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Transient Signals on Transmission Lines: Synthesis Lectures on Computational Electromagnetics

Autor Andrew Peterson, Gregory Durgin
en Limba Engleză Paperback – 4 dec 2008
This lecture provides an introduction to transmission line effects in the time domain. Fundamentals including time of flight, impedance discontinuities, proper termination schemes, nonlinear and reactive loads, and crosstalk are considered. Required prerequisite knowledge is limited to conventional circuit theory. The material is intended to supplement standard textbooks for use with undergraduate students in electrical engineering or computer engineering. The contents should also be of value to practicing engineers with interests in signal integrity and high-speed digital design. Table of Contents: Introduction / Solution of the Transmission Line Equations / DC Signals on a Resistively Loaded Transmission Line / Termination Schemes / Equivalent Circuits, Cascaded Lines, and Fan-Outs / Initially-Charged Transmission Lines / Finite Duration Pulses on Transmission Lines / Transmission Lines with Reactive Terminations / Lines with Nonlinear Loads / Crosstalk on Weakly Coupled TransmissionLines
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Specificații

ISBN-13: 9783031005817
ISBN-10: 3031005813
Ilustrații: X, 143 p.
Dimensiuni: 191 x 235 mm
Greutate: 0.28 kg
Editura: Springer International Publishing
Colecția Springer
Seria Synthesis Lectures on Computational Electromagnetics

Locul publicării:Cham, Switzerland

Cuprins

Introduction.- Solution of the Transmission Line Equations.- DC Signals on a Resistively Loaded Transmission Line.- Termination Schemes.- Equivalent Circuits, Cascaded Lines, and Fan-Outs.- Initially-Charged Transmission Lines.- Finite Duration Pulses on Transmission Lines.- Transmission Lines with Reactive Terminations.- Lines with Nonlinear Loads.- Crosstalk on Weakly Coupled Transmission Lines.

Notă biografică

Andrew F. Peterson received his B.S., M.S., and Ph.D. degrees in electrical engineering from the University of Illinois, Urbana–Champaign. Since 1989, he has been a member of the faculty of the School of Electrical and Computer Engineering at the Georgia Institute of Technology, where he is now Professor and Associate Chair for Faculty Development. He teaches electromagnetic field theory and computational electromagnetics and conducts research in the development of computational techniques for electromagnetic scattering, microwave devices, and electronic packaging applications. He is a fellow of the IEEE and a fellow of the Applied Computational Electromagnetics Society (ACES). He is also a recipient of the IEEE Third Millennium Medal.

Textul de pe ultima copertă

This book provides an introduction to transmission line effects in the time domain. Fundamentals including time of flight, impedance discontinuities, proper termination schemes, nonlinear and reactive loads, and crosstalk are considered. Required prerequisite knowledge is limited to conventional circuit theory.  The material is tutorial for electrical and computer engineers on the topic of transient signals on transmission lines. Emphasis has been placed on aspects of the subject that have application to signal integrity and high-speed digital circuit design issues, including proper termination schemes to avoid impedance discontinuities, reactive and nonlinear loads, and an introduction to crosstalk.
The coverage focuses on the very important topic of transmission line transients which have been de-emphasized in most current textbooks.  This book is prepared to supplement traditional texts for advanced students studying electromagnetics and for a vast array of practicing electrical engineers, computer engineers and material scientists with interests in signal integrity and high-speed digital design.

In this second edition, examples and new problems have been added throughout.  A new chapter on differential transmission lines has also been incorporated.

Caracteristici

Emphasizes the aspects of transient signals that have application to signal integrity Provides an introduction to transmission line effects in the time domain Discusses fundamentals including time of flight, impedance discontinuities, proper termination schemes, nonlinear