基于有源电桥和弛豫振荡器的低成本便携式电容测量系统

A. Al-Hamry, Ahmed Yahia Kallel, Guangyu Liu, Olfa Kanooun
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引用次数: 0

摘要

本文设计了一种基于有源电桥和弛豫振荡器的电容测量电路,可以精确测量皮尺范围内的电容。被测电容值的变化引起有源电桥的不平衡,电路将电容值的变化转化为输出频率的变化。二极管用于适应微控制器(Arduino UNO)的电压水平。此外,每1000个频率周期进行测量和平均,以减少直流误差和抖动的影响。选用LT1028作为振荡器部分的放大器,提高了测量精度,仿真结果误差小于1%,最终测量精度低于3%。设计了更小的PCB,增加了无线模块,实现了Android App对参考电容的控制和切换,并使用LCD使其便携,兼容物联网。该电路的实验结果表明,在5种不同的参考电容下,在80pf ~ 900pf范围内实现了精确的电容测量,频率范围在9khz ~ 13khz之间。此外,该电路具有良好的线性度。因此,它具有作为便携式电容测量装置的潜力,可用于专用电容测量,例如基于纳米材料的电容传感器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Low-cost Portable System for Capacitance Measurement based on Active Bridge and Relaxation Oscillator
In this paper, a capacitance measurement circuit based on an active bridge and relaxation oscillator has been developed to accurately measure capacitance in the picofarad range. The change of the measured capacitance value causes the unbalance of the active bridge, and the circuit converts the change of the capacitance value into the change of the output frequency. A diode is used to adapt voltage levels to the microcontroller (Arduino UNO). In addition, every 1000 frequency cycles are measured and averaged to reduce the effects of direct current (DC) errors and the jitter. The selection of LT1028, as the oscillator part's amplifier, improved measurement accuracy where the simulation result error is less than 1%, and the final measurement accuracy is below 3%. The design of a smaller PCB, adding a wireless module, and realization of Android App to control and switch the reference capacitance and using the LCD make it portable and IoT compatible. The experimental results of the circuit show that under the five different reference capacitors, accurate capacitance measurement is achieved from 80 pF to 900 pF, and the frequency range is between 9 kHz and 13 kHz. Furthermore, this circuit has good linearity. Therefore, it has the potential as a portable capacitance measurement device, which can be used in a dedicated capacitance measurements for example nanomaterials based capacitive sensors.
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