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    • 2. 发明申请
    • DISPLAY DRIVING DEVICE AND DISPLAY DRIVING SYSTEM
    • 显示驱动装置和显示驱动系统
    • US20100302287A1
    • 2010-12-02
    • US12785982
    • 2010-05-24
    • Yukari KATAYAMAAkihito AkaiYoshiki KurokawaYusuke Uchida
    • Yukari KATAYAMAAkihito AkaiYoshiki KurokawaYusuke Uchida
    • G09G5/10G09G5/00
    • G09G3/3648G09G2310/027G09G2320/0252G09G2320/0261G09G2320/041G09G2340/16
    • Overdrive over multiple frames is made more efficient in a display device drive circuit that drives a display device so slow in response that target brightness is not reached even after overdrive is performed for one frame. When a display gray scale is changed from a first gray scale to a second gray scale, a display driving device varies overdrive driving voltage according to the number of frames since the point of time of the change. This makes it possible to obtain high-speed luminance response. When the number of frames for which an identical image is continuously displayed is known beforehand, the number of frames is set in a display pattern setting register and a function of detecting timing of a change of images is provided. This enables efficient overdrive. At low temperature, further, a display image is updated once for several frames according to temperature information. This enhances the visibility of the image.
    • 在显示设备驱动电路中,即使在一帧执行过驱动之后,在显示设备驱动电路中对驱动显示设备如此慢的响应也不会达到目标亮度,因此在多个帧上进行过载。 当显示灰度级从第一灰度级变为第二灰度级时,显示驱动装置根据从改变的时间点开始的帧数来改变过驱动驱动电压。 这使得可以获得高速亮度响应。 当预先知道连续显示相同图像的帧数时,在显示模式设置寄存器中设置帧数,并且提供检测图像改变定时的功能。 这样可以实现高效的超速运行。 此外,在低温下,显示图像根据温度信息更新一次数帧。 这增强了图像的可视性。
    • 9. 发明申请
    • DISPLAY APPARATUS AND DRIVIING DEVICE FOR DISPLAYING
    • 用于显示的显示装置和驱动装置
    • US20110242120A1
    • 2011-10-06
    • US12750773
    • 2010-03-31
    • Akihito AKAIYoshiki KurokawaGoki Toshima
    • Akihito AKAIYoshiki KurokawaGoki Toshima
    • G06F13/00
    • G09G3/3406G09G2320/0646G09G2360/16
    • The display unit can reduce the electric power consumed by the process of calculating an adjustment coefficient for display data, as typified by gradient control, and it can be readily adapted even to a display panel with a higher resolution. The display unit includes: a plurality of driving units arrayed in parallel and each operable to output a drive signal to a display panel; a plurality of first calculation units, and a plurality of display RAMs, each paired with one first calculation unit, the pairs of the first calculation units and display RAMs laid out along a direction of the parallel array of the driving units; and a second calculation unit which distributes display data supplied from outside to the display RAMs, receives display data from the display RAMs in parallel to analyze a histogram of tone distribution of pixel data corresponding to one screen, and calculates the adjustment coefficient based on a result of the analysis. In the display unit, the adjustment coefficient thus calculated is sent back to the first calculation units. The first calculation unit performs a calculation using display data read from the corresponding display RAM and the adjustment coefficient thereby to create drive data for the display panel.
    • 显示单元可以通过梯度控制代表的计算显示数据的调整系数的处理来减少消耗的电力,并且可以容易地适应于具有更高分辨率的显示面板。 显示单元包括:并行排列的多个驱动单元,每个驱动单元可操作以将驱动信号输出到显示面板; 多个第一计算单元和多个显示RAM,每个显示RAM与一个第一计算单元配对,沿着驱动单元的并行阵列的方向布置的第一计算单元和显示RAM对; 以及第二计算单元,其将从外部提供的显示数据分配到显示RAM,并行地从显示RAM接收显示数据,以分析与一个屏幕相对应的像素数据的色调分布的直方图,并且基于结果计算调整系数 的分析。 在显示单元中,将如此计算的调整系数发送回第一计算单元。 第一计算单元使用从对应的显示RAM读取的显示数据和调整系数进行计算,从而创建显示面板的驱动数据。