Classic Works in RF Engineering

Classic Works in RF Engineering

Author: John L. B. Walker

Publisher: Artech House Publishers

Published: 2006

Total Pages: 402

ISBN-13:

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The growing interest in commercial RF applications and high-frequency engineering has triggered a scramble for fundamental design and analysis information. This expertly compiled resource gives microwave engineers instant, one-stop access to a vast range of essential source material in a single convenient volume.


Classic Works in RF Engineering

Classic Works in RF Engineering

Author: John L. B. Walker

Publisher: Artech House Publishers

Published: 2006-01-01

Total Pages: 392

ISBN-13: 9781596933767

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The growing interest in commercial RF applications and high-frequency engineering has triggered a scramble for fundamental design and analysis information. This expertly compiled resource gives microwave engineers instant, one-stop access to a vast range of essential source material in a single convenient volume.


Classic Works in RF Engineering: Microwave and RF filters

Classic Works in RF Engineering: Microwave and RF filters

Author: Ralph Levy

Publisher: Artech House Publishers

Published: 2007

Total Pages: 0

ISBN-13: 9781596932128

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The main purpose of this book is to make available the research on radio-frequency that was originally published in the 1940s but is still relevant today and difficult to find. It focuses on passive signal processing components, namely impedance conversion and power splitting/combining, magnetic materials and RF transformers.


Microwave Engineering

Microwave Engineering

Author: David M. Pozar

Publisher: John Wiley & Sons

Published: 2011-11-22

Total Pages: 752

ISBN-13: 0470631554

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Pozar's new edition of Microwave Engineering includes more material on active circuits, noise, nonlinear effects, and wireless systems. Chapters on noise and nonlinear distortion, and active devices have been added along with the coverage of noise and more material on intermodulation distortion and related nonlinear effects. On active devices, there's more updated material on bipolar junction and field effect transistors. New and updated material on wireless communications systems, including link budget, link margin, digital modulation methods, and bit error rates is also part of the new edition. Other new material includes a section on transients on transmission lines, the theory of power waves, a discussion of higher order modes and frequency effects for microstrip line, and a discussion of how to determine unloaded.


Radio Frequency Integrated Circuit Design

Radio Frequency Integrated Circuit Design

Author: John W. M. Rogers

Publisher: Artech House

Published: 2010

Total Pages: 535

ISBN-13: 1607839806

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This newly revised and expanded edition of the 2003 Artech House classic, Radio Frequency Integrated Circuit Design, serves as an up-to-date, practical reference for complete RFIC know-how. The second edition includes numerous updates, including greater coverage of CMOS PA design, RFIC design with on-chip components, and more worked examples with simulation results. By emphasizing working designs, this book practically transports you into the authors' own RFIC lab so you can fully understand the function of each design detailed in this book. Among the RFIC designs examined are RF integrated LC-based filters, VCO automatic amplitude control loops, and fully integrated transformer-based circuits, as well as image reject mixers and power amplifiers. If you are new to RFIC design, you can benefit from the introduction to basic theory so you can quickly come up to speed on how RFICs perform and work together in a communications device. A thorough examination of RFIC technology guides you in knowing when RFICs are the right choice for designing a communication device. This leading-edge resource is packed with over 1,000 equations and more than 435 illustrations that support key topics.


Classic Works in RF Engineering, Volume 2

Classic Works in RF Engineering, Volume 2

Author: Ralph Levy

Publisher:

Published: 2007-08-31

Total Pages:

ISBN-13: 9781596932135

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This highly practical and convenient book is the most comprehensive resource on microwave and RF filter theory, design, analysis, and applications ever compiled. A perfect companion to the Artech House 2006 bestseller, Classic Works in RF Engineering, this new volume collects 50 classic, hard-to-find papers from the 1950s to 2007 on critical topics in the field-from aperture-coupled filters to zolotarev lowpass filters and everything in between. Moreover, this invaluable collection includes design procedures, formulas, examples, and performance data to help you tackle your challenging projects with speed and efficiency. Including insightful introductions from leading authority and editor, Ralph Levy, each paper brings you definitive project-ready guidance including theoretical background, applications, selection criteria, design steps, calculations, examples, and input on filter components like capacitors, resistors, and inductors. The book includes over 100 diagrams and schematics that help clarify the material at every stage, along with a wealth of problem-solving tips from the top innovators in the field. Whether you need details on combline, resonator, waveguide, or bandstop filters, this one-of-a-kind volume saves you countless hours searching the literature.


Handbook of RF and Microwave Power Amplifiers

Handbook of RF and Microwave Power Amplifiers

Author: John L. B. Walker

Publisher: Cambridge University Press

Published: 2012

Total Pages: 705

ISBN-13: 0521760100

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This is a one-stop guide for circuit designers and system/device engineers, covering everything from CAD to reliability.


High Frequency Techniques

High Frequency Techniques

Author: Joseph F. White

Publisher: John Wiley & Sons

Published: 2016-08-01

Total Pages: 524

ISBN-13: 1119244501

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This textbook is an introduction to microwave engineering. The scope of this book extends from topics for a first course in electrical engineering, in which impedances are analyzed using complex numbers, through the introduction of transmission lines that are analyzed using the Smith Chart, and on to graduate level subjects, such as equivalent circuits for obstacles in hollow waveguides, analyzed using Green’s Functions. This book is a virtual encyclopedia of circuit design methods. Despite the complexity, topics are presented in a conversational manner for ease of comprehension. The book is not only an excellent text at the undergraduate and graduate levels, but is as well a detailed reference for the practicing engineer. Consider how well informed an engineer will be who has become familiar with these topics as treated in High Frequency Techniques: (in order of presentation) Brief history of wireless (radio) and the Morse code U.S. Radio Frequency Allocations Introduction to vectors AC analysis and why complex numbers and impedance are used Circuit and antenna reciprocity Decibel measure Maximum power transfer Skin effect Computer simulation and optimization of networks LC matching of one impedance to another Coupled Resonators Uniform transmission lines for propagation VSWR, return Loss and mismatch error The Telegrapher Equations (derived) Phase and Group Velocities The Impedance Transformation Equation for lines (derived) Fano's and Bode's matching limits The Smith Chart (derived) Slotted Line impedance measurement Constant Q circles on the Smith Chart Approximating a transmission line with lumped L's and C's ABCD, Z, Y and Scattering matrix analysis methods for circuits Statistical Design and Yield Analysis of products Electromagnetic Fields Gauss's Law Vector Dot Product, Divergence and Curl Static Potential and Gradient Ampere's Law and Vector Curl Maxwell's Equations and their visualization The Laplacian Rectangular, cylindrical and spherical coordinates Skin Effect The Wave Equation The Helmholtz Equations Plane Propagating Waves Rayleigh Fading Circular (elliptic) Polarization Poynting's Theorem EM fields on Transmission Lines Calculating the impedance of coaxial lines Calculating and visualizing the fields in waveguides Propagation constants and waveguide modes The Taylor Series Expansion Fourier Series and Green's Functions Higher order modes and how to suppress them Vector Potential and Retarded Potentials Wire and aperture antennas Radio propagation and path loss Electromagnetic computer simulation of structures Directional couplers The Rat Race Hybrid Even and Odd Mode Analysis applied to the backward wave coupler Network analyzer impedance and transmission measurements Two-port Scattering Parameters (s matrix) The Hybrid Ring coupler The Wilkinson power divider Filter design: Butterworth, Maximally flat & Tchebyscheff responses Filter Q Diplexer, Bandpass and Elliptic filters Richard's Transformation & Kuroda’s Identities Mumford's transmission line stub filters Transistor Amplifier Design: gain, biasing, stability, and conjugate matching Noise in systems, noise figure of an amplifier cascade Amplifier non-linearity, and spurious free dynamic range Statistical Design and Yield Analysis