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AC–DC Transfer Standard Measurements and Generalized Compensation With the AC Josephson Voltage Standard

机译:AC-DC传输标准测量和使用AC Josephson电压标准的广义补偿

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We present AC-DC transfer standard measurements using the National Institute of Standards and Technology''s pulse-driven AC Josephson voltage standard source. We have investigated the frequency dependence for several output voltages up to 200 mV for frequencies from 2.5 to 100 kHz. We found that, as the frequency increases, the ac-dc differences for the two arrays on the same chip do not agree. We explored this deviation in ac-dc difference for the two arrays by investigating different configurations of the probe cabling and wiring, chip carriers, and on-chip circuit design. We found that the circuit design produced the greatest improvement, particularly at the highest frequency (100 kHz), where the deviation in ac-dc difference was reduced by more than 60%. In this paper, we also demonstrate tenfold higher output voltages and improved operating margins for arbitrary (nonsinusoidal) waveforms. These enhancements were accomplished by implementing a more general current bias to the arrays having the same harmonic content as that of the synthesized arbitrary waveform.
机译:我们使用美国国家标准技术研究院的脉冲驱动交流约瑟夫森电压标准源来提供交流-直流转换标准测量。我们已经研究了从2.5到100 kHz的频率下几个高达200 mV的输出电压的频率依赖性。我们发现,随着频率的增加,同一芯片上两个阵列的AC-DC差异不一致。我们通过研究探头电缆和接线,芯片载体和芯片上电路设计的不同配置,探索了两个阵列在交直流差方面的偏差。我们发现电路设计产生了最大的改进,特别是在最高频率(100 kHz)时,交直流差的偏差减少了60%以上。在本文中,我们还展示了任意(非正弦)波形的十倍更高的输出电压和更高的工作裕量。这些增强是通过对具有与合成任意波形相同谐波含量的阵列实施更通用的电流偏置来实现的。

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