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    • 1. 发明公开
    • MESSSYSTEM ZUR MESSUNG AN WERKZEUGEN IN EINER WERKZEUGMASCHINE
    • 工具机中测量工具的测量系统
    • EP3315254A1
    • 2018-05-02
    • EP17197110.4
    • 2017-10-18
    • Blum-Novotest GmbH
    • DILGER, RolandMOERSCH, NorbertMAIER, Gregor
    • B23Q17/24G02B7/02
    • G01B11/002B23Q17/22B23Q17/2485G01B11/02G01V8/12G02B5/005G02B7/02G02B7/021G02B7/026
    • Ein berührungslos messendes Messsystem mit einem einen Lichtsenderteil und einen Lichtempfängerteil aufweisenden berührungslos messenden Messgerät, zur Positionsbestimmung eines Werkzeuges oder zur Bestimmung der längsten Schneide eines rotierenden Werkzeuges in einer Werkzeugmaschine, wobei dem Lichtsenderteil und/oder dem Lichtempfängerteil eine optische Linsenanordnung zur Formung und Fokussierung eines Lichtstrahls von dem Lichtsenderteil zu dem Lichtempfängerteil zugeordnet ist, wobei die optische Linsenanordnung in einer Linsenfassung aufgenommen ist, wobei die Linsenfassung eine innere und eine äußere, jeweils zylindrische Hülse aufweist, die Linsenanordnung in der inneren Hülse einge-setzt ist, die von der äußeren Hülse zumindest teilweise eingefasst ist, und die Linsenfassung mit der Linsenanordnung in einer Wandung des Lichtsenderteils und/oder des Lichtempfängerteils aufgenommen ist.
    • 的非接触测量系统,具有光发射器部分和光接收具有非接触式测量仪,一种用于确定工具的位置或用于机床的旋转刀具,最长边缘的确定部分,其中,所述光发射器部分和/或光学透镜组件的用于成形和聚焦的光束的光接收器部 由光发射器部分到光接收部分分配,所述光学透镜组件被容纳在透镜固定件,所述透镜安装具有内和外,每个圆柱形套筒,所述透镜组件在所述内套筒导通集,至少在所述外套筒的 被部分地包围,并且透镜框架被透镜组件容纳在发光部件和/或光接收部件的壁中。
    • 8. 发明公开
    • Lens holder
    • Linsenhalter
    • EP2887111A1
    • 2015-06-24
    • EP13199145.7
    • 2013-12-20
    • Axis AB
    • Kullgren, Fredrik
    • G02B7/02
    • G02B7/022G02B7/026G03B17/12Y10T29/49908
    • The present invention relates to a method, and an arrangement for attaching a lens to a lens holder and to a lens holder for attaching a lens. The method comprises: arranging a fixing arc of a fixing part around a compressible retainer of the lens holder, inserting an attachment portion of the lens into the compressible retainer, and reducing a radius of curvature of the fixing arc, such that the compressible retainer of the lens holder is compressed around the attachment portion, thereby attaching the lens to the lens holder.
    • 本发明涉及一种用于将透镜附接到透镜保持器和用于附接透镜的透镜保持器的方法和装置。 该方法包括:将固定部分的固定弧布置在透镜保持器的可压缩保持器周围,将透镜的附接部分插入可压缩保持器中,并减小固定电弧的曲率半径,使得可压缩保持器 透镜保持器围绕附接部分被压缩,从而将透镜附接到透镜保持器。
    • 9. 发明公开
    • LENS ATTACHMENT MECHANISM, LENS ATTACHMENT METHOD AND IMAGING DEVICE
    • OBJEKTIVBEFESTIGUNGSMECHANISMUS,OBJEKTIVBEFESTIGUNGSVERFAHREN UND BILDGEBENDE VORRICHTUNG
    • EP2881774A1
    • 2015-06-10
    • EP13825632.6
    • 2013-06-05
    • Sony Corporation
    • OBA, Eiji
    • G02B7/02H04N5/225
    • H04N5/2254B32B37/12B32B37/142B32B2551/00G02B7/023G02B7/025G02B7/026G02B13/001G02B17/08G03B17/08G03B17/12
    • An insertion part 355 inserted into an insertion hole 255 of a front case 25 in an insertion direction which is a direction of an optical axis and a regulation part 351 for regulating the insertion are formed in a lens holder 35 for holding an image pickup lens 31. Engaging parts 252 and 352 are provided on a surface opposed to a case of the regulation part 351 and on a surface opposed to the regulation part of the front case 25. Projections 3521 of the engaging part 352 are formed surrounding the insertion part 355, and projections 2521 of the engaging part 252 are formed surrounding the insertion hole 255. An interval of the projections of the engaging part 352 is wider than that of the projections of the engaging part 252, and an interval of the projections of the engaging part 252 is formed wider than that of the projections of the engaging part 352. Accordingly, the position of the lens holder relative to the front case is adjusted in a state where the engaging parts 252 and 352 are engaged. The engaged region is bonded with an adhesive and the like in an engaging state where an image pickup lens is positioned at a desired position. The image pickup lens can be precisely mounted at the desired position with airtightness.
    • 在插入方向上插入前壳25的插入孔255的插入部355和用于调节插入的调节部351形成在用于保持图像拾取透镜31的透镜保持器35中 接合部分252和352设置在与调节部分351的壳体相对的表面上,并且在与前壳体25的调节部分相对的表面上。接合部分352的突起3521围绕插入部分355形成, 并且接合部252的突起2521形成为围绕插入孔255.接合部352的突起的间隔比接合部252的突起的间隔宽,并且接合部252的突起的间隔 形成为比接合部352的突起宽。因此,透镜保持件相对于前壳的位置在接合部252和352a的状态下被调节 重新参与。 在图像拾取透镜位于期望位置的接合状态下,接合区域与粘合剂等粘合。 图像拾取透镜可以精确地安装在期望的气密位置。
    • 10. 发明公开
    • Support mechanism for an optical element and method for adjusting an optical element
    • 辅助机构为用于适配的光学元件的光学元件和方法
    • EP2735900A1
    • 2014-05-28
    • EP12193543.1
    • 2012-11-21
    • High Q Laser GmbH
    • Huber, Roland
    • G02B7/00G02B7/02
    • F16M13/022B32B37/1284B32B37/142B32B37/18B32B2551/00F16B1/00F16B2001/0035G02B7/003G02B7/023G02B7/025G02B7/026
    • The invention pertains to a support mechanism for holding and adjusting an optical element (2), the support mechanism comprising a mounting frame (1) having a hollow-cylindrical opening (10) with a first end and a second end for accommodating the optical element (2), characterized by a thread screw (14) at the first end of the opening (10), a circular clamping nut (4) having an external thread, designed for being threaded onto the thread screw (14), and a circular collet (3) having a first part (31) for holding the optical element (2) and a second part (32) with a multitude of collet jaws (33), wherein the clamping nut (4) and the collet (3) are designed for being positioned in the opening (10) in such a way that the optical element (2) is held fixedly in the collet (3), and a tilt orientation of the optical element (2) is adjustable by rotating the collet (3) and fixable. The invention also pertains to a method for positioning and orienting an optical element (2) in a mounting frame (1).
    • 本发明涉及到一个支承机构,用于保持和调节光学元件(2),所述支撑机构包括具有第一端部,用于容纳所述光学元件的中空圆筒形孔(10)和第二端部的安装框架(1) (2)在所述开口(10),具有外螺纹的圆形夹紧螺母(4)的第一端部通过螺纹螺钉(14),其特征,设计用于被螺纹连接到螺纹螺杆(14),和圆形 夹头(3)具有与夹头爪的多个(33)保持所述光学元件(2)和第二部分(32),worin夹紧螺母的第一部分(31)(4)和夹头(3)是 设计用于在寻求一种方式所述开口(10)定位并在光学元件(2)被固定地在夹头保持(3),以及光学元件的倾斜方位(2)是通过旋转所述夹头可调(3 )和解决的。 因此,本发明涉及在安装框架(1)的光学元件(2)的定位和定向的方法。