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Automatic bridge-based interface for differential capacitive full sensing

机译:基于自动桥接界面的差动电容全感应

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The authors here propose, for the first time, an automatic analog interface for differential capacitance estimation, able to reveal and quantify both low and high (full-range) capacitive variations. The working principle is based on a modified De-Sauty AC bridge configuration where two differential capacitances and two resistances are employed, one of which is implemented by a Voltage Controlled Resistor (VCR). Through a suitable feedback loop, a very accurate estimation over the complete range of the differential capacitance variation is possible, while the bridge allows a continuous differential capacitance evaluation without the need of knowing the accurate value of the sensor baseline and/or its variation range. A general but very simple formula, considering both the "autobalancing" and the "out-of-equilibrium" ranges, is also given. Theoretical, experimental and simulated results are in a very good agreement. Sensitivity and resolution values, typical of sensors and their interfaces, have been determined in a practical case, showing satisfactory values.
机译:这里的作者首次提出了一种用于差分电容估计的自动模拟接口,能够透露和量化低和高(全范围)电容变化。工作原理基于修改的去振动交流桥结构,其中采用两个差分电容和两个电阻,其中一个由电压控制电阻(VCR)实现。通过合适的反馈回路,可以在差分电容变化的完全范围内非常精确地估计,而桥允许连续的差分电容评估而不需要了解传感器基线的准确值和/或其变化范围。还给出了一般但非常简单的公式,考虑到“自动化”和“超均衡”范围。理论,实验和模拟结果非常良好。在实际情况下,确定了典型的传感器及其接口的灵敏度和分辨率值,显示出令人满意的值。

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