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    • 1. 发明授权
    • Image display apparatus and image display method
    • 图像显示装置和图像显示方法
    • US07483084B2
    • 2009-01-27
    • US10542416
    • 2003-12-26
    • Hideaki KawamuraHaruko TeraiJunta AsanoMitsuhiro Kasahara
    • Hideaki KawamuraHaruko TeraiJunta AsanoMitsuhiro Kasahara
    • H04N5/57G09G3/28
    • G09G3/2022G09G3/2044G09G3/2803G09G2320/0261G09G2320/0266G09G2320/106G09G2340/16G09G2360/16
    • In an image display apparatus, a video signal is divided for each field into a plurality of sub-fields, each of which is weighted according to the duration of time or number of pulses. The plurality of sub-fields are temporally superimposed for display, so that a grayscale representation is provided. A video signal for the current field is delayed by one field, and output as a video signal for the previous field. Based on the video signal for the current field and the video signal for the previous field, a luminance gradient of an image is detected. A difference between the video signal for the current field and the video signal for the previous field is calculated. Based on the calculated difference and the detected gradient, the amount of motion of the image is calculated by a detecting circuit. Based on the calculated amount of motion of the image, dynamic false contours are reduced by an image data processing circuit.
    • 在图像显示装置中,将视频信号划分为多个子场,每个子场根据持续时间或脉冲数加权。 多个子场在时间上叠加以进行显示,从而提供灰度表示。 用于当前场的视频信号被延迟一个场,并作为前一场的视频信号输出。 基于当前场的视频信号和前一场的视频信号,检测图像的亮度梯度。 计算当前场的视频信号与前一场的视频信号之间的差异。 基于计算的差值和检测到的梯度,通过检测电路计算图像的运动量。 基于计算出的图像的运动量,由图像数据处理电路减少动态假轮廓。
    • 3. 发明授权
    • Display unit and display method
    • 显示单元和显示方式
    • US07443365B2
    • 2008-10-28
    • US10541544
    • 2003-12-26
    • Haruko TeraiHideaki KawamuraJunta AsanoMitsuhiro Kasahara
    • Haruko TeraiHideaki KawamuraJunta AsanoMitsuhiro Kasahara
    • G09G5/10G09G5/02G09G3/28
    • G09G3/2051G09G3/2022G09G3/2062G09G3/2066G09G3/2074G09G3/2077G09G3/288G09G2320/0266G09G2320/0285
    • The combination patterns of emissions and non-emissions from the n-th sub-field to the m-th sub-field (where m and n are integers smaller than the total number of sub-fields, and m is greater than n) for a first pixel, a second pixel, a third pixel, and a fourth pixel that are vertically and horizontally adjacent in each of the areas in a display panel are different from one another. Among the first pixel to the fourth pixel vertically and horizontally adjacent in each area of the display panel, the grayscale value displayed by each of the first pixel and the second pixel arranged in one diagonal positions is lower than the average of the grayscale values displayed by the first pixel to the fourth pixel, while the grayscale value displayed by each of the third pixel and the fourth pixel arranged in the other diagonal positions is higher than the average of the grayscale values displayed by the first pixel to the fourth pixel.
    • 从第n个子场到第m个子场的发射和非发射的组合模式(其中m和n是小于子场总数的整数,并且m大于n),用于 在显示面板中的每个区域中垂直和水平相邻的第一像素,第二像素,第三像素和第四像素彼此不同。 在显示面板的每个区域中垂直和水平相邻的第四像素的第一像素中,排列在一个对角线位置的第一像素和第二像素中的每一个显示的灰度值低于由显示面板显示的灰度值的平均值 第一像素到第四像素,而排列在其他对角线位置的第三像素和第四像素中的每一个显示的灰度值高于由第一像素显示到第四像素的灰度值的平均值。
    • 6. 发明授权
    • Scanning line interpolating device
    • 扫描线内插装置
    • US06801221B2
    • 2004-10-05
    • US10169753
    • 2002-07-18
    • Hideaki KawamuraMitsuhiro KasaharaTomoaki Daigi
    • Hideaki KawamuraMitsuhiro KasaharaTomoaki Daigi
    • G09G500
    • G06T3/4007H04N7/012H04N7/0135
    • A vertical interpolation circuit interpolates an interpolated pixel with pixels located on upper and lower vertical positions, and outputs a vertical interpolated value. An oblique averaging part averages pixels obliquely located with respect to the interpolated pixel on the basis of an oblique edge angle signal, and outputs the result of calculation as an oblique average. An oblique difference absolute value operation part calculates the absolute value of the difference between the values of the pixels obliquely located with respect to the interpolated pixel on the basis of the oblique edge angle signal, and outputs the result of calculation as an oblique difference absolute value. A mixing part outputs the vertical interpolated value, the oblique average or a mixed value thereof as an interpolated pixel value on the basis of the oblique difference absolute value.
    • 垂直内插电路对位于上下垂直位置的像素内插内插像素,并输出垂直内插值。 倾斜平均部分基于斜边角度信号对相对于内插像素倾斜定位的像素进行平均,并将计算结果作为倾斜平均值输出。 斜差绝对值运算部根据斜边角度信号,计算出倾斜位置相对于内插像素的像素的差值的绝对值,将其计算结果输出为斜差绝对值 。 混合部分基于斜差绝对值将垂直内插值,斜平均值或其混合值作为内插像素值输出。
    • 7. 发明授权
    • Video display monitor
    • 视频显示器
    • US06243073B1
    • 2001-06-05
    • US08986504
    • 1997-12-08
    • Hideaki KawamuraMitsuhiro KasaharaKazuo OhiraTakehisa HiranoKatsuhiro Nakai
    • Hideaki KawamuraMitsuhiro KasaharaKazuo OhiraTakehisa HiranoKatsuhiro Nakai
    • G09G510
    • G09G3/2022G09G3/282G09G2310/0205G09G2310/0216G09G2320/0247
    • A video display monitor, such as a plasma monitor, which uses a subfield method which overlaps weighted multiple binary video images in a time base for display. The stable driving of a plasma display panel may be assured and display in the 256 grey-level may be maintained although vertical synchronizing frequency of the input video signal changes. A vertical synchronizing measurement unit measures the vertical synchronizing frequency of the video signal, and a subfield number adjustment unit adjusts the number of subfields in accordance with a measured vertical synchronizing frequency. The stable driving of the plasma display panel and display in grey levels may be assured by selecting a ROM table with an output bit width equivalent to the number of subfields to be output from multiple ROM tables used for converting the number of bits in the input signal.
    • 诸如等离子体监视器的视频显示监视器,其使用在时基中重叠加权的多个二进制视频图像以进行显示的子场方法。 可以确保等离子体显示面板的稳定驱动,并且即使输入视频信号的垂直同步频率发生变化,也可以维持256灰度级的显示。 垂直同步测量单元测量视频信号的垂直同步频率,子场数调整单元根据所测量的垂直同步频率来调整子场数。 等离子体显示面板的稳定驱动和灰度级显示可以通过选择具有等于从用于转换输入信号中的位数的多个ROM表中输出的子场数量的ROM表来确保 。
    • 10. 发明授权
    • Image conversion device and image conversion method
    • 图像转换装置和图像转换方法
    • US07446815B2
    • 2008-11-04
    • US10509677
    • 2003-04-14
    • Mitsuhiro KasaharaTomoaki DaigiHideaki KawamuraHideto NakahigashiTomoko Morita
    • Mitsuhiro KasaharaTomoaki DaigiHideaki KawamuraHideto NakahigashiTomoko Morita
    • H04N7/01H04N11/20
    • H04N7/012H04N5/144H04N7/0137
    • A first video signal generation circuit newly generates pixels between pixels in a first progressive video field signal outputted by a first progressive video generation circuit, and outputs a third progressive video field signal. A second video signal generation circuit newly generates pixels between pixels in a second progressive video field signal outputted by a second progressive video generation circuit, and outputs a fourth progressive video field signal. A comparison circuit compares the third progressive video field signal and the fourth progressive video field signal, and outputs the result of the comparison as motion amount information. An output circuit synthesizes an intra-field interpolation signal and a frame interfiled interpolation signal on the basis of the motion amount information, and outputs a composite signal as a progressive video signal.
    • 第一视频信号产生电路新产生由第一逐行视频发生电路输出的第一逐行视频信号中的像素之间的像素,并输出第三逐行视频场信号。 第二视频信号产生电路新产生由第二逐行视频发生电路输出的第二逐行视频信号中的像素之间的像素,并输出第四逐行视频场信号。 比较电路比较第三逐行视频场信号和第四逐行视频场信号,并将比较结果作为运动量信息输出。 输出电路根据运动量信息合成场内插补信号和帧间插补信号,并输出合成信号作为逐行视频信号。