Solid State Electronic Devices (Prentice Hall series in solid state physical electronics)

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9780138229412: Solid State Electronic Devices (Prentice Hall series in solid state physical electronics)

Solid State Electronic Devices, 5/e

THE most widely used introduction to solid state electronic devices text, this book is designed to help students gain a basic understanding of semiconductor devices and the physical operating principles behind them. This two-fold approach 1) provides students with a sound understanding of existing devices, so that their studies of electronic circuits and systems will be meaningful, and 2) helps them develop the basic tools with which they can later learn about applications and the latest devices.

Modern Control Systems: International Edition, 10/e

Written to be equally useful for all engineering disciplines, this text is organized around the concept of control systems theory as it has been developed in the frequency and time domains. It provides coverage of classical control, employing root locus design, frequency and response design using Bode and Nyquist plots. It also covers modern control methods based on state variable models including pole placement design techniques with full-state feedback controllers and full-state observers.

Digital System Design with VHDL, 2/e

The second edition of Digital System Design with VHDL includes additions in two important areas; sections on writing testbenches have been added to relevant chapters, and the addition of a new chapter on VHDL-AMS and mixed-signal modeling. The unique approach will be appreciated by undergraduates in Electronic Engineering and Computer Engineering in all years of their courses and by students undertaking postgraduate study. There is also a proven need from industry for graduates with knowledge of VHDL and the associated design tools.

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Product Description:

For undergraduate electrical engineering students or for practicing engineers and scientists, interested in updating their understanding of modern electronics.

 

One of the most widely used introductory books on semiconductor materials, physics, devices and technology, this text aims to: 1) develop basic semiconductor physics concepts, so students can better understand current and future devices; and 2) provide a sound understanding of current semiconductor devices and technology, so that their applications to electronic and optoelectronic circuits and systems can be appreciated. Students are brought to a level of understanding that will enable them to read much of the current literature on new devices and applications.

From the Back Cover:

This book is designed to help readers gain a basic understanding of semiconductor devices and the physical operating principles behind them. This two-fold approach 1) provides the user with a sound understanding of existing devices, and 2) helps them develop the basic tools with which they can later learn about applications and the latest devices. The piece provides one of the most comprehensive treatments of all the important semiconductor devices, and reflects the most current trends in the technology and theoretical understanding of the devices.

FEATURES/BENEFITS

  • NEW—Thoroughly updated to reflect the most current trends in the technology and theoretical understanding of devices.
  • NEW—Expanded description of silicon Czochralski growth, wafer production, and vapor phase epitaxy (Ch. 1).
  • NEW—Clearer discussion of chemical bonding, energy band formation and hole transport (Chs. 2, 3 and 4).
  • NEW—Consolidated coverage of p-n junction diodes and its applications (Ch. 5).
  • NEW—Greatly expanded/updated discussion of device fabrication processes (Ch. 5 and appendices).
  • NEW—Earlier discussion of MOS devices (Ch. 6)—Ahead of bipolar junction transistors—reflects the preponderance of complementary MOS field effect transistors (MOSFETs) in integrated circuits today.
  • NEW—Major revision of chapter on Field Effect Transistors (Ch. 6)—Both in the underlying theory as well as discussion of a variety of short channel, high field and hot carrier effects in scaled, ultra-small MOSFETs. Includes extensive discussions of the current-voltage and capacitance-voltage characteristics of these devices—and the information that can be gleaned from such measurements.
  • NEW—Updated chapter on Bipolar Junction Transistors (BJTs) (Ch. 7)—To reflect current technology. Describes higher-order effects (including the Kirk effect and Webster effect); discusses the Gummel-Poon model (which is more elaborate and physically more accurate than the Ebers-Moll model); and updates the fabrication aspects of BJTs.
  • NEW—Consolidated coverage of optoelectronic devices in a single chapter (Ch. 8)—Brings the discussion of semiconductor lasers into the same chapter as LEDs and detectors
  • Reflects the growing importance of optoelectronics.
  • NEW—Updated coverage of integrated circuits (Ch. 9)—Eliminates outdated material on bipolar processes to reflect the concerted shift to CMOS applications, such as logic and memory integrated circuits.
  • NEW—A section on the insulated gate bipolar transistor (Ch. 11)—A device that is gradually supplanting the semiconductor-controlled rectifier.
  • NEW—Real data—Wherever feasible, replaces idealized current-voltage and capacitance-voltage plots with real data.

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Published by Prentice Hall (1990)
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