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    • 62. 发明授权
    • De-interlacing apparatus with a noise reduction/removal device
    • 具有降噪/去除装置的去隔行装置
    • US07324160B2
    • 2008-01-29
    • US10901383
    • 2004-07-29
    • Seung-joon Yang
    • Seung-joon Yang
    • H04N7/01
    • H04N5/21H04N5/145H04N7/012
    • A de-interlacing apparatus with a noise reduction/removal device. The noise reduction/removal device can include a motion prediction unit that predicts motion vectors between an image one period ahead of a previous image and a current image with respect to individual images which are sequentially inputted; a motion checking unit that applies the motion vectors predicted by the motion prediction unit to the image one period ahead of the previous image and two different images ahead of the current image in time, and checks whether the motion vectors are precise motion vectors; a motion compensation unit that compensates for motions in use of the motion vectors checked for preciseness thereof by the motion checking unit; and a noise removal unit that removes noise on images using the motion-compensated images by the motion compensation unit and the inputted images. Accordingly, the noise reduction/removal device can reduce or remove noise through simple procedures on noise-bearing images.
    • 具有降噪/去除装置的去隔行装置。 噪声降低/去除装置可以包括运动预测单元,其预测相对于顺序地输入的各个图像的先前图像之前一周期的图像与当前图像之间的运动矢量; 运动检查单元,其将由所述运动预测单元预测的运动矢量及其前一图像的前一周期和所述当前图像前方的两个不同图像及时检测,并检查所述运动矢量是否为精确的运动矢量; 运动补偿单元,其通过运动检查单元补偿使用检查运动矢量的精度的运动; 以及噪声消除单元,其通过运动补偿单元和输入图像使用运动补偿图像去除图像上的噪声。 因此,噪声降低/去除装置可以通过简单的噪声承载图像的程序来减少或消除噪声。
    • 65. 发明授权
    • Apparatus for and method of detecting whether incoming image signal is in film mode
    • 检测输入图像信号是否处于胶片模式的装置和方法
    • US07233361B2
    • 2007-06-19
    • US10438210
    • 2003-05-15
    • Seung-joon YangYoung-ho Lee
    • Seung-joon YangYoung-ho Lee
    • H04N7/01H04N5/46
    • H04N7/0115H04N7/012
    • An apparatus for detecting whether an image signal is in a film mode, includes a first field buffer, a second field buffer and a third field buffer that sequentially buffer respective fields of the image signal by order of input, using the respective fields stored in the first, the second and the third field buffers. The apparatus for detecting whether an image signal is in the film mode, includes a motion information calculator calculating a motion information of the respective fields by comparing variations of a motion in the respective fields stored in the first and the third field buffers, a motion information buffer storing the motion information in unit of a predetermined number of fields, and a pattern matching unit determining whether the image signal is in the film mode by comparing the motion information of the respective fields stored in the unit of the predetermined number of fields with a pattern of the field having a predetermined periodicity in accordance with a 3:2 pull-down conversion, and by subsequently determining whether the motion information matches the pattern.
    • 一种用于检测图像信号是否处于胶片模式的装置,包括第一场缓冲器,第二场缓冲器和第三场缓冲器,其通过输入顺序顺序地缓冲图像信号的各个场, 第一,第二和第三个字段缓冲区。 用于检测图像信号是否处于胶片模式的装置包括运动信息计算器,通过比较存储在第一和第三场缓冲器中的各个场中的运动的变化来运算各场的运动信息,运动信息 以预定数量的字段为单位存储运动信息的缓冲器;以及模式匹配单元,通过将以预定数量的字段为单位存储的各个字段的运动信息与一个字段的运动信息进行比较来确定图像信号是否处于胶片模式 根据3:2下拉转换具有预定周期的场的图案,并且随后确定运动信息是否匹配该图案。
    • 69. 发明申请
    • Motion adaptive image processing apparatus and method thereof
    • 运动自适应图像处理装置及其方法
    • US20060147090A1
    • 2006-07-06
    • US11288402
    • 2005-11-29
    • Seung-joon Yang
    • Seung-joon Yang
    • G06K9/00G06K9/36
    • H04N5/145G06T7/215G06T7/254
    • A motion adaptive image processing apparatus includes a classifier to classify a current field of a sequence of in put fields into one or more class regions, a calculator to calculate a variance based on pixel values of pixels located in a predetermined region around a certain pixel of the current field, a threshold calculator to calculate a maximum variance and a minimum variance which are pre-set according to the one or more class regions, the threshold calculator calculating a threshold based on the calculated maximum variance and the minimum variance, a motion calculator to calculate a motion change of an image using a previous field and a next field of the current field in the sequence of the input fields, and a weight calculator to calculate the weight to be applied to the certain pixel based on the calculated threshold and the calculated motion change of the image.
    • 运动自适应图像处理装置包括:分类器,将输入场序列的当前场分类成一个或多个等级区域;计算器,基于位于某一像素周围的预定区域中的像素的像素值来计算方差; 所述当前场,阈值计算器,用于计算根据所述一个或多个类别区域预先设定的最大方差和最小方差,所述阈值计算器基于所计算的最大方差和最小方差来计算阈值;运动计算器 使用输入字段序列中的当前字段的先前字段和下一个字段来计算图像的运动变化,以及权重计算器,用于基于计算的阈值来计算要应用于该特定像素的权重,并且 计算出图像的运动变化。
    • 70. 发明申请
    • Liquid crystal display device and fabricating method thereof
    • US20060121636A1
    • 2006-06-08
    • US11288263
    • 2005-11-29
    • Joon Yang
    • Joon Yang
    • H01L21/00H01L21/84
    • G02F1/13454G02F1/136227H01L27/1255H01L27/14643H01L29/78621
    • A method of fabricating a liquid crystal display device includes forming first, second, and third active patterns on a substrate having a pixel region and a driving region, wherein the first and second active patterns are in the driving region and the third active pattern is in the pixel region, the first, second, and third active patterns each having an active region, a source region, and a drain region with the source and drain regions on opposing sides of the active region, forming a gate insulator on the first, second, and third active patterns, forming first, second, and third gate electrodes on the gate insulator, wherein the first, second, and third gate electrodes correspond to the active regions of the first, second, and third active patterns, respectively, doping the source and drain regions of the first, second, and third active patterns with n− ions using the first, second, and third gate electrodes as a doping mask, doping the n− doped source and drain regions of the second active pattern with p+ ions, forming an interlayer insulating film on the first, second, and third gate electrodes and patterning the interlayer insulating film to form contact holes exposing each source and drain regions of the first, second, and third active patterns, and doping the source and drain regions of the first, second, and third active patterns with n+ ions through the contact holes.