首页> 外文期刊>IEEE transactions on circuits and systems . I , Regular papers >Concurrent Multi-Channel Crosstalk Jitter Characterization Using Coprime Period Channel Stimulus
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Concurrent Multi-Channel Crosstalk Jitter Characterization Using Coprime Period Channel Stimulus

机译:使用互质周期通道激励进行并发多通道串扰抖动表征

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In recent years, the use of highly parallelized and high-speed data links has exacerbated the problem of crosstalk coupling. Signals with high frequency components couple to and degrade the quality of signals in adjacent lines aggressively with reduced device dimensions. In this paper, we propose a methodology for characterizing multiple crosstalk jitter effects in the time domain using a single data capture without the use of any channel models. The method uses repetitive data patterns across different signal lines with coprime periods. Each signal with crosstalk effects is digitized using sub-Nyquist sampling, and after back-end digital signal processing, the original transmitted signal on each line is isolated from its crosstalk components. Mathematical analysis shows that only by using patterns with coprime lengths, unbiased crosstalk characterization is possible. Hardware measurements support the proposed test methodology.
机译:近年来,高度并行化和高速数据链路的使用加剧了串扰耦合的问题。具有高频成分的信号会以减小的设备尺寸积极耦合到相邻线路中并降低其质量。在本文中,我们提出了一种在不使用任何信道模型的情况下使用单个数据捕获来表征时域中多个串扰抖动影响的方法。该方法使用具有互质周期的跨不同信号线的重复数据模式。每个具有串扰影响的信号都使用次奈奎斯特采样进行数字化,并且在进行后端数字信号处理之后,将每条线上的原始传输信号与其串扰分量隔离开。数学分析表明,只有使用具有互质长度的模式,才能实现无偏串扰特性。硬件测量支持建议的测试方法。

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