Interface Circuit for Low-Resistance Sensors Based on Noise Cancelling Technique

M. M. Abdevand, D. Livornesi, A. E. Vergani, P. Malcovati, E. Bonizzoni
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引用次数: 1

Abstract

A resistive sensor is conventionally biased by a voltage divider or a Wheatstone bridge. Applying a precise bias on a low-resistance sensor with these conventional approaches, however, necessarily requires calibration of the components, which is time-consuming and costly for mass production. In this paper, we propose an analog front-end circuit for low-resistance sensors, based on a closed-loop bias circuit with high-impedance output, which does not require any calibration. In addition, after a comprehensive analysis of the bias noise, we introduce a noise canceling technique, which allows more than 25 dB reduction of the bias noise in the complete interface circuit, even in the presence of gain mismatches as large as 5%.
基于消噪技术的低阻传感器接口电路
电阻式传感器通常通过分压器或惠斯通电桥进行偏置。然而,使用这些传统方法在低电阻传感器上应用精确的偏置,必然需要对组件进行校准,这对于大规模生产来说既耗时又昂贵。在本文中,我们提出了一种基于高阻抗输出的闭环偏置电路的低阻传感器模拟前端电路,该电路无需任何校准。此外,在对偏置噪声进行全面分析后,我们引入了一种消噪技术,即使在存在高达5%的增益失配的情况下,也可以将整个接口电路中的偏置噪声降低25 dB以上。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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