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    • 42. 发明授权
    • Multiple layer multifocal composite lens
    • 多层多焦点复合透镜
    • US08075132B2
    • 2011-12-13
    • US12915783
    • 2010-10-29
    • Ronald D. BlumWilliam KokonaskiJoshua N. HaddockVenkatramani S. IyerMark Mattison-Shupnick
    • Ronald D. BlumWilliam KokonaskiJoshua N. HaddockVenkatramani S. IyerMark Mattison-Shupnick
    • G02C7/02
    • G02C7/06G02C7/061G02C7/063G02C2202/16
    • Aspects of the present invention provide multiple-layer (multi-layer) composite lenses comprising two or more materials and methods for making the same. A multi-layer composite lens of the present invention can use multiple surfaces (internal or external) to form optical elements that can contribute to a total desired add power. The multiple contributing optical elements can be aligned so as to be in optical communication to form multiple stable vision zones to enhance optical performance and the vision experience of the wearer. Distributing the total desired add power across multiple appropriately aligned optical elements that are in optical communication with one another can reduce the total distortion of the lens, minimize the number of optical discontinuities introduced, can reduce optical power jump as experienced by the wearer's eye when traversing any discontinuity, and can reduce the visibility of any introduced optical discontinuity as perceived by an observer looking at the wearer.
    • 本发明的方面提供了包括两种或更多种材料的多层(多层)复合透镜及其制造方法。 本发明的多层复合透镜可以使用多个表面(内部或外部)来形成可以有助于总体期望的附加功率的光学元件。 多个贡献光学元件可以对准以便光学通信以形成多个稳定的视觉区域以增强佩戴者的光学性能和视觉体验。 分布在彼此光学连通的多个适当对准的光学元件上的总需求的增加功率可以减少透镜的总失真,使引入的光学不连续性的数量最小化,可以减少穿过眼睛时所经历的光功率跳跃 任何不连续性,并且可以降低由观察者佩戴者观察到的所引入的光学不连续性的可视性。
    • 43. 发明申请
    • Refractive-Diffractive Multifocal Lens
    • 折射衍射多焦点透镜
    • US20110176103A1
    • 2011-07-21
    • US13005876
    • 2011-01-13
    • Venkatramani S. IyerWilliam KokonaskiJoshua N. HaddockRoger ClarkeRonald D. Blum
    • Venkatramani S. IyerWilliam KokonaskiJoshua N. HaddockRoger ClarkeRonald D. Blum
    • G02C7/06
    • G02C7/06G02C7/061G02C2202/16G02C2202/20
    • Aspects of the present invention provide multifocal lenses having one or more multifocal inserts comprising one or more diffractive regions. A diffractive region of a multifocal insert of the present invention can provide a constant optical power or can provide a progression of optical power, or any combination thereof. A multifocal insert of the present invention can be fabricated from any type of material and can be inserted into any type of bulk lens material. A diffractive region of a multifocal insert of the present invention can be positioned to be in optical communication with one or more optical regions of a host lens to provide a combined desired optical power in one or more vision zones. Index matching layers of the present invention can be used to reduce reflection losses at interfaces of the host lens and multifocal insert.
    • 本发明的方面提供了具有包括一个或多个衍射区域的一个或多个多焦点插入​​物的多焦点透镜。 本发明的多焦点插入​​物的衍射区域可以提供恒定的光功率或者可以提供光功率的进展,或其任何组合。 本发明的多焦点插入​​件可以由任何类型的材料制成,并且可以插入到任何类型的散装透镜材料中。 本发明的多焦点插入​​件的衍射区域可以被定位成与主镜头的一个或多个光学区域光学连通,以在一个或多个视觉区域中提供组合的所需光学功率。 本发明的折射率匹配层可以用于减少主镜片和多焦点插入​​物的界面处的反射损失。
    • 49. 发明申请
    • MULTIPLE LAYER MULTIFOCAL COMPOSITE LENS
    • 多层多层复合透镜
    • US20090161066A1
    • 2009-06-25
    • US12333739
    • 2008-12-12
    • Ronald D. BLUMWilliam KokonaskiJoshua N. HaddockVenkatramani S. Iyer
    • Ronald D. BLUMWilliam KokonaskiJoshua N. HaddockVenkatramani S. Iyer
    • G02C7/06B29D11/00
    • G02C7/061G02C7/06G02C2202/16
    • Aspects of the present invention provide multiple-layer composite lenses comprising two or more materials and methods for making the same. A multi-layer composite lens of the present invention can use multiple surfaces to form optical elements that can contribute to a total desired add power. The multiple contributing elements can be aligned so as to be in optical communication to form multiple stable vision zones to enhance optical performance and vision experience of the wearer. Distributing the total desired add power across multiple appropriately aligned optical elements that are in optical communication with one another can reduce the total distortion of the lens, minimize the number of optical discontinuities introduced and reduce the visibility of any introduced optical discontinuity. A surface of the multiple-layer composite lens can comprise a combined progressive structure and substantially constant optical power structure or a cropped progressive structure.
    • 本发明的方面提供了包含两种或更多种材料的多层复合透镜及其制造方法。 本发明的多层复合透镜可以使用多个表面来形成可有助于总的所需添加功率的光学元件。 多个贡献元件可以对准以便进行光学通信以形成多个稳定的视区以增强佩戴者的光学性能和视觉体验。 分布在彼此光学连通的多个适当对准的光学元件上的总所需的加电功率可以减少透镜的总失真,使引入的光学不连续性的数量最小化,并降低所引入的光学不连续性的可视性。 多层复合透镜的表面可以包括组合渐进式结构和基本上恒定的光学功率结构或经裁剪的渐进式结构。
    • 50. 发明申请
    • PROGRESSIVE ADDITION LENS OPERATING IN COMBINATION WITH A MULTI-ORDER DIFFRACTIVE OPTIC
    • 渐进式增光镜与多功能差分光学组合
    • US20080278681A1
    • 2008-11-13
    • US12118226
    • 2008-05-09
    • Ronald D. BlumWilliam KokonaskiJoshua N. Haddock
    • Ronald D. BlumWilliam KokonaskiJoshua N. Haddock
    • G02C7/06
    • G02C7/061G02C2202/16G02C2202/20
    • A multi-focal spectacle lens is presented having far distance, intermediate distance, and near distance vision correction, in which the lens includes a progressive addition surface with a progression of optical power. The lens further includes a multi-order diffractive surface relief structure with an optical add power. The multi-order diffractive structure reduces chromatic aberration as compared to a conventional diffractive structure of equivalent optical power. The lens may also include a wavefront splitting device diffractive structure for generating multiple optical powers simultaneously. When the progressive addition surface and the multi-order diffractive surface relief structure are in optical communication an overall progression of optical add power may be provided by the combination of the progressive addition surface with the multi-order surface relief diffractive structure.
    • 呈现出具有远距离,中间距离和近距离视力矫正的多焦点眼镜镜片,其中透镜包括具有光功率进展的渐进附加表面。 透镜还包括具有光学附加功率的多阶衍射表面浮雕结构。 与等效光功率的常规衍射结构相比,多阶衍射结构减少色差。 透镜还可以包括用于同时产生多个光焦度的波前分割装置衍射结构。 当渐进附加表面和多阶衍射表面浮雕结构是光通信时,可以通过渐进加法表面与多阶表面浮雕衍射结构的组合来提供光学加成功率的总体进展。