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    • 1. 发明申请
    • DEFORMABLE MIRROR APPARATUS
    • 可变形镜子装置
    • US20080239528A1
    • 2008-10-02
    • US12032871
    • 2008-02-18
    • Kei MasunishiAkihiro KogaRyo FurukawaTetsuya KugimiyaAkio KobayashiHiroyuki Kawashima
    • Kei MasunishiAkihiro KogaRyo FurukawaTetsuya KugimiyaAkio KobayashiHiroyuki Kawashima
    • G02B26/00
    • G02B26/0825
    • It is made possible to provide a deformable mirror apparatus which is deformable to a complicated shape (high-order shape). A deformable mirror apparatus includes: a substrate; a plurality of electrodes provided on the substrate; a spacer fixed above the substrate, having a first opening passing through from a first face of the spacer facing to the substrate to a second face of the spacer facing opposite from the first face, surrounding the electrodes, and having a step on the second face; a drive part including a membrane part disposed so as to cover the step of the spacer and so as to be opposed to the electrodes, a casing part having an opening at a bottom face of which the membrane part is exposed and supporting the membrane part, and a reflection film provided on the membrane part; and a voltage generator configured to generate predetermined voltage patterns on the electrodes, respectively.
    • 可以提供可变形为复杂形状(高阶形状)的可变形反射镜装置。 可变形反射镜装置包括:基板; 设置在所述基板上的多个电极; 固定在所述基板上方的间隔件,具有第一开口,所述第一开口从所述间隔件的面向所述基板的第一面穿过所述间隔件的与所述第一面相反的第二面,所述第二面围绕所述电极,并且在所述第二面上具有台阶 ; 驱动部,其具有设置成覆盖所述间隔件的台阶并且与所述电极相对的膜部;壳体部,其在所述膜部露出并支撑所述膜部的底面具有开口部, 以及设置在所述膜部上的反射膜; 以及电压发生器,其被配置为分别在所述电极上产生预定的电压图案。
    • 2. 发明授权
    • Deformable mirror apparatus
    • 可变形镜装置
    • US07682030B2
    • 2010-03-23
    • US12032871
    • 2008-02-18
    • Kei MasunishiAkihiro KogaRyo FurukawaTetsuya KugimiyaAkio KobayashiHiroyuki Kawashima
    • Kei MasunishiAkihiro KogaRyo FurukawaTetsuya KugimiyaAkio KobayashiHiroyuki Kawashima
    • G02B7/188G02B26/00G02B26/08
    • G02B26/0825
    • It is made possible to provide a deformable mirror apparatus which is deformable to a complicated shape (high-order shape). A deformable mirror apparatus includes: a substrate; a plurality of electrodes provided on the substrate; a spacer fixed above the substrate, having a first opening passing through from a first face of the spacer facing to the substrate to a second face of the spacer facing opposite from the first face, surrounding the electrodes, and having a step on the second face; a drive part including a membrane part disposed so as to cover the step of the spacer and so as to be opposed to the electrodes, a casing part having an opening at a bottom face of which the membrane part is exposed and supporting the membrane part, and a reflection film provided on the membrane part; and a voltage generator configured to generate predetermined voltage patterns on the electrodes, respectively.
    • 可以提供可变形为复杂形状(高阶形状)的可变形反射镜装置。 可变形反射镜装置包括:基板; 设置在所述基板上的多个电极; 固定在所述基板上方的间隔件,具有第一开口,所述第一开口从所述间隔件的面向所述基板的第一面穿过所述间隔件的与所述第一面相反的第二面,所述第二面围绕所述电极,并且在所述第二面上具有台阶 ; 驱动部,其具有设置成覆盖所述间隔件的台阶并且与所述电极相对的膜部;壳体部,其在所述膜部露出并支撑所述膜部的底面具有开口部, 以及设置在所述膜部上的反射膜; 以及电压发生器,其被配置为分别在所述电极上产生预定的电压图案。
    • 4. 发明授权
    • Deformable mirror device and apparatus for observing retina of eye using the same
    • 可变形镜装置及使用其的眼睛视网膜观察装置
    • US07744220B2
    • 2010-06-29
    • US12186142
    • 2008-08-05
    • Kei MasunishiAkihiro KogaRyo FurukawaOsamu NishimuraAkio KobayashiHiroyuki Kawashima
    • Kei MasunishiAkihiro KogaRyo FurukawaOsamu NishimuraAkio KobayashiHiroyuki Kawashima
    • A61B3/10G02B26/00G02B5/08
    • G02B26/0825A61B3/10
    • A deformable mirror device includes a substrate; a plurality of electrodes provided on the substrate; a spacer disposed on the substrate; a support member disposed above the spacer and having an opening passing through from a first face of the support member facing to the substrate to a second face of the support member opposite from the first face; a deformable electrode film formed below the first face of the support member so as to be opposed to the electrodes with a distance and so as to cover the opening; an insulation film provided between the deformable electrode film and the support member; and a reflection film provided on a face of the deformable electrode film opposite from the electrodes so as to overlap the opening. The electrodes are electrically insulated each other by a plurality of grooves radially extending from a region which includes a position corresponding to a center of the opening.
    • 可变形反射镜装置包括:基板; 设置在所述基板上的多个电极; 设置在基板上的间隔件; 支撑构件,设置在所述间隔件上方,并且具有从所述支撑构件的面向所述基板的第一面穿过到与所述第一面相对的所述支撑构件的第二面的开口; 可变电极膜,形成在所述支撑构件的所述第一面的下方,以与所述电极相对并且覆盖所述开口; 设置在所述可变形电极膜和所述支撑构件之间的绝缘膜; 以及反射膜,设置在与电极相对的可变形电极膜的表面上以与开口重叠。 电极通过从包括与开口的中心对应的位置的区域径向延伸的多个槽电绝缘。
    • 9. 发明授权
    • 3-Dimensional shape measuring method and device thereof
    • 三维形状测量方法及其装置
    • US07724379B2
    • 2010-05-25
    • US11920265
    • 2005-05-12
    • Hiroshi KawasakiRyo Furukawa
    • Hiroshi KawasakiRyo Furukawa
    • G01B11/24
    • G01B11/2545G01B11/2509G06T7/521G06T7/80
    • It is possible to measure a 3-dimensional shape by using a projector and an imaging device without requiring calibration in advance. A pattern light is applied from a projector to an object and this is imaged by an imaging device to capture an image as an input. An in-camera parameter, an in-projector parameter, a parameter of positional relationship between the camera and the projector are estimated. By using the estimation results, a 3-dimensional shape of the object is measured. When a laser pointer is attached to the projector and a laser is applied to the object for capturing an image as an input, scaling of the object shape can also be estimated. Moreover, when measuring a plurality of objects or measuring the same objects a plurality of times, the accuracy of the 3-dimensional shape respectively obtained can be increased by simultaneously processing the inputs. Moreover, when one of projector and the camera is fixed and the other is moved while measuring the same object a plurality of times, the accuracy of the 3-dimensional shape obtained as a result can be increased by performing bundle adjustment.
    • 可以通过使用投影仪和成像装置来预测不需要校准来测量三维形状。 图案光从投影仪施加到物体,并且其由成像装置成像以捕获图像作为输入。 估计摄像机内参数,投影机内参数,相机与投影机之间的位置关系参数。 通过使用估计结果,测量物体的三维形状。 当激光指示器附接到投影仪并且激光被施加到物体以捕获图像作为输入时,也可以估计对象形状的缩放。 此外,当测量多个对象或多次测量相同的对象时,可以通过同时处理输入来分别获得所获得的三维形状的精度。 此外,当投影仪和相机中的一个被固定并且另一个在同时测量相同的对象的同时被移动时,通过执行束调整可以提高作为结果而获得的三维形状的精度。