Micropower Materials Development for Wireless Sensor Networks

Subcentimeter wireless computers capable of interfacing physically with their environment and communicating with each other have progressed from concept to commercial reality in the past decade. Wireless sensor nodes are an exciting technology, as they provide a backbone to measure almost any quanti...

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Published inMRS bulletin Vol. 33; no. 4; pp. 408 - 409
Main Authors Steingart, Dan, Roundy, Shad, Wright, Paul K., Evans, James W.
Format Journal Article
LanguageEnglish
Published New York, USA Cambridge University Press 01.04.2008
Springer International Publishing
Springer Nature B.V
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Abstract Subcentimeter wireless computers capable of interfacing physically with their environment and communicating with each other have progressed from concept to commercial reality in the past decade. Wireless sensor nodes are an exciting technology, as they provide a backbone to measure almost any quantity in a spatially disperse way, allowing time-synchronized correlations over meters or miles. Before these devices can be deployed to monitor and protect environments (such as grid power distribution systems, buildings, factories, or even the human body) for long periods of time, they need a power source. Environmental generation looks to be a promising method.
AbstractList Subcentimeter wireless computers capable of interfacing physically with their environment and communicating with each other have progressed from concept to commercial reality in the past decade. Wireless sensor nodes are an exciting technology, as they provide a backbone to measure almost any quantity in a spatially disperse way, allowing time-synchronized correlations over meters or miles. Before these devices can be deployed to monitor and protect environments (such as grid power distribution systems, buildings, factories, or even the human body) for long periods of time, they need a power source. Environmental generation looks to be a promising method.
Author Steingart, Dan
Roundy, Shad
Wright, Paul K.
Evans, James W.
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SubjectTerms Applied and Technical Physics
Carriers
Carriers, Storage, & Transformation
Characterization and Evaluation of Materials
Communication
Electrical Flow
Energy Materials
Materials Engineering
Materials Science
Measuring instruments
Nanotechnology
Power management
Power sources
Storage
Time synchronization
Transformation/Electrical Flow
Wireless sensor networks
Title Micropower Materials Development for Wireless Sensor Networks
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