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A method for evaluating error rate after ECC considering position jitter

机译:考虑位置抖动后ECC后评估错误率的方法

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Since there is degradation of SNR along with increasing areal density of hard disk drive, it is getting difficult to maintain adequate raw error rate and a role of ECC is getting more important. A current trend of read channels tends to have RLL codes with long code length for the sake of high code rate, but on the other hand error propagation is becoming controversial problem. Meanwhile, accomplishment of high areal density needs read/write design considering not only linear density but also track density. We developed a method for evaluating error rate after ECC considering position fluctuation of a head in cross track direction. The results obtained from this method show good agreement with real data.
机译:由于SNR的降低随着硬盘驱动器的增加而增加,因此难以保持足够的原始错误率并且ECC的作用更为重要。 目前读取信道的趋势往往具有长码长的RLL代码,以获得高码率,但另一方面,另一方面,误差传播正在变得有争议的问题。 同时,考虑不仅是线性密度而且追踪密度,需要读/写设计的高度密度需要读/写设计。 我们开发了一种用于评估ECC以考虑横向轨道方向的头部位置波动的误差率的方法。 从该方法获得的结果显示了与真实数据的良好协议。

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