DocumentCode
1460290
Title
Novel pyroelectric sensor materials
Author
Sengupta, Somnath ; Sengupta, Louise C. ; Synowczynski, Jennifer ; Rees, David A.
Author_Institution
Paratek Inc., Aberdeen, MD, USA
Volume
45
Issue
6
fYear
1998
Firstpage
1444
Lastpage
1452
Abstract
Ceramic compositions of barium strontium titanium oxide (BSTO) have been formulated for applications as pyroelectric sensor materials. The material has been fabricated in tape-cast and thin film forms. In general, the materials demonstrated high pyroelectric coefficients (p) accompanied with low dielectric constant and low dissipation factor. The compositions of the tape-cast and thin film specimens examined in this paper include a well-known commercially adopted Ba/sub 0.64/Sr/sub 0.36/TiO/sub 3/ as well as a composition suggested in the literature, and a patented composition with the addition of MgO to BSTO is investigated. Doping BSTO with MgO has been shown to reduce the dielectric constant and loss tangent (over a very wide frequency range from 100 Hz-10 GHz) of the material and thereby increase the pyroelectric figure of merit. This article will discuss the processing, material characterization, pyroelectric coefficient, and pyroelectric figure-of-merit of the above mentioned BSTO compositions.
Keywords
barium compounds; dielectric losses; ferroelectric ceramics; permittivity; pyroelectric detectors; strontium compounds; (BaSr)TiO/sub 3/:MgO; 100 Hz to 10 GHz; BSTO; Ba/sub 0.64/Sr/sub 0.36/TiO/sub 3/; MgO doping; ceramic composition; dielectric constant; dielectric loss tangent; dissipation factor; pyroelectric coefficient; pyroelectric figure of merit; pyroelectric sensor material; tape casting; thin film; Barium; Ceramics; Composite materials; Dielectric constant; Dielectric materials; Dielectric thin films; Doping; Pyroelectricity; Strontium; Titanium;
fLanguage
English
Journal_Title
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher
ieee
ISSN
0885-3010
Type
jour
DOI
10.1109/58.738284
Filename
738284
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