DocumentCode :
3097701
Title :
Characterization of capacitive micromachined ultrasonic transducers in air using optical measurements
Author :
Hansen, Sean T. ; Turo, Antoni ; Degertekin, F. Levent ; Khuri-Yakub, Butrus T.
Author_Institution :
Edward L. Ginzton Lab., Stanford Univ., CA, USA
Volume :
1
fYear :
2000
fDate :
36800
Firstpage :
947
Abstract :
Capacitive micromachined ultrasonic transducers (CMUTs) are efficient transmitters and receivers for air-coupled nondestructive evaluation applications. In this paper, we present optical measurements on CMUTs with circular and rectangular membranes. Use of laser interferometer permits accurate measurement of individual membrane displacements as well as characterization of mode shapes on the membrane. When optical displacement measurements are combined with electrical impedance measurements, all elements of the equivalent circuit model can be evaluated. In particular, an estimate of the loss in the transducer is possible. Loss mechanisms include structural losses and squeeze-film effects of air behind the membrane, the latter of which has both frequency-shifting and dissipative effects. Recently fabricated circular and rectangular membrane designs typically exhibit a real loss on the order of 500 rayls±200 rayls. The degree of resonant frequency shift for unsealed membranes in air depends strongly on the particular geometry, but can be as much as 30% of the transducer´s resonant frequency in vacuum. Measurements of CMUT loss due to air are compared to squeeze-film theory and are included in an equivalent circuit model. This model is compared against the measurement results
Keywords :
displacement measurement; electric impedance measurement; equivalent circuits; light interferometry; losses; measurement by laser beam; membranes; micromachining; ultrasonic transducers; air-coupled nondestructive evaluation applications; capacitive micromachined ultrasonic transducers; characterization; circular membranes; dissipative effects; electrical impedance measurements; equivalent circuit model; frequency-shifting; laser interferometer; loss mechanisms; membrane displacements; mode shapes; optical measurements; receivers; rectangular membranes; resonant frequency shift; squeeze-film effects; structural losses; transmitters; Biomembranes; Displacement measurement; Equivalent circuits; Optical interferometry; Optical losses; Optical receivers; Optical transmitters; Shape measurement; Ultrasonic transducers; Ultrasonic variables measurement;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Ultrasonics Symposium, 2000 IEEE
Conference_Location :
San Juan
ISSN :
1051-0117
Print_ISBN :
0-7803-6365-5
Type :
conf
DOI :
10.1109/ULTSYM.2000.922697
Filename :
922697
Link To Document :
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