• DocumentCode
    2469095
  • Title

    Power grid physics and implications for CAD

  • Author

    Pant, Sanjay ; Chiprout, Eli

  • Author_Institution
    Michigan Univ., Ann Arbor, MI
  • fYear
    0
  • fDate
    0-0 0
  • Firstpage
    199
  • Lastpage
    204
  • Abstract
    Much research has been done lately concerning analysis and optimization techniques for on-chip power grid networks. However, all of these approaches assume a particular model or behavior of the power delivery. In this paper, we describe the first detailed full-die dynamic model of an industrial microprocessor design, including package and non-uniform decap distribution. This model is justified from the ground up using a full-wave model and then increasingly larger but less detailed models with only the irrelevant elements removed. Using these models we show that there is little impact of on-die inductance in such a design, and that the package is critical to understanding resonant properties of the grid. We also show that transient effects are sensitive to non-uniform decap distribution and that locality is a tight function of frequency and of the package-die resonance, producing newly explained localized resonant effects. Specifically, all of these points have impact on what kind of analysis and optimization are required from CAD
  • Keywords
    circuit resonance; integrated circuit modelling; integrated circuit packaging; transient analysis; CAD; decap distribution; dynamic model; localized resonant effects; microprocessor design; on-die inductance; optimization techniques; package-die resonance; power delivery; power grid networks; resonant properties; transient effects; Design automation; Frequency; Inductance; Microprocessors; Network-on-a-chip; Packaging; Physics; Power grids; Power system dynamics; Resonance; IR; Ldi/dt; Reliability; Verification; decap; locality; power supply networks; resonance;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Design Automation Conference, 2006 43rd ACM/IEEE
  • Conference_Location
    San Francisco, CA
  • ISSN
    0738-100X
  • Print_ISBN
    1-59593-381-6
  • Type

    conf

  • DOI
    10.1109/DAC.2006.229194
  • Filename
    1688789