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Passive Wireless MEMS Microphones for Biomedical Applications

机译:用于生物医学应用的无源无线MEMS麦克风

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This paper introduces passive wireless telemetry based operation for high frequency acoustic sensors. The focus is on the development, fabrication, and evaluation of wireless, batteryless SAW-IDT MEMS microphones for biomedical applications. Due to the absence of batteries, the developed sensors are small and as a result of the batch manufacturing strategy are inexpensive which enables their utilization as disposable sensors. A pulse modulated surface acoustic wave interdigital transducer (SAW-IDT) based sensing strategy has been formulated. The sensing strategy relies on detecting the ac component of the acoustic pressure signal only and does not require calibration. The proposed sensing strategy has been successfully implemented on an in-house fabricated SAW-IDT sensor and a variable capacitor which mimics the impedance change of a capacitive microphone. Wireless telemetry distances of up to 5 centimeters have been achieved. A silicon MEMS microphone which will be used with the SAW-IDT device is being microfabricated and tested. The complete passive wireless sensor package will include the MEMS microphone wire-bonded on the SAW substrate and interrogated through an on-board antenna. This work on acoustic sensors breaks new ground by introducing high frequency (i.e., audio frequencies) sensor measurement utilizing SAW-IDT sensors. The developed sensors can be used for wireless monitoring of body sounds in a number of different applications, including monitoring breathing sounds in apnea patients, monitoring chest sounds after cardiac surgery, and for feedback sensing in compression (HFCC) vests used for respiratory ventilation. Another promising application is monitoring chest sounds in neonatal care units where the miniature sensors will minimize discomfort for the newborns.
机译:本文介绍了基于高频无线电传感器的无源无线遥测技术。重点是用于生物医学应用的无线,无电池SAW-IDT MEMS麦克风的开发,制造和评估。由于没有电池,因此开发的传感器体积小,并且由于批量生产策略的价格低廉,因此可以将其用作一次性传感器。制定了基于脉冲调制的表面声波叉指式换能器(SAW-IDT)的传感策略。传感策略仅依赖于检测声压信号的交流分量,而无需校准。拟议的传感策略已在内部制造的SAW-IDT传感器和模拟电容式麦克风的阻抗变化的可变电容器上成功实施。无线遥测距离已达到5厘米。将与SAW-IDT器件一起使用的硅MEMS麦克风正在进行微细加工和测试。完整的无源无线传感器封装将包括MEMS麦克风,其引线键合在SAW基板上,并通过板载天线进行询问。声学传感器的这项工作通过引入利用SAW-IDT传感器进行高频(即音频)传感器测量而开辟了新天地。开发的传感器可用于许多不同应用中的身体声音无线监视,包括监视呼吸暂停患者的呼吸声音,监视心脏手术后的胸腔声音,以及用于呼吸通气的压缩(HFCC)背心中的反馈感应。另一个有希望的应用是在新生儿监护室中监测胸部声音,其中微型传感器将使新生儿的不适感降至最低。

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