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    • 1. 发明申请
    • ADJUSTABLE STROBE REFLECTOR ASSEMBLY
    • 可调式反射器总成
    • US20110242688A1
    • 2011-10-06
    • US12749928
    • 2010-03-30
    • Kenneth E. Savage, JR.Steven T. Varieur
    • Kenneth E. Savage, JR.Steven T. Varieur
    • G02B7/188
    • G02B5/09F21V7/0025F21V7/18F21V14/04F21V17/02G03B15/06
    • A strobe reflector that includes a reflective material and a support structure is provided. The support structure may be adjusted or moved into at least two distinct positions to provide two distinct shapes for the reflective material. The first position of the support structure shapes the reflective material in a first configuration (such as a half-hemisphere) and a second position of the support structure shapes the reflective material in a second configuration (such as a full hemisphere). The different shapes of the reflective material may be used for different mountings of the strobe device, such as for a ceiling mount or a wall mount. In this way, a single strobe reflector may be configured for different installations (whether to the wall or ceiling).
    • 提供了包括反射材料和支撑结构的闪光灯反射器。 可以将支撑结构调整或移动到至少两个不同的位置中,以为反射材料提供两种截然不同的形状。 支撑结构的第一位置将反射材料形成为第一构造(例如半球),并且支撑结构的第二位置使反射材料以第二构造(例如,全半球)形状。 反射材料的不同形状可以用于闪光灯装置的不同安装,例如用于天花板安装件或墙壁安装件。 以这种方式,单个频闪反射器可以被配置用于不同的安装(无论是到墙壁还是天花板)。
    • 2. 发明授权
    • Compact high-speed thin micromachined membrane deformable mirror
    • 紧凑型高速薄型微加工膜可变形镜
    • US07999213B2
    • 2011-08-16
    • US12241993
    • 2008-09-30
    • Bruce K. WinkerYu-Hua K LinSridhar NarayanaswamyBing Wen
    • Bruce K. WinkerYu-Hua K LinSridhar NarayanaswamyBing Wen
    • G01J1/20G02B7/188
    • G02B26/06G02B26/0825
    • Provided is a compact, high-speed deformable mirror for use with an adaptive optic. The mirror or wavefront correction device corrects and/or compensates for wavefront aberrations present in a wavefront received by the optics. The mirror includes a deformable membrane which may be made of a semiconductive, metallic or insulating material. Positioned in close proximity to a front surface of the membrane is a transparent conductor, which may be covered by a window having an anti-reflective coating. A plurality of electrostatic actuators is located in close proximity to a back surface of the membrane, the conductor and actuators separated by a gap of approximately 10 μm. In operation, a bias voltage is applied to the transparent conductor and an actuator voltage is applied to the plurality of actuators. The resultant voltage differential across the membrane defines the amount of membrane deformation, which in turn compensates for distortions in a subsequently reflected wavefront.
    • 提供了一种紧凑型高速可变形镜,可与自适应光学元件一起使用。 镜或波前校正装置校正和/或补偿由光学器件接收的波前中存在的波前像差。 反射镜包括可由半导体,金属或绝缘材料制成的可变形膜。 靠近膜的前表面定位的是透明导体,其可被具有防反射涂层的窗口覆盖。 多个静电致动器位于膜的后表面附近,导体和致动器由大约10μm的间隙隔开。 在操作中,向透明导体施加偏置电压,并且向多个致动器施加致动器电压。 跨过膜的合成电压差定义了膜变形的量,其又补偿随后反射的波前的失真。
    • 4. 发明申请
    • VARIABLE SHAPE MIRROR SYSTEM
    • 可变形状镜像系统
    • US20100246037A1
    • 2010-09-30
    • US12728653
    • 2010-03-22
    • Masahiro NISHIO
    • Masahiro NISHIO
    • G02B7/188
    • G02B26/0825G01D1/00G01D15/00
    • A variable shape mirror system includes a deformation section on which a reflection surface and first electrode are formed, a fixing section on which a second electrode is formed, and which is configured to fix the deformation section, and a drive unit, at least one of the first electrode and second electrode is formed into divided electrodes constituted of a plurality of pairs of electrodes, and in the divided electrodes, a division boundary between the electrodes includes a circular shape. One drive voltage indicating signal is subjected to operation processing on the basis of a desired mirror shape for each of the divided electrodes, whereby a drive voltage is generated for each of the electrodes, the variable shape mirror is deformed into a desired shape, and an optimum aspheric component corresponding to the curvature of the reflection surface is realized.
    • 可变形状镜系统包括:形成有反射面和第一电极的变形部,形成有第二电极的固定部,其构造为固定变形部;驱动部,至少一个 第一电极和第二电极形成为由多对电极构成的分割电极,并且在分割电极中,电极之间的分界线包括圆形。 对于每个分割电极,一个驱动电压指示信号基于期望的反射镜形状进行操作处理,由此为每个电极产生驱动电压,可变形状的反射镜变形为期望的形状,并且 实现了与反射面的曲率对应的最佳非球面分量。
    • 6. 发明申请
    • MAGNETIC MEMBRANE MIRROR
    • 磁性膜镜
    • US20100027143A1
    • 2010-02-04
    • US11679254
    • 2007-02-27
    • Matthew M. Angel
    • Matthew M. Angel
    • G02B7/188B29C65/78
    • G02B26/0825
    • Described is a magnetic membrane mirror having a flexible membrane comprising a magnetic material and having a high reflectance. The flexible membrane is secured over a frame to enclose a volume between the frame and membrane. A transmembrane pressure is established to achieve a desired mirror shape or curvature. Curvature can be changed by modifying the transmembrane pressure by increasing or decreasing the pressure in the enclosed volume. An array of electromagnetic actuators generates individually-controlled magnetic fields to cause localized displacements of the mirror surface. The magnetic membrane mirror can be constructed with inexpensive components and can be used as a dynamic component in an adaptive optical system.
    • 描述了具有包括磁性材料并具有高反射率的柔性膜的磁性膜镜。 柔性膜被固定在框架上以包围框架和膜之间的体积。 建立跨膜压力以实现期望的镜面形状或曲率。 通过增加或减少封闭体积中的压力来改变跨膜压力可以改变曲率。 一组电磁致动器产生单独控制的磁场以引起镜面的局部位移。 磁膜镜可以用廉价的元件构成,可以用作自适应光学系统中的动态元件。
    • 7. 发明授权
    • Deformable-mirror cooling
    • 变形镜冷却
    • US07264363B2
    • 2007-09-04
    • US10537894
    • 2003-12-18
    • Michael S GriffithNicholas J ArcherLeslie C Laycock
    • Michael S GriffithNicholas J ArcherLeslie C Laycock
    • G02B7/195G02B7/188
    • G02B26/06G02B7/1815G02B26/0858
    • This invention relates to a cooled deformable-mirror and its mount. A deformable mirror is provided comprising a reflective element provided on a substrate that is secured to a deformable element, wherein the substrate comprises at least one channel having a pair of ports both located around the peripheral edge of the substrate. In addition, a deformable-mirror mount and the deformable mirror described above are provided, wherein the mount has a body with a central aperture defined by a supporting surface sized and shaped to support the mirror when installed, and wherein the mount is provided with at least a pair of channels that terminate to face the ports in the mirror when the mirror is installed, the channels of the mirror and the mount being connected via flexible seals.
    • 本发明涉及一种冷却的可变形反射镜及其底座。 提供了一种可变形反射镜,其包括设置在基板上的反射元件,该反射元件固定在可变形元件上,其中该基板包括至少一个通道,该通道具有位于该基板的周缘周围的一对端口。 另外,提供了上述可变形反射镜安装件和可变形反射镜,其中安装件具有主体,该主体具有由支撑表面限定的尺寸和形状的中心孔,该支撑表面在安装时支撑反射镜,并且其中安装件设置在 当安装镜子时,至少一对通道终止于镜子中的端口,反射镜的通道和安装座通过柔性密封件连接。
    • 9. 发明授权
    • Full-size folding mirror and carry case apparatus
    • 全尺寸折叠镜和手提箱
    • US06962421B2
    • 2005-11-08
    • US10607876
    • 2003-06-28
    • Peter Yang
    • Peter Yang
    • A45C13/26A45F3/02A47G1/04G02B5/08G02B7/182A45D42/24A47G1/02A47G1/17G02B7/188
    • A47G1/04A45C13/26A45F3/02G02B5/08G02B7/182
    • A folding full length mirror and carry apparatus includes a foldable reflective surface support assembly which includes support panels connected together with panel-interconnection hinges. A non-folded reflective surface assembly is supported by the foldable reflective surface support assembly. Preferably, a handle is connected to the foldable reflective surface support assembly. A shoulder strap can be connected to the foldable reflective surface support assembly. Preferably, a folded condition locking assembly is connected to the foldable reflective surface support assembly for retaining the apparatus in a folded up, carrying condition. With one embodiment of the invention, the non-folded reflective surface assembly includes panel-mounted non-folded reflective surfaces mounted one side of each of the respective support panels. With another embodiment of the invention, the reflective surface assembly includes a reflective rollable non-folded sheet wound on a roller assembly supported by the foldable reflective surface support assembly.
    • 折叠全长镜和携带装置包括可折叠反射表面支撑组件,其包括与面板互连铰链连接在一起的支撑面板。 非折叠反射表面组件由可折叠反射表面支撑组件支撑。 优选地,手柄连接到可折叠反射表面支撑组件。 肩带可以连接到可折叠反射表面支撑组件。 优选地,折叠状态锁定组件连接到可折叠反射表面支撑组件,用于将装置保持在折叠的携带状态。 通过本发明的一个实施例,非折叠反射表面组件包括安装在每个相应支撑面板的一侧上的面板安装的非折叠反射表面。 在本发明的另一个实施例中,反射表面组件包括卷绕在由可折叠反射表面支撑组件支撑的辊组件上的反射性可滚动的非折叠片。