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A novel 6-decades fully-analog uncalibrated Wheatstone bridge-based resistive sensor interface

机译:一种新颖的六十年全模拟未校准惠斯通电桥为基础的电阻传感器接口

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摘要

In this paper a novel fully-analog uncalibrated Wheatstone bridge-based topology suitable for wide-range resistive sensors estimation is presented. The proposed interface is an improvement of a work recently proposed by the authors, showing an increase of the operative dynamic range and both system accuracy and sensitivity. Thanks to the use of a simple closed feedback loop, based on an instrumentation amplifier and an inverting integrator, it is possible to easily set two voltage controlled resistor (VCR) values, so to maintain the bridge balancing condition in the case of sensor variation. The use of this configuration allows the sensor estimation for about 6 decades resistive variation (10 £2-8 Mil) with a very high accuracy for a wide-range sensor interface (absolute relative error within ±2%). Experimental tests, performed by using a commercial resistive sensor, have shown that, thanks to its high sensitivity value, the interface can reveal and correctly quantify both few ppm carbon monoxide (CO) particles and percentage relative humidity (RH%) variations.
机译:本文提出了一种适用于大范围电阻传感器估算的新型全模拟未校准惠斯通电桥拓扑。提出的接口是作者最近提出的一项工作的改进,显示了操作动态范围以及系统精度和灵敏度的增加。由于使用了基于仪表放大器和反相积分器的简单闭合反馈环路,因此可以轻松设置两个压控电阻(VCR)值,从而在传感器变化的情况下保持电桥平衡状态。使用此配置可​​使传感器估计大约6十年的电阻变化(10英镑2-8百万美元),具有非常高的精度,适用于宽范围的传感器接口(绝对相对误差在±2%以内)。通过使用商用电阻传感器进行的实验测试表明,由于其高灵敏度值,该界面可以揭示并正确量化少量的一氧化碳(CO)颗粒和相对湿度(RH%)百分比变化。

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