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    • 2. 发明授权
    • Thermal asperity pointer for servo sector
    • 伺服扇区的热凹凸指针
    • US06335840B1
    • 2002-01-01
    • US09188836
    • 1998-11-09
    • Daniel James Malone
    • Daniel James Malone
    • G11B502
    • G11B5/59622G11B5/00G11B5/012G11B5/09G11B5/59683G11B19/04
    • A direct access storage device (DASD) servo control system controls movement of a magneto-resistive (MR) read/write head in response to a readback signal generated when the MR head repeatedly passes adjacent multiple servo fields and data fields of the recording medium. The servo control system receives multiple data samples, detects a thermal asperity in the readback signal when the MR transducer is adjacent a servo field of the recording medium, determines that the servo field data samples affected by the thermal asperity are invalid due to possible data errors, and operates a servo demodulator in response to the servo field thermal asperity before the MR transducer is next adjacent the servo field. In a DASD with a rotating disk, for example, the thermal asperity response can be implemented before one revolution of the disk has been completed after the thermal asperity is encountered. This permits data samples that have been corrupted by the thermal asperity to be ignored from servo processing, thereby reducing the uncertainty in the servo information being processed. If desired, the response can be implemented before the next servo sector is encountered. In this way, the DASD more effectively utilizes storage system resources and, in particular, handles thermal asperities more efficiently.
    • 直接访问存储设备(DASD)伺服控制系统响应于当MR磁头重复通过相邻的多个伺服磁场和记录介质的数据区域时产生的回读信号来控制磁阻(MR)读/写磁头的移动。 伺服控制系统接收多个数据样本,当MR传感器与记录介质的伺服磁道相邻时,检测回读信号中的热不均匀性,确定受热不均匀影响的伺服磁场数据样本由于可能的数据错误而无效 并且在MR传感器邻近伺服磁场之前响应伺服磁场热粗糙度操作伺服解调器。 例如,在具有旋转盘的DASD中,可以在遇到热凹凸之后完成盘的一圈之前实现热凹凸响应。 这允许从伺服处理中忽略被热不平坦破坏的数据样本,从而减少正在处理的伺服信息的不确定性。 如果需要,可以在遇到下一个伺服扇区之前实现响应。 以这种方式,DASD更有效地利用存储系统资源,特别是更有效地处理热凹凸。