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Analysis of Multiconductor Transmission Lines
 
 
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Analysis of Multiconductor Transmission Lines [Hardcover]

Clayton R. Paul (Author)

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Book Description

0470131543 978-0470131541 October 26, 2007 2
The essential textbook for electrical engineering students and professionals-now in a valuable new edition

The increasing use of high-speed digital technology requires that all electrical engineers have a working knowledge of transmission lines. However, because of the introduction of computer engineering courses into already-crowded four-year undergraduate programs, the transmission line courses in many electrical engineering programs have been relegated to a senior technical elective, if offered at all.

Now, Analysis of Multiconductor Transmission Lines, Second Edition has been significantly updated and reorganized to fill the need for a structured course on transmission lines in a senior undergraduate- or graduate-level electrical engineering program. In this new edition, each broad analysis topic, e.g., per-unit-length parameters, frequency-domain analysis, time-domain analysis, and incident field excitation, now has a chapter concerning two-conductor lines followed immediately by a chapter on MTLs for that topic. This enables instructors to emphasize two-conductor lines or MTLs or both.

In addition to the reorganization of the material, this Second Edition now contains important advancements in analysis methods that have developed since the previous edition, such as methods for achieving signal integrity (SI) in high-speed digital interconnects, the finite-difference, time-domain (FDTD) solution methods, and the time-domain to frequency-domain transformation (TDFD) method. Furthermore, the content of Chapters 8 and 9 on digital signal propagation and signal integrity application has been considerably expanded upon to reflect all of the vital information current and future designers of high-speed digital systems need to know.

Complete with an accompanying FTP site, appendices with descriptions of numerous FORTRAN computer codes that implement all the techniques in the text, and a brief but thorough tutorial on the SPICE/PSPICE circuit analysis program, Analysis of Multiconductor Transmission Lines, Second Edition is an indispensable textbook for students and a valuable resource for industry professionals.

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Editorial Reviews

From the Publisher

An organized and concise exposition consolidating all research in the literature on this topic. Details existing methods for solving multiconductor transmission-line equations to determine voltage and/or currents induced at the ends of conductors of the line from signals on other conductors or signals from incident sources. Includes a disk of FORTRAN codes implementing all of the solution techniques, plenty of end-of-chapter problems and scores of computed results for actual lines. --This text refers to an alternate Hardcover edition.

From the Back Cover

The essential textbook for electrical engineering students and professionals—now in a valuable new edition

The increasing use of high-speed digital technology requires that all electrical engineers have a working knowledge of transmission lines. However, because of the introduction of computer engineering courses into already-crowded four-year undergraduate programs, the transmission line courses in many electrical engineering programs have been relegated to a senior technical elective, if offered at all.

Now, Analysis of Multiconductor Transmission Lines, Second Edition has been significantly updated and reorganized to fill the need for a structured course on transmission lines in a senior undergraduate- or graduate-level electrical engineering program. In this new edition, each broad analysis topic, e.g., per-unit-length parameters, frequency-domain analysis, time-domain analysis, and incident field excitation, now has a chapter concerning two-conductor lines followed immediately by a chapter on MTLs for that topic. This enables instructors to emphasize two-conductor lines or MTLs or both.

In addition to the reorganization of the material, this Second Edition now contains important advancements in analysis methods that have developed since the previous edition, such as methods for achieving signal integrity (SI) in high-speed digital interconnects, the finite-difference, time-domain (FDTD) solution methods, and the time-domain to frequency-domain transformation (TDFD) method. Furthermore, the content of Chapters 8 and 9 on digital signal propagation and signal integrity application has been considerably expanded upon to reflect all of the vital information current and future designers of high-speed digital systems need to know.

Complete with an accompanying FTP site, appendices with descriptions of numerous FORTRAN computer codes that implement all the techniques in the text, and a brief but thorough tutorial on the SPICE/PSPICE circuit analysis program, Analysis of Multiconductor Transmission Lines, Second Edition is an indispensable textbook for students and a valuable resource for industry professionals.


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Inside This Book (learn more)
Key Phrases - Statistically Improbable Phrases (SIPs): (learn more)
matrix pencil, incident field excitation, incident field illumination, solution for lossless lines, generalized capacitance matrix, pul resistance, magic time step, incorporating the terminal conditions, circular dielectric insulations, inhomogeneous surrounding medium, multiconductor lines, zeroth conductor, internal inductive reactance, incident uniform plane wave, recursive convolution scheme, reference conductor, actual line voltages, ith conductor, characteristic impedance matrix, basic repetition frequency, transverse field vectors, reflection coefficient matrix, characteristic admittance matrix, trapezoidal pulse train, lumped sources
Key Phrases - Capitalized Phrases (CAPs): (learn more)
New York, John Wiley, Electromagnetic Compatibility, Near-End Crosstalk Voltage, Second Edition, Paul Copyright, Analysis of Multiconductor Transmission Lines, International Symposium, Artech House, Numerical Analysis, Boca Raton, Englewood Cliffs, Use of Branin, Computer-Aided Design, Advanced Packaging, Repeat Problem, Power Delivery, Cambridge University Press, Field Theory of Guided Waves, Numerical Techniques, First Course, Ins Rise, Air Force Weapons Laboratory, Determine the Fourier, Writing Kirchhoff
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