DocumentCode :
1909152
Title :
Supply voltage strategies for minimizing the power of CMOS processors
Author :
Jin Cai ; Yuan Taur ; Shih-Fen Huang ; Frank, D.J. ; Kosonocky, S. ; Dennard, R.H.
Author_Institution :
IBM Thomas J. Watson Res. Center, Yorktown Heights, NY, USA
fYear :
2002
fDate :
11-13 June 2002
Firstpage :
102
Lastpage :
103
Abstract :
This paper presents a dual supply voltage strategy for reduction of the total (static and dynamic) power of high performance CMOS processors. By expressing CMOS delay, static power, and dynamic power in terms of the power supply voltage V/sub DD/ and threshold voltage V/sub T/, an optimization procedure that takes the circuit activity factor into account is performed to find the V/sub DD/ and V/sub T/ for minimum total power at given performance levels. It is shown that 50% power reduction or 20% performance enhancement can be attained by adopting both a low (0.5 V) supply voltage for high-activity circuits and a high (1.2 V) supply voltage for low-activity circuits in a 100 nm-node CMOS technology.
Keywords :
CMOS digital integrated circuits; circuit optimisation; delays; integrated circuit measurement; integrated circuit modelling; low-power electronics; microprocessor chips; power supply circuits; 0.5 V; 1.2 V; 100 nm; CMOS delay; CMOS processors; CMOS technology; circuit activity factor; dual supply voltage strategy; dynamic power; high-activity circuits; low-activity circuits; minimum total power; optimization procedure; power minimization; power supply voltage; processor performance levels; static power; threshold voltage; CMOS process; CMOS technology; Clocks; Delay estimation; Frequency estimation; Inverters; MOSFET circuits; Semiconductor device modeling; Switching circuits; Threshold voltage;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
VLSI Technology, 2002. Digest of Technical Papers. 2002 Symposium on
Conference_Location :
Honolulu, HI, USA
Print_ISBN :
0-7803-7312-X
Type :
conf
DOI :
10.1109/VLSIT.2002.1015408
Filename :
1015408
Link To Document :
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