PROGRESSIVE OPHTHALMIC LENS
    1.
    发明申请
    PROGRESSIVE OPHTHALMIC LENS 审中-公开
    渐进式眼镜片

    公开(公告)号:WO2012130736A3

    公开(公告)日:2012-11-22

    申请号:PCT/EP2012055146

    申请日:2012-03-22

    Abstract: The invention relates to a progressive ophthalmic lens comprising a front surface and a rear surface, each surface having in each point an altitude, a mean sphere value and a cylinder value, the front surface of the lens comprising: - a far vision zone having a far vision reference point; - a near vision zone having a near vision reference point; - a main meridian, wherein the front surface is regressive and has: - a sphere gradient normalized value of less than 7.50.10-1 mm-1 at any point in a central portion of the lens including a portion of the main meridian (32), the far vision reference point (FV) and the near vision reference point (NV); - a cylinder gradient normalized value of less than 1.45 mm-1 at any point in the central portion of the lens.

    Abstract translation: 本发明涉及包括前表面和后表面的渐进眼镜片,每个表面在每个点中具有高度,平均球面值和柱面值,镜片的前表面包括: - 远视区,其具有 远视参考点; - 具有近视参考点的近视区; - 主经线,其中前表面是回归的并且具有: - 在包括主子午线的一部分的透镜的中心部分中的任何点处小于7.50.10-1mm -1的球形梯度归一化值(32 ),远视参考点(FV)和近视参考点(NV); - 在镜片中心部分的任何点上的柱面梯度归一化值小于1.45mm-1。

    A METHOD FOR DETERMINING A PROGRESSIVE OPHTHALMIC LENS
    2.
    发明申请
    A METHOD FOR DETERMINING A PROGRESSIVE OPHTHALMIC LENS 审中-公开
    确定渐进式眼镜片的方法

    公开(公告)号:WO2014037482A2

    公开(公告)日:2014-03-13

    申请号:PCT/EP2013068431

    申请日:2013-09-06

    Applicant: ESSILOR INT

    Abstract: A method for determining a progressive ophthalmic lens comprising a near and a far vision area, a main meridian separating the lens into a nasal and a temporal area, the method comprising: determining a first and a second surface of the lens; determining the second surface to provide, in combination with the first surface, the vision correcting properties; determining a spherical area on the first surface of the lens having a constant sphere value and including a far vision diopter measurement position, wherein the far and a near vision diopter measurement position have substantially the same mean sphere value; and determining the first surface to reduce the lens distortion by defining a toric area extending outside the spherical area on the first surface in at least one of the nasal and the temporal area, wherein characteristics of the toric area are related to the lens astigmatism.

    Abstract translation: 一种用于确定渐进眼镜片的方法,所述渐进眼镜片包括近视区和远视区,将所述镜片分隔成鼻和颞区的主子午线,所述方法包括:确定所述镜片的第一和第二表面; 确定第二表面以结合第一表面提供视力校正特性; 确定具有恒定球面值并且包括远视度数测量位置的透镜的第一表面上的球面积,其中远视近屈光度测量位置和近视觉屈光度测量位置具有基本上相同的平均球面值; 以及通过在所述鼻区域和所述颞区域中的至少一个区域中限定在所述第一表面上延伸到所述球形区域之外的复曲面区域来确定所述第一表面以减小所述镜片失真,其中所述复曲面区域的特征与所述镜片散光有关。

    PROGRESSIVE OPHTHALMIC LENS
    6.
    发明专利

    公开(公告)号:ZA201306748B

    公开(公告)日:2015-03-25

    申请号:ZA201306748

    申请日:2013-09-09

    Abstract: The invention relates to a progressive ophthalmic lens comprising a front surface and a rear surface, each surface having in each point an altitude, a mean sphere value (and a cylinder value, the front surface of the lens comprising: - a far vision zone having a far vision reference point ; - a near vision zone having a near vision reference point ; - a main meridian, wherein the front surface is regressive and has: - a sphere gradient normalized value of less than 7.50.10 -1 mm -1 at any point in a central portion of the lens including a portion of the main meridian (32), the far vision reference point (FV) and the near vision reference point (NV); - a cylinder gradient normalized value of less than 1.45 mm -1 at any point in the central portion of the lens

    Method for determining a surface of a face of an optical lens adapted to a spectacle frame

    公开(公告)号:AU2014280084B2

    公开(公告)日:2018-08-16

    申请号:AU2014280084

    申请日:2014-06-13

    Applicant: ESSILOR INT

    Abstract: Method for determining a surface of a face of an optical lens to be mounted to a spectacle frame, the method comprising: - a contour data providing step (SI), during which contour data representing a contour of the spectacle frame is provided, - a target curvature data providing step (S2) during which target curvature data representing the target curvature of the surface to be determined over an evaluation zone of said surface is provided, - an optical surface determining step (S3), during which a surface is determined so as to minimize: o the difference between the target curvature and average curvature of the surface over the evaluation zone, and o the difference between the contour of the spectacle frame and the periphery contour of the surface, the periphery contour of the surface corresponding to the contour of the surface to be determined of the optical lens after the optical lens has been edged to be mounted in the spectacle frame.

    PROGRESSIVE OPHTHALMIC LENS
    9.
    发明专利

    公开(公告)号:CA2830638C

    公开(公告)日:2018-07-24

    申请号:CA2830638

    申请日:2012-03-22

    Applicant: ESSILOR INT

    Abstract: The invention relates to a progressive ophthalmic lens comprising a front surface and a rear surface, each surface having in each point an altitude, a mean sphere value and a cylinder value, the front surface of the lens comprising: - a far vision zone having a far vision reference point; - a near vision zone having a near vision reference point; - a main meridian, wherein the front surface is regressive and has: - a sphere gradient normalized value of less than 7.50.10-1 mm-1 at any point in a central portion of the lens including a portion of the main meridian (32), the far vision reference point (FV) and the near vision reference point (NV); - a cylinder gradient normalized value of less than 1.45 mm-1 at any point in the central portion of the lens.

    Method for determining a surface of a face of an optical lens adapted to a spectacle frame

    公开(公告)号:AU2014280084A1

    公开(公告)日:2015-12-17

    申请号:AU2014280084

    申请日:2014-06-13

    Applicant: ESSILOR INT

    Abstract: Method for determining a surface of a face of an optical lens to be mounted to a spectacle frame, the method comprising: - a contour data providing step (SI), during which contour data representing a contour of the spectacle frame is provided, - a target curvature data providing step (S2) during which target curvature data representing the target curvature of the surface to be determined over an evaluation zone of said surface is provided, - an optical surface determining step (S3), during which a surface is determined so as to minimize: o the difference between the target curvature and average curvature of the surface over the evaluation zone, and o the difference between the contour of the spectacle frame and the periphery contour of the surface, the periphery contour of the surface corresponding to the contour of the surface to be determined of the optical lens after the optical lens has been edged to be mounted in the spectacle frame.

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