• DocumentCode
    797850
  • Title

    Correlation-Preserved Statistical Timing With a Quadratic Form of Gaussian Variables

  • Author

    Zhang, Lizheng ; Chen, Weijen ; Hu, Yuhen ; Gubner, John A. ; Chen, Charlie Chung-Ping

  • Author_Institution
    Cadence Design Syst., San Jose, CA
  • Volume
    25
  • Issue
    11
  • fYear
    2006
  • Firstpage
    2437
  • Lastpage
    2449
  • Abstract
    A recent study shows that the existing first-order canonical timing model is not sufficient to represent the dependency of the gate/wire delay on the processing and operational variations when these variations become more and more significant. Due to nonlinear mapping from variation sources to the gate/wire delay, the distribution of the delay will no longer be Gaussian even if variation sources are normally distributed. A novel "quadratic timing model" is proposed to capture the nonlinearity of the dependency of gate/wire delays and arrival times on the variation sources. Systematic methodology is also developed to evaluate the correlation and distribution of the quadratic timing model. Based on these, a statistical static timing analysis algorithm that retains the complete correlation information during timing analysis and has linear computation complexity with respect to both the circuit size and the number of variation sources is proposed. Tested on the ISCAS circuits, the proposed algorithm shows significant accuracy improvement over the existing first-order algorithm with a small amount of computational cost
  • Keywords
    Gaussian distribution; integrated circuit design; integrated circuit interconnections; quadratic programming; statistical analysis; Gaussian variables; canonical timing model; complete correlation information; correlation-preservation; gate/wire delay; linear computation complexity; nonlinear mapping; quadratic form; quadratic timing model; statistical timing; timing analysis; Algorithm design and analysis; Circuit analysis computing; Circuit testing; Computational efficiency; Delay; Helium; Information analysis; Random variables; Timing; Wire; Correlation; quadratic timing model; statistical timing analysis;
  • fLanguage
    English
  • Journal_Title
    Computer-Aided Design of Integrated Circuits and Systems, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0278-0070
  • Type

    jour

  • DOI
    10.1109/TCAD.2006.873885
  • Filename
    1715428