Piezoelectric in-plane microplate resonators based on contour and flexure-actuated modes

被引:0
|
作者
Tomás Manzaneque
V. Ruiz-Díez
J. Hernando-García
A. Ababneh
A. N. Al-Omari
M. Kucera
A. Bittner
U. Schmid
H. Seidel
J. L. Sánchez-Rojas
机构
[1] Universidad de Castilla-La Mancha,Microsystems, Actuators and Sensors Group
[2] ETSI Industriales,Hijjawi Faculty for Engineering Technology, Department of Electronics Engineering
[3] Yarmouk University,Institute of Sensor and Actuator Systems
[4] Vienna University of Technology,Chair of Micromechanics, Microfluidics/Microactuators, Faculty of Natural Sciences and Technology II
[5] AC2T Research GmbH,undefined
[6] Saarland University,undefined
来源
Microsystem Technologies | 2014年 / 20卷
关键词
Quality Factor; Modal Shape; Piezoelectric Layer; Viscous Loss; Electrode Pattern;
D O I
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中图分类号
学科分类号
摘要
In this paper we present piezoelectric in-plane microresonators designed by two different approaches: contour mode-based plates, in which nearly the whole structure suffers considerable deformation; and flexure-actuated plates, in which a central plate with almost no deformation is moved by low-stiffness flexures that also support it. Two separated issues are considered in the analysis: the quality factor, especially critical when dealing with resonators immersed in liquid, and the piezoelectric and elastic characteristics, inherent to the geometry of the structure. Devices fabricated following both approaches are compared in these terms, concluding that contour mode-based resonators are more advantageous regarding both the quality factor in liquid and the piezo-elastic performance. Nevertheless, the flexure-actuated approach results more adequate when dealing with the design of actuators, i.e. when trying to maximize the ratio of the displacement achieved to the voltage applied.
引用
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页码:691 / 699
页数:8
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