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A PXI-Based Calibration System for Low-Value AC Resistors

机译:基于PXI的低价交流电阻校准系统

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This paper presents a sampling measurement system designed to compare ac standard resistors within a range from 1 m Omega to 10 Omega at frequencies ranging from 40 Hz to 10 kHz and for measurement currents up to 10 A. The system allows simultaneous measurement of both components of impedance of the calibrated resistor relative to the reference resistor. Built on the basis of commercial PXI modules, complemented by modules developed by the authors, the system stands out relatively simple structure and fully automatic operation. In order to reduce the impact of parasitic impedances on the comparison accuracy, a completely automated interchange method and the original way of connecting a digitizer to the compared impedances were applied. The consistency of the measured ac resistance ratios from 1: 1 to 1: 10 is better than 1 mu Omega/Omega and phase difference better than 6 mu rad, over the entire frequency range. The results of several comparisons and the analysis of their uncertainty show that for the comparisons of resistors with a resistance ratio close to one, the relative uncertainty of the resistance ratio measurement is 2.3 mu Omega/Omega (k = 2) over the entire frequency range. The uncertainty of the difference between the time constants of the compared resistors is at the level of 0.2 ns (k = 2) at 1 kHz.
机译:本文介绍了采样测量系统,旨在将AC标准电阻在从40 Hz到10 kHz的频率范围内的频率比较的范围内,并且测量电流高达10 A.该系统允许同时测量两个组件校准电阻相对于参考电阻的阻抗。基于商业PXI模块的基础,由作者开发的模块补充,系统脱颖而出的结构和全自动操作。为了减少寄生阻抗对比较精度的影响,施加了一种完全自动化的交换方法和将数字转化器连接到比较阻力的原始方法。测量的AC电阻比从1:1至1:10的一致性优于1μmomega/ω和相位差,在整个频率范围内优于6μar。几个比较和分析它们的不确定性的分析表明,对于靠近一个的电阻比的电阻器的比较,电阻比测量的相对不确定度在整个频率范围内是2.3μmω/ω/ω(k = 2) 。比较电阻器的时间常数之间的差异的不确定度在1kHz的0.2ns(k = 2)的水平为0.2ns(k = 2)。

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