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    • 1. 发明授权
    • Liquid crystal display with electrostatic-resistant wirings
    • 液晶显示屏采用防静电布线
    • US08830410B2
    • 2014-09-09
    • US12899303
    • 2010-10-06
    • Jung-Hwan HwangKyung-Wook KimYoung-Joon ChoJong-Hwan LeeHye-Rhee Han
    • Jung-Hwan HwangKyung-Wook KimYoung-Joon ChoJong-Hwan LeeHye-Rhee Han
    • G02F1/1333G02F1/1345G09G3/36
    • G02F1/13452G02F1/1341
    • A liquid crystal display includes a first substrate and a second substrate facing each other, common voltage wiring disposed on the first substrate and transmitting a common voltage, a first insulating layer disposed on the common voltage wiring, a common electrode disposed on a whole surface of the second substrate, a first conductive member disposed between the first substrate and the second substrate and electrically connecting the common electrode and the common voltage wiring to each other, and a sealant combining the first substrate and the second substrate. The first insulating layer includes a first contact hole exposing a first portion of the common voltage wiring and a plurality of a second contact hole exposing a second portion of the common voltage wiring, the second contact hole having a smaller area than the first contact hole.
    • 液晶显示器包括:第一基板和第二基板;第一基板和第二基板;公共电压布线,布置在第一基板上并传输公共电压;第一绝缘层,设置在公共电压布线上;公共电极,设置在整个表面上 所述第二基板,设置在所述第一基板和所述第二基板之间并将所述公共电极和所述公共电压布线彼此电连接的第一导电构件,以及组合所述第一基板和所述第二基板的密封剂。 第一绝缘层包括暴露公共电压布线的第一部分的第一接触孔和暴露公共电压布线的第二部分的多个第二接触孔,第二接触孔具有比第一接触孔小的面积。
    • 6. 发明申请
    • METHOD FOR AUTOMATICALLY CONTROLLING FOCAL POINT OF DIGITAL OPTICAL DEVICE
    • 用于自动控制数字光学器件的焦点的方法
    • US20140320730A1
    • 2014-10-30
    • US14119277
    • 2011-12-20
    • Kyung-Wook Kim
    • Kyung-Wook Kim
    • H04N5/232
    • H04N5/23212G02B7/38G03B13/36
    • Disclosed is a method for automatically controlling a focal point of a digital optical device, which: performs the steps of a focal point mode for performing a high-speed AF operation, and function processing high-capacity function image data; configures a function mode for detecting function focal point data and comparing it to a critical range; automatically performs switching between the focal point mode and the function mode by using an optical device; yields high-capacity function image data having an adjusted focal point in an environment in which the optical device is used where focal point distances change rapidly when a subject or the user of the optical device is moving; and performs required commands at high speed through the optical device when the user of the storing optical device inputs a required command once.
    • 公开了一种自动控制数字光学装置的焦点的方法,该方法包括:执行用于执行高速AF操作的焦点模式和功能处理大容量功能图像数据的步骤; 配置检测功能焦点数据的功能模式,并将其与临界范围进行比较; 通过使用光学装置自动执行焦点模式和功能模式之间的切换; 在光学装置的被摄体或使用者正在移动的情况下,在使用光学装置的焦点距离快速变化的环境中产生具有调节焦点的高容量功能图像数据; 并且当存储光学装置的用户输入所需的命令一次时,通过光学装置高速执行所需的命令。
    • 10. 发明申请
    • Gate Drive Circuit, Display Device Having the Same and Method of Manufacturing the Gate Drive Circuit
    • 栅极驱动电路,具有相同的显示装置和制造栅极驱动电路的方法
    • US20100164854A1
    • 2010-07-01
    • US12603764
    • 2009-10-22
    • Kyung-Wook KimJong-Hoon Kim
    • Kyung-Wook KimJong-Hoon Kim
    • G09G3/36G11C19/00H01L21/82
    • G09G3/3677G11C19/184H01L27/1288
    • A gate drive circuit includes a shift register having stages connected to each other in series. An (m)-th stage (‘m’ is a natural number) includes an output part, a discharging part, a first holding part and a second holding part. The output part outputs the first clock signal as a gate signal in response to a first clock signal provided from an external device and discharges the gate signal in response to a second input signal. The output part includes a first transistor having a first channel length. The discharging part discharges a signal of the first node to the second voltage level. The first holding part maintains a signal of the first node at a level of the gate signal, and is discharged to the second voltage level. The first holding part includes a second transistor having a second channel length that is longer than the first channel length. The second holding part maintains a signal of the first node at a level of the second voltage level.
    • 栅极驱动电路包括具有彼此串联连接的级的移位寄存器。 第(m)级(“m”是自然数)包括输出部分,排出部分,第一保持部分和第二保持部分。 输出部分响应于从外部设备提供的第一时钟信号而输出第一时钟信号作为门信号,并响应于第二输入信号而放电门信号。 输出部分包括具有第一通道长度的第一晶体管。 放电部分将第一节点的信号放电到第二电压电平。 第一保持部件将第一节点的信号保持在栅极信号的电平,并且被放电到第二电压电平。 第一保持部分包括具有比第一通道长度更长的第二通道长度的第二晶体管。 第二保持部将第一节点的信号维持在第二电压电平的电平。