DocumentCode :
1165714
Title :
Electrical measurement of a high-frequency, high-capacitance piezoceramic resonator with resistive electrodes
Author :
Mezheritsky, A.V.
Author_Institution :
Dong II Technol., Ltd., South Korea
Volume :
52
Issue :
8
fYear :
2005
Firstpage :
1229
Lastpage :
1238
Abstract :
In a thin and large area PZT-ceramics piezoresonator (PR) with relatively low resonance impedance, caused by high-frequency resonance and high PR capacitance, the effect of electrode resistivity and parasitic resistive and inductive elements in the measurement fixture results in significant distortion of the measured thickness-mode (longitudinal TL, shear TS) resonance response-resonance frequency shifts and characteristics deformation. This distortion may not allow the precise measurement of the PR characteristic frequencies, quality factor, and electromechanical coupling coefficient so essential to a complete PR and material characterization. A theoretical description of the "energy-trap" phenomena in a thickness-vibrating PR with resistive electrodes is presented. To interpret electrical measurements, the electromechanical model, including for completeness both the PR with resistive electrodes (as a system with distributed parameters) and the measurement fixture, is developed. The method of two contact points on the electrode provides deep sharpening and exact determination of the PR resonance. For the optimal disposition of the contact fingers, the resonance bandwidth of a real PR with resistive electrodes is even more pointed than that for the ideal PR.
Keywords :
capacitance measurement; crystal resonators; deformation; electrodes; frequency measurement; piezoceramics; piezoelectricity; PZT; PZT-ceramics piezoresonator; PbZrO3TiO3; characteristic frequencies; characteristics deformation; electrical measurement; electrode resistivity; electromechanical coupling coefficient; electromechanical model; energy-trap phenomena; high-frequency resonance; material characterization; parasitic resistive; piezoceramic resonator; quality factor; resistive electrodes; resonance bandwidth; resonance response-resonance frequency shifts; Area measurement; Capacitance measurement; Distortion measurement; Electric variables measurement; Electrodes; Frequency measurement; Impedance measurement; Piezoelectric materials; Resonance; Thickness measurement;
fLanguage :
English
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-3010
Type :
jour
DOI :
10.1109/TUFFC.2005.1509781
Filename :
1509781
Link To Document :
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