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    • 1. 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。
    • 4. 发明申请
    • DISPLAY DRIVER AND DRIVING METHOD
    • 显示驱动和驱动方法
    • US20100295872A1
    • 2010-11-25
    • US12780915
    • 2010-05-16
    • Yusuke UCHIDAYukari KATAYAMAAkihito AKAIYoshiki KUROKAWA
    • Yusuke UCHIDAYukari KATAYAMAAkihito AKAIYoshiki KUROKAWA
    • G09G5/00G09G3/36G06T9/00
    • G09G3/3611G09G2320/0252G09G2320/0261G09G2340/16G09G2354/00
    • The present invention is directed to improve efficiency in use of a memory for storing display data which is used for an overdrive process. A display driver for driving a display device compresses image display data, stores the compressed data into a memory, and generates a preceding frame by decompressing the data read from the memory. A setting unit divides a display screen of the display device into, for example, a first region as a center part and a second region as a peripheral part. An overdrive computing unit generates overdrive display data in response to a present-time frame and the preceding frame, compresses the image display data in the first and second regions at first and second data compression ratios of small and large values, respectively, and stores the compressed data into the memory. By saving the space of the memory, the picture quality in the first region is improved.
    • 本发明旨在提高用于存储用于过驱动过程的显示数据的存储器的使用效率。 用于驱动显示装置的显示驱动器压缩图像显示数据,将压缩数据存储到存储器中,并且通过解压缩从存储器读取的数据来生成前一帧。 设置单元将显示设备的显示屏划分为例如作为中心部分的第一区域和作为周边部分的第二区域。 过驱动计算单元响应于当前帧和前一帧产生过驱动显示数据,分别以小值和大值的第一和第二数据压缩比压缩第一和第二区域中的图像显示数据,并存储 将数据压缩到内存中。 通过节省存储器的空间,改善了第一区域中的图像质量。
    • 5. 发明申请
    • LIQUID CRYSTAL DRIVING DEVICE
    • 液晶驱动装置
    • US20090289965A1
    • 2009-11-26
    • US12467648
    • 2009-05-18
    • Yoshiki KUROKAWAYukari KATAYAMAYasuyuki KUDOAkihito AKAIHiroyuki NITTAKazuki HOMMA
    • Yoshiki KUROKAWAYukari KATAYAMAYasuyuki KUDOAkihito AKAIHiroyuki NITTAKazuki HOMMA
    • G09G3/36G09G5/10
    • G09G3/3406B60K2370/33B60K2370/42G09G3/2092G09G3/3413G09G5/363G09G2320/0238G09G2320/041G09G2320/064G09G2320/0646G09G2320/0673G09G2360/145
    • A liquid crystal driving device is provided, which can reduce the problem of contrast lowering of the liquid crystal display screen due to the decrease of the driving current of LED, by the control which is performed in order to cope with the decrease of the maximum rated current of LED as a light source of the backlight at a high temperature. The liquid crystal driving device includes a liquid crystal driving circuit, a backlight control unit, and display data expansion circuits. The liquid crystal driving circuit generates a liquid crystal driving signal to be supplied to a liquid crystal display panel in response to display data. The backlight control unit reduces driving current of the light emitting diode as a light source of the backlight module to illuminate the liquid crystal display panel, in response to the temperature rise of the liquid crystal display panel. The display data expansion circuit, in response to the temperature rise of the liquid crystal display panel, performs the data expansion of the display data, and compensates the contrast lowering of the liquid crystal display panel due to the dimming of the backlight module with the temperature rise of the liquid crystal display panel.
    • 提供一种液晶驱动装置,通过进行控制,可以减少由于LED的驱动电流的降低导致的液晶显示屏的对比度下降的问题,以便应对最大额定值的降低 LED作为高温背光源的电流。 液晶驱动装置包括液晶驱动电路,背光控制单元和显示数据扩展电路。 液晶驱动电路根据显示数据产生供给液晶显示面板的液晶驱动信号。 背光控制单元响应于液晶显示面板的温度升高,降低作为背光模块的光源的发光二极管的驱动电流,以照亮液晶显示面板。 显示数据扩展电路响应于液晶显示面板的温度升高,执行显示数据的数据扩展,并补偿由于背光模块的温度随温度而变暗的液晶显示面板的对比度降低 上升的液晶显示面板。
    • 6. 发明申请
    • DISPLAY DRIVER
    • 显示驱动器
    • US20080218500A1
    • 2008-09-11
    • US12023379
    • 2008-01-31
    • Akihito AKAIYasuyuki KudoKazuo Okado
    • Akihito AKAIYasuyuki KudoKazuo Okado
    • G09G5/00
    • G09G3/3688G09G3/2025G09G2310/0205G09G2310/027G09G2310/0281G09G2310/0289G09G2310/08G09G2330/021G09G2340/0414G09G2340/0421
    • A liquid crystal display device includes, in one of an even row and an odd row of a liquid crystal panel, a switch for short-circuiting, for example, an even signal line and an odd signal line adjacent on the left side to the even signal line, and a switch for short-circuiting the even signal line and an odd signal line adjacent on the right side to the even signal line provided at an output part of the signal-line driver. By controlling these switches, enlarged display equivalent to the bilinear processing is realized in a horizontal direction. By scanning two scanning lines simultaneously, simple enlarged display is realized in a vertical direction on the panel. Further, by stopping supply of a steady current to an operational amplifier applying data voltage to the even signal line, enlarged display at a low cost and at low power consumption is realized.
    • 液晶显示装置包括在液晶面板的偶数行和奇数行之一中的短路用开关,例如在左侧相邻的偶数信号线和奇数信号线 信号线,以及将偶数信号线和右侧相邻的奇数信号线短路到设置在信号线驱动器的输出部分的偶数信号线的开关。 通过控制这些开关,在水平方向上实现与双线性处理相当的放大显示。 通过同时扫描两条扫描线,在面板上沿垂直方向实现简单的放大显示。 此外,通过停止向对偶信号线施加数据电压的运算放大器供给稳定电流,实现了低成本且低功耗的放大显示。
    • 8. 发明申请
    • TOUCH SENSOR PANEL CONTROLLER AND SEMICODUCTOR DEVICE
    • 触摸传感器面板控制器和半导体器件
    • US20120287081A1
    • 2012-11-15
    • US13467214
    • 2012-05-09
    • Akihito AKAITatsuya ISHIIKazuya ENDOShinobu NOTOMIAkihiro KODAMA
    • Akihito AKAITatsuya ISHIIKazuya ENDOShinobu NOTOMIAkihiro KODAMA
    • G06F3/044
    • G06F3/044G02F1/13338G06F3/0416G09G3/2092
    • Provided is a touch sensor panel which can increase the detection sensitivity of a touch relatively readily. The touch sensor panel controller supplies drive electrodes of a touch sensor panel with a high-voltage AC drive signal with its low level set to a negative voltage and drives them. The time of change of a drive waveform supplied to the drive electrodes of the touch sensor panel is shifted relative to the time of change of a drive waveform supplied to a display scan electrode. The touch sensor panel controller uses a charge pump in synchronization with clock signals of more than one phase to produce a high drive voltage to activate drive electrodes of the touch sensor panel, and the clock signals of more than one phase are initialized each time the drive electrode is subjected to AC pulse driving.
    • 提供了可以相对容易地增加触摸的检测灵敏度的触摸传感器面板。 触摸传感器面板控制器为触摸传感器面板的驱动电极提供高电压交流驱动信号,其低电平设置为负电压并驱动它们。 提供给触摸传感器面板的驱动电极的驱动波形的变化时间相对于提供给显示扫描电极的驱动波形的变化时间移动。 触摸传感器面板控制器使用与多于一相的时钟信号同步的电荷泵来产生高驱动电压以激活触摸传感器面板的驱动电极,并且每次驱动器初始化多于一相的时钟信号 电极进行交流脉冲驱动。