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Comparison of Voltage Divider In-phase and Quadrature Error Measurement Between NMIA and NIM

机译:NMIA和NIM之间分压器同相和正交误差测量的比较

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This paper describes the comparison of quadrature and in-phase error measurement using the NMIA Inductive Voltage Divider (IVD) and the NIM Resistive Voltage Divider (RVD) between NMIA and NIM. The IVD provides output to input voltage ratios of 0.001 to 0.01 with standard uncertainties between $0.008imes 10^{-6}$ and $0.04imes 10^{-6}$ at frequencies up to 1 kHz. An RVD of a series-parallel structure has been proposed by NIM. The RVD provides an output to input voltage ratio of 0.01 and has been self-calibrated with in-phase and quadrature standard uncertainties better than $4imes 10^{-6}$ at frequencies up to 1 kHz. Both in in-phase and quadrature errors of the IVD and RVD have been compared at frequencies from 40 Hz to 1 kHz at the voltage ratio of 0.01. The measurement results show agreement within $2imes 10^{-6} mathrm{V}/mathrm{V}$ for inphase errors and $2.5 mu ext{rad}$ for quadrature errors at frequencies up to 1 kHz.
机译:本文介绍了使用NMIA电感分压器(IVD)和NIM电阻分压器(RVD)在NMIA和NIM之间进行正交和同相误差测量的比较。 IVD可提供0.001至0.01的输出电压与输入电压之比,且之间存在标准不确定性 0.008美元/次10 ^ {- 6} $ $ 0.04 \ times 10 ^ {- 6} $ 在高达1 kHz的频率下。 NIM提出了串并联结构的RVD。 RVD的输出电压与输入电压之比为0.01,并且已通过同相和正交标准不确定度进行了自我校准,优于 $ 4 \ times 10 ^ {- 6} $ 在高达1 kHz的频率下。在电压比为0.01的情况下,在40 Hz至1 kHz的频率下,已对IVD和RVD的同相和正交误差进行了比较。测量结果表明在 $ 2 \ times 10 ^ {- 6} \ \ mathrm {V} / \ mathrm {V} $ 对于同相误差和 $ 2.5 \ \ mu \ text { rad} $ 对于频率高达1 kHz的正交误差。

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