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    • 51. 发明授权
    • Wiring board
    • 接线板
    • US07067918B2
    • 2006-06-27
    • US10802885
    • 2004-03-18
    • Haruhiko MurataKazuhisa SatoTomonori Matsuura
    • Haruhiko MurataKazuhisa SatoTomonori Matsuura
    • H01L23/48
    • H05K3/244H01L23/498H01L2924/0002H01L2924/00
    • A wiring board comprising: a wiring laminate portion including dielectric layers containing polymeric material and conductor layers laminated alternately so as to form a first main surface out of one of said dielectric layers; and a plurality of metal terminal pads disposed on said first main surface; wherein: each of said metal terminal pads has a structure in which a Cu-plated layer is disposed on a side of said first main surface and an Au-plated layer is disposed in an outermost surface layer portion of said metal terminal pad, while an electroless Ni-plated layer having a P content not higher than 3% by weight is disposed as a barrier metal layer between said Cu-plated layer and said Au-plated layer.
    • 一种布线板,包括:布线层叠部,其包括含有聚合材料的电介质层和交替层叠的导体层,以形成所述电介质层之一中的第一主表面; 以及设置在所述第一主表面上的多个金属端子垫; 其中:每个所述金属端子焊盘具有其中在所述第一主表面的侧面上设置有镀Cu层的结构,并且在所述金属端子焊盘的最外表面层部分设置镀金层,而 在所述Cu镀层和所述镀Au层之间设置P含量不高于3重量%的无电镀Ni层作为阻挡金属层。
    • 52. 发明授权
    • Contour correcting circuit and contour correcting method
    • 轮廓校正电路和轮廓校正方法
    • US06909813B2
    • 2005-06-21
    • US10150976
    • 2002-05-21
    • Ryuhei AmanoAkihiro MaenakaTakeshi HachiyaHaruhiko Murata
    • Ryuhei AmanoAkihiro MaenakaTakeshi HachiyaHaruhiko Murata
    • G06F17/17G06T5/00G06T5/20H04N1/409H04N5/208G06K9/40
    • G06T7/12G06T2207/10016G06T2207/20192
    • In a contour correcting circuit that generates, on the basis of respective signals for a plurality of pixels including the pixel to be corrected at the center and arranged in a particular direction, a contour correction signal for the pixel to be corrected, there are provided contour component production means for producing a contour component for the pixel to be corrected depending on the gradient of the change among the respective signals for the plurality of pixels arranged in the particular direction; gain calculation means for calculating, on the basis of the level difference between the signal for the pixel to be corrected and the signal for the pixel adjacent in the particular direction to the pixel to be corrected, such a gain for correction that the larger the level difference is, the smaller the gain becomes; multiplication means for multiplying the contour component produced by the contour component production means by the gain for correction calculated by the gain calculation means; and addition means for adding the results of the multiplication by the multiplication means to the signal for the pixel to be corrected, to generate the contour correction signal for the pixel to be corrected.
    • 在轮廓校正电路中,基于包括要在中心被校正的像素并且沿特定方向布置的多个像素的各个信号,生成要校正像素的轮廓校正信号, 分量生成装置,用于根据排列在特定方向上的多个像素的各个信号之间的变化的梯度来产生要校正的像素的轮廓分量; 增益计算装置,用于根据要校正的像素的信号与在要被校正的像素的特定方向相邻的像素的信号之间的电平差来计算这样的校正增益, 差异在于,增益越小; 乘法装置,用于将由轮廓分量产生装置产生的轮廓分量乘以由增益计算装置计算的校正增益; 以及加法装置,用于将乘法装置的乘法结果与要校正的像素的信号相加,以产生要校正的像素的轮廓校正信号。
    • 56. 发明授权
    • Apparatus for automatically focusing a camera lens
    • 用于自动对焦相机镜头的装置
    • US5249058A
    • 1993-09-28
    • US4639
    • 1993-01-12
    • Haruhiko MurataHirotsugu Murashima
    • Haruhiko MurataHirotsugu Murashima
    • H04N5/232
    • H04N5/23212
    • The present invention relates to an automatic focusing camera in which an automatic focusing operation is performed by detecting a high frequency component of a video signal obtained from an image sensor device at every predetermined period, and has a theme that the automatic focusing operation can be performed within an extremely short time. To this end, by a search means, a focus lens is moved from a first position to a second position with relatively coarse steps to obtain a focus evaluating value for each step. In a first method, after the focus lens is moved to the vicinity of a lens position corresponding to a maximum focus evaluating value obtained by the search means, the focus lens is moved with small incremental steps to find a true maximum focus evaluating value. In a second method, a true maximum focus evaluating value is found from interpolated focus evaluating values obtained by interpolation of focus evaluating values exist in the vicinity of the maximum focus evaluating value obtained by the search means and adjacent to each other.
    • 本发明涉及一种自动聚焦照相机,其中通过在每个预定周期检测从图像传感器装置获得的视频信号的高频分量来执行自动聚焦操作,并且具有可以执行自动聚焦操作的主题 在极短的时间内。 为此,通过搜索装置,以较粗略的步骤将聚焦透镜从第一位置移动到第二位置,以获得每个步骤的焦点评估值。 在第一种方法中,在将聚焦透镜移动到与由搜索装置获得的最大对焦评估值相对应的透镜位置附近之后,以小的增量步长移动聚焦透镜,以找到真正的最大焦点评估值。 在第二种方法中,从由搜索装置获得的最大焦点评估值附近存在并且彼此相邻的焦点评估值的内插存在的内插聚焦评估值,找到真正的最大焦点评估值。
    • 59. 发明授权
    • Display
    • 显示
    • US07436377B2
    • 2008-10-14
    • US10947666
    • 2004-09-23
    • Ryuhei AmanoHaruhiko Murata
    • Ryuhei AmanoHaruhiko Murata
    • G09G3/30
    • G09G3/30G09G3/2018G09G2310/0213G09G2320/066G09G2360/16
    • A display is provided with a self-light emitting display unit and includes: first means detecting the maximum value of input signals on each line; second means not only determining which of predetermined plural classes each line belongs to using the maximum value of the line and predetermined threshold values, but also calculating a total number of lines belonging to each class; and third means determining the number of lighting-up times in each class in one field period based on the total number of lines belonging to the class obtained by the second means and a predetermined reference total number of lighting-up times and furthermore, determining the number of lighting-up times on each line in one field period based on a result of classification on the line obtained by the second means and the number-of lighting-up times on each class in one field period.
    • 显示器设置有自发光显示单元,并且包括:第一装置,用于检测每行上的输入信号的最大值; 第二个装置不仅使用线的最大值和预定阈值来确定每行所属的预定多个等级中的哪一个,而且还计算属于每个类的总线数; 并且第三装置基于属于由第二装置获得的类别的总线数和预定的参考总数量的点亮时间确定一个场周期中的每个类别中的点亮次数,并且还确定 基于由第二装置获得的线上的分类结果和一个场周期中的每个类的点亮次数,在一个场周期中的每一行上的点亮次数。