Fully-Differential TPoS Resonators Based on Dual Interdigital Electrodes for Feedthrough Suppression

As one of the core components of MEMS (i.e., micro-electro-mechanical systems), thin-film piezoelectric-on-silicon (TPoS) resonators experienced a blooming development in the past decades due to unique features such as a remarkable capability of integration for attractive applications of system-on-c...

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Main Authors: Yi Zhang, Jing-Fu Bao, Xin-Yi Li, Xin Zhou, Zhao-Hui Wu, Xiao-Sheng Zhang
Format: Article
Language:English
Published: MDPI AG 2020-01-01
Series:Micromachines
Subjects:
Online Access:https://www.mdpi.com/2072-666X/11/2/119
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spelling doaj-e1d923df707b4f538992db85f30557622020-11-25T02:20:24ZengMDPI AGMicromachines2072-666X2020-01-0111211910.3390/mi11020119mi11020119Fully-Differential TPoS Resonators Based on Dual Interdigital Electrodes for Feedthrough SuppressionYi Zhang0Jing-Fu Bao1Xin-Yi Li2Xin Zhou3Zhao-Hui Wu4Xiao-Sheng Zhang5School of Electronic Science and Engineering, University of Electronic Science and Technology of China, Chengdu 611731, ChinaSchool of Electronic Science and Engineering, University of Electronic Science and Technology of China, Chengdu 611731, ChinaSchool of Electronic Science and Engineering, University of Electronic Science and Technology of China, Chengdu 611731, ChinaSchool of Electronic Science and Engineering, University of Electronic Science and Technology of China, Chengdu 611731, ChinaSchool of Electronic Science and Engineering, University of Electronic Science and Technology of China, Chengdu 611731, ChinaSchool of Electronic Science and Engineering, University of Electronic Science and Technology of China, Chengdu 611731, ChinaAs one of the core components of MEMS (i.e., micro-electro-mechanical systems), thin-film piezoelectric-on-silicon (TPoS) resonators experienced a blooming development in the past decades due to unique features such as a remarkable capability of integration for attractive applications of system-on-chip integrated timing references. However, the parasitic capacitive feedthrough poses a great challenge to electrical detection of resonance in a microscale silicon-based mechanical resonator. Herein, a fully-differential configuration of a TPoS MEMS resonator based on a novel structural design of dual interdigital electrodes is proposed to eliminate the negative effect of feedthrough. The fundamental principle of feedthrough suppression was comprehensively investigated by using FEA (i.e., finite-element analysis) modeling and electrical measurements of fabricated devices. It was shown that with the help of fully-differential configuration, the key parameter of SBR (i.e., signal-to-background ratio) was significantly enhanced by greatly suppressing the in-phase signal. The <i>S</i>-parameter measurement results further verified the effectiveness of this novel feedthrough suppression strategy, and the insertion loss and SBR of proposed TPoS resonators were improved to 4.27 dB and 42.47 dB, respectively.https://www.mdpi.com/2072-666X/11/2/119memsresonatortposfeedthroughdifferential-indifferential-out
collection DOAJ
language English
format Article
sources DOAJ
author Yi Zhang
Jing-Fu Bao
Xin-Yi Li
Xin Zhou
Zhao-Hui Wu
Xiao-Sheng Zhang
spellingShingle Yi Zhang
Jing-Fu Bao
Xin-Yi Li
Xin Zhou
Zhao-Hui Wu
Xiao-Sheng Zhang
Fully-Differential TPoS Resonators Based on Dual Interdigital Electrodes for Feedthrough Suppression
Micromachines
mems
resonator
tpos
feedthrough
differential-in
differential-out
author_facet Yi Zhang
Jing-Fu Bao
Xin-Yi Li
Xin Zhou
Zhao-Hui Wu
Xiao-Sheng Zhang
author_sort Yi Zhang
title Fully-Differential TPoS Resonators Based on Dual Interdigital Electrodes for Feedthrough Suppression
title_short Fully-Differential TPoS Resonators Based on Dual Interdigital Electrodes for Feedthrough Suppression
title_full Fully-Differential TPoS Resonators Based on Dual Interdigital Electrodes for Feedthrough Suppression
title_fullStr Fully-Differential TPoS Resonators Based on Dual Interdigital Electrodes for Feedthrough Suppression
title_full_unstemmed Fully-Differential TPoS Resonators Based on Dual Interdigital Electrodes for Feedthrough Suppression
title_sort fully-differential tpos resonators based on dual interdigital electrodes for feedthrough suppression
publisher MDPI AG
series Micromachines
issn 2072-666X
publishDate 2020-01-01
description As one of the core components of MEMS (i.e., micro-electro-mechanical systems), thin-film piezoelectric-on-silicon (TPoS) resonators experienced a blooming development in the past decades due to unique features such as a remarkable capability of integration for attractive applications of system-on-chip integrated timing references. However, the parasitic capacitive feedthrough poses a great challenge to electrical detection of resonance in a microscale silicon-based mechanical resonator. Herein, a fully-differential configuration of a TPoS MEMS resonator based on a novel structural design of dual interdigital electrodes is proposed to eliminate the negative effect of feedthrough. The fundamental principle of feedthrough suppression was comprehensively investigated by using FEA (i.e., finite-element analysis) modeling and electrical measurements of fabricated devices. It was shown that with the help of fully-differential configuration, the key parameter of SBR (i.e., signal-to-background ratio) was significantly enhanced by greatly suppressing the in-phase signal. The <i>S</i>-parameter measurement results further verified the effectiveness of this novel feedthrough suppression strategy, and the insertion loss and SBR of proposed TPoS resonators were improved to 4.27 dB and 42.47 dB, respectively.
topic mems
resonator
tpos
feedthrough
differential-in
differential-out
url https://www.mdpi.com/2072-666X/11/2/119
work_keys_str_mv AT yizhang fullydifferentialtposresonatorsbasedondualinterdigitalelectrodesforfeedthroughsuppression
AT jingfubao fullydifferentialtposresonatorsbasedondualinterdigitalelectrodesforfeedthroughsuppression
AT xinyili fullydifferentialtposresonatorsbasedondualinterdigitalelectrodesforfeedthroughsuppression
AT xinzhou fullydifferentialtposresonatorsbasedondualinterdigitalelectrodesforfeedthroughsuppression
AT zhaohuiwu fullydifferentialtposresonatorsbasedondualinterdigitalelectrodesforfeedthroughsuppression
AT xiaoshengzhang fullydifferentialtposresonatorsbasedondualinterdigitalelectrodesforfeedthroughsuppression
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