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    • 1. 发明申请
    • METHOD AND APPARATUS FOR DETECTING TOUCH POINT
    • 检测触点的方法和装置
    • US20100097349A1
    • 2010-04-22
    • US12566512
    • 2009-09-24
    • Jae-Shin KimJa-Seung KuMin-Jeung LeeHee-Chul Hwang
    • Jae-Shin KimJa-Seung KuMin-Jeung LeeHee-Chul Hwang
    • G06F3/042
    • G06F3/042
    • A method of detecting a touch point includes detecting an edge image of a finger image from an input image, generating a touch point image utilizing the detected edge image, and calculating coordinates of the touch point from the touch point image. The touch point image may be generated by setting a center at a position separated by a set distance in a gradient direction with respect to a position where the edge image is detected, and generating the touch point image by summing up gradient magnitude values with respect to a set area based on the set center. The coordinates of multiple touch points may be calculated by updating coordinates of the multiple touch points according to the gradient magnitude values accumulatively summed up in the multiple touch points based on a comparison between the coordinates of the multiple touch points and the set distance.
    • 检测触摸点的方法包括从输入图像检测手指图像的边缘图像,利用所检测的边缘图像生成触摸点图像,以及从触摸点图像计算触摸点的坐标。 触摸点图像可以通过将相对于检测到边缘图像的位置在梯度方向上分开设定距离的位置处的中心设置,并且通过将梯度幅度值相对于 基于设定中心的设定区域。 可以基于多个触摸点的坐标与设定距离之间的比较,根据在多个触摸点中累积地累加的梯度值来更新多个触摸点的坐标来计算多个触摸点的坐标。
    • 3. 发明授权
    • Method and apparatus for detecting touch point
    • 检测触点的方法和装置
    • US08421775B2
    • 2013-04-16
    • US12566512
    • 2009-09-24
    • Jae-Shin KimJa-Seung KuMin-Jeung LeeHee-Chul Hwang
    • Jae-Shin KimJa-Seung KuMin-Jeung LeeHee-Chul Hwang
    • G06F3/042
    • G06F3/042
    • A method of detecting a touch point includes detecting an edge image of a finger image from an input image, generating a touch point image utilizing the detected edge image, and calculating coordinates of the touch point from the touch point image. The touch point image may be generated by setting a center at a position separated by a set distance in a gradient direction with respect to a position where the edge image is detected, and generating the touch point image by summing up gradient magnitude values with respect to a set area based on the set center. The coordinates of multiple touch points may be calculated by updating coordinates of the multiple touch points according to the gradient magnitude values accumulatively summed up in the multiple touch points based on a comparison between the coordinates of the multiple touch points and the set distance.
    • 检测触摸点的方法包括从输入图像检测手指图像的边缘图像,利用所检测的边缘图像生成触摸点图像,以及从触摸点图像计算触摸点的坐标。 触摸点图像可以通过将相对于检测到边缘图像的位置在梯度方向上分开设定距离的位置处的中心设置,并且通过将梯度幅度值相对于 基于设定中心的设定区域。 可以基于多个触摸点的坐标与设定距离之间的比较,根据在多个触摸点中累积地累加的梯度值来更新多个触摸点的坐标来计算多个触摸点的坐标。
    • 4. 发明授权
    • Pixel arrangement structure for organic light emitting display
    • 有机发光显示器的像素排列结构
    • US08395571B2
    • 2013-03-12
    • US12760503
    • 2010-04-14
    • Gun-Shik KimJae-Shin KimJun-Sik Oh
    • Gun-Shik KimJae-Shin KimJun-Sik Oh
    • G09G3/32
    • G09G3/3208G09G2300/0443G09G2300/0452H01L27/3218
    • A pixel arrangement structure for an organic light emitting display including a plurality of sub-pixel groups repeatedly arranged, wherein each of the sub-pixel groups includes: four first sub-pixels for emitting light of a first color and each having a hexagonal structure, two second sub-pixels for emitting light of a second color and each including two hexagonal structures sharing one side, and two third sub-pixels for emitting light of a third color and each including two hexagonal structures sharing one side. Two of the four first sub-pixels are arranged in a same column and share a symmetrical axis, and the two second sub-pixels and the two third sub-pixels are alternately arranged on either side of the symmetrical axis.
    • 一种有机发光显示器的像素排列结构,包括重复排列的多个子像素组,其中每个子像素组包括:用于发射第一颜色的光并且具有六边形结构的四个第一子像素, 用于发射第二颜色的光并且每个包括共享一侧的两个六边形结构的两个第二子像素,以及用于发射第三颜色的光并且各自包括共享一侧的两个六边形结构的两个第三子像素。 四个第一子像素中的两个被布置在相同的列中并且共享对称轴,并且两个第二子像素和两个第三子像素交替地布置在对称轴的任一侧上。