Showing posts with label electricity principles. Show all posts
Showing posts with label electricity principles. Show all posts

Microwave Engineering Review

Microwave Engineering
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I was first introduced to this book through my professor. After reading this book I had a very good understanding of the material: wave guides, networks, S-parameters, filters, impedence matching, and transmission lines. This book does it all. It is an excellent introductory to intermediate book on Microwave engineering. You can understand the book entirely without getting lost in theory. Pozar does a good job at not confusing the reader, and it provides some real world examples that help the user relate. I myself go to GA Tech, and I recommend any electrical engineering student who is interested in electromagnetics or RF engineering to buy this book. If only because the GA Tech Library only has one copy and it is always checked out.

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Focusing on the design of microwave circuits and components, this valuable reference offers professionals and students an introduction to the fundamental concepts necessary for real world design. The author successfully introduces Maxwell's equations, wave propagation, network analysis, and design principles as applied to modern microwave engineering. A considerable amount of material in this book is related to the design of specific microwave circuits and components, for both practical and motivational value. It also presents the analysis and logic behind these designs so that the reader can see and understand the process of applying the fundamental concepts to arrive at useful results. The derivations are well laid out and the majority of each chapter's formulas are displayed in a nice tabular format every few pages. This Third Edition offers greatly expanded coverage with new material on: Noise; Nonlinear effects; RF MEMs; transistor power amplifiers; FET mixers; oscillator phase noise; transistor oscillators and frequency multiplier.

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Microwave Transmission Networks : Planning, Design and Deployment Review

Microwave Transmission Networks : Planning, Design and Deployment
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This book provides an excellent overview of microwave engineering within the industry. It is well written and laid out in an introduction to deployment fashion. Excellent discussion on link budget development and a thorough view of availability versus reliability within the microwave path. I like how the author introduces you to the basic fundamentals of microwave networks and then moves into planning, design, and deployment. If you design or work with microwave radios, this book should be on your shelf as a right hand tool. The book has been an excellent reference to me for developing software and microwave link budgets. Great job!

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Design and build - anywhere in the world. The only thoroughly modern reference on microwave transmission network engineering and management, expert Harvey Lehpamer's stellar "Microwave Transmission Networks" provides hands-on help that speeds every step of planning, designing, building, and testing systems built to both North American and ITU standards.Offering in-depth help you'll use every day, from feasibility studies to actual hardware rollouts, this valuable and easy-to-understand resource helps project managers, engineers, and planners to: understand, design, and build microwave point-to-point networks - long- or short-haul, North American or ITU standards; expedite the analysis and the design process using internationally accepted models; calculate loss/attenuation, fading and fade margins, quality, and availability and perform interference analysis; get need-to-know answers on microwave link engineering; perform expert testing from design stage through acceptance; handle hardware issues from housings to antenna mounts and beyond; understand and track microwave network rollouts; manage maintenance, regulatory issues, ethical dilemmas, and logistical and organizational challenges; understand other microwave systems like Point-to-Multipoint, WLANs, and Bluetooth as well as microwave systems for rapid deployment; and, more.

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Design of Ultra Wideband Antenna Matching Networks: Via Simplified Real Frequency Technique (Signals and Communication Technology) Review

Design of Ultra Wideband Antenna Matching Networks: Via Simplified Real Frequency Technique (Signals and Communication Technology)
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Especially good are the Matlab code examples to work along with the text. The author is a recognized authority and interest in UWB systems is only increasing...

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Design of Ultra Wideband Antenna Matching Networks: via Simplified Real Frequency Technique (SRFT) will open up a new horizon for design engineers, researchers, undergraduate and graduate students to construct multi-band and ultra wideband antenna matching networks for antennas which in turn will push the edge of technology to manufacture new generation of complex communication systems beyond microwave frequencies both in commercial and military line.In Design of Ultra Wideband Antenna Matching Networks, many real life examples are presented to design antenna matching networks over HF and cellular commercial multi-band frequencies. For each example, open MatLab source codes are provided so that the reader can easily generate and verify the results of the examples included in the book.

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RF & Microwave Design Essentials: Engineering Design and Analysis from DC to Microwaves Review

RF and Microwave Design Essentials: Engineering Design and Analysis from DC to Microwaves
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I found this book to be very interesting once I began reading it I could not put it down. I highlt recommend others to read it I give this book two thumbs up.

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RF & Microwave Design EssentialsThis book is an indispensable tool for the RF/Microwave engineer as well as the scientist in the field working on the high frequency circuit applications. You will discover:] Electricity Fundamentals ] Wave propagation] Amplifier Design] Gain Equations] CAD Examples] S-Parameters ] Circuit Noise ] RF Design] Circuit Stability] Transmission Lines] RF/Microwave Bands

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RF/Microwave Circuit Design for Wireless Applications Review

RF/Microwave Circuit Design for Wireless Applications
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This is the type of book commonly published by Artech House or IEEE Press. It is as if a person who was highly skilled in writing liberal arts prose finds a file cabinet abandoned by a retired engineering manager. The file cabinet is filled with a lifetime eclectic collection of magazine articles, photo copies of sections of books, and reports from subordinates, all of which were never read by the manager because of time restraints. The liberal arts person shuffles the contents together into a book without really understanding what is written. This book is strewn with tables and illustrations which are never referenced in the text. Most of the illustrations are multiple generation photocopies. Equations contain undefined terms. Critical design issues are passed over with one sentence while there is a several page mathematical derivation of the DC output impedance of a BJT. The author infers that it is not necessary to understand what you do as long as you can get the answer from a CAD program. The book perpetuates the urban legend that Gilbert invented a mixer. This topology goes back to at least 1920 and had been implemented with relays, vacuum tubes, specialized vacuum tubes, and discrete transistors. The author references Gilbert's paper which references the discrete transistor version as prior art and then shows how to make a pre-distortion circuit to add to this mixer to obtain a four quadrant linear multiplier. So much for not reading your references. Finally, the book does not explain anything very clearly. people who are not already skilled in RF will not gain any design ability from this book. They will however get a false sense of skill level that will allow them to do basic, simple designs, but not designs that push technology. That is, they could do a day late dollar short design of consumer products, but not military products.
This comment was added in 2007. It seems that Artech House and the IEEE press have become more careful in what they publish. Most of the books published recently by them are edifying to read and I have purchased and enjoyed several of them.

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A unique, state-of-the-art guide to wireless integrated circuit design.With wireless technology rapidly exploding, there is a growing need for circuit design information specific to wireless applications. Presenting a single-source guidebook to this dynamic area, industry expert Ulrich Rohde and writer David Newkirk provide researchers and engineers with a complete set of modeling, design, and implementation tools for tackling even the newest IC technologies. They emphasize practical design solutions for high-performance devices and circuitry, incorporating ample examples of novel and clever circuits from high-profile companies. They also provide excellent appendices containing working models and CAD-based applications.RF/Microwave Circuit Design for Wireless Applications offers:* Introduction to wireless systems and modulation types* A systematic approach that differentiates between designing for battery-operated devices and base-station design* A comprehensive introduction to semiconductor technologies, from bipolar transistors to CMOS to GaAs MESFETs* Clear guidelines for obtaining the best performance in discrete and integrated amplifier design* Detailed analysis of available mixer circuits applicable to the wireless frequency range* In-depth explanations of oscillator circuits, including microwave oscillators and ceramic-resonator-based oscillators* A thorough evaluation of all components of wireless synthesizers

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Integrated Circuits for Wireless Communications Review

Integrated Circuits for Wireless Communications
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Don't loose your time for reading this book. Personally I didn't expect a book from Mr.Abidi and Mr.Gray. No given theory and no
practice. Only some old IEEE papers collections .
Such a pitty..

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RF & Microwave Circuit Design for Wireless Applicatons Review

RF and Microwave Circuit Design for Wireless Applicatons
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This is a very good design guide for rf engineers and students involved in microwave components & circuits. Pretty comprehensive, but costly though.

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This is the first book to provide comprehensive coverage of hardware and circuit design specifically for engineers working in wireless communications. It serves as a reference for practicing engineers and technicians working in the areas of RF, microwaves, communications, solid-state devices, and radar.

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Practical RF Circuit Design for Modern Wireless Systems Vol. II Review

Practical RF Circuit Design for Modern Wireless Systems Vol. II
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These books were written by two well-known lectures in the RF/MW field with many years of teaching experience. Their goal was to provide a practical exposition of circuit design in the RF/MW field that appealed to students, academicians, and design engineers. They certainly succeeded. The reader will find that fundamental and advanced principles are properly explained with emphasis in CAD techniques. While the mathematical manipulations are kept to a minimum, the associated results are well referenced and extensively discussed.
Volume I:
This volume focuses mainly on passive circuits and systems. The first two chapters provide a review of RF/MW circuit fundamentals. The emphasis is placed on topics related to RF/MW circuits, such a resonance, series and parallel conversions, quality factor, power transfer, transmission lines, reflection coefficients, and mismatch loss. Chapter 3 describes several radio systems and illustrates how the system's specifications relate to the various individual components. Receiver's characteristics are discussed, such as receiver noise and sensitivity, nonlinearities and dynamic range, and automatic control. The chapter includes the analysis of a CDMA handset from a system point of view. Chapters 4 and 5 describe the use of S parameters, the Smith chart, impedance matching networks, and bandwidth considerations.Many impedance matching design examples are provided with their associated frequency responses. Both lumped and microstrip matching circuits are considered. Chapter 6 shows the use of CAD programs for RF/MW circuit design. This chapter underlines the major key areas in CAD, such as linear circuit analysis, electromagnetic simulation, tuning, synthesis, optimization, non-linear simulations, and statistical techniques. Passive component models are discussed in Chapter 7, which include RLC components, distributed components, transformers, crystals, dielectric resonators, and surface acoustic wave resonators. The authors show how actual parts affect the behavior of a design, and how to account for them in the final product. Chapter 8 gives an overview of passive filters and the techniques used for their design in the RF/MW area. Such topics as the Richards' transformation, Norton transformations, and Kuroda identities are discussed. Chapter 9 is an overview of the major differences and similarities between RF and high-speed digital systems.
Volume II:
This volume focuses mainly on active circuits and systems. The volume begins with a discussion of linear RF/MW amplifier design techniques. The first two chapters deal with stability conditions, stability circles and the various design techniques for transducer gain, operating power gain, and associated gain. Material in low-noise amplifier design and broadband techniques is included, as well as dc considerations. Chapter 3 discusses the modeling of the actual devices (such as BJT, GaAs, HETM, etc). Chapter 4 deals with nonlinear CAD simulations techniques, and their uses. Time and frequency domain methods are discussed and compared. A good discussion of the harmonic balance method is given, including a section on harmonic balance simulation of oscillators. Chapter 5 considers the topic of power transistor amplifiers. The categories of amplifiers are presented and the topics of bias considerations, distortion reduction and predistortion are included. The chapter includes a detailed power amplifier design. Oscillators are discussed in Chapter 6, with emphasis on the negative resistance design approach and CAD simulations. A section is devoted to the description of phase noise. Several design examples are included. An interesting example uses a ceramic resonator, another example involves a crystal resonator, and one example deals with a Colpitts VCO using a varactor diode. Chapter 7 deals with mixers and frequency multipliers. The authors discuss diodes and transistor mixers and their effect on the overall system. The final chapter gives an overview of several wireless systems.
The material covered in these two volumes extends from the basic to the advance. The texts are suitable for short courses in RF/MW circuits, since they provide a comprehensive description of the RF/MW circuit design field. They are also suitable for a course (or courses) at the senior/graduate level in the RF/MW field. The books strongly emphasize design and the use of CAD techniques. Enough information is provided in their CAD examples that the simulations can easily be implemented with one of the major CAD programs available for RF/MW circuits.
These texts contain a tremendous amount of information for RF/MW circuit designers. Especially, for those working in wireless communications. Discrete design is covered in detail-from the individual component specification to the overall system performance. The presentation is clear and well organized. It certainly makes for a good addition to the designer's library.

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The second of two volumes, this is a comprehensive treatment of nonlinear circuits, introducing the advanced topics that professionals need to understand for their RF (radio frequency) circuit design work. It presents an introduction to active RF devices and their modelling, and explores nonlinear circuit simulation techniques. Design techniques are addressed for RF transistor amplifiers, oscillators, mixers and frequency multipliers. This reference concludes with an in-depth look at circuits in systems and their radio system applications, illustrating how the components are interconnected to complete a system that meets the necessary specifications.

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RF Power Amplifiers for Wireless Communications, Second Edition (Artech House Microwave Library) Review

RF Power Amplifiers for Wireless Communications, Second Edition (Artech House Microwave Library)
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An excellent source of information. Mr Cripps very articulatly reviews at all classes of RF power amplification, and explains theoretical design principles and suggests improvements. His 'Load-pull' technique method is already widely used in design of PA's and serves as a good design aid. Although I would have liked him to go deeper into 'high-efficiciency PA techniques, spending more time on 'Chierix, Khan and Doherty methods. His book is the best reference on PA's I have seen in the last decade, I could not put it down. I look forward to his next book

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Reviewing the previous edition, "IEEE Microwave Magazine" boasted, "anyone designing power amplifiers will find this book thought provoking and useful." Professionals in the field agreed as the book went on to be one of our top-selling RF design titles. This extensively revised edition of "RF Power Amplifiers for Wireless Communications" offers practitioners a comprehensive, practical, and up-to-date understanding of how to tackle a PA (power amplifier) design with confidence and quickly determine the cause of malfunctioning hardware. Among the numerous updates, the Second Edition includes five new chapters on some of today's most important topics, such as class AB PAs at GHz frequencies; switching PA modes at GHz frequencies; signals, modulation systems, and PA nonlinearities; power amplifier bias circuit design; and load-pull techniques. Supported with nearly 200 illustrations, the book contains the most complete survey of RF PA efficiency enhancement and linearization techniques in a single volume.

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