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    • 1. 发明申请
    • Transport delay and jitter measurements
    • 传输延迟和抖动测量
    • US20080080605A1
    • 2008-04-03
    • US11529856
    • 2006-09-28
    • Kan TanJohn C. CalvinKalev Sepp
    • Kan TanJohn C. CalvinKalev Sepp
    • H04B3/46
    • H04L1/205G01R29/26G01R31/31709
    • A method of measuring transport delay and jitter with a realtime oscilloscope using cross-correlation acquires waveforms from two test points in a system under test. Clock recovery is run on both waveforms to obtain respective rates and offsets. A time offset between the two waveforms is computed. The jitter from the two test points is filtered and a mean-removed cross-correlation coefficient is computed from the filtered jitters. A fractional delay is computed using interpolation based on LMS error, and the respective computational components are summed to compute a transport delay between the two test points. The transport delay may be used to adjust clock edges from one waveform for comparison with data transition edges of the other waveform to measure jitter.
    • 使用互相关的实时示波器测量传输延迟和抖动的方法从被测系统的两个测试点获取波形。 在两个波形上运行时钟恢复以获得相应的速率和偏移量。 计算两个波形之间的时间偏移。 对两个测试点的抖动进行滤波,并从滤波的抖动中计算平均去除的互相关系数。 使用基于LMS误差的插值计算分数延迟,并将相应的计算组件相加以计算两个测试点之间的传输延迟。 传输延迟可用于从一个波形调整时钟边沿,以便与其他波形的数据转换边沿进行比较,以测量抖动。
    • 2. 发明授权
    • Transport delay and jitter measurements
    • 传输延迟和抖动测量
    • US07912117B2
    • 2011-03-22
    • US11529856
    • 2006-09-28
    • Kan TanJohn C. CalvinKalev Sepp
    • Kan TanJohn C. CalvinKalev Sepp
    • H04B3/46
    • H04L1/205G01R29/26G01R31/31709
    • A method of measuring transport delay and jitter with a realtime oscilloscope using cross-correlation acquires waveforms from two test points in a system under test. Clock recovery is run on both waveforms to obtain respective rates and offsets. A time offset between the two waveforms is computed. The jitter from the two test points is filtered and a mean-removed cross-correlation coefficient is computed from the filtered jitters. A fractional delay is computed using interpolation based on LMS error, and the respective computational components are summed to compute a transport delay between the two test points. The transport delay may be used to adjust clock edges from one waveform for comparison with data transition edges of the other waveform to measure jitter.
    • 使用互相关的实时示波器测量传输延迟和抖动的方法从被测系统的两个测试点获取波形。 在两个波形上运行时钟恢复以获得相应的速率和偏移量。 计算两个波形之间的时间偏移。 对两个测试点的抖动进行滤波,并从滤波的抖动中计算平均去除的互相关系数。 使用基于LMS误差的插值计算分数延迟,并将相应的计算组件相加以计算两个测试点之间的传输延迟。 传输延迟可用于从一个波形调整时钟边沿,以便与其他波形的数据转换边沿进行比较,以测量抖动。
    • 4. 发明申请
    • Reference clock recovery for
    • “眼”测量参考时钟恢复
    • US20070133726A1
    • 2007-06-14
    • US11228664
    • 2005-09-15
    • Srikrishna NadigKalev Sepp
    • Srikrishna NadigKalev Sepp
    • H04L7/02
    • H04L7/0058H03L7/00H04L1/205H04L7/033
    • A method for recovering a clock from a serial data stream for use in producing “eye” diagram measurements includes determining an initial recovered clock from the serial data stream based upon transition edges. Time interval error values are then determined as a function of the transition edges and corresponding initial recovered clock times. Time interval error values are interpolated for initial recovered clock times not associated with transition edges to produce a complete set of time interval error values. The complete set of time interval error values are lowpass filtered to produce a filtered set of time interval error values. The clock for the serial data stream is reconstructed from the filtered set of time interval error values.
    • 用于从用于产生“眼”图测量的串行数据流中恢复时钟的方法包括基于过渡边缘确定来自串行数据流的初始恢复时钟。 然后,确定时间间隔误差值作为过渡边缘和对应的初始恢复时钟时间的函数。 对于与过渡边缘无关的初始恢复时钟时间,内插时间间隔误差值,以产生一整套时间间隔误差值。 完整的一组时间间隔误差值被低通滤波,以产生经滤波的一组时间间隔误差值。 串行数据流的时钟从经过滤的一组时间间隔误差值重建。
    • 5. 发明授权
    • Reference clock recovery for “eye” measurements
    • “眼”测量参考时钟恢复
    • US07623581B2
    • 2009-11-24
    • US11228664
    • 2005-09-15
    • Srikrishna H. NadigKalev Sepp
    • Srikrishna H. NadigKalev Sepp
    • H04L12/28G01R13/00
    • H04L7/0058H03L7/00H04L1/205H04L7/033
    • A method for recovering a clock from a serial data stream for use in producing “eye” diagram measurements includes determining an initial recovered clock from the serial data stream based upon transition edges. Time interval error values are then determined as a function of the transition edges and corresponding initial recovered clock times. Time interval error values are interpolated for initial recovered clock times not associated with transition edges to produce a complete set of time interval error values. The complete set of time interval error values are lowpass filtered to produce a filtered set of time interval error values. The clock for the serial data stream is reconstructed from the filtered set of time interval error values.
    • 用于从用于产生“眼”图测量的串行数据流中恢复时钟的方法包括基于过渡边缘确定来自串行数据流的初始恢复时钟。 然后,确定时间间隔误差值作为过渡边缘和对应的初始恢复时钟时间的函数。 对于与过渡边缘无关的初始恢复时钟时间,内插时间间隔误差值,以产生一整套时间间隔误差值。 完整的一组时间间隔误差值被低通滤波,以产生经滤波的一组时间间隔误差值。 串行数据流的时钟从经过滤的一组时间间隔误差值重建。