BIBLIO is the largest independent book marketplace in the world, with over 100 million books.

Skip to content

System-Level Design Techniques for Energy-Efficient Embedded Systems

System-Level Design Techniques for Energy-Efficient Embedded Systems

System-Level Design Techniques for Energy-Efficient Embedded Systems
Stock photo: cover may vary

System-Level Design Techniques for Energy-Efficient Embedded Systems Paperback - 2004

by Marcus T. Schmitz

Add to wish list
  • New
  • Paperback
New

Description

Springer US, 2004. Paperback. New. 211 pages. 9.00x6.00x0.48 inches.
Ask the seller a question Add to wish list
NZ$305.97
NZ$35.43 Delivery to USA
Standard delivery: 7 to 14 days
More delivery options
Ships from Revaluation Books (Devon, United Kingdom)

Details

  • Title System-Level Design Techniques for Energy-Efficient Embedded Systems
  • Author Marcus T. Schmitz
  • Binding Paperback
  • Edition Softcover reprin
  • Condition New
  • Pages 194
  • Volumes 1
  • Language ENG
  • Publisher Springer US
  • Publication date 2004
  • Bookseller's Inventory # x-1441954295
  • ISBN 9781441954299 / 1441954295
  • Weight 0.67 lbs (0.30 kg)
  • Dimensions 9.21 x 6.14 x 0.45 in (23.39 x 15.60 x 1.14 cm)
  • Category Medical / Nursing
  • Dewey Decimal Code 004.21
  • Quantity available 2

About Revaluation Books Devon, United Kingdom

Biblio member since 2020

General bookseller of both fiction and non-fiction.

Terms of Sale: 30 day return guarantee, with full refund including original shipping costs for up to 30 days after delivery if an item arrives misdescribed or damaged.

Browse books from Revaluation Books

Reader reviews for System-Level Design Techniques for Energy-Efficient Embedded Systems

From the publisher

System-Level Design Techniques for Energy-Efficient Embedded Systems addresses the development and validation of co-synthesis techniques that allow an effective design of embedded systems with low energy dissipation. The book provides an overview of a system-level co-design flow, illustrating through examples how system performance is influenced at various steps of the flow including allocation, mapping, and scheduling. The book places special emphasis upon system-level co-synthesis techniques for architectures that contain voltage scalable processors, which can dynamically trade off between computational performance and power consumption. Throughout the book, the introduced co-synthesis techniques, which target both single-mode systems and emerging multi-mode applications, are applied to numerous benchmarks and real-life examples including a realistic smart phone.
tracking-