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Flux quantum sigma-delta analog-to-digital converters for rf signals

机译:用于RF信号的磁通量子sigma-delta模数转换器

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The sigma-delta architecture is the method of choice for analog-to-digital converters (ADCs) for high dynamic range applications. This architecture uses oversampling and precise feedback to generate a shaped spectral distribution of the quantization noise. Subsequent digital filtering suppresses out-of-band quantization noise, yielding a large signal to in-band noise ratio. A unique advantage of superconducting electronics is the availability of the flux quantum to provide quantum mechanically accurate feedback at GHz rates. Josephson digital technology extends sigma-delta ADCs from MHz sampling rates to GHz sampling rates, from kHz signal bandwidths to MHz signal bandwidths, with comparable or better dynamic range when compared to semiconductor implementations. This paper presents circuits for Josephson sigma-delta ADCs, including single-loop and double-loop modulators operating at sampling rates up to 2 GHz, and circuits for quantized feedback. The first demonstration of double-loop noise shaping is also presented.
机译:sigma-delta架构是用于高动态范围应用的模数转换器(ADC)的首选方法。该架构使用过采样和精确反馈来生成量化噪声的整形频谱分布。随后的数字滤波可抑制带外量化噪声,从而产生较大的信噪比。超导电子学的独特优势是通量量子的可用性,可在GHz速率下提供量子机械精确的反馈。 Josephson数字技术将sigma-delta ADC从MHz采样率扩展到GHz采样率,从kHz信号带宽扩展到MHz信号带宽,与半导体实现方案相比具有可比或更好的动态范围。本文介绍了约瑟夫森sigma-delta ADC的电路,包括以高达2 GHz的采样率工作的单环路和双环路调制器,以及量化反馈的电路。还介绍了双环路噪声整形的第一个演示。

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