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Resistance bridge based on the cryogenic current comparator in atransport dewar

机译:基于低温电流比较器的运输杜瓦瓶电阻桥

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An optimized resistance bridge based on the Cryogenic Current Comparator (CCC) with SQUID readout has been developed. The bridge can be used for routine secondary resistance calibrations as well as for the traceability of 100 Ω to the quantum Hall resistance. The CCC-SQUID, shielding and wiring are mounted in a telescopic insert, fitted in a low-evaporation rate, transportable liquid He dewar, with an autonomy of around 1 month. A difference compensator method is used to balance the bridge. A new, more reliable and self-standing bridge electronics has been fabricated and tested. An uncertainty in the comparison of resistors at least one order of magnitude better than room temperature CCs is expected
机译:已经开发了基于带有SQUID读数的低温电流比较器(CCC)的优化电阻桥。该电桥可用于常规的次级电阻校准,以及可追溯至100Ω的量子霍尔电阻。 CCC-SQUID,屏蔽和布线安装在可伸缩的插入物中,该插入物以低蒸发率,可运输的液态杜瓦瓶装,使用寿命约为1个月。差异补偿器方法用于平衡电桥。一种新的,更可靠和自立的桥式电子设备已经过制造和测试。电阻比较中的不确定性至少比室温CC高一个数量级

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