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System Integration: From Transistor Design to Large Scale Integrated Circuits
 
 
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System Integration: From Transistor Design to Large Scale Integrated Circuits [Hardcover]

Kurt Hoffmann (Author)
4.0 out of 5 stars  See all reviews (1 customer review)

Price: $160.00 & this item ships for FREE with Super Saver Shipping. Details
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Book Description

May 3, 2004 0470854073 978-0470854075 1
The development of large-scale integrated systems on a chip has had a dramatic effect on circuit design methodology.

Recent years have seen an escalation of interest in systems level integration (system-on-a-chip) and the development of low power, high chip density circuits and systems. Kurt Hoffmann sets out to address a wide range of issues relating to the design and integration of integrated circuit components and provides readers with the methodology by which simple equations for the estimation of transistor geometries and circuit behaviour can be deduced. The broad coverage of this unique book ranges from field effect transistor design, MOS transistor modelling and the fundamentals of digital CMOS circuit design through to MOS memory architecture and design.

  • Highlights the increasing requirement for information on system-on-a-chip design and integration.
  • Combines coverage of semiconductor physics, digital VLSI design and analog integrated circuits in one volume for the first time.
  • Written with the aim of bridging the gap between semiconductor device physics and practical circuit design.
  • Introduces the basic behaviour of semiconductor components for ICs and covers the design of both digital and analog circuits in CMOS and BiCMOS technologies.
  • Broad coverage will appeal to both students and practising engineers alike.
  • Written by a respected expert in the field with a proven track record of publications in this field.

Drawing upon considerable experience within both industry and academia, Hoffmann’s outstanding text, will prove an invaluable resource for designers, practising engineers in the semiconductor device field and electronics systems industry as well as Postgraduate students of microelectronics, electrical and computer engineering.


Editorial Reviews

From the Back Cover

The development of large-scale integrated systems-on-a-chip has had a dramatic effect on circuit design methodology. Escalating requirements for low-power, high-chip density circuits and systems have resulted in increasingly complex Bipolar, CMOS and BICMOS technologies. In order to design cost-effective and reliable systems a thorough understanding of the relationship between the individual components and their impact on the performance of the integrated system is required. Bridging the gap between semiconductor device physics and practical circuit design, this book:
  • Introduces the basic behaviour of semiconductor components for integrated circuit devices and their influence on digital, analog and memory circuits.
  • Covers the design of both digital and analog circuits in CMOS and BiCMOS technologies.
  • Features a wide range of topics including: field effect transistor design, power devices, MOS transistor modelling and the fundamentals of digital CMOS circuit design through to MOS memory architecture and design.
  • Provides readers with the methodology by which useful equations for the estimation of transistor geometries and circuit behaviour can be deduced.

Combining coverage of semiconductor physics, digital VLSI design and analog integrated circuits in one volume, this book will appeal to practising engineers, circuit designers and physicists working in IC-production, product engineering, quality management and quality testing. Postgraduate students in microelectronics, electrical and computer engineering will also find this book a useful reference.

About the Author

Kurt Hoffmann is a professor of electrical engineering at the Bundeswehr University in Munich. He is a member of the Institute of Electrical and Electronics Engineers and received the IEEE Third Millennium Medal in 2000. Over the last 15 years, he has presented numerous well-received seminars and papers and has drawn on his considerable experience in both academia and industry to write this book.

Product Details

  • Hardcover: 510 pages
  • Publisher: Wiley; 1 edition (May 3, 2004)
  • Language: English
  • ISBN-10: 0470854073
  • ISBN-13: 978-0470854075
  • Product Dimensions: 6.9 x 1.3 x 9.8 inches
  • Shipping Weight: 2.5 pounds (View shipping rates and policies)
  • Average Customer Review: 4.0 out of 5 stars  See all reviews (1 customer review)
  • Amazon Best Sellers Rank: #4,039,632 in Books (See Top 100 in Books)

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4.0 out of 5 stars Fast shipping, great value, but small dent, August 23, 2009
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This review is from: System Integration: From Transistor Design to Large Scale Integrated Circuits (Hardcover)
The book arrived in a few days (from China). Great value for the price. The product is brand new. The only problem is that it has a small dent in the front cover border, probably done during shipping.
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Inside This Book (learn more)
Key Phrases - Statistically Improbable Phrases (SIPs): (learn more)
current gain stage, simple amplifier stage, improved driving capability, series parallel register, enhancement load inverter, trench insulation, level restorer, different charge levels, electrical design rules, folded cascode amplifier, program disturb, word line driver, transient power dissipation, reverse biased direction, geometric design rules, neighboring transistors, majority carrier charge, effective transit time, inversion layer charge, current sense amplifier, clock signal changes, depletion region charge, current mirroring, trench cell, resistive region
Key Phrases - Capitalized Phrases (CAPs): (learn more)
Solid-State Circuits, New York, John Wiley, Digest of Technical Papers, Kurt Hoffmann, Electron Devices, Kluwer Academic, Substituting Equation, John Wilev, Large Scale Integrated Circuits, Using Equations, Solid-State Electron, Stage Figure, Master Slave Figure, Geometry Ratio, Bootstrap Principle, Current Mode Logic
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Front Cover | Table of Contents | First Pages | Index | Back Cover | Surprise Me!
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