JA Purity IV
  • HOME
    • Business
    • Corporate
    • Logistics
    • Product
    • News / Magazine
  • MTECH PROJECTS
    • COMPUTER SCIENCE
      • MTech Python Projects
        • Machine Learning Projects
        • Deep Learning Projects
        • Blockchain Projects
        • django Projects
      • MTech Java Projects
        • Cloud Computing Projects
        • Data Mining Projects
        • Mobile Computing Projects
        • Networking Projects
      • MTech NS2 Projects
        • Wireless Communication Projects
        • Vehicular Technology Projects
      • MTech Hadoop Projects
      • MTech Android Projects
    • ELECTRONICS
      • MTech DSP Projects
      • MTech DIP Projects
      • MTech VLSI Projects
      • MTech Communication Projects
    • ELECTRICAL
      • MTech Power Systems Projects
      • MTech Power Electronics Projects
      • MTech Control Systems Projects
    • OTHER
      • Chemical Projects
      • Mechanical Projects
      • All Other Projects
  • EMBEDDED KITS
    • MTech Embedded Kits
    • BTech Embedded Kits
  • PROJECTS+
  • PUBLISHING
    • Research Publishing
    • Authors Guidelines
    • Publishing Policy
  • CONTACT US

Contact Us

  • 4517 Washington Ave. Manchester, Kentucky 39495
  • (201) 555-0124
  • hello@purityiv.com

Welcome to MTech Projects - Online Projects for MTech Students

  • My Account
  • Careers
  • Downloads
  • Blog
JA Purity IV
  • Email Us
  • Phone Number
  • Open Hours
  • HOME
    • Business
    • Corporate
    • Logistics
    • Product
    • News / Magazine
  • MTECH PROJECTS

    MTech Python Projects

    • Machine Learning Projects
    • Deep Learning Projects
    • Blockchain Projects
    • django Projects

    MTECH JAVA PROJECTS

    • Cloud Computing Projects
    • Data Mining Projects
    • Mobile Computing Projects
    • Networking Projects

    MTECH NS2 PROJECTS

    • Wireless Communication Projects
    • Vehicular Technology Projects
    • MTech Hadoop Projects
    • MTech Android Projects

    ELECTRONICS

    • MTech DSP Projects
    • MTech DIP Projects
    • MTech VLSI Projects
    • MTech Communication Projects

    ELECTRICAL

    • MTech Power Systems Projects
    • MTech Power Electronics Projects
    • MTech Control Systems Projects

    OTHER

    • Chemical Projects
    • Mechanical Projects
    • All Other Projects
  • EMBEDDED KITS
    • MTech Embedded Kits
    • BTech Embedded Kits
  • PROJECTS+
  • PUBLISHING
    • Research Publishing
    • Authors Guidelines
    • Publishing Policy
  • CONTACT US

Project Enquiry

  1. You are here:  
  2. Home
  3. MTech VLSI Projects
  4. A Fixed-Point Squaring Algorithm Using an Implicit Arbitrary Radix Number System - 2016
Details
Category: MTech VLSI Projects
By MTech Projects
MTech Projects
01.Jun
Hits: 1

A Fixed-Point Squaring Algorithm Using an Implicit Arbitrary Radix Number System - 2016

PROJECT TITLE :

A Fixed-Point Squaring Algorithm Using an Implicit Arbitrary Radix Number System - 2016

ABSTRACT:

A mounted-purpose squaring algorithm is formulated and implemented based mostly on an approach that allows any range of bits to be computed in every iterative step. The first contribution this new approach offers is the flexibility for a designer to change the world × latency product through the choice of a different radix or range of bits per subword to be processed in each iterative step. When the number of subword bits is increased, latency is reduced since fewer iterations are required whereas the realm is increased because of the larger subcircuit for squaring every subword. Alternatively, selecting a smaller subword or radix decreases space at the expense of skyrocketing latency since a lot of iterations are needed. The subword size can range from one bit yielding a touch-serial squarer requiring N iterations for an N-bit operand or “squarand,” to using the whole squarand ensuing in an exceedingly totally parallel squarer requiring no iterations. As a result of each m-bit subword will be considered a single digit in a very number system with radix 2m, the squarer presented here will be thought-about a multiple-valued logic (MVL) digit-serial design. This methodology allows for technologies primarily based on any radix of 2 or greater for use, including emerging technologies, thus yielding a true multiple-valued logic squaring circuit. The algorithm is derived through the generalization of a Vedic technique where any arbitrary integer-valued radix is used. Prototype hardware implementations using each a normal cell ASIC and FPGA technologies are developed. The prototype circuits are analyzed in terms of needed resources and throughput characteristics and compared to a well-known previous art squaring circuit.

Did you like this research project?

To get this research project Guidelines, Training and Code... Click Here

  • ROOT
  • Computer Architecture
  • Algorithm Design And Analysis
  • Squaring
  • Arithmetic Circuit
  • Digit-Serial
  • ROOT
  • Computer Architecture
  • Algorithm Design And Analysis
  • Squaring
  • Arithmetic Circuit
  • Digit-Serial
Previous article: Low-Power Variation-Tolerant Nonvolatile Lookup Table Design - 2016 Low-Power Variation-Tolerant Nonvolatile Lookup Table Design - 2016 Next article: An Improved Design of a Reversible Fault Tolerant LUT-Based FPGA - 2016 An Improved Design of a Reversible Fault Tolerant LUT-Based FPGA - 2016
COMPUTER SCIENCE PROJECTS ELECTRONICS PROJECTS MTech DSP Projects MTech DIP Projects MTech VLSI Projects MTech VHDL Projects MTech Verilog Projects MTech Communication Projects ELECTRICAL PROJECTS EMBEDDED PROJECTS MECHANICAL PROJECTS

sell academic m.tech, btech and be projects online

sell academic m.tech, btech and be projects online

Academic Final Year Projects

QUICK LINKS

  • Python Projects
  • Java Projects
  • Android Projects
  • Digital Signal Processing
  • Image Processing Projects
  • VLSI Projects
  • Power Systems
  • Power Electronics
SUPPORT
+91 9573777164
9:00am - 6:00pm IST
info@mtechprojects.com

Navigate

  • ABOUT
  • TESTIMONIALS
  • FIND A DEALER
  • CAREERS

CONTACT

  • CONTACT
  • FAQ
  • RESOURCES
  • EMAIL US

Useful links

  • REFUND & RETURN POLICY
  • PRIVACY POLICIES

Support

  • FACEBOOK
  • TWITTER
  • PINTEREST
  • GOOGLE PLUS
Copyright © 2026 MTech Projects. All Rights Reserved.