DocumentCode :
3205933
Title :
Design of a nanoscale Quantum-dot Cellular Automata Configurable Logic Block for FPGAs
Author :
Balijepalli, Hemant ; Niamat, Mohammed
Author_Institution :
Dept. of Electr. Eng. & Comput. Sci., Univ. of Toledo, Toledo, OH, USA
fYear :
2012
fDate :
5-8 Aug. 2012
Firstpage :
622
Lastpage :
625
Abstract :
This paper presents a novel design of a Configurable Logic Block (CLB) for a Field Programmable Gate Array (FPGA) based on a computing scheme in nanoscale technology called the Quantum-dot Cellular Automata (QCA). In QCA technology, the cells made of quantum dots transmit information from one cell to the other based on Coulombic repulsion between the electrons. The main goal behind the design of the CLB is to ultimately design a miniscule nano FPGA without transistors for the `beyond CMOS era´ of the 2020s. Unlike previous research in this area, the attempt here is to take advantage of the unique QCA features in building the architecture. It is found that the proposed CLB has less latency and occupies less number of cells as compared to earlier designs. Different components of the CLB including a (4×16) decoder, a D-latch, a multiplexer and an RS-flip flop are designed, and simulated using the QCADesigner tool for functional correctness.
Keywords :
cellular automata; field programmable gate arrays; flip-flops; quantum dots; Coulombic repulsion; FPGA; QCADesigner tool; RS flip flop; computing scheme; field programmable gate array; functional correctness; multiplexer; nanoscale quantum dot cellular automata configurable logic block; nanoscale technology; Clocks; Decoding; Field programmable gate arrays; Layout; Logic gates; Multiplexing; Table lookup; Configurable Logic Block; Field Programmable Gate Array; Quantum-dot Cellular Automata;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Circuits and Systems (MWSCAS), 2012 IEEE 55th International Midwest Symposium on
Conference_Location :
Boise, ID
ISSN :
1548-3746
Print_ISBN :
978-1-4673-2526-4
Electronic_ISBN :
1548-3746
Type :
conf
DOI :
10.1109/MWSCAS.2012.6292097
Filename :
6292097
Link To Document :
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