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Power consumption becomes the most important design goal in a wide range of electronic systems. There are two driving forces towards this trend: continuing device scaling and ever increasing demand of higher computing power. First, device scaling continues to satisfy Mooreâs law via a conventional way of scaling (More Moore) and a new way of exploiting the vertical integration (More than Moore). Second, mobile and IT convergence requires m! ore computing power on the silicon chip than ever. Cell phones are now evolving towards mobile PC. PCs and data centers are becoming commodities in house and a must in industry. Both supply enabled by device scaling and demand triggered by the convergence trend realize more computation on chip (via multi-core, integration of diverse functionalities on mobile SoCs, etc.) and finally more power consumption incurring power-related issues and constraints.
Energy-Aware System Design: Algorithms and Architectures provides state-of-the-art ideas for low power design methods from circuit, architecture to software level and offers design case studies in three fast growing areas of mobile storage, biomedical and security.
Important topics and features:
- Describes very recent advanced issues and methods for energy-aware design at each design level from circuit and architecture to algorithm level, and also covering important blocks including low power ma! in memory subsystem and on-chip network at architecture level
- Explains efficient power conversion and delivery which is becoming important as heterogeneous power sources are adopted for digital and non-digital parts
- Investigates 3D die stacking emphasizing temperature awareness for better perspective on  energy efficiency
- Presents three practical energy-aware design case studies; novel storage device (e.g., solid state disk), biomedical electronics (e.g., cochlear and retina implants), and wireless surveillance camera systems.
Researchers and engineers in the field of hardware and software design will find this book an excellent starting point to catch up with the state-of-the-art ideas of low power design.
For Yonz Aerup, warrior in training, life was simple: trudge through classes, play a few tricks, and generally have a good time before graduating into the Royal Army of the Illatzulian King. However, this illusion of peace is deftly shattered when a bandit clan attacks his school and steals a vital artifac! t of the Kingdom. The peacemaker that ended the last continental war, the object that ensured the balance of power between the kingdoms, is now torn from the hands of Illatzul, thrusting it into an unknown future. Wary of war, the King of Illatzul decides to send student ambassadors to occupy the eyes of the other kingdoms whilst he would desperately try to relocate and retrieve their key of survival. Though ignorant of the world, Yonz Aerup is sent to a foreign nation, where he must learn to cope with his new surroundings and emerge from being a pampered child of peace. Through events that rob him of his childish innocence, Yonz must learn to change himself if he wants to survive. He must learn that nothing is as it seems. No one is who they seem to be. Luckily for him, a winged guardian watches his path carefully.Hephaestus Books represents a new publishing paradigm, allowing disparate content sources to be curated into cohesive, relevant, and informative books. To date, ! this content has been curated from Wikipedia articles and imag! es under Creative Commons licensing, although as Hephaestus Books continues to increase in scope and dimension, more licensed and public domain content is being added. We believe books such as this represent a new and exciting lexicon in the sharing of human knowledge. This particular book is a collaboration focused on Olympic badminton players of South Korea.This digital document is an article from Research Quarterly for Exercise and Sport, published by American Alliance for Health, Physical Education, Recreation and Dance (AAHPERD) on March 1, 2011. The length of the article is 311 words. The page length shown above is based on a typical 300-word page. The article is delivered in HTML format and is available immediately after purchase. You can view it with any web browser.
