Ebook Free Semiconductor Devices: Physics and Technology
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Semiconductor Devices: Physics and Technology
Ebook Free Semiconductor Devices: Physics and Technology
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From the Back Cover
This Third Edition of Semiconductor Devices offers revised material that reflects many important discoveries and advances in device physics and integrated circuit processing that have taken place over the last decade. Offering a basic introduction to physical principles of modern semiconductor devices and their advanced fabrication technology, the Third Edition presents students with theoretical and practical aspects of every step in device characterizations and fabrication, with an emphasis on integrated circuits. HALLMARK FEATURES: Covers all key semiconductor devices with up-to-date information and easy-to-understand descriptions. Coverage of basic physics and material properties of key semiconductors help students to easily understand the basic properties and offers access to the most up-to-date, accurate values of device/material parameters. Provides coverage of all important processing technologies, offering students the opportunity to learn the basic process steps to fabricate various devices, especially integrated circuits. ALSO NEW TO THE THIRD EDITION: Coverage of MOSFETs and Photonic devices expanded to 2 chapters each All technology chapters have been thoroughly updated Many more worked-out examples and end-of-chapter problems have been added DESCRIPTION OF THE COVER ILLUSTRATION The illustration shows a bird's-eye view of a 3-dimensional floating-gate non-volatile semiconductor memory (NVSM). NVSM is the foundation technology of information storage for all modern electronic systems (e.g., the digital cellular phone, digital camera, personal digital assistant, and global positioning system). NVSM has ushered in the "Digital Age", and pushed forward the electronics industry to become the largest industry in the world. The device shown has a surrounding floating gate (the central circular section) and two control gates (the upper and lower rectangular sections). The device is a promising candidate for 1 tera-bit (1012 bits) and beyond NVSM chips. Courtesy of the Institute of Electrical and Electronics Engineers (IEEE) and S. Whang et al of Hynix Semiconductor Inc. (IEEE IEDM Technical Digest, p. 668, 2010). For a discussion of NVSM and other semiconductor memories, see Chapter 6.
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About the Author
S. M. Sze, PhD, is UMC Chair Professor in the Electronics Engineering Department at the National Chiao Tung University. His previous books include Semiconductor Devices; Physics of Semiconductor Devices, Second Edition; High-Speed Semiconductor Devices; and Semiconductor Sensors, all available from Wiley. Ming-Kwei Lee is the author of Semiconductor Devices: Physics and Technology, 3rd Edition, published by Wiley.
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Product details
Hardcover: 592 pages
Publisher: Wiley; 3 edition (May 15, 2012)
Language: English
ISBN-10: 0470537949
ISBN-13: 978-0470537947
Product Dimensions:
8 x 1 x 10.1 inches
Shipping Weight: 2.5 pounds (View shipping rates and policies)
Average Customer Review:
3.6 out of 5 stars
51 customer reviews
Amazon Best Sellers Rank:
#297,625 in Books (See Top 100 in Books)
This text book is not readable. It just doesn't have a good layout to it. For instance, the pages don't contain the chapter number you are in. You have to figure it out based on examples. One of the chapters(I think chapter 12) was labeled as chapter 11 in the problems, which led to massive amounts of confusion when we did that HW.All of the constants that the book expects you to use are buried insides large paragraphs, therefore it usually wasn't easy to scan a section to find what you were looking for.In addition, several constants, despite being crucial components of the concepts about the atomic level operation of semiconductors, were mentioned nonchalantly and rarely had any explanation as to their importance. It usually meant spending half an hour on the internet seeking understanding where this book should have provided.It contains some errors as well. The only reason we know that is because some of the equations were incorrect compared with internet resources and the professor's knowledge himself.All in all this is a terrible book that was written by professors, for professors. It isn't good for students because it is so disorganized and does not do a good job of introducing difficult concepts of semiconductor physics.
I'm currently studying electrical engineering, and was interested in learning about semiconductors, so I signed up for a class. This was the book my professor selected, and so far this experience has been a nightmare. The book only has one or two examples per section, and many of them just skip important details in the derivations. Repeatedly terms are used before they are defined pages later, and the graphs often referenced when solving problems make it almost impossible to get an accurate reading. This book is a giant headache - I'm having to look at renting another textbook to reference to get through this class, which as you know, isn't cheap. I would never recommend this book to anyone.
For people new to semiconductor devices, some of the concepts in the book might be a bit hard to understand, because it's one of those books that is easier to comprehend with some fundamentals in solid state physics and basic device transport knowledge. It's easier for use as a reference book if you want to flip through for reviewing semiconductor concepts. It'll give you a general overview of the device principles for all the basic device types that you see right now for current technology, so it is useful too for brushing up on fundamental semiconductor knowledge.
The answers in the back of the book do not match up with the questions. (the answers match up with the US edition questions, but the international edition has different questions).Overall I felt like the text was hard to follow. Too many equations with too little explanation/theory in between.
This is a fairly good book; however, it is more like a 3rd edition of the Complete Guide to Semiconductor Devices by the second author Ng than the expected updated edition of Sze's classic. Many of the figures are the same as in Ng's book, and although more topics are covered than in Sze's 2nd Ed, the theory of what is covered is often less in-depth. This is a nice book to have, especially if you do not have a copy of Ng's book, but I would not get rid of your 2nd edition of Sze yet. I am giving it 3 stars not because it is a bad book, but I truly believe there is a great deal of similarity between this 3rd Ed of Sze and the 2nd Ed of Ng's book, and I feel a little disappointed.
I bought this book to prepare for my graduate school quals - we're supposed to know something about semiconductor technology. This book is not great - the author doesn't always derive even basic formulas, and the organization leaves something to be desired. If you are looking for an intro to semiconductors, I'd recommend Robert Pierret's book - it's much better.
This class at least in my opinion is one of the more difficult classes and the book goes into more than enough explanation and detail for my class that I felt I understood the subject and it showed because I got an A in the class.
terrible book. hard to read, makes little sense and the font so faint you can barely read.
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