DocumentCode :
597209
Title :
Ambipolar double gate CNTFETs based reconfigurable Logic cells
Author :
Jabeur, Kotb ; O´Connor, I. ; Le Beux, Sebastien ; Navarro, D.
Author_Institution :
Lyon Inst. of Nanotechnol., Ecole Centrale de Lyon, Ecully, France
fYear :
2012
fDate :
4-6 July 2012
Firstpage :
7
Lastpage :
13
Abstract :
This paper presents 2-input cells designed to perform reconfigurable operations in nanometric systems exploiting the ambipolar property of double-gate (DG) carbon nanotube (CNT) FETs. Previous work [12] described a dynamic logic cell generating only 14 functions instead of 16 normally performed by the multiplexer-based logic part of a CLB (Configurable Logic Block) of an FPGA for 2-inputs. In this work, a reconfigurable 2-input dynamic logic cell designed using DG-CNTFET devices is able to achieve a more complete set of functions by exploiting sum of products (SOP) and product of sums (POS) to express logic functions. We also demonstrated that a static logic version can be derived from this dynamic cell. Simulations reveal improvement factor of 3X in terms of delay and 23% of decrease in power consumption compared with the previous work [12]. When compared with 16nm-CMOS Technology, DG-CNTFET cells (dynamic logic and static logic style) showed a comparable PDP with a slight increase in area.
Keywords :
CMOS logic circuits; carbon nanotube field effect transistors; field programmable gate arrays; CLB; CMOS technology; DG carbon nanotube FET; DG-CNTFET devices; FPGA; ambipolar double-gate CNTFET; configurable logic block; dynamic logic; logic functions; multiplexer-based logic part; nanometric systems; power consumption; reconfigurable 2-input dynamic logic cell; size 16 nm; static logic style; static logic version; CMOS integrated circuits; CNTFETs; Integrated circuit modeling; Logic gates; Performance evaluation; Semiconductor device modeling; Ambipolarity; CNTFET; Carbone nanotubes; Reconfigurable Logic; double gate;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Nanoscale Architectures (NANOARCH), 2012 IEEE/ACM International Symposium on
Conference_Location :
Amsterdam
Print_ISBN :
978-1-4503-1671-2
Type :
conf
Filename :
6464137
Link To Document :
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