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    • 5. 发明授权
    • Organic light emitting diode display and method of manufacturing the same
    • 有机发光二极管显示器及其制造方法
    • US08796671B2
    • 2014-08-05
    • US12413842
    • 2009-03-30
    • Soo-Hyun KimCheol-Ho ParkJong-Hyun ParkSun ParkChun-Gi YouYul-Kyu Lee
    • Soo-Hyun KimCheol-Ho ParkJong-Hyun ParkSun ParkChun-Gi YouYul-Kyu Lee
    • H01L51/52
    • H01L27/3272H01L51/0037H01L51/0038H01L51/0039H01L51/0042H01L51/0052
    • An organic light emitting diode display including a substrate; a light blocking layer disposed on the substrate and having a semiconductor opening; a first semiconductor pattern disposed in the semiconductor opening; a gate insulating layer disposed on the light blocking layer and the first semiconductor pattern; a first gate electrode disposed on the gate insulating layer; a first source electrode electrically connected to the first semiconductor pattern; a first drain electrode spaced apart from the first source electrode; a protective insulating layer disposed on the first source electrode and the first drain electrode, the protective insulating layer having a contact portion; a pixel electrode disposed on the protective insulating layer contacting the first drain electrode through the contact portion; an emitting layer disposed on the pixel electrode; and a common electrode disposed on the emitting layer.
    • 一种有机发光二极管显示器,包括基板; 遮光层,设置在所述基板上并具有半导体开口; 设置在半导体开口中的第一半导体图案; 设置在所述遮光层和所述第一半导体图案上的栅极绝缘层; 设置在所述栅极绝缘层上的第一栅电极; 电连接到第一半导体图案的第一源电极; 与所述第一源电极间隔开的第一漏电极; 保护绝缘层,设置在所述第一源电极和所述第一漏电极上,所述保护绝缘层具有接触部分; 设置在所述保护绝缘层上的像素电极,所述保护绝缘层通过所述接触部分接触所述第一漏电极; 设置在像素电极上的发光层; 以及设置在发光层上的公共电极。
    • 7. 发明授权
    • Vehicle detection apparatus and method using magnetic sensor
    • 使用磁传感器的车辆检测装置和方法
    • US08711006B2
    • 2014-04-29
    • US13601370
    • 2012-08-31
    • Jae-Jun YooDo-Hyun KimJong-Hyun ParkKyong-Ho KimJong-Woo Choi
    • Jae-Jun YooDo-Hyun KimJong-Hyun ParkKyong-Ho KimJong-Woo Choi
    • G08G1/042G08G1/01
    • G08G1/042
    • The vehicle detection apparatus includes a communication unit, a magnetic sensing unit, a calibration information generation unit, a vehicle detection unit, and a control unit. The communication unit receives information about movement of a reference vehicle from a central management center. The magnetic sensing unit senses the change in a magnetic field attributable to the movement of a vehicle, and generates a magnetic signal. The calibration information generation unit generates calibration information. The vehicle detection unit calibrates the change in the magnetic signal attributable to movement of an actual vehicle based on the calibration information, and detects the movement of the actual vehicle. The control unit controls the above units, and sets the mode to calibration information generation mode in order to generate the calibration information and to vehicle detection mode in order to sense the movement of the actual vehicle.
    • 车辆检测装置包括通信单元,磁感测单元,校准信息生成单元,车辆检测单元和控制单元。 通信单元从中央管理中心接收关于参考车辆的移动的信息。 磁感测单元感测归因于车辆的移动的磁场的变化,并产生磁信号。 校准信息生成单元生成校准信息。 车辆检测单元基于校准信息来校准归因于实际车辆的移动的磁信号的变化,并且检测实际车辆的移动。 控制单元控制上述单元,并且将模式设置为校准信息生成模式,以便产生校准信息和车辆检测模式,以感测实际车辆的移动。
    • 9. 发明授权
    • System and method for tracking position of moving object
    • 跟踪移动物体位置的系统和方法
    • US08576063B2
    • 2013-11-05
    • US12743399
    • 2008-06-12
    • Jung Hee JoMin Soo KimKwang Soo KimJong-Hyun Park
    • Jung Hee JoMin Soo KimKwang Soo KimJong-Hyun Park
    • G08B1/08
    • G01S5/14G01C21/206
    • The present invention relates to a system and method for tracking the position of a moving object. A system for tracking the position of a moving object includes: WSNs composed of a plurality of sensor nodes, each generating connection release information representing that the connection between the corresponding WSN and a moving object having a moving node serving as a sensor node attached thereto has released if having perceived the departure of the moving object; base stations managing the plurality of WSNs and collecting position information on the plurality of sensor nodes; a node information database storing the position information on the plurality of sensor nodes collected by the plurality of base stations; middleware checking the current position information on the moving object stored in the node information database if receiving the connection release information through any of the plurality of base stations, and deleting the current position information on the moving object stored in the node information database if the checked current position of the moving object is in a WSN having perceived the departure of the moving object; and a moving-object tracking application provided with the position information on the moving object by the middleware to track the position of the moving object. According to the present invention, it is possible to efficiently process information of a WSN managed by each base station in middleware managing a plurality of base stations, thereby improving the accuracy in tracking the position of a moving object.
    • 本发明涉及用于跟踪移动物体的位置的系统和方法。 用于跟踪移动物体的位置的系统包括:由多个传感器节点组成的WSN,每个传感器节点生成连接释放信息,该连接释放信息表示相应的WSN与具有附加到其的传感器节点的移动节点的移动物体之间的连接, 如果感觉到移动物体的离开,则释放; 管理多个WSN的基站,并在多个传感器节点上收集位置信息; 节点信息数据库,存储由多个基站收集的多个传感器节点上的位置信息; 中间件如果通过多个基站中的任一个接收到连接释放信息,则检查存储在节点信息数据库中的移动对象上的当前位置信息,并且如果检查的话,删除存储在节点信息数据库中的移动对象的当前位置信息 移动物体的当前位置处于感知移动物体偏离的WSN中; 以及移动物体跟踪应用,其通过中间件提供关于移动物体的位置信息,以跟踪移动物体的位置。 根据本发明,可以有效地处理由管理多个基站的中间件中的各基站管理的WSN的信息,从而提高跟踪移动对象的位置的准确性。
    • 10. 发明授权
    • Ion implanting system
    • 离子注入系统
    • US08575574B2
    • 2013-11-05
    • US12962829
    • 2010-12-08
    • Jin-Hee KangChun-Gi YouSun ParkJong-Hyun ParkYul-Kyu Lee
    • Jin-Hee KangChun-Gi YouSun ParkJong-Hyun ParkYul-Kyu Lee
    • G21G5/00
    • C23C14/48H01J37/3002H01J37/3171H01J2237/0822H01J2237/31706
    • An ion implanting system includes an ion generating system that generates ion beams and an ion implanting chamber in which a work-piece that is irradiated with the ion beams generated from the ion generating system is provided and into which the ion beams generated from the ion generating unit are directed. The ion generating system includes a first ion generating unit that irradiates ions to an upper portion of the work-piece and a second ion generating unit irradiating ions to a lower portion of the work-piece. The ion implanting system a can implant ions into a large work-piece through one ion implantation process with ion generating units arranged alternately with respect to each other in the transfer direction of the work-piece.
    • 离子注入系统包括产生离子束的离子产生系统和离子注入室,在该离子注入室中,设置有从离子产生系统产生的离子束照射的工件,并且从离子产生系统产生的离子束 单位被指示。 离子产生系统包括将离子照射到工件的上部的第一离子产生单元和将离子照射到工件的下部的第二离子产生单元。 离子注入系统a可以通过一个离子注入工艺将离子注入到大的工件中,其中离子发生单元在工件的传送方向上彼此交替排列。