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    • 21. 发明授权
    • Rotational, shear mode, piezoelectric motor integrated into a collocated, rotational, shear mode, piezoelectric micro-actuated suspension, head or head/gimbal assembly for improved tracking in disk drives and disk drive equipment
    • 旋转,剪切模式,集成到并置,旋转,剪切模式,压电微致动悬架,头或头/万向节组件中的压电电机,用于改进磁盘驱动器和磁盘驱动设备中的跟踪
    • US08125741B2
    • 2012-02-28
    • US11880179
    • 2007-07-20
    • John R. Shelor
    • John R. Shelor
    • G11B21/02G11B5/596
    • G11B5/4826G11B5/483G11B5/4873G11B5/5552H01L41/0993
    • A rotational, shear mode, piezoelectric motor is integrated with a suspension, head or head gimbal assembly (HGA) into a collocated, rotational, shear mode, piezoelectric micro-actuated suspension, head or head gimbal assembly (HGA) for use in disk drives and disk drive manufacturing equipment. When excited by a control voltage, the collocated, shear mode, piezoelectric micro-actuated HGA rotates the head enabling high frequency, high resolution track positioning of the read/write element. The motor is integrated with the head and flexure (collocation). The head rotates about a rotation axis that is ideally located at the center of mass of the head. A shear mode piezoelectric motor rotates the head. A collocated, rotational, shear mode, piezoelectric micro-actuated HGA has high stiffness, high frequency response, high positioning resolution, low mass and low internal vibration for improved tracking, increased track density and greater disk drive storage capacity. Furthermore, its solid integration improves shock resistance and reduces micro-contamination.
    • 旋转,剪切模式,压电电动机与悬架,头或头万向节组件(HGA)集成到并置,旋转,剪切模式中,用于磁盘驱动器的压电微致动悬架,头或头万向节组件(HGA) 和磁盘驱动器制造设备。 当被控制电压激发时,并置的剪切模式,压电微致动的HGA旋转磁头,使读/写元件能够进行高频,高分辨率的轨迹定位。 电动机与头部和挠曲(搭配)集成。 头部围绕理想地位于头部质心的旋转轴线旋转。 剪切模式压电电动机旋转头部。 配置,旋转,剪切模式,压电微致动HGA具有高刚度,高频响应,高定位分辨率,低质量和低内部振动,用于改进跟踪,增加轨道密度和更高的磁盘驱动器存储容量。 此外,其坚固的整合提高了抗冲击性,减少了微污染。
    • 26. 发明授权
    • Suspension having separately optimized torsion stiffness and vertical stiffness
    • 悬挂具有单独优化的扭转刚度和垂直刚度
    • US07773344B1
    • 2010-08-10
    • US11429876
    • 2006-05-08
    • Kenneth F. Young
    • Kenneth F. Young
    • G11B21/16G11B5/48
    • G11B5/4833G11B5/4826
    • A disk drive suspension has laterally separated mount plate cooperating structure of a pair of spaced, left and right hand continued extents defining engagement structures extending into the vertical plane of the suspension hinge portion, and laterally separated beam portion cooperating structure of left and right hand continuations defining cooperating engagement structures also extending into the vertical plane of the hinge portion and overlapping the mount plate extents to block their relative vertical movement in one direction but not the other so that rotation of the beam portion relative to the mount plate is limited by this selective engagement of the cooperating structures, while the hinge portion is untrammeled by the cooperating structures and the suspension has increased torsional stiffness without an increase in suspension vertical stiffness or has a decrease in suspension vertical stiffness without a decrease in torsional stiffness.
    • 磁盘驱动器悬架具有横向分离的安装板协作结构,其一对间隔开的左右手连续范围限定延伸到悬架铰链部分的垂直平面中的接合结构,以及左右连续的横向分离的梁部分协作结构 限定配合的接合结构还延伸到铰链部分的垂直平面并与安装板区域重叠以阻止其在一个方向上的相对垂直运动而不是另一方向上,使得梁部分相对于安装板的旋转受到该选择性 协作结构的接合,同时铰链部分未被协作结构挤压,并且悬架具有增加的扭转刚度而不增加悬架垂直刚度,或者在没有扭转刚度降低的情况下具有悬架垂直刚度的降低。
    • 28. 发明授权
    • Vertically coupling actuator arm for disc drives
    • 垂直连接光盘驱动器的执行器臂
    • US07755866B1
    • 2010-07-13
    • US11504493
    • 2006-08-15
    • Shahyar Ziaei
    • Shahyar Ziaei
    • G11B5/55
    • G11B5/4833G11B5/4826
    • A support arm for use in a disc drive suspension includes an asymmetry that creates a vertical coupling in the support arm, i.e., a slight lateral movement of the support arm distal end to which a load beam is mounted in response to vibration-induced bending of the support arm. The vertical coupling in the support arm at least partially cancels out during arm bending any vertical coupling which has been designed into the coupling between the load beam and the support arm to reduce track misregistration during flow-induced vibrations of the disc surface. In this way, track misregistration during both flow-induced vibrations and during arm bending is reduced. In a preferred embodiment the asymmetry is created by at least one of a first notch along an inside top edge of the arm, and a second notch along a bottom outside edge of the arm.
    • 用于盘驱动器悬架的支撑臂包括在支撑臂中产生垂直联接的不对称性,即支撑臂远端的轻微侧向运动,响应于振动引起的弯曲 支撑臂。 支撑臂中的垂直联接在臂弯曲期间至少部分抵消已经被设计到负载梁和支撑臂之间的联接中的任何垂直联接,以减少在盘表面的流动引起的振动期间的轨迹重合。 以这种方式,在流动引起的振动和臂弯曲期间的跟踪重合失调减小了。 在优选实施例中,不对称性由沿着臂的内部顶部边缘的第一凹口和沿着臂的底部外边缘的第二切口中的至少一个产生。
    • 29. 发明授权
    • Quad tracked vehicle
    • 四轮车
    • US07581605B2
    • 2009-09-01
    • US11360458
    • 2006-02-22
    • Yuval CaspiStephen Kong
    • Yuval CaspiStephen Kong
    • B62D55/075
    • B62B5/02B62B2301/256B62D21/14B62D55/065B62D55/075
    • A quad tracked vehicle may include a forward starboard track arm, an aft starboard track arm, a forward port track arm, and an aft port track arm. Forward track arms may be mounted for rotation about a vehicle body around axis of forward track arm by a forward coaxial transmission and motor, while aft tracks arms may be mounted for rotation about vehicle body around axis of aft extended coaxial transmission by an aft motor. Tracks may be mounted for rotation around track arms and rotate about minor axes. Forward tracks may rotate about forward major axis and aft tracks about aft major axis. Starboard tracks may be rotated by starboard motor, and port tracks by port motor.
    • 四轮车可以包括前方右舷轨道臂,后方右舷轨道臂,前端口轨道臂和后端轨道臂。 正向轨道臂可以安装成通过前同轴传动装置和电动机围绕前车道的轴线旋转,同时可以安装后部轨道臂,用于通过后部电动机围绕车身围绕后延伸的同轴传动轴线旋转。 轨道可以安装在轨道臂周围旋转并围绕短轴旋转。 前进轨道可围绕前方主轴绕前后方向和后方转动。 右舷轨道可能由右舷电机旋转,端口轨道由端口电机旋转。