Near Threshold Computing | Technology, Methods and Applications. This item is unavailable.
Language: English
Published by Springer, 2016
- Softcover
- New



Seller: preigu, Osnabrück, Germanypreigu
AbeBooks seller since August 5, 2024
Condition: New
US$ 60.20
Item description from seller
Seller Inventory # 109581408
- Title
- Near Threshold Computing | Technology, Methods and Applications
- Author
- Michael Hübner (u. a.)
- Publisher
- Springer
- Publication year
- 2016
- Condition
- Neu
- Binding
- Taschenbuch
- Language
- English
- ISBN 10
- 3319372092
- ISBN 13
- 9783319372099
- Item weight
- 189 grams
- Dimensions
- 235 x 155 x 7 mm
- Seller catalogs
- Bücher
· Provides an introduction to near-threshold computing, enabling reader with a variety of tools to face the challenges of the power/utilization wall;
· Demonstrates how to design efficient voltage regulation, so that each region of the chip can operate at the most efficient voltage and frequency point;
· Investigates how performance guarantees can be ensured when moving towards NTC manycores through variability-aware voltage and frequency allocation schemes.
"Synopsis" may belong to another edition of this title.
From the Back Cover
This book explores near-threshold computing (NTC), a design-space using techniques to run digital chips (processors) near the lowest possible voltage. Readers will be enabled with specific techniques to design chips that are extremely robust; tolerating variability and resilient against errors. Variability-aware voltage and frequency allocation schemes will be presented that will provide performance guarantees, when moving toward near-threshold manycore chips.
· Provides an introduction to near-threshold computing, enabling reader with a variety of tools to face the challenges of the power/utilization wall;
· Demonstrates how to design efficient voltage regulation, so that each region of the chip can operate at the most efficient voltage and frequency point;
· Investigates how performance guarantees can be ensured when moving towards NTC manycores through variability-aware voltage and frequency allocation schemes.
"About the title" may belong to another edition of this title.