Microwave Solid State Circuit Design - Hardcover

Bahl, Inder; Bhartia, Prakash

 
9780471831891: Microwave Solid State Circuit Design

Synopsis

This volume presents a comprehensive discussion of the design of passive circuits, solid state devices and microwave solid state circuits. Topics covered include: transmission lines and lumped elements; resonators; impedance matching networks; hybrids and couplers; filters; active and passive solid state devices; oscillators; amplifiers; detectors and mixers; microwave control circuits; frequency multipliers and dividers; computer-aided design; microwave integrated circuits; and future trends in microwave circuits. Appendixes cover S-parameters and ABCD parameters; transfer functions: Bessel, Butterworth, Chebyshev, Gaussian etc; nonreciprocal components and noise.

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Product Description

Microwave Solid State Circuit Design

From the Back Cover

The new edition of an essential guide to MMIC

Monolithic microwave integrated circuits (MMICs) based on gallium arsenide (GaAs) technology are increasingly important in applications where component size and performance are prime factors. These include electronic systems for satellite communications, phased–array radar systems, electronic warfare, and other military applications, as well as consumer electronics. The new Second Edition of Microwave Solid State Circuit Design presents a comprehensive discussion of the most current trends in RF and microwave circuits technologies.

This contributed volume brings together a team of experts to provide state–of–the–art coverage of network theory basics, the design of passive circuits, solid state devices, and microwave solid state circuits. Richly supported by extensive references and problems, the book examines transmission lines and lumped elements, resonators, impedance matching networks, hybrids and couplers, filters, active and passive solid state devices, oscillators, amplifiers, detectors and mixers, microwave control circuits, frequency multipliers and dividers, MEMS, and circuit fabrication technologies. Appendixes cover S–parameters and ABCD parameters, transfer functions, including Butterworth and Chebyshev, units and symbols, as well as physical constants. Features include:
∗ Comprehensive coverage of passive and active RF and microwave circuit design
∗ Treatment of practical aspects of microwave circuits including fabrication technologies
∗ An overview of MEMS technology
∗ Treatment of heterostructure and wide–band gap devices
∗ Inclusion of compact and low–cost circuit design methodologies

Thorough and up to date, this Second Edition of a key reference remains a valuable resource for researchers, engineers, and graduate students in RF and microwave engineering.

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