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    • 31. 发明授权
    • Oil filter wrench
    • 油过滤扳手
    • US09403263B2
    • 2016-08-02
    • US14243538
    • 2014-04-02
    • Chiu-Chi Lai
    • Chiu-Chi Lai
    • B25B27/00B25B13/50B25B13/46
    • B25B27/0042B25B13/463B25B13/505
    • An oil filter wrench includes a base, a main rotating body, a ratcheting drive portion, a limiting mechanism, at least three rotating members and at least three claws. The main rotating portion is rotatably assembled with the body including a drive portion operable from outside. The ratcheting drive portion includes a ratcheting disk rotatably mounted with the main rotating portion and a main gear engaged with the ratcheting disk. The limiting mechanism includes at least one ratcheting member movably disposed on the main rotating body and including at least one tooth selectively engaged with the ratcheting disk. The rotating members axially pivoted to the base are arranged around an axis of the base. Each rotating member includes a passive gear portion engaged with the main gear and rotatable about a central axis. The claws connected to the rotating members are movable around corresponding central axis respectively.
    • 油过滤器扳手包括基座,主旋转体,棘轮驱动部分,限制机构,至少三个旋转构件和至少三个爪。 主旋转部分与主体可旋转地组装,包括可从外部操作的驱动部分。 棘轮驱动部分包括可旋转地安装有主旋转部分的棘轮盘和与棘轮盘啮合的主齿轮。 限制机构包括可移动地设置在主旋转体上并且包括选择性地与棘轮盘啮合的至少一个齿的至少一个棘轮构件。 轴向地枢转到基座的旋转构件围绕基座的轴线布置。 每个旋转构件包括与主齿轮接合并可围绕中心轴线旋转的被动齿轮部分。 连接到旋转构件的爪分别可以相应的中心轴移动。
    • 32. 发明申请
    • DISMANTLING DEVICE
    • 不同的设备
    • US20160114469A1
    • 2016-04-28
    • US14521193
    • 2014-10-22
    • Chiu-Chi LAI
    • Chiu-Chi LAI
    • B25B27/00B25B13/46
    • B25B27/0042B25B13/463
    • A dismantling device is provided, including a main body, a major sprocket, at least two rotating members and at least two clamping members. The main body has an axial direction, and the major sprocket is rotatably assembled with the main body. The at least two rotating members are pivotally disposed in the main body and arranged around the axial direction, and each rotating member includes a minor sprocket portion meshed with the major sprocket and a position-limiting portion. Each minor sprocket portion rotates about a central axis. The at least two clamping portions connect to the rotating members respectively and are rotatable around the corresponding central axes respectively. Each clamping member includes a restricting portion pivoted to the position-limiting portion and a clamping portion, wherein the restricting portion and the position-limiting portion are mutually restricted, and the restricting portion is restrictedly swingable within the position-limiting portion.
    • 提供了拆卸装置,包括主体,主链轮,至少两个旋转构件和至少两个夹紧构件。 主体具有轴向,主链轮与主体可旋转地组装。 所述至少两个旋转构件枢转地设置在所述主体中并且围绕所述轴向布置,并且每个所述旋转构件包括与所述主链轮啮合的次要链轮部分和位置限制部分。 每个次级链轮部分围绕中心轴线旋转。 所述至少两个夹紧部分分别连接到所述旋转部件,并且能够分别围绕对应的中心轴线旋转。 每个夹紧构件包括枢转到位置限制部分的限制部分和夹持部分,其中限制部分和位置限制部分被相互限制,并且限制部分在限位部分内被限制地摆动。
    • 36. 发明申请
    • OIL FILTER WRENCH
    • 油过滤器扳手
    • US20150283686A1
    • 2015-10-08
    • US14243538
    • 2014-04-02
    • Chiu-Chi LAI
    • Chiu-Chi LAI
    • B25B27/00B25B13/46B25B13/50
    • B25B27/0042B25B13/463B25B13/505
    • An oil filter wrench includes a base, a main rotating body, a ratcheting drive portion, a limiting mechanism, at least three rotating members and at least three claws. The main rotating portion is rotatably assembled with the body including a drive portion operable from outside. The ratcheting drive portion includes a ratcheting disk rotatably mounted with the main rotating portion and a main gear engaged with the ratcheting disk. The limiting mechanism includes at least one ratcheting member movably disposed on the main rotating body and including at least one tooth selectively engaged with the ratcheting disk. The rotating members axially pivoted to the base are arranged around an axis of the base. Each rotating member includes a passive gear portion engaged with the main gear and rotatable about a central axis. The claws connected to the rotating members are movable around corresponding central axis respectively.
    • 油过滤器扳手包括基座,主旋转体,棘轮驱动部分,限制机构,至少三个旋转构件和至少三个爪。 主旋转部分与主体可旋转地组装,包括可从外部操作的驱动部分。 棘轮驱动部分包括可旋转地安装有主旋转部分的棘轮盘和与棘轮盘啮合的主齿轮。 限制机构包括可移动地设置在主旋转体上并且包括选择性地与棘轮盘啮合的至少一个齿的至少一个棘轮构件。 轴向地枢转到基座的旋转构件围绕基座的轴线布置。 每个旋转构件包括与主齿轮接合并可围绕中心轴线旋转的被动齿轮部分。 连接到旋转构件的爪分别可以相应的中心轴移动。
    • 39. 发明授权
    • Method of forming an FeRAM capacitor having a bottom electrode diffusion barrier
    • 形成具有底部电极扩散阻挡层的FeRAM电容器的方法
    • US06773930B2
    • 2004-08-10
    • US10305838
    • 2002-11-26
    • Scott R. SummerfeltSanjeev AggarwalTomojuki SakodaChiu ChiTheodore S. Moise, IV
    • Scott R. SummerfeltSanjeev AggarwalTomojuki SakodaChiu ChiTheodore S. Moise, IV
    • H01L2100
    • H01L27/11502H01L21/28568H01L27/11507H01L28/75
    • The present invention is directed to a method of forming an FeRAM integrated circuit, which includes forming a TiAlON bottom electrode diffusion barrier layer prior to formation of the bottom electrode layer in an FeRAM capacitor stack. Subsequently, when performing the capacitor stack etch, the portion of the TiAlON diffusion barrier layer not covered by the FeRAM capacitor stack is etched substantially anisotropically due to the oxygen within the TiAlON diffusion barrier layer substantially preventing a lateral etching thereof. In the above manner, an undercut of the TiAlON diffusion barrier layer under the FeRAM capacitor stack is prevented. In another aspect of the invention, a method of forming an FeRAM capacitor comprises forming a multi-layer bottom electrode diffusion barrier layer. Such formation comprises forming a TiN layer over the interlayer dielectric layer and the conductive contact and forming a diffusion barrier layer thereover. The TiN layer at least partially fills any seam that exists within the conductive contact, thus improving a conductivity between the FeRAM capacitor and a conductive contact in the interlayer dielectric.
    • 本发明涉及一种形成FeRAM集成电路的方法,其包括在FeRAM电容器堆叠中形成底部电极层之前形成TiAlON底部电极扩散阻挡层。 随后,当执行电容器堆叠蚀刻时,TiAlON扩散阻挡层中未被FeRAM电容器堆叠覆盖的部分被TiAlON扩散阻挡层内的氧基本上各向异性地蚀刻,基本上防止了其横向蚀刻。 以上述方式,防止了FeRAM电容器堆叠下的TiAlON扩散阻挡层的底切。 在本发明的另一方面,形成FeRAM电容器的方法包括形成多层底电极扩散阻挡层。 这种形成包括在层间电介质层和导电接触面上形成TiN层,并在其上形成扩散阻挡层。 TiN层至少部分地填充存在于导电接触中的任何接缝,从而提高了FeRAM电容器和层间电介质中的导电接触之间的导电性。