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用于电阻式传感器测量的双电容器直接接口电路。

Two-Capacitor Direct Interface Circuit for Resistive Sensor Measurements.

作者信息

Hidalgo-López José A, Oballe-Peinado Óscar, Castellanos-Ramos Julián, Sánchez-Durán José A

机构信息

Departamento de Electrónica, Universidad de Málaga, Andalucía Tech, Campus de Teatinos, 29071 Málaga, Spain.

Instituto de Investigación Biomédica de Málaga (IBIMA), 29010 Málaga, Spain.

出版信息

Sensors (Basel). 2021 Feb 22;21(4):1524. doi: 10.3390/s21041524.

Abstract

Direct interface circuits (DICs) avoid the need for signal conditioning circuits and analog-to-digital converters (ADCs) to obtain digital measurements of resistive sensors using only a few passive elements. However, such simple hardware can lead to quantization errors when measuring small resistance values as well as high measurement times and uncertainties for high resistances. Different solutions to some of these problems have been presented in the literature over recent years, although the increased uncertainty in measurements at higher resistance values is a problem that has remained unaddressed. This article presents an economical hardware solution that only requires an extra capacitor to reduce this problem. The circuit is implemented with a field-programmable gate array (FPGA) as a programmable digital device. The new proposal significantly reduces the uncertainty in the time measurements. As a result, the high resistance errors decreased by up to 90%. The circuit requires three capacitor discharge cycles, as is needed in a classic DIC. Therefore, the time to estimate resistance increases slightly, between 2.7% and 4.6%.

摘要

直接接口电路(DIC)无需信号调理电路和模数转换器(ADC),仅使用几个无源元件就能获取电阻式传感器的数字测量值。然而,这种简单的硬件在测量小电阻值时会导致量化误差,对于高电阻则会导致测量时间长和不确定性高。近年来,文献中提出了一些解决这些问题的不同方案,尽管在较高电阻值测量中不确定性增加这一问题仍未得到解决。本文提出了一种经济的硬件解决方案,只需额外增加一个电容器即可减少这一问题。该电路采用现场可编程门阵列(FPGA)作为可编程数字器件来实现。新方案显著降低了时间测量中的不确定性。结果,高电阻误差降低了高达90%。该电路需要三个电容器放电周期,这与传统DIC一样。因此,估计电阻的时间略有增加,在2.7%至4.6%之间。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0a4c/7926314/21075d8516de/sensors-21-01524-g001.jpg

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