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Towards Chip-Based Salinity Measurements for Small Submersibles and Biologgers

机译:面向小型潜水器和生物记录仪的基于芯片的盐度测量

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Water’s salinity plays an important role in the environment. It can be determined by measuring conductivity, temperature, and depth (CTD). The corresponding sensor systems are commonly large and cumbersome. Here, a 7.5 × 3.5 mm chip, containing microstructured CTD sensor elements, has been developed. On this, 1.5 mm2gold finger electrodes are used to measure the impedance, and thereby the conductivity of water, in the MHz frequency range. Operation at these frequencies resulted in higher sensitivities than those at sub-MHz frequencies. Up to 14 kΩ per parts per thousand salt concentration was obtained repeatedly for freshwater concentrations. This was three orders of magnitude higher than that obtained for concentrations in and above the brackish range. A platinum electrode is used to determine a set ambient temperature with an accuracy of 0.005°C. Membranes with Nichrome strain gauges responded to a pressure change of 1 bar with a change in resistance of up to 0.21 Ω. A linear fit to data over 7 bars gave a sensitivity of 0.1185 Ω/bar with anR2of 0.9964. This indicates that the described device can be used in size-limited applications, like miniaturized submersibles, or as a bio-logger on marine animals.
机译:水的盐度在环境中起着重要作用。可以通过测量电导率,温度和深度(CTD)来确定。相应的传感器系统通常很大且笨重。在这里,已开发出包含微结构CTD传感器元件的7.5××3.5mm的芯片。在此基础上,使用1.5平方毫米2的金手指电极来测量兆赫频率范围内的阻抗,从而测量水的电导率。在这些频率下运行比在低于MHz频率下的灵敏度更高。对于淡水浓度,反复获得每千分之一盐浓度高达14kΩ的浓度。这比在咸咸范围内及以上的浓度高三个数量级。铂电极用于确定设定的环境温度,精度为0.005°C。带有Nichrome应变片的膜对1 bar的压力变化做出了响应,电阻变化高达0.21Ω。对7条以上的数据进行线性拟合得出的灵敏度为0.1185Ω/ bar,R2为0.9964。这表明所描述的装置可以用于尺寸受限的应用中,例如小型潜水器,或者用作海洋动物的生物记录仪。

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