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利用采用压电二维阵列的微型化集成超声系统进行低电压编码激励。

Low-voltage coded excitation utilizing a miniaturized integrated ultrasound system employing piezoelectric 2-D arrays.

机构信息

Department of Electronics and Electrical Engineering, University of Glasgow, Glasgow, UK.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2010;57(2):353-62. doi: 10.1109/TUFFC.2010.1415.

Abstract

We describe the development of an integrated, miniaturized ultrasound system designed for use with low-voltage piezoelectric transducer arrays. The technology targets low-frequency NDT and medium- to high-frequency sonar applications, at 1.2 MHz frequency. We have constructed a flexible, reconfigurable, low cost building block capable of 3-D beam forming. The tessellation of multiple building blocks permits formation of scalable 2-D macro-arrays of increased size and varying shape. This differs from conventional ultrasound solutions by integrating the entire system in a single module. No long RF cables are required to link the array elements to the electronics. The close coupling of the array and electronics assists in achieving adequate receive signal amplitudes with differential transmission voltages as low as +/- 3.3 V, although the system can be used at higher voltages. The system has been characterized by identifying flat-bottomed holes as small as 1 mm in diameter located at depths up to 190 mm in aluminum, and holes as small as 3 mm in diameter at a depth of 160 mm in cast iron. The results confirm the ability of the highly integrated system to obtain reflections from the targets despite the +/- 3.3 V excitation voltage by exploiting coding in low-voltage ultrasound.

摘要

我们描述了一种集成的、小型化的超声系统的开发,该系统专为使用低压压电换能器阵列而设计。该技术针对低频 NDT 和中高频声纳应用,工作频率为 1.2MHz。我们已经构建了一个灵活的、可重构的、低成本的构建块,能够实现 3D 波束形成。多个构建块的镶嵌允许形成可扩展的 2D 宏观阵列,其尺寸和形状可以变化。与传统的超声解决方案不同,该系统将整个系统集成在一个单一模块中。不需要长的射频电缆将阵列元件与电子设备连接起来。阵列和电子设备的紧密耦合有助于实现足够的接收信号幅度,差分传输电压低至 +/- 3.3V,尽管该系统可以在更高的电压下使用。该系统的特点是能够在 190mm 深的铝中识别出直径小至 1mm 的平底孔,在 160mm 深的铸铁中能够识别出直径小至 3mm 的孔。这些结果证实了该高度集成系统的能力,即使在 +/- 3.3V 的激励电压下,也能够通过利用低压超声中的编码来获取目标的反射。

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