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    • 32. 发明授权
    • Method of making multi-layer structure for metal-insulator-metal capacitor
    • 制造金属绝缘子金属电容器多层结构的方法
    • US07915135B2
    • 2011-03-29
    • US12432772
    • 2009-04-30
    • Chun-Kai WangChun-Chih HuangChun-Ming Wu
    • Chun-Kai WangChun-Chih HuangChun-Ming Wu
    • H01L21/20H01L21/8242
    • H01L28/75Y10T29/43
    • The present invention discloses a method of making a multi-layer structure for metal-insulator-metal capacitors, in which, a bottom electrode plate layer is formed on a substrate, wherein a Ti/TiN layer serving as a top anti-reflection coating (top ARC) of the bottom electrode plate layer including a titanium layer and a titanium nitride layer formed on the titanium layer is formed using a first and a second physical vapor deposition (PVD) processes at a temperature ranging from 25 to 400° C., and then a first capacitor dielectric layer, a middle electrode plate layer, a second capacitor dielectric layer, and a top electrode plate layer are formed on the bottom electrode plate layer in an order from bottom to top.
    • 本发明公开了一种金属 - 绝缘体 - 金属电容器的多层结构的制造方法,其中,在基板上形成有底部电极板层,其中,作为顶部防反射膜的Ti / TiN层( 使用在25〜400℃的温度范围内的第一和第二物理气相沉积(PVD)工艺形成包括形成在钛层上的钛层和氮化钛层的底部电极板层的底部电极板层的顶部ARC) 然后从底部到顶部的顺序,在底部电极板层上形成第一电容器电介质层,中间电极板层,第二电容器电介质层和顶部电极板层。
    • 36. 发明授权
    • Clamping device for workpieces with different sizes
    • 不同尺寸工件的夹紧装置
    • US08141857B2
    • 2012-03-27
    • US12468842
    • 2009-05-19
    • Chun-Kai Wang
    • Chun-Kai Wang
    • B25B5/08B25B1/02
    • B23Q3/062B23Q2240/002
    • A clamping device for clamping a workpiece includes a support member, sliding members and a rotating member. The support member is configured for supporting the workpiece. The support member defines cutouts in a periphery thereof. The sliding members each is positioned in one of the cutouts. Each of the sliding members has a cam pin. The rotating member is rotatable relative to the support member. The rotating member defines cam slots on top thereof. The cam pins are received in the cam slots and slidable in the cam slots. Positions of the sliding members are changeable along radial directions of the support member when the rotating member is rotated.
    • 用于夹持工件的夹紧装置包括支撑构件,滑动构件和旋转构件。 支撑构件被构造成用于支撑工件。 支撑构件在其周边中限定切口。 滑动构件各自定位在一个切口中。 每个滑动构件具有凸轮销。 旋转构件可相对于支撑构件旋转。 旋转构件在其顶部上限定凸轮槽。 凸轮销被容纳在凸轮槽中并可在凸轮槽中滑动。 当旋转构件旋转时,滑动构件的位置可沿着支撑构件的径向改变。
    • 37. 发明申请
    • FEDERATED IMPLICIT SEARCH
    • 联合隐含搜索
    • US20110295852A1
    • 2011-12-01
    • US12791000
    • 2010-06-01
    • Kuansan WangEmre M. KicimanBo-June HsuChun-Kai Wang
    • Kuansan WangEmre M. KicimanBo-June HsuChun-Kai Wang
    • G06F17/30G06F3/01
    • G06F17/30867G06Q10/00
    • A resource selection system is described for assisting a user in performing a task that includes multiple actions. At each stage of the task, the system presents a set resources from which the user may select to perform a subsequent action in the task. The system implicitly selects the set of resources based on context information that identifies the user's current informational needs. For example, the context information may be derived from textual information that is being presented on a user device, which the user is presumed to be viewing at the current time. In one implementation, the system selects the set of resources by computing language models for respective domains and respective entities. The system uses the language models to determine the relevance of the context information to each of the domains. The system then selects resources associated with domains that have been assessed as relevant.
    • 描述了一种资源选择系统,用于帮助用户执行包括多个动作的任务。 在任务的每个阶段,系统呈现用户可以从中选择执行任务中的后续动作的集合资源。 系统基于识别用户当前信息需求的上下文信息来隐含地选择资源集合。 例如,可以从呈现在用户设备上的文本信息导出上下文信息,用户被认为在当前时间正在观看。 在一个实现中,系统通过计算各个域和相应实体的语言模型来选择资源集合。 系统使用语言模型来确定上下文信息与每个域的相关性。 然后系统选择与被评估为相关的域相关联的资源。
    • 39. 发明授权
    • Apparatus for assembling lens module
    • 镜头模组装置
    • US07876512B2
    • 2011-01-25
    • US12242534
    • 2008-09-30
    • Hang-Ming WongChun-Kai Wang
    • Hang-Ming WongChun-Kai Wang
    • G02B7/02
    • G02B27/62
    • An apparatus for assembling a lens module is provided. The lens module comprises a lens barrel and at least one optical element received therein. The apparatus includes an element-grasping member, an assembly station and two guiding members. The element-grasping member is configured for grasping the at least one optical element and mounting the at least one optical element into the lens barrel. The assembly station has a support surface. Each of the two guiding members includes a stationary element fixedly positioned on the support surface, a movable element and an elastic element. The movable element includes a positioning surface and a clamping surface. The positioning surface is configured for pressing the element-grasping member. The clamping surface is configured for pressing the lens barrel. The elastic element is positioned between the stationary element and the movable element.
    • 提供一种用于组装透镜模块的装置。 透镜模块包括透镜镜筒和容纳在其中的至少一个光学元件。 该装置包括一个元件把持部件,一个组装工位和两个引导部件。 元件抓持构件构造成用于抓住至少一个光学元件并将至少一个光学元件安装到镜筒中。 组装工位具有支撑面。 两个引导构件中的每一个包括固定地定位在支撑表面上的固定元件,可移动元件和弹性元件。 可移动元件包括定位表面和夹紧表面。 定位面被构造成用于按压元件把持构件。 夹紧表面配置用于按压镜筒。 弹性元件位于固定元件和可移动元件之间。