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    • 43. 发明授权
    • Double progressive spectacle lens
    • 双渐进眼镜镜片
    • US07210779B2
    • 2007-05-01
    • US11128302
    • 2005-05-13
    • Gregor EsserWalter HaimerlEdda WehnerAndrea WelkHelmut AltheimerMartin Zimmerman
    • Gregor EsserWalter HaimerlEdda WehnerAndrea WelkHelmut AltheimerMartin Zimmerman
    • G02C7/06
    • G02C7/068G02C7/061
    • A double-progressive spectacle lens in which the progressive action is distributed over the front and rear surfaces of the double-progressive spectacle lenses and described by the quotient Q Q=Addvfl/AddGesamt where Addvfl represents the increase in the surface dioptric power along the principal line on the front surface between the distance area and the near area, and ADDGesamt represents the increase in the total dioptric power along the principal line between the distance area and the near area, and the fraction Q increases with growing distance area effect F: ⅆ Q ⁡ ( F ) ⅆ F ⩾ 0.
    • 双渐进式眼镜镜片,其中逐行动作分布在双渐进式眼镜镜片的前表面和后表面上,并由商Q <β线内公式描述=“在线公式”结束=“ 引用“?> Q =添加 /添加 <?in-line-formula description =”In-line Formulas“end =”tail“?> SUB> vfl 表示沿着距离区域和近区域之间的前表面上的主线的表面屈光度的增加,并且ADD Gesamt 表示总屈光力的增加 沿着距离区域和近区域之间的主线,分数Q随着距离区域效应的增加而增加F: F MFRAC> 0. < / MN>
        • 46. 发明授权
        • Method for simulating and demonstrating the optical effects of glasses on the human face
        • 用于模拟和展示眼镜在人脸上的光学效果的方法
        • US06965385B2
        • 2005-11-15
        • US10257448
        • 2002-02-13
        • Andrea WelkHelmut AltheimerPeter BaumbachGregor EsserWalter Haimerl
        • Andrea WelkHelmut AltheimerPeter BaumbachGregor EsserWalter Haimerl
        • G02C13/00G06T11/00G06T13/00G09B23/28G09G5/00
        • G06T11/00G02C13/003G09B23/28
        • A method is provided for demonstrating an effect of a particular spectacle frame and of optical lenses fitted into this spectacle frame on the appearance of a spectacles wearer as it would be perceived by another person (virtual observer). An image of a face of the spectacles wearer is prepared in such manner that the image can be processes in a computer. An arrangement of the respective spectacle frame in front of the eyes is determined. The image of the face is projected onto a plane by a computation (ray-tracing) of principal rays passing through a center of rotation of an eye of the (virtual) observer to produce a planar image of the face in this plane. Taking into account an optical power of a region, through which a principal ray passes, of each spectacle lens (virtually) fitted in the respective lens rim, and it arrangement in front of the eye, the paths of prinipcal rays which lie within lens rims of the spectacle frame or edges of the spectacle lenses are computed so that an observer of the thus-produced planar image of the face with “worn” spectacles can assess a distortion of the eyes portion of the face by the spectacle lenses and therewith a quality of the spectacle lenses.
        • 提供了一种用于展示特定眼镜框和装配到该眼镜架中的光学透镜对眼镜佩戴者的外观的影响的方法,因为它将被另一人(虚拟观察者)感知。 准备眼镜佩戴者脸部的图像,使得图像可以在计算机中进行处理。 确定眼睛前方的各个眼镜架的布置。 通过通过(虚拟)观察者的眼睛的旋转中心的主光线的计算(射线跟踪)将面部的图像投影到平面上,以在该平面中产生面部的平面图像。 考虑到每个眼镜片(虚拟地)装配在相应的镜片边缘中的主要射线通过的区域的光学功率,并且其布置在眼睛前方,位于透镜边缘内的主光线的路径 计算眼镜架或眼镜镜片的边缘,使得由此产生的具有“磨损”眼镜的面部的平面图像的观察者可以评估眼镜片眼睛部分的变形,并且具有质量 的眼镜镜片。
        • 48. 发明申请
        • Double progressive spectacle lens
        • US20060268223A1
        • 2006-11-30
        • US10542701
        • 2003-12-19
        • Edda WehnerAndrea WelkGregory EsserHelmut AltheimerWalter Haimerl
        • Edda WehnerAndrea WelkGregory EsserHelmut AltheimerWalter Haimerl
        • G02C7/02
        • G02C7/065G02C7/061G02C7/068
        • A double progressive spectacle lens is described. The invention is distinguished in that at least one of the two progressive surfaces has at least one of the following properties: principal line of sight a) the profile of the surface power along the principal line of sight in the progression channel is not monotonic between y=−15 mm and y=+10 mm, b) the profile of the surface astigmatism along the principal line of sight has at least two clearly expressed maxima that are at least 0.175 dpt above an adjacent minimum, c) the surface astigmatism A deviates in absolute terms by more than dA upward or downward from the prescription value AR of the cylinder at approximately all points along the principal line of sight, d) the surface astigmatism has a global maximum on or in the vicinity of the principal line of sight between y=±20 mm, e) the surface astigmatism has a local maximum on or in the vicinity of the principal line of sight between y=±20 mm, f) 85% of the change in the surface power along the principal line of sight is reached on each of the surfaces on a path of less than 11 mm, g) the channel width at 0.75 dpt has at least two minima in the progression channel between y=+10 mm and y=−18 mm, distance zone h) the surface astigmatism A deviates in the distance zone by more than dA upward or downward from the prescription value AR of the cylinder at approximately all points: |A−AR|≧dA, with dA≧0.18 dpt i) the surface astigmatism A deviates in the distance zone by more than dA upward or downward from the prescription value AR of the cylinder at at least one point: |A−AR|≧dA, with dA≧0.5 dpt near zone j) the surface astigmatism A deviates in the near zone by more than dA upward or downward from the prescription value AR of the cylinder at approximately all points: |A−AR|≧dA, with dA≧0.22 dpt k) the surface astigmatism A deviates in the near zone by more than dA upward or downward from the prescription value AR of the cylinder at at least one point: |A−AR|≧dA, with dA≧0.4 dpt.
        • 49. 发明申请
        • Method and Device for Manufacturing a Spectacle Lens; System and Computer Program Product for Manufacturing a Spectacle Lens
        • 眼镜镜片制造方法及装置; 系统和计算机程序用于制造眼镜镜片的产品
        • US20090103046A1
        • 2009-04-23
        • US11667828
        • 2005-09-29
        • Andrea WelkHelmut Altheimer
        • Andrea WelkHelmut Altheimer
        • A61B3/11A61B3/10G02C13/00
        • G02C13/005
        • The invention relates to a method comprising the following steps:—a bridge width (b), a glass length (I), and a frame glass angle (fF) are predefined as eyeglass frame data;—a base curve (BK) as well as a nasal and a temporal facet position (aFn, aFt) are predefined as eyeglass lens data;—a user's pupil distance (pL, pR) is predefined as user data;—a horizontal angle of tilt (fG) of the eyeglass lens (12) is determined at a reference point in the used position, the reference point being the point of intersection between the horizontal main beam facing the eye in the neutral viewing direction (NBR) of the user and the area (14) of the eyeglass lens which faces the object, and the horizontal angle of tilt (fG) being the angle enclosed by a horizontal tangent (26) of the area (14) of the eyeglass lens (12) which faces the object at the reference point (B) and a straight horizontal reference line (HR) located on a plane that extends perpendicular to the horizontal main beam in the neutral viewing direction (NBR) of the user. Also disclosed are a device and a computer program product.
        • 本发明涉及一种包括以下步骤的方法:将桥梁宽度(b),玻璃长度(I)和框架玻璃角度(fF)预定义为眼镜框架数据; - 基准曲线(BK)以及 作为鼻和时间刻面位置(aFn,aFt)被预先定义为眼镜透镜数据; - 用户的瞳孔距离(pL,pR)被预先定义为用户数据; - 眼镜透镜的水平倾斜角(fG) 12)在使用位置的参考点处被确定,参考点是在用户的中立观察方向(NBR)和眼镜镜片区域(14)之间的面向眼睛的水平主光束之间的交点 面对物体的水平角度(fG)是由参考点(B)处的面对物体的眼镜镜片(12)的区域(14)的水平切线(26)包围的角度,以及 位于垂直于水平主梁的平面上的平直的水平参考线(HR) 观看方向(NBR)。 还公开了一种设备和计算机程序产品。