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Low-Power CMOS Circuits: Technology, Logic Design and CAD Tools
Contributor(s): Piguet, Christian (Author)
ISBN: 0849395372     ISBN-13: 9780849395376
Publisher: CRC Press
OUR PRICE:   $190.00  
Product Type: Hardcover - Other Formats
Published: November 2005
Qty:
Temporarily out of stock - Will ship within 2 to 5 weeks
Annotation: The power consumption of integrated circuits (ICs) is considered one of the most important challenges of high-performance chips and of portable devices. In chapters drawn from Piguet's recently published Low-Power Electronics Design, this sharply focused volume covers all the low-level aspects of the design of low-power ICs in deep submicron technologies. It describes existing and future very deep submicron technologies as well as some completely different technologies, such as nanoelectronics and optical chips, that hold potential. The second part of the book describes techniques for reducing power consumption at the low level, and the final section presents CAD tools used to design low-power ICs.
Additional Information
BISAC Categories:
- Computers | Logic Design
Dewey: 621.395
LCCN: 2005050631
Physical Information: 1.14" H x 7.16" W x 10.3" (2.05 lbs) 436 pages
 
Descriptions, Reviews, Etc.
Publisher Description:

The power consumption of microprocessors is one of the most important challenges of high-performance chips and portable devices. In chapters drawn from Piguet's recently published Low-Power Electronics Design, Low-Power CMOS Circuits: Technology, Logic Design, and CAD Tools addresses the design of low-power circuitry in deep submicron technologies. It provides a focused reference for specialists involved in designing low-power circuitry, from transistors to logic gates.

The book is organized into three broad sections for convenient access. The first examines the history of low-power electronics along with a look at emerging and possible future technologies. It also considers other technologies, such as nanotechnologies and optical chips, that may be useful in designing integrated circuits. The second part explains the techniques used to reduce power consumption at low levels. These include clock gating, leakage reduction, interconnecting and communication on chips, and adiabatic circuits. The final section discusses various CAD tools for designing low-power circuits. This section includes three chapters that demonstrate the tools and low-power design issues at three major companies that produce logic synthesizers.

Providing detailed examinations contributed by leading experts, Low-Power CMOS Circuits: Technology, Logic Design, and CAD Tools supplies authoritative information on how to design and model for high performance with low power consumption in modern integrated circuits. It is a must-read for anyone designing modern computers or embedded systems.