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

Sensors Handbook Review

Sensors Handbook
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Sensors Handbook ReviewThe sensors handbook is mainly a collection of 75 research articles. The articles describe research on various sensor systems in industry and academia. For example, chapters 11-15 are review papers on MEMS research in a few US universities, and Chapter 27 is about research on a networked smart sensor system. The information in these papers say little about design of sensors and sensor systems, seletion and specs. of sensors, setting up sensors, and advantages/disadvantages of various sensors. In summary, I found that Sensors Handbood did not contain the kind of information I expected to find in such a handbook and therefore it was not very useful.Sensors Handbook Overview
Complete, State-of-the-Art Coverage of Sensor Technologies and Applications
Fully revised with the latest breakthroughs in integrated sensors and control systems, Sensors Handbook, Second Edition provides all of the information needed to select the optimum sensor for any type of application, including engineering, semiconductor manufacturing, medical, military, agricultural, geographical, and environmental implementations.
This definitive volume discusses a wide array of sensors, including MEMS, nano, microfabricated, CMOS, smart, NIR, SpectRx(tm), remote-sensing, fiber-optic, light, ceramic, and silicon sensors.Several in-depth application examples from a variety of industries are included.The comprehensive details in this authoritative resource enable you to accurately verify the specifications for any required component.This is the most through, up-to-date reference on sensing technologies available.

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The Electrical Engineering Handbook, Second Edition Review

The Electrical Engineering Handbook, Second Edition
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The Electrical Engineering Handbook, Second Edition ReviewThis book is really good. it has covered almost every fundamental what an electrical engg. looks out for. It will be really helpful for the designers who are looking out for some basics. Moreover it is a compilation of all fundamentals in one book and is a bible. Hence, it should be a part of every electrical engineer's collection of books.The Electrical Engineering Handbook, Second Edition OverviewIn 1993, the first edition of The Electrical Engineering Handbook set a new standard for breadth and depth of coverage in an engineering reference work. Now, this classic has been substantially revised and updated to include the latest information on all the important topics in electrical engineering today. Every electrical engineer should have an opportunity to expand his expertise with this definitive guide.In a single volume, this handbook provides a complete reference to answer the questions encountered by practicing engineers in industry, government, or academia. This well-organized book is divided into 12 major sections that encompass the entire field of electrical engineering, including circuits, signal processing, electronics, electromagnetics, electrical effects and devices, and energy, and the emerging trends in the fields of communications, digital devices, computer engineering, systems, and biomedical engineering. A compendium of physical, chemical, material, and mathematical data completes this comprehensive resource. Every major topic is thoroughly covered and every important concept is defined, described, and illustrated. Conceptually challenging but carefully explained articles are equally valuable to the practicing engineer, researchers, and students.A distinguished advisory board and contributors including many of the leading authors, professors, and researchers in the field today assist noted author and professor Richard Dorf in offering complete coverage of this rapidly expanding field. No other single volume available today offers this combination of broad coverage and depth of exploration of the topics. The Electrical Engineering Handbook will be an invaluable resource for electrical engineers for years to come.

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A Verilog HDL Primer, Second Edition Review

A Verilog HDL Primer, Second Edition
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A Verilog HDL Primer, Second Edition ReviewThis is a very good introduction to Verilog coding. I read the book prior to taking a formal Verilog class, and walked into the class very well prepared. The book is well organized, and the index is very complete, which is good for newbies (like myself) who still need a syntax and usage reference.A Verilog HDL Primer, Second Edition OverviewSecond edition describes more features, has expanded test bench modeling section, more examples explaining constructs and has exercises to every chapter.

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Systems, Controls, Embedded Systems, Energy, and Machines (The Electrical Engineering Handbook Third Edition) Review

Systems, Controls, Embedded Systems, Energy, and Machines (The Electrical Engineering Handbook Third Edition)
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Systems, Controls, Embedded Systems, Energy, and Machines (The Electrical Engineering Handbook Third Edition) ReviewThe Electrical Engineering Handbook, Third Edition - 6 Volume Set edited by Richard C. Dorf (Electrical Engineering Handbook Series: CRC Press) comprised six hefty volumes available individually as Circuits, Signals, and Speech and Image Processing; Electronics, Power Electronics, Optoelectronics, Microwaves, Electromagnetics, and Radar; Sensors, Nanoscience, Biomedical Engineering, and Instruments; Broadcasting and Optical Communication Technology; Computers, Software Engineering, and Digital Devices; Systems, Controls, Embedded Systems, Energy, and Machines.
In two editions spanning more than a decade, The Electrical Engineering Handbook stands as the definitive reference to the multidisciplinary field of electrical engineering. Our knowledge continues to grow, and so does the Handbook. For the third edition, it has expanded into a set of six books carefully focused on a specialized area or field of study. Each book represents a concise yet definitive collection of key concepts, models, and equations in its respective domain, thoughtfully gathered for convenient access. The purpose of The Electrical Engineering Handbook, 3rd Edition is to provide a ready reference for the practicing engineer in industry, government, and academia, as well as aid students of engineering. Combined, they constitute the most comprehensive, authoritative resource available.
Providing the basic information needed for a thorough understanding of each area, this Third Edition comprises the following six volumes:
Circuits, Signals, and Speech and Image Processing
Electronics, Power Electronics, Optoelectronics, Microwaves, Electromagnetics, and Radar
Sensors, Nanoscience, Biomedical Engineering, and Instruments
Broadcasting and Optical Communication Technology
Computers, Software Engineering, and Digital Devices
Systems, Controls, Embedded Systems, Energy, and Machines
Encompassing the work of the world's foremost experts in their respective specialties, The Electrical Engineering Handbook, Third Edition remains the most convenient, reliable source of information available. This edition features the latest information, the broadest scope of coverage, and new material on nanotechnologies, fuel cells, embedded systems, and biometrics. The engineering community has relied on the Handbook for more than twelve years, and it will continue to be a platform to launch the next wave of advancements.
Each volume is edited by Richard C. Dorf, and is a comprehensive format that encompasses the many aspects of electrical engineering with articles from internationally recognized contributors. The goal is to provide the most up-to-date information in the classical fields of circuits, signal processing, electronics, electromagnetic fields, energy devices, systems, and electrical effects and devices, while covering the emerging fields of communications, Nanotechnology, biometrics, digital devices, computer engineering, systems, and biomedical engineering. In addition, the final section provides a complete compendium of information regarding physical, chemical, and materials data, as well as widely inclusive information on mathematics. Many articles from theses six volumes have been completely revised or updated to fit the needs of today, and many new chapters have been added. Two indexes have been compiled for each volume to provide multiple means of accessing information: the subject index and index of contributing authors. The subject index can also be used to locate key definitions. The page on which the definition appears for each key (defining) term is clearly identified in the subject index.
The Electrical Engineering Handbook, 3rd Edition is designed to provide answers to most inquiries and direct the inquirer to further sources and references. It is likely that this handbook will be referred to often and that informational requirements will be satisfied effectively.
The purpose of Circuits, Signals, and Speech and Image Processing is to provide a ready reference to subjects in the fields of electric circuits and components, analysis of circuits, and the use of the Laplace transform. We also discuss the processing of signals, speech, and images using filters and algorithms. Here we provide the basic information for understanding these fields. We also provide information about the emerging fields of text-to-speech synthesis, real-time processing, embedded signal processing, and biometrics.
The information is organized into three sections. The first two sections encompass 27 chapters and the last section summarizes the applicable mathematics, symbols, and physical constants.
Most articles include three important and useful categories: defining terms, references, and further information. Defining terms are key definitions and the first occurrence of each term defined is indicated in boldface in the text. The definitions of these terms are summarized as a list at the end of each chapter or article. The references provide a list of useful books and articles for follow-up reading. Finally, further information provides some general and useful sources of additional information on the topic.
Numerous avenues of access to information are provided. A complete table of contents is presented at the front of the book. In addition, an individual table of contents precedes each section. Finally, each chapter begins with its own table of contents. The reader should look over these tables of contents to become familiar with the structure, organization, and content of the book. For example, see Section II: Signal Processing, then Chapter 18: Multidimensional Signal Processing, and then Chapter 18.2: Video Signal Processing. This tree-¬and-branch table of contents enables the reader to move up the tree to locate information on the topic of interest.
The purpose of Electronics, Power Electronics, Optoelectronics, Microwaves, Electromagnetics, and Radar is to provide a ready reference to subjects in the fields of electronics, integrated circuits, power electronics, optoelectronics, electromagnetics, light waves, and radar. We also include a section on electrical effects and devices. Here we provide the basic information for understanding these fields. We also provide information about the emerging fields of microlithography and power electronics.
The information is organized into four sections. The first three sections encompass 29 chapters and the last section summarizes the applicable mathematics, symbols, and physical constants.
Most articles include three important and useful categories: defining terms, references, and further information. Defining terms are key definitions and the first occurrence of each term defined is indicated in boldface in the text. The definitions of these terms are summarized as a list at the end of each chapter or article. The references provide a list of useful books and articles for follow-up reading. Finally, further information provides some general and useful sources of additional information on the topic.
Numerous avenues of access to information are provided. A complete table of contents is presented at the front of the book. In addition, an individual table of contents precedes each section. Finally, each chapter begins with its own table of contents. The reader should look over these tables of contents to become familiar with the structure, organization, and content of the book. For example, see Section II: Electromagnetics, then Chapter 17: Antennas, and then Chapter 17.2: Aperture. This tree-and-branch table of contents enables the reader to move up the tree to locate information on the topic of interest.
The purpose of Sensors, Nanoscience, Biomedical Engineering, and Instruments is to provide a ready reference to subjects in the fields of sensors, materials and nanoscience, instruments and measurements, and biomedical systems and devices. Here we provide the basic information for understanding these fields. We also provide information about the emerging fields of sensors, nanotechnologies, and biological effects.
The information is organized into three sections. The first two sections encompass 10 chapters and the last section summarizes the applicable mathematics, symbols, and physical constants.
Most articles include three important and useful categories: defining terms, references, and further information. Defining terms are key definitions and the first occurrence of each term defined is indicated in boldface in the text. The definitions of these terms are summarized as a list at the end of each chapter or article. The references provide a list of useful books and articles for follow-up reading. Finally, further information provides some general and useful sources of additional information on the topic.
Numerous avenues of access to information are provided. A complete table of contents is presented at the front of the book. In addition, an individual table of contents precedes each section. Finally, each chapter begins with its own table of contents. The reader should look over these tables of contents to become familiar with the structure, organization, and content of the book. For example, see Section II: Biomedical Systems,
then Chapter 7: Bioelectricity, and then Chapter 7.2: Bioelectric Events. This tree-and-branch table of contents enables the reader to move up the tree to locate information on the topic of interest.The purpose of Broadcasting and Optical Communication Technology is to provide a ready reference to subjects in the field of communications, including broadcasting, equalization, optical communication, computer networks, ad hoc wireless networks, information theory, satellites and aerospace, digital video processing, and mobile communications. Here we provide the basic information for understanding these fields...Read more›Systems, Controls, Embedded Systems, Energy, and Machines (The Electrical Engineering Handbook Third Edition) OverviewIn two editions spanning more than a decade, The Electrical Engineering Handbook stands as the definitive reference to the multidisciplinary field of electrical engineering. Our knowledge continues to grow, and so does the Handbook. For the third edition, it has expanded into a set of six books carefully focused on a specialized area or field of study. Each book represents a concise yet definitive collection of key concepts, models, and equations in its respective domain, thoughtfully gathered for convenient access.Systems, Controls, Embedded Systems, Energy, and Machines explores in detail the fields of energy devices, machines, and systems as well as control systems. It provides all of the fundamental concepts needed for thorough, in-depth understanding of each area and devotes special attention to the emerging area of embedded systems. Each article includes defining terms, references, and sources of further information.Encompassing the work of the world's foremost experts in their respective specialties, Systems, Controls, Embedded Systems, Energy, and Machines features the latest developments, the broadest scope of coverage, and new material on human-computer interaction.

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Verilog® Quickstart: A Practical Guide to Simulation and Synthesis in Verilog (The Springer International Series in Engineering and Computer Science) Review

Verilog® Quickstart: A Practical Guide to Simulation and Synthesis in Verilog (The Springer International Series in Engineering and Computer Science)
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Verilog® Quickstart: A Practical Guide to Simulation and Synthesis in Verilog (The Springer International Series in Engineering and Computer Science) ReviewAn excellent book for those who already understand programming and digital electronics. However, failure in some examples that could be more detailed.
I recommend to all who understand electronics and are programmers.
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Um excelente livro para quem já programa e entende de eletrônica digital. Porém, falha em alguns exemplos que poderiam ser mais detalhados.
Recomendo para todos os que entendem eletrônica e são programadores.Verilog® Quickstart: A Practical Guide to Simulation and Synthesis in Verilog (The Springer International Series in Engineering and Computer Science) OverviewFrom a review of the Second Edition 'If you are new to the field and want to know what "all this Verilog stuff is about," you've found the golden goose. The text here is straight forward, complete, and example rich -mega-multi-kudos to the author James Lee. Though not as detailed as the Verilog reference guides from Cadence, it likewise doesn't suffer from the excessive abstractness those make you wade through. This is a quick and easy read, and will serve as a desktop reference for as long as Verilog lives. Best testimonial: I'm buying my fourth and fifth copies tonight (I've loaned out/lost two of my others).' Zach Coombes, AMD

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Principles of Verifiable RTL Design Second Edition - A Functional Coding Style Supporting Verification Processes in Verilog Review

Principles of Verifiable RTL Design Second Edition - A Functional Coding Style Supporting Verification Processes in Verilog
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Principles of Verifiable RTL Design Second Edition - A Functional Coding Style Supporting Verification Processes in Verilog ReviewIf you are looking for another book describing the Verilog Language Reference Manual then this book is not for you. If, however, to are looking for an excellent set of principles to build a design and verification philosophy then I highly recommend this book. The authors have produced an RTL centric view of design emphasizing the verification process. They argue that synthesis productivity gains have now placed the verification process in the critical path and that equal attention should be giving to coding for verification as is currently given to coding for synthesis. The chapter I particularly enjoyed, entitled "Bad Stuff," provides an excellent discussion with examples on coding styles that hinder efficient verification. The author's discussion of the problems with the use of X at the RT-level, due to X-state pessimism and optimism, and the need for 2-state RTL simulation is enlightening.Principles of Verifiable RTL Design Second Edition - A Functional Coding Style Supporting Verification Processes in Verilog OverviewThe first edition of Principles of Verifiable RTL Designoffered a common sense method for simplifying and unifying assertionspecification by creating a set of predefined specification modulesthat could be instantiated within the designer's RTL. Since therelease of the first edition, an entire industry-wide initiative forassertion specification has emerged based on ideas presented in thefirst edition. This initiative, known as the Open Verification LibraryInitiative (www.verificationlib.org), provides an assertion interfacestandard that enables the design engineer to capture many interestingproperties of the design and precludes the need to introduce new HDLconstructs (i.e., extensions to Verilog are not required).Furthermore, this standard enables the design engineer to `specifyonce,' then target the same RTL assertion specification over multipleverification processes, such as traditional simulation, semi-formaland formal verification tools. The Open Verification LibraryInitiative is an empowering technology that will benefit design andverification engineers while providing unity to the EDA community(e.g., providers of testbench generation tools, traditionalsimulators, commercial assertion checking support tools, symbolicsimulation, and semi-formal and formal verification tools). The second edition of Principles of Verifiable RTL Designexpands the discussion of assertion specification by including a newchapter entitled `Coverage, Events and Assertions'. All assertionsexampled are aligned with the Open Verification Library Initiativeproposed standard. Furthermore, the second edition provides expandeddiscussions on the following topics:
start-upverification;
the place for 4-state simulation;
raceconditions;
RTL-style-synthesizable RTL (unambiguous mapping togates);
more `bad stuff'.
The goal of the secondedition is to keep the topic current. Principles of Verifiable RTLDesign, A Functional Coding Style Supporting VerificationProcesses, Second Edition tells you how you can write Verilog todescribe chip designs at the RTL level in a manner that cooperateswith verification processes. This cooperation can return an order ofmagnitude improvement in performance and capacity from tools such assimulation and equivalence checkers. It reduces the labor costs ofcoverage and formal model checking by facilitating communicationbetween the design engineer and the verification engineer. It alsoorients the RTL style to provide more useful results from the overallverification process.

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