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Micro-USB Connector Pins as Low-Cost, Robust Electrodes for Microscale Water Conductivity Sensing in Oceanographic Research

机译:Micro-USB连接器引脚作为低成本,坚固耐用的电极,可用于海洋学研究中的微尺度水电导率传感

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摘要

Motivated by the widespread need to sense water conductivity in oceanography, as well as in other applications in fluid dynamics and environmental monitoring, we propose using the exposed gold-plated pins of readily available micro-USB connectors as miniaturized, parallel finger electrodes. Since the electrodes are 600 μm apart, they grant sub-mm spatial resolution, suitable for most applications. Standard micro-USB cables are an ideal, ready-to-use solution, since they are shielded, are preassembled in different lengths, and enable 2 and 4-wire measurements. In order to take full advantage of these USB probes, we have designed a custom, open-source 4-channel measuring circuit, named "Conduino", consisting of a low-noise (SNR = 60 dB) shield board coupled to an Arduino microcontroller. Experimental results demonstrate sensing performances comparable with state-of-the-art reference instrumentation (0.1% resolution in the 0.1-15 S/m range), with significantly lower cost and increased versatility and reliability.
机译:出于对海洋学中以及其他在流体动力学和环境监测中应用的水电导率的广泛需求的推动,我们建议使用现成的微型USB连接器的裸露镀金引脚作为小型,平行的指状电极。由于电极相距600μm,因此它们可提供亚毫米级的空间分辨率,适用于大多数应用。标准的micro-USB电缆是屏蔽的,可以按照不同的长度进行预组装,并且可以进行2线和4线测量,因此是理想的即用型解决方案。为了充分利用这些USB探头,我们设计了一个定制的开源4通道测量电路,称为“ Conduino”,由一个低噪声(SNR = 60 dB)屏蔽板与一个Arduino微控制器耦合组成。实验结果表明,其传感性能可与最新的参考仪器相媲美(0.1%的分辨率在0.1-15 S / m范围内),并且成本大大降低,多功能性和可靠性也得到了提高。

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