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    • 8. 发明授权
    • Methods and structure for field flawscan in a dynamically mapped mass storage device
    • 动态映射大容量存储设备中现场瑕疵的方法和结构
    • US07653847B1
    • 2010-01-26
    • US11583767
    • 2006-10-19
    • Bruce A. LiikanenEric D. MudamaJohn W. VanLaanenAndrew W. Vogan
    • Bruce A. LiikanenEric D. MudamaJohn W. VanLaanenAndrew W. Vogan
    • G11C29/00
    • G01R33/1207
    • Methods and structures for performing field flawscan to reduce manufacturing costs of a dynamic mapped storage device. In a dynamic mapped storage device in which all user supplied logical blocks are dynamically mapped by the storage device controller to physical disk blocks, features and aspects hereof permit flawscan testing of a storage device to be completed substantially concurrently with processing write requests for its intended application. A fraction of the storage device may be certified by an initial flawscan performed during manufacturing testing. Statistical sampling sufficient to assure a high probability of achieving specified capacity may be performed to reduce manufacturing time and costs in testing. Final flawscan of the remainder of the storage locations may be performed substantially concurrently with processing of write requests after the device is installed for its intended application. Mapping features and aspects hereof allow the storage device controller to perform flawscan and write operations concurrently.
    • 用于执行现场扫描以降低动态映射存储设备的制造成本的方法和结构。 在其中所有用户提供的逻辑块由存储设备控制器动态地映射到物理磁盘块的动态映射存储设备中,其特征和方面允许对处理对其预期应用的写入请求的存储设备进行大量同时完成的扫描测试 。 存储设备的一小部分可以通过在制造测试期间执行的初始扫描进行认证。 可以执行足以确保实现特定容量的高概率的统计学抽样,以减少制造时间和测试成本。 存储位置的剩余部分的最终的扫描可以在装置针对其预期应用安装之后基本上同时执行写入请求的处理。 映射其特征和方面允许存储设备控制器同时执行扫描和写入操作。
    • 9. 发明授权
    • Efficient drive-level estimation of written-in servo position error
    • 写入伺服位置误差的高效驱动级估计
    • US06115203A
    • 2000-09-05
    • US16552
    • 1998-01-30
    • Hai T. HoToan Q. DoanBruce A. Liikanen
    • Hai T. HoToan Q. DoanBruce A. Liikanen
    • G11B5/596
    • G11B5/59627
    • The invention relates to a disk drive servo apparatus, and method for implementing the same, that maintains a transducer on a substantially non-perturbed path despite the fact that the tracks were written in a perturbed manner by a servo track writer. The invention utilizes a non-causal filter to determine servo track writer repetitive run-out (STW.sub.-- RRO) values for each sector of each track at the drive level. The STW.sub.-- RRO values are stored, preferably in their respective servo sectors on the surface of the disk, for use during track following operations. During read and write operations, the STW.sub.-- RRO values are retrieved from storage and are used to generate position error signals necessary to maintain the transducer on the desired path.
    • 本发明涉及一种磁盘驱动器伺服装置及其实施方法,其将传感器维持在基本上不受干扰的路径上,尽管轨道以伺服轨道写入器以扰动方式写入。 本发明利用非因果滤波器来确定在驱动级别的每个轨道的每个扇区的伺服轨迹写入器重复耗尽(STW-RRO)值。 STW-RRO值优选地存储在盘的表面上的它们各自的伺服扇区中,以便在跟踪操作期间使用。 在读写操作期间,从存储器检索STW-RRO值,并用于产生将换能器保持在所需路径上所必需的位置误差信号。
    • 10. 发明授权
    • Methods and structure for dynamic appended metadata in a dynamically mapped mass storage device
    • 在动态映射的大容量存储设备中动态附加元数据的方法和结构
    • US07685360B1
    • 2010-03-23
    • US11583341
    • 2006-10-19
    • Don BrunnettBruce A. LiikanenJohn MeadEric D. MudamaJohn W. VanLaanenAndrew W. Vogan
    • Don BrunnettBruce A. LiikanenJohn MeadEric D. MudamaJohn W. VanLaanenAndrew W. Vogan
    • G06F12/00
    • G06F3/064G06F3/0608G06F3/0676G06F12/0866
    • Methods and structures for appending metadata with recorded data in a dynamic mapped storage device. In a dynamically mapped storage device in which all user supplied logical blocks are dynamically mapped by the storage device controller to physical disk blocks, features and aspects hereof allow presently unused physical space to be used for storing additional metadata associated with recorded data. As the current capacity ratio of the storage device increases, appending of metadata may cease and previously recorded data including metadata may be re-recorded (migrated) to eliminate the appended metadata. The appended metadata may be used for enhanced diagnosis and analysis of characteristics of the operating storage device and may be used to restore the content of the storage device to an earlier state. The metadata may include, for example, track following position of the read/write head, temperature, head flying height, and time of day.
    • 在动态映射存储设备中添加带有记录数据的元数据的方法和结构。 在其中所有用户提供的逻辑块由存储设备控制器动态映射到物理磁盘块的动态映射存储设备中,其特征和方面允许当前未使用的物理空间用于存储与记录数据相关联的附加元数据。 随着存储设备的当前容量比增加,元数据的附加可能停止,并且可以重新记录(迁移)包括元数据的先前记录的数据以消除附加的元数据。 附加的元数据可以用于增强对操作存储设备的特性的诊断和分析,并且可以用于将存储设备的内容恢复到更早的状态。 元数据可以包括例如读/写头的跟踪位置,温度,头部飞行高度和一天中的时间。