

Alpha and Omega Semiconductor, Inc.
AOD2610
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AOD2610 Description
AOD2610 Description
The AOD2610 is a single N-Channel MOSFET from Alpha and Omega Semiconductor, Inc., designed for high-performance applications requiring robust electrical characteristics. With a drain to source voltage of 60V and a continuous drain current of 10A at 25°C (Ta) and 46A at Tc, this MOSFET is capable of handling substantial power dissipation, rated at 2.5W (Ta) and 71.5W (Tc). Its surface mount packaging and TO252 construction make it ideal for space-constrained applications.
AOD2610 Features
- High Voltage Tolerance: Capable of withstanding 60V drain to source voltage, the AOD2610 is suitable for high-voltage applications.
- Power Handling: It can dissipate up to 2.5W at ambient temperature and 71.5W at case temperature, making it suitable for power electronics.
- Low On-State Resistance: With a maximum Rds(on) of 10.7mOhm at 20A and 10V, the AOD2610 offers low conduction losses.
- Gate Charge Efficiency: A maximum gate charge of 25nC at 10V ensures fast switching and high efficiency.
- Input Capacitance: Features a low input capacitance of 2410pF at 30V, which contributes to high-speed operation.
- Technology: Utilizes advanced MOSFET (Metal Oxide) technology for superior performance and reliability.
- REACH Compliance: Classified as REACH Unaffected, ensuring environmental safety and compliance.
AOD2610 Applications
The AOD2610 is particularly well-suited for applications where high voltage and current handling are required, such as:
- Power Supplies: Due to its high voltage and current ratings, it is ideal for power supply designs.
- Motor Controls: Its ability to handle high currents makes it suitable for motor control applications.
- Automotive Electronics: The robustness and high power dissipation capabilities make it a good fit for automotive electronics.
- Industrial Controls: Reliable for use in industrial control systems that demand high performance and durability.
Conclusion of AOD2610
While the AOD2610 is an obsolete product, its high voltage and current ratings, low on-state resistance, and high power dissipation capabilities made it a strong contender in its class. For applications requiring these specifications, the AOD2610 was a reliable choice, offering performance benefits such as fast switching and high efficiency. However, given its obsolescence, it is recommended to seek updated alternatives from Alpha and Omega Semiconductor, Inc., that meet current industry standards and performance expectations.



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