Microstrip Lines and Slotlines, Third Edition

Front Cover
Artech House, May 1, 2013 - Technology & Engineering - 594 pages

Since the second edition of this book was published in 1996, planar transmission line technology has progressed considerably due to developments in ultrawideband (UWB) communications, imaging, and RFID applications. In addition, the simultaneous demands for compactness of wireless electronic devices while meeting improved performance requirements, necessitates increased use of computer-aided design, simulation, and analysis by microwave engineers. This book is written to help engineers successfully meet these challenges.

Details include the development of governing equations, basis functions, Green’s function and typical results. More than 1200 equations supplement the text. Special attention is given to the use of simulation software in the design of complex devices and understanding the connection between data collected from simulation software and the actual design process.

The book is primarily intended for microwave design engineers and R&D specialists who need to employ planar transmission lines in designing distributed circuits and antenna systems for a wide range of wireless applications. Advanced undergraduate and graduate students in electronics and telecommunication engineering will also welcome this addition to your library.

 

 

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Contents

Chapter 1 Microstrip Lines I QuasiStatic Analyses Dispersion Models and Measurements
1
Chapter 2 Microstrip Lines II Fullwave Analyses Design Considerations and Applications
59
Chapter 3 Microstrip Discontinuities I QuasiStatic Analysis and Characterization
139
Chapter 4 Microstrip Discontinuities IIFullwave Analysis and Measurements
189
Chapter 5 Slotlines
239
Chapter 6 Defected Ground Structure DGS
305
Chapter 7 Coplanar Lines Coplanar Waveguide and Coplanar Strips
347
Chapter 8 Coupled Microstrip Lines
433
Chapter 9 Substrate Integrated Waveguide SIW
497
About the Authors
567
Index
569
Copyright

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About the author (2013)

Garg is affiliated with the Department of Electrical Engineering at Indian Institute of Technology, Kanpur.

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