DocumentCode :
1408136
Title :
An energy-efficient noise-tolerant dynamic circuit technique
Author :
Wang, Lei ; Shanbhag, Naresh R.
Author_Institution :
Coordinated Sci. Lab., Illinois Univ., Urbana, IL, USA
Volume :
47
Issue :
11
fYear :
2000
fDate :
11/1/2000 12:00:00 AM
Firstpage :
1300
Lastpage :
1306
Abstract :
Noise in deep submicron technology combined with the move toward dynamic circuit techniques have raised concerns about reliability and energy efficiency of VLSI systems in the deep submicron era. To address this problem, a new noise-tolerant dynamic circuit technique is presented. The average noise threshold energy (ANTE) and the energy normalized ANTE (NANTE) metrics are proposed to quantify the noise immunity and energy efficiency, respectively. Simulation results in 0.35-μm CMOS for NAND gate and full-adder designs indicate that the proposed technique improves the ANTE and NANTE by 2× and 1.4× over conventional domino circuits. The improvement in the NANTE is 11% higher than the existing noise-tolerance techniques. Furthermore, the proposed technique has a smaller area overhead (36%) as compared to static circuits whose area overhead is 60%. Also presented in this paper is an ASIC developed in 0.35-μm CMOS to evaluate the performance of the proposed technique. Experimental results demonstrate a 27% average improvement in noise immunity over conventional dynamic circuits.
Keywords :
CMOS integrated circuits; VLSI; adders; application specific integrated circuits; integrated circuit design; integrated circuit noise; logic gates; 0.35 micron; ANTE; ASIC; CMOS VLSI; NAND gate; NANTE; average noise threshold energy; deep submicron technology; dynamic circuit design; energy efficiency; full-adder; noise immunity; noise tolerance; normalized average noise threshold energy; reliability; Application specific integrated circuits; CMOS technology; Circuit noise; Circuit simulation; Crosstalk; Energy efficiency; Integrated circuit noise; Power system reliability; Threshold voltage; Very large scale integration;
fLanguage :
English
Journal_Title :
Circuits and Systems II: Analog and Digital Signal Processing, IEEE Transactions on
Publisher :
ieee
ISSN :
1057-7130
Type :
jour
DOI :
10.1109/82.885137
Filename :
885137
Link To Document :
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