DocumentCode :
3440752
Title :
System LSI multi-vth transistors design methodology for maximizing efficiency of body-biasing control to reduce vth variation and power consumption
Author :
Yasuda, Y. ; Kimizuka, N. ; Akiyama, Y. ; Yamagata, Y. ; Goto, Y. ; Imai, K.
Author_Institution :
Adv. Technol. Dev. Div., NEC Electron. Corp., Kanagawa
fYear :
2005
fDate :
5-5 Dec. 2005
Firstpage :
68
Lastpage :
71
Abstract :
In this paper, we describe newly developed multi-Vth transistors design scheme operable for body-biasing control for 65nm-node and beyond. The major issue of body-biasing control on system LSI comprising multi-Vth is that different Vth transistor exhibit different body-biasing sensitivities rendering body-biasing control scheme unfeasible. We have successfully solved the issue by Hf-based dielectric work-function (WF) modulation combined with optimal channel design, with which Vth shift amount under the same body-biasing is equalized among transistors having different Vth. The net result is the excellent body-biasing controllability as well as well-suppressed GIDL and Vth variation. Moreover, die to die Vth variation has been effectively reduced even for dies with multi-Vth transistors using body-biasing. We believe that this methodology is the most suitable for future low power system LSI application due to its simplicity and bulk-design inheritability
Keywords :
field effect integrated circuits; hafnium; integrated circuit design; large scale integration; work function; 65 nm; Hf; LSI; body-biasing control; dielectric work-function modulation; multi-Vth transistors design; optimal channel design; Control systems; Controllability; Design methodology; Dielectrics; Energy consumption; Impurities; Large scale integration; National electric code; Power systems; Power transistors;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electron Devices Meeting, 2005. IEDM Technical Digest. IEEE International
Conference_Location :
Washington, DC
Print_ISBN :
0-7803-9268-X
Type :
conf
DOI :
10.1109/IEDM.2005.1609268
Filename :
1609268
Link To Document :
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