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    • 1. 发明授权
    • Attachment of optical microscope components
    • 光学显微镜部件的安装
    • US09001419B2
    • 2015-04-07
    • US13577246
    • 2011-02-04
    • Ingo FahlbuschWerner KleinschmidtHeinrich BungerPeter SchnüllWolfgang HartjeGeorg Herbst
    • Ingo FahlbuschWerner KleinschmidtHeinrich BungerPeter SchnüllWolfgang HartjeGeorg Herbst
    • G02B21/24G02B7/14G02B21/02
    • G02B7/14G02B21/02
    • A device for attaching a first optical microscope component part to a second part includes an annular receptacle attached to the second part and an annual insertion part. The annular insertion part includes outside-conical retaining projections. The receptacle includes a base ring having a retaining collar with an inside cone tapering away from the base ring and in which a lateral opening is formed, through which the insertion part can be inserted in the receptacle such that it is located on a pre-locking position in which the annular openings overlap. The insertion part and the receptacle can be moved by reciprocal rotation from the pre-locking position into a locking position in which the outside-conical retaining projections of the insertion part are seated against the inside cone of the retaining collar and press the insertion part on the base ring, whereby the insertion part is locked to the receptacle.
    • 用于将第一光学显微镜部件附接到第二部件的装置包括附接到第二部分的环形插座和年度插入部。 环形插入部分包括外锥形保持突起。 所述容器包括具有保持套环的基座环,所述保持套环具有与所述基座环成锥形的内锥体,并且其中形成有侧向开口,所述插入部件可以通过所述侧孔插入所述插座中,使得其位于预锁定 环形开口重叠的位置。 插入部分和插座可以通过往复旋转从预锁定位置移动到锁定位置,其中插入部分的外锥形保持突起抵靠保持环的内锥体并将插入部分按压在 基座环,由此插入部分被锁定到容器。
    • 2. 发明申请
    • OBJECTIVE
    • 目的
    • US20130003200A1
    • 2013-01-03
    • US13534767
    • 2012-06-27
    • Ingo FahlbuschGeorg HerbstDieter Boening
    • Ingo FahlbuschGeorg HerbstDieter Boening
    • G02B7/02
    • G02B7/08G02B7/102
    • An objective lens assembly is provided, with a sleeve, a first positioning member arranged in the sleeve, which is housed displaceable in longitudinal direction of the sleeve and holds at least one lens, a first adjustment unit which brings the first positioning member into abutment on the inside of the sleeve such that the first positioning member rests against the inside of the sleeve in a first linear contact area and at the same time the displaceability of the first positioning member is maintained. More than one positioning member can be utilized along with multiple lenses and can utilize simple mechanical structures (e.g., blind- and through-holes and pins or shanks) and/or magnetic or magnetisable materials to maintain a desired position of the sleeve.
    • 提供一种物镜组件,其具有套筒,布置在套筒中的第一定位构件,其容纳在套筒的纵向方向上可移动并保持至少一个透镜;第一调节单元,其使第一定位构件邻接 所述套筒的内部使得所述第一定位构件在第一线性接触区域中抵靠所述套筒的内部,并且同时保持所述第一定位构件的位移性。 多个定位构件可以与多个透镜一起使用,并且可以利用简单的机械结构(例如,盲孔和通孔,针或柄)和/或磁性或可磁化材料来保持套筒的期望位置。
    • 4. 发明申请
    • Apochromatically corrected microscope objective
    • 色差校正显微镜物镜
    • US20060279847A1
    • 2006-12-14
    • US11448592
    • 2006-06-07
    • Manfred MatthaeWerner KleinschmidtGeorg Herbst
    • Manfred MatthaeWerner KleinschmidtGeorg Herbst
    • G02B21/02
    • G02B27/0068G02B13/24G02B21/02
    • A microscope objective with high aperture, large object field and apochromatic correction in the wavelength range from ultraviolet to infrared. The microscope objective includes, starting from the object level: a first group of lenses with overall positive refraction power, including a cemented group with positive-negative refraction power effect, made out of one of two lenses, and of a further lens with positive refraction power, a second group of lenses with positive refraction power, including three cemented lenses, a third group of lenses with negative refraction power, including three cemented lenses, in which the side that faces the image plane is convex, a fourth group of lenses, consisting of a lens with positive refraction power and a cemented group of two lenses with positive-negative refraction power, and a fifth group of lenses, including two lenses in a cemented group with negative-positive refraction power.
    • 具有高光圈,大对象场和从紫外到红外波长范围的复消色差校正的显微镜物镜。 显微镜物镜包括:从物体水平开始:具有整体正折射率的第一组透镜,包括具有正负折射光焦度效应的胶合组,由两个透镜中的一个制成,并且具有正折射的另一透镜 电源,具有正折射力的第二组透镜,包括三个胶合透镜,具有负折射光焦度的第三组透镜,包括三个胶合透镜,其中面对图像平面的一侧为凸面,第四组透镜, 包括具有正折射力的透镜和具有正负折射光焦度的两个透镜的胶合组,以及包括具有负正折射光焦度的胶合组中的两个透镜的第五组透镜。
    • 5. 发明申请
    • Microscope objective with axially adjustable correction mounts
    • 显微镜物镜,可轴向调节校正座
    • US20050168843A1
    • 2005-08-04
    • US11022443
    • 2004-12-22
    • Georg HerbstHeinz-Guenther OzimekIngo FahlbuschHeinz-Hermann HenkelKlaus-Dieter Albrecht
    • Georg HerbstHeinz-Guenther OzimekIngo FahlbuschHeinz-Hermann HenkelKlaus-Dieter Albrecht
    • G02B7/02G02B21/02
    • G02B21/02G02B7/023
    • The invention is directed to a microscope objective with axially adjustable correction mounts and is applicable in connection with different cover slips and/or different immersion liquids and/or at different work temperatures. In the microscope objective according to the invention, helical springs which are uniformly distributed along the circumference and act in axial direction are fixed by a first ring which has pins in axial direction on which the helical springs are arranged. The pins engage in bore holes of a second ring. The bore holes are at least deep enough to ensure the required spring path. The two rings with the helical springs arranged therebetween on the pins form a spring retainer which ensures a movement of the parts without play and/or in a springing manner. In principle, the proposed solution can be substituted for all pressure springs in microscope objectives and other objectives and can overcome the disadvantages of using individual springs.
    • 本发明涉及具有可轴向调节的校正支架的显微镜物镜,并且可应用于不同的盖子和/或不同的浸入液体和/或在不同的工作温度下。 在根据本发明的显微镜物镜中,沿着圆周均匀分布并沿轴向作用的螺旋弹簧通过第一环固定,该第一环在轴向方向上具有销,螺旋弹簧布置在该第一环上。 销钉接合第二个环的钻孔。 钻孔至少足够深以确保所需的弹簧路径。 在销之间布置有螺旋弹簧的两个环形成弹簧保持器,其确保零件的运动而不发挥和/或以弹性方式。 原则上,提出的解决方案可以代替显微镜目标和其他目标中的所有压力弹簧,并且可以克服使用单个弹簧的缺点。
    • 8. 发明申请
    • Temperable Lens, Especially For Microscopes
    • 耐温镜片,特别适用于显微镜
    • US20080013195A1
    • 2008-01-17
    • US11791913
    • 2005-12-20
    • Ingo FahlbuschFrank NolteGeorg Herbst
    • Ingo FahlbuschFrank NolteGeorg Herbst
    • G02B7/02
    • G02B21/02G02B7/008
    • The invention is directed to a temperature-controllable objective, particularly for microscopes and other optical equipment, which comprises a main barrel as the main component part of the objective. The main barrel contains at least one correction mount, cylinder sleeves, mounting rings, carrier rings and/or adjusting rings, and imaging optical elements. In order to control the temperature, at least one structural component part of the objective or an element arranged between structural component parts of the objective is constructed as a temperature-controllable element or as a temperature-controllable foil which is connected (not shown) by leads to a device for monitoring temperature. Further, a temperature gauge or temperature sensor is arranged in the objective and is likewise connected to the device for monitoring temperature.
    • 本发明涉及温度可控的目标,特别是对于显微镜和其它光学设备,其包括主镜筒作为物镜的主要组成部分。 主桶包含至少一个校正座,气缸套,安装环,承载环和/或调节环以及成像光学元件。 为了控制温度,物镜的至少一个结构部件或布置在物镜的结构部件之间的元件被构造为温度可控元件或作为温度可控箔片,其被连接(未示出)由 导致监测温度的设备。 此外,温度计或温度传感器布置在物镜中,并且同样地连接到用于监测温度的装置。
    • 9. 发明申请
    • CONTROLLER FOR ACTUATORS IN MICROSCOPE LENSES
    • MICROSCOPE镜片中的执行器控制器
    • US20110082590A1
    • 2011-04-07
    • US12996246
    • 2009-05-30
    • Ingo FahlbuschGeorg Herbst
    • Ingo FahlbuschGeorg Herbst
    • G05B15/00
    • G02B7/023G02B21/02G02B21/241G02B27/0068
    • A controller for microscope lenses for correcting spherical aberration and for adjusting particularly difficult to access microscope lenses to an optimum of imaging quality, enabling automatic adjustment of the different actuators of a microscope lens, to effect a simple, cost-effective, user-friendly, and precise balance, particularly of cover slip deviations and different base thicknesses of Petri dishes for the purposes of increasing imaging quality. At least two movable elements of a microscope objective supporting lenses or lens groups, are provided in a movable manner in the axial direction along the optical axis of the microscope objective relative to the housing of the microscope lens in a motor-actuated manner by way of respective adjusting rings. A controller externally controlled and disposed in the microscope lens is provided for storing different characteristic curves for paths of motion of the movable elements.
    • 用于校正球面像差和用于调整的显微镜镜片的控制器特别难以存取显微镜镜片以获得最佳的成像质量,能够自动调节显微镜镜片的不同致动器,以实现简单,成本效益高,用户友好, 并且为了提高成像质量,特别是培养皿的盖滑差和培养皿的不同基底厚度的精确平衡。 支撑透镜或透镜组的显微镜物镜的至少两个可移动元件以电动机驱动的方式沿着显微镜物镜的光轴在轴向方向上相对于显微镜镜片的外壳以电动机驱动的方式被提供, 各调节环。 提供外部控制和设置在显微镜中的控制器,用于存储可移动元件的运动路径的不同特性曲线。
    • 10. 发明申请
    • Slider for Introduction into an Optical Path of a Light Microscope
    • 用于介绍光学显微镜光路的滑块
    • US20140327961A1
    • 2014-11-06
    • US14360756
    • 2011-11-29
    • Ingo FahlbuschGeorg Herbst
    • Ingo FahlbuschGeorg Herbst
    • G02B21/26
    • G02B21/26G02B21/0092G02B21/24
    • The invention relates to a slider for introduction into an optical path of a light microscope. Such a slider has a housing for arrangement on the light microscope, a holder which can be displaced in the housing in a displacement direction over a displacement length, an optical element which is held by the holder oriented with respect to an optical axis extending perpendicular to the displacement direction, and movement means for displacing the holder. The slider is characterised according to the invention in that at least the portion of the movement means which lies in the displacement direction within the displacement length lies, in a direction perpendicular to a plane fixed by the optical axis and the displacement direction, completely within a coverage area which is covered by the holder upon displacement thereof, wherein the coverage area is fixed by the optical axis as normal.
    • 本发明涉及一种用于引入光学显微镜的光路的滑块。 这种滑块具有用于在光学显微镜上布置的壳体,能够沿位移长度沿位移方向在壳体中移位的保持器,由保持器保持的光学元件相对于垂直于 位移方向和用于移动保持器的移动装置。 根据本发明的滑块的特征在于,移动装置的位于位移长度内的位移方向的至少部分在与由光轴和位移方向固定的平面垂直的方向上完全在一个 覆盖区域,其在位移时被保持器覆盖,其中覆盖区域通常由光轴固定。