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Characterization of Write-Signal Efficiency Utilizing Write-Current Dynamic Wave-Shaping

机译:利用写电流动态波形对写信号效率进行表征

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The continued increase in disk-storage areal density creates challenges for the write-head design and the write-current wave shape to control the magnetic fields that are written on the disk's recording media. The preamplifier's write driver has programmable write-current controls, such as overshoot level, overshoot duration, baseline level, and rise/fall speeds for both the write transition and the overshoot relaxation to the write-current baseline level. These programmable write-current controls are used to achieve the desired magnetic track-print on the disk's recording media. Typically, the programmable write-current controls are independently set before the first write-data sequence (or sector) and may be adjusted between sectors. Another consideration is adjusting the write-current level as a function of its frequency and/or pattern. The write-current baseline level affects the written magnetic-core track width (MCW) on the media. A higher baseline level typically translates to a wider MCW. The other dominant parameter is the write-current overshoot level. The overshoot level affects the cross-track interference (XTI) as well as the MCW on the media. A higher overshoot level typically translates to a higher likelihood of XTI and a wider MCW. By implementing dynamic wave-shaping (DWS) as a function of the write data pattern, the XTI and MCW can be managed. This paper reviews the programmable write-current controls, the new architecture designed to implement DWS, the impact of write-current baseline and overshoot levels on XTI and MCW, and last the experimental data using DWS.
机译:磁盘存储区域密度的持续增加给写头设计和写电流波形带来挑战,以控制写在磁盘记录介质上的磁场。前置放大器的写驱动器具有可编程的写电流控制,例如过冲级别,过冲持续时间,基线级别以及写转换和过冲松弛到写电流基线级别的上升/下降速度。这些可编程的写电流控制用于在磁盘的记录介质上实现所需的磁道打印。通常,可编程写电流控制在第一写数据序列(或扇区)之前被独立设置,并且可以在扇区之间进行调整。另一个考虑是根据其频率和/或模式调整写电流水平。写入电流的基线水平会影响介质上的写入磁芯磁道宽度(MCW)。较高的基线水平通常会转换为较宽的MCW。另一个主要参数是写电流过冲水平。过冲级别会影响跨轨干扰(XTI)以及媒体上的MCW。较高的超调水平通常会转换为XTI的可能性较高,并且MCW会更宽。通过根据写数据模式实现动态波形整形(DWS),可以管理XTI和MCW。本文回顾了可编程写电流控制,设计用于实现DWS的新体系结构,写电流基准和过冲水平对XTI和MCW的影响,最后使用DWS进行了实验数据的研究。

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