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    • 1. 发明授权
    • Image interpolation device and a frame rate converter and image display apparatus using the same
    • 图像插值装置和使用其的图像显示装置的帧速率转换器和图像显示装置
    • US07586540B2
    • 2009-09-08
    • US11260219
    • 2005-10-28
    • Masahiro OginoYouichi IgarashiYoshinori Tanaka
    • Masahiro OginoYouichi IgarashiYoshinori Tanaka
    • H04N7/01
    • H04N7/014G06T3/4007G06T7/246H04N7/0142
    • More accurate frame-rate conversion is carried out in a simpler circuit configuration. Search areas SA+1 and SA−1 in each of which the pixel facing the interpolation position P0 of a pixel in an interpolation frame is taken as a central pixel are set in the current frame and immediately previous frame of an image signal, a set of pixels point-symmetrical to the interpolation position P0 in each of the search areas SA+1 and SA−1 are defined as pixel pairs, and differential luminance values between the individual pixels in the pixel pairs are calculated for each pixel pair. Of all these pixel pairs, only that having the minimum absolute differential value is selected as interpolation pixel pair, an interpolation frame is generated from the current frame and the immediately previous frame on the basis of the interpolation pixel vector of that interpolation pixel pair.
    • 在更简单的电路配置中进行更准确的帧速率转换。 将内插帧中的像素的内插位置P0的面向像素的像素作为中心像素的搜索区SA + 1和SA-1被设置在图像信号的当前帧和紧接的前一帧中,集合 将每个搜索区域SA + 1和SA-1中的内插位置P0点对称的像素定义为像素对,并且针对每个像素对计算像素对中的各个像素之间的差分亮度值。 在所有这些像素对中,仅选择具有最小绝对差分值的那些作为内插像素对,基于该内插像素对的内插像素矢量,从当前帧和紧接的前一帧生成内插帧。
    • 2. 发明授权
    • Image processing apparatus and image display apparatus provided with the same
    • 图像处理装置及具备该图像处理装置的图像显示装置
    • US08559517B2
    • 2013-10-15
    • US12004959
    • 2007-12-21
    • Masahiro OginoMitsuo Nakajima
    • Masahiro OginoMitsuo Nakajima
    • H04N11/20
    • H04N7/014G06T3/4007H04N5/144H04N7/0112H04N7/0122H04N7/0132
    • A picture signal processing apparatus includes a motion vector detecting unit for detecting information as to a motion vector of a picture from frames contained in an input picture signal; an interpolation frame producing unit for producing an interpolation frame by employing the motion vector; and a frame stream producing unit for producing a picture signal of a new frame stream by combining the interpolation frame produced with the frames of the input picture signal so as to output the produced picture signal of the new frame stream. When the picture signal processing apparatus performs a converting operation in such a manner that interpolation frames are continued between two frames of the input picture signal, at least one interpolation frame among the interpolation frames is formed as such an interpolation frame formed without employing the motion vector (namely, not depending upon motion of picture).
    • 图像信号处理装置包括:运动矢量检测单元,用于从包含在输入图像信号中的帧中检测关于图像的运动矢量的信息; 插值帧产生单元,用于通过使用运动矢量产生插值帧; 以及帧流产生单元,用于通过组合由输入图像信号的帧产生的内插帧来产生新帧流的图像信号,以输出新帧流的产生图像信号。 当图像信号处理装置以输入图像信号的两帧之间的插值帧继续进行转换操作时,内插帧中的至少一个内插帧形成为不使用运动矢量的内插帧 (即不依赖于图片的运动)。
    • 5. 发明申请
    • PICTURE PROCESSING APPARATUS AND PICTURE PROCESSING METHOD
    • 图像处理设备和图像处理方法
    • US20110032419A1
    • 2011-02-10
    • US12791358
    • 2010-06-01
    • Hidenori SakaniwaMasahiro OginoHiroki Sato
    • Hidenori SakaniwaMasahiro OginoHiroki Sato
    • H04N7/01
    • H04N7/0132H04N7/013H04N7/014
    • An interpolation frame producing method when a frame rate converting operation is carried out, the method comprising a motion vector detecting step for detecting a motion vector of a picture; a frame rate calculating step for calculating a frame rate based upon the detected motion vector; and an interpolation frame producing step for producing an interpolation frame based upon the calculated frame rate; in which in the frame rate calculating step, a movement feature amount of a picture is calculated from the motion vector detected in the motion vector detecting step; and the frame rate is calculated in such a manner that a frame rate of a picture, the movement feature amount of which exceeds a predetermined threshold value, becomes lower than a frame rate of a picture, the movement feature amount of which is smaller than, or equal to the predetermined threshold value.
    • 一种执行帧率转换操作的内插帧产生方法,该方法包括用于检测图像的运动矢量的运动矢量检测步骤; 帧率计算步骤,用于基于检测到的运动矢量来计算帧速率; 以及内插帧产生步骤,用于基于所计算的帧速率产生插值帧; 其中在帧速率计算步骤中,根据在运动矢量检测步骤中检测到的运动矢量计算图像的运动特征量; 并且以使其移动特征量超过预定阈值的图像的帧速率变得低于其移动特征量小于的图像的帧速率的方式来计算帧速率, 或等于预定阈值。
    • 7. 发明申请
    • Image interpolation device and a frame rate converter and image display apparatus using the same
    • 图像插值装置和使用其的图像显示装置的帧速率转换器和图像显示装置
    • US20060092321A1
    • 2006-05-04
    • US11260219
    • 2005-10-28
    • Masahiro OginoYouichi IgarashiYoshinori Tanaka
    • Masahiro OginoYouichi IgarashiYoshinori Tanaka
    • H04N7/01
    • H04N7/014G06T3/4007G06T7/246H04N7/0142
    • More accurate frame-rate conversion is carried out in a simpler circuit configuration. Search areas SA+1 and SA−1 in each of which the pixel facing the interpolation position P0 of a pixel in an interpolation frame is taken as a central pixel are set in the current frame and immediately previous frame of an image signal, a set of pixels point-symmetrical to the interpolation position P0 in each of the search areas SA+1 and SA−1 are defined as pixel pairs, and differential luminance values between the individual pixels in the pixel pairs are calculated for each pixel pair. Of all these pixel pairs, only that having the minimum absolute differential value is selected as interpolation pixel pair, an interpolation frame is generated from the current frame and the immediately previous frame on the basis of the interpolation pixel vector of that interpolation pixel pair.
    • 在更简单的电路配置中进行更准确的帧速率转换。 在内插帧中的像素的内插位置P 0> 0 的像素中的每一个中的搜索区域SA 作为中心像素的像素被设置在图像信号的当前帧和紧接的前一帧中,每个搜索区域SA< S>中的与插值位置P 0< 0> +1< 1>和< SA> -1< / SUB>被定义为像素对,并且针对每个像素对计算像素对中的各个像素之间的差分亮度值。 在所有这些像素对中,仅选择具有最小绝对差分值的那些作为内插像素对,基于该内插像素对的内插像素矢量,从当前帧和紧接的前一帧生成内插帧。
    • 8. 发明授权
    • Insulated gate transistor with leakage current prevention feature
    • 具有漏电流防护功能的绝缘栅晶体管
    • US06337504B1
    • 2002-01-08
    • US09031733
    • 1998-02-27
    • Yoshihiko IsobeHidetoshi MuramotoHisayoshi OoshimaMasahiro Ogino
    • Yoshihiko IsobeHidetoshi MuramotoHisayoshi OoshimaMasahiro Ogino
    • H01L2976
    • H01L29/6659H01L21/26586H01L21/823814H01L21/823835H01L21/823864H01L29/665Y10S257/90
    • An MIS transistor fabricated in a manner that minimizes the occurrence of leak currents and that improves overall transistor performance by minimizing variation in location of the transistor source and drain during fabrication thereof. A gate electrode is first fabricated on a substrate. Next, a thermal oxide layer is formed on a side of the gate electrode. A masking process is then performed with the thermal oxide layer to form a source and a drain. A silicon oxide layer is then deposited over the gate electrode, the source and the drain. An etching process is performed on the silicon oxide to form a side wall oxide film over the thermal oxide layer on the side of the gate electrode and to expose surfaces of the gate electrode, the source and the drain. A metal film is then deposited over the gate electrode, the source and the drain and is heat treated to form a metal silicide film on the exposed surfaces of the gate electrode, the source and the drain. The side wall oxide film functions to disperse the metal silicide film as it is deposited to electrically separate the gate electrode, the source and the drain, thereby preventing a leakage current from occurring.
    • 以最小化泄漏电流的发生的方式制造的MIS晶体管,并且通过使晶体管源极和漏极在其制造期间的位置的变化最小化来改善整体晶体管的性能。 首先在基板上制造栅电极。 接下来,在栅电极的一侧形成热氧化层。 然后用热氧化物层进行掩模处理以形成源极和漏极。 然后在栅电极,源极和漏极上沉积氧化硅层。 对氧化硅进行蚀刻处理,以在栅电极侧的热氧化层上形成侧壁氧化膜,并露出栅电极,源极和漏极的表面。 然后在栅电极,源极和漏极上沉积金属膜,并且在栅电极,源极和漏极的暴露表面上进行热处理以形成金属硅化物膜。 侧壁氧化膜用于在金属硅化物膜沉积时分散栅极电极,源极和漏极,从而防止发生漏电流。
    • 10. 发明申请
    • REPRODUCTION DEVICE AND REPRODUCTION METHOD
    • 复制设备和复制方法
    • US20130266287A1
    • 2013-10-10
    • US13877300
    • 2011-09-26
    • Hidenori SakaniwaNobuaki KabutoMasahiro Ogino
    • Hidenori SakaniwaNobuaki KabutoMasahiro Ogino
    • H04N13/00
    • H04N13/189H04N5/76H04N13/183H04N13/337
    • When a reproduction device and a display device are separated, there is the risk that it will not be possible to appropriately overly menu images or the like on a 3D video signal in the reproduction device. This reproduction method, which outputs a video signal generated in a reproduction device to a display device, has: a step for reproducing a video signal; a step for generating image information to be superimposed on the reproduced video signal; a step for superimposing the generated image information on the reproduced video signal; a step for outputting the video signal to which the image information has been superimposed; a step for reading information relating to the display device from the display device; and a step for acquiring information relating to the state of the display device from the display device. The configuration is such that the method of superimposing the image information on the video signal is altered on the basis of the acquired information relating to the state of the display device and the read information relating to the display device.
    • 当再现设备和显示设备被分离时,存在不可能在再现设备中的3D视频信号上适当地过度地菜单图像等的风险。 将在再现设备中生成的视频信号输出到显示设备的该再现方法具有:再现视频信号的步骤; 用于生成要叠加在再现的视频信号上的图像信息的步骤; 用于将所生成的图像信息叠加在再现的视频信号上的步骤; 用于输出已经叠加了图像信息的视频信号的步骤; 从显示装置读取与显示装置有关的信息的步骤; 以及从显示装置获取与显示装置的状态有关的信息的步骤。 该配置使得基于所获取的与显示设备的状态有关的信息和与显示设备相关的读取信息,改变将图像信息叠加在视频信号上的方法。