Cargando…

High-Frequency Vibration Analysis of Piezoelectric Array Sensor under Lateral-Field-Excitation Based on Crystals with 3 m Point Group

Based on Mindlin’s first-order plate theory, the high-frequency vibrations of piezoelectric bulk acoustic wave array sensors under lateral-field-excitation based on crystals with 3 m point group are analyzed, and the spectral-frequency relationships are solved, based on which, the optimal length–thi...

Descripción completa

Detalles Bibliográficos
Autores principales: Xu, Jiachao, Shi, Hao, Sun, Fei, Tang, Zehuan, Li, Shuanghuizhi, Chen, Dudu, Ma, Tingfeng, Kuznetsova, Iren, Nedospasov, Ilya, Zhang, Chao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9099703/
https://www.ncbi.nlm.nih.gov/pubmed/35591285
http://dx.doi.org/10.3390/s22093596
_version_ 1784706671983984640
author Xu, Jiachao
Shi, Hao
Sun, Fei
Tang, Zehuan
Li, Shuanghuizhi
Chen, Dudu
Ma, Tingfeng
Kuznetsova, Iren
Nedospasov, Ilya
Zhang, Chao
author_facet Xu, Jiachao
Shi, Hao
Sun, Fei
Tang, Zehuan
Li, Shuanghuizhi
Chen, Dudu
Ma, Tingfeng
Kuznetsova, Iren
Nedospasov, Ilya
Zhang, Chao
author_sort Xu, Jiachao
collection PubMed
description Based on Mindlin’s first-order plate theory, the high-frequency vibrations of piezoelectric bulk acoustic wave array sensors under lateral-field-excitation based on crystals with 3 m point group are analyzed, and the spectral-frequency relationships are solved, based on which, the optimal length–thickness ratio of the piezoelectric crystal plate is determined. Then, the dynamic capacitance diagram is obtained by a forced vibration analysis of the piezoelectric crystal plate. The resonant mode conforming to good energy trapping is further obtained. The frequency interferences between different resonator units are calculated, and the influences of the spacing between two resonant units on the frequency interference with different electrode widths and spacings are analyzed. Finally, the safe spacings between resonator units are obtained. As the electrode spacing value of the left unit increases, the safe spacing d(0) between the two resonator units decreases, and the frequency interference curve tends to zero faster. When the electrode spacings of two resonator units are equal, the safe distance is largest, and the frequency interference curve tends to zero slowest. The theoretical results are verified further by finite element method. The analysis model of high frequency vibrations of strongly coupled piezoelectric bulk acoustic array device based on LiTaO(3) crystals with 3 m point group proposed in this paper can provide reliable theoretical guidance for size optimization designs of strongly coupled piezoelectric array sensors under lateral-field-excitation.
format Online
Article
Text
id pubmed-9099703
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-90997032022-05-14 High-Frequency Vibration Analysis of Piezoelectric Array Sensor under Lateral-Field-Excitation Based on Crystals with 3 m Point Group Xu, Jiachao Shi, Hao Sun, Fei Tang, Zehuan Li, Shuanghuizhi Chen, Dudu Ma, Tingfeng Kuznetsova, Iren Nedospasov, Ilya Zhang, Chao Sensors (Basel) Communication Based on Mindlin’s first-order plate theory, the high-frequency vibrations of piezoelectric bulk acoustic wave array sensors under lateral-field-excitation based on crystals with 3 m point group are analyzed, and the spectral-frequency relationships are solved, based on which, the optimal length–thickness ratio of the piezoelectric crystal plate is determined. Then, the dynamic capacitance diagram is obtained by a forced vibration analysis of the piezoelectric crystal plate. The resonant mode conforming to good energy trapping is further obtained. The frequency interferences between different resonator units are calculated, and the influences of the spacing between two resonant units on the frequency interference with different electrode widths and spacings are analyzed. Finally, the safe spacings between resonator units are obtained. As the electrode spacing value of the left unit increases, the safe spacing d(0) between the two resonator units decreases, and the frequency interference curve tends to zero faster. When the electrode spacings of two resonator units are equal, the safe distance is largest, and the frequency interference curve tends to zero slowest. The theoretical results are verified further by finite element method. The analysis model of high frequency vibrations of strongly coupled piezoelectric bulk acoustic array device based on LiTaO(3) crystals with 3 m point group proposed in this paper can provide reliable theoretical guidance for size optimization designs of strongly coupled piezoelectric array sensors under lateral-field-excitation. MDPI 2022-05-09 /pmc/articles/PMC9099703/ /pubmed/35591285 http://dx.doi.org/10.3390/s22093596 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Communication
Xu, Jiachao
Shi, Hao
Sun, Fei
Tang, Zehuan
Li, Shuanghuizhi
Chen, Dudu
Ma, Tingfeng
Kuznetsova, Iren
Nedospasov, Ilya
Zhang, Chao
High-Frequency Vibration Analysis of Piezoelectric Array Sensor under Lateral-Field-Excitation Based on Crystals with 3 m Point Group
title High-Frequency Vibration Analysis of Piezoelectric Array Sensor under Lateral-Field-Excitation Based on Crystals with 3 m Point Group
title_full High-Frequency Vibration Analysis of Piezoelectric Array Sensor under Lateral-Field-Excitation Based on Crystals with 3 m Point Group
title_fullStr High-Frequency Vibration Analysis of Piezoelectric Array Sensor under Lateral-Field-Excitation Based on Crystals with 3 m Point Group
title_full_unstemmed High-Frequency Vibration Analysis of Piezoelectric Array Sensor under Lateral-Field-Excitation Based on Crystals with 3 m Point Group
title_short High-Frequency Vibration Analysis of Piezoelectric Array Sensor under Lateral-Field-Excitation Based on Crystals with 3 m Point Group
title_sort high-frequency vibration analysis of piezoelectric array sensor under lateral-field-excitation based on crystals with 3 m point group
topic Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9099703/
https://www.ncbi.nlm.nih.gov/pubmed/35591285
http://dx.doi.org/10.3390/s22093596
work_keys_str_mv AT xujiachao highfrequencyvibrationanalysisofpiezoelectricarraysensorunderlateralfieldexcitationbasedoncrystalswith3mpointgroup
AT shihao highfrequencyvibrationanalysisofpiezoelectricarraysensorunderlateralfieldexcitationbasedoncrystalswith3mpointgroup
AT sunfei highfrequencyvibrationanalysisofpiezoelectricarraysensorunderlateralfieldexcitationbasedoncrystalswith3mpointgroup
AT tangzehuan highfrequencyvibrationanalysisofpiezoelectricarraysensorunderlateralfieldexcitationbasedoncrystalswith3mpointgroup
AT lishuanghuizhi highfrequencyvibrationanalysisofpiezoelectricarraysensorunderlateralfieldexcitationbasedoncrystalswith3mpointgroup
AT chendudu highfrequencyvibrationanalysisofpiezoelectricarraysensorunderlateralfieldexcitationbasedoncrystalswith3mpointgroup
AT matingfeng highfrequencyvibrationanalysisofpiezoelectricarraysensorunderlateralfieldexcitationbasedoncrystalswith3mpointgroup
AT kuznetsovairen highfrequencyvibrationanalysisofpiezoelectricarraysensorunderlateralfieldexcitationbasedoncrystalswith3mpointgroup
AT nedospasovilya highfrequencyvibrationanalysisofpiezoelectricarraysensorunderlateralfieldexcitationbasedoncrystalswith3mpointgroup
AT zhangchao highfrequencyvibrationanalysisofpiezoelectricarraysensorunderlateralfieldexcitationbasedoncrystalswith3mpointgroup