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    • 31. 发明申请
    • EARTH CABLE CONNECTING STRUCTURE OF SHIELDED ELECTRIC WIRE
    • 屏蔽电线的接地电缆连接结构
    • US20130098680A1
    • 2013-04-25
    • US13808115
    • 2011-07-14
    • Yasunori NabetaNaoki Ito
    • Yasunori NabetaNaoki Ito
    • H01R4/18
    • H01R4/184H01R4/185H01R9/034H02G15/02
    • There is provided an earth cable connecting structure of a shielded electric wire for connecting a shield layer of the shielded electric wire to an earth cable. The shielded electric wire includes an inner insulating layer covering a core wire, the shield layer provided in an outer periphery of the inner insulating layer and an outer insulating layer covering the shield layer. A first crimping part is crimped to the shield layer of a part from which the outer insulating layer is removed. A second crimping part is crimped to a core wire of the earth cable in an outer surface side opposite to an inner surface of the first crimping part which faces the shield layer. The first crimping part and the second crimping part are formed integrally.
    • 提供了用于将屏蔽电线的屏蔽层与地线连接的屏蔽电线的接地电缆连接结构。 屏蔽电线包括覆盖芯线的内绝缘层,设置在内绝缘层的外周的屏蔽层和覆盖屏蔽层的外绝缘层。 将第一压接部卷曲到除去外绝缘层的部分的屏蔽层。 第二压接部在与第一压接部的面向屏蔽层的内表面相对的外表面侧中压接到接地电缆的芯线。 第一压接部和第二压接部一体形成。
    • 33. 发明授权
    • Image processing apparatus, image processing method, and computer program
    • 图像处理装置,图像处理方法和计算机程序
    • US08300946B2
    • 2012-10-30
    • US11748357
    • 2007-05-14
    • Naoki Ito
    • Naoki Ito
    • G06K9/00
    • G06T11/203G06K9/34G06K2209/01
    • An input image is divided into a plurality of regions, and it is determined whether each of the divided regions is suitable for thinning processing. In accordance with a result of the determination, an outlining processing is selected to generate outline data (vector data) for each of the regions. The generated outline data is output. For example, a character region and a drawing region are discriminated from each other and outline data having a format suitable for a discriminated type of region is generated. In addition, generation of outline data (vector data) which pass through a center line of the line drawing or generation of outline data (vector data) indicating a contour of a drawing is automatically selected. Furthermore, in accordance with the size of a character, function-approximation processing may be selected.
    • 输入图像被分成多个区域,并且确定每个分割区域是否适合于间隔处理。 根据确定的结果,选择轮廓处理以生成每个区域的轮廓数据(矢量数据)。 生成的轮廓数据被输出。 例如,字符区域和绘制区域彼此区分,并且生成具有适合于区分类型的区域的格式的轮廓数据。 此外,自动选择通过行绘图的中心线的轮廓数据(矢量数据)的生成或生成指示图形的轮廓的轮廓数据(矢量数据)的生成。 此外,根据字符的大小,可以选择功能近似处理。
    • 36. 发明授权
    • Crimp terminal and method of producing crimp terminal
    • 压接端子及压接端子的制造方法
    • US08187043B2
    • 2012-05-29
    • US12560819
    • 2009-09-16
    • Hideto KumakuraNaoki Ito
    • Hideto KumakuraNaoki Ito
    • H01R4/10
    • H01R43/048H01R4/185H01R4/188Y10T29/49181Y10T29/49204
    • A crimp terminal includes a bottom plate portion for mounting a wire conductor of a wire thereon, a pair of press-fastening portions extended respectively from opposite side edges of the bottom plate portion to press-fasten the wire conductor, a raised portion provided on the bottom plate portion, and that has slanting surfaces slanting along an axis of the wire conductor mounted on the bottom plate portion to form a curved shape projecting toward the wire conductor, and an auxiliary contact portion protrudingly formed on at least one of the slanting surfaces. The auxiliary contact portion is moved in a direction along the axis of the wire conductor by a pressing load applied for crimping the wire conductor so that the wire conductor is elongated.
    • 压接端子包括用于安装导线的线导体的底板部分,分别从底板部分的相对侧边缘延伸的一对压紧部分,以将线导体压紧, 底板部分,并且具有沿着安装在底板部分上的导线导体的轴线倾斜的倾斜表面,以形成向导线导体突出的弯曲形状,以及突出地形成在至少一个倾斜表面上的辅助接触部分。 辅助接触部分通过施加用于卷绕导线导体的压力负载沿导线导体的轴线方向移动,使得导线导体伸长。
    • 40. 发明申请
    • IMAGE ENCODING APPARATUS AND METHOD OF CONTROLLING THE SAME
    • 图像编码装置及其控制方法
    • US20100142840A1
    • 2010-06-10
    • US12620241
    • 2009-11-17
    • Hiroshi KajiwaraYuki ShiraishiNaoki ItoHirokazu Tamura
    • Hiroshi KajiwaraYuki ShiraishiNaoki ItoHirokazu Tamura
    • G06K9/36
    • H04N19/59H04N19/12H04N19/14H04N19/17H04N19/176H04N19/46H04N19/587H04N19/60H04N19/70
    • Resolution interpolation data is generated by relatively simple processing. This enables image encoding by simple and quick processing to attain high image quality and high compression performance. To do this, a tile divider extracts tile data of 32×32 pixels from encoding target original image data. A resolution converter samples one pixel of a block of 2×2 pixels in the tile data, thereby generating reduced tile data of a reduced image. An interpolation data generator generates interpolation data to be used to generate tile data having the original resolution from the reduced tile data. Based on the interpolation data of a tile of interest, an encoding method selector outputs a control signal indicating which one of lossless encoding and lossy encoding should be executed for the reduced tile data. A code stream generator outputs the generated encoded data and interpolation data as encoded image data.
    • 通过相对简单的处理生成分辨率插值数据。 这使得能够通过简单快速的处理实现图像编码,从而获得高图像质量和高压缩性能。 为此,瓦片分割器从编码目标原始图像数据中提取32×32像素的图块数据。 分辨率转换器对瓦片数据中的2×2像素的块的一个像素进行采样,从而生成缩小图像的减少的瓦片数据。 内插数据生成器生成用于从缩小的瓦片数据生成具有原始分辨率的瓦片数据的内插数据。 基于感兴趣的图块的内插数据,编码方法选择器输出指示对于缩小的瓦片数据应当执行哪一个无损编码和有损编码的控制信号。 代码流生成器将生成的编码数据和内插数据输出为编码图像数据。