Radioisotope Thin-film Powered Microsystems
Duggirala, Rajesh; Lal, Amit; Radhakrishnan, Shankar
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Description for Radioisotope Thin-film Powered Microsystems
Hardback. This book describes high energy density microbatteries required for compact long lifetime wireless sensor microsystems. It also presents theories employing high energy density radioisotope thin films in actuating novel electromechanical energy converters. Series: MEMS Reference Shelf. Num Pages: 232 pages, biography. BIC Classification: TBN; TJF. Category: (P) Professional & Vocational. Dimension: 239 x 157 x 20. Weight in Grams: 502.
“Radioisotope Thin-Film Powered Microsystems” describes high energy density microbatteries required for compact long lifetime wireless sensor Microsystems. These microbatteries are presented alongside theories employing high energy density radioisotope thin films in actuating novel electromechanical energy converters. Also discussed are novel wireless sensor architectures that enable long lifetime wireless sensors Microsystems with minimal amounts of radioisotope fuel used. Ultra low-power beta radiation counting clocks are described in order to illustrate the application of radioisotope thin films in realizing the deployment of various components of Microsystems. “Radioisotope Thin-Film Powered Microsystems” also presents the latest work on 3D silicon electrovoltaic converters ... Read more
“Radioisotope Thin-Film Powered Microsystems” describes high energy density microbatteries required for compact long lifetime wireless sensor Microsystems. These microbatteries are presented alongside theories employing high energy density radioisotope thin films in actuating novel electromechanical energy converters. Also discussed are novel wireless sensor architectures that enable long lifetime wireless sensors Microsystems with minimal amounts of radioisotope fuel used. Ultra low-power beta radiation counting clocks are described in order to illustrate the application of radioisotope thin films in realizing the deployment of various components of Microsystems. “Radioisotope Thin-Film Powered Microsystems” also presents the latest work on 3D silicon electrovoltaic converters ... Read more
Product Details
Format
Hardback
Publication date
2010
Publisher
Springer-Verlag New York Inc. United States
Number of pages
232
Condition
New
Series
MEMS Reference Shelf
Number of Pages
198
Place of Publication
New York, NY, United States
ISBN
9781441967626
SKU
V9781441967626
Shipping Time
Usually ships in 15 to 20 working days
Ref
99-15
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