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Tolerance Analysis of Electronic Circuits Using MATLAB



This document provides a comprehensive guide to tolerance analysis for electronic circuits. It covers methods for performing worst-case analysis, limits for production testing, component stress analysis, determining if a design meets specification limits, and manufacturing yield analysis. The author provides practical advice on how to put the techniques into practice using MATLAB. more details
Key Features:
  • Provides a comprehensive guide to tolerance analysis for electronic circuits
  • Covers methods for performing worst-case analysis, limits for production testing, component stress analysis, determining if a design meets specification limits, and manufacturing yield analysis
  • Practical advice on how to put the techniques into practice using MATLAB


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Features
Author Robert Boyd
Format Softcover
ISBN 9780849322761
Publisher Crc Press
Manufacturer Crc Press
Description
This document provides a comprehensive guide to tolerance analysis for electronic circuits. It covers methods for performing worst-case analysis, limits for production testing, component stress analysis, determining if a design meets specification limits, and manufacturing yield analysis. The author provides practical advice on how to put the techniques into practice using MATLAB.

Written for the practicing electronics professional, Tolerance Analysis of Electronic Circuits Using MATLAB offers a comprehensive, step-by-step treatment of methods used to perform analyses essential to the design process of circuit cards and systems of cards, including:worst-case analysis,limits for production testing,component stress analysis,determining if a design meets specification limits, andmanufacturing yield analysisUsing a practical approach that allows engineers and technicians to put the techniques directly into practice, the author presents the mathematical procedures used to determine performance limits. The topics and techniques discussed include extreme value and root-sum-square analysis using symmetric and asymmetric tolerance, Monte Carlo analysis using normal and uniform distributions, sensitivity formulas, tolerance analyses of opamp offsets, and anomalies of high-Q ac circuits.
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