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    • 1. 发明申请
    • STEREOSCOPIC IMAGE DISPLAY
    • 立体图像显示
    • US20130235019A1
    • 2013-09-12
    • US13601145
    • 2012-08-31
    • Jeongki KimJoonyoung ParkSeungho BaekJooah Kim
    • Jeongki KimJoonyoung ParkSeungho BaekJooah Kim
    • G09G5/14
    • G09G5/14H04N13/337H04N13/356H04N13/398
    • The stereoscopic image display includes a control voltage generator and a control voltage compensator. The control voltage generator generates a discharge control voltage to be applied to a discharge control line at a slight-on level, which is higher than a gate low voltage and is lower than a gate high voltage, and periodically reduces the discharge control voltage to a level of the gate low voltage in the 3D mode. The control voltage compensator receives the discharge control voltage from the control voltage generator, amplifies a feedback discharge control voltage supplied from a first part of a display panel based on the received discharge control voltage, and applies the amplified feedback discharge control voltage, as a compensated discharge control voltage, to a second part opposite the first part of the display panel.
    • 立体图像显示器包括控制电压发生器和控制电压补偿器。 控制电压发生器产生放电控制电压,该放电控制电压以比栅极低电压高且低于栅极高电压的微小电平施加到放电控制线,并且将放电控制电压周期性地降低到 三维模式下门极低电平的电平。 控制电压补偿器从控制电压发生器接收放电控制电压,基于接收到的放电控制电压放大从显示面板的第一部分提供的反馈放电控制电压,并将放大的反馈放电控制电压作为补偿 放电控制电压到与显示面板的第一部分相对的第二部分。
    • 5. 发明授权
    • Stereoscopic image display
    • 立体图像显示
    • US08866805B2
    • 2014-10-21
    • US13605730
    • 2012-09-06
    • Seungho BaekJeongki KimJooah Kim
    • Seungho BaekJeongki KimJooah Kim
    • G06F3/038G09G5/00H04N5/70G09G3/00H04N13/04
    • H04N5/70G09G3/003H04N13/337H04N13/356H04N13/398
    • A stereoscopic image display includes a display panel which includes a plurality of pixels each including a main display unit and an auxiliary display unit, is divided into a first screen block and a second screen block, and includes a first discharge control line connected to auxiliary display units of the first screen block and a second discharge control line connected to auxiliary display units of the second screen block, a control voltage generator which generates a first discharge control voltage of a first AC waveform and a second discharge control voltage of a second AC waveform, of which a phase is later than a phase of the first AC waveform by a half frame period, and a control voltage delay unit which delays the first and second discharge control voltages.
    • 立体图像显示器包括包括多个像素的显示面板,每个像素包括主显示单元和辅助显示单元,被分为第一屏幕块和第二屏幕块,并且包括连接到辅助显示器的第一放电控制线 第一屏幕块的单元和连接到第二屏幕块的辅助显示单元的第二放电控制线,控制电压发生器,其产生第一AC波形的第一放电控制电压和第二AC波形的第二放电控制电压 其中相位晚于第一AC波形的相位半帧周期;以及控制电压延迟单元,其延迟第一和第二放电控制电压。
    • 9. 发明申请
    • STEREOSCOPIC IMAGE DISPLAY AND METHOD OF CONTROLLING BACKLIGHT THEREOF
    • 立体图像显示和控制背光的方法
    • US20120013601A1
    • 2012-01-19
    • US12964776
    • 2010-12-10
    • Joonyoung PARKJaewoo ParkJeongki Kim
    • Joonyoung PARKJaewoo ParkJeongki Kim
    • G06T15/00
    • G02B27/2264G09G3/003G09G3/3426G09G2340/0435G09G2340/16H04N13/341H04N13/398
    • A stereoscopic image display device comprises a frame rate conversion unit that divides 3D input data into left eye image data and right eye image data, inserts reset frame data containing black grayscale data between the left eye image data and the right eye image data, and generates the (n+1)-th frame data to the (n+4)-th frame data containing the left eye image data, the black grayscale data, the right eye image data, respectively, and the black grayscale data, a look-up table that stores local dimming values used to control brightness for the overall local dimming zones to the minimum during the (n+2)-th and (n+4)-th frame periods, and local dimming values used to control brightness for each local dimming zone to target brightness during the (n+1)-th and (n+3)-th frame periods, and a backlight controller that controls light source brightness of the backlight unit for each local dimming zone.
    • 立体图像显示装置包括将3D输入数据分割为左眼图像数据和右眼图像数据的帧率转换单元,在左眼图像数据和右眼图像数据之间插入包含黑色灰度数据的复位帧数据,并生成 第(n + 1)帧数据分别包含左眼图像数据,黑色灰度数据,右眼图像数据和黑色灰度数据的第(n + 4)帧数据, 将在第(n + 2)和第(n + 4)帧周期期间将用于将整个局部调光区域的亮度控制到最小的局部调光值存储在一起,以及用于控制每个 在第(n + 1)和第(n + 3)帧周期期间的目标亮度的局部调光区域以及控制每个局部调光区域的背光单元的光源亮度的背光控制器。