Showing posts with label rf. Show all posts
Showing posts with label rf. Show all posts

Hands-On ZigBee: Implementing 802.15.4 with Microcontrollers (Embedded Technology) Review

Hands-On ZigBee: Implementing 802.15.4 with Microcontrollers (Embedded Technology)
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Little more than an overview of the various 802.15.4 / Zigbee chips available from various manufacturers. Very little actual Zigbee information. Lacking any serious example source-code. Also the author has possibly the most annoying writing style I've ever read, with lots of music trivia filling the places where real information should be.

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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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The Technician's Radio Receiver Handbook: Wireless and Telecommunication Technology Review

The Technician's Radio Receiver Handbook: Wireless and Telecommunication Technology
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If you use a soldering iron and oscilloscope this is a very good discussion of radio theory, circuits and hands on experience. Joe Carr is the best at what he does, and this is a very good example.

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The Technician's Radio Receiver Handbook is an invaluable tool for anyone involved in the technologies of wireless, cellular telephone, telecommunications, avionics, and other forms of electronic communication using radio waves. The market demand for and use of wireless and telecommunication technology has increased dramatically over the past decade, leaving many technicians and other communications professionals with the need for accurate information on how the newest equipment works and how to fix any problems that arise. Joe Carr, a notable author in the amateur radio and communications markets, explains both the new and old technologies, the science behind the scenes, as well as troubleshooting techniques not found in any other book. The book will also have a companion website including helpful calculation software, customizable spreadsheets, and much more.Written for technicians and hands-on practitioners in clear, easy-to-read text with many detailed illustrationsContains information on cutting-edge receiver equipment as well as the most popular types used today in a variety of markets.Destined to be a constant reference and superb training guide for anyone interested in communications technology

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Practical RF Circuit Design for Modern Wireless Systems, Volume I : Passive Circuits and Systems Review

Practical RF Circuit Design for Modern Wireless Systems, Volume I : Passive Circuits and Systems
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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 first of a two-volume set, this leading-edge book takes a practical approach to RF circuit design, offering a complete understanding of the fundamental concepts you need to know and use for your work in this industry. The book lays the ground work for efficient RF circuit design in a step-by-step approach, by defining important principles and parameters and progressively introducing critical analytical tools. It helps you distinguish between RF and low frequency circuits, and offers a detailed look at a typical RF system. This is a tested and insightful book that contains answers to most of the questions practical engineers are asking. The first volume reviews various computer-aided simulation, synthesis, and optimization techniques used in modern RF and microwave design, and discusses the practical use of the graphical design tools, such as the Smith Chart.

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RF System Design of Transceivers for Wireless Communications Review

RF System Design of Transceivers for Wireless Communications
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I came across this book after I went through a few books on RF system design. I guess I can confidently say that the book covers the most important aspects of the RF system design such as noise figure, inter-modulation and adjacent channel power ratio calculations. The cascaded system analysis (Noise figure and OIP calculations)are explained in a very straightforward and easy to follow manner. Of particular interest is the section on the architectural trade-off analysis. This section provides a very clear overview of fundamental issues that impact RF system design in most practical environments.This book has room for improvement though. In particular, the ADC noise figure analysis for the band-pass sampling (appendix 3D) does not cover the ADC non-linearity, the jitter noise and the aliasing due to sub-sampling. Moreover, most of the examples are around the mobile hand-set systems. In my opinion expanding the analysis to the base-station could benefit some readers in this area.
Reader can find himself annoyed by many typo errors in the bibliography section. I am expecting these minor issues to be resolved over the subsequent editions. Overall, I recommend this book for RF system designers who need an up-to-date encyclopedia in this area.


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This book is for RF Engineers and, in particular, those engineers focusing mostly on RF systems and RFIC design. The author develops systematic methods for RF systems design, complete with a comprehensive set of design formulas. Its focus on mobile station transmitter and receiver system design also applies to transceiver design of other wireless systems such as WLAN. This comprehensive reference work covers a wide range of topics from general principles of communication theory, as it applies to digital radio designs to specific examples on implementing multimode mobile systems.

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Essentials of Short-Range Wireless (The Cambridge Wireless Essentials Series) Review

Essentials of Short-Range Wireless (The Cambridge Wireless Essentials Series)
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"Essentials of Short-Range Wireless" is an excellent summary of short-range wireless technologies, an area of rapidly growing importance within electronic product design and engineering.
The book manages to be both concise and extremely informative, and is written in a very easy-to-read style which is well-suited for professionals either with engineering degrees or with non-technical backgrounds.
The book provides the best summary of wireless architecture and parameters which I have seen, as well as a deeper analysis and comparison of the Bluetooth, IEEE 802.11/Wi-Fi, IEEE 802.15.4/Zigbee, and Bluetooth low energy wireless standards.
In addition, the book provides a great deal of practical information on implementing a wireless solution, as well as a description of the key product applications and emerging markets for short-range wireless technologies.
I would recommend this book to anyone with an interest in wireless product design. Nick Hunn has done the field a great service by writing a guide as compact, useful and descriptive as "Essentials of Short-Range Wireless".

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For engineers, product designers, and technical marketers who need to design a cost-effective, easy-to-use, short-range wireless product that works, this practical guide is a must-have. It explains and compares the major wireless standards - Bluetooth, Wi-Fi, 802.11, ZigBee, 802.15.4, and UWB - enabling you to choose the best standard for your product. Packed with practical insights based on the author's 10 years of design experience, and highlighting pitfalls and trade-offs in performance and cost, this book will ensure you get the most out of your chosen standard by teaching you how to tailor it for your specific implementation. With information on intellectual property rights and licensing, production test, and regulatory approvals, as well as analysis of the market for wireless products, this resource truly provides everything you need to design and implement a successful short-range wireless product.

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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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(More customer reviews)
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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Low-Rate Wireless Personal Area Networks: Enabling Wireless Sensors With IEEE 802.15.4 (Ieee Standards Wireless Networks) Review

Low-Rate Wireless Personal Area Networks: Enabling Wireless Sensors With IEEE 802.15.4 (Ieee Standards Wireless Networks)
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Obviously the target audience is a technologist, and more specifically those interested in implementation. However, the first two chapters are good for Marketing audiences as well. The meat of the book was chapters 3-7. My favorites were 5 and 6. HIGHLY RECOMMENDED read if you are a designer pondering wireless communications for a product design, and you are considering 802.15.4 technology.

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This SECOND EDITION of Low-Rate Wireless Personal Area Networks: Enabling Wireless Sensors with IEEE 802.15.4 is the newest handbook in the IEEE Standards Wireless Networks Series.This updated book now includes detailed information from the revised IEEE Std 802.15.4-2006, which includes the amendment IEEE 802.15.4b. IEEE Std 802.15.4 was developed to address low-cost and low-power design to enable applications in the fields of industrial, agricultural, vehicular, residential, and medical sensors and actuators. This book offers the reader an insider's view of the standard. Features include an overview of the standard, the motivation and vision behind it, background on the technology, technical features and components, application scenarios, and material not covered in the standard related to the network layer functionality for applications.The book also focuses on implementation and system design considerations, including an analysis of system-level, real-world issues that will be important for prospective implementers to consider.Presented in a concise and easy to read format by experts intimately involved in the development and writing of the standard, this guide is an invaluable resource to the standard for those interested in the field of "simple" wireless connectivity.Low-Rate Wireless Personal Area Networks, 2nd Edition, is a MUST READ for anyone who wants to fully understand the inner-workings and possibilities of the IEEE 802.15.4 standard.--This text refers to the Paperback edition.

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Essential Guide to Wireless Communications Applications, The (2nd Edition) Review

Essential Guide to Wireless Communications Applications, The (2nd Edition)
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Unlike alot of other books out there, the title of this book is right on the money when it comes to the content of the book. This book IS an essential guide to wireless communications. Like many other people out there, I often read the online articles and technical editorials of Mr. Dornan (do a web search, they are great reading too!). So I thought I could not go wrong with his book. I was right. Starting with a bit of a history lesson, the author takes you through current 2/2.5G cellular and then hits the ground running. He doesn't stop until he has covered 3G, wireless LANs, messaging, WAP, wireless e-commerce, security, fixed wireless (WLL) and satellite technology. Mr. Dornan has a great writing style and throughly knows his material. So, no matter what your knowledge level, the read always has a light and easy feel to it and is still able to communicate a ton of relivant information to you. If you need a good starting place on wireless communications or a refresher course, you won't find too many books better than this one.

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Now, the #1 nontechnical guide to next-generation wireless has been fully updated for tomorrow's technologies-and today's business realities. The Essential Guide to Wireless Communications Applications: From Cellular Systems to Wi-Fi, Second Edition, reviews every new wireless development that matters, from 3.5G and 4G networks to profitable m-commerce applications, WLANs to T-Rays. Includes specific business wireless buying advice, plus new coverage of the health issues surrounding wireless communications.

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ZigBee Wireless Networks and Transceivers Review

ZigBee Wireless Networks and Transceivers
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This book is excellent for learning ZigBee/IEEE802.15.4 and short-range wireless networking. I found this book very useful and it has answered many of my questions. I am impressed with its content and this book should be the definitive starting purchase for any ZigBee or IEEE 802.15.4 developer. I manage a small team of application engineers building proprietary wireless devices. We bought all three ZigBee books currently available on the market and we like this book the most.
Here are my comments regarding this book:
Pros:
1.Excellent introduction to ZigBee and IEEE 802.15.4. This book is well written and started us on the right track. The book goes beyond the basics.
2.This book contains a great introduction to the field of short-range wireless networking. Many of the materials discussed in this book (e.g., range calculations, battery life calculations, antenna selection, etc.) are useful and relevant, even if the short-range wireless networking standard is not ZigBee.
3.I liked the fact that the book comes with a website (http://www.LearnZigBee.com). We have used the calculators posted on the website to estimate battery life and various range extension calculations.
4. Coexistence is a challenge for us and this book answered most of my questions regarding coexistence of ZigBee with other proprietary wireless devices.Cons:
1. The last chapter is a review of other wireless networking standards (e.g., WirelessHART), but it does not go beyond the basics of these alternative standards. We wished to see more information about these standards.


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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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Electromagnetics Explained: A Handbook for Wireless/ RF, EMC, and High-Speed Electronics (EDN Series for Design Engineers) Review

Electromagnetics Explained: A Handbook for Wireless/ RF, EMC, and High-Speed Electronics (EDN Series for Design Engineers)
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Electromagnetics texts almost always get so bogged down in complicated mathematics right from the start, that the reader quickly loses all intuitive feel for the subject matter and any real understanding for what's going on.
This book is different!! Finally, somebody has written a book which explains electromagnets from electrostatics to antennas to waveguides in a way that almost anybody can understand. After all the graduate level electromagnetics courses I took learning about TM modes and sperical Bessel functions, I still couldn't claim that I understood much about electomagnetics - until I read this book. Suddenly all kinds of puzzle pieces are fitting together. I only wish I had been able to read it before I ever took any of those classes. I certainly would have had a much better understanding of and appreciation for what I was learning.
I would recommend this book for any electrical engineer or technician, as well as any non-electrical engineer who wants to understand the basics of electromagnetics. If I was an emags professor, I would definitely make this required reading before I ever put a piece of chalk to the board!
Bravo, Mr. Schmitt! Your matter-of-fact writing style and useful every-day analogies have given me a much better understanding of this otherwise enigmatic subject.

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Based on familiar circuit theory and basic physics, this book serves as an invaluable reference for both analog and digital engineers alike.For those who work with analog RF, this book is a must-have resource. With computers and networking equipment of the 21st century running at such high frequencies, it is now crucial for digital designers to understand electromagnetic fields, radiation and transmission lines. This knowledge is necessary for maintaining signal integrity and achieving EMC compliance. Since many digital designers are lacking in analog design skills, let alone electromagnetics, an easy-to-read but informative book on electromagnetic topics should be considered a welcome addition to their professional libraries.Covers topics using conceptual explanations and over 150 lucid figures, in place of complex mathematicsDemystifies antennas, waveguides, and transmission line phenomenaProvides the foundation necessary to thoroughly understand signal integrity issues associated with high-speed digital design

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Essential Guide to RF and Wireless, The (2nd Edition) Review

Essential Guide to RF and Wireless, The (2nd Edition)
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This book is NOT for you if you plan on building or designing an RF circuit. It is definetely not for the TECHNICAL consumer.
But it is meant for people who just want to get the gist of RF technology. This review is to warn people who are planning to get into the area of RF. You may want to purchase RF Circuit Design by Chris Bowick instead. If your into the theory of RF, avoid this book.
3 stars and no less because it was well written. No more no less.
And Carl Weisman was right, when he said "hide the book from engineers."

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Complete Wireless Design Review

Complete Wireless Design
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The free wireless circuit design and simulation software that comes with this book have proven extremely valuable to me, unlike many such programs that come with other electronics books. I am able to build a complete amplifier, filter, or oscillator and simulate it with one of the enclosed programs, Puff. This ups my confidence level that the design will function in real life. The other program, AppCad, will actually automatically design FET and bipolar amplifier bias circuits, detectors, microstrip, systems design calcs, etc. I hav'nt tried the EasyPLL phased locked loop design program or the Sonnet microwave simulation software.
Mr. Sayre's book has become one of the more popular ones on rf circuit design for a very good reason: It presents its material in such a way that even a software engineer such as myself can design many of the various bit and pieces of a voice or data radio by just using this one book. As far as I am concerned this is really an achievement, and is valuable to all who are interested in radio design from the low MHz to the high GHz regions. It covers a very large range of information needed on RF engineering, and not only discrete level circuit design, but also systems design, digital and analog modulation, testing and troubleshooting, PCB layout, propagation, EMI, prototyping, etc. It is a great rf book with a large variety of indispensable designs and formulas.

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