High-Performance 650V CoolMOS™ Power Transistor IPAW60R180P7S for Efficient Switching Applications

Release date:2025-10-29 Number of clicks:63

High-Performance 650V CoolMOS™ Power Transistor IPAW60R180P7S for Efficient Switching Applications

The demand for high-efficiency and robust power conversion systems continues to grow across industries such as renewable energy, industrial automation, and consumer electronics. Addressing this need, the IPAW60R180P7S, a 650V CoolMOS™ power transistor, stands out as a premier solution for high-performance switching applications. Engineered with advanced superjunction technology, this device delivers an exceptional balance of low switching losses and high reliability, making it ideal for modern power supplies, motor drives, and photovoltaic inverters.

A key feature of the IPAW60R180P7S is its ultra-low on-state resistance (RDS(on)) of 180 mΩ, which significantly reduces conduction losses and improves overall system efficiency. This allows designers to achieve higher power density without compromising thermal performance. The transistor’s optimized gate charge (Qg) ensures fast switching characteristics, minimizing transition losses and enabling operation at higher frequencies. This is particularly beneficial in applications like server power supplies and EV charging stations, where efficiency and compact design are critical.

The device also incorporates strong robustness against extreme operating conditions. It offers excellent avalanche ruggedness and high dv/dt capability, enhancing system durability in demanding environments. Additionally, the IPAW60R180P7S is designed with a low gate threshold voltage, simplifying drive circuit design and reducing component count. Its compliance with RoHS and halogen-free standards further underscores its suitability for eco-conscious applications.

ICGOOODFIND: The IPAW60R180P7S sets a new benchmark in power transistor technology by combining high voltage capability, minimal losses, and superior switching performance. It empowers engineers to develop next-generation power systems that are both efficient and compact.

Keywords:

1. CoolMOS™ Technology

2. High Efficiency

3. Low RDS(on)

4. Fast Switching

5. Avalanche Ruggedness

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