DocumentCode
1724571
Title
A hybrid power delivery method for asynchronous loads in energy harvesting systems
Author
Xuefu Zhang ; Delong Shang ; Fei Xia ; Hock Soon Low ; Yakovlev, Alex
Author_Institution
Sch. of Electr. & Electron. Eng., Newcastle Univ., Newcastle upon Tyne, UK
fYear
2012
Firstpage
413
Lastpage
416
Abstract
Energy harvesting is becoming popular for small systems such as micro-sensors or medical implantable devices, which may not need or be able to include large energy storage devices. However power from energy harvesting circuits may be very limited and vary within a large range. Therefore an on-chip intelligent and flexible power delivery method bypassing external energy storage devices and corresponding charging circuits may be advantageous. Also, different computation loads may tolerate different degrees of variance in the supplied VDD. Thus, a hybrid power delivery method fully behaving as switched capacitor dc-dc converter or capacitor bank block to generate stable or variable power supply is developed to cope with variable harvested energy. The method is verified by hardware, which has been employed for VLSI chip testing. It can be considered as a valuable reference for later on-chip fabrication and task & power scheduling research.
Keywords
DC-DC power convertors; SRAM chips; VLSI; energy harvesting; integrated circuit testing; power supply circuits; switched capacitor networks; VDD; VLSI chip testing; asynchronous SRAM testing; asynchronous circuit testing system; asynchronous loads; capacitor bank block; charging circuits; energy harvesting circuits; external energy storage devices; flexible power delivery method; hybrid power delivery method; medical implantable devices; microsensors; on-chip fabrication; on-chip intelligent method; power scheduling research; switched capacitor dc-dc converter; task scheduling research; variable power supply; Capacitors; Energy harvesting; Hardware; Power supplies; Switches; System-on-a-chip; Testing; Energy harvesting; asynchronous loads; energy-modulated computing; power delivery; task and power scheduling;
fLanguage
English
Publisher
ieee
Conference_Titel
New Circuits and Systems Conference (NEWCAS), 2012 IEEE 10th International
Conference_Location
Montreal, QC
Print_ISBN
978-1-4673-0857-1
Electronic_ISBN
978-1-4673-0858-8
Type
conf
DOI
10.1109/NEWCAS.2012.6329044
Filename
6329044
Link To Document