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首页> 外文期刊>Sensors Journal, IEEE >Design and Development of a Novel Passive Wireless Ultrasensitive RF Temperature Transducer for Remote Sensing
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Design and Development of a Novel Passive Wireless Ultrasensitive RF Temperature Transducer for Remote Sensing

机译:新型用于遥感的无源无线超灵敏射频温度传感器的设计与开发

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摘要

A wireless, passive, and ultrasensitive temperature transducer is presented in this paper. The transducer consists of split ring resonators loaded with micro-bimorph cantilevers, which can potentially operate up to millimeter-wave frequencies (above 30 GHz). As the temperature changes, the bimorph cantilevers deflect and result in a shift of the resonant frequency of the split rings. A design is proposed, that has a maximum sensitivity of 2.62 ${rm GHz}/mu{rm m}$, in terms of frequency shift per deflection unit, corresponding to a sensitivity of 498 MHz/$^{circ}{rm C}$ for an operating frequency around 30 GHz, i.e., a frequency shift of 1.6% per $^{circ}{rm C}$. Theoretically, it's about two orders of magnitude higher than the existing sensors observed in the same class. This sensor design also offers a high Q factor and is ultra-compact, enabling easy fabrication and integration in micro-electromechanical systems technology. Depending on the choice of materials, the proposed designs can also be utilized in harsh environments. As a proof of concept, a prototype is implemented around 4.7 GHz which exhibits a frequency shift of 0.05%/$^{circ}{rm C}$, i.e., 17 times more sensitive than the existing sensors.
机译:本文介绍了一种无线,无源和超灵敏的温度传感器。该换能器由装有微型双压电晶片悬臂的裂环谐振器组成,该悬臂可以潜在地在高达毫米波的频率(30 GHz以上)下运行。随着温度的变化,双压电晶片的悬臂偏转并导致开口环的谐振频率发生偏移。提出了一种设计,根据每个偏转单元的频移,其最大灵敏度为2.62 $ {rm GHz} / mu {rm m} $,对应于498 MHz / $ ^ {circ} {rm C的灵敏度} $用于30 GHz附近的工作频率,即每$ ^ {circ} {rm C} $的频移为1.6%。从理论上讲,它比在同一个类别中观察到的现有传感器高大约两个数量级。该传感器设计还提供了高Q因子,并且非常紧凑,可轻松制造并集成到微机电系统技术中。根据材料的选择,建议的设计也可以在恶劣的环境中使用。作为概念证明,在4.7 GHz附近实现了一个原型,该原型表现出0.05%的频移,即灵敏度是现有传感器的17倍。

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