IMAGE PROCESSING DEVICE, IMAGE PROCESSING METHOD, IMAGE PROCESSING PROGRAM, AND IMAGING DEVICE
    21.
    发明申请
    IMAGE PROCESSING DEVICE, IMAGE PROCESSING METHOD, IMAGE PROCESSING PROGRAM, AND IMAGING DEVICE 有权
    图像处理装置,图像处理方法,图像处理程序和成像装置

    公开(公告)号:US20110199458A1

    公开(公告)日:2011-08-18

    申请号:US13024054

    申请日:2011-02-09

    IPC分类号: G06K9/00 H04N13/00

    摘要: An image processing device includes a phase difference detection portion configured to detect phase difference between parallax images by performing correlation value calculation with a plurality of parallax images, and generate phase difference distribution in an image. The phase difference detection portion performs the phase difference detection individually along two or more directions different from each other, and generates the phase difference distribution by utilizing results of the phase difference detection regarding the two or more directions.

    摘要翻译: 图像处理装置包括:相位差检测部,被配置为通过利用多个视差图像执行相关值计算来检测视差图像之间的相位差,并且生成图像中的相位差分布。 相位差检测部分沿着彼此不同的两个或更多个方向分别执行相位差检测,并通过利用关于两个或更多个方向的相位差检测的结果来产生相位差分布。

    Image pickup apparatus
    22.
    发明授权
    Image pickup apparatus 有权
    摄像设备

    公开(公告)号:US07932941B2

    公开(公告)日:2011-04-26

    申请号:US12289641

    申请日:2008-10-31

    CPC分类号: H04N5/225

    摘要: An image pickup apparatus includes an image-pickup lens having an aperture diaphragm, an image-pickup element that has a color filter which is periodically allocated colors in units of a predetermined unit array and that generates picked-up image data including pixel data of colors using received light, the color filter being adjacent to a light receiving surface, a microlens array unit that is arranged on an image forming surface of the image-pickup lens and whose microlenses are each allocated a plurality of pixels of the image-pickup element, and an image processing unit that performs image processing on the picked-up image data generated by the image-pickup element. The image processing unit includes a parallax component image generation unit that generates a plurality of parallax component images and an interpolation processing unit that performs color interpolation processing for each of the parallax component images.

    摘要翻译: 图像拾取装置包括具有孔径光阑的图像拾取透镜,具有以预定单位阵列为单位周期性地分配颜色的滤色器并且生成包括颜色的像素数据的拾取图像数据的图像拾取元件 使用接收的光,所述滤色器与光接收表面相邻;微透镜阵列单元,布置在所述图像拾取透镜的图像形成表面上,并且其微透镜各自被分配有所述图像拾取元件的多个像素; 以及图像处理单元,对由图像拾取元件生成的拾取图像数据进行图像处理。 图像处理单元包括产生多个视差分量图像的视差分量图像生成单元和对每个视差分量图像进行颜色插值处理的内插处理单元。

    Image pickup apparatus
    23.
    发明申请
    Image pickup apparatus 有权
    摄像设备

    公开(公告)号:US20090190024A1

    公开(公告)日:2009-07-30

    申请号:US12318639

    申请日:2009-01-05

    IPC分类号: H04N5/225

    摘要: An image pickup apparatus includes: an image pickup lens section having an aperture stop; an image pickup device obtaining image pickup data on the basis of light detected; and a microlens array section arranged on a focal plane of the image pickup lens section, and including a plurality of microlenses, each of the microlenses being provided corresponding to a plurality of image pickup pixels of the image pickup device, wherein the following formula (1) is satisfied: p=(m×s)×{L/(L+f)}  (1) where p is a pitch between the microlenses, s is a pixel size in a predetermined direction, m is the number (an integer) of the image pickup pixels allocated to each of the microlenses in the predetermined direction, L is a distance between the aperture stop and the microlens array section, and f is a focal length of each of the microlenses.

    摘要翻译: 一种图像拾取装置包括:具有孔径光阑的图像拾取透镜部分; 基于检测到的光获取图像拾取数据的图像拾取装置; 以及布置在图像拾取透镜部分的焦平面上并且包括多个微透镜的微透镜阵列部分,每个微透镜对应于图像拾取器件的多个图像拾取像素设置,其中以下公式(1 )满足:<?in-line-formula description =“In-line formula”end =“lead”?> p =(mxs)x {L /(L + f)}(1) 公式描述=“内联公式”end =“tail”?>其中p是微透镜之间的间距,s是预定方向上的像素大小,m是分配给图像拾取像素的数量(整数) 每个微透镜在预定方向上,L是孔径光阑和微透镜阵列部分之间的距离,f是每个微透镜的焦距。

    Electrocatalyst
    24.
    发明授权

    公开(公告)号:US11901568B2

    公开(公告)日:2024-02-13

    申请号:US17653400

    申请日:2022-03-03

    CPC分类号: H01M4/926 H01M4/8842 C22C5/04

    摘要: To provide an electrocatalyst for fuel cells, which is configured to ensure both the initial performance and durability of fuel cells. An electrocatalyst for fuel cells, wherein the electrocatalyst comprises a carbon support including a mesopore and a catalyst alloy supported on the carbon support, and the catalyst alloy is a catalyst alloy of platinum and a transition metal; wherein the mesopore includes at least one throat; wherein an average effective diameter of the at least one throat is 1.8 nm or more and less than 3.2 nm; and wherein a transition metal ratio of the catalyst alloy supported on a deeper-side region than the at least one throat, is lower than the transition metal ratio of the catalyst alloy supported on a nearer-side region than the at least one throat.

    Gear spindle and oil seal used therein

    公开(公告)号:US10016798B2

    公开(公告)日:2018-07-10

    申请号:US14424582

    申请日:2012-08-31

    申请人: Kenji Yamamoto

    发明人: Kenji Yamamoto

    摘要: In a gear spindle, outer cylinder gear sections (11) are each integrally formed on an inner peripheral surface of a spindle outer cylinder and inner cylinder gear sections (14) are each integrally formed on an outer peripheral surface of a spindle inner cylinder (13). An oil seal (27) that seals in the lubricating oil (20) for each of the aforementioned gear sections includes, a seal body (29) having a channel-shaped cross section and interposed in the peripheral gap between the inner peripheral surface of the spindle outer cylinder and the outer peripheral surface of the spindle inner cylinder (13), and a seal mounting member (30) that includes a band, a spring, or the like that tightens and fixes the seal body to the outer peripheral surface of the spindle inner cylinder (13) to allow expansion of the seal body in the axial direction in the aforementioned peripheral gap.

    Press-forming mold and method for manufacturing protective film for press-forming mold

    公开(公告)号:US09902093B2

    公开(公告)日:2018-02-27

    申请号:US14009522

    申请日:2012-04-03

    摘要: A press-forming mold has a protective film for preventing seizing during press-forming formed on at least a forming surface that comes into contact with a formed body. The protective film is formed by PVD. An arbitrary selection section extracted from the surface of the protective film is divided into a plurality of individual sections; and, when the gradient of the surface at the nth division point is represented by (dZn/dXn), taking N to represent the number of divisions, the root-mean-square RΔq calculated by the following numerical expression is no greater than 0.032. R ⁢ ⁢ Δ ⁢ ⁢ q = 1 N ⁢ ∑ n = 1 N ⁢ ⁢ ( d ⁢ ⁢ Z n d ⁢ ⁢ X n ) 2 It is thereby possible to improve the seizing resistance of a press-forming mold having a protective film formed by PVD.

    Transparent electroconductive film and process for producing the same
    29.
    发明授权
    Transparent electroconductive film and process for producing the same 有权
    透明导电膜及其制造方法

    公开(公告)号:US09297061B2

    公开(公告)日:2016-03-29

    申请号:US12449303

    申请日:2008-02-15

    IPC分类号: B32B9/00 C23C14/08 C03C17/34

    摘要: In a transparent electroconductive film including a transparent substrate and a transparent electroconductive oxide layer disposed on the transparent substrate, when the transparent electroconductive oxide layer is composed of zinc oxide, the surface resistivity of the transparent electroconductive oxide layer increases with time and thus it has been difficult to obtain a transparent electroconductive film stable against an environmental variation. Consequently, hard carbon films are provided on the surfaces of a transparent electroconductive oxide layer including at least one layer and containing zinc oxide as a main component in “the order of transparent substrate-hard carbon film-transparent electroconductive oxide layer-hard carbon film” or “the order of hard carbon film-transparent substrate-transparent electroconductive oxide layer-hard carbon film”. Alternatively, an organosilicon compound covering layer is provided on a surface of the transparent electroconductive oxide layer. Thereby, the water contact angle can be 75 degrees or more, and an increase in the resistivity of the transparent electroconductive oxide layer can be suppressed.

    摘要翻译: 在透明导电膜包括透明基板和透明导电氧化物层的透明导电膜上,当透明导电氧化物层由氧化锌组成时,透明导电氧化物层的表面电阻率随着时间的推移而增加, 难以获得对环境变化稳定的透明导电膜。 因此,在“透明基板 - 硬质碳膜透明导电氧化物层 - 硬质碳膜”的顺序,在包含至少一层并含有氧化锌作为主要成分的透明导电氧化物层的表面上设置硬质碳膜, 或“硬碳膜透明基板透明导电氧化物层 - 硬质碳膜的顺序”。 或者,在透明导电氧化物层的表面上设置有机硅化合物覆盖层。 因此,水接触角可以为75度以上,并且可以抑制透明导电氧化物层的电阻率的增加。

    Arc evaporation source having fast film-forming speed, coating film manufacturing method and film formation apparatus using the arc evaporation source
    30.
    发明授权
    Arc evaporation source having fast film-forming speed, coating film manufacturing method and film formation apparatus using the arc evaporation source 有权
    电弧蒸发源具有快速的成膜速度,涂膜制造方法和使用电弧蒸发源的成膜装置

    公开(公告)号:US09266180B2

    公开(公告)日:2016-02-23

    申请号:US13805259

    申请日:2011-06-15

    摘要: An arc evaporation source having fast film-forming speed includes: at least one circumference magnet surrounding the circumference of a target, wherein the magnetization direction of the magnet runs orthogonal to the target surface; a non-ring shaped first permanent magnet on the target's rear surface side has a polarity in the same direction as the circumference magnet, and is arranged so that its magnetization direction runs orthogonal to the target's surface; a non-ring shaped second permanent magnet arranged either on the rear surface side of the first permanent magnet or between the first permanent magnet and the target, so as to leave a gap from the first permanent magnet, has a polarity in the same direction as the circumference magnet, and is arranged so that its magnetization direction runs orthogonal to the surface of the target; and a magnetic body between the first permanent magnet and the second permanent magnet.

    摘要翻译: 具有快速成膜速度的电弧蒸发源包括:围绕靶周围的至少一个圆周磁体,其中磁体的磁化方向正交于目标表面; 目标的背面侧的非环状的第一永久磁铁具有与周边磁体相同方向的极性,并且被配置为使其磁化方向与目标表面正交; 布置在第一永磁体的后表面侧或第一永磁体与靶之间以便与第一永久磁铁隔开间隙的非环形的第二永久磁铁的极性与 圆周磁体,并且被布置成使得其磁化方向垂直于靶的表面; 以及在第一永磁体和第二永磁体之间的磁体。