• Title of article

    Novel Design of n-bit Controllable Inverter by Quantum-dot Cellular Automata

  • Author/Authors

    Kianpour, M Electrical Engineering Department - Islamic Azad University Science and Research Branch , Sabbaghi-Nadooshan, R Electrical Engineering Department - Islamic Azad University Central Tehran Branch

  • Pages
    10
  • From page
    117
  • To page
    126
  • Abstract
    Application of quantum-dot is a promising technology for implementing digital systems at nano-scale. Quantum-dot Cellular Automata (QCA) is a system with low power consumption and a potentially high density and regularity. Also, QCA supports the new devices with nanotechnology architecture. This technique works based on electron interactions inside quantum-dots leading to emergence of quantum features and decreasing the problem of future integrated circuits in terms of size. In this paper, we will successfully design, implement and simulate a new 2-input and 3-input XOR gate (exclusive o‎r gate) based on QCA with the minimum delay, area and complexities. Then, we will use XOR gates presented in this paper, in 2-bit, 4-bit and 8-bit controllable inverter in QCA. Being potentially pipeline, the QCA technology calculates with the maximum operating speed. We can use this controllable inverter in the n-bit adder/subtractor and reversible gate.
  • Keywords
    Exclusive OR(XOR) gate , Inverter , Majority gate , Quantum-dot Cellular Automata(QCA)
  • Journal title
    Astroparticle Physics
  • Serial Year
    2014
  • Record number

    2424878