Coding-Based Low-Power Through-Silicon-Via  Redundancy Schemes for Heterogeneous 3-D SoCs

Coding-Based Low-Power Through-Silicon-Via Redundancy Schemes for Heterogeneous 3-D SoCs

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Product Code: VLSI - Self Repairing Technology
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Product Description

Synopsis

          Three dimensional integration is one of the promising solutions to check the bare 3D integrated circuits before utilizing in the applications. In the existing system design of an heterogeneous architecture is being evaluated using low power silicon redundancy schemes. The technique is based on two optimal coding-based redundancy schemes, used in combination, which allows minimizing the complexity of a redundancy technique in heterogeneous systems.

           The existing technique reduce the interconnect power consumption. In the proposed system, an automated model of reconfigurable 3D soc testing platform is created in which a design of adjustable SRAM is implemented first. The data in the sram is encoded using Euclidean principle. Further the SRAM is tested with three different test patterns such as Pseudorandom Test, Marching Test and Checker board test. The proposed simulation is executed and verified in MODELSIM / QUARTUS II and implemented partial configuration in XILINX ISE.


Proposed system

          In the proposed system, an automated model of reconfigurable 3D soc testing platform is created in which a design of adjustable SRAM is implemented first. The data in the sram is encoded using Euclidean principle. Further the SRAM is tested with three different test patterns such as Pseudorandom Test, Marching Test and Checker board test. The proposed simulation is executed and verified in MODELSIM / QUARTUS II and implemented partial configuration in XILINX ISE.



Solution Statement

  • Automated Self Test mechanism is implemented


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Software Projects Includes

  1. Demo  Video
  2. Abstract
  3. Base paper
  4. Full Project PPT
  5. UML Diagrams
  6. SRS
  7. Source Code
  8. Screen Shots
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The Delivery time for software projects is 2 -3 working days. Some of the software projects will require Hardware interface. Please go through the hardware Requirements in the abstract carefully. The Hardware will take 7-8 Working Days

 

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  1. Demo  Video
  2. Abstract
  3. Base paper
  4. Full Project PPT
  5. Datasheets
  6. Circuit Diagrams
  7. Source Code
  8. Screen Shots & Photos
  9. Software Links
  10. Reference Papers
  11. Lit survey
  12. Full Project Documentation
  13. Online support


The Delivery time for Hardware projects is 7-8 working days.

   

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  1. Demo  Video
  2. Abstract
  3. Base paper
  4. Full Project PPT
  5. UML Diagrams
  6. SRS
  7. Source Code
  8. Screen Shots
  9. Software Links
  10. Reference Papers
  11. Full Project Documentation
  12. Online support

 

The Delivery time for software Miniprojects is 2 -3 working days.

 

Mini Projects - Hardware includes

  1. Demo  Video
  2. Abstract
  3. PPT
  4. Datasheets
  5. Circuit Diagrams
  6. Source Code
  7. Screen Shots & Photos
  8. Software Links
  9. Reference Papers
  10. Full Project Documentation
  11. Online support

The Delivery time for Hardware Mini projects is 7-8 working days.