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Design and Analysis of Lithium–Niobate-Based Laterally Excited Bulk Acoustic Wave Resonator with Pentagon Spiral Electrodes

In this paper, we present a comprehensive study on the propagation and dispersion characteristics of A(1) mode propagating in Z-cut LiNbO(3) membrane. The A(1) mode resonators with pentagon spiral electrodes utilizing Z-cut lithium niobate (LiNbO(3)) thin film are designed and fabricated. The propos...

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Autores principales: Xie, Ying, Liu, Wenjuan, Cai, Yao, Wen, Zhiwei, Luo, Tiancheng, Liu, Yan, Sun, Chengliang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10053681/
https://www.ncbi.nlm.nih.gov/pubmed/36984959
http://dx.doi.org/10.3390/mi14030552
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author Xie, Ying
Liu, Wenjuan
Cai, Yao
Wen, Zhiwei
Luo, Tiancheng
Liu, Yan
Sun, Chengliang
author_facet Xie, Ying
Liu, Wenjuan
Cai, Yao
Wen, Zhiwei
Luo, Tiancheng
Liu, Yan
Sun, Chengliang
author_sort Xie, Ying
collection PubMed
description In this paper, we present a comprehensive study on the propagation and dispersion characteristics of A(1) mode propagating in Z-cut LiNbO(3) membrane. The A(1) mode resonators with pentagon spiral electrodes utilizing Z-cut lithium niobate (LiNbO(3)) thin film are designed and fabricated. The proposed structure excites the A(1) mode waves in both x- and y-direction by utilizing both the piezoelectric constants e(24) and e(15) due to applying voltage along both the x- and y-direction by arranging pentagon spiral electrode. The fabricated resonator operates at 5.43 GHz with no spurious mode and effective electromechanical coupling coefficient ([Formula: see text]) of 21.3%, when the width of electrode is 1 µm and the pitch is 5 µm. Moreover, we present a comprehensive study of the effect of different structure parameters on resonance frequency and [Formula: see text] of XBAR. The [Formula: see text] keeps a constant with varied thickness of LiNbO(3) thin film and different electrode rotation angles, while it declines with the increase of p from 5 to 20 µm. The proposed XBAR with pentagon spiral electrodes realize high frequency response with no spurious mode and tunable [Formula: see text] , which shows promising prospects to satisfy the needs of various 5 G high-band application.
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spelling pubmed-100536812023-03-30 Design and Analysis of Lithium–Niobate-Based Laterally Excited Bulk Acoustic Wave Resonator with Pentagon Spiral Electrodes Xie, Ying Liu, Wenjuan Cai, Yao Wen, Zhiwei Luo, Tiancheng Liu, Yan Sun, Chengliang Micromachines (Basel) Article In this paper, we present a comprehensive study on the propagation and dispersion characteristics of A(1) mode propagating in Z-cut LiNbO(3) membrane. The A(1) mode resonators with pentagon spiral electrodes utilizing Z-cut lithium niobate (LiNbO(3)) thin film are designed and fabricated. The proposed structure excites the A(1) mode waves in both x- and y-direction by utilizing both the piezoelectric constants e(24) and e(15) due to applying voltage along both the x- and y-direction by arranging pentagon spiral electrode. The fabricated resonator operates at 5.43 GHz with no spurious mode and effective electromechanical coupling coefficient ([Formula: see text]) of 21.3%, when the width of electrode is 1 µm and the pitch is 5 µm. Moreover, we present a comprehensive study of the effect of different structure parameters on resonance frequency and [Formula: see text] of XBAR. The [Formula: see text] keeps a constant with varied thickness of LiNbO(3) thin film and different electrode rotation angles, while it declines with the increase of p from 5 to 20 µm. The proposed XBAR with pentagon spiral electrodes realize high frequency response with no spurious mode and tunable [Formula: see text] , which shows promising prospects to satisfy the needs of various 5 G high-band application. MDPI 2023-02-26 /pmc/articles/PMC10053681/ /pubmed/36984959 http://dx.doi.org/10.3390/mi14030552 Text en © 2023 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 Article
Xie, Ying
Liu, Wenjuan
Cai, Yao
Wen, Zhiwei
Luo, Tiancheng
Liu, Yan
Sun, Chengliang
Design and Analysis of Lithium–Niobate-Based Laterally Excited Bulk Acoustic Wave Resonator with Pentagon Spiral Electrodes
title Design and Analysis of Lithium–Niobate-Based Laterally Excited Bulk Acoustic Wave Resonator with Pentagon Spiral Electrodes
title_full Design and Analysis of Lithium–Niobate-Based Laterally Excited Bulk Acoustic Wave Resonator with Pentagon Spiral Electrodes
title_fullStr Design and Analysis of Lithium–Niobate-Based Laterally Excited Bulk Acoustic Wave Resonator with Pentagon Spiral Electrodes
title_full_unstemmed Design and Analysis of Lithium–Niobate-Based Laterally Excited Bulk Acoustic Wave Resonator with Pentagon Spiral Electrodes
title_short Design and Analysis of Lithium–Niobate-Based Laterally Excited Bulk Acoustic Wave Resonator with Pentagon Spiral Electrodes
title_sort design and analysis of lithium–niobate-based laterally excited bulk acoustic wave resonator with pentagon spiral electrodes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10053681/
https://www.ncbi.nlm.nih.gov/pubmed/36984959
http://dx.doi.org/10.3390/mi14030552
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