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Precise pulse width measurement in write pre-compensation test

机译:写入预补偿测试中的精确脉冲宽度测量

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Bit density on platters in hard disk drives gets so crowded that the signal stream read out of the magnetic media involves inter-symbol interference. In order to reduce the effect write data timing is tweaked according to specific bit patterns. This "write pre-compensation" is a tiny pulse width modification. Device manufacturers test this functionality by generating a special clock stream whose pulse width is very narrow. Time interval analyzers (TIA) can measure this pulse width precisely. However, the drawback of this is the requirement of a wide analog bandwidth and the need to compensate for a DC signal offset. Compared to a TIA approach, the use of a waveform sampler is shown to be simple, less costly and provides an appropriate capability. This article describes that phase increments of the fundamental frequency component can indicate pulse width increments. A data processing based on fast Fourier transform is described. DC shift has no influence in this method. A measurement instrument does not need a wide analog bandwidth.
机译:硬盘驱动器中磁盘的位密度变得非常拥挤,以至于从磁性介质中读出的信号流涉及符号间干扰。为了降低影响,根据特定的位模式调整写入数据的时序。这种“写预补偿”是微小的脉冲宽度修改。设备制造商通过生成脉冲宽度非常窄的特殊时钟流来测试此功能。时间间隔分析仪(TIA)可以精确测量该脉冲宽度。但是,这样做的缺点是需要宽的模拟带宽,并且需要补偿DC信号偏移。与TIA方法相比,波形采样器的使用非常简单,成本更低,并且具有适当的功能。本文介绍了基本频率分量的相位增量可以指示脉冲宽度增量。描述了基于快速傅立叶变换的数据处理。直流偏移对这种方法没有影响。测量仪器不需要较宽的模拟带宽。

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