RESIN COMPOSITION
    121.
    发明申请
    RESIN COMPOSITION 审中-公开

    公开(公告)号:US20180273673A1

    公开(公告)日:2018-09-27

    申请号:US15992839

    申请日:2018-05-30

    Abstract: To provide a resin composition having a good slightly bluish color tone, a spectacle lens including a base material made of the resin composition, and a method for producing the resin composition.Provided is a resin composition obtained by polymerizing a polymerizable composition including a polyisocyanate compound and a polythiol compound. The polymerizable composition includes a dye L having an absorption maximum wavelength of 550 nm or more and 600 nm or less in a toluene solution of 20 ppm by mass, and a dye S having an absorption maximum wavelength of 500 nm or more and less than 550 nm in a toluene solution of 20 ppm by mass. A mass ratio [(mass of dye L)/(mass of dye S)] of the dye L to the dye S is 5 or more and 500 or less.

    BLOCK DEVICE, SPECTACLE LENS MANUFACTURING METHOD, AND PROGRAM
    128.
    发明申请
    BLOCK DEVICE, SPECTACLE LENS MANUFACTURING METHOD, AND PROGRAM 审中-公开
    块装置,透镜镜片制造方法和程序

    公开(公告)号:US20160325393A1

    公开(公告)日:2016-11-10

    申请号:US15108520

    申请日:2014-12-25

    Abstract: Provided is a block device that mounts a lens shape processing lens holder to a convex surface of a spectacle lens with two alignment reference marks for identifying a distance portion design reference point on a concave surface. The block device includes an imaging unit that images the alignment reference marks of the spectacle lens supported by a support unit from a convex surface side of the spectacle lens, an information processing unit that obtains expected imaged positions of the alignment reference marks imaged by the imaging unit, using information regarding the spectacle lens, when a posture of the spectacle lens supported by the support unit becomes a reference posture suitable for mounting the lens holder, and a display control unit that displays images of index marks indicating the expected imaged positions obtained in the information processing unit and images of the alignment reference marks.

    Abstract translation: 提供一种块装置,其将透镜形状处理透镜保持器安装到具有用于识别凹面上的距离部分设计基准点的两个对准基准标记的眼镜镜片的凸面。 块装置包括成像单元,其从眼镜镜片的凸表面侧对由支撑单元支撑的眼镜镜片的对准基准标记进行成像;信息处理单元,其获得通过成像成像的对准参考标记的预期成像位置 单元,使用关于眼镜镜片的信息,当由支撑单元支撑的眼镜镜片的姿势成为适合于安装透镜保持器的基准姿势时,以及显示控制单元,其显示指示所获得的预期成像位置的索引标记的图像 信息处理单元和对准参考标记的图像。

    Refraction measuring apparatus
    129.
    发明授权

    公开(公告)号:US12245814B2

    公开(公告)日:2025-03-11

    申请号:US17485873

    申请日:2021-09-27

    Inventor: Takashi Iizuka

    Abstract: A refraction measuring apparatus measures refractive properties of an eye by two light bundles respectively passing through two apertures, the apparatus including: a first rotational member, rotatably supported about a first rotational center, provided with the two apertures on either side of the first rotational center; a second rotational member, rotatably supported about a second rotational center, provided with a light-transmission portion(s) and a light-shielding portion at different rotational-direction positions. When the first rotational member is rotated, the second rotational member rotates, and while an aperture arrangement direction of the two apertures changes in accordance with the rotation of the second rotational member, a light-transmission state is entered, in which the light-transmission portion coincides with the two apertures to allow the two light bundles to pass through, or a light-shielding state is entered, in which the light-shielding portion coincides with the two apertures to shield the two light bundles.

    METHOD FOR MANUFACTURING SPECTACLE LENS, SPECTACLE LENS AND SPECTACLES

    公开(公告)号:US20250060616A1

    公开(公告)日:2025-02-20

    申请号:US18715285

    申请日:2022-12-02

    Inventor: Shigeki OOKUBO

    Abstract: A method for manufacturing a spectacle lens and a related technique thereof, includes: performing desired marking processing by irradiating one surface of a spectacle lens with laser, the spectacle lens having an object-side surface and an eyeball-side surface each having a different anti-reflection film, the marking processing including: determining an applicable wavelength of the laser to be used; selecting a surface with an anti-reflection film having a relatively low reflectance to the applied wavelength, out of the object-side surface and the eyeball-side surface; and performing laser irradiation to the selected surface using the applied wavelength.

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