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A novel high-sensitivity, low-power, liquid crystal temperature sensor

机译:新型高灵敏度,低功耗液晶温度传感器

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摘要

A novel temperature sensor based on nematic liquid crystal permittivity as a sensing magnitude, is presented. This sensor consists of a specific micrometric structure that gives considerable advantages from other previous related liquid crystal (LC) sensors. The analytical study reveals that permittivity change with temperature is introduced in a hyperbolic cosine function, increasing the sensitivity term considerably. The experimental data has been obtained for ranges from −6 °C to 100 °C. Despite this, following the LC datasheet, theoretical ranges from −40 °C to 109 °C could be achieved. These results have revealed maximum sensitivities of 33 mVrms/°C for certain temperature ranges; three times more than of most silicon temperature sensors. As it was predicted by the analytical study, the micrometric size of the proposed structure produces a high output voltage. Moreover the voltage’s sensitivity to temperature response can be controlled by the applied voltage. This response allows temperature measurements to be carried out without any amplification or conditioning circuitry, with very low power consumption.
机译:提出了一种以向列型液晶介电常数为感应量的新型温度传感器。该传感器由特定的测微结构组成,与以前的其他相关液晶(LC)传感器相比,具有明显的优势。分析研究表明,介电常数随温度的变化引入了双曲余弦函数,从而大大提高了灵敏度项。已经获得了从-6°C到100°C的实验数据。尽管如此,根据LC数据表,仍可达到−40°C至109°C的理论范围。这些结果表明,在某些温度范围内,最大灵敏度为33 mVrms /°C。是大多数硅温度传感器的三倍。正如分析研究所预测的那样,所提议结构的微米尺寸会产生高输出电压。此外,电压对温度响应的敏感性可以通过施加的电压来控制。该响应使温度测量无需任何放大或调节电路即可完成,并且功耗非常低。

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