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    • 1. 发明授权
    • Multi-track density direct access storage device
    • 多轨密度直接存取存储设备
    • US06393511B1
    • 2002-05-21
    • US09246513
    • 1999-02-09
    • David William AlbrechtWayne Leung CheungKok-Kia ChewJu-Hi HongJohn Jeffrey Stephenson
    • David William AlbrechtWayne Leung CheungKok-Kia ChewJu-Hi HongJohn Jeffrey Stephenson
    • G06F1200
    • G11B21/083G11B5/012G11B5/4886G11B5/59605
    • A multi-track density direct access storage device is disclosed. In accordance with a preferred embodiment of the present invention, a direct access storage device for data storage within a data processing system comprises a housing, a rotatable spindle, at least one disk, and several heads. The disk is fixedly mounted to the rotatable spindle, and the rotatable spindle is rotated by a motor within the housing. A first disk surface of the disk has a first track density and a second disk surface of the disk has a second track density; wherein the second track density is preferably greater than the first track density. Each of the several heads contains a transducer to read and write information from and to the disk during the disk rotation. Under this configuration, the lower storage density it first disk surface is utilized to store data that are frequently accessed while the higher storage density second disk surface is for storage capacity supplementation such that the total data storage capacity of the direct access storage device can be increased without degrading the data-accessing performance.
    • 公开了一种多轨密度直接存取存储装置。 根据本发明的优选实施例,用于数据处理系统内的数据存储的直接存取存储装置包括壳体,可旋转主轴,至少一个盘和多个头部。 盘被固定地安装到可旋转的主轴上,并且可旋转的主轴由壳体内的电动机旋转。 盘的第一盘表面具有第一轨道密度,盘的第二盘表面具有第二轨迹密度; 其中第二轨道密度优选地大于第一轨道密度。 在磁盘旋转期间,几个磁头中的每一个都包含一个读取和写入信息的传感器。 在该配置下,第一盘表面的较低存储密度用于存储经常访问的数据,而较高存储密度第二磁盘表面用于存储容量补充,使得可以增加直接存取存储设备的总数据存储容量 而不会降低数据访问性能。
    • 2. 发明授权
    • Method and apparatus for providing a linear position error sensing (PES)
signal
    • 用于提供线性位置误差感测(PES)信号的方法和装置
    • US6002541A
    • 1999-12-14
    • US884828
    • 1997-06-30
    • Karl Arnold BelserJu-Hi HongSatoshi Yamamoto
    • Karl Arnold BelserJu-Hi HongSatoshi Yamamoto
    • G11B5/596
    • G11B5/59627
    • In accordance with the present invention a storage device servo control system that positions a head relative to multiple tracks of a storage medium includes a servo signal filter that receives a readback signal from the head and produces filtered servo signal data samples, a servo demodulator that receives the filtered readback servo signal from the servo signal filter and produces a position error signal that indicates the head position relative to a track using a demodulation scheme selected in accordance with a track width profile of the storage device, and includes a servo controller that determines the demodulation scheme to be used by the servo demodulator and that processes the position error signal to maintain the head centered relative to the track.
    • 根据本发明,一种相对于存储介质的多个磁道定位磁头的存储装置伺服控制系统包括:伺服信号滤波器,其从头部接收回读信号并产生滤波后的伺服信号数据采样;伺服解调器,其接收 来自伺服信号滤波器的滤波后的回读伺服信号,并且使用根据存储装置的磁道宽度分布选择的解调方案产生指示相对于磁道的磁头位置的位置误差信号,并且包括确定 解调方案由伺服解调器使用,并且处理位置误差信号以使头相对于轨道居中。
    • 3. 发明授权
    • Multi-track density direct access storage device
    • 多轨密度直接存取存储设备
    • US5999351A
    • 1999-12-07
    • US709204
    • 1996-08-27
    • David William AlbrechtWayne Leung CheungKok-Kia ChewJu-Hi HongJohn Jeffrey Stephenson
    • David William AlbrechtWayne Leung CheungKok-Kia ChewJu-Hi HongJohn Jeffrey Stephenson
    • G11B5/012G11B5/48G11B5/596G11B21/08G11B5/09
    • G11B21/083G11B5/012G11B5/4886G11B5/59605
    • A multi-track density direct access storage device is disclosed. In accordance with a preferred embodiment of the present invention, a direct access storage device for data storage within a data processing system comprises a housing, a rotatable spindle, at least one disk, and several heads. The disk is fixedly mounted to the rotatable spindle, and the rotatable spindle is rotated by a motor within the housing. A first disk surface of the disk has a first track density and a second disk surface of the disk has a second track density; wherein the second track density is preferably greater than the first track density. Each of the several heads contains a transducer to read and write information from and to the disk during the disk rotation. Under this configuration, the lower storage density first disk surface is utilized to store data that are frequently accessed while the higher storage density second disk surface is for storage capacity supplementation such that the total data storage capacity of the direct access storage device can be increased without degrading the data-accessing performance.
    • 公开了一种多轨密度直接存取存储装置。 根据本发明的优选实施例,用于数据处理系统内的数据存储的直接存取存储装置包括壳体,可旋转主轴,至少一个盘和多个头部。 盘被固定地安装到可旋转的主轴上,并且可旋转的主轴由壳体内的电动机旋转。 盘的第一盘表面具有第一轨道密度,盘的第二盘表面具有第二轨迹密度; 其中第二轨道密度优选地大于第一轨道密度。 在磁盘旋转期间,几个磁头中的每一个都包含一个读取和写入信息的传感器。 在这种配置下,较低的存储密度第一磁盘表面用于存储经常访问的数据,而较高的存储密度第二磁盘表面用于存储容量补充,使得直接存取存储设备的总数据存储容量可以在没有 降低数据访问性能。
    • 5. 发明授权
    • Milliactuator with integrated sensor and drivers and method of manufacturing the same
    • 具有集成传感器和驱动器的制动器及其制造方法
    • US06239947B1
    • 2001-05-29
    • US09076331
    • 1998-05-11
    • Long-Sheng FanJu Hi HongWen-Han Juan
    • Long-Sheng FanJu Hi HongWen-Han Juan
    • G11B555
    • G11B5/5552
    • A milliactuator integrated with driver and relative position error sensor circuits formed on a single silicon substrate. The integrated milliactuator/electronics module is positioned between the suspension and the slider/transducer assembly to provide rapid, small motion position control of the slider/transducer over data tracks on the disk of a magnetic disk drive. Integration of the milliactuator electronics with the milliactuator reduces parasitic loading and interference problems with the magnetic transducer signals. Electronic circuits are built on a silicon wafer followed by deposition of a planarization layer and a ground plane layer for isolation from the milliactuator which is then built on top of the circuits.
    • 与单个硅衬底上形成的驱动器和相对位置误差传感器电路集成的微致动器。 集成的微执行器/电子模块位于悬架和滑块/换能器组件之间,以便在磁盘驱动器的磁盘上的数据轨上提供滑块/换能器的快速,小的运动位置控制。 毫米致动器电子器件与微致动器的集成减少了磁换能器信号的寄生负载和干扰问题。 电子电路构建在硅晶片上,随后沉积平坦化层和接地平面层,以从微致动器隔离,然后建立在电路顶部。