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Node List Tolerance Analysis Enhancing SPICE Capabilities with MATHCAD

Developed at UC Berkeley more than two decades ago, SPICE software is the tool of choice for performing nominal analysis for electronic circuits. However, attempts to use SPICE for worst-case analysis (WCA) reveal several shortcomings, including: a 400-sample limit for Monte Carlo Analysis (MCA); lack of Rot-Sum-Square (RSS) analysis, asymmetric component tolerances, Fast MCA, or AC sensitivity capability; no single-run method of tolerancing inputs; and no predefined beta (skewed) or bimodal (gapped) distributions for MCA. While several commercial versions of SPICE may have corrected some of t.

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  • "Developed at UC Berkeley more than two decades ago, SPICE software is the tool of choice for performing nominal analysis for electronic circuits. However, attempts to use SPICE for worst-case analysis (WCA) reveal several shortcomings, including: a 400-sample limit for Monte Carlo Analysis (MCA); lack of Rot-Sum-Square (RSS) analysis, asymmetric component tolerances, Fast MCA, or AC sensitivity capability; no single-run method of tolerancing inputs; and no predefined beta (skewed) or bimodal (gapped) distributions for MCA. While several commercial versions of SPICE may have corrected some of t."@en

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  • "Electronic books"@en
  • "Electronic books"
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  • "Node List Tolerance Analysis Enhancing SPICE Capabilities with MATHCAD"@en
  • "Node list tolerance analysis enhancing SPICE capabilities with Mathcad"
  • "Node list tolerance analysis enhancing SPICE capabilities with Mathcad"@en
  • "Node list tolerance analysis : enhancing SPICE capabilities with Mathcad"