期刊论文详细信息
IEICE Electronics Express
Novel anode Schottky trench contact controlled SOI LIGBT with low loss and snapback-free
article
Chunzao Wang1  Licheng Sun1  Baoxing Duan1  Yingtang Yang1 
[1] Key laboratory of the Ministry of Education for Wide Band-Gap Semiconductor Materials and Devices, School of Microelectronics, Xidian University;Department of Physics and Electronic Information, Shaoxing University
关键词: SOI LIGBT;    Schottky contact;    shorted-anode;    snapback-free;    turn-off loss;    forward voltage drop;   
DOI  :  10.1587/elex.19.20220014
学科分类:电子、光学、磁材料
来源: Denshi Jouhou Tsuushin Gakkai
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【 摘 要 】

The novel shorted-anode silicon-on-insulator lateral insulated gate bipolar transistor (SOI LIGBT) with low loss and snapback-free is proposed and studied by numerical simulation, named the anode Schottky trench contact (ASTC) LIGBT in this paper. Due to the fixed anode resistance, the conventional shorted-anode LIGBT structure has the contradiction between the snapback-free and high forward voltage drop (VF). The novelty of proposed device is that, it makes full use of the lateral space charge region formed by the Schottky trench contact, so as to introduce the changed anode resistance by varying the anode voltage bias (VAC). The low VAC in the on-state achieves completely snapback-free with fully occupied channel by depletion region. The high VAC value in case of the turn-off process achieves fully opening of electron flowing channel with the disappearance of depletion region, which is conducive to the realization of barrier-free process for the electron extraction. Under the same VF of 1.42V at the anode current density JAC=100A/cm2, the turn-off time and turn-off loss (Eoff) of proposed ASTC LIGBT is reduced by 41.5% and 37.9%, respectively, compared with the conventional LIGBT. Therefore, it can be concluded that the proposed ASTC LIGBT achieves the best trade-off performance between VF and Eoff.

【 授权许可】

CC BY   

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