DocumentCode :
667832
Title :
A micro-machined Tonpilz hydrophone for audible frequency sounds
Author :
Min Sung ; Hak Sue Lee ; Won Kyu Moon
Author_Institution :
Dept. of Mech. Eng., Pohang Univ. of Sci. & Technol. (POSTECH), Pohang, South Korea
fYear :
2013
fDate :
21-25 July 2013
Firstpage :
783
Lastpage :
786
Abstract :
We report a micro-machined Tonpilz hydrophone that uses the piezoelectric thickness mode and is suitable for the audible frequency range (i.e., 20Hz-20kHz). The structure of the sensor is based on the structure of a conventional Tonpilz transducer; however, two different design approaches were investigated to enhance sensitivity and to withstand the high-pressure underwater environment. To improve the sensitivity, the area ratio of the head mass to the piezoelectric body is several hundreds to one, which amplifies the acoustic pressure input of the transduction body. To improve the resistance to the hydrostatic pressure in the deep-water environment, the structure uses a castor oil backing to balance the hydrostatic pressure at the front surface of the acoustic sensing structure. We developed a lumped element model to investigate the design parameters for miniaturized hydrophones. The hydrophone was then fabricated using micromachining, and tested by comparing the device with a commercially available hydrophone in an anechoic bath to assess the feasibility of its use as an effective underwater sound receiver.
Keywords :
hydrophones; micromachining; piezoelectric transducers; underwater sound; Tonpilz transducer; acoustic pressure; acoustic sensing structure; anechoic bath; audible frequency sounds; castor oil; frequency 20 Hz to 20 kHz; high-pressure underwater environment; hydrostatic pressure; lumped element model; micromachined Tonpilz hydrophone; piezoelectric body; piezoelectric thickness mode; transduction body; underwater sound receiver; Fabrication; Frequency response; Impedance; Mathematical model; Sensitivity; Sonar equipment; Transducers; Acoustic sensor; Piezoelectric MEMS; SONAR; Underwater receiver;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
European Frequency and Time Forum & International Frequency Control Symposium (EFTF/IFC), 2013 Joint
Conference_Location :
Prague
Type :
conf
DOI :
10.1109/EFTF-IFC.2013.6702193
Filename :
6702193
Link To Document :
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