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    • 103. 发明申请
    • IMAGE DISPLAY DEVICE AND METHOD
    • 图像显示装置和方法
    • US20100110300A1
    • 2010-05-06
    • US12530145
    • 2008-04-18
    • Masafumi UenoKenichiroh YamamotoTakashi YoshiiHiroyuki FurukawaYasuhiro YoshidaIkuko Tsubaki
    • Masafumi UenoKenichiroh YamamotoTakashi YoshiiHiroyuki FurukawaYasuhiro YoshidaIkuko Tsubaki
    • H04N5/21
    • G09G3/3611G09G2320/0261G09G2320/106G09G2340/0435H04N5/145H04N7/0132H04N7/014
    • An image processing device, method, an image display device and method which can obtain a high-definition display image by properly controlling processing of reducing the blur of a displayed image caused by the time integration effect of an image sensor. The image display device comprises a motion detection part (1) which detects the moving amount of an input image signal, and an edge emphasis part (2) which subjects the input image signal to edge emphasis processing, and the image display device increases an edge emphasis degree of edge emphasis processing to an area where the moving amount of the input image signal is large. The image display device comprises a genre judgment part (3) which judges the genre classification which the input image signal is connected with according to genre information obtained from outside of the device, and a control part (4) which controls the edge emphasis part (2) to reduce the edge emphasis degree of the edge emphasis processing or to avoid the edge emphasis processing even in the area where the moving amount of the input signal is large when the input image signal is connected with a predetermined genre.
    • 一种图像处理装置,方法,图像显示装置和方法,其可以通过适当地控制由图像传感器的时间积分效应引起的减少显示图像的模糊的处理来获得高清晰度显示图像。 图像显示装置包括检测输入图像信号的移动量的运动检测部(1)和使输入图像信号进行边缘加重处理的边缘加重部(2),并且图像显示装置增加边缘 边缘强调处理的强调程度到输入图像信号的移动量大的区域。 图像显示装置包括:类型判定部,根据从装置的外部得到的种类信息,判定输入图像信号连接的流派分类;以及控制部,其控制边缘强调部( 2)当输入图像信号以预定的类型连接时,即使在输入信号的移动量较大的区域中,也可以减少边缘强调处理的边缘强度,或避免边缘强调处理。
    • 104. 发明申请
    • AIR CONDITIONER AND COATING COMPOSITION
    • 空调和涂料组合物
    • US20100095697A1
    • 2010-04-22
    • US12490880
    • 2009-06-24
    • Reiji MoriokaYoshinori YamamotoYasuhiro Yoshida
    • Reiji MoriokaYoshinori YamamotoYasuhiro Yoshida
    • F25D21/04C08K3/18
    • C09D5/1625C08K3/36C08L27/12C09D7/62C09D7/67C09D7/68F24F1/0007F24F2003/1664F28F19/04F28F21/067
    • Disclosed is an air conditioner coated by the coating composition to the resin-made components where due formation occurs upon the cooling operation, provides the antifouling performance against various stains, restrains enlargement of droplet, and provides an excellent long-term durability (sticking property and peeling off property) all at the same time. The air conditioner of the present embodiment forms a coating film 103 to surfaces of resin-made components and resin-made components installed to a rear flow side of the heat exchanger, includes the silica ultrafine particles 101 and the fluororesin particles 102, and provides, within the coating film 103, a silica film 104 comprising the silica ultrafine particles and the fluororesin particles 102 partially exposed from a surface of the silica film 104 in dots, and an exposed area of the silica film 104 is greater than an exposed area of the fluororesin particles 102.
    • 本发明公开了一种由涂料组合物涂布到制冷部件上的空调机,在冷却运转时发生适当形成,提供防污性能,抑制液滴的扩大,提供优异的长期耐久性(粘着性和 剥离财产)全部在同一时间。 本实施方式的空调装置在安装于热交换器的后流侧的树脂成分和树脂成分的表面上形成涂膜103,其包含二氧化硅超微粒子101和氟树脂粒子102, 在涂膜103内,包含二氧化硅超细颗粒的二氧化硅膜104和从二氧化硅膜104的表面部分露出的氟树脂颗粒102,并且二氧化硅膜104的暴露面积大于 氟树脂颗粒102。
    • 105. 发明申请
    • IMAGE DISPLAYING DEVICE AND METHOD, AND IMAGE PROCESSING DEVICE AND METHOD
    • 图像显示装置和方法,以及图像处理装置和方法
    • US20100085478A1
    • 2010-04-08
    • US12443400
    • 2007-02-05
    • Kenichiroh YamamotoHiroyuki FurukawaMasafumi UenoYasuhiro Yoshida
    • Kenichiroh YamamotoHiroyuki FurukawaMasafumi UenoYasuhiro Yoshida
    • H04N7/01
    • H04N5/144G09G3/3208G09G3/344G09G3/3611G09G2320/0261G09G2320/106G09G2340/0435H04N7/0135H04N21/440281
    • In an image displaying device that includes a frame rate converting (FRC) portion, deterioration in image quality particularly of a telop part is prevented. The FRC portion 100 includes a motion vector detecting portion 101 and an interpolation frame generating portion 102. The motion vector detecting portion 101 includes a frame delaying portion 1 for delaying an input signal by one frame, an initial displacement vector selecting portion 2 for selecting and outputting an initial displacement vector used for vector detection, a motion vector calculating portion 3 for detecting a motion vector using the initial displacement vector, a vector memory 4 for storing a vector detection result, and a telop information detecting portion 5 for detecting an area where one or more telops exist and a moving speed thereof using a vector detection result in a previous frame supplied from the vector memory 4. The detection result from the telop information detecting portion 5 is reflected in processing in the initial displacement vector selecting portion 2 and/or the motion vector calculating portion 3 to improve accuracy of detecting a vector of a telop part.
    • 在包括帧率转换(FRC)部分的图像显示装置中,防止了特别是字幕部分的图像质量的劣化。 FRC部分100包括运动矢量检测部分101和内插帧产生部分102.运动矢量检测部分101包括用于将输入信号延迟一帧的帧延迟部分1,初始位移矢量选择部分2用于选择和 输出用于矢量检测的初始位移矢量,用于使用初始位移矢量检测运动矢量的运动矢量计算部3,用于存储矢量检测结果的矢量存储器4和用于检测矢量检测结果的字幕信息检测部5, 存在一个或多个字幕,并且使用矢量检测的移动速度导致从向量存储器4提供的前一帧。来自字幕信息检测部分5的检测结果反映在初始位移矢量选择部分2中的处理和/ 或运动矢量计算部分3,以提高检测字幕矢量的精度 部分。
    • 107. 发明申请
    • IMAGE DISPLAYING DEVICE AND METHOD,AND IMAGE PROCESSING DEVICE AND METHOD
    • 图像显示装置和方法,以及图像处理装置和方法
    • US20100002133A1
    • 2010-01-07
    • US12312909
    • 2007-05-18
    • Masafumi UenoKenichiroh YamamotoTakashi YoshiiHiroyuki FurukawaYasuhiro Yoshida
    • Masafumi UenoKenichiroh YamamotoTakashi YoshiiHiroyuki FurukawaYasuhiro Yoshida
    • H04N7/01
    • H04N7/014G09G3/20G09G3/3611G09G2310/061G09G2320/0261G09G2320/106G09G2340/0435H04N7/0132
    • The quality of moving picture image with a large moving amount is prevented from deterioration due to moving compensation type frame rate conversion (FRC) processing. The image display device is comprised of an FRC unit (10) that interpolates an image signal subjected to moving compensation processing between frames so as to convert the number of frames of the input image signal, a moving amount judging unit (14) that judges whether a moving amount of the input image signal between the frames is larger than a predetermined value or not, and a control unit (15). The FRC unit (10) is provided with a moving vector detecting unit (11e) that detects a moving vector between the frames of the input image signal, an interpolation vector evaluating unit (11f) that allocates an interpolation vector between the frames on the basis of the moving vector information and an interpolation frame generating unit (12d) that generates an interpolation frame from the interpolation vector. In the case where the moving amount between the frames of the input image signal is larger than the predetermined value, the control unit (15) sets the moving vector detected by the moving vector detecting unit (11e) to be zero-vector, and it invalidates the moving compensation processing of the FRC unit (10).
    • 由于移动补偿型帧速率转换(FRC)处理,防止移动量大的运动图像的质量下降。 图像显示装置包括:FRC单元(10),其对在帧之间进行移动补偿处理的图像信号进行内插,以便转换输入图像信号的帧数;移动量判断单元(14),其判断是否 帧之间的输入图像信号的移动量大于预定值,以及控制单元(15)。 FRC单元(10)设置有移动矢量检测单元(11e),其检测输入图像信号的帧之间的移动矢量;插值矢量评估单元(11f),其基于在帧之间分配插值矢量 的移动矢量信息和从内插矢量生成插值帧的插值帧生成单元(12d)。 在输入图像信号的帧之间的移动量大于预定值的情况下,控制单元(15)将由移动矢量检测单元(11e)检测的移动矢量设置为零向量,并且 使FRC单元(10)的移动补偿处理无效。
    • 109. 发明申请
    • Crosstalk Elimination Circuit, Liquid Crystal Display Apparatus, and Display Control Method
    • 串扰消除电路,液晶显示装置和显示控制方法
    • US20070222724A1
    • 2007-09-27
    • US10594023
    • 2005-05-09
    • Masafumi UenoNaoko KondoHiroyuki FurukawaYasuhiro Yoshida
    • Masafumi UenoNaoko KondoHiroyuki FurukawaYasuhiro Yoshida
    • G09G3/36
    • G09G5/06G09G3/3648G09G2300/0452G09G2300/0465G09G2320/0209G09G2320/0285
    • The crosstalk of a display apparatus can be efficiently eliminated to realize a precise, high-quality display. A liquid crystal display apparatus includes, as a crosstalk elimination circuit, an adjacent picture element acquisition circuit (1) that acquires display signals of picture elements adjacent to a self picture element, and two-dimensional LUTs (2) that use the display signals of the adjacent picture elements, acquired by the adjacent picture element acquisition circuit (1), to correct display signals of the self picture element so as to correct RGB display signals. The Picture element display signals as corrected by the correction values output from the LUTs (2) are output to a source driver (4) via a timing controlling unit (TC) (3). In the crosstalk elimination circuit, the display signals of a picture element to be corrected and those of picture elements adjacent tot the picture element that influence the picture element are used to acquire a correction value, thereby correcting the display signals of the correction target picture element.
    • 可以有效地消除显示装置的串扰以实现精确的,高质量的显示。 液晶显示装置包括作为串扰消除电路的相邻像素获取电路(1),其获取与自身图像元素相邻的图像元素的显示信号,以及二维LUT(2),其使用显示信号 由相邻像素获取电路(1)获取的相邻像素,以校正自身像素的显示信号,以校正RGB显示信号。 通过由LUT(2)输出的校正值校正的图像元素显示信号通过定时控制单元(TC)(3)输出到源极驱动器(4)。 在串扰消除电路中,使用要校正的像素的显示信号和与影像相关的图像元素相邻的像素的显示信号来获取校正值,由此校正目标像素的显示信号 。
    • 110. 发明申请
    • Display processing device
    • 显示处理装置
    • US20070143789A1
    • 2007-06-21
    • US10598183
    • 2005-02-09
    • Takakazu ShiomiYasuhiro Yoshida
    • Takakazu ShiomiYasuhiro Yoshida
    • H04N5/445
    • H04N5/44504G06F3/14G09G2340/12H04N7/173H04N21/4438
    • There is provided a display processing device that increases graphics display performance, including: an OSD plane (211) having a first OSD area (671) and a second OSD area (672) for storing graphics images; a Z-order management unit (601) which stores a vertical order assigned to the first OSD area (671) and the second OSD area (672), and which provides a notification regarding that vertical order; a CPU (217) which executes a downloaded application (506), thereby storing the graphics images in the first OSD area (671) and the second OSD area (672) based on the vertical order notified by the Z-order management unit (601); and a display (212) which superimposes the graphics images stored in the first OSD area (671) and the second OSD area (672) in accordance with the abovementioned vertical order, and displays the images.
    • 提供了一种提高图形显示性能的显示处理装置,包括:具有用于存储图形图像的第一OSD区域(671)和第二OSD区域(672)的OSD平面(211) 存储分配给第一OSD区域(671)和第二OSD区域(672)的垂直顺序的Z阶管理单元(601),并提供关于该垂直顺序的通知; 执行下载的应用程序(506)的CPU(217),从而基于由Z级管理单元(601)通知的垂直顺序将图形图像存储在第一OSD区域(671)和第二OSD区域(672) ); 以及根据上述垂直顺序叠加存储在第一OSD区域(671)和第二OSD区域(672)中的图形图像并显示图像的显示器(212)。