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    • 1. 发明授权
    • Display device
    • 显示设备
    • US08446356B2
    • 2013-05-21
    • US12572383
    • 2009-10-02
    • Yoshihisa OoishiJunichi MaruyamaTakashi ShojiKikuo OnoMasahiro Fukata
    • Yoshihisa OoishiJunichi MaruyamaTakashi ShojiKikuo OnoMasahiro Fukata
    • G09G3/36
    • G09G3/3611G09G3/2011G09G3/2025G09G3/2081G09G3/3406G09G2320/0261G09G2320/0271G09G2320/0646G09G2340/0435G09G2360/16H04N7/0132
    • The display device including: a display panel; a backlight; a memory for converting frame rate of an input video signal and outputting a video signal; an interpolation frame generation unit for generating an interpolation frame based on the video signal output from the memory; a histogram generator for generating a histogram based on the input video signal; and a backlight brightness calculation unit for calculating a backlight control signal, the display device further comprising: wherein image data for display, which is obtained by an N-th frame of the input video signal, and image data of the interpolation frame generated based on the N-th frame and an (N+1)-th frame of the input video signal, is input to the display panel; and wherein the backlight control signal calculated based on the histogram generated based on the image data of the N-th frame is used for displaying the image data for display.
    • 该显示装置包括:显示面板; 背光; 用于转换输入视频信号的帧速率并输出视频信号的存储器; 内插帧生成单元,用于基于从存储器输出的视频信号来生成内插帧; 直方图生成器,用于基于输入视频信号生成直方图; 以及用于计算背光控制信号的背光亮度计算单元,所述显示装置还包括:其中通过所述输入视频信号的第N帧获得的用于显示的图像数据和基于所述输入视频信号生成的内插帧的图像数据 输入视频信号的第N帧和第(N + 1)帧被输入到显示面板; 并且其中基于基于第N帧的图像数据生成的直方图计算的背光控制信号用于显示用于显示的图像数据。
    • 3. 发明授权
    • Display device and display system
    • 显示设备和显示系统
    • US08026885B2
    • 2011-09-27
    • US11951403
    • 2007-12-06
    • Junichi MaruyamaYoshihisa OoishiKikuo OnoTakashi Shoji
    • Junichi MaruyamaYoshihisa OoishiKikuo OnoTakashi Shoji
    • G09G3/36G09G5/10
    • G09G3/2025G09G2310/061
    • A display device and system are disclosed, wherein the display system is so configured that an n-fold rate increasing circuit is arranged with a signal generating device instead of with the display device to realize a low-cost n-fold rate impulse-type drive. The n-fold rate display data is output to the display device from the signal generating device, and the display device includes a circuit to subject the input n-fold rate display data to the data conversion process for the n-fold rate impulse drive. In addition to the n-fold rate display data, an identification signal for identifying the position of the turn of the frames of the original video signal is input to the display device to prevent the erroneous data conversion operation.
    • 公开了一种显示装置和系统,其中显示系统被配置为使得n倍率增加电路与信号发生装置而不是显示装置一起布置,以实现低成本的n倍率脉冲型驱动 。 n倍率显示数据从信号发生装置输出到显示装置,并且显示装置包括用于使输入的n倍率显示数据进行n倍速率脉冲驱动的数据转换处理的电路。 除了n倍率显示数据之外,将用于识别原始视频信号的帧的转动位置的识别信号输入到显示装置,以防止错误的数据转换操作。
    • 8. 发明申请
    • Display Device
    • 显示设备
    • US20080303758A1
    • 2008-12-11
    • US12131202
    • 2008-06-02
    • Yoshihisa OoishiJunichi MaruyamaTakashi ShojiKikuo Ono
    • Yoshihisa OoishiJunichi MaruyamaTakashi ShojiKikuo Ono
    • G09G3/34
    • G09G3/2033G09G3/2037G09G3/36G09G3/3611G09G5/399G09G2340/02G09G2360/18
    • High-order bits to be utilized for current-frame display data and previous-frame display data, and low-order bits to be utilized for the current-frame display data alone are stored in independently controllable memory areas. For reading the current-frame display data from a frame memory, data of the high-order bits and data of the low-order bits are read. For reading the previous-frame data, the high-order bits alone are read. Thus, since a period during which the data of the low-order bits that is not utilized for the previous-frame display data is stored in the memory is shortened, a required memory capacity can be reduced. The data transfer time can be reduced by the time required for memory read for the data of the low-order bits that is not utilized for the previous-frame display data.
    • 用于当前帧显示数据和前一帧显示数据的高位数,以及仅用于当前帧显示数据的低位比特存储在独立可控存储区域中。 为了从帧存储器读取当前帧显示数据,读取高位数据和低位数据的数据。 为了读取前一帧数据,只读取高位。 因此,由于缩短了对前一帧显示数据未被利用的低位数据的数据存储在存储器中的时段,所以可以减少所需的存储器容量。 数据传输时间可以减少对于未用于前一帧显示数据的低位的数据的存储器读取所需的时间。