• DocumentCode
    1610428
  • Title

    Novel 3D memory-centric NoC architecture for transaction-based SoC applications

  • Author

    Wassal, Amr G. ; Sarhan, Hossam H. ; ElSherief, Amr

  • Author_Institution
    Nanoelectron. Integrated Syst. Center (NISC), Nile Univ., Egypt
  • fYear
    2011
  • Firstpage
    1
  • Lastpage
    5
  • Abstract
    Large and complex system-on-chip devices consisting of many processor cores, accelerators, DSP functions and many other processing and memory elements are becoming common in the semiconductor industry nowadays. To communicate, these processing and memory elements need to have a network-on-chip (NoC) that is scalable enough to support large number of elements and large bandwidth among other requirements. This paper evaluates the performance of the 2D memory-centric NoC architecture from throughput and latency perspective versus the Mesh topology. We also propose a memory-centric architecture that takes advantage of developments in 3D integration technologies. The advantages of 3D memory-centric NoCs from physical design, performance and manufacturing points of view are discussed. The proposed architecture is based on a shared-memory pool that is suitable for transaction-based applications. Also, as the crossbar is a critical component in the memory-shared NoC, special 3D crossbar architecture has been proposed.
  • Keywords
    embedded systems; integrated circuit interconnections; memory architecture; network-on-chip; shared memory systems; three-dimensional integrated circuits; 2D memory-centric NoC architecture; 3D crossbar architecture; 3D integration technology; 3D memory-centric NoC architecture; 3D stacking; embedded memories; memory-shared NoC; network-on-chip; shared-memory pool; system-on-chip; through-silicon via; transaction-based SoC applications; Memory architecture; Network topology; Stacking; System-on-a-chip; Three dimensional displays; Throughput; Topology; 3D crossbar; 3D integration; 3D stacking; Memory-centric; embedded memory; network-on-chip; through-silicon via;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Electronics, Communications and Photonics Conference (SIECPC), 2011 Saudi International
  • Conference_Location
    Riyadh
  • Print_ISBN
    978-1-4577-0068-2
  • Electronic_ISBN
    978-1-4577-0067-5
  • Type

    conf

  • DOI
    10.1109/SIECPC.2011.5876934
  • Filename
    5876934