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A Wireless Low-Range Pressure Sensor Based On P(Vdf-Trfe) Piezoelectric Resonance

机译:基于P(Vdf-Trfe)压电谐振的无线低量程压力传感器

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摘要

A low-range bio-compatible pressure sensor based on P(VDF-TrFE) piezoelectric resonance has been tested and integrated to a wireless platform. Many critical physiological applications and in-vivo diagnosis require highly sensitive pressure monitoring in the 0-100kPa range, with negligible long-term drift and robust integration platform. The PVDF film and its copolymers exhibit significant piezoelectric properties after poling. P(VDF-TrFE) is preferred for its flexible film structure, low modulus, high yield strength and resistance to corrosive chemicals. All piezoelectric materials are lossy and thus the leakage current will cause drift of instantaneous response, which limits the direct use of piezoelectric charges in sensing. In this paper, the pressure sensor which adopts the appropriate properties of P(VDFTrFE) for low pressure levels, works as an acoustic wave resonator to avoid long-term drift from the charge leakage problem in quasi-static pressure, while maintaining good sensitivity. Simulation results show good agreement with the measurement data. The temperature coefficient and the areal scaling effect are characterized. Furthermore, the sensor output is matched with standard 50  impedance at the resonance for integration into the RF circuits. A passive sensor tag is demonstrated by using RF backscattering.
机译:基于P(VDF-TrFE)压电共振的低范围生物兼容压力传感器已经过测试,并已集成到无线平台中。许多重要的生理应用和体内诊断都需要在0-100kPa范围内进行高度灵敏的压力监测,并具有可忽略的长期漂移和强大的集成平台。极化后,PVDF膜及其共聚物表现出显着的压电性能。 P(VDF-TrFE)具有柔性膜结构,低模量,高屈服强度和耐腐蚀性化学物质,因此是优选的。所有压电材料都是有损耗的,因此泄漏电流将导致瞬时响应漂移,从而限制了压电电荷在传感中的直接使用。在本文中,采用适合低压水平的P(VDFTrFE)的适当特性的压力传感器用作声波谐振器,避免了准静态压力中电荷泄漏问题的长期漂移,同时保持了良好的灵敏度。仿真结果与测量数据吻合良好。表征了温度系数和面积缩放效应。此外,传感器输出在谐振时与标准50Ω阻抗匹配,以便集成到RF电路中。通过使用RF反向散射演示了无源传感器标签。

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  • 作者

    Li Xiaoyang;

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  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 en_US
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