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Automatic balancing of linear AC bridge circuits for capacitive sensor elements

机译:电容式传感器元件的线性交流电桥电路的自动平衡

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Conventional bridge circuits are balanced by means of mechanical changes of trimming capacitances and resistances. It is a well-known fact that this can be very difficult in many situations, e.g., due to electrical interference between the bridge circuit and the human body or some mechanical part of the screwdriver used. There may also be physical constraints prohibiting mechanical changes of some bridge elements. To avoid these problems, the balancing procedure should be automated. In this article an automatic method for bridge circuit balancing, based on a digital control signal, is presented. Ordinary AC-bridge circuits are nonlinear with respect to changes of the capacitive sensor element. Using some standard operational amplifiers it is easy, however, to obtain a linear bridge circuit output. A theoretical model of the linear bridge circuit is derived. The excellent performance of the linear bridge circuit predicted by theory is verified by practical experiments.
机译:常规电桥电路通过微调电容和电阻的机械变化来平衡。众所周知的事实是,在许多情况下,例如由于桥接电路与人体或所用螺丝刀的某些机械部件之间的电干扰,这可能非常困难。可能还存在一些物理约束,禁止某些桥元件发生机械变化。为避免这些问题,平衡过程应自动化。在本文中,提出了一种基于数字控制信号的自动电桥电路平衡方法。普通的交流电桥电路相对于电容式传感器元件的变化是非线性的。但是,使用某些标准运算放大器很容易获得线性桥电路输出。推导了线性电桥电路的理论模型。理论预测的线性电桥电路的优异性能已通过实际实验验证。

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