A General Time-Domain Method for Harmonic Distortion Estimation in CMOS Circuits
This article presents a general, time-domain harmonic distortion estimation method, applicable to linear CMOS circuits characterized by weakly nonlinear behavior, ranging from amplifiers, and transconductors to filters, with any number of stages. It offers a compact, fast, and systematic way to mode...
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Veröffentlicht in: | IEEE transactions on computer-aided design of integrated circuits and systems 2021-01, Vol.40 (1), p.157-170 |
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Sprache: | eng |
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Zusammenfassung: | This article presents a general, time-domain harmonic distortion estimation method, applicable to linear CMOS circuits characterized by weakly nonlinear behavior, ranging from amplifiers, and transconductors to filters, with any number of stages. It offers a compact, fast, and systematic way to model circuits as a structure of interconnected G m -stages, and estimates the harmonic distortion at every circuit node, providing insight into the distortion contribution of every stage. The method uses a more involved model for each G m -stage that also accounts for the dependence of its output current on cross-products of its input and output voltages, improving significantly the distortion estimation accuracy. The proposed method is easily implemented in MATLAB, and intends to be integrated as a tool in EDA suites to speed-up distortion estimation. A number of examples are presented, illustrating the application of the method and validating its accuracy via comparison with Cadence Spectre simulation. |
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ISSN: | 0278-0070 1937-4151 |
DOI: | 10.1109/TCAD.2020.2988414 |