Jumat, 07 Januari 2011

[U229.Ebook] Download Semiconductor Devices: Physics and Technology, by S. M. Sze

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Semiconductor Devices: Physics and Technology, by S. M. Sze

Semiconductor Devices: Physics and Technology, by S. M. Sze



Semiconductor Devices: Physics and Technology, by S. M. Sze

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Semiconductor Devices: Physics and Technology, by S. M. Sze

Semiconductor Devices: Physics and Technology, Third Edition is an introduction to the physical principles of modern semiconductor devices and their advanced fabrication technology. It begins with a brief historical review of major devices and key technologies and is then divided into three sections: semiconductor material properties, physics of semiconductor devices and processing technology to fabricate these semiconductor devices.

  • Sales Rank: #2323621 in Books
  • Published on: 2012-08-15
  • Format: International Edition
  • Original language: English
  • Number of items: 1
  • Dimensions: 10.00" h x .75" w x 7.87" l, 1.10 pounds
  • Binding: Paperback
  • 592 pages

Most helpful customer reviews

0 of 0 people found the following review helpful.
I am sorry if your professor requires this book...
By john nuss
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.

20 of 21 people found the following review helpful.
Excellent Basic Introduction for Engineers
By A Customer
This is a welcome 2nd edition of Sze's basic introduction to the technology underlying modern conventional semiconductor devices. The first edition of 1985 served the needs of its time admirably, but the 17 years since have seen much progress in the field, especially in the area of fabrication technology.
It should be stressed that this text is an introductory text, covering the basics well, but not taking the material much beyond the intermediate level. It is also very much an engineering text rather than a physics text, for the focus is squarely placed on the technology and not the underlying solid-state physics. As such, it is suited to undergraduate electrical/electronic engineers wishing to gain some appreciation of the physics underpinning conventional semiconductor devices, and the way they are fabricated, or for physicists wishing to gain some perspective on the fabrication and operation of the same, but it is in no way a comprehensive textbook on semiconductor physics.
Nevertheless, the material that is presented is well chosen, and well explained. The English prose style is somewhat pedestrian, but this is no great flaw in an engineering textbook. All the essentials of semiconductor materials (almost exclusively Si and GaAs) are described, the p-n junction, as well as the major device types (BJTs, (MOS/MES)FETs, microwave diodes, LEDs, lasers, etc.) and the modern technologies employed for their fabrication. In some senses, the section on fabrication technologies, taking up fully a third of the book, is perhaps its best section, for fabrication is rarely given such emphasis (although, again, not detailed, but covering most salient points) in an introductory book.
The pedagogical method employed by Sze is sound, and relevant worked examples are provided. The only short-coming is perhaps the relative brevity of the end-of-chapter problems, for which no answers are provided, but, in such a textbook, I feel that it is not really necessary to work through them to gain a solid grasp of the material presented.
Physically, the book is much more attractive than the previous edition. The cover is more appealling, and the text is well set in a two-colour print. The diagrams are nothing special, but they are generally clear and explain their point well, and are certainly much improved from the first edition, especially those in the fabrication section.
Just a final comment on other reviews: it is difficult to see how this book may be regarded as a bible of any sort, for the material is covered in quite a superficial manner. I wonder if they are not mistaking it for the 'big Sze', viz., Sze's 'Physics of Semiconductor Devices', which is another, much larger and more comprehensive, work of Sze's.

5 of 5 people found the following review helpful.
Falling a bit short in both physics and technology
By Visitor_of_Universe
I started using this book for my undergraduate course in semiconductor technology, and I believe I would have failed the exam if I relied solely on it.

Let me explain: the exposition is really exciting and consistent, but if you were interested in the physics side of the phenomena in semiconductors and semiconductor devices, you'd be left wanting for more. "Just when it was getting interesting", you are left with a few paragraphs that just aren't there. If you are the least scientifically curious, this will most likely frustrate you (it is also a credit to Sze as a scientific author, as he made you actually want to know more, through his systematic exposition). I found that even the very old cornerstone book "Electrons and Holes in Semiconductors" by Shockley, gives more satisfaction to the reader, as Shockley has a much broader, freer and thorough approach at discussing the physics of semiconductors.

From the technological point of view, the book in question doesn't seem very useful. It works on some fundamentals but, again, it will only get your lips wet but thirsty. Still, I think Sze tried to cover the bases in a field that is in explosive development such as semiconductor technology.

From both points of view - physics and technology - the book feels a lot like a teaser for Sze's masterpiece, "Physics of Semiconductor Devices" (2nd edition), which is a book I would wholeheartedly recommend without reservations. And herein lies the reason why I gave this ("Semiconductor Devices") book only three stars: if I give 5 stars to "Physics of Semiconductor Devices" by the same author, then the object of this review deserves 3. Seeing as though the price of both books is almost the same, this should at least make you think for a moment.

See all 28 customer reviews...

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