1500 V, 4 amp 4H-SiC JBS diodes

R. Singh, S. Ryu, J. Palmour, A. Hefner, J. Lai
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引用次数: 32

Abstract

This paper reports the detailed design, fabrication and characterization of 1500 V, 4 Amp 4H-SiC JBS diodes. 2D device simulations show that a grid spacing of 4 /spl mu/m results in the most optimum trade-off between the on-state and off-state characteristics. JBS diodes with linear and honeycombed p/sup +/ grids, Schottky diodes and implanted PiN diodes fabricated alongside show that while 4H-SiC JBS diodes behave similar to Schottky diodes in the on-state and switching characteristics, they show reverse characteristics similar to PiN diodes. Measurements on 4H-SiC JBS diodes indicate that the reverse recovery time (/spl tau//sub n/) and associated losses are near zero even at a rev. dI/dt of 75 A//spl mu/sec. Based on measured waveforms, detailed loss models on diode switching were established for a high frequency switching power supply efficiency evaluation. A DC/DC converter efficiency improvements of 3-6% were obtained over the fastest, lower blocking voltage silicon diode when operated in the 100-200 kHz range.
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1500 V, 4安培4H-SiC JBS二极管
本文报道了1500 V, 4安培4H-SiC JBS二极管的详细设计,制作和表征。二维器件仿真表明,4 /spl mu/m的栅格间距可以在导通状态和非导通状态特性之间实现最佳平衡。具有线性和蜂窝状p/sup +/栅格的JBS二极管、肖特基二极管和植入PiN二极管显示,虽然4H-SiC JBS二极管在导通状态和开关特性上与肖特基二极管相似,但它们表现出与PiN二极管相似的反向特性。对4H-SiC JBS二极管的测量表明,即使在转速dI/dt为75 a //spl mu/sec时,反向恢复时间(/spl tau//sub /)和相关损耗也接近于零。基于实测波形,建立了用于高频开关电源效率评估的二极管开关损耗模型。当工作在100-200 kHz范围内时,与速度最快、阻塞电压较低的硅二极管相比,DC/DC变换器效率提高了3-6%。
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