材料科学
阻塞(统计)
制作
工艺变化
指数函数
光电子学
电压
功率半导体器件
空间电荷
过程(计算)
计算机科学
电气工程
数学
物理
工程类
数学分析
病理
计算机网络
电子
操作系统
医学
量子力学
替代医学
标识
DOI:10.35848/1347-4065/abe5c4
摘要
Abstract We propose a new multi-floating-zone junction-termination-extension (MFZ-JTE) using an exponentially modulated space and width for 4.5 kV SiC power devices to effectively spread out the electric field in reverse blocking mode and improve the tolerance against imprecise process control. A modified MFZ-JTE design with an exponential model was also proposed considering a stable patterning process. The blocking characteristics of the proposed MFZ-JTE using various exponential coefficients ( α ) in the model were evaluated for undesirable variations in the fabrication processes through TCAD simulations. The modified design for a 4.5 kV MFZ-JTE with α = 0.046 exhibited a low breakdown voltage deviation of 0.13% when the space variation ranged from –0.2 to +0.2 μ m and 0.14% when the variation in the surface charge density at the SiO 2 /SiC interface was within the range of 0 to –1 × 10 12 cm –3 .
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