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    • 6. 发明授权
    • Bi-level cavity for a slider air-bearing surface
    • 用于滑块空气轴承表面的双层腔体
    • US07417828B2
    • 2008-08-26
    • US09897779
    • 2001-06-29
    • Zine Eddine BoutaghouScott E. RyunAnthony P. Sannino
    • Zine Eddine BoutaghouScott E. RyunAnthony P. Sannino
    • G11B5/60
    • G11B5/6005G11B5/6082
    • An information handling system, such as a disc drive, including a base, a disc stack rotatably attached to the base, and an actuator assembly movably attached to the base. The actuator assembly also includes a load spring and a slider attached to said load spring. The slider has an air-bearing surface. The air-bearing surface includes a first rail, a second rail and a depression positioned between the first rail and the second rail of the air-bearing surface. The depression further includes a first level surface and a second level surface. The first level surface of the slider is at a different distance from a surface of the first rail of the slider than the second level surface of the slider. The air-bearing surface may also include a divider located between the first level surface of the slider and the second level surface of the slider.
    • 诸如盘驱动器的信息处理系统,包括基座,可旋转地附接到基座的盘堆叠以及可移动地附接到基座的致动器组件。 致动器组件还包括负载弹簧和附接到所述负载弹簧的滑块。 滑块具有空气轴承表面。 空气轴承表面包括第一轨道,第二轨道和位于空气轴承表面的第一轨道和第二轨道之间的凹陷。 凹陷还包括第一水平表面和第二水平表面。 滑块的第一平面与滑块的第一轨道的表面的距离不同于滑块的第二水平表面。 空气轴承表面还可以包括位于滑块的第一水平表面和滑块的第二水平表面之间的分隔件。
    • 9. 发明授权
    • Transducer-data storage medium spacing adjustment
    • 传感器数据存储介质间距调整
    • US08004786B2
    • 2011-08-23
    • US11357821
    • 2006-02-17
    • Jason M. FeistDallas S. Holm, Jr.Siew Kin ChowScott E. Ryun
    • Jason M. FeistDallas S. Holm, Jr.Siew Kin ChowScott E. Ryun
    • G11B21/02
    • G11B5/3133G11B5/40G11B5/6005G11B5/6064G11B5/607
    • A data storage device, e.g., a disc drive, includes one or more heads including a transducer. Each head also includes a deformable material that allows the spacing adjustments between the transducer and a data storage medium, e.g., a data storage disc, according to each of a plurality of settings. The device calculates a response function of a spacing change to a setting change for each head by measuring a change in the pole tip-data storage medium spacing corresponding to at least two settings. The device also determines an optimal setting. The device may also repeat response function calculations and/or determination of optimal settings to ensure continued optimal performance of the device. In summary, the device sets an optimal setting for each head according to a calculated response function particular to each head.
    • 数据存储设备,例如盘驱动器,包括一个或多个包括换能器的头。 每个头部还包括可变形材料,其根据多个设置中的每一个允许换能器和数据存储介质(例如,数据存储盘)之间的间距调节。 该装置通过测量对应于至少两个设置的极尖数据存储介质间隔的变化来计算间距变化对每个头的设置变化的响应函数。 该设备还确定最佳设置。 设备还可以重复响应函数计算和/或确定最佳设置,以确保设备的持续最佳性能。 总之,设备根据每个头部特定的计算的响应函数为每个头设置最佳设置。