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portada Feedback, Nonlinear, and Distributed Circuits
Type
Physical Book
Publisher
Language
English
Pages
466
Format
Hardcover
Dimensions
26.2 x 17.8 x 2.8 cm
Weight
1.00 kg.
ISBN
1420058819
ISBN13
9781420058819
Edition No.
0003

Feedback, Nonlinear, and Distributed Circuits

Chen, Wai-Kai (Author) · CRC Press · Hardcover

Feedback, Nonlinear, and Distributed Circuits - Chen, Wai-Kai

Physical Book

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Synopsis "Feedback, Nonlinear, and Distributed Circuits"

Upon its initial publication, the Handbook of Circuits and Filters broke new ground. It quickly became the resource for comprehensive coverage of issues and practical information that can be put to immediate use. Not content to rest on his laurels, editor Wai-kai Chen divided the second edition into volumes, making the information easily accessible and digestible. In the third edition, these volumes have been revised, updated, and expanded so that they continue to provide solid coverage of standard practices and enlightened perspectives on new and emerging techniques.Feedback, Nonlinear, and Distributed Circuits draws together international contributors who discuss feedback amplifier theory and then move on to explore feedback amplifier configurations. They develop Bode's feedback theory as an example of general feedback theory. The coverage then moves on to the importance of complementing numerical analysis with qualitative analysis to get a global picture of a circuit's performance. After reviewing a wide range of approximation techniques and circuit design styles for discreet and monolithic circuits, the book presents a comprehensive description of the use of piecewise-linear methods in modeling, analysis, and structural properties of nonlinear circuits highlighting the advantages. It describes the circuit modeling in the frequency domain of uniform MTL based on the Telegrapher's equations and covers frequency and time domain experimental characterization techniques for uniform and nonuniform multiconductor structures.This volume will undoubtedly take its place as the engineer's first choice in looking for solutions to problems encountered in the analysis and behavior predictions of circuits and filters.

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