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    • 1. 发明授权
    • Optical lens holder
    • 光学透镜架
    • US08125721B2
    • 2012-02-28
    • US10598979
    • 2005-03-16
    • Gerald FournandJames A. ReedDanne Wright
    • Gerald FournandJames A. ReedDanne Wright
    • G02B7/02
    • G02B7/02
    • The invention relates to an optical lens holder (1) comprising a supporting means (2) and a first and a second arm (10, 20, 30) defining a lens holder general plane, first and second arms being relatively movable with regards to each other and each arm having spaced apart first and second end portions (10a, 20a, 30a, 10c, 20c, 30c) and an intermediate portion (10b, 20b, 30b), the arms being mounted on the supporting means through their first end portions and the second end portions of each arm comprising an optical lens accommodating means (21, 22) facing each other, whereby an optical lens (3) can be maintained within the accommodating means of the first and second arms with its optical axis orthogonal to the general plane of the lens holder through at least one, preferably one or two contact points between the lens periphery and each of the first and second lens accommodating means, wherein at least the second end portion of each arm comprises a material having a dielectric constant at 1 MHz equal to or higher than the dielectric constant of the optical lens material.
    • 本发明涉及一种光学透镜保持器(1),其包括支撑装置(2)和限定透镜保持器一般平面的第一和第二臂(10,20,30),第一和第二臂相对于每个平面可相对移动 另一个和每个臂具有间隔开的第一和第二端部(10a,20a,30a,10c,20c,30c)和中间部分(10b,20b,30b),臂通过其第一端部安装在支撑装置上 并且每个臂的第二端部包括彼此面对的光学透镜容纳装置(21,22),由此光学透镜(3)可以保持在第一和第二臂的容纳装置内,其光轴与 透镜保持器的通常平面通过透镜周边与每个第一和第二透镜容纳装置之间的至少一个,优选一个或两个接触点,其中每个臂的至少第二端部包括具有介电常数的材料 在1MHz等于或高于光学透镜材料的介电常数。
    • 3. 发明授权
    • Optical lens holder
    • 光学透镜架
    • US06972914B2
    • 2005-12-06
    • US10802173
    • 2004-03-17
    • Gerald FournandJames A. ReedDanne Wright
    • Gerald FournandJames A. ReedDanne Wright
    • C23C14/50G02B7/02
    • G02B7/02
    • The invention relates to an optical lens holder comprising a supporting means and a first and a second arm defining a lens holder general plane, first and second arms being relatively movable with regards to each other and each arm having spaced apart first and second end portions and an intermediate portion, the arms being mounted on the supporting means through their first end portions and the second end portions of each arm comprising an optical lens accommodating means facing each other, whereby an optical lens can be maintained within the accommodating means of the first and second arms with its optical axis orthogonal to the general plane of the lens holder through at least one, preferably one or two contact points between the lens periphery and each of the first and second lens accommodating means, wherein at least the second end portion of each arm comprises a material having a dielectric constant at 1 MHz equal to or higher than the dielectric constant of the optical lens material.
    • 本发明涉及一种光学透镜保持器,其包括支撑装置和限定透镜保持器平面的第一和第二臂,第一和第二臂相对于彼此可相对移动,并且每个臂具有间隔开的第一和第二端部, 中间部分,臂通过其第一端部安装在支撑装置上,并且每个臂的第二端部包括彼此面对的光学透镜容纳装置,由此可以将光学透镜保持在第一和第二端部的容纳装置内 第二臂的光轴通过透镜周边与每个第一和第二透镜容纳装置之间的至少一个,优选地一个或两个接触点,与透镜保持器的总平面垂直,其中至少每个的第二端部 臂包括具有等于或高于光学透镜配合物的介电常数的1MHz的介电常数的材料 rial。
    • 4. 发明申请
    • Optical Lens Holder
    • 光学透镜座
    • US20070201150A1
    • 2007-08-30
    • US10598979
    • 2005-03-16
    • Gerald FournandJames ReedDanne Wright
    • Gerald FournandJames ReedDanne Wright
    • G02B7/02
    • G02B7/02
    • The invention relates to an optical lens holder (1) comprising a supporting means (2) and a first and a second arm (10, 20, 30) defining a lens holder general plane, first and second arms being relatively movable with regards to each other and each arm having spaced apart first and second end portions (10a, 20a, 30a, 10c, 20c, 30c) and an intermediate portion (10b, 20b, 30b), the arms being mounted on the supporting means through their first end portions and the second end portions of each arm comprising an optical lens accommodating means (21, 22) facing each other, whereby an optical lens (3) can be maintained within the accommodating means of the first and second arms with its optical axis orthogonal to the general plane of the lens holder through at least one, preferably one or two contact points between the lens periphery and each of the first and second lens accommodating means, wherein at least the second end portion of each arm comprises a material having a dielectric constant at 1 MHz equal to or higher than the dielectric constant of the optical lens material.
    • 本发明涉及一种光学透镜保持器(1),其包括支撑装置(2)和限定透镜保持器一般平面的第一和第二臂(10,20,30),第一和第二臂相对于每个平面可相对移动 另一个和每个臂具有间隔开的第一和第二端部(10a,20a,30a,10c,20c,30c)和中间部分(10b,20b,30b),所述臂被安装 在支撑装置上通过其第一端部和每个臂的第二端部包括彼此面对的光学透镜容纳装置(21,22),由此可以将光学透镜(3)保持在第一和第二端部的容纳装置内 第二臂的光轴通过透镜周边与每个第一和第二透镜容纳装置之间的至少一个,优选地一个或两个接触点,与透镜保持器的总平面垂直,其中至少每个的第二端部 手臂包括材料h 获得等于或高于光学透镜材料的介电常数的1MHz的介电常数。
    • 5. 发明申请
    • OPTICAL LENS HOLDER
    • 光学镜头支架
    • US20050207033A1
    • 2005-09-22
    • US10802173
    • 2004-03-17
    • Gerald FournandJames ReedDanne Wright
    • Gerald FournandJames ReedDanne Wright
    • C23C14/50G02B7/02G11B17/30G11B21/02
    • G02B7/02
    • The invention relates to an optical lens holder comprising a supporting means and a first and a second arm defining a lens holder general plane, first and second arms being relatively movable with regards to each other and each arm having spaced apart first and second end portions and an intermediate portion, the arms being mounted on the supporting means through their first end portions and the second end portions of each arm comprising an optical lens accommodating means facing each other, whereby an optical lens can be maintained within the accommodating means of the first and second arms with its optical axis orthogonal to the general plane of the lens holder through at least one, preferably one or two contact points between the lens periphery and each of the first and second lens accommodating means, wherein at least the second end portion of each arm comprises a material having a dielectric constant at 1 MHz equal to or higher than the dielectric constant of the optical lens material.
    • 本发明涉及一种光学透镜保持器,其包括支撑装置和限定透镜保持器平面的第一和第二臂,第一和第二臂相对于彼此可相对移动,并且每个臂具有间隔开的第一和第二端部, 中间部分,臂通过其第一端部安装在支撑装置上,并且每个臂的第二端部包括彼此面对的光学透镜容纳装置,由此可以将光学透镜保持在第一和第二端部的容纳装置内 第二臂的光轴通过透镜周边与每个第一和第二透镜容纳装置之间的至少一个,优选地一个或两个接触点,与透镜保持器的总平面垂直,其中至少每个的第二端部 臂包括具有等于或高于光学透镜配合物的介电常数的1MHz的介电常数的材料 rial。
    • 9. 发明申请
    • Process for Edging Optical Lenses
    • 光学镜片切割工艺
    • US20090059383A1
    • 2009-03-05
    • US12279681
    • 2007-02-14
    • Gerald FournandAgnes De Leuze-JallouliBruce Keegan
    • Gerald FournandAgnes De Leuze-JallouliBruce Keegan
    • G02B3/00B24B9/14
    • B24B9/146
    • A process for edging an optical lens for conforming the optical lens to the size and shape of a lens frame into which the optical lens is to be accommodated, said process comprising: a) providing an optical lens having a convex surface, the convex surface being provided with an anti-smudge topcoat rendering the optical lens inappropriate for edging; b) fixing a mounting element on the convex surface of the optical lens, preferably on its center, by means of an adhesive pad adhering both to the mounting element and the convex surface of the optical lens to form a mounting element/optical lens assembly; c) placing the mounting element/optical lens assembly in a grinding machine so that the optical lens is firmly maintained; and d) edging the optical lens to the intended size and shape, wherein, prior to step (b) of fixing the mounting element, the anti-smudge topcoat on the convex surface of the optical lens is pre-treated with a solvent selected from the group consisting of alkanols and dialkylketones under a mechanical stress.
    • 一种用于将光学透镜加工成用于容纳光学透镜的透镜框的尺寸和形状的光学透镜的处理,所述方法包括:a)提供具有凸面的光学透镜,所述凸面为 提供防污面漆,使光学透镜不适合磨边; b)通过粘附在光学透镜的安装元件和凸面上的粘合垫将光学透镜的凸表面,优选地在其中心固定安装元件,以形成安装元件/光学透镜组件; c)将安装元件/光学透镜组件放置在研磨机中,使光学透镜牢固地保持; 以及d)将所述光学透镜加工成所需的尺寸和形状,其中,在固定所述安装元件的步骤(b)之前,将所述光学透镜的凸表面上的防污涂料面漆用选自以下的溶剂进行预处理: 在机械应力下由链烷醇和二烷基酮组成的组。