Superconductor digital-to-analog converter based on processing of SFQ pulses

V. Semenov, P. Shevchenko, Y. Polyakov
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引用次数: 9

Abstract

Recently we designed and successfully tested a prototype of a superconducting digital-to-analog converter (DAC) based on processing single flux quantum (SFQ) pulses. Two unique features make the device very attractive for metrology applications: (i) The generation of output voltage is based on the fundamentally accurate Josephson frequency-to-voltage relationship. (ii) The device does not require any external signals with frequencies higher than 100 MHz. It is expected that the DAC will be used as a key component of novel standards and calibrators of ac voltage with frequency up to 1 MHz. The implemented prototype has low magnitude of output voltage (about 10 mV) which is far lower than the 1 to 10 V target magnitude.
基于SFQ脉冲处理的超导体数模转换器
最近,我们设计并成功测试了一个基于处理单通量量子(SFQ)脉冲的超导数模转换器(DAC)的原型。两个独特的功能使该设备非常有吸引力的计量应用:(i)输出电压的产生是基于基本准确的约瑟夫森频率电压关系。(ii)设备不需要任何频率高于100mhz的外部信号。预计DAC将用作频率高达1 MHz的交流电压新标准和校准器的关键组件。所实现的原型具有较低的输出电压量级(约10 mV),远低于1至10 V的目标量级。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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