Jeking Daily Post: CR4N65A3K

#N-Channel, #650V, #4A, #MOSFET, #TO-252 **Product Overview** The CR4N65A3K is a high-voltage N-channel MOSFET developed by CR Micro (Huari HuaJing), designed for power switching applications requiring reliability and efficiency. Housed in a compact TO-251 package, this device features a 650V drain-source voltage rating and a continuous drain current of 4A, making it suitable for a wide range of medium-power systems. With an on-resistance (RDS(on)) of 2.8Ω at VGS = 10V, the CR4N65A3K delivers stable performance in power conversion circuits while maintaining low conduction losses. **Key Features and Electrical Performance** This MOSFET boasts excellent electrical characteristics, including a low gate charge (Qg) of 15.8nC and input capacitance (Ciss) of 564pF, contributing to fast switching speeds and reduced drive power. Its reverse transfer capacitance (Crss) is only 2.4pF, minimizing noise and improving system stability in high-frequency operations. The device operates within a broad temperature range from -55°C to +150°C, ensuring robustness under extreme conditions. Additionally, the CR4N65A3K meets RoHS standards, reflecting its compliance with environmental safety requirements. **Typical Application Scenarios** The CR4N65A3K is widely used in AC-DC adapters, LED lighting drivers, power supplies for consumer electronics, and motor control circuits. Its high breakdown voltage and thermal stability make it ideal for industrial power systems, home appliances, and smart power modules where space and efficiency are critical. **Partner with Jeking Electronic Limited** Jeking Electronic Limited is a trusted distributor of semiconductor solutions, offering comprehensive support for customers integrating the CR4N65A3K into their designs. With extensive inventory and technical expertise, Jeking ensures timely delivery and application guidance, helping engineers accelerate product development and optimize performance. Choose Jeking Electronic Limited as your reliable partner in advanced power management innovation.

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