
The FGA6065ADF stands out as a high-reliability IGBT for 650V/120A applications, combining low conduction losses, fast switching, and robust thermal performance. Its trench field-stop design and compliance with environmental standards make it a preferred choice for industrial, automotive, and renewable energy systems. While marked Obsolete, its performance metrics ensure it remains viable for legacy or specific high-power designs requiring proven reliability.



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