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The Design of Phase-Locked-Loop Circuit for Precision Capacitance Micrometer

机译:精密电容千分尺的锁相环电路设计

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High precision non-contact micrometer is normally divided into three categories: inductance micrometer, capacitance micrometer and optical interferometer micrometer. The capacitance micrometer is widely used because it has high performance to price ratio. With the improvement of automation level, precision of capacitance micrometer is required higher and higher. Generally, capacitance micrometer consists of the capacitance sensor, capacitance/voltage conversion circuit, and modulation and demodulation circuits. However, due to the existing of resistors, capacitors and other components in the circuit, the phase shift of the carrier signal and the modulated signal might occur. In this case, the specific value of phase shift cannot be determined. Therefore, error caused by the phase shift cannot be eliminated. This will reduce the accuracy of micrometer. In this design, in order to eliminate the impact of the phase shift, the phase-locked-loop (PLL) circuit is employed. Through the experiment, the function of tracking the input signal phase and frequency is achieved by the phase-locked-loop circuit. This signal processing method can also be applied to tuber electrical resistance tomography system and other precision measurement circuit.
机译:高精度非接触式千分尺通常分为三类:电感千分尺,电容千分尺和光学干涉仪千分尺。电容千分尺因其具有较高的性价比而被广泛使用。随着自动化水平的提高,对电容千分尺的精度要求越来越高。通常,电容千分尺由电容传感器,电容/电压转换电路以及调制和解调电路组成。但是,由于电路中存在电阻器,电容器和其他组件,因此可能会发生载波信号和调制信号的相移。在这种情况下,不能确定相移的特定值。因此,不能消除由相移引起的误差。这会降低千分尺的精度。在此设计中,为了消除相移的影响,采用了锁相环(PLL)电路。通过实验,通过锁相环电路实现了跟踪输入信号相位和频率的功能。该信号处理方法还可以应用于块茎电阻层析成像系统和其他精密测量电路。

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