Study on Electrical and Mechanical Characteristics of Flexural Plate Wave Device

碩士 === 國立中山大學 === 電機工程學系研究所 === 98 === Acoustic micro-sensors have already been applied in mass sensing including surface acoustic wave (SAW), flexural plate wave (FPW), thickness shear mode (TSM) and shear horizontal acoustic plate mode (SH-APM). The FPW micro-sensor is very suitable for liquid...

Full description

Bibliographic Details
Main Authors: Yu -Hung Chen, 陳俞亨
Other Authors: I-Yu Huang
Format: Others
Language:zh-TW
Published: 2010
Online Access:http://ndltd.ncl.edu.tw/handle/24376538895728302600
id ndltd-TW-098NSYS5442109
record_format oai_dc
spelling ndltd-TW-098NSYS54421092015-10-13T18:39:47Z http://ndltd.ncl.edu.tw/handle/24376538895728302600 Study on Electrical and Mechanical Characteristics of Flexural Plate Wave Device 彎曲平板波元件之機電特性研究 Yu -Hung Chen 陳俞亨 碩士 國立中山大學 電機工程學系研究所 98 Acoustic micro-sensors have already been applied in mass sensing including surface acoustic wave (SAW), flexural plate wave (FPW), thickness shear mode (TSM) and shear horizontal acoustic plate mode (SH-APM). The FPW micro-sensor is very suitable for liquid-sensing and bio-sensing applications due to the high mass-sensitivity and low phase-velocity in liquid. However, the conventional FPW micro-sensors presented a high insertion-loss (IL) and a low signal-to-noise ratio so it is difficult to combine with IC into a micro-system. To overcome these drawbacks, this study combine the Microelectromechanical System (MEMS) technology and the high C-axis orientation ZnO piezoelectric thin-film to develop a low insertion loss, low operation frequency, and high electromechanical coupling coefficient FPW device. In this study, a high C-axis orientation ZnO piezoelectric thin-film with a 20944A.U. X-Ray diffraction intensity at 34.200 degree and a 0.573 degree full width at half maximum (FWHM) was deposited by a commercial magnetic radio-frequency (RF) sputter system. The total processes of the FPW micro-sensor included five photolithography and seven thin-film depositions. In this study a low operation frequency (0.1MHz), low insertion loss (11dB to 14dB) and high electromechanical coupling coefficient (11%) FPW sensor was developed and fabricated. I-Yu Huang 黃義佑 2010 學位論文 ; thesis 94 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 國立中山大學 === 電機工程學系研究所 === 98 === Acoustic micro-sensors have already been applied in mass sensing including surface acoustic wave (SAW), flexural plate wave (FPW), thickness shear mode (TSM) and shear horizontal acoustic plate mode (SH-APM). The FPW micro-sensor is very suitable for liquid-sensing and bio-sensing applications due to the high mass-sensitivity and low phase-velocity in liquid. However, the conventional FPW micro-sensors presented a high insertion-loss (IL) and a low signal-to-noise ratio so it is difficult to combine with IC into a micro-system. To overcome these drawbacks, this study combine the Microelectromechanical System (MEMS) technology and the high C-axis orientation ZnO piezoelectric thin-film to develop a low insertion loss, low operation frequency, and high electromechanical coupling coefficient FPW device. In this study, a high C-axis orientation ZnO piezoelectric thin-film with a 20944A.U. X-Ray diffraction intensity at 34.200 degree and a 0.573 degree full width at half maximum (FWHM) was deposited by a commercial magnetic radio-frequency (RF) sputter system. The total processes of the FPW micro-sensor included five photolithography and seven thin-film depositions. In this study a low operation frequency (0.1MHz), low insertion loss (11dB to 14dB) and high electromechanical coupling coefficient (11%) FPW sensor was developed and fabricated.
author2 I-Yu Huang
author_facet I-Yu Huang
Yu -Hung Chen
陳俞亨
author Yu -Hung Chen
陳俞亨
spellingShingle Yu -Hung Chen
陳俞亨
Study on Electrical and Mechanical Characteristics of Flexural Plate Wave Device
author_sort Yu -Hung Chen
title Study on Electrical and Mechanical Characteristics of Flexural Plate Wave Device
title_short Study on Electrical and Mechanical Characteristics of Flexural Plate Wave Device
title_full Study on Electrical and Mechanical Characteristics of Flexural Plate Wave Device
title_fullStr Study on Electrical and Mechanical Characteristics of Flexural Plate Wave Device
title_full_unstemmed Study on Electrical and Mechanical Characteristics of Flexural Plate Wave Device
title_sort study on electrical and mechanical characteristics of flexural plate wave device
publishDate 2010
url http://ndltd.ncl.edu.tw/handle/24376538895728302600
work_keys_str_mv AT yuhungchen studyonelectricalandmechanicalcharacteristicsofflexuralplatewavedevice
AT chényúhēng studyonelectricalandmechanicalcharacteristicsofflexuralplatewavedevice
AT yuhungchen wānqūpíngbǎnbōyuánjiànzhījīdiàntèxìngyánjiū
AT chényúhēng wānqūpíngbǎnbōyuánjiànzhījīdiàntèxìngyánjiū
_version_ 1718036504616370176