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    • 3. 发明授权
    • Daylight collection systems and methods
    • 日光采集系统和方法
    • US09127823B2
    • 2015-09-08
    • US14480233
    • 2014-09-08
    • Solatube International, Inc.
    • Paul August Jaster
    • F21S11/00G02B19/00E04D13/03G02B17/00
    • F21S11/007E04D13/0305E04D13/033E04D2013/0345F21S11/002G02B17/00G02B19/0028G02B19/0038G02B19/0042
    • Lighting devices and methods for illuminating the interior of a building with natural daylight are disclosed. In some embodiments, a daylighting apparatus includes a tube having a sidewall with a reflective interior surface, an at least partially transparent light collector with one or more light turning elements, and a light reflector positioned to reflect daylight into the light collector. The one or more light turning elements can turn direct and indirect daylight into the tube so that it is available to illuminate the building. In some embodiments, the tube is disposed between the light collector and a diffuser positioned inside a target area of a building. In certain embodiments, the tube is configured to direct at least a portion of the daylight transmitted through the light collector towards the diffuser.
    • 公开了用自然采光照明建筑物内部的照明装置和方法。 在一些实施例中,采光装置包括具有反射内表面的侧壁的管,具有一个或多个光转向元件的至少部分透明的光收集器,以及定位成将日光反射入光收集器的光反射器。 一个或多个轻型转动元件可以将直接和间接的日光转向管中,使其可用于照亮建筑物。 在一些实施例中,管设置在光收集器和位于建筑物的目标区域内的扩散器之间。 在某些实施例中,管被构造成将透过光收集器的日光的至少一部分引向漫射器。
    • 4. 发明申请
    • DUAL FIELD OF VIEW TELESCOPE
    • 双领域视力
    • US20150028212A1
    • 2015-01-29
    • US13949376
    • 2013-07-24
    • Raytheon Company
    • Richard J. WrightChadwick B. MartinWilliam R. Owens
    • G01J5/08
    • G01J5/08G02B17/00G02B17/06G02B23/02H04N5/225
    • A multiple field-of-view telescope and optical sensor system and imaging methods using the system. In one example, an optical sensor system includes a primary imaging detector having a first field of view, a telescope configured to receive and focus electromagnetic radiation onto the primary imaging detector along a primary optical axis, a secondary detector having a second field of view different from the first field of view, and relay optics configured to direct and focus a portion of the electromagnetic radiation onto the secondary detector. In certain examples, the system further includes a fold mirror positioned to reflect the portion of the electromagnetic radiation to the relay optics.
    • 多视场望远镜和光学传感器系统以及使用该系统的成像方法。 在一个示例中,光学传感器系统包括具有第一视野的初级成像检测器,被配置为沿着主光轴接收并聚焦到主成像检测器上的电磁辐射的望远镜,具有第二视场不同的二次检测器 并且将中继光学器件配置成将电磁辐射的一部分引导并聚焦到次级检测器上。 在某些示例中,系统还包括折射镜,其被定位成将电磁辐射的一部分反射到中继光学器件。
    • 8. 发明申请
    • VALVE FOR THE SUBSTANTIALLY GAS-TIGHT INTERRUPTION OF A FLOW PATH
    • 用于气道的气体中断的阀门
    • US20130114631A1
    • 2013-05-09
    • US13511897
    • 2010-11-19
    • Joachim MeierUlrike WegnerMaximilian Josef Lederer
    • Joachim MeierUlrike WegnerMaximilian Josef Lederer
    • H01S3/10G02B17/00
    • H01S3/10G02B17/00G02B17/004G02B17/0657H01S3/07H01S3/081H01S3/0813H01S3/09415H01S3/1115
    • The invention relates to a mirror arrangement for guiding a laser beam in a laser system having at least one first end mirror and one second end mirror, wherein said end mirrors define a resonator having an optical resonator axis, wherein the laser beam is guided into the resonator as an input laser beam and is guided out of the resonator again after multiple reflection at the first and second end mirrors as an output laser beam. The sequence of reflections at the first and second end mirror thereby determines a direction of rotation between the first and second end mirror, defined as an axis of rotation relative to the resonator axis, whereby a first beam path is defined and the laser beam circulates in a direction of rotation between the first and second end mirrors in the resonator defined as an axis of rotation relative to the resonator axis. The resonator is designed such that the direction of rotation is reversed at a reversing point and the laser beam in the resonator passes through at least partially in a direction of rotation opposite to the first beam path, whereby a second beam path is defined.
    • 本发明涉及一种用于在具有至少一个第一端镜和一个第二端镜的激光系统中引导激光束的反射镜装置,其中所述端镜限定具有光谐振器轴的谐振器,其中激光束被引导到 谐振器作为输入激光束,并且在作为输出激光束的第一和第二端镜的多次反射之后再次被引导出谐振器。 因此,第一和第二端镜处的反射序列确定了第一和第二端镜之间的转动方向,其被定义为相对于谐振器轴线的旋转轴线,由此限定第一光束路径,激光束在 谐振器中的第一和第二端镜之间的旋转方向被定义为相对于谐振器轴的旋转轴。 共振器被设计成使得旋转方向在反转点处反转,并且谐振器中的激光束至少部分地沿与第一光束路径相反的旋转方向通过,从而限定第二光束路径。
    • 10. 发明申请
    • ELECTRO-OPTIC REARVIEW MIRROR ASSEMBLY FOR VEHICLE
    • 电视后视镜车辆总成
    • US20110188122A1
    • 2011-08-04
    • US13020110
    • 2011-02-03
    • Hamid HabibiMichael J. Baur
    • Hamid HabibiMichael J. Baur
    • B60R1/08
    • B60R1/088B60R1/08B60R1/087G02B17/00G02B17/04G02F1/153G02F1/157H04N7/18
    • An exterior mirror reflective element for a vehicular exterior rearview mirror assembly includes a front glass substrate having a transparent conductive coating established at a second surface thereof and a rear glass substrate having a metallic reflector coating established at a third surface thereof, with an electro-optic medium disposed between the second surface of the front glass substrate and the third surface of the rear glass substrate. An electrically conductive clip is disposed along and bridges a perimeter edge of the rear glass substrate to establish electrically conductive connection to the metallic reflector coating at the third surface of the rear glass substrate. A solder joint is established at the electrically conductive clip, and the solder is decoupled from the metallic reflector coating at the third surface of the rear glass substrate.
    • 一种用于车辆外部后视镜组件的外部反射镜反射元件,包括具有在其第二表面上建立的透明导电涂层的前玻璃基板和在其第三表面上建立金属反射器涂层的后玻璃基板,其具有电光 介质设置在前玻璃基板的第二表面和后玻璃基板的第三表面之间。 导电夹子沿着后玻璃基板的周边边缘布置并且与后玻璃基板的第三表面处的金属反射器涂层建立导电连接。 在导电夹子处建立焊接接头,并且焊料与后玻璃基板的第三表面处的金属反射器涂层分离。