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    • 53. 发明授权
    • Rotation laser having lens which is deformable in a targeted manner by actuators
    • 旋转激光器具有可通过致动器以目标方式变形的透镜
    • US09389073B2
    • 2016-07-12
    • US14251329
    • 2014-04-11
    • Hexagon Technology Center GmbH
    • Charles Leopold Elisabeth Dumoulin
    • G01C15/00G01C9/02G02B26/08G02B27/64
    • G01C9/02G01C15/004G02B26/0875G02B27/648
    • Some embodiments of the invention relate to a rotation laser and a method for operating a rotation laser. The rotation laser may be provided with a laser light source for generating a laser beam, a deflection means rotatable about a rotation axis and serving for the directional emission of the laser beam, and an optical system comprising one or more lenses for manipulating the laser beam. In some embodiments, at least one of the lenses is a lens which is deformable in a targeted manner by actuators. In some embodiments, a control unit is included for manipulating the at least one lens. In some embodiments, the at least one lens has at least four actuators which are drivable by the control unit and/or which are arranged in a manner distributed along a circumference of the lens.
    • 本发明的一些实施例涉及旋转激光器和用于操作旋转激光器的方法。 旋转激光器可以设置有用于产生激光束的激光源,可围绕旋转轴线旋转并用于激光束的定向发射的偏转装置,以及包括用于操纵激光束的一个或多个透镜的光学系统 。 在一些实施例中,透镜中的至少一个是可以通过致动器以目标方式变形的透镜。 在一些实施例中,包括用于操纵至少一个透镜的控制单元。 在一些实施例中,至少一个透镜具有至少四个可由控制单元驱动的致动器和/或沿着透镜的圆周分布的方式布置。
    • 54. 发明申请
    • TIME-OF-FLIGHT CAMERA SYSTEM AND METHOD TO IMPROVE MEASUREMENT QUALITY OF WEAK FIELD-OF-VIEW SIGNAL REGIONS
    • 飞行时间相机系统及提高弱视场信号测量质量的方法
    • US20160182789A1
    • 2016-06-23
    • US14579243
    • 2014-12-22
    • Google Inc.
    • Chung Chun WanJamyuen Ko
    • H04N5/225
    • G06T7/521G01S7/4815G01S7/4817G01S7/4918G01S17/89G02B7/023G02B26/0875G02B26/101G06T2207/10028H04N5/2256H04N5/2354
    • A time-of-flight camera system is described. The time-of-flight camera system includes an illuminator to illuminate a region within the time-of-flight camera system's field of view. The time-of-flight camera system includes an image sensor to receive optical signals from the illumination for determining depth profile information within the field of view using time-of-flight measurement techniques. The image sensor has circuitry to determine one or more regions within the field of view where a received optical signal from the illuminating was weak. The illuminator is also to re-illuminate the one or more regions with stronger light than the one or more regions received during the illuminating. Each of the one or more regions being smaller than the region. The image sensor is also to receive optical signals from the re-illumination for determining depth profile information within the one or more regions.
    • 描述了飞行时间相机系统。 飞行时间相机系统包括用于照亮飞行时间相机系统的视野范围内的区域的照明器。 飞行时间相机系统包括图像传感器,用于从照明中接收光信号,以使用飞行时间测量技术在视场内确定深度分布信息。 图像传感器具有确定视场内的一个或多个区域的电路,其中来自照明的接收光信号较弱。 照明器还可以用比在照明期间接收的一个或多个区域更强的光来重新照亮一个或多个区域。 一个或多个区域中的每一个都小于该区域。 图像传感器还用于从重新照明接收光信号,以确定一个或多个区域内的深度剖面信息。
    • 56. 发明授权
    • Tunable-focus thin electronic lens
    • 可调焦的薄型电子镜头
    • US09335569B1
    • 2016-05-10
    • US14665193
    • 2015-03-23
    • NORTHROP GRUMMAN SYSTEMS CORPORATION
    • Darren V. Levine
    • G02B3/08G02B3/00G02F1/01G02F1/1335G02F1/17G02F1/157
    • G02F1/0121G02B3/08G02B26/0875G02F1/1334G02F1/15G02F1/172G02F1/29
    • An optical lens assembly including a circular Fresnel lens having a plurality of contiguous radial lens sections where each lens section provides the same range of focal lengths and where each lens section includes a plurality of lens segments along a radial direction. Each of the lens segments is curved in both a radial direction and a rotational direction so that one radial edge of the section includes a relatively small curvature and large radius and an opposite radial edge of the lens section includes a relatively large curvature and small radius so that each lens segment separately provides the range of focal lengths. A light filter is positioned adjacent to the Fresnel lens and includes a plurality of radial control lines that are controlled to make the control lines opaque or transparent so that light propagates through parts of the lens sections having the same focal length.
    • 一种光学透镜组件,包括具有多个相邻的径向透镜部分的圆形菲涅耳透镜,其中每个透镜部分提供相同的焦距范围,并且其中每个透镜部分沿着径向方向包括多个透镜片段。 每个透镜段在径向和旋转方向上都是弯曲的,使得该部分的一个径向边缘包括相对小的曲率和大的半径,并且透镜部分的相对的径向边缘包括相对较大的曲率和小的半径 每个镜片段分别提供焦距范围。 光滤波器位于菲涅尔透镜附近,并且包括多个径向控制线,其被控制以使控制线不透明或透明,使得光通过具有相同焦距的透镜部分的部分传播。
    • 59. 发明申请
    • HYBRID POLARIZATION-MULTIPLEXED COHERENT PIC TRANSMITTERS AND RECEIVERS
    • 混合极化 - 多路复用相干PIC发射器和接收器
    • US20160033728A1
    • 2016-02-04
    • US14678690
    • 2015-04-03
    • Frederick A. Kish, JR.Mehrdad ZiariTimothy Butrie
    • Frederick A. Kish, JR.Mehrdad ZiariTimothy Butrie
    • G02B6/42G02B6/32G02B27/28G02B6/12G02B26/00G02B26/08G02B6/27G02B6/293
    • G02B27/286G02B6/272G02B6/2766G02B6/2773G02B26/00G02B26/0875
    • Consistent with the present disclosure, active devices, such as lasers, optical amplifiers, and photodiodes, are integrated on a first substrate, and other optical devices, such as passive devices including polarization rotators and polarization beam combiners, are provided on a second substrate. An array of lenses is provided between the two substrates to provide a low loss optical connection from the first substrate to the second substrate. In addition, the orientation or position of the lenses can be readily controlled with Microelectromechnical System (MEMS) actuators so that the light can be directed precisely to a desired optical element, such as a waveguide. Consistent with a further aspect of the present disclosure, the lenses may be controlled to be misaligned by varying degrees in order to control the amount of light that is supplied from one substrate to another. Accordingly, the lenses may act as variable optical attenuators to provide uniform optical power levels, for example, or any desired power distribution.
    • 根据本公开内容,诸如激光器,光放大器和光电二极管的有源器件集成在第一衬底上,并且其它光学器件(诸如包括偏振旋转器和偏振光束组合器的无源器件)设置在第二衬底上。 在两个基板之间提供透镜阵列,以提供从第一基板到第二基板的低损耗光学连接。 此外,可以利用微电子技术系统(MEMS)致动器容易地控制透镜的取向或位置,使得光可以精确地定向到期望的光学元件,例如波导。 根据本公开的另一方面,可以将透镜控制为不对准,以便控制从一个基板供应到另一个基板的光量。 因此,透镜可以充当可变光衰减器以提供均匀的光功率水平,例如或任何期望的功率分布。