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A New Resonant Gate Drive Circuit for Synchronous Buck Converter

机译:同步降压转换器的新型谐振门驱动电路

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摘要

This paper proposes a new resonant gate drive circuit for driving both the control metal oxide semiconductor field effect transistor (MOSFET) and synchronous MOSFET in a synchronous buck converter. The circuit can recover more than 70% of the conventional gate drive loss. More importantly, the driving circuit can also reduce the switching loss. It charges and discharges the gate of MOSFET at a constant current during switching interval. Other advantages of the proposed circuit include better noise immunity for dv/dt turn on, less sensitive to parasitic track inductance. The experimental prototype shows that the loss reduction is 10% of the output power for 12 V input, 1.5 V/15 A output with switching frequency of 1 MHz.
机译:本文提出了一种新的谐振栅极驱动电路,用于驱动同步降压转换器中的控制金属氧化物半导体场效应晶体管(MOSFET)和同步MOSFET。该电路可以弥补传统栅极驱动损耗的70%以上。更重要的是,驱动电路还可以减少开关损耗。在开关间隔期间,它以恒定电流对MOSFET的栅极充电和放电。拟议电路的其他优点包括,对于dv / dt导通,具有更好的抗噪声能力,对寄生走线电感的灵敏度较低。实验原型表明,在开关频率为1 MHz的情况下,对于12 V输入,1.5 V / 15 A输出,损耗降低为输出功率的10%。

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