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    • 3. 发明授权
    • Magnetic recording apparatus
    • 磁记录装置
    • US07489470B2
    • 2009-02-10
    • US11725038
    • 2007-03-15
    • Hiroshi UchidaMirei HosonoHideki OhzekiTetsuo Ueda
    • Hiroshi UchidaMirei HosonoHideki OhzekiTetsuo Ueda
    • G11B5/596
    • G11B5/59627
    • Embodiments of the present invention provide a magnetic recording apparatus capable of generating RRO compensation information that can expand the disturbance frequency range in which to compensate for RRO. Embodiments of the present invention describe a magnetic recording apparatus that uses a plurality of repetitive control systems to detect repeatable runout during the rotation of a magnetic recording medium for a frequency characteristic of each of the repetitive control systems. The magnetic recording apparatus further generates compensation information to compensate for each of the detected repeatable runout. The magnetic recording apparatus still further writes the compensation information generated for each of the repetitive control systems to a servo signal, thus suppressing and controlling the repeatable runout.
    • 本发明的实施例提供一种磁记录装置,其能够产生可以扩大其中补偿RRO的干扰频率范围的RRO补偿信息。 本发明的实施例描述了一种磁记录装置,其使用多个重复控制系统来检测用于每个重复控制系统的频率特性的磁记录介质旋转期间的可重复跳动。 磁记录装置进一步产生补偿信息以补偿每个检测到的可重复跳动。 磁记录装置还将针对每个重复控制系统生成的补偿信息写入伺服信号,从而抑制和控制可重复的跳动。
    • 5. 发明授权
    • Method and apparatus for detecting servo timing marks in a magnetic disk system
    • 用于检测磁盘系统中的伺服定时标记的方法和装置
    • US07675701B2
    • 2010-03-09
    • US11600593
    • 2006-11-15
    • Hideki OhzekiNoboru YoshidaKazuyuki IshibashiTetsuo UedaIsao YonedaToshiaki Wada
    • Hideki OhzekiNoboru YoshidaKazuyuki IshibashiTetsuo UedaIsao YonedaToshiaki Wada
    • G11B5/09
    • G11B5/59688
    • Detection capability of a servo timing mark (STM) is improved. Long STM is configured by pseudo-STM forming part of an AGC/PLL pattern and intrinsic STM. When a system can not recognize the intrinsic STM, it keeps a state that a sector detection window is opened, and is operated in a long STM detection mode to recognize the long STM, thereby generates an STM detection signal. After the STM detection signal has been generated, an STM detection window is closed, and the system is operated in an intrinsic STM detection mode. Since the long STM has longer bit length than the intrinsic STM, it has high discriminating power with respect to other bit patterns. Therefore, even if the sector detection window is remained to be in an opened state, bit strings of data sector, address information in a servo sector or the like is not falsely recognized.
    • 提高伺服定时标志(STM)的检测能力。 长STM由构成AGC / PLL模式和固有STM的一部分的伪STM构成。 当系统不能识别本征STM时,它保持扇区检测窗口打开的状态,并且以长STM检测模式操作以识别长STM,从而生成STM检测信号。 在产生STM检测信号之后,关闭STM检测窗口,并以本征STM检测模式操作系统。 由于长的STM具有比固有的STM更长的位长度,所以它对于其他位模式具有很高的识别能力。 因此,即使扇区检测窗口保持为打开状态,也不会错误地识别数据扇区的位串,伺服扇区中的地址信息等。
    • 6. 发明申请
    • Magnetic disk system
    • 磁盘系统
    • US20070146919A1
    • 2007-06-28
    • US11600593
    • 2006-11-15
    • Hideki OhzekiNoboru YoshidaKazuyuki IshibashiTetsuo UedaIsao YonedaToshiaki Wada
    • Hideki OhzekiNoboru YoshidaKazuyuki IshibashiTetsuo UedaIsao YonedaToshiaki Wada
    • G11B5/09G11B20/10
    • G11B5/59688
    • Detection capability of a servo timing mark (STM) is improved. Long STM is configured by pseudo-STM forming part of an AGC/PLL pattern and intrinsic STM. When a system can not recognize the intrinsic STM, it keeps a state that a sector detection window is opened, and is operated in a long STM detection mode to recognize the long STM, thereby generates an STM detection signal. After the STM detection signal has been generated, an STM detection window is closed, and the system is operated in an intrinsic STM detection mode. Since the long STM has longer bit length than the intrinsic STM, it has high discriminating power with respect to other bit patterns. Therefore, even if the sector detection window is remained to be in an opened state, bit strings of data sector, address information in a servo sector or the like is not falsely recognized.
    • 提高伺服定时标志(STM)的检测能力。 长STM由构成AGC / PLL模式和固有STM的一部分的伪STM构成。 当系统不能识别本征STM时,它保持扇区检测窗口打开的状态,并且以长STM检测模式操作以识别长STM,从而生成STM检测信号。 在产生STM检测信号之后,关闭STM检测窗口,并以本征STM检测模式操作系统。 由于长的STM具有比固有的STM更长的位长度,所以它对于其他位模式具有很高的识别能力。 因此,即使扇区检测窗口保持为打开状态,也不会错误地识别数据扇区的位串,伺服扇区中的地址信息等。
    • 10. 发明授权
    • Servo system for disk-flutter in rotating storage systems
    • 用于旋转存储系统中的磁盘驱动的伺服系统
    • US06487028B1
    • 2002-11-26
    • US09275952
    • 1999-03-25
    • S. M. Sri-JayanthaHien DangArun SharmaKiyoshi SatohTetsuo UedaHideki OhzekiNayouki KagamiKiochi Takeuchi
    • S. M. Sri-JayanthaHien DangArun SharmaKiyoshi SatohTetsuo UedaHideki OhzekiNayouki KagamiKiochi Takeuchi
    • G11B502
    • G11B5/59633
    • In order to handle platter flutter in a hard disk operated at high speed (e.g. 10,000 RPM) and maintain tracking of read/write head, peak filters are added to a head tracking servo feedback loop. In some embodiments, several lag-lead type peak filters centered at a plurality of flutter mode frequencies are provided to process a Position Error Signal (PES) read from the read/write head. The several filter are preferably arranged in series (i.e. to operate on the PES sequentially), alternatively the filters can be arranged in parallel. Phase lags and leads caused by the several filters partially cancel at frequencies intermediate center frequencies of the several filters. According to another embodiment two or more, preferably three narrow band filters are used to cover the spectrum of each flutter mode. In a configuration mode, a spectrum of the flutter modes can be obtained and used to set the center frequencies, and bandwidths of filters used to filter out the flutter modes.
    • 为了处理以高速(例如10,000RPM)运行的硬盘中的盘片颤动并且保持对读/写头的跟踪,峰值滤波器被添加到磁头跟踪伺服反馈回路中。 在一些实施例中,提供以多个颤振模式频率为中心的几个滞后引线型峰值滤波器来处理从读/写头读取的位置误差信号(PES)。 多个滤波器优选地串联布置(即,顺序地在PES上操作),或者滤波器可以并联布置。 由几个滤波器引起的相位滞后和引线在几个滤波器的中间中心频率处部分地消除。 根据另一个实施例,两个或更多个,优选地三个窄带滤波器用于覆盖每个颤振模式的频谱。 在配置模式下,可以获得颤振模式的频谱,并用于设置中心频率,以及用于滤除颤振模式的滤波器的带宽。