Progressive-power lens designing method, progressive power lens designing system, and progressive-power lens
    1.
    发明授权
    Progressive-power lens designing method, progressive power lens designing system, and progressive-power lens 有权
    渐进式功率透镜设计方法,渐进式功率透镜设计系统和渐进式功率透镜

    公开(公告)号:US09022559B2

    公开(公告)日:2015-05-05

    申请号:US13041147

    申请日:2011-03-04

    CPC classification number: G02C7/066 G02C7/024 G02C7/025

    Abstract: A progressive-lens designing system includes a manufacturer-side terminal installed in a lens manufacturer connected to a shop-side terminal installed in a spectacle shop or any other location via a network. The manufacturer-side terminal includes an optimization coefficient setting section that uses a variety of data received from the shop-side terminal to set an optimization coefficient for each target object in specific work, a dioptric power computing section that computes target dioptric power for each target object, a lens designing section that performs lens design, and an order processing section that performs order processing when receiving an order placed from the shop-side terminal.

    Abstract translation: 渐进透镜设计系统包括安装在透镜制造商中的制造商侧端子,其连接到安装在眼镜店或通过网络的任何其它位置的商店侧终端。 制造商侧终端包括:优化系数设定部,其使用从店侧终端接收的各种数据,在特定工作中设定每个目标对象的优化系数;计算每个目标的目标度数的屈光度计算部 物体,进行透镜设计的透镜设计部,以及当从商店侧终端接收到订单时执行订单处理的订单处理部。

    Progressive power lens and progressive power lens design method
    2.
    发明授权
    Progressive power lens and progressive power lens design method 失效
    渐进功率透镜和渐进屈光力镜片设计方法

    公开(公告)号:US08550622B2

    公开(公告)日:2013-10-08

    申请号:US13290936

    申请日:2011-11-07

    CPC classification number: G02C7/065 G02C7/061

    Abstract: A progressive power lens including a distance portion for visual recognition of a far working distance, a near portion for visual recognition of a near working distance, and an intermediate portion provided between the distance portion and the near portion, the intermediate portion including a position of an amount of intermediate inset in which a visual line when the intermediate working distance is visually recognized passes an eyeball side surface of the progressive power lens, and addition at intermediate position for viewing an intermediate working distance smaller than the far working distance and larger than the near working distance being set to the position of the amount of intermediate inset.

    Abstract translation: 一种渐进式功率透镜,包括用于远距离工作距离的视觉识别的距离部分,用于近距离工作距离的视觉识别的近部分,以及设置在所述距离部分和所述近距离部分之间的中间部分,所述中间部分包括 当视觉识别出中间工作距离时的视线的中间插入量通过渐进屈光力镜片的眼球侧表面,并且在用于观察比远距离工作距离小的中间工作距离的中间位置处的添加量大于 近工作距离被设定为中间插入量的位置。

    SPECTACLE LENS
    3.
    发明申请
    SPECTACLE LENS 有权
    镜面镜片

    公开(公告)号:US20140055742A1

    公开(公告)日:2014-02-27

    申请号:US14000705

    申请日:2012-02-20

    CPC classification number: G02C7/061 G02C7/063 G02C7/068

    Abstract: A progressive power lens 10 for spectacles has a distance portion 11 and a near portion 12 of different powers. A surface power OMHP in a horizontal direction on an object-side surface along a principal meridian 14 or a vertical reference line passing through a fitting point Pe, a surface power OMVP(y) in a vertical direction of the object-side surface, the absolute value IMHP of a surface power on an eye-side surface, and the absolute value IMVP of a surface power in a vertical direction on the eye-side surface satisfy the following condition. OMHP(y)>OMVP(y) IMHP(y)>IMVP(y) OMHP(y)−OMVP(y)=IMHP(y)−IMVP(y) In the conditions, y is a coordinate along the principal meridian or the vertical reference line.

    Abstract translation: 用于眼镜的渐进屈光力镜片10具有不同功率的距离部分11和近部分12。 沿着主子午线14的物体侧表面上的水平方向上的表面光焦度OMHP或通过拟合点Pe的垂直参考线,物体侧表面的垂直方向上的表面光焦度OMVP(y) 眼侧表面上的表面光焦度的绝对值IMHP和眼侧表面上的垂直方向上的表面光焦度的绝对值IMVP满足以下条件。 OMHP(y)> OMVP(y)IMHP(y)> IMVP(y)OMHP(y)-OMVP(y)= IMHP(y)-IMVP(y)在条件中,y是沿主子午线或 垂直参考线。

    Progressive power lens design method and progressive power lens design apparatus
    4.
    发明授权
    Progressive power lens design method and progressive power lens design apparatus 有权
    渐进式功率透镜设计方法和渐进式功率透镜设计装置

    公开(公告)号:US09417462B2

    公开(公告)日:2016-08-16

    申请号:US13441438

    申请日:2012-04-06

    CPC classification number: G02C7/024 G02C7/027 G02C7/061 G02C7/065

    Abstract: A method of designing a progressive power lens with less image sway includes preferentially selecting a spectacle specification including a first condition if an average prescription power of a distance portion is equal to or greater than +3.0 D, and preferentially selecting a spectacle specification including a second condition if the average prescription power is equal to or smaller than −3.0 D. At least a surface power OHPf in a horizontal direction of a distance portion on an object-side surface is greater than a surface power OVPf in a vertical direction, or a surface power OHPn in a horizontal direction of a near portion is greater than a surface power OVPn in a vertical direction. The first condition includes a condition that the OVPf is greater than the OVPn, and the second condition includes a condition that the OVPf is smaller than the OVPn.

    Abstract translation: 设计具有较少图像晃动的渐进屈光力镜片的方法包括:如果距离部分的平均处方力等于或大于+3.0D,则优先选择包括第一条件的眼镜规格,并且优先选择包括第二 如果平均处方功率等于或小于-3.0D,则物体侧表面上的距离部分的水平方向上的至少一个表面光焦度OHPf大于垂直方向上的表面光焦度OVPf,或者 靠近部分的水平方向的表面光焦度OHPn大于垂直方向上的表面光焦度OVPn。 第一个条件包括OVPf大于OVPn的条件,第二个条件包括OVPf小于OVPn的条件。

    Spectacle lens
    5.
    发明授权
    Spectacle lens 有权
    眼镜镜片

    公开(公告)号:US09010932B2

    公开(公告)日:2015-04-21

    申请号:US14000705

    申请日:2012-02-20

    CPC classification number: G02C7/061 G02C7/063 G02C7/068

    Abstract: A progressive power lens 10 for spectacles has a distance portion 11 and a near portion 12 of different powers. A surface power OMHP in a horizontal direction on an object-side surface along a principal meridian 14 or a vertical reference line passing through a fitting point Pe, a surface power OMVP(y) in a vertical direction of the object-side surface, the absolute value IMHP of a surface power on an eye-side surface, and the absolute value IMVP of a surface power in a vertical direction on the eye-side surface satisfy the following condition. OMHP(y)>OMVP(y) IMHP(y)>IMVP(y) OMHP(y)−OMVP(y)=IMHP(y)−IMVP(y) In the conditions, y is a coordinate along the principal meridian or the vertical reference line.

    Abstract translation: 用于眼镜的渐进屈光力镜片10具有不同功率的距离部分11和近部分12。 沿着主子午线14的物体侧表面上的水平方向上的表面光焦度OMHP或通过拟合点Pe的垂直参考线,物体侧表面的垂直方向上的表面光焦度OMVP(y) 眼侧表面上的表面光焦度的绝对值IMHP和眼侧表面上的垂直方向上的表面光焦度的绝对值IMVP满足以下条件。 OMHP(y)> OMVP(y)IMHP(y)> IMVP(y)OMHP(y)-OMVP(y)= IMHP(y)-IMVP(y)在条件中,y是沿主子午线或 垂直参考线。

    Optical lens, method for designing optical lens, and apparatus for manufacturing optical lens
    6.
    发明授权
    Optical lens, method for designing optical lens, and apparatus for manufacturing optical lens 有权
    光学透镜,光学透镜的设计方法以及光学透镜的制造装置

    公开(公告)号:US09581831B2

    公开(公告)日:2017-02-28

    申请号:US13615004

    申请日:2012-09-13

    CPC classification number: G02C7/02 G02C7/024 G02C7/061 G02C7/065

    Abstract: An optical lens including, an object-side surface including an atoric surface element and an eyeball-side surface including an element that cancels a surface power shift produced by the atoric surface element, wherein the atoric surface element causes horizontal surface power at a fitting point to be greater than vertical surface power at the fitting point and causes a difference between the horizontal surface power and the vertical surface power to decrease along a horizontal reference line passing through the fitting point in a direction from the fitting point toward a periphery of the optical lens or causes a sign of the difference between the horizontal surface power and the vertical surface power to change along the horizontal reference line.

    Abstract translation: 一种光学透镜,包括:包括表面部件的物体侧表面和包括消除由所述表面元件产生的表面动力偏移的元素的眼球侧表面,其中所述透明表面元件在拟合点处引起水平表面光焦度 大于装配点处的垂直表面功率,并且使得水平表面光焦度和垂直表面光焦度之间的差异沿着从配合点朝向光学周边的方向沿着穿过装配点的水平参考线减小 使水平面功率和垂直面功率之间的差异沿水平基准线变化。

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