Low Power Hardware Synthesis from Concurrent Action-Oriented Specifications

Low Power Hardware Synthesis from Concurrent Action-Oriented Specifications
Author :
Publisher : Springer Science & Business Media
Total Pages : 173
Release :
ISBN-10 : 9781441964816
ISBN-13 : 1441964819
Rating : 4/5 (819 Downloads)

Book Synopsis Low Power Hardware Synthesis from Concurrent Action-Oriented Specifications by : Gaurav Singh

Download or read book Low Power Hardware Synthesis from Concurrent Action-Oriented Specifications written by Gaurav Singh and published by Springer Science & Business Media. This book was released on 2010-07-23 with total page 173 pages. Available in PDF, EPUB and Kindle. Book excerpt: Human lives are getting increasingly entangled with technology, especially comp- ing and electronics. At each step we take, especially in a developing world, we are dependent on various gadgets such as cell phones, handheld PDAs, netbooks, me- cal prosthetic devices, and medical measurement devices (e.g., blood pressure m- itors, glucometers). Two important design constraints for such consumer electronics are their form factor and battery life. This translates to the requirements of reduction in the die area and reduced power consumption for the semiconductor chips that go inside these gadgets. Performance is also important, as increasingly sophisticated applications run on these devices, and many of them require fast response time. The form factor of such electronics goods depends not only on the overall area of the chips inside them but also on the packaging, which depends on thermal ch- acteristics. Thermal characteristics in turn depend on peak power signature of the chips. As a result, while the overall energy usage reduction increases battery life, peak power reduction in?uences the form factor. One more important aspect of these electronic equipments is that every 6 months or so, a newer feature needs to be added to keep ahead of the market competition, and hence new designs have to be completed with these new features, better form factor, battery life, and performance every few months. This extreme pressure on the time to market is another force that drives the innovations in design automation of semiconductor chips.


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