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A Fully Analog High Performances Automatic System for Phase Measurement of Electrical and Optical Signals

机译:用于电信号和光信号相位测量的全模拟高性能自动系统

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摘要

In this paper, we present a high performance, automatic fully analog phase-to-voltage converter (PVC) circuit for phase shift measurements of periodic waveforms and repeated pulsed signals with zero and nonzero mean values. The PVC operation is fully automatic because an internal closed feedback loop guarantees the self-phase alignment (self-locking) between the reference and input signals. The system has been tested by measuring the phase shifts between the electrical signals generated by digital waveform generators and by photodiodes. The PVC output voltage dynamic range is ±10 V, independently from the phase-shift full-scales equal to ±10°, ±1°, and ±0.1°. The increase of the PVC sensitivity, expressed in volts/degree, which can be easily set to about 1, 10, and 100 V/°, is achieved without any amplification of the signal so avoiding the increasing and/or introduction of additional electronic noise to the measurements. As a consequence, for the smallest phase-shift full-scale equal to ±0.1°, the proposed PVC circuit is capable to achieve phase resolutions in the order of 0.0001°, a value one order of magnitude better than that one of commercial lock-in amplifiers. In the case of optical applications, the PVC is able to detect laser power variations with sensitivity values settable to about 6, 60, and 600 V/W so achieving the best resolution of 16 pW.
机译:在本文中,我们提出了一种高性能的全自动全模拟相电压转换器(PVC)电路,用于对周期波形和均值为零和非零的重复脉冲信号进行相移测量。 PVC操作是全自动的,因为内部封闭的反馈环路确保了参考信号和输入信号之间的自相位对准(自锁定)。该系统已通过测量数字波形发生器和光电二极管产生的电信号之间的相移进行了测试。 PVC输出电压动态范围为±10 V,与等于±10°,±1°和±0.1°的相移满量程无关。 PVC灵敏度的增加(以伏特/度表示)可以轻松设置为大约1、10和100 V /°,无需增加信号即可实现,因此避免了增加和/或引入额外的电子噪声测量。因此,对于等于±0.1°的最小相移满量程,拟议的PVC电路能够实现0.0001°量级的相位分辨率,该值比商用锁定电路的相位分辨率好一个数量级。在放大器中。在光学应用中,PVC能够检测灵敏度设置为约6 V,60 V和600 V / W的激光功率变化,从而实现16 pW的最佳分辨率。

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