Olcum Selim, Senlik Muhammed N, Atalar Abdullah
Electrical and Electronics Engineering Department, Bilkent University, Ankara Turkey.
IEEE Trans Ultrason Ferroelectr Freq Control. 2005 Dec;52(12):2211-9. doi: 10.1109/tuffc.2005.1563264.
Capacitive micromachined ultrasonic transducers (cMUT) have large bandwidths, but they typically have low conversion efficiencies. This paper defines a performance measure in the form of a gain-bandwidth product and investigates the conditions in which this performance measure is maximized. A Mason model corrected with finite-element simulations is used for the purpose of optimizing parameters. There are different performance measures for transducers operating in transmit, receive, or pulse-echo modes. Basic parameters of the transducer are optimized for those operating modes. Optimized values for a cMUT with silicon nitride membrane and immersed in water are given. The effect of including an electrical matching network is considered. In particular, the effect of a shunt inductor in the gain-bandwidth product is investigated. Design tools are introduced, which are used to determine optimal dimensions of cMUTs with the specified frequency or gain response.
电容式微机械超声换能器(cMUT)具有较大的带宽,但通常转换效率较低。本文以增益带宽积的形式定义了一种性能指标,并研究了该性能指标最大化的条件。为了优化参数,使用了经过有限元模拟修正的梅森模型。对于工作在发射、接收或脉冲回波模式下的换能器,有不同的性能指标。针对这些工作模式对换能器的基本参数进行了优化。给出了一种氮化硅膜且浸没在水中的cMUT的优化值。考虑了包含电匹配网络的影响。特别研究了并联电感在增益带宽积中的作用。介绍了设计工具,这些工具用于确定具有指定频率或增益响应的cMUT的最佳尺寸。