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    • 2. 发明申请
    • DEVICE FOR TEMPERATURE-DEPENDENT AXIAL MOVEMENT OF OPTICAL COMPONENTS
    • 光学元件温度依赖性轴向运动装置
    • US20110075279A1
    • 2011-03-31
    • 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运动的装置,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。
    • 3. 发明授权
    • Laterally adjustable optical mount with bent lever manipulator units
    • 具有弯曲杆操纵器单元的可调节的光学安装座
    • US07903353B2
    • 2011-03-08
    • US12485224
    • 2009-06-16
    • Lutz ReichmannMarco Bornschein
    • Lutz ReichmannMarco Bornschein
    • G02B7/02
    • G02B7/023G02B7/003
    • The present invention relates to an optical mount, in particular a lens mount, which is divided by a plurality of cuts in the mount material into a stationary outer mounting ring, a laterally adjustable inner mounting ring and three bent lever manipulator units which are offset by 120° relative to one another and which comprise a bent lever having a first element, one end of which is connected by way of a bent lever flexure hinge to one end of a second element, the other end of the first element being connected to the inner mounting ring, the other end of the second element being connected to the outer mounting ring, and with the first and second elements enclosing a bent angle smaller than 180°. By manipulating the three bent lever manipulator units, any center position of the inner mounting ring can be adjusted relative to the center of the outer mounting ring within an intended displacement range.
    • 本发明涉及一种光学安装座,特别是一种透镜安装座,其由安装材料中的多个切口分隔成固定的外部安装环,侧向可调节的内部安装环和三个弯曲的操纵杆单元,其被偏移的 120°相对于彼此,并且包括具有第一元件的弯曲杆,第一元件的一端通过弯曲杆弯曲铰链连接到第二元件的一端,第一元件的另一端连接到 内安装环,第二元件的另一端连接到外安装环,并且第一和第二元件包围弯曲角度小于180°。 通过操纵三个弯曲的杠杆操纵器单元,可以在预定的位移范围内相对于外部安装环的中心调节内部安装环的任何中心位置。
    • 4. 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。
    • 8. 发明申请
    • Laterally Adjustable Optical Mount with Bent Lever Manipulator Units
    • 具有弯曲杠杆机械手单元的可调式光学支架
    • US20090316281A1
    • 2009-12-24
    • US12485224
    • 2009-06-16
    • Lutz ReichmannMarco Bornschein
    • Lutz ReichmannMarco Bornschein
    • G02B7/02
    • G02B7/023G02B7/003
    • The present invention relates to an optical mount, in particular a lens mount, which is divided by a plurality of cuts in the mount material into a stationary outer mounting ring, a laterally adjustable inner mounting ring and three bent lever manipulator units which are offset by 120° relative to one another and which comprise a bent lever having a first element, one end of which is connected by way of a bent lever flexure hinge to one end of a second element, the other end of the first element being connected to the inner mounting ring, the other end of the second element being connected to the outer mounting ring, and with the first and second elements enclosing a bent angle smaller than 180°. By manipulating the three bent lever manipulator units, any center position of the inner mounting ring can be adjusted relative to the center of the outer mounting ring within an intended displacement range.
    • 本发明涉及一种光学安装座,特别是一种透镜安装座,其由安装材料中的多个切口分隔成固定的外部安装环,侧向可调节的内部安装环和三个弯曲的操纵杆单元,其被偏移的 120°相对于彼此,并且包括具有第一元件的弯曲杆,第一元件的一端通过弯曲杆弯曲铰链连接到第二元件的一端,第一元件的另一端连接到 内安装环,第二元件的另一端连接到外安装环,并且第一和第二元件包围弯曲角度小于180°。 通过操纵三个弯曲的杠杆操纵器单元,可以在预定的位移范围内相对于外部安装环的中心调节内部安装环的任何中心位置。