Effect of the Matching Circuit on the Electromechanical Characteristics of Sandwiched Piezoelectric Transducers

The input electrical impedance behaves as a capacitive when a piezoelectric transducer is excited near its resonance frequency. In order to increase the energy transmission efficiency, a series or parallel inductor should be used to compensate the capacitive impedance of the piezoelectric transducer...

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Main Authors: Shuyu Lin, Jie Xu
Format: Article
Language:English
Published: MDPI AG 2017-02-01
Series:Sensors
Subjects:
Online Access:http://www.mdpi.com/1424-8220/17/2/329
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spelling doaj-8ea92983a6af49068dbfcb206624b69b2020-11-24T22:19:07ZengMDPI AGSensors1424-82202017-02-0117232910.3390/s17020329s17020329Effect of the Matching Circuit on the Electromechanical Characteristics of Sandwiched Piezoelectric TransducersShuyu Lin0Jie Xu1Shaanxi key Laboratory of Ultrasonics, Shaanxi Normal University, Xi’an 710119, ChinaShaanxi key Laboratory of Ultrasonics, Shaanxi Normal University, Xi’an 710119, ChinaThe input electrical impedance behaves as a capacitive when a piezoelectric transducer is excited near its resonance frequency. In order to increase the energy transmission efficiency, a series or parallel inductor should be used to compensate the capacitive impedance of the piezoelectric transducer. In this paper, the effect of the series matching inductor on the electromechanical characteristics of the piezoelectric transducer is analyzed. The dependency of the resonance/anti-resonance frequency, the effective electromechanical coupling coefficient, the electrical quality factor and the electro-acoustical efficiency on the matching inductor is obtained. It is shown that apart from compensating the capacitive impedance of the piezoelectric transducer, the series matching inductor can also change the electromechanical characteristics of the piezoelectric transducer. When series matching inductor is increased, the resonance frequency is decreased and the anti-resonance unchanged; the effective electromechanical coupling coefficient is increased. For the electrical quality factor and the electroacoustic efficiency, the dependency on the matching inductor is different when the transducer is operated at the resonance and the anti-resonance frequency. The electromechanical characteristics of the piezoelectric transducer with series matching inductor are measured. It is shown that the theoretically predicted relationship between the electromechanical characteristics and the series matching inductor is in good agreement with the experimental results.http://www.mdpi.com/1424-8220/17/2/329piezoelectric transducermatching electrical inductorresonance/anti-resonance frequencyeffective electromechanical coupling coefficientelectric quality factorelectro-acoustic efficiency
collection DOAJ
language English
format Article
sources DOAJ
author Shuyu Lin
Jie Xu
spellingShingle Shuyu Lin
Jie Xu
Effect of the Matching Circuit on the Electromechanical Characteristics of Sandwiched Piezoelectric Transducers
Sensors
piezoelectric transducer
matching electrical inductor
resonance/anti-resonance frequency
effective electromechanical coupling coefficient
electric quality factor
electro-acoustic efficiency
author_facet Shuyu Lin
Jie Xu
author_sort Shuyu Lin
title Effect of the Matching Circuit on the Electromechanical Characteristics of Sandwiched Piezoelectric Transducers
title_short Effect of the Matching Circuit on the Electromechanical Characteristics of Sandwiched Piezoelectric Transducers
title_full Effect of the Matching Circuit on the Electromechanical Characteristics of Sandwiched Piezoelectric Transducers
title_fullStr Effect of the Matching Circuit on the Electromechanical Characteristics of Sandwiched Piezoelectric Transducers
title_full_unstemmed Effect of the Matching Circuit on the Electromechanical Characteristics of Sandwiched Piezoelectric Transducers
title_sort effect of the matching circuit on the electromechanical characteristics of sandwiched piezoelectric transducers
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2017-02-01
description The input electrical impedance behaves as a capacitive when a piezoelectric transducer is excited near its resonance frequency. In order to increase the energy transmission efficiency, a series or parallel inductor should be used to compensate the capacitive impedance of the piezoelectric transducer. In this paper, the effect of the series matching inductor on the electromechanical characteristics of the piezoelectric transducer is analyzed. The dependency of the resonance/anti-resonance frequency, the effective electromechanical coupling coefficient, the electrical quality factor and the electro-acoustical efficiency on the matching inductor is obtained. It is shown that apart from compensating the capacitive impedance of the piezoelectric transducer, the series matching inductor can also change the electromechanical characteristics of the piezoelectric transducer. When series matching inductor is increased, the resonance frequency is decreased and the anti-resonance unchanged; the effective electromechanical coupling coefficient is increased. For the electrical quality factor and the electroacoustic efficiency, the dependency on the matching inductor is different when the transducer is operated at the resonance and the anti-resonance frequency. The electromechanical characteristics of the piezoelectric transducer with series matching inductor are measured. It is shown that the theoretically predicted relationship between the electromechanical characteristics and the series matching inductor is in good agreement with the experimental results.
topic piezoelectric transducer
matching electrical inductor
resonance/anti-resonance frequency
effective electromechanical coupling coefficient
electric quality factor
electro-acoustic efficiency
url http://www.mdpi.com/1424-8220/17/2/329
work_keys_str_mv AT shuyulin effectofthematchingcircuitontheelectromechanicalcharacteristicsofsandwichedpiezoelectrictransducers
AT jiexu effectofthematchingcircuitontheelectromechanicalcharacteristicsofsandwichedpiezoelectrictransducers
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