Presentation 1998/7/3
EQUIVALENT NETWORK REPRESENTATION FOR THICKNESS MODES IN PIEZOELECTRIC PLATES WITH A LINEARLY GRADED PARAMETER
Ken YAMADA, Jun'ichi SAKAMURA, Kiyoshi NAKAMURA,
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Abstract(in Japanese) (See Japanese page)
Abstract(in English) In this report we present an equivalent network representation for thickness modes in plates that have a linearly graded piezoelectric parameter. The network is composed of a transmission line of finite length which is linked to the electric excitation port via ideal transformers connected serially at its both ends. The ratios of the two transformers are different from each other and vary with the frequency. Two frequency-dependent capacitors of the same absolute value but opposite sign appear at the electric port. Frequency characteristic of the input electric admittance of a resonator, which is well featuring the linearly-graded piezoelectric plate, is shown through the equivalent network analysis.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) Piezoelectric transducer / Broadband / Functionally graded material / Equivalent network
Paper # US98-25,EMD98-17,CPM98-49,OME98-47
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Committee OME
Conference Date 1998/7/3(1days)
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Registration To Organic Material Electronics (OME)
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) EQUIVALENT NETWORK REPRESENTATION FOR THICKNESS MODES IN PIEZOELECTRIC PLATES WITH A LINEARLY GRADED PARAMETER
Sub Title (in English)
Keyword(1) Piezoelectric transducer
Keyword(2) Broadband
Keyword(3) Functionally graded material
Keyword(4) Equivalent network
1st Author's Name Ken YAMADA
1st Author's Affiliation Department of Electrical Communication Engineering Graduate School of Engineering, Tohoku University()
2nd Author's Name Jun'ichi SAKAMURA
2nd Author's Affiliation Department of Electrical Communication Engineering Graduate School of Engineering, Tohoku University
3rd Author's Name Kiyoshi NAKAMURA
3rd Author's Affiliation Department of Electrical Communication Engineering Graduate School of Engineering, Tohoku University
Date 1998/7/3
Paper # US98-25,EMD98-17,CPM98-49,OME98-47
Volume (vol) vol.98
Number (no) 164
Page pp.pp.-
#Pages 6
Date of Issue