Showing posts with label circuit components. Show all posts
Showing posts with label circuit components. Show all posts

RF Circuit Design, Second Edition Review

RF Circuit Design, Second Edition
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RF design can either be understood from first principles through Maxwell's equations (wave theory) or from circuit analysis through the basic passive and active electronic components. This book takes the latter approach because it is much easier and far more practical for building actual circuits. Also the mathematics can be held to a minimum with this approach. One of the main reasons the first edition of this book was so popular was the emphasis on reading and understanding Smith charts. This provides a very quick visual entry into RF design without the heavy emphasis on differential equations and boundary conditions.
The book under review is the second edition, which updates the (now more than 25 years old) first edition with two new chapters on RF Front-End Design (chapter 8) and RF Design Tools (chapter 9). Chapter 8 covers modern radio front-end design including sections on intermodulation, receiver architecture and software defined radios. Chapter 9 gives an overview of design tools before going into a detailed case study of IEEE 802.11a in CMOS using Analog Office software.
It is instructive to see both how many things have changed and yet how the basic principles have remained the same. Even though the individual NPN transistors mentioned in the original chapters are long gone (replaced by highly integrated op-amps and LNAs), the passive components are still used in designs every day. And the transistor design issues (S parameters, transistor biasing) still apply today in the multi-GHz range just as they did in the MHz range a quarter of a century ago. Today's integrated designs might include an on-chip inductor created with rectangular traces wrapped into a "coil" instead of an actual physical coil and on-chip capacitors and resistors, but the principles remain the same. In fact, the performance of passive on-chip capacitors and inductors is normally orders of magnitude worse than is required for high performance designs. Thus the physical components are still widely used today.
There are a number of RF circuit design topics missing from this book, including oscillators, distributed elements, microstrip and slot line designs for GHz ranges and advanced integrated circuit topics for CMOS and GaAs radio design, but these would not fit into an introductory text such as this one. Another item the book doesn't emphasize is the wide variety of online tools available now for RF designers. The website http://rf.rficdesign.com/ has consolidated a number of links to free tools covering many aspects of RF design mentioned in this book, including a Pi Network calculator, S parameter utility and Smith chart Java tool.
In conclusion, this book is ideal for either the RF design hobbyist or professional digital designer who needs to design front end circuits without going back to school. The book has a companion website with high resolution versions of many of the Smith charts in the book, http://books.elsevier.com/companions/defaultindividual.asp?isbn=9780750685184


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Short-range Wireless Communication, Second Edition: Fundamentals of RF System Design and Application (Communications Engineering Series) Review

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RF Microelectronics (2nd Edition) (Prentice Hall Communications Engineering and Emerging Technologies Series) Review

RF Microelectronics (2nd Edition) (Prentice Hall Communications Engineering and Emerging Technologies Series)
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When I first bought this book, I was very hopeful. The book seemed to cover a lot of relevant material, in a concise fashion. When I tried to read it however, I found it a little bit too much on the concise side. I have read very complicated books with a lot of math before, and I could follow them easier than this "easy" writing style. Almost every subject is covered in other books in more detail and better. Sometimes it's nice to have a simpler book which is an introduction, and that is what I was hoping for, but this just didn't do it for me.I donated the book to the library,as I felt I would never really get too much out of it. This didn't stop me from buying Mr. Razavi's "Design of Analog CMOS ICs " and I liked his tutorial in the IEEE Phase Lock Loop book he edited.I know he can do a better job.

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The Acclaimed RF Microelectronics Best-Seller, Expanded and Updated for the Newest Architectures, Circuits, and DevicesWireless communication has become almost as ubiquitous as electricity, but RF design continues to challenge engineers and researchers. In the 15 years since the first edition of this classic text, the demand for higher performance has led to an explosive growth of RF design techniques. In RF Microelectronics, Second Edition, Behzad Razavi systematically teaches the fundamentals as well as the state-of-the-art developments in the analysis and design of RF circuits and transceivers.Razavi has written the second edition to reflect today's RF microelectronics, covering key topics in far greater detail. At nearly three times the length of the first edition, the second edition is an indispensable tome for both students and practicing engineers. With his lucid prose, Razavi nowOffers a stronger tutorial focus along with hundreds of examples and problems

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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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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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Phase-Locked Loops for Wireless Communications: Digital, Analog and Optical Implementations Review

Phase-Locked Loops for Wireless Communications: Digital, Analog and Optical Implementations
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I purchased, read, and refer to this book. It is good. But different from my other PLL books. On a higher more technical level than the other PLL books which I have reviewed. Reads more like a thesis than the other PLL books. I feel that it covers exactly what the title indicates, more wireless communication and space-based PLL coverage than the other books, except no 'implementations' except at conceptual mathematical level. Not a circuits book. No circuits to copy/use. Much more of a pure PLL communications theory book.

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Phase-Locked Loops for Wireless Communications: Digitial,Analog and Optical Implementations, Second Edition presents acomplete tutorial of phase-locked loops from analog implementations todigital and optical designs. The text establishes a thoroughfoundation of continuous-time analysis techniques and maintains aconsistent notation as discrete-time and non-uniform sampling arepresented. New to this edition is a complete treatment of charge pumpsand the complementary sequential phase detector. Another importantchange is the increased use of MATLAB, implemented to providemore familiar graphics and reader-derived phase-locked loopsimulation. Frequency synthesizers and digital divideranalysis/techniques have been added to this second edition. Perhapsmost distinctive is the chapter on optical phase-locked loops thatbegins with sections discussing components such as lasers andphotodetectors and finishing with homodyne and heterodyne loops.Starting with a historical overview, presenting analog, digital, andoptical PLLs, discussing phase noise analysis, and includingcircuits/algorithms for data synchronization, this volume contains newtechniques being used in this field. Highlights of the SecondEdition:
Development of phase-locked loopsfrom analog to digital and optical, with consistent notationthroughout;
Expanded coverage of the loop filters used todesign second and third order PLLs;
Design examples ondelay-locked loops used to synchronize circuits on CPUs and ASICS;
New material on digital dividers that dominate a frequencysynthesizer's noise floor. Techniques to analytically estimate thephase noise of a divider;
Presentation of optical phase-lockedloops with primers on the optical components and fundamentals ofoptical mixing;
Section on automatic frequency control toprovide frequency-locking of the lasers instead of phase-locking;
Presentation of charge pumps, counters, and delay-lockedloops.
The Second Edition includes the essential topics needed bywireless, optics, and the traditional phase-locked loop specialists todesign circuits and software algorithms. All of the material has beenupdated throughout the book.

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