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    • 2. 发明授权
    • Display device capable of controlling viewing angle and driving method thereof
    • 能够控制视角的显示装置及其驱动方法
    • US08830253B2
    • 2014-09-09
    • US13213306
    • 2011-08-19
    • Yong-Seok ChoiJong-Woong ParkJoo-Hyung LeeGeun-Young JeongDong-Won Lee
    • Yong-Seok ChoiJong-Woong ParkJoo-Hyung LeeGeun-Young JeongDong-Won Lee
    • G09G5/02G09G3/20
    • G09G3/20G09G2320/068
    • A viewing angle controllable display device and a driving method thereof. The viewing angle controllable display device includes: an image mixing unit generating a mixed image data signal by mixing an original image data signal, or a gray-adjusted original image data signal, with a protection image data signal that disturbs recognition of the original image; an output image selecting unit receiving the original image data signal or the mixed image data signal, and selecting an image data signal corresponding to an image output to a display panel; and a display panel receiving a data voltage corresponding to the image data signal selected and output from the output image selecting unit through a data drive to display an original image or a mixed image, responding to gate signals sequentially transmitted from a gate driver.
    • 视角可控显示装置及其驱动方法。 视角可控显示装置包括:图像混合单元,通过混合原始图像数据信号或灰度调整的原始图像数据信号与干扰原始图像的识别的保护图像数据信号产生混合图像数据信号; 输出图像选择单元,接收原始图像数据信号或混合图像数据信号,并且选择与输出到显示面板的图像相对应的图像数据信号; 以及显示面板,通过数据驱动器接收与输出图像选择单元选择和输出的图像数据信号相对应的数据电压,以响应从门驱动器顺序发送的门信号来显示原始图像或混合图像。
    • 3. 发明申请
    • TOUCH SENSING METHOD, RECORDING MEDIUM IN WHICH PROGRAM FOR REALIZING THE SAME IS RECORDED, AND TOUCH SENSING SYSTEM
    • 触摸感应方法,记录其实现程序的记录介质和触摸感应系统
    • US20120182235A1
    • 2012-07-19
    • US13240955
    • 2011-09-22
    • Dong-Won LeeHee-Chul HwangJong-Woong Park
    • Dong-Won LeeHee-Chul HwangJong-Woong Park
    • G06F3/041
    • G06F3/041G06F3/0418G06F3/044
    • A touch sensing method for a touch screen including an image display device with a touch-sensitive screen. The method includes a filtering process that includes calculating an output signal of an nth frame from a sensing signal of the nth frame output from a touch sensing unit configured to sense touches of the touch-sensitive screen, the calculating using an equation F(n)=I(n)×W(n)+F(n−1)×[1−W(n)], wherein F(n) represents the output signal of the nth frame, I(n) represents the sensing signal of the nth frame, F(n−1) represents an output signal of an (n−1)th frame, and W(n) represents a filtering coefficient; and outputting the output signal of the nth frame to an output end. The filtering coefficient is calculated by an equation W  ( n ) =  I  ( n ) - F  ( n - 1 )  R , wherein R is a scale constant. The touch sensing method has high touch sensitivity in an environment with heavy noise while being capable of correctly detecting touch coordinates.
    • 一种用于触摸屏的触摸感测方法,包括具有触敏屏幕的图像显示装置。 该方法包括:滤波处理,其包括从触摸感测单元输出的第n帧的感测信号计算第n帧的输出信号,该感测单元被配置为感测触敏屏幕的触摸,使用等式F(n)进行计算, = I(n)×W(n)+ F(n-1)×[1-W(n)],其中F(n)表示第n帧的输出信号,I(n) 第n帧,F(n-1)表示第(n-1)帧的输出信号,W(n)表示滤波系数; 并将第n帧的输出信号输出到输出端。 滤波系数由等式W(n)=I(n)-F(n-1)ûR计算,其中R是比例常数。 触摸感测方法在具有高噪声的环境中具有高的触摸灵敏度,同时能够正确地检测触摸坐标。
    • 4. 发明授权
    • Touch sensing method, recording medium in which program for realizing the same is recorded, and touch sensing system
    • 触摸感测方法,其中记录了用于实现其程序的记录介质和触摸感测系统
    • US09377883B2
    • 2016-06-28
    • US13240955
    • 2011-09-22
    • Dong-Won LeeHee-Chul HwangJong-Woong Park
    • Dong-Won LeeHee-Chul HwangJong-Woong Park
    • G06F3/041G06F3/044
    • G06F3/041G06F3/0418G06F3/044
    • A touch sensing method for a touch screen including an image display device with a touch-sensitive screen. The method includes a filtering process that includes calculating an output signal of an nth frame from a sensing signal of the nth frame output from a touch sensing unit configured to sense touches of the touch-sensitive screen, the calculating using an equation F(n)=I(n)×W(n)+F(n−1)×[1−W(n)], wherein F(n) represents the output signal of the nth frame, I(n) represents the sensing signal of the nth frame, F(n−1) represents an output signal of an (n−1)th frame, and W(n) represents a filtering coefficient; and outputting the output signal of the nth frame to an output end. The filtering coefficient is calculated by an equation W ⁡ ( n ) =  I ⁡ ( n ) - F ⁡ ( n - 1 )  R , wherein R is a scale constant. The touch sensing method has high touch sensitivity in an environment with heavy noise while being capable of correctly detecting touch coordinates.
    • 一种用于触摸屏的触摸感测方法,包括具有触敏屏幕的图像显示装置。 该方法包括:滤波处理,其包括从触摸感测单元输出的第n帧的感测信号计算第n帧的输出信号,该感测单元被配置为感测触敏屏幕的触摸,使用等式F(n)进行计算, = I(n)×W(n)+ F(n-1)×[1-W(n)],其中F(n)表示第n帧的输出信号,I(n) 第n帧,F(n-1)表示第(n-1)帧的输出信号,W(n)表示滤波系数; 并将第n帧的输出信号输出到输出端。 滤波系数由等式W⁡(n)=I⁡(n)-F⁡(n-1)ûR计算,其中R是刻度常数。 触摸感测方法在具有高噪声的环境中具有高的触摸灵敏度,同时能够正确地检测触摸坐标。
    • 5. 发明申请
    • TOUCH DETECTION SYSTEM AND DRIVING METHOD THEREOF
    • 触摸检测系统及其驱动方法
    • US20130154965A1
    • 2013-06-20
    • US13572575
    • 2012-08-10
    • Hee-Chul HwangDong-Won LeeJoo-Hyung Lee
    • Hee-Chul HwangDong-Won LeeJoo-Hyung Lee
    • G06F3/041
    • G06F3/044G06F3/0416
    • A touch sensing system for detecting at least one touch is provided. The touch sensing system includes a touch sensing unit having a plurality of touchable regions for outputting sensing signals of the at least one touch, an operating unit for determining difference values between the sensing signals and a baseline value, a group setting unit for grouping ones of the regions in which the difference values exist into one or more groups, and a threshold value determining unit for determining maximum difference values from the groups to determine first threshold values of the groups corresponding to the determined maximum difference values. The touch sensing system increases the correctness of the touch detection by adaptively changing the first threshold value in accordance with the touch strength. A method of driving the touch sensing system is also provided.
    • 提供了用于检测至少一个触摸的触摸感测系统。 触摸感测系统包括触摸感测单元,其具有用于输出至少一个触摸的感测信号的多个可触摸区域,用于确定感测信号与基线值之间的差值的操作单元,用于对感测信号进行分组的组设定单元 差分值存在于一个或多个组中的区域,以及阈值确定单元,用于确定来自组的最大差值,以确定与所确定的最大差值对应的组的第一阈值。 触摸感测系统通过根据触摸强度自适应地改变第一阈值来增加触摸检测的正确性。 还提供了一种驱动触摸感测系统的方法。
    • 8. 发明授权
    • Fractal antenna for vehicle
    • 车用分形天线
    • US07898486B2
    • 2011-03-01
    • US12183060
    • 2008-07-30
    • Jin-Ho KimDong-Won Lee
    • Jin-Ho KimDong-Won Lee
    • H01Q1/32H01Q1/38H01Q1/42
    • H01Q1/36
    • Disclosed herein is a fractal antenna for a vehicle. First and second radiation elements are downwardly inclined from an apex ridge, and disposed opposite each other on the left and right sides inside a radome for protecting the antenna. First and second parasitic elements are formed in an inner space which is formed by the first and second radiation elements. Further, the first and second parasitic elements are disposed to be parallel to and spaced apart from the respective first and second radiation elements at regular intervals, are downwardly inclined from an apex ridge, and are disposed opposite each other on the left and right sides. The first and second radiation elements are respectively formed on part of the upper surface of a first substrate and part of the upper surface of a second substrate in patterns each having a predetermined shape.
    • 这里公开了一种用于车辆的分形天线。 第一和第二辐射元件从顶点脊向下倾斜,并且在雷达罩内的左侧和右侧彼此相对地设置,用于保护天线。 第一和第二寄生元件形成在由第一和第二辐射元件形成的内部空间中。 此外,第一和第二寄生元件以规则的间隔设置成与相应的第一和第二辐射元件平行并间隔开,从顶点脊向下倾斜,并且在左侧和右侧彼此相对设置。 第一和第二辐射元件分别形成在第一基板的上表面的一部分上,第二基板的上表面的一部分具有预定形状。