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Introduction to modern planar transmission lines : physical, analytical, and circuit models approach / Anand K. Verma.

By: Verma, Anand K, 1948- [author.].
Material type: materialTypeLabelBookPublisher: Hoboken, New Jersey : Wiley-IEEE Press, [2021]Description: 1 online resource.Content type: text Media type: computer Carrier type: online resourceISBN: 9781119632443; 1119632447; 9781119632474; 1119632471; 9781119632450; 1119632455.Subject(s): Electric lines | Electric linesGenre/Form: Electronic books.Additional physical formats: Print version:: Introduction to modern planar transmission linesDDC classification: 621.3815 Online resources: Wiley Online Library
Contents:
Overview of Transmission Lines -- Waves on Transmission Lines - I -- Waves on Transmission Lines - II -- Waves in Material Medium - I -- Waves in Material Medium-II -- Electrical Properties of Dielectric Medium -- Waves in Waveguide Medium -- Microstrip Line -- Coplanar Waveguide and Coplanar Stripline -- Slot Line -- Coupled Transmission Lines -- Planar Coupled Transmission Lines -- Fabrication of Planar Transmission Lines -- Static Variational Methods for Planar Transmission Lines -- Multilayer Planar Transmission Lines -- Dynamic Spectral Domain Analysis -- Lumped and Line Resonators -- Planar Resonating Structures -- Planar Periodic Transmission Lines -- Planar Periodic Surfaces -- Metamaterials Realization and Circuit Models - I -- Metamaterials Realization and Circuit Models - II.
Summary: "The planar transmission lines form the core of modern high-frequency communication, computer, and other related technology. The subject has come up to the present level of maturity over the past 3 to 4 decades. The planar transmission lines are used not only as interconnects on the PCB board and IC chips; these are directly needed for the development of microwave and mm-wave components in form of the microwave integrated circuits (MIC). The type of planar transmission lines i.e. their physical structures and material medium have been changing with the growth of technology in many other disciplines. Such efforts during recent years propelled the MIC to move in many exotic directions- MMIC, MEMS, LTCC, use of ferroelectrics, and high-temperature superconductors, optically controlled microwave devices, non-linear planar transmission lines, DGS, EBG, and metamaterials, etc.. The researchers with varying backgrounds have contributed much to research activities. Already the divergent planar technology has contributed significantly to the advancement of high-frequency electronics and in the near future, more contribution will be made by it. The exotic planar transmission lines are not covered comprehensively in a single book. The present book is an attempt in this direction. The proposed book aims to provide a comprehensive discussion of planar transmission lines and their applications. It focuses on physical understanding, analytical approach, and circuit models for planar transmission lines and resonators in the complex environment. The present book has evolved from the lecture notes, workshop, seminar presentation, and invited lectures delivered by the author at many universities and R&D centers. Some chapters were also initially written for my Ph.D. students to help them to understand the topics. Finally, it has evolved from notes prepared by the authors as a scheme for the self-study. The author started his academic career after 17 years of professional experience in the field of electrical engineering, broadcast transmitters, and satellite communication."-- Provided by publisher.
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Includes bibliographical references and index.

"The planar transmission lines form the core of modern high-frequency communication, computer, and other related technology. The subject has come up to the present level of maturity over the past 3 to 4 decades. The planar transmission lines are used not only as interconnects on the PCB board and IC chips; these are directly needed for the development of microwave and mm-wave components in form of the microwave integrated circuits (MIC). The type of planar transmission lines i.e. their physical structures and material medium have been changing with the growth of technology in many other disciplines. Such efforts during recent years propelled the MIC to move in many exotic directions- MMIC, MEMS, LTCC, use of ferroelectrics, and high-temperature superconductors, optically controlled microwave devices, non-linear planar transmission lines, DGS, EBG, and metamaterials, etc.. The researchers with varying backgrounds have contributed much to research activities. Already the divergent planar technology has contributed significantly to the advancement of high-frequency electronics and in the near future, more contribution will be made by it. The exotic planar transmission lines are not covered comprehensively in a single book. The present book is an attempt in this direction. The proposed book aims to provide a comprehensive discussion of planar transmission lines and their applications. It focuses on physical understanding, analytical approach, and circuit models for planar transmission lines and resonators in the complex environment. The present book has evolved from the lecture notes, workshop, seminar presentation, and invited lectures delivered by the author at many universities and R&D centers. Some chapters were also initially written for my Ph.D. students to help them to understand the topics. Finally, it has evolved from notes prepared by the authors as a scheme for the self-study. The author started his academic career after 17 years of professional experience in the field of electrical engineering, broadcast transmitters, and satellite communication."-- Provided by publisher.

Overview of Transmission Lines -- Waves on Transmission Lines - I -- Waves on Transmission Lines - II -- Waves in Material Medium - I -- Waves in Material Medium-II -- Electrical Properties of Dielectric Medium -- Waves in Waveguide Medium -- Microstrip Line -- Coplanar Waveguide and Coplanar Stripline -- Slot Line -- Coupled Transmission Lines -- Planar Coupled Transmission Lines -- Fabrication of Planar Transmission Lines -- Static Variational Methods for Planar Transmission Lines -- Multilayer Planar Transmission Lines -- Dynamic Spectral Domain Analysis -- Lumped and Line Resonators -- Planar Resonating Structures -- Planar Periodic Transmission Lines -- Planar Periodic Surfaces -- Metamaterials Realization and Circuit Models - I -- Metamaterials Realization and Circuit Models - II.

Description based on print version record and CIP data provided by publisher; resource not viewed.

Wiley Frontlist Obook All English 2021

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