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    • 2. 发明申请
    • APPARATUS FOR THE AUTOMATIC ADJUSTMENT OF THE VIEWER SETTINGS IN MICROSCOPES
    • 用于自动调整显微镜观察者设置的装置
    • US20070097495A1
    • 2007-05-03
    • US11538994
    • 2006-10-05
    • Johannes KnoblichThomas SerflingTobias KaufholdDetlef Hein
    • Johannes KnoblichThomas SerflingTobias KaufholdDetlef Hein
    • G02B21/00
    • G02B21/26
    • The present invention is directed to an apparatus for the automatic adjustment of viewer settings in microscopes, particularly viewing height and viewing angle, interpupillary distance and/or dioptric compensation. In the apparatus according to the invention for the automatic adjustment of viewer settings in microscopes, the viewer settings with respect to viewing height and/or viewing angle and/or interpupillary distance and/or dioptric compensation can be automatically adjusted and/or predetermined, and these user-specific settings can be stored in a reproducible manner. The proposed solution is provided particularly for the automatic adjustment of viewer settings in microscopes regardless of the type of microscope. The solution according to the invention provides an apparatus for the automatic adjustment of viewer settings in microscopes by which the viewer settings can be adapted quickly and precisely to requirements, particularly to the requirements of different users. In this connection, the functionality of the microscope is improved, for example, by a constant regulation of a one-time preset ergonomic viewer setting, and the storage and reproduction of user-specific viewer settings are likewise improved.
    • 本发明涉及一种用于在显微镜中自动调整观看者设置的装置,特别是观看高度和视角,瞳孔间距离和/或屈光度补偿。 在根据本发明的用于在显微镜中自动调节观看者设置的装置中,可以自动调整和/或预定相对于观看高度和/或视角和/或瞳孔间距离和/或度数补偿的观看者设置,以及 这些用户特定设置可以以可重复的方式存储。 提出的解决方案特别适用于显微镜中的观看者设置的自动调整,而不管显微镜的类型如何。 根据本发明的解决方案提供了一种用于在显微镜中自动调节观看者设置的装置,通过该装置,观看者设置可以快速且精确地适应要求,特别是适应不同用户的要求。 在这方面,改善了显微镜的功能,例如通过对一次预设的人体工程学观察者设置的恒定调节,并且同样改进了用户特定观看者设置的存储和再现。
    • 3. 发明申请
    • MODULAR UNIT FOR THE DISTRIBUTION OF THE LIGHT FLOW OF A COLD LIGHT SOURCE
    • 用于分配冷光源的光流的模块化单元
    • US20060275002A1
    • 2006-12-07
    • US11421598
    • 2006-06-01
    • Johannes KnoblichThomas SerflingTobias KaufholdDetlef Hein
    • Johannes KnoblichThomas SerflingTobias KaufholdDetlef Hein
    • G02B6/02
    • G02B6/0006G02B6/266G02B21/22G02B27/106
    • The present invention is directed to a modular unit for the distribution of the light flow of a cold light source which makes it possible to combine different illumination methods in mixed-light operation with only one individual high-power cold light source and to switch between illumination methods. In the modular unit according to the invention for the distribution of the light flow of a cold light source, the light flows of a cold light source which are distributed to a plurality of cross sections can be manipulated individually, and elements provided for the manipulation of the light are constructed in such a way that an adaptation possibility for different types of light guides is provided at the output of each individual cross section. Any combinations of optical elements for beam shaping, beam splitting and/or beam guiding can be used to distribute the light flow. In an advantageous construction, a light guide having a large input cross section and a plurality of smaller, output cross sections is used to distribute the light flow of the cold light source. The proposed modular unit for the distribution of the light flow of a cold light source is provided for microscope applications in particular but is also suitable for other applications in which different illumination methods are to be realized individually and in combination using only one light source.
    • 本发明涉及一种用于分配冷光源的光流的模块化单元,其使得可以将混合光操作中的不同照明方法与仅一个单独的高功率冷光源组合并且在照明 方法。 在根据本发明的用于分配冷光源的光流的模块化单元中,分配给多个横截面的冷光源的光流可以单独操作,并且用于操纵 以这样的方式构造光,使得在每个单独横截面的输出处提供用于不同类型的光导的适应可能性。 用于光束整形,光束分割和/或光束引导的光学元件的任何组合可以用于分配光流。 在有利的结构中,使用具有大的输入横截面的导光体和多个较小的输出横截面来分配冷光源的光流。 所提出的用于分配冷光源的光流的模块化单元特别用于显微镜应用,但也适用于其中单独实现不同照明方法并且仅使用一个光源组合的其他应用。
    • 4. 发明申请
    • Observation device with separate operating unit
    • 具有独立操作单元的观察装置
    • US20050111087A1
    • 2005-05-26
    • US10993659
    • 2004-11-19
    • Johannes KnoblichThomas SerflingTobias Kaufhold
    • Johannes KnoblichThomas SerflingTobias Kaufhold
    • G02B21/24G02B21/00
    • G02B21/24
    • The invention is directed to an observation device in which a user observes objects or process flows and influences the display of the object or the flow of the process by entering operating commands and control demands. The observation device is outfitted with an operating unit which is spatially separable with respect to the rest of the components of the observation device. According to the invention, a device for displaying and presetting adjustment values relating to the device parameters and/or a device for displaying images of the object or process flow to be observed are provided at the operating unit. These display devices can preferably be constructed as a touch screen which enables an optical display of the adjusted device parameters and a graphic display of the object or process flow to be observed and makes it possible to enter operating commands and control commands by touching the display surface
    • 本发明涉及一种观察装置,其中用户通过输入操作命令和控制需求来观察对象或处理流并影响对象的显示或处理的流程。 观察装置配备有相对于观察装置的其余部件在空间上可分离的操作单元。 根据本发明,在操作单元处提供用于显示和预设与设备参数相关的调整值的设备和/或用于显示要观察的对象或处理流程的图像的设备。 这些显示装置可以优选构造为触摸屏,其能够观察调整的设备参数的光学显示和对象或处理流程的图形显示,并且可以通过触摸显示表面来输入操作命令和控制命令
    • 7. 发明申请
    • METHOD FOR EQUALIZING ARBITRARY PARFOCAL LENGTHS OF OBJECTIVES WHEN FOCUSING STEREOMICROSCOPES AND MACROSCOPES
    • 当聚焦多普勒和宏观时均衡化目标的仲裁长度的方法
    • US20120008193A1
    • 2012-01-12
    • US13162765
    • 2011-06-17
    • Gerhard MöllerAxel LaschkeThomas SerflingSteffen LeidenbachDetlef Hein
    • Gerhard MöllerAxel LaschkeThomas SerflingSteffen LeidenbachDetlef Hein
    • G02B21/22
    • G02B21/248G02B21/22G02B21/241G02B21/26
    • The invention is directed to a method for equalizing arbitrary parfocal lengths of objectives when focusing stereomicroscopes and macroscopes, including an objective changer (4) equipped with differently parfocalized and/or non-parfocalized objectives (5), and focusing devices for automatic focusing when changing an object or objective. The focusing devices are controlled by control devices according to object and objective changer data and data for the travel path stored previously in a storage device. When changing non-parfocal objectives (5) arranged in an objective changer (4), automatic focusing is carried out. During an objective change, the danger of a collision between objectives (5) arranged in the objective changer (4) and the object or the object carrier (1.1) due to an unfavorable combination of overall length and parfocal length of the objectives (5) with non-parfocal objectives (5) is detected, an error message is outputted and a parfocality manager is blocked in case of an unfavorable combination in a way such that automatic refocusing cannot be carried out.
    • 本发明涉及一种用于在聚焦立体显微镜和宏观显微镜时均衡任意对焦长度的方法,包括配备有不同的准焦点和/或非参考目标(5)的物镜(4),以及用于当改变时的自动聚焦的聚焦装置 一个对象或目标。 聚焦装置由控制装置根据物体和物镜更换器数据以及先前存储在存储装置中的旅行路径的数据进行控制。 当改变配置在物镜(4)中的非焦距物镜(5)时,进行自动对焦。 在客观改变期间,由于目标(5)的总长度和平均焦距的不利组合,布置在物镜(4)中的物镜(5)与物体或物体载体(1.1)之间发生碰撞的危险, 检测到非焦点目标(5)时,输出错误消息,并且在不能进行自动重新聚焦的方式中不利组合的情况下,parfocality管理器被阻塞。