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Influence of Sampling Voltmeter Parameters on RMS Measurements of Josephson Stepwise-Approximated Sine Waves

机译:采样电压表参数对约瑟夫森逐步逼近正弦波RMS测量的影响

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摘要

A binary Josephson-array voltage standard was used to investigate the influence of device settings on the reading of an $8{1/2}$-digit sampling voltmeter. This voltmeter is the heart of the primary standard for power at 50 Hz or 60 Hz at several national metrology institutes (NMIs). In this paper, we present results on the influence of the voltmeter synchronization and measurement parameters on the root-mean-square (RMS) measurements of Josephson stepwise-approximated sine waves for different frequencies. Our results show that for aperture times above 100 $muhbox{s}$, the measured RMS voltage shows a large step in value with respect to shorter aperture times and is much more accurate. Furthermore, to obtain 0.2 $muhbox{V}/hbox{V}$ accuracy, we show that for stepwise-approximated sine waves at 53 Hz, delay times higher than 10 $muhbox{s}$ are necessary. A slight delay time dependence limits the accuracy for frequencies above a few hundred hertz.
机译:使用二进制约瑟夫森阵列电压标准来研究设备设置对$ 8 {1/2} $位采样电压表读数的影响。该电压表是一些国家计量机构(NMI)的50 Hz或60 Hz电源基本标准的核心。在本文中,我们介绍了电压表同步和测量参数对不同频率的约瑟夫逐步逼近正弦波的均方根(RMS)测量的影响的结果。我们的结果表明,对于大于100μmbox的孔径时间,相对于较短的孔径时间,所测量的RMS电压值显示出较大的阶跃,并且精度更高。此外,为了获得0.2的准确度,我们表明,对于53 Hz的逐步逼近正弦波,延迟时间必须高于10。轻微的延迟时间依赖性限制了几百赫兹以上频率的精度。

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