Model-Based Variation-Aware Integrated Circuit Design
Ting Zhu (),
Mustafa Berke Yelten,
Michael B. Steer and
Paul D. Franzon
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Ting Zhu: North Carolina State University, Department of Electrical and Computer Engineering
Mustafa Berke Yelten: North Carolina State University, Department of Electrical and Computer Engineering
Michael B. Steer: North Carolina State University, Department of Electrical and Computer Engineering
Paul D. Franzon: North Carolina State University, Department of Electrical and Computer Engineering
A chapter in Surrogate-Based Modeling and Optimization, 2013, pp 171-188 from Springer
Abstract:
Abstract Modern integrated circuit designers must deal with complex design and simulation problems while coping with large device to device parametric variations and often imperfect information. This chapter presents surrogate model-based methods to generate circuit performance models for design, device models, and high-speed input-output (IO) buffer macromodels. Circuit performance models are built with design parameters and parametric variations, and they can be used for fast and systematic design space exploration and yield analysis. Surrogate models of the main device characteristics are generated in order to assess the effects of variability in analog circuits. The variation-aware IO buffer macromodel integrates surrogate modeling and a physically based model structure. The new IO macromodel provides both good accuracy and scalability for signal integrity analysis.
Keywords: Surrogate modeling; Design exploration; Integrated circuit; Model-based design; Performance model; IO model; Device model; Variation aware; Circuit optimization; Design aids; Yield analysis; Self-calibrated circuit (search for similar items in EconPapers)
Date: 2013
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Persistent link: https://EconPapers.repec.org/RePEc:spr:sprchp:978-1-4614-7551-4_8
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DOI: 10.1007/978-1-4614-7551-4_8
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