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Enhanced Resolution Time-Domain Reflectometry for High Speed Channels: Characterizing Spatial Discontinuities with Non-ideal Stimulus

机译:高速通道的增强分辨率时域反射仪:利用非理想刺激表征空间不连续性

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In the recent past, there has been steady growth in the data transfer rate of modern digital serial communication systems. Consequently, accurate characterization of high-speed signal transmission lines is necessary for ensuring high signal integrity. Time domain reflectometry (TDR) has been widely used in prior research to characterize high speed interconnect. The accuracy of the characterization depends on the sampling rate and the slew rate of the TDR input excitation signal. At high speeds it is not always possible to deliver "perfect" (impulse/step) TDR stimulus. In this paper, an algorithm is presented to compensate for the inherent distortion in nonideal TDR stimulus to improve the accuracy of interconnect characterization. The algorithm is applied to the problem of micro strip transmission line characterization for identifying discontinuities in signal interconnect. Hardware measurements validate the effectiveness of the proposed technique.
机译:在最近的过去,现代数字串行通信系统的数据传输速率一直稳定增长。因此,为确保高信号完整性,必须对高速信号传输线进行准确的特性分析。时域反射仪(TDR)已在现有研究中广泛用于表征高速互连。表征的准确性取决于TDR输入激励信号的采样率和压摆率。在高速下,并非总是能够提供“完美的”(脉冲/步进)TDR刺激。本文提出了一种算法来补偿非理想TDR激励中的固有失真,以提高互连特性的准确性。该算法适用于微带传输线表征问题,以识别信号互连中的不连续性。硬件测量验证了所提出技术的有效性。

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