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首页> 外文期刊>Micro & Nano Letters, IET >Micro-electro-mechanical systems capacitive ultrasonic transducer with a higher electromechanical coupling coefficient
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Micro-electro-mechanical systems capacitive ultrasonic transducer with a higher electromechanical coupling coefficient

机译:具有较高机电耦合系数的微机电系统电容式超声换能器

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摘要

Since the proposing of capacitive micromachined ultrasonic transducer by Khuri Yakub group in 1994 that this kind of transducer occupying the advantages of wide bandwidth, impedance matching well with the propagation medium especially in fluid and air and high sensitivity, has shown a great potential for wide ranges of applications. This Letter reports kind of micro-electro-mechanical systems (MEMS) capacitive ultrasonic transducer with the novel cavities embedded in the device layer of silicon on insulator wafer bonded with a glass substrate. The optimum geometric dimensions are confirmed by both mechanical vibrating of the membrane and the electrical characteristics analysis. Finite-element analysis is adopted to determine the operation mode. The safety and reliability of the proposed device is ensured by the obtained deflections and equivalent stress under operation/collapse voltage. The bottom electrodes of the proposed transducer are fabricated on the top surface of the glass substrate. The parallel parasitic capacitance is reduced, thus improving the electromechanical coupling coefficient. The test results show that the electromechanical coupling coefficient is 69.65%, which demonstrates that this proposed MEMS capacitive ultrasonic transducer structure can enhance the performance significantly.
机译:自从1994年Khuri Yakub小组提出电容式微加工超声换能器以来,这种换能器就具有带宽大,阻抗与传播介质(特别是在流体和空气中)和高灵敏度匹配等优点,具有广阔的应用前景。应用程序。这封信报道了一种微机电系统(MEMS)电容式超声换能器,其新颖的腔体嵌入在与玻璃基板结合的绝缘体晶片上的硅器件层中。通过膜的机械振动和电特性分析,可以确定最佳的几何尺寸。采用有限元分析确定操作模式。通过在工作/崩溃电压下获得的挠度和等效应力,可以确保所提出设备的安全性和可靠性。所提出的换能器的底部电极被制造在玻璃基板的顶表面上。减小了并联寄生电容,从而提高了机电耦合系数。测试结果表明,机电耦合系数为69.65%,表明所提出的MEMS电容超声换能器结构可以显着提高性能。

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