OPTIMIZATION OF SIGNAL-TO-NOISE RATIO FOR MULTILAYER PZT TRANSDUCERS

被引:13
作者
GOLDBERG, RL
SMITH, SW
机构
[1] DUKE UNIV,DEPT BIOMED ENGN,DURHAM,NC 27708
[2] UNIV N CAROLINA,DEPT CELL BIOL & ANAT,CHAPEL HILL,NC 27599
[3] DUKE UNIV,DEPT RADIOL,DURHAM,NC 27710
关键词
ELECTRICAL IMPEDANCE MATCHING; MULTILAYER CERAMIC; SIGNAL-TO-NOISE RATIO; TRANSDUCER; ULTRASOUND;
D O I
10.1006/uimg.1995.1005
中图分类号
O42 [声学];
学科分类号
070206 ; 082403 ;
摘要
3In medical ultrasound imaging, two-dimensional (2-D) array transducers are desirable to implement dynamic focusing and phase aberration correction in two dimensions as well as volumetric imaging. Unfortunately, the small size of a 2-D array element results in a small clamped capacitance and a large electrical impedance near the resonance frequency. This results in poor signal-to-noise ratio (SNR) of the array elements. It has previously been demonstrated that transducers made from multilayer PZT ceramics have lower electrical impedance and greater SNR than comparable single layer elements. A simplified circuit model has been developed to optimize the SNR for multilayer ceramic (MLC) transducers. In this model, an electronic transmitter excites the array element and in the receive mode, the element drives a coaxial cable load terminated by a high impedance preamplifier. The transducer impedance is Z(t)/N-2, where N is the number of piezoelectric layers. Maximum transmit signal is obtained when N = N-tx, such that the transducer impedance, Z(t)/N-tx(2), is matched to the source impedance. Maximum receive signal is obtained when N = N-rx such that the transducer impedance, Z(t)/N-rx(2) is matched to the coaxial cable reactance. For maximum pulse-echo signal, the transducer should be designed with N = root NtxNrx, the geometric mean of N-tx and N-rx. Using this optimization technique, a 1.5-D array was designed with 3 layers for maximum pulse-echo SNR. Results of simulations from the simplified circuit analysis were consistent with those of the KLM model. The 3 layer array was fabricated as well as a single layer control array. The measured transmit signal and receive signal agreed with the simulation results. (C) 1995 Academic Press, Inc.
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页码:95 / 113
页数:19
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