CLEANING TOOL AND ADHESIVE BODY
    61.
    发明申请

    公开(公告)号:US20210132299A1

    公开(公告)日:2021-05-06

    申请号:US16492309

    申请日:2018-03-06

    IPC分类号: G02B6/38 B08B7/00

    摘要: A cleaning tool that cleans an optical connector includes an adhesive body that contacts an optical signal region of the optical connector where an optical signal enters and is emitted from the optical connector; and a base that holds the adhesive body. The base includes a first protrusion on a holding surface of a holding part that holds the adhesive body. The first protrusion is disposed at a rear side of a section of the adhesive body and is in contact with the optical signal region.

    Optical connection component manufacturing apparatus and high polymer material coat forming apparatus

    公开(公告)号:US09372303B2

    公开(公告)日:2016-06-21

    申请号:US14220415

    申请日:2014-03-20

    摘要: Disclosed is an optical connection component manufacturing apparatus that manufactures an optical connection component in which a refractive index matching body is attached to a front end face of an optical fiber. The optical connection component manufacturing apparatus includes: a holding unit that includes a holding face holding a refractive index matching liquid including the refractive index matching body; a dispenser that supplies the refractive index matching liquid to the holding face; and a static electricity generating device that charges the optical fiber so that the refractive index matching liquid held on the holding face is adsorbed onto the front end face of the optical fiber, wherein the holding face has an outer peripheral edge connected in a curved line.

    Optical transmission medium bend working device and optical transmission medium bend working method
    65.
    发明授权
    Optical transmission medium bend working device and optical transmission medium bend working method 有权
    光传输介质弯曲加工装置和光传输介质弯曲加工方法

    公开(公告)号:US09256017B2

    公开(公告)日:2016-02-09

    申请号:US13994843

    申请日:2011-12-19

    申请人: Kyoichi Sasaki

    发明人: Kyoichi Sasaki

    IPC分类号: G02B6/00 G02B6/255 G02B6/36

    摘要: An optical transmission medium bend working device that reduces bending loss of an optical transmission medium includes: an arc-discharge electrode that partially and sequentially heats a bend working area of a tape core wire in an up-down direction, the tape core wire extending in the up-down direction with a distal end thereof being located on a lower side, the bend working area being located above the distal end; a core wire holding unit that holds a portion of the tape core wire located above the bend working area; and a bending arm that applies force to the tape core wire in a state where the bend working area is heated to bend the tape core wire at the bend working area.

    摘要翻译: 减少光传输介质的弯曲损耗的光传输介质弯曲加工装置包括:在上下方向上部分地并且依次地加热带芯线的弯曲加工区域的电弧放电电极, 所述上下方向的远端位于下侧,所述弯曲加工区域位于所述远端的上方; 芯线保持单元,其保持位于弯曲加工区域上方的带芯线的一部分; 以及弯曲臂,其在弯曲加工区域被加热以在弯曲加工区域弯曲带芯线的状态下对带芯线施加力。

    Optical layered product
    66.
    发明授权
    Optical layered product 有权
    光学层叠产品

    公开(公告)号:US08778489B2

    公开(公告)日:2014-07-15

    申请号:US12079968

    申请日:2008-03-31

    IPC分类号: B32B5/16

    CPC分类号: G02B5/02

    摘要: An optical layered product has a translucent substrate having at least an optically functional layer, containing translucent microparticles, provided directly or via another layer onto one or both sides of the substrate. The standard deviation of area dispersion variability of the translucent microparticles in the optically functional layer is in the range of 0.04 to 0.20.

    摘要翻译: 光学层叠体具有至少具有光学功能层的半透明基板,该光学功能层包含半透明微粒,直接或经由另一层设置在基板的一面或两面上。 光学功能层中的半透明微粒的面积色散变化性的标准偏差在0.04〜0.20的范围内。

    OPTICAL TRANSMISSION MEDIUM SHAPING METHOD, OPTICAL TRANSMISSION MEDIUM SHAPING APPARATUS, AND OPTICAL TRANSMISSION MEDIUM MANUFACTURING METHOD
    68.
    发明申请
    OPTICAL TRANSMISSION MEDIUM SHAPING METHOD, OPTICAL TRANSMISSION MEDIUM SHAPING APPARATUS, AND OPTICAL TRANSMISSION MEDIUM MANUFACTURING METHOD 审中-公开
    光传输介质成像方法,光传输介质形成装置和光传输介质制造方法

    公开(公告)号:US20110198765A1

    公开(公告)日:2011-08-18

    申请号:US13124630

    申请日:2009-10-16

    申请人: Kyoichi Sasaki

    发明人: Kyoichi Sasaki

    IPC分类号: B29D11/00 G02B6/00

    摘要: An optical transmission medium shaping method and an optical transmission medium shaping apparatus can accurately adjust desire curvature radius without cracking the optical transmission medium. The optical transmission medium shaping method for bending an optical transmission medium using a transferring means and a noncontacting heating means, includes a transferring and heating process for heating part of the optical transmission medium by the noncontacting heating means while transferring the transferring means, and a bending process for bending the optical transmission medium.

    摘要翻译: 光传输介质整形方法和光传输介质成型设备可以在不破坏光传输介质的情况下精确地调节所需的曲率半径。 用于使用转印装置和非接触加热装置弯曲光传输介质的光传输介质整形方法包括:传送和加热过程,用于在传送传送装置的同时通过非接触加热装置加热部分光传输介质,并且弯曲 用于弯曲光传输介质的过程。

    OPTICAL FILM
    70.
    发明申请
    OPTICAL FILM 审中-公开
    光学胶片

    公开(公告)号:US20100246011A1

    公开(公告)日:2010-09-30

    申请号:US12294840

    申请日:2007-03-28

    IPC分类号: G02B1/11

    CPC分类号: C07D281/18

    摘要: In a composition layering one layer on a transparent substrate, the present invention provides an optical film which can balance anti-glare function, high contrast, color reproducibility, and anti-glittering enough. The optical film in the present invention comprises a transparent substrate, and a resin layer layered on the transparent substrate, the resin layer including transparent resin fine particles and a radiation-curable resin composition, and having a fine rugged structure of an average inclination angle in a range of 0.8° to 3.0° on the top surface of the resin layer; a haze value which is in a range of 40% to 60%; and a transmitted image clarity which is measured by using an optical comb having width of 0.5 mm and is in a range of 5% to 35%.

    摘要翻译: 在透明基板上层叠一层的组合物中,本发明提供了能够足够平衡抗眩光功能,高对比度,颜色再现性和防闪光性的光学膜。 本发明的光学膜包括透明基板和层叠在透明基板上的树脂层,树脂层包括透明树脂微粒和可辐射固化树脂组合物,并且具有平均倾斜角度的细小凹凸结构 在树脂层的上表面上为0.8°〜3.0°的范围; 雾度值在40%至60%的范围内; 以及通过使用宽度为0.5mm并在5%至35%的范围内的光梳来测量的透射图像清晰度。