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High-Performance Energy-Efficient Microprocessor Design

PUBLISHER Springer (11/19/2010)
PRODUCT TYPE Paperback (Paperback)

Description

The microprocessors of today contain close to a billion transistors, achieving the performance of the super-computers of a decade ago. Designing such processors takes hundreds of people. This design handbook is written by prominent microprocessor design leaders from the industry and academia. It provides complete coverage of all aspects of complex microprocessor design process including technology, power management, clocking, high-performance architecture, design methodologies, memory and I/O design, computer aided design, testing and design for testability. The book is intended to be a useful companion for every design engineer working in the field.

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Product Format
Product Details
ISBN-13: 9781441939463
ISBN-10: 1441939466
Binding: Paperback or Softback (Trade Paperback (Us))
Content Language: English
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Page Count: 338
Carton Quantity: 26
Product Dimensions: 6.14 x 0.73 x 9.21 inches
Weight: 1.08 pound(s)
Country of Origin: NL
Subject Information
BISAC Categories
Technology & Engineering | Mechanical
Technology & Engineering | Electrical
Technology & Engineering | Electronics - Microelectronics
Dewey Decimal: 621.391
Descriptions, Reviews, Etc.
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The microprocessors of today contain close to a billion transistors, achieving the performance of the super-computers of a decade ago. Designing such processors takes hundreds of people. This design handbook is written by prominent microprocessor design leaders from the industry and academia. It provides complete coverage of all aspects of complex microprocessor design process including technology, power management, clocking, high-performance architecture, design methodologies, memory and I/O design, computer aided design, testing and design for testability. The book is intended to be a useful companion for every design engineer working in the field.

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Editor: Oklobdzija, Vojin G.
VOJIN G. OKLOBDZIJA received his PhD from the University of California, Los Angeles. He has been a consultant for major computer and electronics companies in the fields of high-performance systems, low-power design, and fast data-path implementations with the emphasis on multi-media applications and has published extensively on the subjects of system design and computer engineering. Dr. Oklobdzija has worked at the IBM T.J. Watson Research Center where he did pioneering work on RISC architecture and machine development starting with the IBM 801. Currently, he is a professor in the Department of Electrical and Computer Engineering at the University of California, Davis, where he directs the Advanced Computer Systems Engineering Laboratory (ACSEL).

VLADIMIR M. STOJANOVIC is currently pursuing his PhD degree as a member of the VLSI research group, Electrical Engineering Department, Stanford University. He obtained MSEE degree from Stanford University and Dipl Ing diploma from Faculty of Electrical Engineering, University of Belgrade, Serbia. He was a research scholar at ACSEL.

DEJAN M. MARKOVIC received an Dipl Ing degree in Electrical Engineering from the University of Belgrade, Yugoslavia, in 1998 and an MS in Electrical Engineering from the University of California at Berkeley in 2000, where he is currently working toward a PhD. Mr. Markovic received the 2000-2001 CalVIEW Fellow Award for excellence in teaching and mentoring of industry engineers through the UC Berkeley distant learning program. He is a current member of the UC Berkeley Hitachi Fellow Team, conducting market research on Hitachi's Mu-Chip RFID technology.

NIKOLA NEDOVIC is currently pursuing his PhD in theDepartment of Electrical and Computer Engineering at the University of California, Davis. He was a research scholar at ACSEL, and has been published in seven papers.

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Paperback