DocumentCode
1962916
Title
Source/drain optimization of the dynamic-threshold DTMOS device in a 0.15 μm SOI embedded DRAM technology
Author
Burke, F. ; Rambhatla, A. ; Zahurak, J. ; Parke, S.
Author_Institution
Dept. of Electr. & Comput. Eng., Boise State Univ., ID, USA
fYear
2003
fDate
30 June-2 July 2003
Firstpage
336
Lastpage
337
Abstract
This paper describes experimental results used to optimize the source/drain implant design of a dynamic threshold DTMOS n-channel device, fabricated within a low-cost 0.15 μm SOI CMOS System-On-Chip process, which also included high-density embedded DRAM. A shallower, lower dose S/D implant was found to lower the body resistance and DIBL, thus increasing the dynamic body effect. The DTMOS device design in this process was previously found to be superior to both grounded body (GB) and floating body (FB) operation, with Ion=56 uA/μm, Ioff=3 pA/μm, S=64 mV/dec, and Gm=1690 uS/μm at Vdd=1.0 V. This DTMOS device was also previously shown to have excellent analog and RF performance, with Fmax=32 GHz. These characteristics permit embedded ultra-low-voltage analog circuits and RF front-end circuits in combination with embedded DRAM cores for ultra-low-power, low-cost SOCs.
Keywords
CMOS memory circuits; DRAM chips; MOSFET; analogue circuits; analogue integrated circuits; electric resistance; silicon-on-insulator; system-on-chip; 0.15 micron; 1.0 V; 32 GHz; RF front-end circuits; SOC; SOI CMOS system-on-chip process; SOI embedded DRAM technology; body resistance; dynamic-threshold digital threshold MOS device; floating body; grounded body; source/drain optimization; ultra-low-voltage analog circuits; Analog circuits; CMOS process; CMOS technology; Design optimization; Immune system; Implants; Process design; Radio frequency; Random access memory; System-on-a-chip;
fLanguage
English
Publisher
ieee
Conference_Titel
University/Government/Industry Microelectronics Symposium, 2003. Proceedings of the 15th Biennial
ISSN
0749-6877
Print_ISBN
0-7803-7972-1
Type
conf
DOI
10.1109/UGIM.2003.1225758
Filename
1225758
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