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Вариация на Монте Карло процесите×Статичен времеви анализ×
ОбластЕлектротехникаЕлектротехника
СемействоProcess / pipelineProcess / pipeline
Година на възникване20031995
СъздателGeorge S. Fishman, Sani R. NassifHarish Bhatnagar
ТипProbabilistic modeling of semiconductor manufacturing variabilityNon-simulation timing verification for digital circuits
Основополагащ източникFishman, G. S. (1996). Monte Carlo: Concepts, Algorithms, and Applications. Springer-Verlag. DOI ↗Bhatnagar, H., & Bhatnagar, R. (1995). Static timing analysis: A primer. In VLSI Handbook (pp. 1-25). CRC Press. link ↗
Други названияMonte Carlo simulation, Process variation analysis, PVT analysisSTA, Timing verification, Path-based timing
Свързани33
РезюмеMonte 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.Static Timing Analysis (STA) is a non-simulation method for verifying that digital circuits meet timing constraints (clock frequencies, setup/hold times, propagation delays). Introduced systematically by Bhatnagar et al. in the 1990s, STA computes worst-case and best-case path delays by analyzing logic paths without simulating vectors. STA is essential for modern VLSI design, enabling fast timing closure before silicon and identifying critical paths for optimization.
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  2. 3 Източници
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  2. 3 Източници
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ScholarGateСравнение на методи: Monte Carlo Process Variation · Static Timing Analysis. Извлечено на 2026-06-17 от https://scholargate.app/bg/compare