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A simple analog front-end circuit for grounded capacitive sensors with offset capacitance

机译:用于具有偏置电容的接地电容式传感器的简单模拟前端电路

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This paper presents a simple but efficient analog front-end circuit suitable for grounded capacitive sensors. Most of the practical capacitive sensors have an offset capacitance in parallel with a variable capacitance that varies with the quantity being sensed. In some applications, value of offset capacitance can be very large compared to the variable capacitance. This will introduce large offset voltage in the output of conventional measurement circuits. The proposed front-end circuit accepts such type of sensors and provides an output proportional to change in the variable capacitance alone. This increases the overall sensitivity. A prototype circuit has been built and tested for sensors with offset capacitance up-to 1000 pF and variable capacitance of 100 pF. No effect of offset capacitance was visible in the output of the circuit. Worst-case error observed during the measurement was less than 0.05%. Efficacy of the circuit was further tested by interfacing it with a prototype capacitive human proximity sensor. The developed system showed a reliable detection range of about 20 cm.
机译:本文提出了一种简单但有效的模拟前端电路,适用于接地电容式传感器。大多数实用的电容式传感器具有与可变电容并联的偏置电容,可变电容随所感测的量而变化。在某些应用中,与可变电容相比,偏移电容的值可能会非常大。这将在常规测量电路的输出中引入较大的失调电压。提出的前端电路接受这种类型的传感器,并提供与可变电容的变化成正比的输出。这增加了整体灵敏度。已构建了原型电路,并针对高达1000 pF的偏置电容和100 pF的可变电容的传感器进行了测试。在电路的输出中看不到偏移电容的影响。测量期间观察到的最坏情况误差小于0.05%。通过将其与原型电容式人体接近传感器接口,可以进一步测试该电路的效率。所开发的系统显示出约20 cm的可靠检测范围。

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