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Assist Gate Driver Circuit on Crosstalk Suppression for SiC MOSFET Bridge Configuration

机译:辅助闸门驱动电路对SiC MOSFET桥式配置的串扰抑制

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摘要

Crosstalk in a phase-leg configuration significantly limits the high switching speed performance of silicon carbide (SiC) MOSFET due to their lower threshold voltage and higher allowable negative gate voltage as compared with the traditional silicon (Si). To fulfill the potential fast switching speed quality of SiC MOSFET, an assist gate driver (AGD) circuit for crosstalk suppression based on the negative-biased turn-off voltage was proposed, which contains an auxiliary capacitor and two passive transistors without additional control signals. First, a recommended gate driver by several SiC device manufacturers was introduced to analyze the mechanism of crosstalk. Then, the operating principle of the proposed AGD circuit was elaborated, and the parameter design criteria of the main elements were given. Finally, a simulation using LTspice and an experiment based on Wolfspeed 1200-V SiC MOSFET tests were used to verify the effectiveness of the proposed gate driver. Simulation and experimental results show that the AGD circuit has a superior characteristic of crosstalk suppression under varying operating conditions. Thus, the proposed circuit could meet the fastidious requirement of fast-speed SiC MOSFET under high dc voltage condition with less complexity.
机译:相对于传统硅(Si)相比,相位腿部配置中的串扰显着限制了碳化硅(SiC)MOSFET的高开关速度性能和较高的允许负栅极电压。为了满足SiC MOSFET的潜在快速切换速度质量,提出了一种基于负偏置关断电压的串扰抑制的辅助栅极驱动器(AGD)电路,其包含辅助电容器和两个无需额外控制信号的无源晶体管。首先,推出了几种SIC器件制造商的推荐门驱动器分析了串扰的机制。然后,阐述了所提出的AGD电路的操作原理,并给出了主要元素的参数设计标准。最后,使用基于Wolfspeed 1200-V SiC MOSFET测试的使用LTSPICE和实验的模拟来验证所提出的栅极驱动器的有效性。仿真和实验结果表明,在不同的操作条件下,AGD电路具有串扰抑制的优异特性。因此,所提出的电路可以在高直流电压条件下满足快速SiC MOSFET的苛刻要求,具有较差的复杂性。

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