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A Proposal for DSO Bandwidth Extension through Synchronous Time Interleaving

机译:通过同步时间交织的DSO带宽扩展的提案

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Data transfer rates for aggregated video data stream and within data centers nowadays require an electrical bandwidth up to 100 GHz. This poses big challenges for the design of proper test and measurement solutions, notably related to the acquisition of signals with such a wide bandwidth. To grant sufficient bandwidth and related sample rate, modern oscilloscopes have been using techniques based on frequency-interleaving and time-interleaving, respectively. Earlier this year, an alternative technique has been presented in a white paper [1],[2] based on which an oscilloscope that can offer an electrical bandwidth that is two times that of the adopted ADC has been launched. This result is obtained by combining the operations of a couple of time interleaved channels, each one made up of a mixer followed by an ADC. The paper presents a synchronous time interleaving technique, which can be regarded as an extension of the aforementioned technique. In fact, the proposed technique can be implemented through an architecture that includes four channels, each one including a mixer and an ADC, the latter having an input bandwidth equal to just one fourth the electrical bandwidth achieved by the system.
机译:现在,聚合视频数据流和数据中心内的数据传输速率需要高达100 GHz的电气带宽。这对适当的测试和测量解决方案的设计构成了大量挑战,特别是与具有这种宽带宽的信号采集的信号相关。为了授予足够的带宽和相关的采样率,现代示波器分别使用基于频率交织和时间交织的技术。今年早些时候,替代技术已在白纸[1],[2]中呈现,其中示波器可以提供电带宽,该示波器是已经启动了采用的ADC的两倍的电气带宽。通过组合几个时间交错通道的操作来获得该结果,每个通道由混频器组成,然后是ADC。本文呈现了一种同步时间交织技术,可以被视为上述技术的延伸。事实上,所提出的技术可以通过包括四个通道的架构来实现,每个架构包括混频器和ADC,后者具有等于由系统实现的电气带宽的输入带宽。

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