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Tolerance analysis of electronic circuits using Mathcad

Author: Robert Boyd
Publisher: Boca Raton [Fla.] : CRC Press, ©2000.
Edition/Format:   Print book : EnglishView all editions and formats
Summary:

MATHCAD offers the same opportunities for effective tolerance analysis as its MATLAB counterpart. Written for the practicing electronics professional, this book offers a comprehensive, step-by-step  Read more...

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Document Type: Book
All Authors / Contributors: Robert Boyd
ISBN: 0849323398 9780849323393
OCLC Number: 42962446
Description: xi, 202 pages : illustrations ; 17 cm
Contents: Root-Sum-Square and Extreme Value Analysis --
Mathcad Derivatives --
Approximate Derivatives --
Extreme Value Analysis (EVA) --
EVA Summary --
Root-Sum-Square (RSS) Analysis --
Mathcad Built-in Normal Distribution Functions --
DC Differential Amplifier --
Asymmetric Tolerances --
General RSS/EVA Equation Sequence --
Comparing Mathcad EVA with Spice. WCASE Analysis --
Comparing Circuit Analysis Methods --
More Complicated Circuits --
RTD A Matrix --
Mathcad EVA/RSS Analysis of an RTD Circuit --
Tolerance Analysis of AC Circuits --
Mathcad AC Analysis Method --
Tolerance Analysis of a Bandpass Filter --
Spice Analysis --
Bandpass Filter with Asymmetric Tolerances --
Low-Pass Filter --
Monte Carlo Analysis --
Random Number Generator --
Mathcad's Random Number Generator --
Gaussian Random Number Generator (RNG) --
Converting to Random Tolerances --
Monte Carlo Analysis-DC Differential Amplifier --
MCA of RTD Circuit --
MCA Bandpass Filter (BPF) --
Fast Monte Carlo Analysis (FMCA) --
FMCA-Bandpass Filter --
MCA of BPF --
Component Slopes --
Sallen and Key BPF --
Sallen and Key BPF-FMCA and EVA --
MCA-Sallen and Key BPF --
Why MCA Spikes Occur --
Estimating Manufacturing Yield (MY) --
BPF Manufacturing Yield Analysis --
Advanced Topics --
Differential Amplifier, Vo = 0 --
EVA/RSS of Opamp Offsets --
MCA of Opamp Offsets --
Comparing Normal and Uniform Distributions --
MCA of Opamp Offsets (Cont') --
Tolerance Analysis of LM158 Opamp Stability/Phase Margin --
Tolerance Analysis of an A-to-D Circuit.
Responsibility: Robert R. Boyd.
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