DocumentCode
261153
Title
Asynchronous fine-grain power-gated logic
Author
Karthikeyan, G. ; Manickavasagam, S.
Author_Institution
Appl. Electron., Jerusalem Coll. of Eng., Chennai, India
fYear
2014
fDate
27-28 Feb. 2014
Firstpage
1
Lastpage
6
Abstract
With the increasing popularity of battery-driven portable electronics, there is a growing demand for low-power circuit designs. In a typical CMOS digital circuit, power dissipation can be categorized into the dynamic power dissipation, leakage power dissipation, and short-circuit power dissipation. While dynamic power dissipation remains to be the most dominant in many digital circuits, leakage power dissipation has become increasingly more significant especially when the fabrication process enters into deep-sub-micro- or nano-meter-scaled ranges. Asynchronous circuits are well-known for their benefits in terms of dynamic power savings, because asynchronous logic does not switch when inactive. Nevertheless, in deep submicron technologies, leakage currents have become an increasing issue, and thus asynchronous circuits need to focus on reducing power consumption. The project proposed method is an innovative way to reduce power consumption by low-power logic family, called asynchronous fine-grain power-gated logic (AFPL). Here the comparison of power consumption of the proposed system with conventional system was also done.
Keywords
CMOS digital integrated circuits; asynchronous circuits; cooling; logic gates; low-power electronics; power electronics; short-circuit currents; CMOS digital circuit; asynchronous circuits; asynchronous fine-grain power-gated logic; battery-driven portable electronics; deep-sub-micrometer scaled ranges; dynamic power dissipation; dynamic power savings; leakage power dissipation; low-power circuit designs; low-power logic family; nanometer scaled ranges; short-circuit power dissipation; Asynchronous circuits; CMOS integrated circuits; Logic gates; Pipelines; Silicon; Switching circuits; Transistors; Asynchronous circuits; logic gates; low-power electronics; power gating;
fLanguage
English
Publisher
ieee
Conference_Titel
Information Communication and Embedded Systems (ICICES), 2014 International Conference on
Conference_Location
Chennai
Print_ISBN
978-1-4799-3835-3
Type
conf
DOI
10.1109/ICICES.2014.7034038
Filename
7034038
Link To Document