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An Intelligent ISFET Sensory System With Temperature and Drift Compensation for Long-Term Monitoring

机译:具有温度和漂移补偿的智能ISFET传感系统,可进行长期监控

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This paper presents a new intelligent ISFET sensory system dedicated to a precision pH sensory function, as well as a long-term monitoring capability without being jeopardized by temperature and drift fluctuations in the water-quality monitoring environment. It includes the novel compensation technique for counteracting a simultaneous change of temperature and drift, the design of the sensory system incorporating hardware and software co-design for enhancing the performance stability of a standard ISFET device and a new programmable current source with reduced dynamic current error for a dedicated temperature compensation process. The proposed ISFET sensory system, with about a 0.01 pH resolution in system design at a 3.3 V supply, has been validated by the experiments, exhibiting a maximum accuracy error of 0.02 pH at 23degC and 0.05 pH at 40degC with dual compensation. The compensation results show a maximum time drift of 0.003 pH/hour (0.166 mV/hour) at 23C and an average temperature drift of 0.00049 pH/hour/C (0.0245 mV/hour/C ) for a reference temperature increase from 23 C to 40degC, with the value of the pH solution ranging from 4 to 9 in six-hour measurements. These measured results outperform those of the reported drift reduction techniques, suggesting that the ISFET sensory system using novel compensation can provide significant immunity against temperature change, time drift, and temperature drift, which are favorable towards robust measurements in environmental monitoring applications.
机译:本文提出了一种新型的智能ISFET传感系统,该系统专门用于精确的pH传感功能以及长期的监视功能,而不会受到水质监视环境中的温度和漂移波动的影响。它包括用于抵消温度和漂移的同时变化的新颖补偿技术,结合了硬件和软件协同设计以增强标准ISFET器件性能稳定性的传感系统的设计以及具有降低的动态电流误差的新型可编程电流源用于专用的温度补偿过程。拟议的ISFET传感系统在3.3 V电源下的系统设计中具有约0.01 pH的分辨率,已通过实验验证,在双重补偿下,最大精度误差为23°C时为0.02 pH,40°C时为0.05 pH。补偿结果显示,对于23°C至23°C的参考温度升高,在23°C时最大时间漂移为0.003 pH /小时(0.166 mV /小时),并且平均温度漂移为0.00049 pH /小时/C(0.0245 mV /小时/ C)。 40摄氏度,六小时测量中pH溶液的值在4到9之间。这些测量结果优于已报道的减少漂移的技术,这表明使用新型补偿的ISFET传感系统可以提供对温度变化,时间漂移和温度漂移的显着免疫力,这有利于在环境监测应用中进行可靠的测量。

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