Relaxation of current filament due to RFC technology and ballast resistor for robust FWD operation

A. Nishii, Katsumi Nakamura, F. Masuoka, T. Terashima
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引用次数: 22

Abstract

We have investigated the destruction mechanism of High Voltage (HV) Free Wheeling Diodes (FWD) during a reverse recovery operation. The most possible mode of the destruction phenomena originate in local heating due to current filament at the edge portion of the active area. To achieve a large reverse recovery Safe Operation Area (SOA), we focus on the boundary region between the active area and the termination area. To enforce our Relaxed Field of Cathode (RFC) concept [1, 2], it is more effective for the wider SOA to place a ballast resistance for avoiding the current from crowding around the anode region in the top surface of the diode.
由于RFC技术和稳健的FWD操作的镇流器电阻,电流灯丝的松弛
我们研究了高压自由旋转二极管(FWD)在反向回收过程中的破坏机理。破坏现象的最可能的模式源于由于电流灯丝在有源区域的边缘部分局部加热。为了实现大的反向恢复安全操作区域(SOA),我们重点研究了活动区域和终止区域之间的边界区域。为了加强我们的阴极放松场(RFC)概念[1,2],对于更宽的SOA来说,放置镇流器电阻以避免电流在二极管的上表面的阳极区域周围拥挤是更有效的。
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