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    • 5. 发明授权
    • Condenser arrangement for brightfield illumination and/or darkfield illumination for optical microscopes
    • 用于光场显微镜的明场照明和/或暗场照明的冷凝器布置
    • US07430075B2
    • 2008-09-30
    • US11193845
    • 2005-07-29
    • Peter DietrichMichael BrehmHeino Heise
    • Peter DietrichMichael BrehmHeino Heise
    • G02B21/14
    • G02B21/125
    • A condenser arrangement for brightfield illumination and/or darkfield illumination for optical microscopes comprises in a housing basic optics having at least one lens, at least one front optics which can be inserted into the illumination beam path in front of the basic optics, and means for inserting the front optics into the illumination beam path of the microscope. A first swiveling arm and a second swiveling arm are swivelably arranged at the housing of the condenser. The first swiveling arm carries first front optics with a high aperture for brightfield illumination and the second swiveling arm carries second front optics for darkfield illumination. The two swiveling arms are arranged at a defined distance from the shared basic optics of the condenser in direction of the optical axis of the illumination beam path. An aperture iris diaphragm is provided on the object side in front of the basic optics and is opened when the cardioid optics are inserted. Further, a darkfield slide with an annular mirror element is provided on the object side at the housing. Operator's controls serve to swivel the two swiveling arms for moving the darkfield slide and for adjusting the aperture iris diaphragm.
    • 用于光学显微镜的明场照明和/或暗场照明的冷凝器布置包括在具有至少一个透镜的壳体基本光学元件中,至少一个可以被插入到基本光学器件前面的照明光束路径中的前光学器件,以及用于 将前光学元件插入显微镜的照明光束路径。 第一旋转臂和第二旋转臂可旋转地布置在冷凝器的壳体处。 第一个旋转臂承载第一个具有高光圈的前光学器件,用于明场照明,第二个旋转臂承载用于暗场照明的第二个前光学元件。 两个旋转臂在照明光束路径的光轴方向上以与冷凝器的共用基本光学器件隔开的距离布置。 光阑光阑设置在基本光学元件前方的物体侧,并且当插入心形光学元件时打开。 此外,在壳体的物体侧设置具有环形镜元件的暗视野滑块。 操作员的控制装置用于旋转两个旋转臂以移动暗场滑块并调节孔径光阑。
    • 7. 发明申请
    • Illumination Device, In Particular for Microscopes
    • 照明装置,特别是显微镜
    • US20090224694A1
    • 2009-09-10
    • US11887462
    • 2006-06-22
    • Lutz HöringAndreas NolteMichael BrehmMario Sondermann
    • Lutz HöringAndreas NolteMichael BrehmMario Sondermann
    • H05B37/02H01J1/63
    • G02B21/06
    • The present invention is directed to a controllable microscope illumination within a microscope system by which all essential contrasting methods in microscopy can be realized. The illumination device according to the invention comprises a plurality of individual light sources which can be regulated with respect to brightness, wherein these individual light sources are formed as unit cells and form a luminous surface by a periodic arrangement. In an advantageous arrangement, imaging optics are associated with each individual light source in order to magnify the image of the source surface of the individual light source so that the images of the source surfaces of adjacent individual light sources touch. Illumination variants for all of the essential contrasting methods in microscopy can be generated by means of the proposed solution. The proposed LED illumination is electronically switchable, can be regulated with respect to brightness, supplies all colors, is long-lasting and economical. LEDs have a long life and are very robust and insensitive to vibrations. The spatial light distribution and the color temperature are adjustable.
    • 本发明涉及在显微镜系统内的可控显微照明,通过该照明可以实现显微镜中的所有必要的对比方法。 根据本发明的照明装置包括可以相对于亮度调节的多个单独的光源,其中这些单个光源被形成为单元电池并且通过周期性布置形成发光表面。 在有利的布置中,成像光学器件与每个单独的光源相关联,以便放大单个光源的源表面的图像,使得相邻单独光源的源表面的图像接触。 通过提出的解决方案可以产生显微镜中所有基本对比方法的照明变体。 提出的LED照明是电子可切换的,可以根据亮度进行调节,供应所有颜色,是持久和经济的。 LED寿命长,非常坚固,对振动不敏感。 空间光分布和色温可调。
    • 9. 发明授权
    • Illumination device, in particular for microscopes
    • 照明装置,特别是显微镜
    • US08125709B2
    • 2012-02-28
    • US11887462
    • 2006-06-22
    • Lutz HoeringAndreas NolteMichael BrehmMario Sondermann
    • Lutz HoeringAndreas NolteMichael BrehmMario Sondermann
    • G02B21/06
    • G02B21/06
    • The present invention is directed to a controllable microscope illumination within a microscope system by which all essential contrasting methods in microscopy can be realized. The illumination device according to the invention comprises a plurality of individual light sources which can be regulated with respect to brightness, wherein these individual light sources are formed as unit cells and form a luminous surface by a periodic arrangement. In an advantageous arrangement, imaging optics are associated with each individual light source in order to magnify the image of the source surface of the individual light source so that the images of the source surfaces of adjacent individual light sources touch. Illumination variants for all of the essential contrasting methods in microscopy can be generated by way of the proposed solution. The proposed LED illumination is electronically switchable, can be regulated with respect to brightness, supplies all colors, is long-lasting and economical. LEDs have a long life and are very robust and insensitive to vibrations. The spatial light distribution and the color temperature are adjustable.
    • 本发明涉及在显微镜系统内的可控显微照明,通过该照明可以实现显微镜中的所有必要的对比方法。 根据本发明的照明装置包括可以相对于亮度调节的多个单独的光源,其中这些单个光源被形成为单元电池并且通过周期性布置形成发光表面。 在有利的布置中,成像光学器件与每个单独的光源相关联,以便放大单个光源的源表面的图像,使得相邻单独光源的源表面的图像接触。 可以通过提出的解决方案来产生显微镜中所有基本对比方法的照明变体。 提出的LED照明是电子可切换的,可以根据亮度进行调节,供应所有颜色,是持久和经济的。 LED寿命长,非常坚固,对振动不敏感。 空间光分布和色温可调。
    • 10. 发明申请
    • Optical system
    • 光学系统
    • US20090225408A1
    • 2009-09-10
    • US11664734
    • 2005-09-21
    • Michael BrehmRolf Wartmann
    • Michael BrehmRolf Wartmann
    • G02B21/06
    • G02B21/082
    • An optical system for arranging between a light source and a field diaphragm in an illumination beam path of a microscope comprises n imaging optical elements with focal lengths fi and Abbe numbers νi (i=1, . . . , n). The following relationship is met for the optical system: ∑ i = 1 n  h i f i · v i ≤ 0.07 , where hi is one half of the bundle diameter of a bundle of light rays proceeding from a point of the light source at the entrance to the imaging optical element i.
    • 用于在显微镜的照明光束路径中的光源和场隔膜之间布置的光学系统包括具有焦距fi和阿贝数nui(i = 1,...,n)的n个成像光学元件。 光学系统满足以下关系: Σ = 1 n > h f v i <= 0.07 从入射处的光源的点到成像光学元件i的一束光线的直径。