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【McGraw-Hill2007新书】Phase-LockedLoops,6thEdition

资料介绍

Phase Locked Loops 6/e
By Roland E. Best

Publisher: McGraw-Hill Professional
Number Of Pages: 482
Publication Date: 2007-07-23
ISBN-10 / ASIN: 0071493751
ISBN-13 / EAN: 9780071493758
Binding: Hardcover

Overview
The Definitive Introduction to Phase-Locked Loops, Complete with Software for Designing Wireless Circuits!
The Sixth Edition of Roland Best's classic Phase-Locked Loops has been updated to equip you with today's definitive introduction to PLL design, complete with powerful PLL design and simulation software written by the author. Filled with all the latest PLL advances, this celebrated sourcebook now includes new chapters on frequency synthesis…CAD for PLLs…mixed-signal PLLs…all-digital PLLs…and software PLLs_plus a new collection of sample communications applications. An essential tool for achieving cutting-edge PLL design, the Sixth Edition of Phase-Locked Loops features:

A wealth of easy-to-use methods for designing phase-locked loops
Over 200 detailed illustrations
New to this edition: new chapters on frequency synthesis, including fractional-N PLL frequency synthesizers using sigma-delta modulators; CAD for PLLs, mixed-signal PLLs, all-digital PLLs, and software PLLs; new PLL communications applications, including an overview on digital modulation techniques
Inside this Updated PLL Design Guide
Introduction to PLLs Mixed-Signal PLL Components Mixed-Signal PLL Analysis PLL Performance in the Presence of Noise Design Procedure for Mixed-Signal PLLs Mixed-Signal PLL Applications Higher Order Loops CAD and Simulation of Mixed-Signal PLLs All-Digital PLLs (ADPLLs) CAD and Simulation of ADPLLs The Software PLL (SPLL) The PLL in Communications State-of-the-Art Commercial PLL Integrated Circuits Appendices: The Pull-In Process The Laplace Transform Digital Filter Basics Measuring PLL Parameters

Table of contents
Chapter 1: Introduction to PLLs
Chapter 2: Mixed-Signal PLL Building Blocks
Chapter 3: Mixed-Signal PLL Analysis
Chapter 4: PLL Performance in the Presence of Noise
Chapter 5: Design Procedure for Mixed-Signal PLLs
Chapter 6: Mixed-Signal PLL Applications Part 1: Integer-N Frequency Synthesizers
Chapter 7: Mixed-Signal PLL Applications Part 2: Fractional-N Frequency Synthesizers
Chapter 8: Mixed-Signal PLL Applications Part 3: Miscellaneous Applications
Chapter 9: Higher-Order Loops
Chapter 10: Computer-Aided Design and Simulation of Mixed-Signal PLLs
Chapter 11: All-Digital PLLs (ADPLLs)
Chapter 12: Computer-Aided Design and Simulation of ADPLLs
Chapter 13: The Software PLL (SPLL)
Chapter 14: The PLL in Communications
Chapter 15: Searching PLL Integrated Circuits
Appendix A: The Pull-in Process
Appendix B: The Laplace Transform
Appendix C: Digital Filter Basics
Appendix D: Measuring PLL Parameters
References
Index

Biographical note
Dr. Roland E. Best (Zurich, Switzerland) is the founder of Best Engineering and world-renowned authority of phase locked loops, circuit design, and microprocessor applications. Dr. Best has worked for Sandoz A.G. and the IBM Research Laboratory in Zurich.


Summary: Phase Locked Loops 6/e
Rating: 4

This book is generally good although I have not read all of the book yet.
It approaches at the system level of the PLL, not at the circuit level, so reader may need another book if they have to design the PLL.


Summary: Basics of analog digital PLLs, orthogonal to Wolaver.
Rating: 4

This book is certainly worth owning. It is 1 of 7 PLL books that I own. I use it as a reference for the basic PLL linearized transfer functions even after I found that the transfer function for the 2nd order PLL with ideal integrator is incorrect. Best covers analog PLLs with each block replaced by a digital implementation based on the incremental improvements made in standard TTL PLLs offered over the decades. This allows the reader to fully understand each digital block and the PLL in a way that is excellent for an introductory text. The digital PLL is a numerical implementation of each PLL function, which has by definition an analog function. One way to implement such a numerical PLL is via replacing each analog function with the equivalent numerical function, without much focus on the Z domain and digital signal processing (DSP) concepts. That is what this book does. Look elsewhere for a book with heavy use of Z domain math (consider the Kluwer Acedemic Press Book 'Phase-Locked Loops for Wireless Communications: Analog and Digital' by Stephen (?) for more DSP math. Best's approach is viable. I have personally designed a leading edge all-digital PLL, adding patent pending analog enhancements, and can asure the reader that straight-forward DSP approaches do not lead to the optimal designs, at least at the high data rates. Understanding of the PLL in analog form, and then adding the digital analogues is an excellent way to go. Best's book is surprisingly very different from Wolaver's book, almost orthogonal; start with Wolaver, then add Best if the slow peicemeal digital evolution is of interest to you.


Summary: A good book to learn the theorie of PLL
Rating: 4

I think this book give designers a good understanding of the fundamental theorie of PLLs. It gives you step by step the necessarly mathematical background to understand how a PLL is working. The examples are mostly for analog PLLs, but the mathematical theories are the same for all kind of implementations. I really like the chapter where the different PLL-Parameters are defined: It clearly explains and defines the different working modes like "hold", "lock" or "pull-in". The book is not for people who are looking for prepared applications. Even when the subtitle of the book suggests this.


Summary: Useful but not very comprenhesive
Rating: 2

The book is most helpful, but a little out of date with regards to moderm PLL techniques, especialy charge pump o/p types and makes no referance to lead lag passive filter loops. This hinders the usefulness of the enclosed program which would benefit from a 'modernisation'

【McGraw-Hill2007新书】Phase-LockedLoops,6thEdition
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