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Sige, GAAS and Inp Heterojunction Bipolar Transistors
 
 
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Sige, GAAS and Inp Heterojunction Bipolar Transistors [Hardcover]

Jiann S. Yuan (Author)
2.7 out of 5 stars  See all reviews (3 customer reviews)

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Book Description

0471197467 978-0471197461 April 15, 1999 1
An up-to-date, comprehensive guide to heterojunction bipolar transistor technology.

Owing to their superior performance in microwave and millimeter-wave applications, heterojunction bipolar transistors (HBTs) have become a major force in mobile and wireless communications. This book offers an integrated treatment of SiGe, GaAs, and InP HBTs, presenting a much-needed overview of HBTs based on different materials systems-their fabrication, analysis, and testing procedures.

Highly respected expert Jiann S. Yuan discusses in depth the dc and RF performance and modeling of HBT devices, including simulation, thermal instability, reliability, low-temperature and high-temperature performance, and HBT analog and digital circuits. He provides step-by-step presentations of HBT materials-including Si HBTs and III-V and IV-IV compound HBTs, which are rarely described in the literature. Also covered are device and circuit interaction as well as specific high-speed devices in mobile and wireless communications.

This immensely useful guide to a rapidly expanding field includes more than 200 figures, tables of different material systems in terms of their physical parameters, and up-to-date experimental results culled from the latest research. An essential resource for circuit and device designers in the semiconductor industry, SiGe, GaAs, and InP Heterojunction Bipolar Transistors is also useful for graduate students in electrical engineering, applied physics, and materials science.

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Editorial Reviews

From the Back Cover

An up-to-date, comprehensive guide to heterojunction bipolar transistor technology.

Owing to their superior performance in microwave and millimeter-wave applications, heterojunction bipolar transistors (HBTs) have become a major force in mobile and wireless communications. This book offers an integrated treatment of SiGe, GaAs, and InP HBTs, presenting a much-needed overview of HBTs based on different materials systems-their fabrication, analysis, and testing procedures.

Highly respected expert Jiann S. Yuan discusses in depth the dc and RF performance and modeling of HBT devices, including simulation, thermal instability, reliability, low-temperature and high-temperature performance, and HBT analog and digital circuits. He provides step-by-step presentations of HBT materials-including Si HBTs and III-V and IV-IV compound HBTs, which are rarely described in the literature. Also covered are device and circuit interaction as well as specific high-speed devices in mobile and wireless communications.

This immensely useful guide to a rapidly expanding field includes more than 200 figures, tables of different material systems in terms of their physical parameters, and up-to-date experimental results culled from the latest research. An essential resource for circuit and device designers in the semiconductor industry, SiGe, GaAs, and InP Heterojunction Bipolar Transistors is also useful for graduate students in electrical engineering, applied physics, and materials science.

About the Author

JIANN S. YUAN, PhD, is Associate Professor of Electrical Engineering at the University of Central Florida. Widely published in the area of HBT technology, Dr. Yuan is also the author of Semiconductor Device Physics, Simulation, and Analysis.

Product Details

  • Hardcover: 463 pages
  • Publisher: Wiley-Interscience; 1 edition (April 15, 1999)
  • Language: English
  • ISBN-10: 0471197467
  • ISBN-13: 978-0471197461
  • Product Dimensions: 9.6 x 6.5 x 1.1 inches
  • Shipping Weight: 1.7 pounds (View shipping rates and policies)
  • Average Customer Review: 2.7 out of 5 stars  See all reviews (3 customer reviews)
  • Amazon Best Sellers Rank: #2,268,968 in Books (See Top 100 in Books)

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Average Customer Review
2.7 out of 5 stars (3 customer reviews)
 
 
 
 
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5 of 6 people found the following review helpful:
5.0 out of 5 stars An excellent book about up-to-date HBT technology, May 11, 2000
By A Customer
This review is from: Sige, GAAS and Inp Heterojunction Bipolar Transistors (Hardcover)
This is an excellent book about the up-to-date HBT technology. The best thing is that you can find anything, from material properties, fabrication, analysis, to device modeling in this book. Highly recommended as a textbook.
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1.0 out of 5 stars Not a book, just collection of experimental data, February 2, 2007
By 
YS (San Jose, CA USA) - See all my reviews
This review is from: Sige, GAAS and Inp Heterojunction Bipolar Transistors (Hardcover)
I have not bothered to write a review, until now. I want to warn other people not to waste their money on this book (an expensive one) as I did.

The book is nothing but a compilation of large number of (important or unimportant) experimental data from research papers. There is no central flow of thought, no insight of the author to the topics, no theoretical development. The author just quotes experimental data over and over again from papers that measure a variety of variations of the same type of devices. Of course there are some equations in the book, but the author just quote those equations from papers (again) with no derivation, just like the way he quotes all the experimental data.

As a contrast, I want to mention S. M. Sze's famous "Physics of Semiconductor Devices". This book also quotes results from a large number of research papers. But Sze organizes the content in a very systematic manner. He provides good insight and brief theoretical derivation to the topics treated, and use the quoted papers as a means to support the theories. The selection of topics and papers in the book also reflects Sze's outstanding expertise and personal taste in the field. So the quality difference between Sze's and Yuan's is miles long. Note that Sze's is notorious as a textbook for students but is invaluable as a reference for professionals in the field.

If you really want to learn the subject, go for William Liu's "Fundamentals of III-V Devices: HBTs, MESFETs, and HFETs/HEMTs", a five star book.

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2.0 out of 5 stars Good reference book for advanced subjects, December 31, 2002
By 
This review is from: Sige, GAAS and Inp Heterojunction Bipolar Transistors (Hardcover)
I used this book as a text for a Heterojunction device class.Although , the book does contain a great deal of useful information , most of it is in the form of statements and data from research publicaions - devoid of any explanation.

Also, we found many serious errors in the text.

Wouldnt recommend as in introductory text to HBTs

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Inside This Book (learn more)
First Sentence:
Due to the phenomenal growth of applications such as computing and wireless communications, the microelectronics industry, has become a major economic force on the world scene with annual sales in excess of $100 billion and continuing growth with no leveling in sight. Read the first page
Key Phrases - Statistically Improbable Phrases (SIPs): (learn more)
setback layer thickness, gamma optimum, heterojunction hipolar transistors, absolute thermal stability, retrograde collector profile, high collector current densities, collapse loci, onset current density, collector signal delay, collector current density, free carrier capacitance, graded layer thickness, emitter ballasting resistors, heterojunction capacitance, base width modulation effect, peak cutoff frequency, base pushout, uniformly doped base, current gain degradation, peak junction temperature, emitter delay, base transit time, collector breakdown voltage, emitter current density, emitter fingers
Key Phrases - Capitalized Phrases (CAPs): (learn more)
Electron Devices, Electron Device Lett, Artech House, Solid-State Electron, Monte Carlo, Elsevier Science, New York, Electron Derives, Palo Alto, Academic Press, Solid-State Circuits, Trapezoidal Profile, Prentice Hall, Technology Modeling Associates, Upper Saddle River, American Institute of Physics, Depth From Emitter Contact, High-Speed Semiconductor Devices, John Wiley
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