A deep trench super-junction LDMOS with double charge compensation layer

Author:

Wu Lijuan,Su Shaolian,Chen Xing,Zeng Jinsheng,Wu Haifeng

Abstract

Abstract A deep trench super-junction LDMOS with double charge compensation layer (DC DT SJ LDMOS) is proposed in this paper. Due to the capacitance effect of the deep trench which is known as silicon–insulator–silicon (SIS) capacitance, the charge balance in the super-junction region of the conventional deep trench SJ LDMOS (Con. DT SJ LDMOS) device will be broken, resulting in breakdown voltage (BV) of the device drops. DC DT SJ LDMOS solves the SIS capacitance effect by adding a vertical variable doped charge compensation layer and a triangular charge compensation layer inside the Con. DT SJ LDMOS device. Therefore, the drift region reaches an ideal charge balance state again. The electric field is optimized by double charge compensation and gate field plate so that the breakdown voltage of the proposed device is improved sharply, meanwhile the enlarged on-current region reduces its specific on-resistance. The simulation results show that compared with the Con. DT SJ LDMOS, the BV of the DC DT SJ LDMOS has been increased from 549.5 to 705.5 V, and the R on,sp decreased to 23.7 mΩ·cm2.

Publisher

IOP Publishing

Subject

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

Reference21 articles.

1. A new concept for the lateral DMOS transistor for smart power IC's;Zitouni;11th International Symposium on Power Semiconductor Devices and ICs,1999

2. The trench power MOSFET: Part I—History, technology, and prospects;Williams;IEEE Trans Electron Devices,2017

3. A new junction termination using a deep trench filled with BenzoCycloButene;Theolier;IEEE Electron Device Lett,2009

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