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Co-optimization of CMUT and receive amplifiers to suppress effects of neighbor coupling between CMUT elements

机译:CMUT和接收放大器的共同优化,抑制CMUT元素邻居耦合的影响

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Capacitive Micromachined Ultrasound Transducers (CMUTs) promise high transducer performance for several ultrasound applications. When using the CMUT array for medical applications where a focused ultrasound image with a 90 degree image sector is needed, we need a large number of individual elements. In off-axis beam steering, neighbor elements operate at different phase. This leads to unwanted acoustic effects caused by the interaction with the fluid medium outside the array. We see high-Q resonances close to the center frequency of the array at off-axis angles, which we want to reduce. We propose to use Transimpedance Amplifiers (TIAs) and Charge Sampling Amplifiers (CSAs) where we can easily adjust the input impedance, which opens up the possibility to design amplifiers that are optimized for an ultrasound system with CMUTs. Simulations show that a low impedance path results in suppression of the effects of resonances for both CSAs and TIAs and that co-optimization is important since the frequency of the CMUT array affects the Q-factor of the unwanted resonances. Even though we introduce an impedance mismatch the noise figure is still at an acceptable level. We present simulations in water, blood plasma with estimated data, and olive oil and show that the viscosity of the medium greatly influences the presence of resonances. This indicates that effects that might be present in human tissue may be much reduced in olive oil or other vegetable oils.
机译:电容式微机械超声换能器(CMUT)承诺为几种超声应用的高传感器性能。当使用CMUT阵列进行医疗应用时,需要具有90度图像扇区的聚焦超声图像,我们需要大量的单独元素。在轴外光束转向上,邻居元件在不同的阶段运行。这导致由阵列外部的流体介质的相互作用引起的不希望的声学效应。我们看到靠近轴的圆角角度的高Q共振,我们想要减少。我们建议使用跨阻抗放大器(TIAS)和电荷采样放大器(CSA),在那里我们可以轻松调整输入阻抗,这使得能够设计用于具有CMUT的超声系统优化的放大器的可能性。模拟表明,低阻抗路径导致抑制CSA和蒂亚斯的共振的影响,并且共同优化是重要的,因为CMUT阵列的频率影响了不需要的共振的Q因子。即使我们引入了阻抗不匹配,噪声数字仍处于可接受的水平。我们在水中进行模拟,血浆,估计数据,橄榄油,表明培养基的粘度大大影响了共振的存在。这表明橄榄油或其他植物油中可能存在于人体组织中可能存在的效果。

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