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Coplanar waveguide circuits, components, and systems / Rainee N. Simons.

By: Contributor(s): Material type: TextTextSeries: Wiley series in microwave and optical engineering ; 152Publisher: [Hoboken, New Jersey] : John Wiley,2001. Distributor: [Piscataqay, New Jersey] : IEEE Xplore, [2002]Description: 1 PDF (xx, 439 pages) : illustrationsContent type:
  • text
Media type:
  • electronic
Carrier type:
  • online resource
ISBN:
  • 9780471224754
Subject(s): Genre/Form: Additional physical formats: Print version:: No titleDDC classification:
  • 621.381/331
Online resources: Also available in print.
Contents:
Preface. Introduction. Conventional Coplanar Waveguide. Conductor-Backed Coplanar Waveguide. Coplanar Waveguide with Finite-Width Ground Planes. Coplanar Waveguide Suspended Inside A Conducting Enclosure. Coplanar Striplines. Microshield Lines and Coupled Coplanar Waveguide. Attenuation Characteristics of Conventional, Micromachined, and Superconducting Coplanar Waveguides. Coplanar Waveguide Discontinuities and Circuit Elements. Coplanar Waveguide Transitions. Directional Couplers, Hybrids, and Magic-Ts. Coplanar Waveguide Applications. References. Index.
Summary: Up-to-date coverage of the analysis and applications of coplanar waveguides to microwave circuits and antennas The unique feature of coplanar waveguides, as opposed to more conventional waveguides, is their uniplanar construction, in which all of the conductors are aligned on the same side of the substrate. This feature simplifies manufacturing and allows faster and less expensive characterization using on-wafer techniques. Coplanar Waveguide Circuits, Components, and Systems is an engineer's complete resource, collecting all of the available data on the subject. Rainee Simons thoroughly discusses propagation parameters for conventional coplanar waveguides and includes valuable details such as the derivation of the fundamental equations, physical explanations, and numerical examples. Coverage also includes: . Discontinuities and circuit elements. Transitions to other transmission media. Directional couplers, hybrids, and magic T. Microelectromechanical systems based switches and phase shifters. Tunable devices using ferroelectric materials. Photonic bandgap structures. Printed circuit antennas.
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Includes bibliographical references and index.

Preface. Introduction. Conventional Coplanar Waveguide. Conductor-Backed Coplanar Waveguide. Coplanar Waveguide with Finite-Width Ground Planes. Coplanar Waveguide Suspended Inside A Conducting Enclosure. Coplanar Striplines. Microshield Lines and Coupled Coplanar Waveguide. Attenuation Characteristics of Conventional, Micromachined, and Superconducting Coplanar Waveguides. Coplanar Waveguide Discontinuities and Circuit Elements. Coplanar Waveguide Transitions. Directional Couplers, Hybrids, and Magic-Ts. Coplanar Waveguide Applications. References. Index.

Restricted to subscribers or individual electronic text purchasers.

Up-to-date coverage of the analysis and applications of coplanar waveguides to microwave circuits and antennas The unique feature of coplanar waveguides, as opposed to more conventional waveguides, is their uniplanar construction, in which all of the conductors are aligned on the same side of the substrate. This feature simplifies manufacturing and allows faster and less expensive characterization using on-wafer techniques. Coplanar Waveguide Circuits, Components, and Systems is an engineer's complete resource, collecting all of the available data on the subject. Rainee Simons thoroughly discusses propagation parameters for conventional coplanar waveguides and includes valuable details such as the derivation of the fundamental equations, physical explanations, and numerical examples. Coverage also includes: . Discontinuities and circuit elements. Transitions to other transmission media. Directional couplers, hybrids, and magic T. Microelectromechanical systems based switches and phase shifters. Tunable devices using ferroelectric materials. Photonic bandgap structures. Printed circuit antennas.

Also available in print.

Mode of access: World Wide Web

Description based on PDF viewed 12/21/2015.

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