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[B428.Ebook] Ebook Download Analog Circuits (World Class Designs)From Newnes

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Analog Circuits (World Class Designs)From Newnes

Analog Circuits (World Class Designs)From Newnes



Analog Circuits (World Class Designs)From Newnes

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Analog Circuits (World Class Designs)From Newnes

Newnes has worked with Robert Pease, a leader in the field of analog design to select the very best design-specific material that we have to offer. The Newnes portfolio has always been know for its practical no nonsense approach and our design content is in keeping with that tradition. This material has been chosen based on its timeliness and timelessness. Designers will find inspiration between these covers highlighting basic design concepts that can be adapted to today's hottest technology as well as design material specific to what is happening in the field today. As an added bonus the editor of this reference tells you why this is important material to have on hand at all times. A library must for any design engineers in these fields.

*Hand-picked content selected by analog design legend Robert Pease
*Proven best design practices for op amps, feedback loops, and all types of filters
*Case histories and design examples get you off and running on your current project

  • Sales Rank: #922965 in Books
  • Published on: 2008-05-16
  • Released on: 2008-05-12
  • Original language: English
  • Number of items: 1
  • Dimensions: 9.25" h x 1.04" w x 7.50" l, 2.08 pounds
  • Binding: Paperback
  • 472 pages

Review
"The book provides good background material on topics like feedback control and stability, and it presents the basics of op-amp topologies and data conversion." - Rick Nelson, Test & Measurement World.

About the Author
Pease attended Mt. Hermon School, and graduated from MIT in 1961 with a BSEE. He worked at Philbrick Researches up to 1975 and designed many OpAmps and Analog Computing Modules.

Pease joined National Semiconductor in 1976. He has designed about 24 analog ICs including power regulators, voltage references, and temp sensors. He has written 65+ magazine articles and holds about 21 US patents. Pease is the self-declared Czar of Bandgaps since 1986. He enjoys hiking and trekking in Nepal, and ferroequinology. His position at NSC is Staff Scientist. He is a Senior Member of the IEEE.

Pease wrote the definitive book, TROUBLESHOOTING ANALOG CIRCUITS, now in its 18th printing. It has been translated into French, German, Dutch, Russian, and Polish. Pease is a columnist in Electronic Design magazine, with over 240 columns published. The column, PEASE PORRIDGE, covers a wide range of technical topics.

Pease also has posted many technical and semi-technical items on his main web-site: http://www.national.com/rap Many of Pease's recent columns are accessible there.

Pease was inducted into the E.E. Hall Of Fame in 2002. Refer to: http://www.elecdesign.com/Articles/Index.cfm?ArticleID=17269&Extension=pdf See Pease's other web site at http://www.transtronix.com

Most helpful customer reviews

3 of 3 people found the following review helpful.
SPICE is good for something
By Daniel
Robert Pease is certainly one of the legends in analog circuit design.
His contempt for SPICE simulation is quite well known in the community.
But I have to disagree...
I had to brush up on my filter design knowledge and I had a surprise:
The section on BPF and notch filters contains errors... many. And they are
not simply type setting errors. For instance in one of the filters a value is labeled
as 100pF, while it should be 100nF (P140). Then in another example he got the
resonance frequency of the filter very wrong (P264). Resistor references are wrong labeled (P264)

If he would have used SPICE he would have discovered that there is a sloppy
mistake somewhere. The prototype would not worked either, but this would take a lot longer
to solder up the circuit
Obviously /rap knows how to calculate filters, but he is so confident that he makes
casual mistakes.
But this all does not matter, because as soon as you make an effort to understand
the subject matter, the errors become obvious.
Someone should have proof-read the book before publishing however.
Otherwise it is one of the best books on electronics I ever bought. It is not trivial and the title
is misleading. "World class designs" ... anybody who thinks this is just a collection of circuits you
can rip off... not so. This is a book which teaches the finer aspects of analog circuit design.
Not really for beginners however, and there is some math you need to understand.
He shares some knowledge in electronics, you will never learn in school.
Also he talks about a general approach to any design (if not life in general).
Do not dismiss it lightly

1 of 1 people found the following review helpful.
glaring errors, use with caution
By atlantic1
The section describing the application of the Routh stability criterion (pages 10,11) has calculation errors for both matrices taken as examples, although the theory is presented correctly. That is pretty disturbing in a book claiming to deal with world class designs, and was enough to discourage me from reading further. Bob Pease cannot defend himself anymore so I'll stop here, but I definitely do not recommend this book, use your money on Gray/Meyer for clean, basic analog (mostly bipolar) IC design, or on Carusone/Johns/Martin for advanced (mostly CMOS) IC design.

0 of 0 people found the following review helpful.
Great collection of tips, tricks and useful circuits
By Ssound
This book is a great collection by Bob Pease, most chapters (or articles) are good, some are stellar and only a few are subpar. Some chapters are very very simple, for instance chapter 4 "Finding the perfect opamp" could be described as "chapter 0 of any standard opamp text book", im not saying the information there is not useful, its just a first day at school in 101 opamp theory.

What makes this book different from say a standard opamp text book are the tips and tricks, rules of thumb and case studies offered by the authors. The case study of chapter 9 and the Zoo circuit at the end are both particularly great, chapter 9 in my opinion is probably the best one, it is the closest to having an analog engineer sitting next to you and explaining his methodology and his circuits, in this chapter the author gives a lot of great tips, and a minimum math rule of thumb and intuitive approach to circuit design, he concludes his chapter by analyzing a complete circuit, not just an idealized part, he will through the entire circuit which is not small at all, opamp through opamp, component through component, and explain why everything is there, and why did he choose such values, he will then calculate such values using his rules of thumb and therefore avoiding heavy math derivations. Also in that chapter it is described a very useful practical approach to stabilize some feedback loops without going deep into feedback theory.

A similar chapter is chapter 3 in which the author explains his methodollogy to designing circuits by laying out simple function blocks and progressively adding limitations, but not the entire circuit is analyzed.

Chapter 5 on noise is great, with examples of noise calculations and an applied example using instrumentation amplifiers a load cell and ADCs.

A considerable chunk of the book is devoted to Analog filters (4 chapters in total, low pass, hi pass, bandpass, band-reject), the filter theory is a bit messy in my opinion, and the author references a lot of graphs, facts and tables which are not provided in the book, instead of providing such material, the author refers to another book in which such graphs, tables and facts can be located. That to me is very messy, having to buy, rent, download, or borrow another book to see what the author is talking about is not really my cup of tea, he will say stuff like "By looking at the graph in the reference book mentioned at the beginning of the chapter, it is apparent that the filter must be a 5th order...".

Also considering that the vast amount of filters covered in this book are available in many standard opamp books such as the one by Sergio Franco or Valkenburg's book, it makes all of these chapters in my opinion feel like a bit of a filler in this book, which in my humble point of view should focus more on unconventional circuits or stuff not available everywhere else. Still, the author offers normalized tables and circuits to easily calculate your filters, and that is quite useful. Also I liked that the author covers a small portion of passive LCR filters, only 3rd and 5th Butterworth passive filters are covered, but again, provides normalized circuits to quickly scale them to fit your needs, quite useful indeed.

The book also has a chapter covering a bit of layout, pcb, components, etc.. similar to "The Circuit Companion's handbook" however what makes it different from such book, or many of the books out there is that it offers a very interesting case study about the layout for a high power laser driver.

Another large part of the book is dedicated to ADC, DAC and general analog-digital interfacing, with a particularly great chapter on ADCs with case studies explaining different sensors and applications.

In general I would say this is a great book, with real gems in there, you wont become an expert analog designer thats for sure and you will not find the secret and holly grail of analog design, not all of the circuits in the book are "World class designs" as the title suggest, but you'll surely learn a lot of new tricks and circuits, plus youll get into the mindset of some of the best analog designeers, and hopefully try to apply it on your own designs..

If your are an analog designer or hoping on becoming one, this book is for you. Dont be fooled by the fact that the editor (Bob Pease) mentions that the math in there is at the highschool level, yes you wont find big differential equations or Fourier series and such, but you definitely need a solid background in electric circuit theory, control theory, opamps, transistors and some electromagnetic theory to fully understand the content of this book, stuff like poles, zeros, transfer functions, Bode plots, compensation techniques, opamp equations, etc.. are mentioned all the time, it is not a begginers book.

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