surge) i'/> Semi-Theoretical Prediction of Turn-off Surge Voltage in a SiC MOSFET Power Module with an Embedded DC-link Decoupling Capacitor
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Semi-Theoretical Prediction of Turn-off Surge Voltage in a SiC MOSFET Power Module with an Embedded DC-link Decoupling Capacitor

机译:具有嵌入式直流母线去耦电容器的SiC MOSFET功率模块中关断浪涌电压的半理论预测

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This paper presents a semi-theoretical method for predicting the turn-off surge voltage (Vsurge) in double-pulse test (DPT) using a power module (PM) with serially-connected SiC MOSFET transistors structuring half-bridge, in which module a DC-link decoupling capacitor is also embedded. The circuit equations are simplified based on the fact that the MOSFETs act as their own parasitic capacitance, diode, or resistor having channel resistance (Rch) in their transient modes, but the drain-source voltage (Vds) dependency of the capacitances and gate-source voltage dependent Rch are taken into circuit behavior calculations. The partial element equivalent circuit (PEEC) method is used to estimate the stray inductances (Ls) of the PM. Other Ls’s are empirically obtained by impedance measurement and preliminarily performed switching waveforms. Finally, multiple Kirchhoff’s laws-based equations are simultaneously solved. This calculation process is semi-theoretical, and sufficiently predicts the Vsurge observed in DPT performed under various conditions.
机译:本文提出了一种半理论方法来预测关断浪涌电压(V 浪涌 )在双脉冲测试(DPT)中使用功率模块(PM)和串联连接的构成半桥的SiC MOSFET晶体管,其中还嵌入了一个直流母线去耦电容器。基于MOSFET充当其自身的寄生电容,二极管或具有沟道电阻(R ch )处于瞬态模式,但漏源电压(V ds )电容的依赖性和栅极-源极电压的依赖性R ch 被用于电路行为计算。使用部分元件等效电路(PEEC)方法来估计杂散电感(L s )。通过阻抗测量和初步执行的开关波形,可以凭经验获得其他Ls。最后,同时解决了多个基尔霍夫定律方程。此计算过程是半理论的,可以充分预测V 浪涌 在各种条件下进行的DPT中观察到的结果。

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