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    • 2. 发明授权
    • Gate driving circuit and display device having the gate driving circuit
    • 栅极驱动电路和具有栅极驱动电路的显示装置
    • US08243058B2
    • 2012-08-14
    • US12616604
    • 2009-11-11
    • Jae-Hoon LeeJun-Yong SongHoi-Sik MoonYong-Soon Lee
    • Jae-Hoon LeeJun-Yong SongHoi-Sik MoonYong-Soon Lee
    • G06F3/038
    • G09G3/3677G09G2310/0286G11C19/184G11C19/28
    • A gate driving circuit includes a plurality of stages connected to each other. An m-th stage (‘m’ is a natural number) of the stages includes a pull-up part, a pull-down part, a first holding part and a second holding part. The pull-up part outputs a high voltage of a clock signal as a high voltage of an m-th gate signal in response to a high voltage applied to a first output control part. The pull-down part pulls down the high voltage of the m-th gate signal to a first low voltage in response to a high voltage of an (m+1)-th gate signal. The first holding part holds a voltage applied to the first output control part as a second low voltage having a level lower than the first low voltage. The second holding part holds a low voltage of the m-th gate signal to the first low voltage.
    • 栅极驱动电路包括彼此连接的多个级。 第m级(“m”是自然数)级包括上拉部分,下拉部分,第一保持部分和第二保持部分。 响应于施加到第一输出控制部分的高电压,上拉部分输出作为第m门信号的高电压的时钟信号的高电压。 下拉部分响应于第(m + 1)门信号的高电压将第m门信号的高电压下拉到第一低电压。 第一保持部分将施加到第一输出控制部分的电压保持为具有低于第一低电压电平的第二低电压。 第二保持部将第m栅极信号的低电压保持为第一低电压。
    • 3. 发明申请
    • Gate Driving Circuit and Display Device Having the Gate Driving Circuit
    • 具有栅极驱动电路的栅极驱动电路和显示装置
    • US20100207928A1
    • 2010-08-19
    • US12616604
    • 2009-11-11
    • Jae-Hoon LeeJun-Yong SongHoi-Sik MoonYong-Soon Lee
    • Jae-Hoon LeeJun-Yong SongHoi-Sik MoonYong-Soon Lee
    • G09G5/00
    • G09G3/3677G09G2310/0286G11C19/184G11C19/28
    • A gate driving circuit includes a plurality of stages connected to each other. An m-th stage (‘m’ is a natural number) of the stages includes a pull-up part, a pull-down part, a first holding part and a second holding part. The pull-up part outputs a high voltage of a clock signal as a high voltage of an m-th gate signal in response to a high voltage applied to a first output control part. The pull-down part pulls down the high voltage of the m-th gate signal to a first low voltage in response to a high voltage of an (m+1)-th gate signal. The first holding part holds a voltage applied to the first output control part as a second low voltage having a level lower than the first low voltage. The second holding part holds a low voltage of the m-th gate signal to the first low voltage.
    • 栅极驱动电路包括彼此连接的多个级。 第m级(“m”是自然数)级包括上拉部分,下拉部分,第一保持部分和第二保持部分。 响应于施加到第一输出控制部分的高电压,上拉部分输出作为第m门信号的高电压的时钟信号的高电压。 下拉部分响应于第(m + 1)门信号的高电压将第m门信号的高电压下拉到第一低电压。 第一保持部分将施加到第一输出控制部分的电压保持为具有低于第一低电压电平的第二低电压。 第二保持部将第m栅极信号的低电压保持为第一低电压。
    • 6. 发明授权
    • Liquid crystal display
    • 液晶显示器
    • US07417612B2
    • 2008-08-26
    • US11712337
    • 2007-02-27
    • Hyun-Su LeeByoung-Jun LeeJun-Pyo LeeYoung-Gil KimHoi-Sik Moon
    • Hyun-Su LeeByoung-Jun LeeJun-Pyo LeeYoung-Gil KimHoi-Sik Moon
    • G09G3/36
    • G09G3/2011G09G3/3648G09G3/3655G09G3/3696G09G2320/0219G09G2320/0276
    • A gamma voltage generator for a liquid crystal display (LCD) capable of removing residual images by compensating a gamma voltage is presented. The gamma voltage generation apparatus adjusts the common voltage by the kickback voltage for the intermediate gray level, and tunes the gamma voltages other than the intermediate gray level gamma voltage. The adjustment of the gamma voltages other than the intermediate gray level gamma voltage is achieved in such a manner that the difference between the intermediate gray level kickback voltage and the kickback voltage at one of the gray levels other than the intermediate gray level is equal to half of the difference between the sum of the two inverted gamma voltages representing the intermediate gray level gamma voltages and the sum of the two inverted gamma voltages corresponding to the selected gray level.
    • 提出了能够通过补偿伽马电压来去除残留图像的用于液晶显示器(LCD)的伽马电压发生器。 伽马电压产生装置通过用于中间灰度级的反冲电压来调节公共电压,并调谐除了中间灰度级伽玛电压之外的伽马电压。 以中间灰度级伽玛电压以外的伽马电压的调整以这样的方式实现:中间灰度级反冲电压与中间灰度之外的灰度级之一的反冲电压之间的差等于一半 表示中间灰度级伽玛电压的两个反相伽马电压的总和与对应于所选择的灰度级的两个反相伽马电压的总和之差。
    • 10. 发明授权
    • Liquid crystal display having a dual bank data structure and a driving method thereof
    • 具有双组数据结构的液晶显示器及其驱动方法
    • US06310592B1
    • 2001-10-30
    • US09221174
    • 1998-12-28
    • Hoi-Sik MoonDong-Won Park
    • Hoi-Sik MoonDong-Won Park
    • G09G336
    • G09G3/3688G09G3/2011G09G3/3614G09G3/3648G09G2320/0209G09G2320/0247
    • Disclosed is a liquid crystal display having a dual bank data driver structure and a driving method thereof. The liquid crystal display includes an LCD panel including a plurality of gate lines, a plurality of adjacent data line groups having an even number of data lines disposed on the LCD panel intersecting the gate lines, and a plurality of pixels arranged in a matrix and each having a switching element connected to the gate lines and the data lines; a gate driver successively applying gate ON voltage to the gate lines to turn on the switching elements; and first and second data drivers provided on opposing sides of the LCD panel and to which the data line groups are alternately connected, the first and second data drivers applying grey voltage corresponding to color signals to the data lines via output terminals. The method of driving the LCD includes the steps of applying gate ON voltage successively to the gate lines, and applying grey voltage to the data lines in units of lines through the first and second data drivers.
    • 公开了具有双组数据驱动器结构的液晶显示器及其驱动方法。 该液晶显示器包括:一个LCD面板,包括多条栅极线;多条相邻的数据线组,具有与栅极线相交的液晶显示面板上布置的偶数数据线;以及多个像素,以矩阵形状排列, 具有连接到栅极线和数据线的开关元件; 栅极驱动器对栅极线依次施加栅极导通电压以接通开关元件; 以及第一和第二数据驱动器,其设置在LCD面板的相对侧上,数据线组交替连接到该第一和第二数据驱动器,第一和第二数据驱动器经由输出端子向数据线施加与彩色信号相对应的灰度电压。 驱动LCD的方法包括以下步骤:将栅极导通电压连续地施加到栅极线,并且通过第一和第二数据驱动器以线为单位向数据线施加灰色电压。