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Modeling Low- Voltage Power MOSFETs as Synchronous Rectifiers in Buck Converter Applications

机译:利用低压功率MOSFET在降压转换器应用中将低压功率MOSFET为同步整流器

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This paper proposes a two-dimensional model of low-voltage power MOSFETs, which are suitable for synchronous rectifier applications. First of all, the device has been characterized by measuring the output (I-V) and transfer characteristics, the capacitance curves (C-V), the breakdown voltage, the body-drain diode characteristic (I-V) and the reverse recovery performance. Hence, a device model was derived through a two-dimensional (2D) process simulator. Finally, advanced 2D mixed device and circuit simulations have been carried out finding a good agreement with the experimental results. The aim of this work is to give a contribution to the analysis and design of such devices, looking for the actual power converter applications, by exploiting the enormous potential of modern CAD tools. Simulation runs relative to a synchronous-rectifier buck-converter have been performed too, in order to verify the correctness and validity of the MOSFET model, and also to investigate the internal dynamics of the main switch and the synchronous rectifier during the behavior on the application.
机译:本文提出了一种低压功率MOSFET的二维模型,适用于同步整流器应用。首先,该装置的特征在于测量输出(I-V)和传递特性,电容曲线(C-V),击穿电压,体漏极二极管特性(I-V)和反向恢复性能。因此,通过二维(2D)处理模拟器导出设备模型。最后,已经进行了先进的2D混合设备和电路模拟,并进行了与实验结果的良好一致性。这项工作的目的是通过利用现代CAD工具的巨大潜力,为这些设备的分析和设计提供对此类设备的分析和设计的贡献。模拟相对于同步整流器降压器也运行,以验证MOSFET模型的正确性和有效性,还可以在应用程序上的行为期间调查主开关和同步整流器的内部动态。 。

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