Data storage device
    1.
    发明授权
    Data storage device 有权
    数据存储设备

    公开(公告)号:US08035923B2

    公开(公告)日:2011-10-11

    申请号:US12287467

    申请日:2008-10-08

    IPC分类号: G11B5/48

    CPC分类号: G11B25/043 G11B33/1466

    摘要: Embodiments of the present invention help to provide a sealed hard disk drive (HDD) with high reliability. According to one embodiment, a HDD is a hermetically sealed HDD. A base has an opening of a through-hole on its bottom; a feedthrough is provided so as to close the opening. A flange of the feedthrough has a larger outline than the opening, and its rim is joined to the base with solder at the solder joint. The solder at the solder joint is mainly composed of Sn and contains 15 atomic percent to 27 atomic percent of indium. This solder reaches the γ phase from −150° C. to 120° C. Accordingly, even if the HDD has been exposed at low temperature for a long time, the solder joint is not broken so that helium gas does not leak.

    摘要翻译: 本发明的实施例有助于提供高可靠性的密封硬盘驱动器(HDD)。 根据一个实施例,HDD是气密密封的HDD。 基底在其底部具有通孔的开口; 提供馈通以便关闭开口。 馈通的凸缘具有比开口更大的轮廓,并且其边缘在焊接点处与焊料接合到基部。 焊点处的焊料主要由Sn构成,含有15原子%〜27原子%的铟。 该焊料从-150℃到120℃达到γ相。因此,即使HDD在低温下长期暴露,焊接接头也不会断裂,因此氦气不会泄漏。

    Manufacturing method of hermetic connection terminal used in a disk drive device having hermetically sealed enclosure and disk drive device
    2.
    发明申请
    Manufacturing method of hermetic connection terminal used in a disk drive device having hermetically sealed enclosure and disk drive device 有权
    在具有密封外壳和盘驱动装置的盘驱动装置中使用的密封连接端子的制造方法

    公开(公告)号:US20090168233A1

    公开(公告)日:2009-07-02

    申请号:US12313615

    申请日:2008-11-21

    IPC分类号: G11B33/14 G11B5/127

    CPC分类号: G11B33/1466 Y10T29/49025

    摘要: To efficiently manufacture a feedthrough used in a disk drive device having a hermetically sealed enclosure, embodiments of the present invention manufacture a feedthrough used in an HDD having a hermetically sealed enclosure. An embodiment of a manufacturing method of the present embodiment manufactures a columnar body, cuts the columnar body in the direction vertical to the axes of pins, and cuts out a feedthrough. Then, necessary plating is made on the outer surfaces of the cut out feedthrough. The columnar body comprises a hollow tube, a plurality of pins inserted inside the tube, and an insulating sealant filled inside the tube. This manufacturing method achieves efficient manufacture of the feedthrough.

    摘要翻译: 为了有效地制造用于具有气密密封外壳的磁盘驱动装置中的馈通装置,本发明的实施例制造了在具有气密密封外壳的HDD中使用的馈通装置。 本实施例的制造方法的实施例制造柱状体,沿垂直于销的轴线的方向切割柱状体,并切断馈通。 然后,在切断的馈通的外表面上进行必要的电镀。 柱状体包括中空管,插入管内的多个销和填充在管内的绝缘密封剂。 该制造方法实现了馈通的高效制造。

    Disk drive device and manufacturing method thereof
    3.
    发明申请
    Disk drive device and manufacturing method thereof 审中-公开
    磁盘驱动装置及其制造方法

    公开(公告)号:US20090097375A1

    公开(公告)日:2009-04-16

    申请号:US12287595

    申请日:2008-10-10

    IPC分类号: G11B33/02 G11B5/127

    摘要: Embodiments of the present invention provide a simpler, miniaturizable, and highly reliable hermetically sealed enclosure structure in a disk drive device. According to one embodiment, a hard disk drive (HDD) comprises an HDD main unit, a case for housing the HDD main unit, a lid with a feedthrough function for closing an opening of the case, and an FPC connector for interconnecting the HDD main unit and a plurality of pins fixed to the lid. The lid is joined to the case and completely closes the opening of the case. The case and the lid form a sealed enclosure; the internal HDD main unit is housed in the sealed space. Housing the HDD main unit in a sealed space may increase resistance of the HDD to external environmental changes. Sealing low density gas like helium in the sealed space may improve the performance of the HDD.

    摘要翻译: 本发明的实施例提供了一种在盘驱动装置中更简单,可微型化和高度可靠的气密密封结构。 根据一个实施例,硬盘驱动器(HDD)包括HDD主单元,用于容纳HDD主单元的壳体,具有用于关闭壳体的开口的馈通功能的盖以及用于将HDD主体互连的FPC连接器 单元和固定到盖的多个销。 盖子连接到壳体并完全关闭壳体的开口。 外壳和盖子形成密封的外壳; 内部HDD主机容纳在密封空间中。 将HDD主机安装在密封空间中可能会增加HDD对外部环境变化的阻力。 在密封空间中密封低密度气体如氦可以提高HDD的性能。

    Disk-enclosure base configured to inhibit formation of adherent solder-flux residue
    4.
    发明授权
    Disk-enclosure base configured to inhibit formation of adherent solder-flux residue 有权
    配置为防止粘附焊剂残留物形成的盘形外壳基座

    公开(公告)号:US08749914B2

    公开(公告)日:2014-06-10

    申请号:US13228363

    申请日:2011-09-08

    IPC分类号: G11B5/127

    摘要: A disk-enclosure base that is configured to inhibit formation of adherent solder-flux residue. The disk-enclosure base includes a casting, a through-hole fabricated in the casting, a solder channel, an E-coat layer, and an E-coat-free zone. The E-coat layer is applied to a first portion of an interior surface of the casting. The E-coat-free zone is adjacent to and surrounds the solder channel. The E-coat-free zone also includes a second portion of the interior surface of the casting lying between the solder channel and the E-coated first portion of the interior surface of the casting. The E-coat-free zone is configured to inhibit formation of adherent solder-flux residue. A disk-enclosure-base/electrical-feedthrough assembly that is configured to inhibit formation of adherent solder-flux residue, and a hard-disk drive (HDD) including the disk-enclosure-base/electrical-feedthrough assembly are also provided.

    摘要翻译: 配置为抑制粘附焊剂残留物形成的盘形外壳基座。 圆盘外壳底座包括铸件,在铸件中制造的通孔,焊接通道,E涂层和无E涂层区域。 将E涂层施加到铸件的内表面的第一部分。 电镀无区域与焊料通道相邻并围绕。 无涂层区域还包括位于焊料通道和铸件内表面的E涂覆的第一部分之间的铸件的内表面的第二部分。 无涂层区域被配置为抑制粘附焊剂残留物的形成。 还提供了被配置为抑制粘附焊料残余物的形成的盘形外壳 - 基座/电气馈通组件,以及包括盘 - 外壳 - 电 - 馈电组件的硬盘驱动器(HDD)。

    DISK-ENCLOSURE BASE CONFIGURED TO INHIBIT FORMATION OF ADHERENT SOLDER-FLUX RESIDUE
    5.
    发明申请
    DISK-ENCLOSURE BASE CONFIGURED TO INHIBIT FORMATION OF ADHERENT SOLDER-FLUX RESIDUE 有权
    配置禁止形成附加焊剂通道残留物的封装基板

    公开(公告)号:US20130063838A1

    公开(公告)日:2013-03-14

    申请号:US13228363

    申请日:2011-09-08

    IPC分类号: G11B5/012 H05K5/02

    摘要: A disk-enclosure base that is configured to inhibit formation of adherent solder-flux residue. The disk-enclosure base includes a casting, a through-hole fabricated in the casting, a solder channel, an E-coat layer, and an E-coat-free zone. The E-coat layer is applied to a first portion of an interior surface of the casting. The E-coat-free zone is adjacent to and surrounds the solder channel. The E-coat-free zone also includes a second portion of the interior surface of the casting lying between the solder channel and the E-coated first portion of the interior surface of the casting. The E-coat-free zone is configured to inhibit formation of adherent solder-flux residue. A disk-enclosure-base/electrical-feedthrough assembly that is configured to inhibit formation of adherent solder-flux residue, and a hard-disk drive (HDD) including the disk-enclosure-base/electrical-feedthrough assembly are also provided.

    摘要翻译: 配置为抑制粘附焊剂残留物形成的盘形外壳基座。 圆盘外壳底座包括铸件,在铸件中制造的通孔,焊接通道,E涂层和无E涂层区域。 将E涂层施加到铸件的内表面的第一部分。 电镀无区域与焊料通道相邻并围绕。 无涂层区域还包括位于焊料通道和铸件内表面的E涂覆的第一部分之间的铸件的内表面的第二部分。 无涂层区域被配置为抑制粘附焊剂残留物的形成。 还提供了被配置为抑制粘附焊料残余物的形成的盘形外壳 - 基座/电气馈通组件,以及包括盘 - 外壳 - 电 - 馈电组件的硬盘驱动器(HDD)。

    Magnetic disk drive feed-through solder connection with solder fillet formed inside base and protruding outside base
    6.
    发明授权
    Magnetic disk drive feed-through solder connection with solder fillet formed inside base and protruding outside base 有权
    磁盘驱动器通过焊接连接与底部内部形成的焊锡圆角突出到底部

    公开(公告)号:US08179631B2

    公开(公告)日:2012-05-15

    申请号:US12148697

    申请日:2008-04-21

    IPC分类号: G11B33/12

    摘要: Embodiments of the present invention help to achieve a solder joining structure having high reliability, in which even if a componential material of a flange of a feed-through of a sealed magnetic disk drive is an iron-based material such as Kovar™, and a componential material of a base of the drive is an aluminum-based alloy, leakage of low-density gas is dramatically reduced. According to one embodiment, a base has a stepped portion in the inside of a periphery of an opening, and an inclined surface extending to the outside of the base is formed at an edge of a surface of the stepped portion, on which a flange of a feed-through is placed, thereby when the stepped portion of the base is joined by soldering with the flange of the feed-through, a solder fillet is formed not only in the inside of the base, but also in the outside thereof.

    摘要翻译: 本发明的实施例有助于实现具有高可靠性的焊接接合结构,其中即使密封磁盘驱动器的馈通的凸缘的部件材料是诸如Kovar TM的铁基材料,以及 驱动器的基座的组成材料是铝基合金,低密度气体的泄漏显着降低。 根据一个实施例,基座在开口的周边的内侧具有阶梯部分,并且在台阶部分的表面的边缘处形成有延伸到基部外侧的倾斜表面, 通过放置馈通,由此当基座的阶梯部分通过与馈通的凸缘焊接而接合时,不仅在基座的内部,而且在其外部形成焊接圆角。

    Disk drive device
    7.
    发明申请
    Disk drive device 有权
    磁盘驱动器

    公开(公告)号:US20080165449A1

    公开(公告)日:2008-07-10

    申请号:US12008275

    申请日:2008-01-09

    IPC分类号: G11B33/14

    摘要: In a disk drive device in which low-density gas is sealed, embodiments of the present invention help to improve joint reliability at a solder joint section between a feedthrough and an enclosure with respect to stress applied by deformation due to changes in temperature environment in use. According to one embodiment, helium gas is sealed in an interior space of an HDD. A feedthrough is solder jointed to a feedthrough mounting surface of a base. At a part with relatively large thermal stress, a width of the feedthrough mounting surface is increased, and at a part with relatively small thermal stress, a width of the feedthrough mounting surface is decreased. This prevents a crack penetrating path from being generated at the solder joint section due to the thermal stress and prevents the solder joint section from contacting pins.

    摘要翻译: 在其中密封低密度气体的盘驱动装置中,本发明的实施例有助于提高馈通和外壳之间的焊接部分处的关节可靠性,这是由于由于使用中的温度环境变化而引起的变形而施加的应力 。 根据一个实施例,氦气密封在HDD的内部空间中。 馈通焊接到基座的馈通安装表面。 在具有相对较大的热应力的部分,馈通安装面的宽度增加,并且在热应力相对较小的部分,馈通安装面的宽度减小。 这防止由于热应力而在焊接部分产生裂纹穿透路径,并且防止焊接部分接触销。

    Disk drive device
    8.
    发明授权
    Disk drive device 有权
    磁盘驱动器

    公开(公告)号:US07872836B2

    公开(公告)日:2011-01-18

    申请号:US12008275

    申请日:2008-01-09

    IPC分类号: G11B33/14

    摘要: In a disk drive device in which low-density gas is sealed, embodiments of the present invention help to improve joint reliability at a solder joint section between a feedthrough and an enclosure with respect to stress applied by deformation due to changes in temperature environment in use. According to one embodiment, helium gas is sealed in an interior space of an HDD. A feedthrough is solder jointed to a feedthrough mounting surface of a base. At a part with relatively large thermal stress, a width of the feedthrough mounting surface is increased, and at a part with relatively small thermal stress, a width of the feedthrough mounting surface is decreased. This prevents a crack penetrating path from being generated at the solder joint section due to the thermal stress and prevents the solder joint section from contacting pins.

    摘要翻译: 在其中密封低密度气体的盘驱动装置中,本发明的实施例有助于提高馈通和外壳之间的焊接部分处的关节可靠性,这是由于由于使用中的温度环境变化而引起的变形而施加的应力 。 根据一个实施例,氦气密封在HDD的内部空间中。 馈通焊接到基座的馈通安装表面。 在具有相对较大的热应力的部分,馈通安装面的宽度增加,并且在热应力相对较小的部分,馈通安装面的宽度减小。 这防止由于热应力而在焊接部分产生裂纹穿透路径,并且防止焊接部分接触销。

    RAMP FOR MAGNETIC DISC APPARATUS
    9.
    发明申请
    RAMP FOR MAGNETIC DISC APPARATUS 有权
    磁碟机RAMP

    公开(公告)号:US20100061012A1

    公开(公告)日:2010-03-11

    申请号:US12547027

    申请日:2009-08-25

    IPC分类号: G11B17/04

    CPC分类号: G11B21/22 G11B5/54

    摘要: For cushioning a shock to prevent problems such as a reading error, a ramp for a magnetic disc apparatus is made of a resin material for forming a ramp main body and a material having higher rigidity than the resin material, disc facing surfaces in the disc insertion portion for inserting a magnetic disc is provided with disc contact portions made of the high rigidity material, a bottom surface portion of a concave portion of the disc insertion portion is constructed by a combination of a bottom surface portion made of the resin material and a bottom surface portion made of the high rigidity material, and a step structure is provided by arranging the bottom surface portion made of the high rigidity material at a position moved rearward in a depth direction of the concave portion in comparison with the bottom surface portion made of the resin material.

    摘要翻译: 为了缓冲冲击以防止诸如读取误差的问题,磁盘装置的斜面由用于形成斜面主体的树脂材料和具有比树脂材料更高的刚性的材料制成,盘插入中的盘对面的表面 用于插入磁盘的部分设置有由高刚性材料制成的盘接触部分,盘插入部分的凹部的底面部分由由树脂材料制成的底面部分和底部 由高刚性材料制成的表面部分和台阶结构是通过将由高刚性材料制成的底面部分设置在与凹部的底面部分相比在凹部的深度方向上向后移动的位置 树脂材料。