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    • 4. 发明授权
    • Friction engaged tilting roller bearing tape guidance
    • 摩擦接合倾斜滚子轴承带导向
    • US08755151B2
    • 2014-06-17
    • US13464319
    • 2012-05-04
    • Armando Jesus ArgumedoWilliam Marvin DyerWayne Isami ImainoKevin Bruce Judd
    • Armando Jesus ArgumedoWilliam Marvin DyerWayne Isami ImainoKevin Bruce Judd
    • G11B15/60
    • G11B15/60
    • In one embodiment, a tape movement constraint comprises a tiltable tape roller bearing having a grooved surface adapted to contact and engage a surface of the tape as the roller barrel rotates. An actuator adapted to pivot the roller bearing surface controls the lateral position of a tape. In operation, in one embodiment, the roller barrel of the roller bearing is rotated by engaging a surface of the tape roller barrel with a longitudinally moving magnetic tape. At least a portion of any air bearing between the moving tape and the barrel surface is quenched using grooves formed in the barrel surface. The lateral position of the moving tape is sensed and the rotating roller barrel is tilted in response to the sensed lateral position of the moving tape to control the lateral position of the moving tape. Other embodiments are described and claimed.
    • 在一个实施例中,带运动约束包括可倾斜带辊轴承,其具有适于在辊筒旋转时接触和接合带的表面的开槽表面。 适于枢转滚子轴承表面的致动器控制带的横向位置。 在操作中,在一个实施例中,通过使带辊筒的表面与纵向移动的磁带接合来使滚子轴承的滚筒旋转。 移动带和筒表面之间任何空气轴承的至少一部分使用在桶表面中形成的凹槽进行淬火。 感测到移动带的横向位置,并且响应于感测到的移动带的横向位置而使旋转辊筒倾斜以控制移动带的横向位置。 描述和要求保护其他实施例。
    • 5. 发明申请
    • FRICTION ENGAGED TILTING ROLLER BEARING TAPE GUIDANCE
    • 摩擦接合倾斜滚子轴承带指南
    • US20120281308A1
    • 2012-11-08
    • US13464319
    • 2012-05-04
    • Armando Jesus ArgumedoWilliam Marvin DyerWayne Isami ImainoKevin Bruce Judd
    • Armando Jesus ArgumedoWilliam Marvin DyerWayne Isami ImainoKevin Bruce Judd
    • G11B15/18
    • G11B15/60
    • In one embodiment, a tape movement constraint comprises a tiltable tape roller bearing having a grooved surface adapted to contact and engage a surface of the tape as the roller barrel rotates. An actuator adapted to pivot the roller bearing surface controls the lateral position of a tape. In operation, in one embodiment, the roller barrel of the roller bearing is rotated by engaging a surface of the tape roller barrel with a longitudinally moving magnetic tape. At least a portion of any air bearing between the moving tape and the barrel surface is quenched using grooves formed in the barrel surface. The lateral position of the moving tape is sensed and the rotating roller barrel is tilted in response to the sensed lateral position of the moving tape to control the lateral position of the moving tape. Other embodiments are described and claimed.
    • 在一个实施例中,带运动约束包括可倾斜带辊轴承,其具有适于在辊筒旋转时接触和接合带的表面的开槽表面。 适于枢转滚子轴承表面的致动器控制带的横向位置。 在操作中,在一个实施例中,通过使带辊筒的表面与纵向移动的磁带接合来使滚子轴承的滚筒旋转。 移动带和筒表面之间任何空气轴承的至少一部分使用在桶表面中形成的凹槽进行淬火。 感测到移动带的横向位置,并且响应于感测到的移动带的横向位置而使旋转辊筒倾斜以控制移动带的横向位置。 描述和要求保护其他实施例。
    • 6. 发明申请
    • FRICTION ENGAGED TILTING ROLLER BEARING TAPE GUIDANCE
    • 摩擦接合倾斜滚子轴承带指南
    • US20090201609A1
    • 2009-08-13
    • US12028663
    • 2008-02-08
    • Armando Jesus ArgumedoWilliam Marvin DyerWayne Isami ImainoKevin Bruce Judd
    • Armando Jesus ArgumedoWilliam Marvin DyerWayne Isami ImainoKevin Bruce Judd
    • G11B15/60
    • G11B15/60
    • In one embodiment, a tape movement constraint for a tape drive system, comprises a tiltable tape roller bearing having a grooved surface adapted to contact and engage a surface of the tape as the roller barrel rotates, and an actuator adapted to pivot the roller bearing surface when the actuator is actuated, to control the lateral position of a tape. In operation, in one embodiment, the roller barrel of the roller bearing is rotated by engaging a surface of the tape roller barrel with a longitudinally moving magnetic tape. At least a portion of any air bearing between the moving tape and the barrel surface is quenched using grooves formed in the barrel surface. The lateral position of the moving tape is sensed and the rotating roller barrel is tilted in response to the sensed lateral position of the moving tape to control the lateral position of the moving tape. Other embodiments are described and claimed.
    • 在一个实施例中,用于磁带驱动系统的磁带移动限制包括可倾斜的带滚子轴承,其具有适于在滚筒旋转时接触和接合带的表面的开槽表面;以及致动器,其适于使滚子轴承表面 当致动器被致动时,以控制带的横向位置。 在操作中,在一个实施例中,通过使带辊筒的表面与纵向移动的磁带接合来使滚子轴承的滚筒旋转。 移动带和筒表面之间任何空气轴承的至少一部分使用在桶表面中形成的凹槽进行淬火。 感测到移动带的横向位置,并且响应于感测到的移动带的横向位置而使旋转辊筒倾斜以控制移动带的横向位置。 描述和要求保护其他实施例。
    • 7. 发明申请
    • MAGNETICALLY BIASED TILTING ROLLER BEARING TAPE GUIDANCE
    • 磁性倾斜滚子轴承带指导
    • US20090201608A1
    • 2009-08-13
    • US12028649
    • 2008-02-08
    • Armando Jesus ArgumedoNhan Xuan BuiWilliam Marvin DyerReed Alan HancockDavid Howard Flores HarperWayne Isami ImainoKevin Bruce Judd
    • Armando Jesus ArgumedoNhan Xuan BuiWilliam Marvin DyerReed Alan HancockDavid Howard Flores HarperWayne Isami ImainoKevin Bruce Judd
    • G11B15/60
    • G11B15/60
    • In one embodiment, a tape movement constraint for a tape drive system, comprises a tiltable tape roller bearing having a grooved surface adapted to contact and engage a surface of the tape as the roller barrel rotates, and an actuator adapted to pivot the roller bearing surface when the actuator is actuated, to control the lateral position of a tape. In operation, in one embodiment, a roller barrel of the tiltable roller bearing is biased in a first position on a pivot axis, using magnetic attraction between a movable magnet and a return path structure of magnetically permeable material. The roller barrel is pivoted on the pivot axis by conducting current through a fixed coil to generate a magnetic field which is conducted by the return path structure to interact with the magnetic field of the magnet. At least a portion of any air bearing between the moving tape and the barrel surface is quenched using grooves formed in the barrel surface. The lateral position of the moving tape is sensed and the rotating roller barrel is tilted in response to the sensed lateral position of the moving tape to control the lateral position of the moving tape. Other embodiments are described and claimed.
    • 在一个实施例中,用于磁带驱动系统的磁带移动约束包括可倾斜的带滚子轴承,其具有适于在滚筒旋转时接触和接合带的表面的开槽表面;以及致动器,其适于使滚子轴承表面 当致动器被致动时,以控制带的横向位置。 在一个实施例中,在一个实施例中,可旋转滚子轴承的滚筒是利用可移动磁体和导磁材料返回路径结构之间的磁吸引力在枢转轴线上被偏置在第一位置。 辊筒通过传导电流通过固定线圈在枢轴上枢转,以产生磁场,该磁场由返回路径结构传导以与磁体的磁场相互作用。 移动带和筒表面之间任何空气轴承的至少一部分使用在桶表面中形成的凹槽进行淬火。 感测到移动带的横向位置,并且响应于感测到的移动带的横向位置而使旋转辊筒倾斜以控制移动带的横向位置。 描述和要求保护其他实施例。
    • 10. 发明授权
    • Thin keyboard having torsion bar keyswitch hinge members
    • 薄键盘具有扭杆钥匙开关铰链部件
    • US6005209A
    • 1999-12-21
    • US979341
    • 1997-11-24
    • Winslow Scott BurlesonWilliam Marvin DyerChristopher Karl EisbachDerek Solomon PaiEdwin Joseph Selker
    • Winslow Scott BurlesonWilliam Marvin DyerChristopher Karl EisbachDerek Solomon PaiEdwin Joseph Selker
    • H01H13/705H01H13/52H01H13/70
    • H01H13/705H01H2221/004H01H2221/044
    • A keyboard apparatus is provided for small and lightweight computers and the like. Keyswitches and a keyboard assembly comprise a sheet member having a plurality of key faces fixed thereon in a conventional keyboard arrangement. A plurality of cutouts are provided in the sheet member, partially surrounding each key face. A living hinge member is provided in the sheet member at one side of each key face. Each living hinge member includes a base section, an intermediate section, and a key face section. The former two and the latter two sections each interface at a living hinge. Depressing the key face causes the key face section to pivot about the living hinges to operate a corresponding set of electrical contacts, indicating operation of the key. A conventional rubber spring may transmit the pivot motion of the key face to the electrical contacts. The living hinges are made to have a greater resilience and flexibility than those of the sections, such as by scoring, scribing, perforation, or other suitable treatment. Accordingly, the intermediate section is able to serve as a torsion bar, advantageously limiting the key's freedom to twist under the user's finger pressulr.
    • 提供了一种用于小而轻的计算机等的键盘装置。 键开关和键盘组件包括具有以常规键盘装置固定在其上的多个键面的片状构件。 多个切口设置在片状部件中,部分地围绕每个键面。 在每个键面的一侧的片状构件中设置有活动铰链构件。 每个活动铰链构件包括基部,中间部和键面部。 前两个和后两个部分每个界面处于活动铰链。 按键面使得键面部分围绕活动铰链枢转以操作相应的一组电触点,指示键的操作。 常规的橡胶弹簧可以将键面的枢转运动传递到电触头。 活动铰链被制成具有比区段更大的弹性和弹性,例如通过刻痕,划线,穿孔或其它合适的处理。 因此,中间部分能够用作扭杆,有利地限制了钥匙在用户手指压力机下的扭曲自由度。