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    • 23. 发明申请
    • BRAKE SYSTEM AND APPARATUS
    • 制动系统和装置
    • US20120279811A1
    • 2012-11-08
    • US13513141
    • 2010-12-15
    • Brian Michael RileyAndrew OuelletPeter Reimer
    • Brian Michael RileyAndrew OuelletPeter Reimer
    • B62L3/00
    • F16D55/2245B60T8/3225B60T8/52B60T11/06B62L3/08F16D2127/12
    • A braking system includes a brake pad that is coupled to a slider assembly that moves linearly within a guide. The slider assembly and guide are coupled to a first brake. A second brake actuator is coupled to the slider assembly, the guide and a second brake. When the first brake is actuated, the slider assembly is pressed against a rotating braking surface and the friction of the brake pad against the rotating braking surface can cause the slider assembly to move within the guide which actuates the second brake actuator. The second brake actuator then actuates the second brake. When the first brake is released, the slider assembly is removed from the rotating braking surface and the second brake actuator is released which releases the second brake.
    • 制动系统包括制动衬块,该制动衬片联接到在导向件内线性移动的滑块组件。 滑块组件和引导件联接到第一制动器。 第二制动器致动器联接到滑块组件,引导件和第二制动器。 当第一制动器被致动时,滑块组件被压靠在旋转的制动表面上,并且制动衬块与旋转的制动表面的摩擦可以导致滑块组件在致动第二制动器致动器的引导件内移动。 然后第二制动器致动器致动第二制动器。 当第一制动器被释放时,滑块组件从旋转的制动表面移开,第二制动器致动器被释放,释放第二制动器。
    • 24. 发明申请
    • LIGHT TRAP, COUPLING DEVICE FOR A BEAM PATH, AS WELL AS ILLUMINATION DEVICE AND OPTICAL OBSERVATION DEVICE
    • 光束,用于光束路径的耦合装置,如照明装置和光学观察装置
    • US20100182681A1
    • 2010-07-22
    • US12733497
    • 2008-08-26
    • Christian LueckePeter Reimer
    • Christian LueckePeter Reimer
    • G02B21/06G02B5/22G02B27/14
    • G02B21/082G02B5/003G02B5/205
    • First of all, the present invention relates to a light trap (20) for eliminating or preventing stray light, e.g., in the form of scattered light. In addition, the invention relates to a device (10) for coupling a first beam path (34) to a second beam path (42)*. Finally, the invention also relates to an illumination device (30) for an optical observation device as well as an optical observation device. In order to be able to further improve the elimination of disruptive stray light in the form of scattered light, light trap (20) is configured in a special way. It has a filter element (21), particularly a neutral filter element, which is characterized in that incident light face (22) of filter element (21) has a concave radius, whereby incident light face (22) has a specific curvature. * sic; second beam path (41)?—Trans. Note
    • 首先,本发明涉及用于消除或防止杂散光(例如以散射光的形式)的光阱(20)。 另外,本发明涉及用于将第一光束路径(34)耦合到第二光束路径(42)*的装置(10)。 最后,本发明还涉及一种用于光学观察装置的照明装置(30)以及光学观察装置。 为了能够进一步提高以散射光的形式消除破坏性杂散光,以特殊的方式配置光阱(20)。 它具有过滤元件(21),特别是中性过滤元件,其特征在于,过滤元件(21)的入射光面(22)具有凹入半径,由此入射光面(22)具有特定曲率。 * sic; 第二光束路径(41) 注意
    • 25. 发明申请
    • Front-lens attachment for an optical observation device
    • 用于光学观察装置的前透镜附件
    • US20090219483A1
    • 2009-09-03
    • US12380607
    • 2009-03-01
    • Fumio TakanashiMarkus SeesselbergAndre MuellerPeter Reimer
    • Fumio TakanashiMarkus SeesselbergAndre MuellerPeter Reimer
    • A61B3/13G02B7/02G02B21/02
    • G02B21/0012A61B3/132A61B90/20A61B90/50G02B7/021G02B7/023G02B21/22
    • The present invention, among other things, relates to a front-lens attachment (20) for an optical observation device (10), in particular for a microscope. The front-lens attachment (20) has a retaining element (38) that has a retaining element (32), on which at least one lens element (33, 34) is disposed. Further, it provides a positioning device (21) for positioning the retaining element (32) and the at least one lens element (33, 34) disposed thereon, relative to the optical observation device (10), whereby retaining device (32) is disposed on positioning device (21). Finally, a fastening means (35) for fastening the retaining device (38) to the front-lens attachment (20) is provided. In order to be able to provide such a front-lens attachment (20) in a structurally simple and cost-effective manner, it is provided, for example, that positioning device (21) has at least two positioning components (22, 28), which are joined together via a joint (31).
    • 本发明尤其涉及一种用于光学观察装置(10)的前透镜附件(20),特别是用于显微镜。 前透镜附件(20)具有保持元件(38),保持元件(38)具有保持元件(32),至少一个透镜元件(33,34)设置在该保持元件上。 此外,它提供了一种用于将保持元件(32)和相对于光学观察装置(10)设置在其上的至少一个透镜元件(33,34)定位的定位装置(21),由此保持装置(32) 设置在定位装置(21)上。 最后,提供用于将保持装置(38)紧固到前透镜附件(20)的紧固装置(35)。 为了能够以结构简单且成本有效的方式提供这种前透镜附件(20),例如,提供定位装置(21)具有至少两个定位部件(22,28) ,它们通过接头(31)连接在一起。
    • 27. 发明申请
    • Surgical microscope having an OCT-system
    • 具有OCT系统的手术显微镜
    • US20080117504A1
    • 2008-05-22
    • US11984820
    • 2007-11-21
    • Peter ReimerChristoph HaugerAlfons AbeleMarkus Seesselberg
    • Peter ReimerChristoph HaugerAlfons AbeleMarkus Seesselberg
    • G02B21/06
    • A61B90/36A61B5/0066A61B90/20G02B21/0028G02B21/0032G02B21/20
    • A surgical microscope (100) has a viewing beam path for main viewing and a secondary beam path (106) for viewing by another person. The surgical microscope (100) has a microscope main objective (101) through which the viewing beam path for main viewing and the viewing beam path (106) for secondary viewing pass. The surgical microscope (100) includes an OCT-system (120) for examining an object region. The OCT-system (120) includes an OCT-scanning beam (123) which is guided through the microscope main objective (101). In the viewing beam path (106) for secondary viewing, an in-coupling element (150) is provided to couple the OCT-scanning beam (123) into the viewing beam path (106) for secondary viewing and to guide the same through the microscope main objective (101) to the object region (108).
    • 手术显微镜(100)具有用于主观察的观察光束路径和用于另一人观看的次光束路径(106)。 手术显微镜(100)具有显微镜主物镜(101),用于主观看的观察光束路径和用于二次观看的观察光束路径(106)通过。 手术显微镜(100)包括用于检查物体区域的OCT系统(120)。 OCT系统(120)包括被引导通过显微镜主目标(101)的OCT扫描光束(123)。 在用于二次观看的观察光束路径(106)中,提供耦合元件(150)以将OCT扫描光束(123)耦合到观察光束路径(106)中以进行二次观看,并将其引导通过 显微镜主目标(101)到目标区域(108)。
    • 28. 发明授权
    • Semiconductor substrate damage protection system
    • 半导体衬底损坏保护系统
    • US07204669B2
    • 2007-04-17
    • US10198688
    • 2002-07-17
    • Sungmin ChoPeter ReimerVincent Seidl
    • Sungmin ChoPeter ReimerVincent Seidl
    • B65G49/07
    • H01L21/682H01L21/67259H01L21/67265H01L21/67379H01L21/67772H01L21/67775
    • A method and apparatus for preventing substrate damage in a factory interface. In one embodiment, a method for preventing substrate damage in a factory interface includes the steps of receiving an indicia of potential substrate damage, and automatically preventing substrates from moving out of a substrate storage cassette in response to the received indicia. The indicia may be a seismic warning signal, among others. In another embodiment, a method for preventing substrate damage in a factory interface includes the steps of moving a pod door in a first direction to a position spaced-apart and adjacent a pod, and moving the pod door laterally in a second direction to close the pod. The lateral closing motion of the pod door urges substrates, which may be misaligned in the pod, into a predefined position within the pod.
    • 一种用于在工厂界面中防止基板损坏的方法和装置。 在一个实施例中,用于在工厂界面中防止基板损坏的方法包括以下步骤:接收潜在的基板损坏的标记,并且响应于所接收的标记自动地防止基板移出基板存储盒。 标记可能是地震预警信号等。 在另一个实施例中,用于防止在工厂界面中的基板损坏的方法包括以下步骤:将第一方向上的荚果门移动到间隔开并邻近荚果的位置,并且沿着第二方向横向移动荚果门以关闭 荚。 荚门的侧向关闭运动促使可能在荚中错位的基底进入荚内的预定位置。
    • 30. 发明申请
    • Surgical microscope for ophthalmology
    • 眼科手术显微镜
    • US20050117209A1
    • 2005-06-02
    • US10994337
    • 2004-11-23
    • Gerhard MollerPeter Reimer
    • Gerhard MollerPeter Reimer
    • G02B5/22A61B19/00G02B21/00G02B21/06G02B21/08G02B21/22
    • G02B21/0012G02B21/082
    • A surgical microscope (1) for ophthalmology includes a tube unit (4) which permits viewing an area (5) of surgery, especially a forward section of the eye, through a microscope main objective (2). The surgical microscope (1) includes an illuminating system (10) which makes available the illuminating light to illuminate the surgical area (5), especially the forward section of the eye. To provide daylight-like illuminating light, the illuminating system includes a xenon illuminating light source (11) or a metal halogen illuminating light source. At least one interference filter (22, 23) is provided in the illuminating beam path (15a). The cutoff frequency of the interference filter lies such that illuminating light in the ultraviolet range is filtered out and illuminating light in the visible wavelength range is attenuated, if at all, to an insignificant extent in order to reduce the phototoxicity of the illuminating light for the human eye.
    • 用于眼科的手术显微镜(1)包括管单元(4),其允许通过显微镜主目标(2)观察手术区域(5),特别是眼睛的前部。 手术显微镜(1)包括照明系统(10),其使照明光照射外科手术区域(5),特别是眼睛的前部。 为了提供日光般的照明光,照明系统包括氙照明光源(11)或金属卤素照明光源。 至少一个干涉滤光器(22,23)设置在照明光束路径(15a)中。 干涉滤光器的截止频率使得紫外线范围内的照明光被滤除,并且在可见光波长范围内的照明光被衰减,如果有的话,其幅度不大,以便降低照明光的光毒性 人类的眼睛。