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    • 41. 发明申请
    • TAPE HEAD METHOD AND ASSEMBLY UTILIZING SPLIT TAPE STABILIZER DESIGN
    • 带头方法和组装利用分割带稳定器设计
    • WO2008089665A1
    • 2008-07-31
    • PCT/CN2008/000144
    • 2008-01-21
    • LAFE COMPUTER MAGNETICS LIMITEDLAM, Chuck Fai
    • LAM, Chuck Fai
    • G11B5/48
    • G11B5/00821G11B5/4893G11B15/60
    • A magnetic tape head assembly with split tape stabilizer element can eliminate the variation of tape wrap angle caused by drive manufacturing and reduce tape wear by reduce tape over-wrap angle on head. The magnetic tape head assembly comprises a recording gap, containing read/write element, and a split tape stabilizer element to support tape before tape passes through recording gap across the width of the head. The split tape stabilizer is aligned with the read/write element along the recording gap and this relationship is fixed by bonding the two components together. A tape head is formed having a first profile and having a stabilizer head interface area. A stabilizer head is formed having a second profile and having a tape head interface area. The tape head assembly and stabilizer head are then bonded by bonding the stabilizer head interface area to the tape head interface area such that the tape head and the stabilizer head have a desired configuration relative to each other and such that a gap is formed between the tape head and the stabilizer head.
    • 具有分离胶带稳定器元件的磁带头组件可以消除由驱动器制造引起的胶带缠绕角度的变化,并通过减少胶带在包装上的角度来减少胶带磨损。 磁带头组件包括记录间隙,其包含读/写元件,以及分离带稳定器元件,用于在磁带穿过磁头的宽度之间的记录间隙之前支撑胶带。 分离胶带稳定器沿着记录间隙与读/写元件对齐,并且通过将两个部件结合在一起来固定该关系。 形成具有第一轮廓并具有稳定器头接口区域的带头。 形成具有第二轮廓并具有带头接口区域的稳定器头部。 然后通过将稳定器头接口区域粘合到磁带头接口区域来粘合带头组件和稳定器头部,使得带头和稳定器头部具有相对于彼此的期望构造,并且使得在带 头部和稳定器头部。
    • 45. 发明申请
    • HIGH SPEED TAPE PACKING
    • 高速胶带包装
    • WO00035796A1
    • 2000-06-22
    • PCT/US1998/026910
    • 1998-12-17
    • B65H23/035B65H23/038B65H23/195G11B15/60G11B15/67B65H23/00
    • G11B15/60G11B15/67
    • Tapes (13), such as magnetic, optic and other recording tapes, and many other kinds of tapes having opposite edges (14, 15), are wound into an increasing tape pack (16) about an axis of rotation (18) by floating substantially each newly arriving tape winding (113) on a fluid film (19) on the increasing tape pack. Opposite edges of substantially each new winding of the tape are continuoustly aligned for a number of turns (23) with corresponding edges of substantially all preceding windings of tape in the increasing tape pack with the aid of that fluid film. Increments of that fluid film between the turns are gradually diminished to zero until each leading turn of such number of turns has become locked to a remainder of the tape pack. Resulting packs (16) of wound tape are substantially fluid-free and co-planar along opposite radial planes (21, 22) of the tape pack.
    • 诸如磁性,光学和其它记录带的磁带(13)以及具有相对边缘(14,15)的许多其它类型的带通过浮动(18)围绕旋转轴线(18)卷绕到增加的带包装(16)中 基本上每个新到达的带卷绕器(113)在增加的带包装上的流体膜(19)上。 带的基本上每个新的绕组的相对边缘借助于该流体膜连续对准多个匝(23),具有在增加的带包中的带的基本上所有先前绕组的对应边缘。 匝间的流体膜的增量逐渐减小到零,直到这种匝数的每个前进转动已经锁定到磁带组件的其余部分。 缠绕带的所得包装(16)基本上是无流体的,并且与带包的相对的径向平面(21,22)共面。
    • 48. 发明申请
    • OPTICAL TAPE DRIVE MOVABLE PLANARIZER SUBSYSTEM AND METHOD FOR MINIMIZING DAMAGE TO AN OPTICAL PICKUP UNIT
    • 光学带驱动可移动平面设备子系统和最小化光学拾取单元损伤的方法
    • WO2011159591A1
    • 2011-12-22
    • PCT/US2011/040127
    • 2011-06-13
    • ORACLE INTERNATIONAL CORPORATIONMAHNAD, Faramarz
    • MAHNAD, Faramarz
    • G11B7/003G11B15/62
    • G11B15/62G11B7/003G11B15/26G11B15/60
    • In an optical tape drive system, a movable planarizer subsystem (16) includes a tape planarizer support structure (28) for supporting an optical tape planarizer (10). The support structure (28) is moveable between an operational position and a non - operational position. The movable planarizer subsystem (16) also includes an actuator (36) for moving the support structure (28) and the optical tape planarizer (10) between the operational position and the non - operational position. The operational position of the support structure (28) positions the optical tape planarizer (10) to permit reading/writing of information from/to an optical tape (18) via an optical pickup unit (OPU), and the non - operational position of the support structure (28) positions the optical tape planarizer (10) to permit passage of a tape leader (34) though the tape drive system without damage to the OPU.
    • 在光带驱动系统中,可移动平面化器子系统(16)包括用于支撑光带平面化器(10)的带平面化器支撑结构(28)。 支撑结构(28)可在操作位置和非操作位置之间移动。 可移动平面化器子系统(16)还包括用于在操作位置和非操作位置之间移动支撑结构(28)和光学带平面化器(10)的致动器(36)。 支撑结构(28)的操作位置将光带平面化器(10)定位成允许经由光学拾取单元(OPU)从光学胶带(18)读取/写入信息,并且将非操作位置 支撑结构(28)定位光带平面化器(10)以允许磁带引导件(34)通过磁带驱动系统而不损坏OPU。
    • 50. 发明申请
    • GUIDE DEVICE
    • 指导设备
    • WO1994018674A1
    • 1994-08-18
    • PCT/GB1994000209
    • 1994-02-04
    • PENNY & GILES DATA SYSTEMS LIMITEDMcWHIRR, MichaelPENNY, William, Alfred
    • PENNY & GILES DATA SYSTEMS LIMITED
    • G11B15/60
    • G11B15/602G11B15/60
    • A tape guide device comprises a guide element (10) including a pair of abutment surfaces (14a) which face one another and face opposed surfaces of a tape (16) to be guided in use. The abutment surfaces (14a) are spaced apart by an amount greater than a transverse dimension of the material (16). An engagement surface (18) is provided between the abutment surfaces (14a). A mechanism (22, 24) oscillates the guide element (10) in the direction of the transverse dimension of said material (16), at an amplitude of oscillation not exceeding the difference between the separation of the abutment surfaces (14a) and the transverse dimension of the material (16), in use.
    • 带导向装置包括导向元件(10),该引导元件(10)包括一对邻接表面(14a),所述邻接表面彼此面对并面对在使用中被引导的带(16)的相对表面。 邻接表面(14a)间隔开大于材料(16)的横向尺寸的量。 接合表面(18)设置在邻接表面(14a)之间。 机构(22,24)以不超过邻接表面(14a)和横向(14a)的分离之间的差的振荡振幅,使引导元件(10)在所述材料(16)的横向尺寸的方向上振荡, 材料(16)的尺寸在使用中。