DocumentCode
1790971
Title
QCA based sequential and combinational circuit design and importance of parasitic components
Author
Saifee, Huzefa ; Mehrotra, Akhil ; Sarma, Raktim
Author_Institution
Dept. of Electron. & Commun. Eng., LPU, Phagwara, India
fYear
2014
fDate
12-13 July 2014
Firstpage
541
Lastpage
546
Abstract
As the scaling of transistors has reached its nadir [6], [7], the valid replacement for the CMOS technology to achieve further advancements in the circuits, on the parameters of low power and area occupancy has become an immediate necessity. QCA is one of the greatest potential device technologies ever proposed till date, for the replacement of CMOS Technology. This paper presents the basic theory of Quantum dots with the technology involved in its fabrication, followed by the introduction of QCA including its fundamental concepts i.e. polarization and clocking and, its basic gate (inverter, majority gate) implementations. The working mechanism of complex circuit is given deep glance and, the problems faced during their implementation and working are identified. JK Flip-Flop is used as an example of complex circuitry to understand mechanism and identify problems. At last, the solutions for the identified problems are provided. The output waveforms are provided to demonstrate the behavior of faulty as well as the modified fault free circuits. These designs are captured and simulated using a designing tool called QCA Designer.
Keywords
CMOS logic circuits; combinational circuits; flip-flops; logic design; semiconductor quantum dots; sequential circuits; CMOS technology; JK flip-flop; QCA based combinational circuit design; QCA based sequential circuit design; parasitic components; quantum dots; Clocks; Leakage currents; Logic gates; Table lookup; CMOS technology; Clock; Polarization; QCA; QCADesigner;
fLanguage
English
Publisher
ieee
Conference_Titel
Signal Propagation and Computer Technology (ICSPCT), 2014 International Conference on
Conference_Location
Ajmer
Print_ISBN
978-1-4799-3139-2
Type
conf
DOI
10.1109/ICSPCT.2014.6884912
Filename
6884912
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