9780471414797-0471414794-Microwave Circuit Design Using Linear and Nonlinear Techniques

Microwave Circuit Design Using Linear and Nonlinear Techniques

ISBN-13: 9780471414797
ISBN-10: 0471414794
Edition: 2
Author: Ulrich L. Rohde, George D. Vendelin, Anthony M. Pavio
Publication date: 2005
Publisher: Wiley-Interscience
Format: Hardcover 1080 pages
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Book details

ISBN-13: 9780471414797
ISBN-10: 0471414794
Edition: 2
Author: Ulrich L. Rohde, George D. Vendelin, Anthony M. Pavio
Publication date: 2005
Publisher: Wiley-Interscience
Format: Hardcover 1080 pages

Summary

Microwave Circuit Design Using Linear and Nonlinear Techniques (ISBN-13: 9780471414797 and ISBN-10: 0471414794), written by authors Ulrich L. Rohde, George D. Vendelin, Anthony M. Pavio, was published by Wiley-Interscience in 2005. With an overall rating of 4.2 stars, it's a notable title among other Electrical & Electronics (Engineering) books. You can easily purchase or rent Microwave Circuit Design Using Linear and Nonlinear Techniques (Hardcover) from BooksRun, along with many other new and used Electrical & Electronics books and textbooks. And, if you're looking to sell your copy, our current buyback offer is $0.57.

Description

The ultimate handbook on microwave circuit design with CAD. Full of tips and insights from seasoned industry veterans, Microwave Circuit Design offers practical, proven advice on improving the design quality of microwave passive and active circuits-while cutting costs and time. Covering all levels of microwave circuit design from the elementary to the very advanced, the book systematically presents computer-aided methods for linear and nonlinear designs used in the design and manufacture of microwave amplifiers, oscillators, and mixers. Using the newest CAD tools, the book shows how to design transistor and diode circuits, and also details CAD's usefulness in microwave integrated circuit (MIC) and monolithic microwave integrated circuit (MMIC) technology. Applications of nonlinear SPICE programs, now available for microwave CAD, are described. State-of-the-art coverage includes microwave transistors (HEMTs, MODFETs, MESFETs, HBTs, and more), high-power amplifier design, oscillator design including feedback topologies, phase noise and examples, and more. The techniques presented are illustrated with several MMIC designs, including a wideband amplifier, a low-noise amplifier, and an MMIC mixer. This unique, one-stop handbook also features a major case study of an actual anticollision radar transceiver, which is compared in detail against CAD predictions; examples of actual circuit designs with photographs of completed circuits; and tables of design formulae.

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