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    • 4. 发明申请
    • OPHTHALMIC LENS
    • 眼镜
    • US20070103640A1
    • 2007-05-10
    • US11453342
    • 2006-06-14
    • Jean-Pierre ChauveauBruno DecretonGilles Le Saux
    • Jean-Pierre ChauveauBruno DecretonGilles Le Saux
    • G02C7/06
    • G02C7/065G02C7/025G02C7/061
    • Progressive multifocal ophthalmic lens having a power addition prescription and presenting a complex surface having a fitting cross and a principal meridian of progression. The lens has, when being worn, a normalized reduced root mean square deviation of less than 0.025 microns per dioptre over a zone that includes the far vision control point and covering a sector whose apex lies 4° below the fitting cross with an angular aperture of between 150° and 160°; and a progression length of 25° or less, the progression length being defined as the angle of lowered of the view direction from the fitting cross down to the point on the meridian for which the wearer's optical power reaches 85% of the addition prescription. The lens is suitable for increased far vision with good accessibility to near vision.
    • 渐进式多焦点眼科镜片,具有加力处方,呈现具有适合十字的复杂表面和进展的主子午线。 穿戴时,透镜在包括远视点控制点的区域上具有小于0.025微米/屈光度的归一化减小的均方根偏差,并且覆盖顶点位于配合十字架下方4°的扇区,角度孔 介于150°至160°之间; 并且进展长度为25°以下,前进长度被定义为视角方向从配合十字形下降到佩戴者的光功率达到加法处方的85%的子午线上的点的角度。 该镜片适用于增加远视力,具有良好的近视力。
    • 5. 发明授权
    • Ophthalmic lens
    • 眼科镜片
    • US07207675B1
    • 2007-04-24
    • US11453342
    • 2006-06-14
    • Jean-Pierre ChauveauBruno DecretonGilles Le Saux
    • Jean-Pierre ChauveauBruno DecretonGilles Le Saux
    • G02C7/06
    • G02C7/065G02C7/025G02C7/061
    • Progressive multifocal ophthalmic lens having a power addition prescription and presenting a complex surface having a fitting cross and a principal meridian of progression. The lens has, when being worn, a normalized reduced root mean square deviation of less than 0.025 microns per diopter over a zone that includes the far vision control point and covering a sector whose apex lies 4° below the fitting cross with an angular aperture of between 150° and 160°; and a progression length of 25° or less, the progression length being defined as the angle of lowered of the view direction from the fitting cross down to the point on the meridian for which the wearer's optical power reaches 85% of the addition prescription.The lens is suitable for increased far vision with good accessibility to near vision.
    • 渐进式多焦点眼科镜片,具有加力处方,呈现具有适合十字的复杂表面和进展的主子午线。 穿戴时,透镜在包括远视控制点的区域上具有小于0.025微米/屈光度的归一化减小的均方根偏差,并且覆盖顶点位于配合十字架下方4度的扇区,角度孔 介于150°至160°之间; 并且进展长度为25°以下,前进长度被定义为视角方向从配合十字形下降到佩戴者的光功率达到加法处方的85%的子午线上的点的角度。 该镜片适用于增加远视力,具有良好的近视力。
    • 8. 发明申请
    • Process For Determining Position Parameters of a Manufactured Surface Relative To A Reference Surface
    • 确定相对于参考曲面的制造表面的位置参数的过程
    • US20140085627A1
    • 2014-03-27
    • US14116659
    • 2012-05-11
    • Jean-Pierre ChauveauPascal AllioneDaniel Steigelmann
    • Jean-Pierre ChauveauPascal AllioneDaniel Steigelmann
    • G01M11/02G01B21/00
    • G01M11/0242B24B13/00B24B49/04B24B51/00B29D11/00961G01B21/00G02C7/065G06Q50/04Y02P90/30
    • Determining position parameters defining relative position of manufactured derivable surface relative to reference surface, the process comprising: a step during which a nominal surface expressed in a nominal frame of reference and corresponding to the theoretical derivable surface to be manufactured with the nominal value of the position parameters defining the relative position of the nominal surface relative to the reference surface is provided, a step during which a measured surface of the manufactured derivable surface expressed in the nominal frame of reference is provided, a step (S3) during which at least one deformation surface defined by at least one deformation adjustable parameter is provided, a step (S4) during which a composed surface is determined by adding the measured surface and the deformation surface, a step during which the position parameters and at least one deformation parameter are determined by minimizing the difference between the nominal surface and the composed surface.
    • 确定定义制造的可衍生表面相对于参考表面的相对位置的位置参数,所述方法包括:步骤,在该步骤中以标称参考系的表面表示并对应于待制造的理论可推定表面的标称表面,其具有位置的标称值 提供了限定标称表面相对于参考表面的相对位置的参数,提供了在标称参考系中表示的所制造的可导出表面的测量表面的步骤,在该步骤(S3)期间,至少一个变形 提供由至少一个变形可调整参数限定的表面;步骤(S4),其中通过添加测量的表面和变形表面来确定组合表面;步骤(S4),其中位置参数和至少一个变形参数由 最小化标称表面和合成物之间的差异 表面。