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    • 21. 发明授权
    • Signal processing device and projection-type image display device
    • 信号处理装置和投影型图像显示装置
    • US08421818B2
    • 2013-04-16
    • US12847726
    • 2010-07-30
    • Takaaki AbeMasutaka Inoue
    • Takaaki AbeMasutaka Inoue
    • G09G5/00G09G5/02H04N5/57H04N9/68H04N1/40G03F3/08G06K9/00G06K9/40G06K9/54
    • G09G3/002G06T5/009G06T5/40G06T2207/10024G09G3/3611G09G5/02G09G5/026G09G5/10G09G2320/0666G09G2340/06G09G2360/16H04N9/3105H04N9/3182
    • A signal processing device (200) included in a display which has a color reproduction range larger than that of the input device. The signal processing device (200) comprises color coordinate adjusting unit (210) for performing a color coordinate adjustment for reducing the color coordinates of a video input signal inputted from the input device so as to reduce the variation of the color coordinates caused by the difference between the color reproduction ranges, a luminance adjusting unit (220) for performing a luminance adjustment for reducing the luminance component of the video input signal, a display element control unit (240) for generating a video output signal according to the output of the color coordinate adjusting unit (210) and the output of the luminance adjusting unit (220), and a rate control unit (230) for increasing the color coordinate adjustment contribution rate (β) given to the video output signal by the color coordinate adjustment and decreasing the luminance component contribution rate (α) given to the video output signal by the luminance adjustment if the color saturation of the video input signal with a specific hue is higher than a predetermined threshold.
    • 一种显示器中包括的颜色再现范围大于输入设备的颜色再现范围的信号处理设备(200)。 信号处理装置(200)包括颜色坐标调整单元(210),用于执行用于减少从输入装置输入的视频输入信号的色坐标的色坐标调整,以便减少由差异引起的色坐标的变化 在颜色再现范围之间,用于执行用于降低视频输入信号的亮度分量的亮度调整的亮度调节单元(220),用于根据颜色的输出生成视频输出信号的显示元件控制单元(240) 坐标调整单元(210)和亮度调节单元(220)的输出;以及速率控制单元(230),用于通过颜色坐标调整增加给予视频输出信号的色坐标调整贡献率(&bgr) 如果视频的色彩饱和度,则通过亮度调整降低给予视频输出信号的亮度分量贡献率(α) 具有特定色调的输入信号高于预定阈值。
    • 22. 发明申请
    • BATTERY
    • 电池
    • US20120156552A1
    • 2012-06-21
    • US13392949
    • 2010-07-23
    • Yasuhito MiyazakiTakuya KinoshitaTakaaki AbeYoshio Shimoida
    • Yasuhito MiyazakiTakuya KinoshitaTakaaki AbeYoshio Shimoida
    • H01M2/02H01M2/30
    • H01M2/26H01M2/22H01M2/30H01M10/0413H01M10/0525H01M10/0585
    • Disclosed is a battery having an improved life. Specifically disclosed is a battery which comprises an electric power generating element in which one or more unit cell layers are stacked, each being constituted by sequentially laminating or stacking a positive electrode, an electrolyte and a negative electrode; a first collector plate which is provided on the outermost positive electrode surface of the electric power generating element; a second collector plate which is provided on the outermost negative electrode surface of the electric power generating element; a convex or protruding portion provided on the first collector plate and/or the second collector plate with a width that is not less than a half of the width of the end edge of the collector plate; and a terminal which is attached to the convex portion for retrieving electric current from the convex portion.
    • 公开了具有改善寿命的电池。 具体公开了一种电池,其包括其中堆叠一个或多个单元电池层的发电元件,其分别通过顺序层叠或堆叠正电极,电解质和负电极而构成; 设置在所述发电元件的最外侧正极面上的第一集电板; 设置在所述发电元件的最外侧负极面上的第二集电板; 设置在所述第一集电板和/或所述第二集电板上的凸部或突出部的宽度不小于所述集电板的端缘宽度的一半的宽度; 以及附接到凸部以从凸部取回电流的端子。
    • 26. 发明授权
    • Battery formed of a stack of substantially rectangular electrodes
    • 由一堆基本上矩形的电极形成的电池
    • US07501203B2
    • 2009-03-10
    • US10316084
    • 2002-12-11
    • Osamu ShimamuraKyoichi WatanabeHideaki HorieYuuji TanjouTakaaki Abe
    • Osamu ShimamuraKyoichi WatanabeHideaki HorieYuuji TanjouTakaaki Abe
    • H01M2/02H01M2/30
    • H01M10/0413H01M2/0212H01M2/0287H01M2/202H01M2/30H01M4/70H01M6/42H01M10/613H01M10/625H01M10/647H01M10/651H01M10/6551H01M10/6553H01M10/6563H01M10/6566
    • A battery includes a battery enclosure (3), a power-generating unit (50) accommodated in the battery enclosure (3), positive and negative terminal electrodes (1, 2). The battery enclosure (3) is composed of a laminate film compounded of metal and a polymer material, and has a rectangular shape. The power-generating unit (50) includes positive electrode collectors (5), negative electrode collectors (7) and separators (8). The positive and negative terminal electrodes (1, 2) have dimensions substantially equal to those of the positive and negative electrode collectors (5, 7), respectively. Further, the positive and negative terminal electrodes (1, 2) protrude from mutually different sides of the battery enclosure (3). The positive terminal electrode (1) is formed by protruding the positive electrode collectors (5) from the battery enclosure (3) in a state where end portions of the positive electrode collectors (5) are mutually stacked. The negative terminal electrode (2) is formed by protruding the negative electrode collectors (7) from the battery enclosure (3) in a state where end portions of the negative electrode collectors (7) are mutually stacked.
    • 电池包括电池外壳(3),容纳在电池外壳(3)中的发电单元(50),正极和负极端子(1,2)。 电池外壳(3)由金属和聚合物材料复合的叠层膜组成,并且具有矩形形状。 发电单元(50)包括正极集电体(5),负极集电体(7)和隔板(8)。 正极和负极端子电极(1,2)分别具有与正极集电体(5)和负极集电体(5)的尺寸基本相等的尺寸。 此外,正极和负极端子电极(1,2)从电池壳体(3)的相互不同的侧面突出。 正极端子电极(1)通过在正极集电体(5)的端部相互堆叠的状态下从正极集电体(5)突出而形成在电池壳体(3)上。 负极端子电极(2)通过在负极集电体(7)的端部相互堆叠的状态下从负极集电体(7)突出而形成。
    • 29. 发明申请
    • Image processing apparatus and an image processing program
    • 图像处理装置和图像处理程序
    • US20070076127A1
    • 2007-04-05
    • US11528585
    • 2006-09-28
    • Takaaki AbeAkihiro MaenakaNorikazu Tsunekawa
    • Takaaki AbeAkihiro MaenakaNorikazu Tsunekawa
    • H04N9/68
    • H04N9/68
    • The objective of the present invention is to offer an image processing apparatus, or an image processing program which can generate natural images. In the invention, a chroma saturation correction coefficient is determined according to the chroma saturation distribution properties of an input image, and the chroma saturation correction is executed based on the determined coefficient. Therefore, a suitable chroma saturation correction can be performed to various input images. To achieve above objective, in the image processor 100, the chroma saturation distribution properties calculator 101 calculates chroma saturation distribution properties from an input image signal. The chroma saturation correcting gain calculator 102 calculates the standard chroma saturation correcting gain, which is a coefficient used as a standard for calculating the chroma saturation correction quantity based on the properties of the input image signal. The chroma saturation correction executor 103 corrects the chroma saturation based on the calculated correcting gain.
    • 本发明的目的是提供一种可以产生自然图像的图像处理装置或图像处理程序。 在本发明中,根据输入图像的色度饱和度分布特性来确定色度饱和度校正系数,并且基于所确定的系数来执行色度饱和度校正。 因此,可以对各种输入图像执行适当的色度饱和度校正。 为了实现上述目的,在图像处理器100中,色度饱和度分布特性计算器101根据输入图像信号计算色度饱和度分布特性。 色度饱和度校正增益计算器102基于输入图像信号的特性,计算作为用于计算色度饱和度校正量的标准的系数的标准色度饱和度校正增益。 色度饱和度校正执行器103基于所计算的校正增益校正色饱和度。
    • 30. 发明申请
    • Battery cooling system
    • 电池冷却系统
    • US20060060402A1
    • 2006-03-23
    • US11216069
    • 2005-09-01
    • Takaaki AbeMasaaki SuzukiHideaki Horie
    • Takaaki AbeMasaaki SuzukiHideaki Horie
    • B60R16/04
    • B60R16/04B60L3/0046B60L11/1874B60L11/1877B60L11/1879Y02T10/7005Y02T10/705
    • A battery cooling system includes a depression-shaped battery accommodating section formed at a bottom surface of a floor panel of a vehicle and dented to side of a passenger compartment so as to accommodate therein a battery. An introduction device is disposed in front of the battery in a vehicle traveling direction, to introduce travel air flow into the battery accommodating section. Here, the battery is accommodated within the battery accommodating section in a condition where a bottom surface of the battery is located at a level above or at a substantially same level as a level of a bottom surface of the vehicle which bottom surface is around the accommodating section. Additionally, the battery includes a plurality of thin cells which are electrically connected with each other, and disposed in a posture that a major surface of each thin cell extends substantially parallelly with the vehicle traveling direction.
    • 电池冷却系统包括凹陷形电池容纳部分,其形成在车辆的底板的底表面处并且凹陷到乘客室的侧面以便容纳电池。 引导装置沿车辆行进方向设置在电池前方,以将行驶空气流引入电池容纳部。 这里,电池容纳在电池容纳部内的状态下,其中电池的底面位于与底部表面围绕容纳件的车辆底面的高度或大致相同的水平上 部分。 此外,电池包括彼此电连接的多个细胞,并且以每个细胞的主表面大致平行于车辆行进方向延伸的姿态设置。