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Ultra Low-Power Electronics and Design (Solid Mechanics and Its Applications)
 
 
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Ultra Low-Power Electronics and Design (Solid Mechanics and Its Applications) [Hardcover]

E. Macii (Editor)

Price: $195.00 & this item ships for FREE with Super Saver Shipping. Details
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Book Description

Solid Mechanics and Its Applications July 15, 1988
Power consumption is a key limitation in many high-speed and high-data-rate electronic systems today, ranging from mobile telecom to portable and desktop computing systems, especially when moving to nanometer technologies. Ultra Low-Power Electronics and Design offers to the reader the unique opportunity of accessing in an easy and integrated fashion a mix of tutorial material and advanced research results, contributed by leading scientists from academia and industry, covering the most hot and up-to-date issues in the field of the design of ultra low-power devices, systems and applications.

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Inside This Book (learn more)
First Sentence:
The progress of silicon process technology marches on relentlessly. Read the first page
Key Phrases - Statistically Improbable Phrases (SIPs): (learn more)
backlight factor, transmittance scaling, remote swapping, standby mode leakage, leakage version, victim buffer, optical clock distribution networks, known input state, network swapping, leakage power consumption, traffic reshaping, different input states, contrast fidelity, dynamic voltage scaling, downward traversal, partitioned architecture, dynamic power consumption, backlight illumination, wormhole switching, tuning heuristic, loop nest, cache configuration, cell versions, leakage reduction, dynamic power management
Key Phrases - Capitalized Phrases (CAPs): (learn more)
International Symposium, International Conference, Design Automation Conference, Design of Experiments, Europe Conference, Journal of Solid-State Circuits, New York, Kluwer Academic Publishers, Cisco Aironet, International Workshop, Single-Electron Transistor, Computer Aided Design, Computer Design, Las Vegas, New Orleans, Operating Systems Principles, Quantum Electronics, Route Packets, Stanford University, Very Large Scale Integration
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