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Evaluation of Linearity Characteristics in Digital Voltmeters Using a PJVS System With a 10-K Cooler

机译:使用带有10K冷却器的PJVS系统评估数字电压表中的线性特性

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We have evaluated the linearity of commercial digital voltmeters (DVMs) using a programmable Josephson voltage standard (PJVS) system. The PJVS system is composed of a 524 288-niobium nitride-based Josephson junction array that has the ability to generate arbitrary output voltages up to 17 V with a resolution of 12 bits. In our system, the junction array is operated in a 10-K compact cooler without a liquid-helium coolant. Up to now, we have succeeded in generating accurate dc voltage levels of up to approximately 13 V using this system. In this paper, we demonstrate our PJVS system as a tool for investigating the linearity characteristics of commercial DVMs, with an accuracy level of 0.1 /V or better, and discuss the uncertainty sources in these measurements.
机译:我们已经使用可编程的约瑟夫森电压标准(PJVS)系统评估了商用数字电压表(DVM)的线性。 PJVS系统由一个基于524 288氮化铌的约瑟夫逊结阵列组成,该阵列能够生成高达17 V的任意输出电压,分辨率为12位。在我们的系统中,结点阵列在没有液氦冷却剂的10-K紧凑型冷却器中运行。到目前为止,我们已经成功地使用该系统生成了大约13 V的准确直流电压电平。在本文中,我们演示了PJVS系统,它是一种用于研究商用DVM线性特性的工具,其准确度为0.1 / V或更高,并讨论了这些测量中的不确定性来源。

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