期刊文献+
共找到1篇文章
< 1 >
每页显示 20 50 100
Improvement of reverse blocking performance in vertical power MOSFETs with Schottky–drain-connected semisuperjunctions 被引量:1
1
作者 毛维 王海永 +7 位作者 王晓飞 杜鸣 张金风 郑雪峰 王冲 马晓华 张进成 郝跃 《Chinese Physics B》 SCIE EI CAS CSCD 2017年第4期425-432,共8页
To enhance the reverse blocking capability with low specific on-resistance,a novel vertical metal-oxidesemiconductor field-effect transistor(MOSFET) with a Schottky-drian(SD) and SD-connected semisuperjunctions(S... To enhance the reverse blocking capability with low specific on-resistance,a novel vertical metal-oxidesemiconductor field-effect transistor(MOSFET) with a Schottky-drian(SD) and SD-connected semisuperjunctions(SDD-semi-SJ),named as SD-D-semi-SJ MOSFET is proposed and demonstrated by two-dimensional(2D) numerical simulations.The SD contacted with the n-pillar exhibits the Schottky-contact property,and that with the p-pillar the Ohmic-contact property.Based on these features,the SD-D-semi-SJ MOSFET could obviously overcome the great obstacle of the ineffectivity of the conventional superjunctions(SJ) or semisuperjunctions(semi-SJ) for the reverse applications and achieve a satisfactory trade-off between the reverse breakdown voltage(BV) and the specific on-resistance(R_(on)A).For a given pillar width and n-drift thickness,there exists a proper range of n-drift concentration(N),in which the SD-D-semi-SJ MOSFET could exhibit a better trade-off of R_(on)A-BV compared to the predication of SJ MOSFET in the forward applications.And what is much valuable,in this proper range of N,the desired BV and good trade-off could be achieved only by determining the pillar thickness,with the top assist layer thickness unchanged.Detailed analyses have been carried out to get physical insights into the intrinsic mechanism of R_(on)A-BV improvement in SD-D-semi-SJ MOSFET.These results demonstrate a great potential of SD-D-semi-SJ MOSFET in reverse applications. 展开更多
关键词 vertical MOSFET Schottky-drain-connected semisuperjunction (SD-D-semi-SJ) reverse block- ing specific on-resistance
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部