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On timing recovery from full-wave-rectified magnetic signals

机译:从全波整流磁信号中恢复定时

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Fullwave rectified magnetic readback signals have a frequency component at the bit frequency, which can be utilized for timing. Feedforward timing can provide quick bit resync when recovering from thermal asperities, since it doesn't depend on a sync field. To be usable, the timing phase must vary little with the binary data, and the timing signal amplitude range must be reasonable. We compute the phase and amplitude distributions for all periodic patterns of length 9, as well as for PRBS patterns. We conclude that the lower the signal ISI, the smaller the timing phase shift. A rate 8/9 code reduces the timing shift to 2% for PR4, 5% for EPR4. Uncoded PRBS signals produce less than 2% timing shift.
机译:全波整流的磁回读信号在比特频率处具有频率分量,可以将其用于计时。从热粗糙状态恢复时,前馈时序可以提供快速的位重新同步,因为它不依赖于同步字段。为了可用,定时相位必须随二进制数据变化很小,并且定时信号幅度范围必须合理。我们计算长度为9的所有周期性模式以及PRBS模式的相位和幅度分布。我们得出的结论是,信号ISI越低,定时相移就越小。速率为8/9的代码将PR4的时序偏移降低到2%,将EPR4的时序偏移降低到5%。未编码的PRBS信号产生小于2%的时序偏移。

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