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    • 93. 发明授权
    • Stereoscopic microscope with high numerical aperture
    • 具有高数值孔径的立体显微镜
    • US07724427B2
    • 2010-05-25
    • US11664557
    • 2005-09-28
    • Johannes Winterot
    • Johannes Winterot
    • G02B21/20
    • G02B21/22
    • A telescope-type stereomicroscope which is outfitted with an objective and two magnification changers arranged downstream of the objective. In this telescope-type stereomicroscope, the light from an object that is being examined enters the objective. Two light bundles of the light re-exiting from the objective, which are oriented parallel to one another, enter the magnification changers. The optical axes of the magnification changers are arranged at a fixed distance from one another. Each magnification changer has an entrance pupil for the light bundle associated with it. The entrance pupil has a diameter DEP that depends on the respective selected magnification, where the condition DEP>B/1.06 is met at the maximum selected magnification. Optionally, the stereomicroscope meets the condition tan(ω)≧0.16 with respect to the angle ω at which the light coming from an extra-axial point P at the object enters the magnification changers at the lowest possible magnification setting.
    • 一个望远镜型立体显微镜,配有物镜和两个放大倍率调节器,布置在物镜的下游。 在这种望远镜型立体显微镜中,来自被检查物体的光进入物镜。 从物镜重新退出的两个彼此平行取向的光束进入放大率变换器。 倍率变换器的光轴彼此间隔一定距离。 每个变倍器具有与其相关联的光束的入射光瞳。 入射光瞳具有取决于相应选择的放大倍率的直径DEP,其中条件DEP> B / 1.06在最大选择的倍率下被满足。 可选地,立体显微镜相对于来自物体处的非轴外点P的光以最低可能的放大倍数设定进入倍率变换器的角度ω,满足条件tan(ω)≥0.16。
    • 94. 发明申请
    • Arrangement for Filling a Container with Bulk Material
    • 用散装物料填充集装箱的安排
    • US20100108188A1
    • 2010-05-06
    • US12518394
    • 2008-02-21
    • Nico CorrensChristoph NietenMichael Rode
    • Nico CorrensChristoph NietenMichael Rode
    • B65B3/26
    • A01D43/087
    • The invention relates to an arrangement for filling a container (5) with bulk material (3), comprising a filling device with an outflow opening (6) for the bulk material (3) and a container (5) with a filling opening, through which the bulk material (3) passes into the container (5). According to the invention, an arrangement of the abovementioned type is equipped with a measuring device (13) for the repeated detection of image data from the surface (7) of the bulk material (3) in the container (5) during filling and for the repeated determination of filling state values h which are equivalent to the level of the filled bulk material in predefined regions of the bulk material surface, and with a signal processing device for generating control commands from the filling state values h for positioning the outflow opening (6) and the filling opening relative to one another and/or for influencing the quantity of bulk material (3) which flows out of the outflow opening (6) per unit time.
    • 本发明涉及一种用于用散装材料(3)填充容器(5)的装置,包括具有用于散装材料(3)的流出开口(6)和具有填充开口的容器(5)的填充装置 其中散装材料(3)进入容器(5)。 根据本发明,上述类型的装置配备有用于在填充期间从容器(5)中的散装材料(3)的表面(7)反复检测图像数据的测量装置(13),并且用于 填充状态值h的重复确定,其相当于散装材料表面的预定区域中的填充块状材料的水平,以及用于从用于定位流出开口的填充状态值h产生控制命令的信号处理装置 6)和相对于彼此的填充开口和/或用于影响每单位时间流出流出开口(6)的散装材料(3)的量。
    • 97. 发明授权
    • Tube attachment for microscopes
    • 显微镜管附件
    • US07706059B2
    • 2010-04-27
    • US11548956
    • 2006-10-12
    • Axel FreerkCornelia BendlinAnke Vogelgsang
    • Axel FreerkCornelia BendlinAnke Vogelgsang
    • G02B21/00
    • G02B21/24G02B21/20
    • A tube attachment for microscopes which facilitates visual microscope work particularly over extended periods and which can be used universally for different types of microscopes and, at the same time, can be produced economically using simple manufacturing techniques, it is suggested that a tube attachment is constructed as a holder which can be adjusted with respect to height and, optionally, with respect to angle and can be fastened directly to a binocular tube of a microscope. The holder includes two carriers which are displaceable axially relative to one another and which have a forehead rest and a chin support or one carrier with the forehead rest for a user, and devices are provided at the carriers for clamping the adjusting movements of the carriers.
    • 用于显微镜的管附件,其特别是在长时间内促进视觉显微镜工作,并且可以被普遍用于不同类型的显微镜,并且同时可以使用简单的制造技术经济地制造,建议构造管附件 作为可以相对于高度和可选地相对于角度调节的保持器,并且可以直接紧固到显微镜的双目管上。 保持器包括两个可相对于彼此轴向移动的托架,其具有前额支架和下巴支撑件或一个托架,前额头支架用于使用者,并且在托架上设置有用于夹持托架调节运动的装置。
    • 98. 发明授权
    • Correction device for an optical arrangement and confocal microscope with such a device
    • 具有这种装置的光学布置和共聚焦显微镜的校正装置
    • US07692879B2
    • 2010-04-06
    • US11822010
    • 2007-06-29
    • Joerg SteinertMatthias WaldSaskia Pergande
    • Joerg SteinertMatthias WaldSaskia Pergande
    • G02B27/00
    • G02B7/004G02B21/0052G02B21/0072G02B26/0875G02B27/0068
    • A correction device for an imaging optical arrangement exhibiting a light path (1), in particular for a microscope, that exhibits at least one plane-parallel transparent plate (9), which is held in a mounting plate in the image beam path (1) and is propelable around at least one axle in a tipping and/or a swiveling motion, in order in adjust a definite parallel misalignment of the beams in the image beam path (1) by a change in the tipping situation of the plate (9). A confocal microscope with such a correction device exhibits a confocal screen (4), which illustrates a specimen mark (10), whereby the plane-parallel plate (9) is placed in front of the detector unit (2) in the light path (1), in order to center the illustration of the aperture diaphragm on the detector unit.
    • 一种用于成像光学装置的校正装置,其具有显示至少一个平面平行的透明板(9)的光路(1),特别是显微镜,其保持在图像光束路径(1)中的安装板 ),并且在倾翻和/或旋转运动中围绕至少一个轴可推进,以便通过板(9)的倾翻情况的变化来调整图像光束路径(1)中的光束的确定的平行的未对准 )。 具有这种校正装置的共聚焦显微镜显示出共焦屏(4),其示出了标本(10),由此平面平行板(9)被放置在光路中的检测器单元(2)的前面 1),以便将孔径光阑的图示置于检测器单元上。
    • 99. 发明授权
    • Optical scanning microscope
    • 光学扫描显微镜
    • US07688504B2
    • 2010-03-30
    • US12320331
    • 2009-01-23
    • Ralf Wolleschensky
    • Ralf Wolleschensky
    • G02B21/06
    • G02B21/0032G02B21/002
    • Microscope, in particular an optical scanning microscope with illumination of a specimen via a beam splitter, which is arranged in an objective pupil and includes at least a reflecting first portion and at least a transmitting second portion, whereby the reflecting portion serves to couple in the illumination light and the transmitting portion serves to pass the detection light in the detection direction or the transmitting portion serves to couple in the illumination light and the reflecting portion serves to couple out the detection light, with a first scanning arrangement. Means are provided in the detection light path for the overlay of at least one further scanning arrangement for illumination and detection.
    • 显微镜,特别是具有通过分束器照射样品的光学扫描显微镜,其被布置在物镜光瞳中,并且至少包括反射第一部分和至少透射第二部分,由此反射部分用于在 照明光和透射部分用于使检测方向上的检测光通过,或者透射部分用于在照明光中耦合,并且反射部分用于以第一扫描装置耦合检测光。 在用于照明和检测的至少一个另外的扫描装置的覆盖的检测光路中提供了装置。