Design of an Efficient Multilayer Arithmetic Logic Unit in Quantum-dot Cellular Automata (QCA)

Also Available Domains Nano Technology

Project Code :TVMATO621

Objective

In this paper, based on the extracted capabilities of the mathematics operations of the ALU, we propose a new unique low-complexity QCA 4:1 multiplexer, that is application-specific to the proposed ALU

Abstract

Abstract:

Quantum-dot cellular Automata (QCA) is a new nano-scale technology that because of making significant improvements in the design of electronic circuits can be taken into consideration as the precise alternative to CMOS generation. The arithmetic logic Unit (ALU) is a essential component of the central Processing Unit (CPU) to carry out the arithmetic and logical operations that multiplexer and full adder play an important position in its operations. in this paper, based on the extracted capabilities of the mathematics operations of the ALU, we propose a new unique low-complexity QCA 4:1 multiplexer, that is application-specific to the proposed ALU. Moreover, a new QCA full adder is proposed based totally on the cell interaction. Likewise, a QCA multilayer ALU structure is designed based totally at the verified proposed systems to carry out 4 logical and 8 mathematics operations. The simulation results display that the proposed systems outperform in comparison to counterpart designs in terms of cell number, area, latency, and power consumption

NOTE: Without the concern of our team, please don't submit to the college. This Abstract varies based on student requirements.

Specifications

Software Requirements:

·         QCA Designer

·         QCA DesignerE

 Hardware Requirements:

·         Microsoft® Windows XP

·         Intel® Pentium® 4 processor or Pentium 4 equivalent with SSE support

·         512 MB RAM

·         100 MB of available disk space

Learning Outcomes

Learning Outcomes:

  • Introduction to Nano-technology
  • Knowledge on Quantum Dot cellular automata
  • Digital Circuit Fundamentals
  • Introduction to reversible logic gates
  • How to design circuits using QCA Designer
  • Quantum cell level design for digital circuits
  • Learn to design high speed, area efficient QCA circuits
  • Importance of clock cycles in QCA technology
  • Techniques for reducing energy dissipation
  • Scope of reversible circuits in quantum computing
  • Applications in real time
  • QCA Designer and QCA designerE tool for design and simulation
  • Solution providing for real time problems

·         Project Development Skills:

o   Problem Analysis Skills

o   Problem Solving Skills

o   Logical Skills

o   Designing Skills

o   Testing Skills

o   Debugging Skills

o   Presentation Skills

o   Thesis Writing Skills

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