DocumentCode :
18755
Title :
Feasibility of modulation-encoded TOBE CMUTS for real-time 3-D imaging
Author :
Chee, Ryan K. W. ; Zemp, Roger J.
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Alberta, Edmonton, AB, Canada
Volume :
62
Issue :
4
fYear :
2015
fDate :
Apr-15
Firstpage :
771
Lastpage :
775
Abstract :
Modulation-encoded top orthogonal to bottom electrode (TOBE) capacitive micromachined ultrasound transducers (CMUTs) are proposed 2-D ultrasound transducer arrays that could allow 3-D images to be acquired in a single acquisition using only N channels for an N × N array. In the proposed modulation-encoding scheme, columns are not only biased, but also modulated with a different frequency for each column. The modulation frequencies are higher than the passband of the CMUT membranes and mix nonlinearly in CMUT cells with acoustic signals to produce acoustic signal sidebands around the modulation carriers in the frequency domain. Thus, signals from elements along a row may be read out simultaneously via frequency-domain multiplexing. We present the theory and feasibility data behind modulation-encoded TOBE CMUTs. We also present experiments showing necessary modifications to the current TOBE design that would allow for crosstalk-mitigated modulation-encoding.
Keywords :
capacitive transducers; ultrasonic imaging; ultrasonic transducer arrays; 2D ultrasound transducer arrays; CMUT cells; CMUT membranes; acoustic signal sidebands; capacitive micromachined ultrasound transducers; crosstalk-mitigated modulation-encoding; frequency-domain multiplexing; modulation carriers; modulation frequency; modulation-encoded TOBE CMUT; modulation-encoded top orthogonal-bottom electrode CMUT; real-time 3D imaging; Acoustics; Frequency modulation; Modulation; OFDM; Transducers; Ultrasonic imaging;
fLanguage :
English
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-3010
Type :
jour
DOI :
10.1109/TUFFC.2014.006681
Filename :
7081472
Link To Document :
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