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    • 71. 发明授权
    • Method and apparatus for padding a video signal for shape adaptive
transformation
    • 用于填充视频信号以进行形状自适应变换的方法和装置
    • US5990956A
    • 1999-11-23
    • US775039
    • 1996-12-30
    • Sang-Hoon Lee
    • Sang-Hoon Lee
    • G06F17/14G06T9/00H04N1/41H04N7/30H04N7/12
    • G06F17/147H04N19/649
    • A method for padding an input video signal having a multiplicity of image blocks for shape adaptive discrete cosine transform first scans an image block containing object and background pixels to thereby detect a padding pixel located between object pixels on a same row or column in the image block and calculates a substitute pixel value based on pixel values of the object pixels in the image block. Once the substitute pixel value is determined, the padding pixel is compensated by the substitute pixel value to thereby provide a padded image block. The padded image block having an object region containing the object pixels and the padding pixel compensated by the substitute pixel value is transformed to a set of SA-DCT coefficients through the use of the shape adaptive discrete cosine transform.
    • 用于填充具有用于形状自适应离散余弦变换的多个图像块的输入视频信号的方法首先扫描包含对象和背景像素的图像块,从而检测位于图像块中相同行或列上的对象像素之间的填充像素 并且基于图像块中的对象像素的像素值计算替代像素值。 一旦确定了替代像素值,则填充像素由替代像素值补偿,从而提供填充图像块。 通过使用形状自适应离散余弦变换将具有包含对象像素的对象区域和由替代像素值补偿的填充像素的填充图像块变换为一组SA-DCT系数。
    • 75. 发明授权
    • Image forming apparatus, method of handling the image forming apparatus, and method of packaging the image forming apparatus
    • 图像形成装置,处理图像形成装置的方法以及包装图像形成装置的方法
    • US08503907B2
    • 2013-08-06
    • US12782229
    • 2010-05-18
    • Min-Sik JiJai-Il ChoiJun-Hee LeeJong-In KimSang-Hoon Lee
    • Min-Sik JiJai-Il ChoiJun-Hee LeeJong-In KimSang-Hoon Lee
    • G03G21/16G03G15/04
    • G03G21/1821
    • Disclosed are an electrophotographic image forming apparatus including a detachable development cartridge having arranged therein a photoconductive drum and a developing roller for forming a toner image through a development nip formed between the photoconductive drum and the developing roller. The development cartridge may include a development nip control member that can switch between a first position, in which the development nip control member causes the photoconductive drum to be separated from the developing roller, and a second position, in which the development nip control member causes the photoconductive drum to be in a pressing contact with the developing roller so as to form therebetween the development nip. The development cartridge may be mounted in the main body of the electrophotographic image forming apparatus with its development nip control member being in the first position, separating the photoconductive member from the developing roller. The electrophotographic image forming apparatus may be packaged for distribution with the development cartridge received in the main body thereof where the photoconductive drum and the developing roller are no in contact with each other in the development cartridge as packaged.
    • 公开了一种电子照相图像形成装置,其包括可拆卸显影盒,其中布置有感光鼓和显影辊,用于通过形成在感光鼓和显影辊之间的显影辊隙形成调色剂图像。 显影盒可以包括显影夹持控制构件,其可以在显影夹持控制构件使得感光鼓与显影辊分离的第一位置和显影辊隙控制构件的第二位置之间切换 感光鼓与显影辊压接,以便在显影辊隙之间形成。 显影盒可以安装在电子照相成像设备的主体中,其显影夹持控制构件处于第一位置,将感光体与显影辊分离。 电子照相图像形成装置可以被封装成与显影盒一起分配,其中显影盒被容纳在其主体中,其中感光鼓和显影辊在包装的显影盒中彼此不接触。
    • 76. 发明授权
    • Apparatus and method for sensing leakage current of battery
    • 用于检测电池漏电流的装置和方法
    • US08421466B2
    • 2013-04-16
    • US12792253
    • 2010-06-02
    • Ju-Hyun KangJee-Ho KimSang-Hoon LeeDong-Keun Kwon
    • Ju-Hyun KangJee-Ho KimSang-Hoon LeeDong-Keun Kwon
    • G01N27/416
    • G01R27/18B60L3/0069G01R31/025G01R31/362H01M10/052H01M10/42H01M10/48H01M10/482Y02E60/122
    • An apparatus for sensing a leakage current of a battery comprises a floating capacitor charged with voltage detected from a cathode or anode terminal of a battery, a cathode terminal selection switching unit for selecting a voltage detection path for the cathode terminal and charging the floating capacitor with a detection voltage of the cathode terminal, an anode terminal selection switching unit for selecting a voltage detection path for the anode terminal and charging the floating capacitor with a detection voltage of the anode terminal, a DC voltage applying unit for applying DC voltage through the voltage detection path for the anode terminal, a voltage measuring unit for measuring the charged detection voltage of the cathode or anode terminal, and a leakage current determining unit for determining the occurrence of leakage current based on the measured detection voltages of the cathode and anode terminals.
    • 一种用于感测电池漏电流的装置,包括充电电池从电池阴极或阳极端检测的电压的浮动电容器,阴极端子选择开关单元,用于选择阴极端子的电压检测路径,并将浮动电容器充电至 阴极端子的检测电压;阳极端子选择开关单元,用于选择阳极端子的电压检测路径,并利用阳极端子的检测电压对浮动电容器充电;直流电压施加单元,用于通过电压施加直流电压 用于阳极端子的检测路径,用于测量阴极或阳极端子的充电检测电压的电压测量单元,以及用于基于所测量的阴极和阳极端子的检测电压来确定泄漏电流的发生的漏电流确定单元。
    • 78. 发明申请
    • DRIVING APPARATUS AND DISPLAY DIVICE INCLUDING THE SAME
    • 驱动装置和显示器,包括它们
    • US20120086681A1
    • 2012-04-12
    • US13270270
    • 2011-10-11
    • Sung Kyun KIMJung Hong AhnSang-Hoon Lee
    • Sung Kyun KIMJung Hong AhnSang-Hoon Lee
    • G09G5/00
    • G09G3/3648G09G3/3688G09G2300/0408G09G2300/0426G09G2330/04G09G2370/14
    • A liquid crystal display includes a plurality of driving apparatuses one-chipped by including a signal controller controlling a data driver in the data driver applying data voltage to the corresponding data line. Each of the plurality of driving apparatuses includes a first signal terminal and a second signal terminal. The first signal terminal outputs control data for controlling image display to an adjacent signal controller in a first direction for a first period and receives a mode detection signal for determining a final operation mode from the adjacent signal controller in the first direction for a second period after the first period. The second signal terminal outputs the mode detection signal to the adjacent signal controller in a second direction different from the first direction for the first period and receives the control data from the adjacent signal controller in the second direction for the second period.
    • 液晶显示器包括多个驱动装置,通过包括控制数据驱动器的信号控制器将数据电压施加到相应的数据线来单片化。 多个驱动装置中的每一个包括第一信号端和第二信号端。 第一信号端子在第一方向上向相邻信号控制器输出用于控制图像显示的控制数据,并且在第一方向上从第二方向接收用于从相邻信号控制器确定最终操作模式的模式检测信号 第一期。 第二信号端子在与第一时间段的第一方向不同的第二方向上向相邻信号控制器输出模式检测信号,并且在第二周期中从第二方向接收来自相邻信号控制器的控制数据。