DocumentCode
746682
Title
Piezoelectrically actuated flextensional micromachined ultrasound transducers. I. Theory
Author
Perçin, Gökhan ; Khuri-Yakub, Butrus T.
Author_Institution
ADEPTIENT, Los Altos, CA, USA
Volume
49
Issue
5
fYear
2002
fDate
5/1/2002 12:00:00 AM
Firstpage
573
Lastpage
584
Abstract
This series of two papers considers piezoelectrically actuated flextensional micromachined ultrasound transducers (PAFMUTs) and consists of theory, fabrication, and experimental parts. The theory presented in this paper is developed for an ultrasound transducer application presented in the second part. In the absence of analytical expressions for the equivalent circuit parameters of a flextensional transducer, it is difficult to calculate its optimal parameters and dimensions and difficult to choose suitable materials. The influence of coupling between flexural and extensional deformation and that of coupling between the structure and the acoustic volume on the dynamic response of piezoelectrically actuated flextensional transducer are analyzed using two analytical methods: classical thin (Kirchhoff) plate theory and Mindlin plate theory. Classical thin plate theory and Mindlin plate theory are applied to derive two-dimensional plate equations for the transducer and to calculate the coupled electromechanical field variables such as mechanical displacement and electrical input impedance. In these methods, the variations across the thickness direction vanish by using the bending moments per unit length or stress resultants. Thus, two-dimensional plate equations for a step-wise laminated circular plate are obtained as well as two different solutions to the corresponding systems. An equivalent circuit of the transducer is also obtained from these solutions.
Keywords
bending; dynamic response; equivalent circuits; micromechanical resonators; piezoelectric actuators; ultrasonic transducers; vibrations; Mindlin plate theory; axisymmetric resonant modes; axisymmetric vibrations; bending moments; clamped plate; classical thin plate theory; coupled electromechanical field variables; dynamic response; electrical input impedance; equivalent circuit; extensional deformation; flexural deformation; mechanical displacement; micromachined ultrasound transducers; piezoelectrically actuated flextensional US transducers; silicon micromachining; step-wise laminated circular plate; two-dimensional plate equations; unimorph ultrasonic transducers; Acoustic transducers; Coupling circuits; Equations; Equivalent circuits; Fabrication; Impedance; Piezoelectric transducers; Stress; Ultrasonic imaging; Ultrasonic transducers; Computer Simulation; Electric Impedance; Electromagnetic Fields; Models, Theoretical; Motion; Sensitivity and Specificity; Stress, Mechanical; Transducers; Ultrasonics;
fLanguage
English
Journal_Title
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher
ieee
ISSN
0885-3010
Type
jour
DOI
10.1109/TUFFC.2002.1002456
Filename
1002456
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