The Experts below are selected from a list of 213 Experts worldwide ranked by ideXlab platform
Atsuki Inoue - One of the best experts on this subject based on the ideXlab platform.
-
Supply Voltage Adjustment Technique with Process-Voltage Conversion Table for Low Power Consumption
2007 IEEE International Conference on Integrated Circuit Design and Technology, 2007Co-Authors: Atsuki Inoue, Hiroshi Okano, Tetsuyoshi Shiota, Yukihito Kawabe, Wataru Shibamoto, Tetsutaro HashimotoAbstract:An energy-saving system for SOCs using multiple threshold voltage CMOS was developed. It uses process sensors and process-voltage Conversion Tables generated from static timing analysis results to adjust the supply' voltage according to die-to-die process variation. We applied this system to an embedded dual-core microprocessor using 90 nm triple threshold voltage CMOS technology. When the microprocessor executes three video stream decoding programs, 33% power reduction was measured at worst process comer.
-
Supply Voltage Adjustment Technique for Low Power Consumption and Its Application to SOCs with Multiple Threshold Voltage CMOS
2006 Symposium on VLSI Circuits 2006. Digest of Technical Papers., 2006Co-Authors: Hiroshi Okano, Tetsuyoshi Shiota, Yukihito Kawabe, Wataru Shibamoto, Tetsutaro Hashimoto, Atsuki InoueAbstract:An energy-saving system for SOCs using multiple threshold voltage CMOS was developed. It equips process sensors and process-voltage Conversion Table generated from static timing analysis results, and adjusts. The supply voltage according to die-to-die process variation. We applied this system to an embedded dual-core microprocessor using 90nm triple Threshold voltage CMOS technology. When the microprocessor executes video stream decoding program, 17% power reduction was measured with dies of typical process condition
Hiroshi Okano - One of the best experts on this subject based on the ideXlab platform.
-
Supply Voltage Adjustment Technique with Process-Voltage Conversion Table for Low Power Consumption
2007 IEEE International Conference on Integrated Circuit Design and Technology, 2007Co-Authors: Atsuki Inoue, Hiroshi Okano, Tetsuyoshi Shiota, Yukihito Kawabe, Wataru Shibamoto, Tetsutaro HashimotoAbstract:An energy-saving system for SOCs using multiple threshold voltage CMOS was developed. It uses process sensors and process-voltage Conversion Tables generated from static timing analysis results to adjust the supply' voltage according to die-to-die process variation. We applied this system to an embedded dual-core microprocessor using 90 nm triple threshold voltage CMOS technology. When the microprocessor executes three video stream decoding programs, 33% power reduction was measured at worst process comer.
-
Supply Voltage Adjustment Technique for Low Power Consumption and Its Application to SOCs with Multiple Threshold Voltage CMOS
2006 Symposium on VLSI Circuits 2006. Digest of Technical Papers., 2006Co-Authors: Hiroshi Okano, Tetsuyoshi Shiota, Yukihito Kawabe, Wataru Shibamoto, Tetsutaro Hashimoto, Atsuki InoueAbstract:An energy-saving system for SOCs using multiple threshold voltage CMOS was developed. It equips process sensors and process-voltage Conversion Table generated from static timing analysis results, and adjusts. The supply voltage according to die-to-die process variation. We applied this system to an embedded dual-core microprocessor using 90nm triple Threshold voltage CMOS technology. When the microprocessor executes video stream decoding program, 17% power reduction was measured with dies of typical process condition
Tetsutaro Hashimoto - One of the best experts on this subject based on the ideXlab platform.
-
Supply Voltage Adjustment Technique with Process-Voltage Conversion Table for Low Power Consumption
2007 IEEE International Conference on Integrated Circuit Design and Technology, 2007Co-Authors: Atsuki Inoue, Hiroshi Okano, Tetsuyoshi Shiota, Yukihito Kawabe, Wataru Shibamoto, Tetsutaro HashimotoAbstract:An energy-saving system for SOCs using multiple threshold voltage CMOS was developed. It uses process sensors and process-voltage Conversion Tables generated from static timing analysis results to adjust the supply' voltage according to die-to-die process variation. We applied this system to an embedded dual-core microprocessor using 90 nm triple threshold voltage CMOS technology. When the microprocessor executes three video stream decoding programs, 33% power reduction was measured at worst process comer.
-
Supply Voltage Adjustment Technique for Low Power Consumption and Its Application to SOCs with Multiple Threshold Voltage CMOS
2006 Symposium on VLSI Circuits 2006. Digest of Technical Papers., 2006Co-Authors: Hiroshi Okano, Tetsuyoshi Shiota, Yukihito Kawabe, Wataru Shibamoto, Tetsutaro Hashimoto, Atsuki InoueAbstract:An energy-saving system for SOCs using multiple threshold voltage CMOS was developed. It equips process sensors and process-voltage Conversion Table generated from static timing analysis results, and adjusts. The supply voltage according to die-to-die process variation. We applied this system to an embedded dual-core microprocessor using 90nm triple Threshold voltage CMOS technology. When the microprocessor executes video stream decoding program, 17% power reduction was measured with dies of typical process condition
Franco Mutinelli - One of the best experts on this subject based on the ideXlab platform.
-
Karl Fischer Titration to determine moisture in honey: A new simplified approach
Food Control, 2010Co-Authors: Albino Gallina, Nicoletta Stocco, Franco MutinelliAbstract:Honey, produced by Apis mellifera from nectar or honeydew, contains a discrete quantity of water (about 17%). The variability of water content influences the quality, the stability, the workability and the storage of honey. Moisture in honey is usually measured via determination of refractive index (RI); from the value measured, the percentage is calculated by an empirical formula or by "Conversion" Table. A possible alternative approach is the Karl Fischer Titration (KFT). The objective of this work was to find the optimal parameters for water determination in honey with KFT without any heat treatment of sample or working medium and the measurement of water content in more than 100 honeys of different botanical origin, using RI and KFT determinations. The water content, obtained with KFT, was usually higher than that determined by RI analysis. According to our results KFT seems to be the most reliable method. © 2009 Elsevier Ltd. All rights reserved.
Yukihito Kawabe - One of the best experts on this subject based on the ideXlab platform.
-
Supply Voltage Adjustment Technique with Process-Voltage Conversion Table for Low Power Consumption
2007 IEEE International Conference on Integrated Circuit Design and Technology, 2007Co-Authors: Atsuki Inoue, Hiroshi Okano, Tetsuyoshi Shiota, Yukihito Kawabe, Wataru Shibamoto, Tetsutaro HashimotoAbstract:An energy-saving system for SOCs using multiple threshold voltage CMOS was developed. It uses process sensors and process-voltage Conversion Tables generated from static timing analysis results to adjust the supply' voltage according to die-to-die process variation. We applied this system to an embedded dual-core microprocessor using 90 nm triple threshold voltage CMOS technology. When the microprocessor executes three video stream decoding programs, 33% power reduction was measured at worst process comer.
-
Supply Voltage Adjustment Technique for Low Power Consumption and Its Application to SOCs with Multiple Threshold Voltage CMOS
2006 Symposium on VLSI Circuits 2006. Digest of Technical Papers., 2006Co-Authors: Hiroshi Okano, Tetsuyoshi Shiota, Yukihito Kawabe, Wataru Shibamoto, Tetsutaro Hashimoto, Atsuki InoueAbstract:An energy-saving system for SOCs using multiple threshold voltage CMOS was developed. It equips process sensors and process-voltage Conversion Table generated from static timing analysis results, and adjusts. The supply voltage according to die-to-die process variation. We applied this system to an embedded dual-core microprocessor using 90nm triple Threshold voltage CMOS technology. When the microprocessor executes video stream decoding program, 17% power reduction was measured with dies of typical process condition