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IRFH3702TRPBF
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IRFH3702TRPBF Description
IRFH3702TRPBF Description
The IRFH3702TRPBF is a high-performance N-Channel MOSFET from Infineon Technologies, designed for demanding applications that require high efficiency and reliability. With a drain-to-source voltage rating of 30V and continuous drain current ratings of 16A at 25°C and 42A at case temperature, this MOSFET is ideal for power management and motor control applications.
IRFH3702TRPBF Features
- High Drain Current: Capable of handling 16A continuous drain current at 25°C and 42A at case temperature, making it suitable for high-power applications.
- Low On-Resistance: Features a maximum on-resistance (Rds(on)) of 7.1mOhm, ensuring minimal power loss and high efficiency.
- Robust Gate Drive Voltage: Operates with a maximum gate-source voltage (Vgs) of ±20V, providing flexibility in gate drive design.
- Surface Mount Technology: Packaged in an 8-pin PQFN package, allowing for surface mount integration in compact designs.
- Environmental Compliance: Compliant with RoHS3 standards and REACH unaffected, ensuring environmental responsibility and regulatory compliance.
IRFH3702TRPBF Applications
The IRFH3702TRPBF is well-suited for a variety of high-power applications, including:
- Power Management: Ideal for power conversion and regulation in consumer electronics and industrial equipment.
- Motor Control: Capable of handling the high currents and voltages required for motor control in applications such as robotics and automotive systems.
- Industrial Automation: Reliable performance in demanding industrial environments, making it suitable for use in automation and control systems.
Conclusion of IRFH3702TRPBF
The IRFH3702TRPBF from Infineon Technologies offers a combination of high performance, reliability, and environmental compliance that makes it an excellent choice for demanding power management and motor control applications. Its high drain current capability, low on-resistance, and robust gate drive voltage make it a versatile and efficient solution for designers looking to optimize power efficiency and performance in their systems.



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