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[A408.Ebook] Download PDF RF Microelectronics, by Behzad Razavi

Download PDF RF Microelectronics, by Behzad Razavi

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RF Microelectronics, by Behzad Razavi

RF Microelectronics, by Behzad Razavi



RF Microelectronics, by Behzad Razavi

Download PDF RF Microelectronics, by Behzad Razavi

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RF Microelectronics, by Behzad Razavi

This book is designed to give electrical engineers the RF microelectronics background they need to design state-of-the-art consumer electronics and communications devices. RF Microelectronics begins with a thorough introduction to the fundamental concepts of RF design, including nonlinearity, interference and noise. It reviews modulation and detection theory; multiple access techniques, and current wireless standards -- including CDMA, TDMA, AMPS and GSM. It presents case studies of transceiver architectures designed by several leading manufacturers. Finally, it offers detailed explanations of low-noise amplifiers, mixers and oscillators; frequency synthesizers and power amplifiers. For electrical engineers working in the communications fields, especially those involved with wireless technology. Also for graduate students.

  • Sales Rank: #1115152 in Books
  • Published on: 1997-11-16
  • Original language: English
  • Number of items: 1
  • Dimensions: 9.54" h x .95" w x 7.24" l, 1.57 pounds
  • Binding: Hardcover
  • 352 pages

From the Inside Flap
Preface

The annual worldwide sales of cellular phones has exceeded $2.5B. With 4.5 million customers, home satellite networks comprise a $2.5B industry. The global positioning system is expected to become a $5B market by the year 2000. In Europe, the sales of equipment and services for mobile communications will reach $30B by 1998. The statistics are overwhelming.

The radio frequency (RF) and wireless market has suddenly expanded to unimaginable dimensions. Devices such as pagers, cellular and cordless phones, cable modems, and RF identification tags are rapidly penetrating all aspects of our lives, evolving from luxury items to indispensable tools. Semiconductor and system companies, small and large, analog and digital, have seen the statistics and are striving to capture their own market share by introducing various RF products. RF design is unique in that it draws upon many disciplines unrelated to integrated circuits (ICs). The RF knowledge base has grown for almost a century, creating a seemingly endless body of literature for the novice.

This book deals with the analysis and design of RF integrated circuits and systems. Providing a systematic treatment of RF electronics in a tutorial language, the book begins with the necessary background knowledge from microwave and communication theory and leads the reader to the design of RF transceivers and circuits. The text emphasizes both architecture and circuit level issues with respect to monolithic implementation in VLSI technologies.

The primary focus is on bipolar and CMOS design, but most of the concepts can be applied to other technologies as well. The reader is assumed to have a basic understanding of analog IC design and the theory of signals and systems. The book consists of nine chapters.

Chapter 1 gives a general introduction, posing questions and providing motivation for subsequent chapters.

Chapter 2 describes basic concepts in RF and microwave design, emphasizing the effects of nonlinearity and noise.

Chapters 3 and 4 take the reader to the communication system level, giving an overview of modulation, detection, multiple access techniques, and wireless standards. While initially appearing to be unnecessary, this material is in fact essential to the concurrent design of RF circuits and systems.

Chapter 5 deals with transceiver architectures, presenting various receiver and transmitter topologies along with their merits and drawbacks. This chapter also includes a number of case studies that exemplify the approaches taken in actual RF products.

Chapters 6 through 9 address the design of RF building blocks: low-noise amplifiers and mixers, oscillators, frequency synthesizers, and power amplifiers , with particular attention to minimizing the number of off-chip components. An important goal of these chapters is to demonstrate how the system requirements define the parameters of the circuits and how the performance of each circuit impacts that of the overall transceiver.

I have taught approximately 80% of the material in this book in a 4-unit graduate course at UCLA. Chapters 3, 4, 8, and 9 had to be shortened in a ten-week quarter, but in a semester system they can be covered more thoroughly. Much of my RF design knowledge comes from interactions with colleagues.Helen Kim, Ting-Ping Liu, and Dan Avidor of Bell Laboratories, and David Su and Andrew Gzegorek of Hewlett-Packard Laboratories have contributed to the material in this book in many ways. The text was also reviewed by a number of experts: Stefan Heinen (Siemens), Bart Jansen (Hewlett-Packard), Ting-Ping Liu (Bell Labs), John Long (University of Toronto), Tadao Nak-agawa (NTT), Gitty Nasserbakht (Texas Instruments), Ted Rappaport (Virginia Tech), Tirdad Sowlati (Gennum), Trudy Stetzler (Bell Labs), David Su (Hewlett-Packard), and Rick Wesel (UCLA). In addition, a number of UCLA students, including Farbod Behbahani, Hooman Darabi, John Leete, and Jacob Rael, test drove various chapters and provided useful feedback. I am indebted to all of the above for their kind assistance. I would also like to thank the staff at Prentice Hall, particularly Russ Hall, Maureen Diana, and Kerry Reardon for their support.Behzad RazaviJuly 1997

Excerpt. © Reprinted by permission. All rights reserved.
Preface

The annual worldwide sales of cellular phones has exceeded $2.5B. With 4.5 million customers, home satellite networks comprise a $2.5B industry. The global positioning system is expected to become a $5B market by the year 2000. In Europe, the sales of equipment and services for mobile communications will reach $30B by 1998. The statistics are overwhelming.

The radio frequency (RF) and wireless market has suddenly expanded to unimaginable dimensions. Devices such as pagers, cellular and cordless phones, cable modems, and RF identification tags are rapidly penetrating all aspects of our lives, evolving from luxury items to indispensable tools. Semiconductor and system companies, small and large, analog and digital, have seen the statistics and are striving to capture their own market share by introducing various RF products. RF design is unique in that it draws upon many disciplines unrelated to integrated circuits (ICs). The RF knowledge base has grown for almost a century, creating a seemingly endless body of literature for the novice.

This book deals with the analysis and design of RF integrated circuits and systems. Providing a systematic treatment of RF electronics in a tutorial language, the book begins with the necessary background knowledge from microwave and communication theory and leads the reader to the design of RF transceivers and circuits. The text emphasizes both architecture and circuit level issues with respect to monolithic implementation in VLSI technologies.

The primary focus is on bipolar and CMOS design, but most of the concepts can be applied to other technologies as well. The reader is assumed to have a basic understanding of analog IC design and the theory of signals and systems. The book consists of nine chapters.

Chapter 1 gives a general introduction, posing questions and providing motivation for subsequent chapters.

Chapter 2 describes basic concepts in RF and microwave design, emphasizing the effects of nonlinearity and noise.

Chapters 3 and 4 take the reader to the communication system level, giving an overview of modulation, detection, multiple access techniques, and wireless standards. While initially appearing to be unnecessary, this material is in fact essential to the concurrent design of RF circuits and systems.

Chapter 5 deals with transceiver architectures, presenting various receiver and transmitter topologies along with their merits and drawbacks. This chapter also includes a number of case studies that exemplify the approaches taken in actual RF products.

Chapters 6 through 9 address the design of RF building blocks: low-noise amplifiers and mixers, oscillators, frequency synthesizers, and power amplifiers , with particular attention to minimizing the number of off-chip components. An important goal of these chapters is to demonstrate how the system requirements define the parameters of the circuits and how the performance of each circuit impacts that of the overall transceiver.

I have taught approximately 80% of the material in this book in a 4-unit graduate course at UCLA. Chapters 3, 4, 8, and 9 had to be shortened in a ten-week quarter, but in a semester system they can be covered more thoroughly. Much of my RF design knowledge comes from interactions with colleagues.Helen Kim, Ting-Ping Liu, and Dan Avidor of Bell Laboratories, and David Su and Andrew Gzegorek of Hewlett-Packard Laboratories have contributed to the material in this book in many ways. The text was also reviewed by a number of experts: Stefan Heinen (Siemens), Bart Jansen (Hewlett-Packard), Ting-Ping Liu (Bell Labs), John Long (University of Toronto), Tadao Nak-agawa (NTT), Gitty Nasserbakht (Texas Instruments), Ted Rappaport (Virginia Tech), Tirdad Sowlati (Gennum), Trudy Stetzler (Bell Labs), David Su (Hewlett-Packard), and Rick Wesel (UCLA). In addition, a number of UCLA students, including Farbod Behbahani, Hooman Darabi, John Leete, and Jacob Rael, test drove various chapters and provided useful feedback. I am indebted to all of the above for their kind assistance. I would also like to thank the staff at Prentice Hall, particularly Russ Hall, Maureen Diana, and Kerry Reardon for their support.

Behzad RazaviJuly 1997

Most helpful customer reviews

31 of 31 people found the following review helpful.
2nd Edition is Amazing!
By Ling Zhu
Well, as I stated in other Dr. Razavi's book reviews, it's my pleasure to own and read every book written by Dr. Razavi. I have been waiting for this new edition for some time, and immediately purchased this 2nd edition from amazon.com once it's published. As an RF/analog engineer, I personally have benefited from all of his masterpieces. Many thanks for the author's great efforts, Dr. Razavi's books have influenced many engineers and students in the RF/analog area.

So, how is this 2nd edition? In my opinion, it might be inappropriate to call it "2nd edition" as this is a completely new book with vast improvements from the 1st edition. We have experienced a rapid growth of RF design within last decade, and this book covers most of the fundamentals of RF circuit/system design techniques to deal with today's challenges. It's understandable that some of the readers are not happy with the 1st edition in their reviews, but this new book is totally different (Dr. Razavi says there's only 10% overlap between two editions in his preface to the 2nd edition, it's absolutely true). Here is what I like most:

1. Dedicated chapters for LNA and mixers;
2. Great coverage on passive devices;
3. Three chapters to cover frequency synthesizers, which cover fundamentals, integer-N and fractional-N synthesizers;
4. Step-by-step tutorial of modern RF transceiver design;
5. In addition to all the new materials on RF systems and circuits, one of the biggest improvements is that the author incorporated hundreds examples/problems in the book. Some help readers understand RF fundamentals, and some are very practical issues facing RF engineers.

There are several errors in the book, make an online search you'll be able to find the errata to the 2nd edition.

And of course, the coverage of RF design by a single book is limited though it has over 900 pages. Here are some of my recommendations if you are interested in other RF/analog materials, and they are not related to this review:

Analog circuit design:
Analysis and Design of Analog Integrated Circuits
Design of Analog CMOS Integrated Circuits
CMOS Analog Circuit Design (The Oxford Series in Electrical and Computer Engineering)
CMOS Circuit Design, Layout, and Simulation, 3rd Edition (IEEE Press Series on Microelectronic Systems)
Analog Integrated Circuit Design

RF Systems and Circuits:
Radio Receiver Design
RF and Microwave Transmitter Design (Wiley Series in Microwave and Optical Engineering)
The Design of CMOS Radio-Frequency Integrated Circuits, Second Edition
RF System Design of Transceivers for Wireless Communications
Practical RF System Design

24 of 25 people found the following review helpful.
Content seemed great, but not explained in detail
By A Customer
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.

12 of 12 people found the following review helpful.
OK book, but buyer beware
By Turkish Engineer
This book covers a good deal of material in a very hot area. However, coverage is uneven with occasional mistakes. The book seems to be collected in a hurry some lecture notes. For example, the formula for the relationship between jitter and phase noise given at the beginning of the book is wrong (even units do not make sense) and is not the same for the expression given in the PLL chapter (it makes more sense).

I believe a good book on the field is yet to be written.

See all 37 customer reviews...

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