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    • 6. 发明授权
    • Spectacle glass and spectacle lens for data reflection
    • 眼镜玻璃和眼镜镜片进行数据反射
    • US08177361B2
    • 2012-05-15
    • US12524310
    • 2008-01-25
    • Rainer SessnerWerner MuellerDietmar UttenweilerEdda Wehner
    • Rainer SessnerWerner MuellerDietmar UttenweilerEdda Wehner
    • G02C1/00
    • G02C7/14G02B27/0172G02B2027/015G02B2027/0178G02C7/061G02C7/086
    • The invention relates particularly to a spectacle lens having a first and a second surface, wherein at least the first surface of the spectacle lens has a major portion zone and at least one prism zone. The major portion zone of the first surface, together with the opposing second surface of the spectacle lens, forms a major portion of the spectacle lens, which is designed for vision in at least a predetermined distance. The prism zone of the first surface, together with the opposing second surface of the spectacle lens, forms a prism portion, which is designed and arranged such that an optical image of a display is formed at a predetermined virtual distance in front of the eyes of the spectacle wearer. The invention further relates to spectacles, which comprise the spectacle lens, and to a method and apparatuses for calculating or optimizing and producing the spectacle lens.
    • 本发明尤其涉及具有第一和第二表面的眼镜镜片,其中眼镜镜片的至少第一表面具有主要部分区域和至少一个棱镜区域。 第一表面的主要部分区域与眼镜镜片的相对的第二表面一起形成眼镜镜片的主要部分,其被设计用于至少预定距离的视力。 第一表面的棱镜区域与眼镜镜片的相对的第二表面一起形成棱镜部分,其被设计和布置成使得显示器的光学图像形成在眼睛前方的预定虚拟距离处 眼镜佩戴者。 本发明还涉及包括眼镜镜片的眼镜以及用于计算或优化和制造眼镜镜片的方法和装置。
    • 8. 发明申请
    • Double progressive spectacle lens
    • 双渐进眼镜镜片
    • US20060007392A1
    • 2006-01-12
    • 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 0