On The Analysis of Reversible Booth's Multiplier

Project Code :TVPGFE164

Abstract

Reversible logic attains the attraction of researchers in the last decade mainly due to low-power dissipation. Designers’ endeavors are thus continuing in creating complete reversible circuits consisting of reversible gates. This paper presents a design methodology for the realization of Booth’s multiplier in reversible mode. Booth’s multiplier is considered as one of the fastest multipliers in literature and we have shown an efficient design methodology in reversible paradigm. The proposed architecture is capable of performing both signed and unsigned multiplication of two operands without having any feedbacks, whereas existing multipliers in reversible mode consider loop which is strictly prohibited in reversible logic design. Theoretical underpinnings, established for the proposed design, show that the proposed circuit is very efficient from reversible circuit design point of view

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Specifications

Hardware requirement

Processor           -   Pentium III

 Speed                                -    1.1 GHz

RAM                                 -    1 GB (min)

Hard Disk                          -   40 GB

Floppy Drive                     -    1.44 MB

Key Board                         -    Standard Windows Keyboard

Mouse                                -    Two or Three Button Mouse

Monitor                              -    SVGA

Software requirements

v  Operating System            :Windows95/98/2000/XP/Windows7

v  Front End                          :   Modelsim 6.3 for Debugging and Xilinx 14.3 for  Synthesis and Hard Ware Implementation

Learning Outcomes

Learning Outcomes:

  • Introduction to Digital Electronics
  • Analysis of digital circuits
  • Importance of Multipliers
  • Disadvantages of existing multipliers
  • Knowledge on bypass technique
  • Xilinx ISE/VIVADO software tool for code and simulation
  • Solution providing for real time problems
  • Project Development Skills:
      •  Problem Analysis Skills
      • Problem Solving Skills
      • Logical Skills
      • Designing Skills
      • Testing Skills
      • Debugging Skills
      • Presentation skills

Thesis Writing Skills

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