원문정보
초록
영어
In last few decades, typical lithography based VLSI technology used to improve higher scale integration, low switching speed and low powered computing of semiconductor constituents. However, this trend meets severe challenges of tunneling, short-channel effects andleakage current. Quantum-dot Cellular Automata (QCA) is one of the promising substitutions to traditional semiconductor-based technology which proposed aunique scheme of information transmutation as well as computation.QCA hold the assurance of rapid speeds, higher switching frequency, highlyscalable feature and notably reduced sizes. In this paper, an efficient layout of fredkin gate is proposed based on QCA and CMOS technology which lessened total covered area, the number of cell and clock, latency timeand number of coplanar wire crossing compared with the earlier design also the VHSIC Hardware Description Language (VHDL) of proposed fredkin gate is presented. For simulating and confirming the proposed circuit QCADesigner and Microwindlite, familiar verification and simulation tools has been occupied. The proposed design has a promising prospective in the organizing of nanoscale low power exhausting information processing system and can stimulate complex digital applications in QCA.
목차
1. Introduction
2. QCA: Synopsis
3. Materials and Mechanisms
4. Proposed Design and Presentation
4.1. Fredkin Gate
4.2. VHDL Implementation of Fredkin Gate
5. Simulation and Result Analysis
6. Conclusion
References