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Monte-Carlo-Prozessvariation×Automatische Testmustergenerierung×
FachgebietElektrotechnikElektrotechnik
FamilieProcess / pipelineProcess / pipeline
Entstehungsjahr20031966
UrheberGeorge S. Fishman, Sani R. NassifJ. Paul Roth
TypProbabilistic modeling of semiconductor manufacturing variabilityAutomated fault-detection test vector generation
Wegweisende QuelleFishman, G. S. (1996). Monte Carlo: Concepts, Algorithms, and Applications. Springer-Verlag. DOI ↗Abramovici, M., Breuer, M. A., & Friedman, A. D. (1990). Digital Systems Testing and Testable Design. Computer Science Press. link ↗
AliasnamenMonte Carlo simulation, Process variation analysis, PVT analysisATPG, Test pattern generation, Fault-based testing
Verwandt33
ZusammenfassungMonte Carlo Process Variation analysis quantifies the impact of manufacturing uncertainties on circuit performance using statistical sampling. As semiconductor technology scales, process variations (gate length, oxide thickness, dopant fluctuations) create significant uncertainties in delay, power, and leakage. Monte Carlo methods sample the random variation space, enabling statistical characterization of yield, timing margins, and reliability. Essential for modern technology nodes.Automatic Test Pattern Generation (ATPG) is the automated creation of test vectors that detect manufacturing defects in digital circuits. Pioneered by Roth in 1966, ATPG systematically finds inputs that make stuck-at faults observable at outputs, enabling comprehensive fault detection. ATPG is critical for semiconductor manufacturing: enabling high test coverage ensures only good chips ship and identifies manufacturing process issues.
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ScholarGateMethoden vergleichen: Monte Carlo Process Variation · Automatic Test Pattern Generation. Abgerufen am 2026-06-15 von https://scholargate.app/de/compare