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    • 7. 发明授权
    • Method for optimizing an intensity of a useful light distribution
    • 用于优化有用光分布强度的方法
    • US09519150B2
    • 2016-12-13
    • US14449642
    • 2014-08-01
    • JENOPTIK Optical Systems GmbH
    • Chris SchildTobias Graf
    • G02B27/46H01S3/13G02B27/09H01S3/23F21V13/02
    • G02B27/0927F21V13/02H01S3/2383
    • A method for optimizing an intensity of a useful light distribution includes: providing a light source for emitting a light beam in a z-direction, which defines an optical axis, with a first intensity distribution; providing a beam shaping optical unit and a beam focusing optical unit for generating a second intensity distribution to be used in a target plane, the target plane being inclined by an angle ALPHA relative to a focal plane determined by the beam focusing optical unit; determining a first intensity at a first point and a second intensity at a second point of the second intensity distribution to be used. The points P1 and P2 are arranged on different sides of the back focal plane; and displacing the beam shaping optical unit along the y-axis in such a way that the difference between the two intensities I1 and I2 lies within a predefinable limit.
    • 用于优化有用光分布的强度的方法包括:提供用于以限定光轴的z方向发射具有第一强度分布的光束的光源; 提供光束整形光学单元和用于产生要在目标平面中使用的第二强度分布的光束聚焦光学单元,所述目标平面相对于由所述光束聚焦光学单元确定的焦平面倾斜角度ALPHA; 确定要使用的第二强度分布的第一点处的第一强度和第二强度。 点P1和P2布置在后焦平面的不同侧上; 以及沿着y轴移位光束整形光学单元,使得两个强度I1和I2之间的差处于预定义限度内。
    • 9. 发明授权
    • Adjustable lens mount for a strip lens
    • 可调式镜头座用于带状透镜
    • US09151926B2
    • 2015-10-06
    • US13937775
    • 2013-07-09
    • JENOPTIK OPTICAL SYSTEMS GMBH
    • Thomas DresslerElke Eichler
    • G02B7/02G02B26/12G02B27/00
    • G02B7/023G02B26/125G02B26/127G02B27/0031
    • A lens mount for a strip lens is provided, in which the strip lens can be deformed substantially perpendicular to its optical axis, in order to linearize the imaging of a beam scanning over the strip lens. The lens mount includes a slotted distance strip, a support strip and a base plate. The support strip is rigidly connected to the strip lens via the distance strip that has only a very low bending stiffness and can be deformed relative to the base plate by means of adjusting screws, whereby the strip lens can be deformed. By inserting a distance strip, the installation space that is required for the lens mount is essentially moved away from the optical axis in order to provide, for example, installation space for adjacent optical or mechanical components.
    • 提供了一种用于带状透镜的透镜支架,其中带状透镜可以基本上垂直于其光轴变形,以便线性化在带状透镜上扫描的光束的成像。 透镜支架包括开槽的距离条,支撑条和基板。 支撑条通过距离条带刚性地连接到带状透镜,距离条具有非常低的弯曲刚度并且可以通过调节螺钉相对于基板变形,从而带状透镜可以变形。 通过插入距离条,透镜支架所需的安装空间基本上远离光轴移动,以便提供例如相邻光学或机械部件的安装空间。
    • 10. 发明授权
    • Device for temperature-dependent axial movement of optical components
    • 光学部件温度依赖性轴向运动的装置
    • US08223446B2
    • 2012-07-17
    • US12888611
    • 2010-09-23
    • Lutz ReichmannTobias Seeland
    • Lutz ReichmannTobias Seeland
    • G02B7/02
    • G02B7/008G02B7/028
    • A device for the temperature-dependent axial movement of an optical component including a monolithic mounting unit having an outer mounting part forming a fixed holder having an axis and an inner mounting part forming a mount adapted to support the optical component. The mount is movable along the axis. A moving mechanism is connected to the fixed holder and the movable mount. The moving mechanism includes at least one external expansion element including a first material having a first coefficient of thermal expansion and at least one internal expansion element including a second material having a second coefficient of thermal expansion, where the first coefficient of thermal expansion is larger than the second coefficient of thermal expansion. A number of connecting links is disposed in a star-shaped formation and join a respective one of the at least one external expansion element to a respective one of the internal expansion element. Each connecting link is disposed at a prescribed pitch angle with respect to the axis that differs from 90°.
    • 一种用于光学部件的温度依赖性轴向移动的装置,包括具有外部安装部件的单片安装单元,所述外部安装部件形成具有轴线的固定保持器和形成适于支撑光学部件的安装件的内部安装部件。 安装座可沿轴线移动。 移动机构连接到固定支架和可动支架。 所述移动机构包括至少一个外部膨胀元件,所述至少一个外部膨胀元件包括具有第一热膨胀系数的第一材料和至少一个包括具有第二热膨胀系数的第二材料的内部膨胀元件,其中所述第一热膨胀系数大于 第二热膨胀系数。 许多连接件被设置在星形结构中并且将至少一个外部膨胀元件中的相应一个连接到内部膨胀元件的相应一个。 每个连接链路相对于不同于90°的轴线以规定的俯仰角设置。