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    • 52. 发明授权
    • Driving method for liquid crystal device
    • 液晶装置的驱动方法
    • US06323850B1
    • 2001-11-27
    • US09300473
    • 1999-04-28
    • Kazunori KatakuraTakashi EnomotoTakao TakiguchiJun IbaSeishi Miura
    • Kazunori KatakuraTakashi EnomotoTakao TakiguchiJun IbaSeishi Miura
    • G09G336
    • G09G3/3651G09G3/2011G09G3/3614G09G2310/06G09G2310/061
    • A liquid crystal device of the active matrix-type having two-dimensionally arranged pixels along rows and columns is driven frame by frame. In each frame operation, a scanning selection period (TG) for each selected row is divided into a first period (t1) and a second period (t2). In t1 of a current frame (TF2), a reset pulse is applied to a pixel concerned, and the reset pulse is set to have an absolute value of voltage identical to and a polarity opposite to those of a writing pulse voltage applied to the pixel in the previous frame (TF1). Then, in t2 of the current frame (TF2), the pixel is supplied with a writing pulse depending on a prescribed display state of the pixel for the current frame. As a result, the reset period is shortened to favor a high-speed display and a higher resolution display.
    • 逐行驱动具有沿着行和列的二维排列的像素的有源矩阵型的液晶装置。 在每帧操作中,将每个所选行的扫描选择周期(TG)分成第一周期(t1)和第二周期(t2)。 在当前帧(TF2)的t1中,将复位脉冲施加到相关像素,并且复位脉冲被设置为具有与施加到像素的写入脉冲电压相同的极性的绝对值 在前一帧(TF1)中。 然后,在当前帧(TF2)的t2中,根据当前帧的像素的规定显示状态,向像素提供写入脉冲。 结果,复位周期缩短,有利于高速显示和更高分辨率的显示。
    • 55. 发明申请
    • DISPLAY APPARATUS
    • 显示设备
    • US20130082909A1
    • 2013-04-04
    • US13600379
    • 2012-08-31
    • Seishi MiuraKoji Ishizuya
    • Seishi MiuraKoji Ishizuya
    • G09G3/30
    • H01L51/5275H01L27/326
    • A display apparatus includes a plurality of subpixels having different emission colors in a pixel, and each of the subpixels includes an organic EL device. A high-refractive-index transparent layer having a refractive index higher than that of an organic compound layer of the organic EL device is provided on a light exit side of the organic EL device, and further, a light extraction structure is arranged on an outer circumference of the subpixel on the light exit side of the high-refractive-index transparent layer. A distance between first electrodes of the subpixels closest to each other, which are respectively included in the two adjacent pixels, is set to be larger than that between the first electrodes of the two adjacent subpixels within the pixel.
    • 显示装置包括在像素中具有不同发射颜色的多个子像素,并且每个子像素包括有机EL器件。 在有机EL元件的光出射侧设置折射率高于有机EL元件的有机化合物层的高折射率透明层,并且在外部设置光提取结构 高折射率透明层的光出射侧的子像素的周长。 分别包含在两个相邻像素中的彼此最靠近的子像素的第一电极之间的距离被设定为大于像素内的两个相邻子像素的第一电极之间的距离。
    • 58. 发明申请
    • LIGHT-EMITTING APPARATUS
    • 发光装置
    • US20090284450A1
    • 2009-11-19
    • US12437920
    • 2009-05-08
    • Koichi IshigeSeishi Miura
    • Koichi IshigeSeishi Miura
    • G09G3/30
    • G09G3/3208G09G2320/0285G09G2320/0295G09G2320/043G09G2360/145
    • When the degradation of a light-emitting device is detected and the luminance is compensated, because the lowering in current efficiency involved in the degradation varies for each luminance, use of the same compensation coefficient provides a luminance region in which the compensation is insufficient. A light-emitting apparatus includes a light-emitting device; a control unit for changing a display luminance of the light-emitting device depending on an input signal; a degradation detection unit for detecting a degradation amount of the light-emitting device; and a correction unit for correcting the input signal depending on a detected degradation amount, wherein the correction unit corrects the input signal depending on the degradation amount of the light-emitting device and the display luminance determined by the input signal.
    • 当检测到发光装置的劣化并且亮度得到补偿时,由于劣化所涉及的电流效率的降低对于每个亮度而变化,所以使用相同的补偿系数提供补偿不足的亮度区域。 发光装置包括:发光装置; 控制单元,用于根据输入信号改变发光装置的显示亮度; 劣化检测单元,用于检测发光装置的劣化量; 以及校正单元,用于根据检测到的劣化量校正输入信号,其中校正单元根据发光器件的劣化量和由输入信号确定的显示亮度来校正输入信号。