Product introduction:
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The T9610-VB is a high voltage unipolar N-channel MOSFET in a TO220 package designed for medium to high voltage power management and switching applications. With a drain-source voltage (VDS) of 650V, this MOSFET is suitable for high voltage power conversion and high current applications. With a gate threshold voltage (Vth) of 3.5V and an on-resistance (RDS(ON)) of 500mΩ at VGS=10V, the T9610-VB is suitable for applications that require stable on-state characteristics. Despite the relatively high RDS(ON), its maximum drain current (ID) is 9A, making it suitable for high voltage environments with low current requirements. Using SJ_Multi-EPI technology, the T9610-VB has good thermal stability and low switching losses, making it suitable for use in high frequency, high voltage switching environments.
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Domain and module applications:
Examples**
The 650V drain-source voltage of the T9610-VB makes it ideal for applications such as high-voltage power management systems, AC-DC power converters, and inverters. It provides stable power conversion with high efficiency and reliability in high-voltage environments such as solar inverters, UPS systems, and power distribution and regulation systems.
In addition, the T9610-VB is also widely used in industrial automation, power tools, power electronics, and high-power motor drive systems. With a maximum drain current of 9A, it is suitable for current switching operations in power tools, battery chargers, and high-power control modules. In particular, in AC-DC power modules, motor controllers, and power conversion systems, it can improve overall system efficiency by reducing switching losses and improving thermal management performance.
Although the T9610-VB has a relatively high RDS(ON), it still provides sufficient performance in high-voltage applications that do not require excessively high current loads, such as home power management and communication equipment power modules. By adopting SJ_Multi-EPI technology, T9610-VB performs well in high-frequency working environments such as high-voltage switching power supplies and inverters.
* Please note: the above is only an example application scenario, the specific application depends on the requirements and conditions of the system design. When using this device, consult its data sheet for detailed technical specifications and features
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