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    • 1. 发明申请
    • LIQUID CRYSTAL DISPLAY DEVICE
    • 液晶显示装置
    • US20100245299A1
    • 2010-09-30
    • US12641971
    • 2009-12-18
    • Sang-Soo HanNak-Jin SeongKyu-Man LeeJae-Seo KimChul-Hyun Hwang
    • Sang-Soo HanNak-Jin SeongKyu-Man LeeJae-Seo KimChul-Hyun Hwang
    • G09G5/00
    • G02F1/13452G09G2300/0426H05K1/148H05K3/361
    • The present invention relates a liquid crystal display device for saving a production cost.The liquid crystal display device includes a liquid crystal display panel for displaying a picture, a printed circuit board for supplying a control signal to the liquid crystal display panel, and data Chip On Film packages positioned between the liquid crystal display panel and the printed circuit board, wherein each of the data Chip On Film packages includes a data drive integrated circuit for driving data lines of the liquid crystal display panel, an effective film package having the data drive integrated circuit mounted thereto formed as a non-effective region is removed from a base film, an output pad region formed at the effective film package bonded to the liquid crystal display panel, and an input pad region formed at the effective film package bonded to the printed circuit board having a width smaller than that of the output pad region.
    • 本发明涉及一种用于节省生产成本的液晶显示装置。 液晶显示装置包括用于显示图像的液晶显示面板,用于向液晶显示面板提供控制信号的印刷电路板和位于液晶显示面板和印刷电路板之间的数据胶片封装 其中,每个数据片上胶片包装包括用于驱动液晶显示面板的数据线的数据驱动集成电路,其中安装有作为非有效区域的数据驱动集成电路的有效胶卷包被从 基膜,形成在与液晶显示面板接合的有效膜封装上的输出焊盘区域,以及形成在有效膜封装上的输入焊盘区域,其结合到印刷电路板,其宽度小于输出焊盘区域的宽度。
    • 2. 发明申请
    • Shift register
    • 移位寄存器
    • US20050018807A1
    • 2005-01-27
    • US10878305
    • 2004-06-29
    • Sang-Soo HanKyoung-Moon Lim
    • Sang-Soo HanKyoung-Moon Lim
    • G09G3/36G11C8/04G11C19/00G11C19/28
    • G11C19/00G11C8/04G11C19/28
    • A shift register having a simple configuration and improved response and power consumption is disclosed. In the shift register, a plurality of stages are connected to each other in cascade and scanned in a bilateral direction. In the stages, a charger charges a first supply voltage into a first node in response to a clock signal. A discharger discharges the first node in response to a first start pulse or a second start pulse. A scan direction controller is connected between the charger and the discharger to discharge the first node into a different path in response to a scan direction control signal. An output part outputs any one of said first and second supply voltages as an output signal in response to a voltage at the first node. A latch part latches said output signal using said output signal and a clock signal inverted from said clock signal to feed back the latched output signal to the first node.
    • 公开了具有简单配置和改进的响应和功耗的移位寄存器。 在移位寄存器中,多个级联级联并沿双向扫描。 在这些阶段中,充电器响应于时钟信号向第一节点充电第一电源电压。 放电器响应于第一起始脉冲或第二起始脉冲而放电第一节点。 扫描方向控制器连接在充电器和放电器之间,以响应于扫描方向控制信号将第一节点排放到不同的路径。 输出部分响应于第一节点处的电压,将所述第一和第二电源电压中的任何一个输出作为输出信号。 锁存部分使用所述输出信号和从所述时钟信号反相的时钟信号来锁存所述输出信号,以将锁存的输出信号反馈到第一节点。
    • 3. 发明授权
    • Shift register
    • 移位寄存器
    • US07027551B2
    • 2006-04-11
    • US10878305
    • 2004-06-29
    • Sang-Soo HanKyoung-Moon Lim
    • Sang-Soo HanKyoung-Moon Lim
    • G11C19/00
    • G11C19/00G11C8/04G11C19/28
    • A shift register having a simple configuration and improved response and power consumption is disclosed. In the shift register, a plurality of stages are connected to each other in cascade and scanned in a bilateral direction. In the stages, a charger charges a first supply voltage into a first node in response to a clock signal. A discharger discharges the first node in response to a first start pulse or a second start pulse. A scan direction controller is connected between the charger and the discharger to discharge the first node into a different path in response to a scan direction control signal. An output part outputs any one of said first and second supply voltages as an output signal in response to a voltage at the first node. A latch part latches said output signal using said output signal and a clock signal inverted from said clock signal to feed back the latched output signal to the first node.
    • 公开了具有简单配置和改进的响应和功耗的移位寄存器。 在移位寄存器中,多个级联级联并沿双向扫描。 在这些阶段中,充电器响应于时钟信号向第一节点充电第一电源电压。 放电器响应于第一起始脉冲或第二起始脉冲而放电第一节点。 扫描方向控制器连接在充电器和放电器之间,以响应于扫描方向控制信号将第一节点排放到不同的路径。 输出部分响应于第一节点处的电压,将所述第一和第二电源电压中的任何一个输出作为输出信号。 锁存部分使用所述输出信号和从所述时钟信号反相的时钟信号来锁存所述输出信号,以将锁存的输出信号反馈到第一节点。