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Relaxation Oscillator-Based Active Bridge Circuit for Linearly Converting Resistance to Frequency of Resistive Sensor

机译:基于张弛振荡器的有源桥电路,可将电阻线性转换为电阻传感器的频率

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摘要

An easily implementable signal conditioning circuit for resistive humidity and temperature sensors is presented. It is based on a relaxation oscillator in which both the frequency and the duty-cycle of the square-wave output signal simultaneously carry information from two different types of sensors. The output frequency is linearly related to the resistive unbalance of an active bridge, whereas the duty-cycle is independently controlled by a thermal sensor for controlling temperature error of the humidity sensor (RH). The design, analysis, and experimental characterization of the circuit and its application to a sol-gel thin film porous $gammahbox{-}{rm Al}_{2}{rm O}_{3}$-based humidity sensor and resistance temperature detector are reported. Experimental results confirm the theoretical value predicted. The circuit covering wide resistance measurement range has the potential for remotely monitoring measurement parameters accurately.
机译:提出了一种用于电阻式湿度和温度传感器的易于实现的信号调节电路。它基于张弛振荡器,其中方波输出信号的频率和占空比同时承载来自两种不同类型传感器的信息。输出频率与有源电桥的电阻不平衡线性相关,而占空比由热传感器独立控制,以控制湿度传感器(RH)的温度误差。该电路的设计,分析和实验特性及其在溶胶-凝胶薄膜多孔<配方公式中的应用 $ gammahbox {-} {rm Al} _ {2报告了基于{rm O} _ {3} $ 的湿度传感器和电阻温度检测器。实验结果证实了理论值的预测。覆盖宽电阻测量范围的电路具有潜力,可以精确地远程监视测量参数。

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