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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Theory and operation of 2-D array piezoelectric micromachined ultrasound transducers
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Theory and operation of 2-D array piezoelectric micromachined ultrasound transducers

机译:二维阵列压电微机械超声换能器的理论与操作

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Piezoelectric micromachined ultrasound transducers (pMUTs) are a new approach for the construction of 2-D arrays for forward-looking 3-D intravascular (IVUS) and intracardiac (ICE) imaging. Two-dimensional pMUT test arrays containing 25 elements (5 x 5 arrays) were bulk micromachined in silicon substrates. The devices consisted of lead zirconate titanate (PZT) thin film membranes formed by deep reactive ion etching of the silicon substrate. Element widths ranged from 50 to 200 ??m with pitch from 100 to 300 ??m. Acoustic transmit properties were measured in de-ionized water with a calibrated hydrophone placed at a range of 20 mm. Measured transmit frequencies for the pMUT elements ranged from 4 to 13 MHz, and mode of vibration differed for the various element sizes. Element capacitance varied from 30 to over 400 pF depending on element size and PZT thickness. Smaller element sizes generally produced higher acoustic transmit output as well as higher frequency than larger elements. Thicker PZT layers also produced higher transmit output per unit electric field applied. Due to flexure mode operation above the PZT coercive voltage, transmit output increased nonlinearly with increased drive voltage. The pMUT arrays were attached directly to the Duke University T5 Phased Array Scanner to produce real-time pulse-echo B-mode images with the 2-D pMUT arrays.
机译:压电微机械超声换能器(pMUT)是一种用于构建2D阵列的新方法,以进行前瞻性3D血管内(IVUS)和心脏内(ICE)成像。将包含25个元素的二维pMUT测试阵列(5 x 5阵列)在硅基板中进行批量微加工。该设备由锆酸钛酸铅(PZT)薄膜膜组成,该膜是通过对硅基板进行深反应离子刻蚀而形成的。单元宽度从50到200?m,间距从100到300?m。在去离子水中用放置在20毫米范围内的校准水听器测量声传输特性。 pMUT元件的测得发射频率范围为4到13 MHz,并且振动模式因各种元件尺寸而异。元件电容从30 pF到超过400 pF不等,具体取决于元件尺寸和PZT厚度。与较大的元件相比,较小的元件通常会产生较高的声音发射输出以及较高的频率。较厚的PZT层每单位施加电场也会产生更高的发射输出。由于在PZT矫顽电压以上的挠曲模式下工作,发射输出随驱动电压的增加而非线性增加。将pMUT阵列直接连接到杜克大学T5相控阵扫描仪,以使用2-D pMUT阵列生成实时脉冲回波B模式图像。

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