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The study of the electrothermal property of high-voltage drain-extended MOSFETs
Journal article   Peer reviewed

The study of the electrothermal property of high-voltage drain-extended MOSFETs

Chen-Liang Chu, Chih-Min Hu, Chung-Yu Hung, Jeng Gong, Chih-Fang Huang, Fei-Yun Chen, Ruey-Hsin Liou and Hsiao-Chin Tuan
IEEE Transactions on Electron Devices, Vol.59(4), pp.1149-1154
04/2012

Abstract

Drain-extended metal-oxide-semiconductor field-effect transistors (DEMOSFETs) self-heating effect surface electric field temperature distribution
In this paper, the relation between the surface electric field and the temperature distribution dependence on the drift-region doping concentration in a 30-V asymmetric drain-extended MOSFET is studied. For the case of high drift-region concentration, the drain resistance is low, and the current density is high, which induces a high nonuniform temperature distribution in the transistor, which in turn reduces the carrier mobility and causes a negative drain resistance. For the case of low drift-region concentration, a uniform temperature distribution is obtained. However, the different drift-region concentration changes the location of the maximum temperature from the gate-overlapped drift region for the high concentration case to the drain-side contact region for the low concentration case under the high V GS and V DS conditions. Therefore, the self-heating effect is also changed by the redistribution of the electric field in the drift region. © 2006 IEEE.

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