DocumentCode :
1303301
Title :
Piezoceramics for high-frequency (20 to 100 MHz) single-element imaging transducers
Author :
Zipparo, Michael J. ; Shung, K. Kirk ; Shrout, Thomas R.
Author_Institution :
Pennsylvania State Univ., University Park, PA, USA
Volume :
44
Issue :
5
fYear :
1997
Firstpage :
1038
Lastpage :
1048
Abstract :
The performance of transducers operating at high frequencies is greatly influenced by the properties of the piezoelectric materials used in their fabrication. Selection of an appropriate material for a transducer is based on many factors, including material properties, transducer area, and operating frequency. The properties of a number of piezoceramic materials have been experimentally determined by measuring the electrical impedance of air-loaded resonators whose thickness corresponds to resonance frequencies from 10 to 100 MHz. Materials measured include commercially available compositions of lead zirconate titanate (PZT) with relatively high dielectric constants and a modified lead titanate (PT) composition with a much lower dielectric constant. In addition, materials which have been designed or modified to result in improved properties at high frequencies are studied. Conclusions concerning the influence of the microstructure and composition on the frequency dependence of the material properties are made from the calculated properties and microstructural analysis of each material. Issues which affect transducer performance are discussed in relation to the properties. For transducers larger than about 1 mm in diameter, the use of a lower dielectric constant material is shown to result in a better electrical match between the transducer and a standard 50 /spl Omega/ termination. For transducers whose impedance is close to that of the connecting cables and electrical termination, equivalent circuit model simulations show improved performance without the need for electrical matching networks. Measurements of fabricated transducers show close agreement with the simulations, validating the measurements and showing the performance benefits of electrically matched transducers.
Keywords :
acoustic transducers; equivalent circuits; lead compounds; piezoceramics; piezoelectric transducers; ultrasonic imaging; ultrasonic transducers; 20 to 100 MHz; PT; PZT; PbTiO/sub 3/; PbZrO3TiO3; air-loaded resonator; composition; dielectric constant; electrical impedance; electrical matching network; equivalent circuit model simulation; high-frequency single-element imaging transducer; microstructure; piezoceramic; Composite materials; Dielectric materials; Dielectric measurements; Electric variables measurement; Frequency; Impedance; Material properties; Piezoelectric materials; Piezoelectric transducers; Titanium compounds;
fLanguage :
English
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-3010
Type :
jour
DOI :
10.1109/58.655629
Filename :
655629
Link To Document :
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