A novel 3.3 kV 4H-SiC trench PiN with enhanced conductance modulation effect

Author:

Zhang YourunORCID,Ou Yanggang,Luo Jiamin,Wang Shuai,Zhang Bo,Niu Yingxi

Abstract

Abstract A novel 3.3 kV rated 4H-SiC trench PiN (T-PiN) structure, which features a trench P+ layer, is proposed and experimentally demonstrated. For the T-PiNs, dry etch onto the N-drift layer is added to the manufacturing process of conventional PiNs (Con-PiNs) before the Al ion implantation step. As the experimental results show, the forward current of the T-PiN diode with an active area of 5 mm × 5 mm has been improved by 32.3% at a voltage of 4 V. Apart from a slight sacrifice in breakdown voltage, the T-PiN is identical to the Con-PiN with regard to other static and surge current capabilities and dynamic characteristics. This superior forward conduction ability of the T-PiNs is a result of enhanced anode carrier injection caused by an enhanced conductance modulation effect and a larger anode carrier injection area. An enhanced conductance modulation effect model was also set up to quantify the increase in the proportion of current density in the T-PiN.

Funder

the major science and technology program of Anhui province

the Science Challenge Project under Grant

Publisher

IOP Publishing

Subject

Materials Chemistry,Electrical and Electronic Engineering,Condensed Matter Physics,Electronic, Optical and Magnetic Materials

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Advanced Vertical Diamond Diodes with Trench Structure towards High Performances;2023 20th China International Forum on Solid State Lighting & 2023 9th International Forum on Wide Bandgap Semiconductors (SSLCHINA: IFWS);2023-11-27

2. Trenched diamond PN junction diode with enhanced conductance modulation effect designed by simulation;Microelectronics Journal;2023-09

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