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    • 41. 发明授权
    • Disk drive suspension having a microactuator mounting section
    • 具有微致动器安装部分的磁盘驱动器悬架
    • US08248736B2
    • 2012-08-21
    • US12876487
    • 2010-09-07
    • Masao HanyaToshiki AndoRyoichi Tazawa
    • Masao HanyaToshiki AndoRyoichi Tazawa
    • G11B5/58G11B21/24
    • G11B5/4833G11B5/4873
    • A microactuator mounting section is disposed between a base section and a load beam. A microactuator element formed of a piezoelectric element is contained in an element accommodation portion in a plate portion. The plate portion has a stationary part secured to the base section and a movable part secured to the load beam. The stationary part and the movable part are connected to each other by a pair of arm portions. Each arm portion comprises a first extending portion and a second extending portion. The first extending portion extends longitudinally relative to the load beam from a front end of the stationary part toward the movable part. The second extending portion extends transversely inward relative to the plate portion from the first extending portion so as to be continuous with the movable part.
    • 微型致动器安装部分设置在基部和负载梁之间。 由压电元件形成的微致动器元件容纳在板部分的元件容置部分中。 板部具有固定到基部的固定部和固定到负载梁的可动部。 固定部和可动部通过一对臂部彼此连接。 每个臂部分包括第一延伸部分和第二延伸部分。 第一延伸部分相对于负载梁从固定部分的前端朝向可动部分纵向延伸。 第二延伸部分从第一延伸部分相对于板部横向地向内延伸,以便与可动部分连续。
    • 43. 发明授权
    • Carriage for disk device
    • 运输磁盘设备
    • US07773345B2
    • 2010-08-10
    • US11820465
    • 2007-06-19
    • Takeo HayashiMasao HanyaTatsuhiko Nishida
    • Takeo HayashiMasao HanyaTatsuhiko Nishida
    • G11B5/55
    • G11B5/4833
    • A carriage for a disc device, which has a top arm, bottom arm, and mid arm, has a main mode, end arm mode, and mid arm mode as a frequency response obtained when subjected to a vertical shake. In the main mode, all of the top, bottom, and mid arms swing at a first frequency within the same phase in a primary bending mode. In an end arm mode, the top and bottom arms swing at a second frequency higher than the first frequency within opposite phases and with an amplitude larger than that of the mid arm. In the mid arm mode, the mid arm swings at a third frequency having a difference of 50 Hz or less from the second frequency within the same phase as in the main mode, and the top and bottom arms swing within the phase opposite from that in the main mode.
    • 具有顶臂,底臂和中臂的盘装置的托架具有主模式,端臂模式和中臂模式作为当受到垂直震动时获得的频率响应。 在主模式中,所有的顶部,底部和中间臂在主要弯曲模式下以相同相位内的第一频率摆动。 在端臂模式中,顶臂和底臂在相反相位内以比第一频率高的第二频率摆动,幅度大于中臂的振幅。 在中臂模式中,中臂在与主模式相同的相位内与第二频率具有不同于50Hz或更小的第三频率摆动,并且顶臂和底臂在相对于 主要模式。
    • 44. 发明授权
    • Suspension for disc drive
    • 悬挂磁盘驱动器
    • US07764467B2
    • 2010-07-27
    • US11787086
    • 2007-04-13
    • Masao HanyaEiji WatadaniKenichi Takikawa
    • Masao HanyaEiji WatadaniKenichi Takikawa
    • G11B5/48
    • G11B5/4833G11B5/486
    • A suspension for a disc drive has a load beam, a flexure, a slider, etc. A tongue portion and a pair of outrigger portions are formed on the flexure. Slits are formed between the outrigger portions and opposite side edges of the tongue portion. The tongue portion and the outrigger portions are connected by connecting portions. Limiter members are formed on the load beam. Each limiter member has a bent portion, which is inserted in its corresponding slit, and an extending portion. The extending portion faces its corresponding connecting portion. A trace member is electrically connected to the slider. The trace member passes outside the limiter members and extends along the outrigger portions.
    • 用于盘驱动器的悬架具有负载梁,挠曲件,滑块等。在弯曲部上形成舌部和一对外伸支架部分。 在舌部的外伸支架部分和相对侧边缘之间形成狭缝。 舌部和外伸支架部分通过连接部分连接。 限位器构件形成在负载梁上。 每个限制器构件具有插入其对应的狭缝中的弯曲部分和延伸部分。 延伸部分面对其相应的连接部分。 轨迹构件电连接到滑块。 轨迹构件通过限制器构件的外部并且沿着外伸支架部分延伸。
    • 46. 发明申请
    • Apparatus for measuring vibration characteristics of head gimbal assembly
    • 用于测量头部万向节组件的振动特性的装置
    • US20090086375A1
    • 2009-04-02
    • US12284406
    • 2008-09-22
    • Masao HanyaHajime Tada
    • Masao HanyaHajime Tada
    • G11B5/48
    • G11B5/4806G11B33/08
    • An apparatus for measuring the vibration characteristics of a head gimbal assembly can grasp resonant characteristics at high frequencies and efficiently measure the vibration characteristics of the head gimbal assembly, the apparatus has a shaker head to which the head gimbal assembly is attached, the shaker head has a main body made of ceramics and a fixture made of metal, the fixture is solidly fixed to the main body and is provided with positioning pins and an internal thread, the head gimbal assembly is supported with a mount block, and the mount block has positioning holes to be fitted to the positioning pins of the fixture and a joined part to be removably fastened to the internal thread of the fixture.
    • 一种用于测量头部万向节组件的振动特性的装置可以在高频率下掌握谐振特性并且有效地测量头部万向节组件的振动特性,该装置具有振动器头部,头部万向节组件附接到振动器头部,振动器头部具有 由陶瓷制成的主体和由金属制成的固定件,固定装置牢固地固定在主体上并设有定位销和内螺纹,头万向架组件由安装座支撑,安装座具有定位 要安装到固定装置的定位销的孔和可拆卸地固定在固定装置的内螺纹上的连接件。
    • 49. 发明申请
    • Slider supporting apparatus and manufacturing method therefor
    • 滑块支撑装置及其制造方法
    • US20070263325A1
    • 2007-11-15
    • US11799195
    • 2007-05-01
    • Masao HanyaToshiki AndoTakumi Karasawa
    • Masao HanyaToshiki AndoTakumi Karasawa
    • G11B5/48
    • G11B5/4826
    • A slider supporting apparatus is provided with a flexure formed of a metal plate having spring characteristics. The flexure comprises a gimbals portion including a tongue, a first support portion which supports one longitudinal end of a slider, a second support portion which supports the other end of the slider, and a spring portion composed of a pair of flat springs. Convexes and concaves of each flat spring are alternately formed along a surface direction of the flexure by etching. The flat springs extend to a length which allows the slider to be inserted between the support portions when subjected to a tensile load, and contract to a length such that the slider can be held between the support portions when subjected to no tensile load.
    • 滑块支撑装置设置有由具有弹簧特性的金属板形成的挠曲。 该挠曲件包括一个包括舌头的万向节部分,一个支撑滑块的一个纵向端部的第一支撑部分,一个支撑滑块另一端的第二支撑部分和一对由一对板簧组成的弹簧部分。 通过蚀刻沿着弯曲部的表面方向交替地形成每个扁平弹簧的凸部和凹部。 扁平弹簧延伸到允许滑块在受到拉伸载荷时插入在支撑部分之间的长度,并且收缩到一定长度,使得当没有拉伸载荷时滑块可以保持在支撑部分之间。