Millimeter Wave Optical Dielectric Integrated Guides and Circuits

Millimeter Wave Optical Dielectric Integrated Guides and Circuits

Author: Shiban K. Koul

Publisher: Wiley-Interscience

Published: 1997-04-04

Total Pages: 600

ISBN-13:

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This much-needed reference equips electrical engineers, designers, and researchers in the microwave industry with comprehensive, up-to-date information on the theoretical principles and practical applications of dielectric integrated guides and circuits.


Analysis of Dielectric Waveguides for Millimeter Wave and Optical Integrated Circuits

Analysis of Dielectric Waveguides for Millimeter Wave and Optical Integrated Circuits

Author: William Victor McLevige

Publisher:

Published: 1975

Total Pages: 148

ISBN-13:

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Some new dielectric waveguide structures suitable for millimeter wave and optical integrated circuits are presented. A method of analyzing wave propagation in these guides is developed through assuming simple field distribution and approximating the various regions of the guides in terms of effective dielectric constants. The mathematical formulation utilized results in a closed form solution from which the dispersion characteristics of the waveguides are readily obtained. Experimental results are described and the agreement between theory and experiment is shown to be quite good.


A New Method for the Analysis of Dielectric Waveguides for Millimeter Wave and Optical Integrated Circuits

A New Method for the Analysis of Dielectric Waveguides for Millimeter Wave and Optical Integrated Circuits

Author: Ping Yang

Publisher:

Published: 1978

Total Pages: 142

ISBN-13:

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A new method for the analysis of dielectric waveguides for millimeter and optical integrated circuits and a new dielectric waveguide structure are presented. A comparison between this new method and the previously available approaches by Itoh is given. Experimental results are described and the agreement between theory and experiment is shown to be quite good. (Author).


Infrared and Millimeter Waves V9

Infrared and Millimeter Waves V9

Author: Kenneth J. Button

Publisher: Elsevier

Published: 1983-01-01

Total Pages: 363

ISBN-13: 0323153992

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Infrared and Millimeter Waves, Volume 9: Millimeter Components and Techniques, Part I compiles the work of several authors while focusing on certain aspects of infrared and millimeter waves, such as sources of radiation, instrumentation, and millimeter systems. This volume deals with millimeter components and techniques. Chapter 1 covers millimeter wave communications, and then the succeeding chapter discusses a comparative study of millimeter waves and transmission lines. This book then tackles dielectric waveguide electrooptic devices, as well as millimeter-wave propagation and remote sensing of the atmosphere, which are covered in Chapter 4. The fifth chapter presents the technology of large radio telescopes for millimeter and submillimeter. The next chapter explains a gyrotron study program, and the last chapter discusses multimode analysis of quasi-optical gyrotrons and gyroklystrons. This book will be of great use for researchers or professionals whose work involves infrared and millimeter waves.


Infrared and Millimeter Waves V4

Infrared and Millimeter Waves V4

Author: Kenneth J. Button

Publisher: Elsevier

Published: 2014-04-08

Total Pages: 379

ISBN-13: 032315297X

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Infrared and Millimeter Waves is a series of books that compiles the work of several authors, with each volume focusing on certain aspects of infrared and millimeter waves, such as sources of radiation, instrumentation, and millimeter systems. This book concerns itself with millimeter systems. Comprised of seven chapters, this book discusses several systems that involve the use of millimeter waves, such as radars and missile guidance systems. The first chapter provides a comprehensive overview of millimeter waves, while the succeeding chapter discusses several technologies that involve millimeter systems, such as radar, missile guidance, and imaging systems. This book will be of great use to researchers and professionals whose work involves infrared and millimeter waves.


Millimeter-Wave Waveguides

Millimeter-Wave Waveguides

Author: Dmitri Lioubtchenko

Publisher: Springer Science & Business Media

Published: 2007-05-08

Total Pages: 191

ISBN-13: 0306487241

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Millimeter-Wave Waveguides is a monograph devoted to open waveguides for millimeter wave applications. In the first chapters, general waveguide theory is presented (with the emphasis on millimeter wave applications). Next, the book systematically describes the results of both theoretical and experimental studies of rectangular dielectric rod waveguides with high dielectric permittivities. Simple and accurate methods for propagation constant calculations for isotropic as well as anisotropic dielectric waveguides are described. Both analytical and numerical approaches are covered. Different types of transitions have been simulated in order to find optimal configurations as well as optimal dimensions of dielectric waveguides for the frequency band of 75-110 GHz. Simple and effective design is presented. The experimental studies of dielectric waveguides show that Sapphire waveguide can be utilized for this frequency band as a very low-loss waveguide. Design of antennas with low return loss based on dielectric waveguides is also described.


Modern Millimeter-wave Technologies

Modern Millimeter-wave Technologies

Author: Tasuku Teshirogi

Publisher: IOS Press

Published: 2001

Total Pages: 318

ISBN-13: 9781586030988

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This text covers the study of millimeter-waves from the basics to the state-of-the-art devices and application systems.


Analysis Methods for RF, Microwave, and Millimeter-Wave Planar Transmission Line Structures

Analysis Methods for RF, Microwave, and Millimeter-Wave Planar Transmission Line Structures

Author: Cam Nguyen

Publisher: John Wiley & Sons

Published: 2003-06-11

Total Pages: 259

ISBN-13: 0471463841

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A one-stop reference to the major techniques for analyzing microwave planar transmission line structures The last two decades have seen important progress in the development of methods for the analysis of microwave and millimeter-wave passive structures, which contributed greatly to microwave integrated circuit design while also stimulating the development of new planar transmission lines. This timely and authoritative work introduces microwave engineers to the most commonly used techniques for analyzing microwave planar transmission line structures. Designed to be easily accessible to readers with only a fundamental background in electromagnetic theory, the book provides clear explanations of the theory and applications of Green's function, the conformal-mapping method, spectral domain methods, variational methods, and the mode-matching methods. Coverage for each method is self-contained and supplemented with problems and solutions as well as useful figures. In addition to providing detailed formulations of the methods under discussion, this highly practical book also demonstrates how to apply the principles of electromagnetic theory to the analysis of microwave boundary value problems, customize methods for specific needs, and develop new techniques. Analysis Methods for RF, Microwave, and Millimeter-Wave Planar Transmission Line Structures is an excellent working resource for anyone involved in the design and engineering of RF, microwave, and millimeter-wave integrated circuits.


The Essence of Dielectric Waveguides

The Essence of Dielectric Waveguides

Author: C. Yeh

Publisher: Springer Science & Business Media

Published: 2008-06-17

Total Pages: 529

ISBN-13: 0387497994

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The Essence of Dielectric Waveguides provides an overview of the fundamental behavior of guided waves, essential to finding and interpreting the results of electromagnetic waveguide problems. Clearly and concisely written as well as brilliantly organized, this volume includes a detailed description of the fundamentals of electromagnetics, as well as a new discussion on boundary conditions and attenuation. It also covers the propagation characteristics of guided waves along classical canonical dielectric structures – planar, circular cylindrical, rectangular and elliptical waveguides. What’s more, the authors have included extensive coverage of inhomogeneous structures and approximate methods, as well as several powerful numerical approaches specifically applicable to dielectric waveguides.