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High-speed experiments on a QFP-based comparator for ADCs with 18-GHz sample rate and 5-GHz input frequency

机译:在基于QFP的比较器上针对18 GHz采样率和5 GHz输入频率的ADC进行高速实验

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The authors report on the high-speed operation of a superconducting comparator circuit, based on coupling the quantum flux parametron (QFP) to an RF SQUID, which can be used to build a flash-type analog-to-digital converter (ADC). Simulations of this circuit show that it is expected to achieve operation with input signal bandwidths greater than 4 GHz and with a dynamic range equal to at least 4 b of resolution. A QFP-based comparator fabricated with a process using NbN/Pb-alloy Josephson junctions of 5 mu m by 5 mu m and a current density of 100 A/cm/sup 2/ has been examined to evaluate the properties of the QFP-ADC. Analog-to-digital conversion of the comparator has been observed with a QFP activation frequency up to 18.2 GHz. By employing a sampling method, input signals with frequencies up to 5.4 GHz have also been digitized.
机译:作者报告了超导比较器电路的高速操作,该电路基于将量子通量参量子(QFP)耦合到RF SQUID,可用于构建闪存型模数转换器(ADC)。该电路的仿真表明,期望在输入信号带宽大于4 GHz且动态范围至少等于4b分辨率的情况下实现工作。已经研究了一种基于QFP的比较器,该比较器是使用NbN / Pb合金约瑟夫森结以5μmx5μm的电流和100 A / cm / sup 2 /的电流密度制造的,以评估QFP-ADC的性能。在高达18.2 GHz的QFP激活频率下观察到了比较器的模数转换。通过采用采样方法,频率高达5.4 GHz的输入信号也已被数字化。

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