

Alpha and Omega Semiconductor, Inc.
AOK40B60D1
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AOK40B60D1 Description
AOK40B60D1 Description
The AOK40B60D1 from Alpha & Omega Semiconductor Inc. is a high-performance 600V, 80A Single IGBT housed in a TO-247 package, designed for demanding power electronics applications. With a maximum power dissipation of 278W, this device combines low conduction losses (Vce(on) of 2.4V @ 15V, 40A) and efficient switching characteristics (turn-on/off delays of 29ns/74ns). It features a reverse recovery time (trr) of 127ns, optimized for high-frequency operation, and a gate charge of 45nC, ensuring minimal drive losses. The Alpha IGBT™ series leverages advanced trench field-stop technology for superior thermal performance and reliability, making it ideal for industrial and automotive applications.
AOK40B60D1 Features
- High Voltage & Current Handling: 600V VCE breakdown and 80A continuous current (140A pulsed).
- Low Switching Losses: 1.55mJ (on) and 300µJ (off) switching energy at 400V, 40A, 7.5Ω, 15V test conditions.
- Robust Construction: TO-247 package with MSL1 (Unlimited) moisture sensitivity, ensuring long-term reliability.
- Compliance & Environmental: ROHS3 Compliant and REACH Unaffected, meeting global environmental standards.
- Efficient Drive: Standard input type with low gate charge (45nC), reducing driver complexity and cost.
AOK40B60D1 Applications
- Motor Drives: High-efficiency inverters for industrial motors and HVAC systems.
- Renewable Energy: Solar inverters and wind power converters requiring high voltage tolerance.
- Uninterruptible Power Supplies (UPS): Critical for fast-switching, high-current power backup systems.
- Welding Equipment: Demanding pulsed-current applications benefit from its high Icm (140A) capability.
- Electric Vehicle (EV) Chargers: Reliable performance in fast-charging infrastructure.
Conclusion of AOK40B60D1
The AOK40B60D1 stands out for its balanced trade-off between conduction and switching losses, making it a versatile choice for high-power applications. Its TO-247 packaging, low Vce(on), and high current capacity provide a competitive edge over similar IGBTs in efficiency-critical designs. Whether for industrial automation, green energy, or automotive systems, this device delivers robust performance, compliance, and thermal stability, aligning with modern power electronics requirements.



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