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Phase tree: a periodic, fractional flux quantum vernier for high-speed interpolation of analog-to-digital converters

机译:相树:周期性的分数通量量子游标,用于模数转换器的高速内插

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A Josephson junction circuit that can rapidly track and record a magnetic flux signal to a small binary fraction of the flux quantum is proposed. This so-called phase tree circuit behaves periodically, recording the residue of the signal modulo the flux quantum in 2/sup p/ths of a flux quantum for a p-level binary tree. Signal quantization is accomplished by comparators that read the 2/sup p-1/ circulating currents in the leaf-level branches, providing a total of 2/sup p/ possibilities in the periodic code. The phase tree can therefore be used as a vernier, linear over a large number of periods because a single analog element determines the quantization levels once the network is properly biased. A system consisting of a conventional m-bit analog-to-digital converter (ADC m approximately=4-7) and an auxiliary p-bit phase tree interpolator (p approximately=2-5) can achieve at least m+p-1 bits without loss of bandwidth or sample rate.
机译:提出了一种约瑟夫森结电路,该电路可以快速跟踪磁通量信号并将其记录到磁通量量子的很小的二进制分数中。这种所谓的相树电路周期性地工作,以p级二叉树的通量量子的2 / s / p / th记录以通量量子为模的信号残差。信号量化由比较器完成,该比较器读取叶级分支中的2 / sup p-1 /循环电流,从而在周期码中提供总共2 / sup p /的可能性。因此,相位树可以用作大量周期内的线性游标,因为一旦网络受到适当的偏置,单个模拟元素就可以确定量化水平。由常规m位模数转换器(ADC m大约为4-7)和辅助p位相位树内插器(p大约为2-5)组成的系统至少可以实现m + p-1位,而不会损失带宽或采样率。

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