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卫健学术沙龙:基于5G+人工智能的心理/精神健康服务与管理体系建设
Gauging spacetime inversions
AI合成化学前沿与战略研讨会暨国家智能化学数据中心启动会
Macro to micro- and nano-scale fluidic engineering for analytical chemistry
报告题目:
Scaling to 10 nm—Bulk, SOI or Double-Gate MOSFETs
 报告人:
Prof. Yuan TaurDept.
Prof. Yuan TaurDept. of Electrical and 
Computer Engineering, University of 
California, San Diego
报告时间:
2006-10-27 14:00
报告地点:
清华大学微电子所302会议室
主办单位:
清华大学微电子所
  简介:

内容简介:

In this talk, the potential for bulk CMOS, SOI CMOS, and double-gate CMOS to extend scaling to 10 nm channel length is assessed.  In addition to the required replacement of silicon dioxide and polysilicon gates by high-k insulator and metal gates for all device types, specific technology requirements are discussed for each device type.  10 nm bulk CMOS requires abrupt placement of n- and p-type dopants at >1019 cm-3 levels for both the channel and the source-drain regions.  10 nm SOI CMOS requires the silicon film thickness to be scaled to its quantum limit of 2 nm.  The silicon film thickness requirement is somewhat relaxed in a double-gate device structure.  But the self-alignment requirement of a double-gate (or multi-gate) device makes it very challenging to realize a manufacturable process.  It remains a challenge to ultimately scale CMOS technology to 10 nm.

报告人简介:

Yuan Taur received the Ph.D. degree in physics from University of California, Berkeley. From 1981 to 2001, he was a Research Staff Member with IBM Thomas J. Watson Research Center, Yorktown Heights, New York.  Since October 2001, he is professor in the Department of Electrical and Computer Engineering, University of California, San Diego.  Dr. Taur is elected a Fellow of the IEEE in 1998.  He is currently the Editor-in-Chief of IEEE Electron Device Letters, and Program Chairman of 2002 Symposium on VLSI Technology.  Dr. Taur’s current research interest is in advanced CMOS devices and their scaling limits.  He co-authored a book, “Fundamentals of Modern VLSI Devices,” published in 1998.

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