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    • 92. 发明授权
    • Image displaying device and method and image processing device and method for preventing image deterioration due to motion-compensated rate conversion processing
    • 用于防止运动补偿速率转换处理造成的图像劣化的图像显示装置和方法以及图像处理装置和方法
    • US08325272B2
    • 2012-12-04
    • US12440654
    • 2007-04-10
    • Takeshi MoriSeiji KohashikawaHiroyuki FurukawaMasafumi UenoKenichiroh YamamotoTakashi Yoshii
    • Takeshi MoriSeiji KohashikawaHiroyuki FurukawaMasafumi UenoKenichiroh YamamotoTakashi Yoshii
    • H04N5/08H04N7/12
    • G09G3/20G09G3/3611G09G5/393G09G2320/0261G09G2320/106G09G2340/0435G09G2340/16H04N7/0112H04N7/0132H04N7/014H04N7/0147
    • It is an object to prevent the image quality deterioration of a moving image likely to include a plurality of the same consecutive images such as 2-3 or 2-2 pulldown video due to the motion-compensated frame rate conversion (FRC) processing. An image displaying device is provided with an FRC portion (10) for converting the number of frames in an input image signal by interpolating an image signal to which a motion compensation processing has been given between the frames in the input image signal, a pulldown detecting portion (14) for detecting whether the input image signal is an image signal to which pulldown conversion has been performed, and a controlling portion (15). The FRC portion (10) includes a motion vector detecting portion (11e) for detecting a motion vector between the frames of the input image signal, an interpolating vector evaluating portion (11f) for allocating an interpolating vector between the frames based on the motion vector information, and an interpolating frame generating portion (12d) for generating an interpolating frame from the interpolating vector. In the case that the input image signal is an image signal to which pulldown conversion has been performed, the controlling portion (15) set the motion vector detected by the motion vector detecting portion (11e) to zero-vector to make the motion compensation processing of the FRC portion (10) ineffective.
    • 本发明的目的是防止由于运动补偿帧速率转换(FRC)处理,运动图像的图像质量劣化可能包括多个相同的连续图像,例如2-3或2-2下拉视频。 图像显示装置设置有FRC部分(10),用于通过内插在输入图像信号中的帧之间已经给出运动补偿处理的图像信号来转换输入图像信号中的帧数,下拉检测 用于检测所述输入图像信号是否已经执行了下拉变换的图像信号的部分(14)和控制部分(15)。 FRC部分(10)包括用于检测输入图像信号的帧之间的运动矢量的运动矢量检测部分(11e),用于基于运动矢量来分配帧之间的内插矢量的内插矢量评估部分(11f) 信息,以及用于从内插向量生成内插帧的内插帧生成部分(12d)。 在输入图像信号是已经执行了下拉变换的图像信号的情况下,控制部分(15)将由运动矢量检测部分(11e)检测的运动矢量设置为零向量,以进行运动补偿处理 的FRC部分(10)无效。
    • 97. 发明申请
    • Device for Preliminary Bonding of Laminated Glass
    • 复合玻璃的初步粘结装置
    • US20120160422A1
    • 2012-06-28
    • US13386919
    • 2010-07-26
    • Takeshi Mori
    • Takeshi Mori
    • C03C27/04
    • B32B37/0053B32B17/10036B32B17/10761B32B17/10816B32B17/10862B32B37/10B32B2037/1223B32B2315/08B32B2329/06B32B2605/08
    • A device for preliminary bonding superposed curved glass plates together through an interlayer between them by sandwiching and pressing the plates from both outside surfaces of the superposed plates. The device has an upper roll pressing means with plural independent upper rolls arranged in a row along a plate upper surface to press against the upper surface of the plate (G), a lower roll pressing means with plural independent lower rolls arranged in a row along a plate lower surface to press against the lower surface of the plate a curveable lower flexible roll contiguous with the top of each lower roll, and a drive (50) for rotating the lower flexible roll. The curved glass plates are press-bonded together by the upper rolls and the lower flexible roll by the lower roll pressing means pressing the lower flexible roll through the lower rolls against the lower surface of the plate.
    • 一种用于通过从叠加板的两个外表面夹住和挤压板将叠加的弯曲玻璃板预先粘合在一起的装置通过它们之间的中间层。 该装置具有上辊压装置,具有多个独立的上辊,沿着板上表面排列成一排,以压靠板(G)的上表面;下辊压装置,具有多个独立的下辊排列成一排 板下表面压靠在板的下表面上,与每个下辊的顶部相邻的可弯曲的下柔性辊,以及用于旋转下柔性辊的​​驱动器(50)。 弯曲的玻璃板通过上辊和下柔性辊通过下辊挤压装置压合在一起,下辊压装置将下柔性辊压靠在板的下表面上。
    • 99. 发明授权
    • Body insertable apparatus having a protection circuit
    • 具有保护电路的可插入物体
    • US07959560B2
    • 2011-06-14
    • US11632521
    • 2005-07-14
    • Takeshi MoriTakemitsu Honda
    • Takeshi MoriTakemitsu Honda
    • A61B1/00A61B1/04
    • A61B1/00016A61B1/041
    • A protection circuit 26c detects a voltage at a point A on an electric-power supply path from a battery 29 to an intra-capsule function executing circuit 30. When the voltage at the point A becomes smaller than a predetermined threshold value (a predetermined midpoint potential), the protection circuit 26c performs a switching control of a switch element 26a, connects the battery 29 to a resistive load 26b, stops supplying driving power to the intra-capsule function executing circuit 30 and at the same time enables to supply electric power to the resistive load 26b, and prevents a false operation of a circuit at the midpoint potential by exhausting the electric power stored in the battery 29 by the resistive load 26b.
    • 保护电路26c检测从电池29到胶囊内功能执行电路30的电力供给路径上的点A处的电压。当点A处的电压变得小于预定阈值(预定中点 电位),保护电路26c进行开关元件26a的切换控制,将电池29连接到电阻负载26b,停止向胶囊内功能执行电路30供给驱动电力,同时能够供给电力 到电阻负载26b,并且通过由电阻负载26b排出存储在电池29中的电力来防止电路在中点电位的错误操作。