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Precision Differential Sampling Measurements of Low-Frequency Synthesized Sine Waves With an AC Programmable Josephson Voltage Standard

机译:交流可编程约瑟夫森电压标准的低频合成正弦波的精密差分采样测量

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We have developed a precision technique to measure sine-wave sources with the use of a quantum-accurate ac programmable Josephson voltage standard. This paper describes a differential method that uses an integrating sampling voltmeter to precisely determine the amplitude and phase of high-purity and low-frequency (a few hundred hertz or less) sine-wave voltages. We have performed a variety of measurements to evaluate this differential technique. After averaging, the uncertainty obtained in the determination of the amplitude of a 1.2 V sine wave at 50 Hz is 0.3 $muhbox{V/V}$ (type A). Finally, we propose a dual-waveform approach for measuring two precision sine waves with the use of a single Josephson system. Currently, the National Institute of Standards and Technology (NIST) is developing a new calibration system for electrical power measurements based on this technique.
机译:我们已经开发出一种精密技术,可以使用量子精确的交流可编程约瑟夫森电压标准来测量正弦波源。本文介绍了一种差分方法,该方法使用积分采样电压表精确确定高纯度和低频(几百赫兹或更小)正弦波电压的幅度和相位。我们已经进行了各种测量来评估这种差分技术。平均后,在确定50 Hz处的1.2 V正弦波的振幅时获得的不确定度为0.3×muhbox {V / V} $(A型)。最后,我们提出了使用单个约瑟夫森系统来测量两个精确正弦波的双波形方法。目前,美国国家标准技术研究院(NIST)正在开发一种基于此技术的用于电能测量的新校准系统。

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