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    • 54. 发明授权
    • Device and method for determining optical parameters
    • 用于确定光学参数的装置和方法
    • US07740355B2
    • 2010-06-22
    • US11883046
    • 2006-01-26
    • Rainer SessnerLeonhard SchmidDietmar UttenweilerJochen BrosigWerner Mueller
    • Rainer SessnerLeonhard SchmidDietmar UttenweilerJochen BrosigWerner Mueller
    • A61B3/10A61B3/14A61B3/00
    • G02C13/005G02C13/003
    • The invention relates to a device (10) for determining the optical parameters of a user comprising: at least two image recording devices (14, 16), which are configured and arranged to respectively generate image data of at least sub-sections of the head of the user (30); a data processing unit comprising a user data determination device, which is configured to use the generated image data to determine user data relating to at least one sub-section of the head, or at least one sub-section of a system placed on the head that supports a pair of glasses (38) of the user (30) in a normal position of wear, the user data containing the three-dimensional location information of predetermined points in the head sub-section or the system sub-section and comprising a parameter determination unit, which is configured to determine at least some of the optical parameters of the user (30); a data output device, which outputs at least some of the determined optical parameters of the user (30). The invention also relates to an additional device, a corresponding method and a computer program.
    • 本发明涉及一种用于确定用户的光学参数的设备(10),包括:至少两个图像记录设备(14,16),其被配置和布置成分别生成头部的至少子部分的图像数据 的用户(30); 数据处理单元,包括用户数据确定装置,其被配置为使用所生成的图像数据来确定与头部的至少一个子部分相关的用户数据,或者放置在头部的系统的至少一个子部分 支撑用户(30)的正常佩戴位置的一对眼镜(38),所述用户数据包含头部子部分或系统子部分中的预定点的三维位置信息,并且包括 参数确定单元,被配置为确定用户(30)的至少一些光学参数; 数据输出设备,其输出用户(30)的所确定的光学参数中的至少一些。 本发明还涉及附加装置,相应的方法和计算机程序。
    • 55. 发明申请
    • Device and Method for Determining Optical Parameters
    • 用于确定光学参数的装置和方法
    • US20090021693A1
    • 2009-01-22
    • US11883046
    • 2006-01-26
    • Rainer SessnerLeonhard SchmidDietmar UttenweilerJochen BrosigWerner Mueller
    • Rainer SessnerLeonhard SchmidDietmar UttenweilerJochen BrosigWerner Mueller
    • A61B3/11A61B3/15
    • G02C13/005G02C13/003
    • The invention relates to a device (10) for determining the optical parameters of a user comprising: at least two image recording devices (14, 16), which are configured and arranged to respectively generate image data of at least sub-sections of the head of the user (30); a data processing unit comprising a user data determination device, which is configured to use the generated image data to determine user data relating to at least one sub-section of the head, or at least one sub-section of a system placed on the head that supports a pair of glasses (38) of the user (30) in a normal position of wear, the user data containing the three-dimensional location information of predetermined points in the head sub-section or the system sub-section and comprising a parameter determination unit, which is configured to determine at least some of the optical parameters of the user (30); a data output device, which outputs at least some of the determined optical parameters of the user (30). The invention also relates to an additional device, a corresponding method and a computer program.
    • 本发明涉及一种用于确定用户的光学参数的设备(10),包括:至少两个图像记录设备(14,16),其被配置和布置成分别生成头部的至少子部分的图像数据 的用户(30); 数据处理单元,包括用户数据确定装置,其被配置为使用所生成的图像数据来确定与头部的至少一个子部分相关的用户数据,或者放置在头部的系统的至少一个子部分 支撑用户(30)的正常佩戴位置的一对眼镜(38),所述用户数据包含头部子部分或系统子部分中的预定点的三维位置信息,并且包括 参数确定单元,被配置为确定用户(30)的至少一些光学参数; 数据输出设备,其输出用户(30)的所确定的光学参数中的至少一些。 本发明还涉及附加装置,相应的方法和计算机程序。
    • 58. 发明授权
    • Method of manufacturing progressive ophthalmic lenses
    • US06685316B2
    • 2004-02-03
    • US10195353
    • 2002-07-16
    • Peter BaumbachGregor EsserWerner MuellerJochen BrosigWalter HaimerlHelmut AltheimerHerbert Pfeiffer
    • Peter BaumbachGregor EsserWerner MuellerJochen BrosigWalter HaimerlHelmut AltheimerHerbert Pfeiffer
    • G02C706
    • G02C7/068G02C7/027G02C7/028G02C7/061
    • What is described here is a method of manufacturing progressive ophthalmic lenses whereof each is produced in correspondence with the individual data of a specific spectacle wearer, and whereof each presents a first surface having a defined surface power value in the surface apex, and presents a non-spherical second surface (prescription surface) whose surface power varies along a line (referred to as principal line in the following) that follows at least approximately the main line of sight when the view is lowered, such that the ophthalmic lens produces a first effect in a first reference point, which is suitable for viewing in a first distance envisaged for the respective application, and that this effect varies along the principal line by a predetermined value (addition Add) to a second value present in a second reference point, which is suitable for viewing in a second distance envisaged for the respective application, and whose second surface possibly presents a surface astigmatism optionally for partly compensating an ocular astigmatism and/or the astigmatism of oblique bundles. The inventive method excels itself by the following steps of operation: initially, ophthalmic lens blanks (blanks) are produced with a finished first surface in a defined—particularly comparatively narrow—grading of the surface power value, starting out from the individual data, specifically at least the respective required first effect Df the addition Add and possibly the value and the axial position of the ocular astigmatism of the spectacle wearer for whom the respective ophthalmic lens is intended, and on the basis of further design data, a first surface with a defined surface power value D, is selected and the second surface is so computed that the surface power value D2f of the second surface, which is required in the first reference point, is adjusted in correspondence with the respective selected surface power D, of the first surface so that, as a function of the respective design data for one and the same first effect D, and one and the same addition Add and possibly also one and the same value and axial position of the ocular astigmatism, different pairings of first surfaces, which are distinguished from each other at least with respect to the surface power value D1 and of associated second surfaces computed on an individualized basis in each case are achieved.
    • 60. 发明授权
    • Planetary gear extruder for the compounding and extrusion of plastic
materials
    • 行星齿轮挤出机用于复合和挤出塑料材料
    • US4889430A
    • 1989-12-26
    • US339664
    • 1989-04-18
    • Werner Mueller
    • Werner Mueller
    • B29C47/42
    • B29C47/42B29C47/0009
    • A planetary gear extruder for the compounding and extrusion of thermoplastic materials, in which an annular groove is formed in the metallic stop ring to receive a ceramic body which is engageable by the forward ends of the planetary spindles in order to reduce friction. A ceramic body may additionally also be arranged in a recess in the end face of each of the planetary spindles, aligned with and adapted to engage the ceramic body mounted in the stop ring. As a result, the coefficients of friction between the stop ring and the end faces of the spindles are reduced considerably, consequently reducing the wear on the planetary spindles themselves and the central spindle.
    • 一种用于热塑性材料的混合和挤出的行星齿轮挤出机,其中在金属制止环中形成环形槽以容纳陶瓷体,该陶瓷体可通过行星主轴的前端接合以减少摩擦。 陶瓷体还可以布置在每个行星主轴的端面中的凹部中,该凹槽与安装在止动环中的陶瓷体对准并适于接合。 结果,止动环与主轴端面之间的摩擦系数显着降低,从而减小了行星主轴本身和中心主轴的磨损。