Computer Methods for Circuit Analysis and Design

Computer Methods for Circuit Analysis and Design
Author: Jiri Vlach
Publisher: Springer Science & Business Media
Total Pages: 738
Release: 1994
Genre: Technology & Engineering
ISBN: 9780442011949

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This text is about methods used for the computer simulation of analog systems. It concentrates on electronic applications, but many of the methods are applicable to other engineering problems as well. This revised edition (1st, 1983) encompasses recent theoretical developments and program-writing tips for computer-aided design. About 60% of the text is suitable for a senior-level course in circuit theory. The whole text is suitable for graduate courses or as a reference for scientists and engineers who seek information in the field. Annotation copyright by Book News, Inc., Portland, OR

Applied Circuit Theory

Applied Circuit Theory
Author: P. R. Adby
Publisher: Ellis Horwood
Total Pages: 500
Release: 1980
Genre: Mathematics
ISBN:

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Fast Analytical Techniques for Electrical and Electronic Circuits

Fast Analytical Techniques for Electrical and Electronic Circuits
Author: Vatché Vorpérian
Publisher: Cambridge University Press
Total Pages: 502
Release: 2002-05-23
Genre: Technology & Engineering
ISBN: 9781139433235

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The only method of circuit analysis known to most engineers and students is nodal or loop analysis. Although this works well for obtaining numerical solutions, it is almost useless for obtaining analytical solutions in all but the simplest cases. In this unusual 2002 book, Vorpérian describes remarkable alternative techniques to solve, almost by inspection, complicated linear circuits in symbolic form and obtain meaningful analytical answers for any transfer function or impedance. Although not intended to replace traditional computer-based methods, these techniques provide engineers with a powerful set of tools for tackling circuit design problems. They also have great value in enhancing students' understanding of circuit operation, making this an ideal course book, and numerous problems and worked examples are included. Originally developed by Professor David Middlebrook and others at Caltech (California Institute of Technology), the techniques described here are now widely taught at institutions and companies around the world.

Circuit Analysis Laboratory Workbook

Circuit Analysis Laboratory Workbook
Author: Teri L. Piatt
Publisher: Morgan & Claypool Publishers
Total Pages: 127
Release: 2017-06-15
Genre: Technology & Engineering
ISBN: 1681731614

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This workbook integrates theory with the concept of engineering design and teaches troubleshooting and analytical problem-solving skills. It is intended to either accompany or follow a first circuits course, and it assumes no previous experience with breadboarding or other lab equipment. This workbook uses only those components that are traditionally covered in a first circuits course (e.g., voltage sources, resistors, potentiometers, capacitors, and op amps) and gives students clear design goals, requirements, and constraints. Because we are using only components students have already learned how to analyze, they are able to tackle the design exercises, first working through the theory and math, then drawing and simulating their designs, and finally building and testing their designs on a breadboard.

Fundamentals of Electric Circuit Analysis

Fundamentals of Electric Circuit Analysis
Author: Clayton R. Paul
Publisher: John Wiley & Sons
Total Pages: 534
Release: 2001
Genre: Technology & Engineering
ISBN: 0471371955

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Focusing on the development of fundamental skills, this new text is designed for a one-semester course in the analysis of linear circuits. The author meticulously covers the important topics within a sound pedagogical organization while minimizing unnecessary detail so that the student can develop a lasting and sound set of analysis skills. The major topics presented include the analysis of resistive circuits (including controlled sources and op amps) and the analysis of circuits in the sinusoidal steady state (phasor analysis). Emphasized also is the analysis of circuits in the time domain in response to a disturbance (switching operations and the unit step and unit impulse responses) and is developed primarily using the Laplace transform. A brief description of the classical method of solving the circuit differential equations is included.