DocumentCode
642637
Title
Design methodology for low-power embedded microprocessors
Author
Manuzzato, Andrea ; Campi, Fabio ; Liberali, Valentino ; Pandini, Davide
Author_Institution
Central CAD and Design Solutions, STMicroelectronics, Agrate Brianza, Italy
fYear
2013
fDate
9-11 Sept. 2013
Firstpage
259
Lastpage
264
Abstract
Power constraints are becoming a strong limiting factor in IC design. Lowering supply voltage is an appealing option to control power dissipation, but voltage scaling has a strong impact on performances. It is possible to design specific circuits for near- or even sub-threshold supply voltage, but many design environments cannot afford the development costs for libraries specifically designed and optimized for a sub-threshold regime. This work explores flow and design options for low-voltage targeting a standard library. After extending the library characterization to cover a low-voltage range, synthesis exploration has been performed on reference designs to assess the energy efficiency for different operating voltages/frequencies. The resulting netlists have been analyzed in terms of power dissipation and area after placement and routing. Results for two test cases show the available energy efficiency gain as well as the frequency range for which each reference supply voltage offers a convenient performance, and the design options impacting this choice. The energy efficiency obtained for two operating voltage configurations are compared against the reference designs, showing the different power/performance trade-offs achievable by scaling the supply voltage.
Keywords
Clocks; Degradation; Digital signal processing; Libraries; Limiting; Standards; Timing; Low voltage; leakage reduction; low power; power dissipation; synthesis exploration; voltage scaling;
fLanguage
English
Publisher
ieee
Conference_Titel
Power and Timing Modeling, Optimization and Simulation (PATMOS), 2013 23rd International Workshop on
Conference_Location
Karlsruhe, Germany
Type
conf
DOI
10.1109/PATMOS.2013.6662187
Filename
6662187
Link To Document