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    • 1. 发明授权
    • Patterned media for self-servowriting integrated servo fields
    • 用于自伺服集成伺服领域的图案化介质
    • US08477442B2
    • 2013-07-02
    • US12800300
    • 2010-05-11
    • Thomas Robert AlbrechtJonathan Darrel CokerDavid Timothy Flynn
    • Thomas Robert AlbrechtJonathan Darrel CokerDavid Timothy Flynn
    • G11B5/09G11B21/02G11B5/596
    • G11B5/59688B82Y10/00G11B5/59644G11B5/59666G11B5/743
    • Pre-patterned discrete track media for self-servo writing are described. Embodiments include land and groove patterns for two or more Integrated Servo sequence fields for each servo sector in which one of the Integrated Servo sequence fields is aligned with the data track and a second sequence is offset by one-half of a track width. The lands and grooves between the Integrated Servo sequence fields are preferably the same width as those between the data tracks to facilitate planarization. Alternative embodiments include a sync feature for each servo sector formed by a selected groove and/or land pattern as a marker for the start of the servo fields. Alternative embodiments include a bootstrap zone with servo patterns that are readable when DC-magnetized. Described methods of self-servowriting include ways to adapt to eccentricity and non-circularity of pre-patterned discrete tracks with respect to the head paths.
    • 描述了用于自伺服写入的预先构图的离散轨道介质。 实施例包括用于每个伺服扇区的两个或更多个集成伺服序列字段的平面和凹槽图案,其中集成伺服序列字段中的一个与数据轨道对准,并且第二序列偏移轨道宽度的一半。 集成伺服序列区域之间的焊盘和凹槽优选地与数据磁道之间的平面宽度相同,以便于平坦化。 替代实施例包括由所选择的槽和/或焊盘图案形成的每个伺服扇区的同步特征作为伺服字段开始的标记。 替代实施例包括具有伺服图案的自举区,其在DC磁化时是可读的。 自伺服驱动的描述方法包括适应相对于头部路径的预先构图的离散轨迹的偏心度和非圆度的方法。
    • 2. 发明申请
    • Patterned media for self-servowriting integrated servo fields
    • 用于自伺服集成伺服领域的图案化介质
    • US20110279924A1
    • 2011-11-17
    • US12800300
    • 2010-05-11
    • Thomas Robert AlbrechtJonathan Darrel CokerDavid Timothy Flynn
    • Thomas Robert AlbrechtJonathan Darrel CokerDavid Timothy Flynn
    • G11B21/02G11B5/60G11B5/82
    • G11B5/59688B82Y10/00G11B5/59644G11B5/59666G11B5/743
    • Pre-patterned discrete track media for self-servo writing are described. Embodiments include land and groove patterns for two or more Integrated Servo sequence fields for each servo sector in which one of the Integrated Servo sequence fields is aligned with the data track and a second sequence is offset by one-half of a track width. The lands and grooves between the Integrated Servo sequence fields are preferably the same width as those between the data tracks to facilitate planarization. Alternative embodiments include a sync feature for each servo sector formed by a selected groove and/or land pattern as a marker for the start of the servo fields. Alternative embodiments include a bootstrap zone with servo patterns that are readable when DC-magnetized. Described methods of self-servowriting include ways to adapt to eccentricity and non-circularity of pre-patterned discrete tracks with respect to the head paths.
    • 描述了用于自伺服写入的预先构图的离散轨道介质。 实施例包括用于每个伺服扇区的两个或更多个集成伺服序列字段的平面和凹槽图案,其中集成伺服序列字段中的一个与数据轨道对准,并且第二序列偏移轨道宽度的一半。 集成伺服序列区域之间的焊盘和凹槽优选地与数据磁道之间的平面宽度相同,以便于平坦化。 替代实施例包括由所选择的槽和/或焊盘图案形成的每个伺服扇区的同步特征作为伺服字段开始的标记。 替代实施例包括具有伺服图案的自举区,其在DC磁化时是可读的。 自伺服驱动的描述方法包括适应相对于头部路径的预先构图的离散轨迹的偏心度和非圆度的方法。
    • 3. 发明授权
    • Data recording system with servo pattern having pseudo-noise sequences
    • 具有伪噪声序列的伺服模式的数据记录系统
    • US06995938B2
    • 2006-02-07
    • US10841034
    • 2004-05-06
    • Jonathan Darrel CokerDavid Timothy FlynnRichard Leo Galbraith
    • Jonathan Darrel CokerDavid Timothy FlynnRichard Leo Galbraith
    • G11B5/596
    • G11B5/59655G11B5/59605
    • A data recording system uses a recording medium in which the tracks have pseudo-noise (PN) sequences with good autocorrelation properties as servo information for controlling the position of the recording head. A first set of alternating tracks uses a leading pseudo-random binary sequence (PRBS), which is a PN sequence with good autocorrelation properties, and a following PRBS that is cyclically shifted from the leading PRBS. A second set of alternating tracks interleaved with the first set also has a leading PRBS and a following PRBS that is cyclically shifted from the leading PRBS, but the leading PRBS in each of the tracks in the second set is offset along-the-track from the leading PRBS in the tracks of the first set. The head positioning control system uses the leading PRBS to generate a servo timing mark (STM), the cyclic shift to generate track identification (TID), and the following PRBS from adjacent tracks to generate the head position error signal (PES).
    • 数据记录系统使用其中轨道具有良好自相关特性的伪噪声(PN)序列的记录介质,作为用于控制记录头位置的伺服信息。 第一组交替轨道使用前导伪随机二进制序列(PRBS),其是具有良好自相关特性的PN序列,以及从前导PRBS循环移位的以下PRBS。 与第一组交织的第二组交替轨迹还具有前导PRBS和从前导PRBS循环移位的后续PRBS,但是第二组中的每个轨道中的前导PRBS沿着轨迹偏移 领先的PRBS在第一集的轨道。 头部定位控制系统使用前导PRBS来产生伺服定时标记(STM),循环移位以产生轨迹识别(TID),以及来自相邻轨道的后续PRBS以产生头部位置误差信号(PES)。
    • 9. 发明授权
    • Information storage device with multiple-use fields in servo pattern
    • 具有多用途伺服模式的信息存储装置
    • US09311942B2
    • 2016-04-12
    • US12653874
    • 2009-12-18
    • Jonathan Darrel CokerDavid Timothy Flynn
    • Jonathan Darrel CokerDavid Timothy Flynn
    • G11B5/09G11B5/596
    • G11B5/59688G11B5/59655
    • An embodiment of the present invention implements some or all major servo subfunctions for a storage device in integrated servo fields comprising sequences of encoded bits having selected mathematical properties. The integrated servo field is composed of a number of encoded sequences, which are members of a selected sequence set that is constrained to preferably provide some or all of the following functions: the Servo Track Mark (STM), the Position Error Signal (PES) and positional information such as the track-ID. The integrated servo fields can provide a Position Error Signal (PES) in relation to the center of a data track through the amplitude of the signal read for adjacent sequences. The servo system detects the sequences in the signal from the read head using a set of digital filters for the set of encoded sequences.
    • 本发明的实施例在包括具有所选数学特性的编码比特序列的集成伺服字段中实现存储设备的一些或所有主要伺服子功能。 集成伺服字段由多个编码序列组成,编码序列是被选择的序列集合的成员,其被限制为优选地提供以下功能中的一些或全部:伺服轨迹标记(STM),位置误差信号(PES) 以及诸如轨道ID的位置信息。 集成的伺服字段可以通过相邻序列读取的信号的幅度来提供与数据轨道的中心相关的位置误差信号(PES)。 伺服系统使用一组编码序列的数字滤波器来检测来自读取头的信号中的序列。