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    • 4. 发明申请
    • Refractive-Diffractive Multifocal Lens
    • 折射衍射多焦点透镜
    • US20140132916A1
    • 2014-05-15
    • US14157156
    • 2014-01-16
    • PixelOptics, Inc. (Estate of)
    • 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 preset 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。 可以使用本发明的折射率匹配层来减少主镜和多焦点插入​​物的界面处的反射损失。
    • 6. 发明申请
    • Opthalmic Lens With Regressive And Non-Regressive Rotationally Symmetric Optical Design Elements
    • 具有回归和非回归旋转对称光学设计元素的光学透镜
    • US20140160426A1
    • 2014-06-12
    • US14045571
    • 2013-10-03
    • PixelOptics, Inc.
    • Amitava GuptaRonald BlumStefan TrollerHans JaegerJulien SauvetUrban Schnell
    • G02C7/06
    • G02C7/063G02C7/061G02C7/068
    • Aspects of the present invention provide an ophthalmic lens comprising at least one regressive and at least one non-regressive rotationally symmetric optical design element. The regressive and non-regressive optical design elements can be combined so as to form a desired optical power profile for the lens while simultaneously exploiting the different relative orientation of the astigmatic vectors of the constituent regressive and non-regressive design elements, thereby resulting in reduced unwanted astigmatism. The regressive and non-regressive rotationally symmetric optical design elements can be positioned on different lens surfaces and in optical communication or can be collapsed onto the same lens surface. The regressive and non-regressive rotationally symmetric optical design elements can each contribute to the total add power of an ophthalmic lens. The regressive and non-regressive rotationally symmetric optical design elements can be combined with any other optical design feature positioned on the same or a different surface of the lens.
    • 本发明的方面提供一种眼科镜片,其包括至少一个回归和至少一个非回归旋转对称的光学设计元件。 回归和非回归光学设计元件可以组合以形成用于透镜的期望的光学功率分布,同时利用构成回归和非回归设计元件的散光矢量的不同相对取向,从而导致减少 有害散光。 回归和非回归旋转对称光学设计元件可以位于不同的透镜表面上并且在光学通信中或可以折叠到相同的透镜表面上。 回归和非回归的旋转对称光学设计元素可以各自贡献于眼科镜片的总添加功率。 回归和非回归的旋转对称光学设计元件可以与位于透镜的相同或不同表面上的任何其它光学设计特征组合。
    • 7. 发明申请
    • Dynamic Ophthalmic Lens Capable of Correcting Night and Day Vision
    • 动态眼镜可以纠正夜间和日间视力
    • US20140043584A1
    • 2014-02-13
    • US13963852
    • 2013-08-09
    • PixelOptics, Inc.
    • Ronald BLUM
    • G02C7/08
    • G02C7/083G02C7/061G02C7/086
    • Disclosed herein is a device that includes a host lens and a dynamic lens adapted to adjust its optical power based upon an input. The dynamic lens is in optical communication with the host lens. The device further comprises a photosensor, a controller electrically connected to the photosensor, and an actuator electrically connected to the controller. The actuator is also connected to the dynamic lens. The actuator provides an input interface to the dynamic lens, which is actuated based upon a signal received from the photosensor. The dynamic lens having a first zone of changeable optical power adapted to adjust its optical power within the range of −0.75 D to +0.75 D and an “optional” second zone of changeable optical power adapted to adjust its optical power within the range of +50 D to +1.25 D.
    • 本文公开了一种包括主镜头和适于基于输入调节其光焦度的动态镜头的装置。 动态镜头与主镜头进行光学通信。 该装置还包括光电传感器,电连接到光电传感器的控制器和电连接到控制器的致动器。 执行器也连接到动态镜头。 致动器提供到动态透镜的输入接口,其基于从光电传感器接收的信号被致动。 所述动态透镜具有适于在-0.75D至+0.75D的范围内调整其光功率的可变光功率的第一区域和适于在其范围内调节其光功率的“可选”的可变光功率区域, 50 D至+1.25 D.
    • 10. 发明授权
    • Multifocal lens having a progressive optical power region and a discontinuity
    • 具有逐行光焦度区域和不连续性的多焦点透镜
    • US08434865B2
    • 2013-05-07
    • US13674321
    • 2012-11-12
    • PixelOptics, Inc.
    • Ronald D. BlumWilliam KokonaskiVenkatramani S. IyerJoshua N. HaddockMark Mattison-Shupnick
    • G02C7/02G02C7/06
    • G02C7/061G02C7/06G02C7/063G02C7/066G02C2202/16
    • Embodiments of the present invention relate to a multifocal lens having a mostly spherical power region and a progressive optical power region. Embodiments of the present invention provide for the proper alignment and positioning of each of these regions, the amount of optical power provided by each of the regions, the optical design of the progressive optical power region, and the size and shape of each of the regions. The combination of these design parameters allows for an optical design having less unwanted astigmatism and distortion as well as both a wider channel width and a shorter channel length compared to conventional PALs. Embodiments of the present invention may also provide a new, inventive far-intermediate distance zone and may further provide for increased vertical stability of vision within a zone of the lens.
    • 本发明的实施例涉及具有大致球面的功率区域和逐行光焦度区域的多焦点透镜。 本发明的实施例提供了这些区域中的每一个的适当对准和定位,由每个区域提供的光功率的量,逐行光焦度区域的光学设计以及每个区域的尺寸和形状 。 与常规PAL相比,这些设计参数的组合允许具有较少有害像散和失真的光学设计以及更宽的通道宽度和更短的通道长度。 本发明的实施例还可以提供新的本发明的远中间距离区域,并且还可以提供在透镜区域内增加的视觉垂直稳定性。