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首页> 外文期刊>Instrumentation and Measurement, IEEE Transactions on >A New Self-Calibration Method for a Decade Inductive Voltage Divider by Using Bifilar Windings as an Essential Standard at Wide Frequency
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A New Self-Calibration Method for a Decade Inductive Voltage Divider by Using Bifilar Windings as an Essential Standard at Wide Frequency

机译:以双频绕组为基本标准的数十年级电感分压器自校准新方法

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This paper describes how to calibrate a self-calibration decade inductive voltage divider (S-IVD). The S-IVD consists of windings of a decade main divider and nine bifilar windings as an essential standard. A commercial four-terminal-pair (4TP) $LCR$ meter is used to measure the small differential vector voltages of the S-IVD. The voltage measurement does not require injection signals for zero balancing. The S-IVD can be calibrated by obtaining a part in $10^{7}$ to $10^{5}$ level uncertainties at 120 Hz to 1 MHz using mostly commercial instrumentation. Another IVD as a device under test (DUT) can be calibrated by 1 : 1 direct comparison using the main divider of the S-IVD and the $LCR$ meter as a differential voltage detector.
机译:本文介绍了如何校准自校准十年电感式分压器(S-IVD)。 S-IVD由十个主分频器的绕组和九个双线绕组组成,这是基本标准。商用四端子对(4TP)$ LCR $仪表用于测量S-IVD的较小差分矢量电压。电压测量不需要注入信号即可实现零平衡。可以通过使用大部分商用仪器在120 Hz至1 MHz处获得$ 10 ^ {7} $至$ 10 ^ {5} $电平不确定度的一部分来校准S-IVD。可以使用S-IVD的主分压器和$ LCR $电表作为差分电压检测器,通过1:1直接比较来校准作为被测设备(DUT)的另一个IVD。

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