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    • 22. 发明申请
    • Method of transferring digital rights
    • 数字权利转让方式
    • US20070198419A1
    • 2007-08-23
    • US11346795
    • 2006-02-03
    • Joon ParkHosame Abu-Amara
    • Joon ParkHosame Abu-Amara
    • H04L9/00
    • H04L63/0428H04L9/0825H04L63/10H04L2463/101
    • A system and method of transferring digital rights from a first device to a second device. A target rights management object is transferred from the first device to the second device. A probabilistic data structure is created that identifies each of a class of rights management objects that are present on the first device. The probabilistic data structure is employed to determine whether the target rights management object is present on the first device. The target rights management object is utilized on the second device in response to a determination through employment of the probabilistic data structure that the target rights management object is not present on the first device. The target rights management object and its state are returned to the first device in response to a determination through employment of the probabilistic data structure that the target rights management object is present on the first device.
    • 一种将数字权利从第一设备传送到第二设备的系统和方法。 目标权限管理对象从第一设备传送到第二设备。 创建概率数据结构,其识别存在于第一设备上的一类权限管理对象中的每一个。 采用概率数据结构来确定目标权限管理对象是否存在于第一设备上。 响应于通过使用概率数据结构确定目标权限管理对象不存在于第一设备上的目标权限管理对象在第二设备上被利用。 响应于通过使用目标权限管理对象存在于第一设备上的概率数据结构的确定,将目标权限管理对象及其状态返回到第一设备。
    • 23. 发明申请
    • Adhesive dispenser
    • 胶水分配器
    • US20070127978A1
    • 2007-06-07
    • US11699642
    • 2007-01-29
    • Joon Park
    • Joon Park
    • B43M11/06A46B11/00B05C17/02B43K29/00A46B17/02
    • B43M11/06A46B3/04A46B3/08A46B7/04A46B11/002A46B2200/20B05C17/00516B05C17/015B05C17/0217B05C17/03B43M11/02
    • The brush applicator has a tapered inner wall and inwardly extended flange inside of a nozzle, which secures a molded or crimped brush assembly. Two edge applicators apply a substantially uniform thin layer of adhesive or glue only on the edge surface of a workpiece. A first edge applicator applies glue through an exit and a second embodiment of the edge applicator has a roller with side flanges and with a reduced portion in-between. A flat surface applicator may have plural vanes and channels inside of two outer walls to distribute adhesive to a wider flat exit. A biscuit applicator applies glue on two side surfaces of elliptical slots that are formed by biscuit cutters. The glue flows through plural vanes or plural transversely positioned openings and passes to form two opposite layers of glue. A dowel applicator applies a thin substantially uniform layer of glue on the wall of a dowel-receiving hole prior to installation of dowel pins. The glue is applied using a cylindrical nozzle body with plural projections and a reduced diameter portion. A wet well prevents applicator from clogging by hardened glue. The wet well fits tightly over the cap and the entire inner space of the wet well is saturated with moisture/solvent from a water/solvent retainer. A viscous-material applicator dispenses a plurality of beads on the floor or on backside of the workpieces. The viscous-material applicator includes a nozzle that has a flat but wide exit at outlet end, wherein the nozzle has plural vanes or flow restraints to diverge the flow of adhesive to a wider outlet end that has a plurality of orifices.
    • 刷涂机在喷嘴内部具有锥形内壁和向内延伸的凸缘,其固定模制或卷曲的刷组件。 两个边缘施加器仅在工件的边缘表面上施加基本上均匀的薄层粘合剂或胶水。 第一边缘施加器通过出口施加胶水,并且边缘施加器的第二实施例具有带有侧凸缘的辊,并且其间具有减小的部分。 平面施加器可以在两个外壁内部具有多个叶片和通道,以将粘合剂分配到更宽的平坦出口。 饼干涂抹器在由饼干切割器形成的椭圆形狭槽的两个侧表面上施加胶水。 胶水流过多个叶片或多个横向定位的开口并通过以形成两个相对的胶层。 在安装定位销之前,定位销施加器在定位销接收孔的壁上施加薄的基本均匀的胶层。 使用具有多个突起和直径减小部分的圆柱形喷嘴体施加胶。 湿式井可以防止施加器被硬化胶堵塞。 湿井紧紧地套在盖上,湿井的整个内部空间用水/溶剂保持器的水分/溶剂饱和。 粘性材料施加器在地板上或工件的背面分配多个珠子。 粘性材料施加器包括在出口端处具有平坦但宽的出口的喷嘴,其中喷嘴具有多个叶片或流动限制器,以将粘合剂流分散到具有多个孔口的更宽的出口端。
    • 25. 发明授权
    • Adjustable pocket drilling fixture
    • 可调口袋钻具
    • US07134814B1
    • 2006-11-14
    • US10668659
    • 2003-09-23
    • Joon Park
    • Joon Park
    • B23B47/28
    • B23B47/287B23B2270/58Y10T408/563Y10T408/567
    • A pocket drilling fixture has a clamp base with a clamping face formed thereon. Opposing the clamp base is a clamp body with an opposing clamping face. Clamp structure interengages the clamp body and the base. The clamp structure includes a clamp actuator positioned adjacent to the base to move the clamp body in a clamping direction. A guide carrier has at least one drill guide disposed therein, and has an axis which intersects a plane defined by the clamping face. The guide carrier is mounted on the base to move in the direction parallel to the plane. The base may have formed thereon a turret having multiple surfaces for height adjustment. The turret may be positioned under the guide carrier to set its height above the base so that height can be preselected, depending on the workpiece thickness.
    • 口袋钻具具有形成在其上的夹紧面的夹具基座。 夹紧基座是具有相对夹紧面的夹具主体。 夹具结构与夹具主体和基座相互接合。 夹紧结构包括邻近基座定位的夹紧致动器,以沿夹紧方向移动夹具主体。 导向架具有设置在其中的至少一个钻子引导件,并且具有与由夹紧面限定的平面相交的轴线。 导向架安装在基座上以在平行于平面的方向上移动。 基座可以在其上形成有具有用于高度调节的多个表面的转台。 转台可以定位在导向架下方,以将其高度设置在基座上方,以便根据工件厚度预先选择高度。
    • 27. 发明申请
    • MICRO-ELECTRICAL-MECHANICAL DEVICE AND METHOD OF MAKING SAME
    • 微机电装置及其制造方法
    • US20060152111A1
    • 2006-07-13
    • US11031950
    • 2005-01-10
    • Robert AllisonRon NakahiraJoon ParkBrian Tran
    • Robert AllisonRon NakahiraJoon ParkBrian Tran
    • H01L41/08
    • H01G5/18H01P1/127H01P11/003
    • A micro-electro-mechanical device including a first substrate; a first contact disposed on a first surface of the substrate; a piezoelectric actuator disposed over the first surface of the substrate; a second contact coupled to the actuator and disposed in proximity to the first contact; a gap control mechanism disposed between the substrate and the actuator for limiting movement of the first contact relative to the second contact. In the exemplary embodiment, the gap control mechanism is a gap control stop constructed of dielectric material. In practice, plural stops are used. In the exemplary embodiment, plural thermosonic bonds are used to connect the actuator to the first substrate. A second substrate is disposed over the piezo-electric actuator. The second substrate has wells over the bonds to facilitate application of a bonding tool to the bonds. The gap control mechanism provides consistent height control between a flipped chip and its base substrate without exposing the assembly to high temperatures.
    • 一种微电子机械装置,包括第一基板; 设置在所述基板的第一表面上的第一触点; 设置在所述基板的所述第一表面上方的压电致动器; 耦合到所述致动器并且设置在所述第一触点附近的第二触点; 间隙控制机构,设置在所述基板和所述致动器之间,用于限制所述第一接触件相对于所述第二接触件的移动。 在示例性实施例中,间隙控制机构是由电介质材料构成的间隙控制止挡件。 实际上,使用多个停止点。 在示例性实施例中,使用多个热声键将致动器连接到第一基板。 第二基板设置在压电致动器的上方。 第二衬底具有超过键的孔,以便于将键合工具应用于键。 间隙控制机构在翻转芯片与其基底之间提供一致的高度控制,而不会使组件暴露于高温。
    • 30. 发明申请
    • Apparatus and method for driving electro-luminescent display panel and method of fabricating electro-luminescent display device
    • 用于驱动电致发光显示面板的装置和方法以及制造电致发光显示装置的方法
    • US20050012695A1
    • 2005-01-20
    • US10825599
    • 2004-04-16
    • Joon Park
    • Joon Park
    • H05B33/10G09G3/20G09G3/30H01L51/50H05B33/00H05B33/14
    • G09G3/3291G09G3/3233G09G2300/0842
    • An apparatus and method for driving an electro-luminescent display panel and a method of fabricating the electro-luminescent display panel includes an electro-luminescent display panel having electro-luminescent light-emitting cells provided at crossings of gate lines and data lines. A current generating circuit generates a current corresponding to an externally supplied digital data. A data driver samples the current from the current generating circuit during each horizontal period to generate a data voltage corresponding to the current and applies the generated data voltage to the data lines. A timing controller controls the data driver, applies the digital data to the current generating circuit, and generates a sampling control signal. The sampling control signal controls the data driver. and applies the sampled signal to the data driver.
    • 用于驱动电致发光显示面板的装置和方法以及制造电致发光显示面板的方法包括:电致发光显示面板,其具有设置在栅极线和数据线的交叉处的电致发光发光单元。 电流产生电路产生对应于外部提供的数字数据的电流。 数据驱动器在每个水平周期期间对来自电流发生电路的电流进行采样,以产生与电流相对应的数据电压,并将产生的数据电压施加到数据线。 定时控制器控制数据驱动器,将数字数据施加到电流发生电路,并产生采样控制信号。 采样控制信号控制数据驱动器。 并将采样信号应用于数据驱动器。