Deformable mirror device and apparatus for observing retina of eye using the same
    131.
    发明授权
    Deformable mirror device and apparatus for observing retina of eye using the same 失效
    可变形镜装置及使用其的眼睛视网膜观察装置

    公开(公告)号:US07740357B2

    公开(公告)日:2010-06-22

    申请号:US12188018

    申请日:2008-08-07

    IPC分类号: A61B3/10 G02B5/08

    CPC分类号: A61B3/12 G02B26/06

    摘要: 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; a reflection film provided on a face of the deformable electrode film opposite from the electrodes so as to overlap the opening; and a plurality of through holes passing through the reflection film and the deformable electrode film and disposed so as to overlap the opening.

    摘要翻译: 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; 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; 以及穿过反射膜和可变形电极膜并且设置成与开口重叠的多个通孔。

    FUNDUS OCULI OBSERVATION DEVICE AND PROGRAM FOR CONTROLLING THE SAME
    132.
    发明申请
    FUNDUS OCULI OBSERVATION DEVICE AND PROGRAM FOR CONTROLLING THE SAME 有权
    FUNDUS OCULI观察设备及其控制程序

    公开(公告)号:US20100149489A1

    公开(公告)日:2010-06-17

    申请号:US12600865

    申请日:2008-04-08

    IPC分类号: A61B3/14

    摘要: A fundus oculi observation device 1 can form a near-infrared motion image and a color image (still image) of a fundus oculi Ef. The device 1 specifies an image region within the near-infrared motion image corresponding to a region of interest within the color image while the near-infrared motion image is being formed. The device 1 scans with a signal light LS based on the specified image region, thereby forming a tomographic image along the scanning line. According to the device 1, it is possible to determine a region of interest within a still image having a comparatively high image quality, specify the image region within the motion image corresponding to this region of interest, set a measurement site for the tomographic image.

    摘要翻译: 眼底观察装置1可以形成眼底Ef的近红外运动图像和彩色图像(静止图像)。 设备1在形成近红外运动图像的同时指定与彩色图像内的感兴趣区域相对应的近红外运动图像内的图像区域。 装置1基于指定的图像区域用信号光LS扫描,从而沿着扫描线形成断层图像。 根据装置1,可以确定具有较高图像质量的静止图像内的感兴趣区域,指定与该感兴趣区域相对应的运动图像内的图像区域,设置断层图像的测量位置。

    Industrial machine
    133.
    发明申请
    Industrial machine 有权
    工业机械

    公开(公告)号:US20100121540A1

    公开(公告)日:2010-05-13

    申请号:US12387971

    申请日:2009-05-11

    IPC分类号: G06F19/00

    摘要: The present invention provides an industrial machine, which comprises an industrial machine main unit 14, a construction working implement 8 installed on the industrial machine main unit, two cameras 18 and 19 each mounted at a known position with respect to a machine center of the industrial machine main unit, at least three targets 21 being installed on the working implement so that the targets are within visual field of each of the two cameras, and an arithmetic processing device 23 for extracting the images of at least three targets in common to the images from stereo-images taken by the two cameras, for obtaining a three-dimensional position of each target image, and for calculating a position and a posture of the working implement with respect to the industrial machine main unit based on the three-dimensional position obtained.

    摘要翻译: 本发明提供一种工业机械,其包括工业机械主单元14,安装在工业机械主单元上的施工作业工具8,两个摄像机18和19,每个相机18和19相对于工业机器的机器中心安装在已知位置 机器主单元,至少三个目标21安装在工作工具上,使得目标在两个相机中的每一个的视野内;以及算术处理装置23,用于将至少三个目标的图像共同地提取到图像 从由两个照相机拍摄的立体图像中,获得每个目标图像的三维位置,并且基于获得的三维位置来计算相对于工业机器主单元的工作机器的位置和姿势 。

    MEMS-scanning mirror device and method for manufacturing the same
    134.
    发明申请
    MEMS-scanning mirror device and method for manufacturing the same 有权
    MEMS扫描镜装置及其制造方法

    公开(公告)号:US20100103492A1

    公开(公告)日:2010-04-29

    申请号:US12588804

    申请日:2009-10-28

    IPC分类号: G02B26/10 B44C1/22

    CPC分类号: G02B26/0841

    摘要: An MEMS-scanning mirror device includes an electrostatic comb actuator, in which a mirror surface is formed below a top surface (TOPS) of the mirror device. In a method for manufacturing the MEMS-scanning mirror device having the electrostatic comb actuator, a mirror surface (10BS) of a mirror plate (10B) is formed by removing an insulating layer (I) thereon.

    摘要翻译: MEMS扫描镜装置包括静电梳状致动器,其中镜面形成在镜装置的顶表面(TOPS)的下方。 在具有静电梳状致动器的MEMS扫描反射镜装置的制造方法中,通过去除其上的绝缘层(I)来形成镜面板(10B)的镜面(10BS)。

    Eye optical characteristic measuring apparatus
    136.
    发明授权
    Eye optical characteristic measuring apparatus 失效
    眼睛光学特性测量仪器

    公开(公告)号:US07677731B2

    公开(公告)日:2010-03-16

    申请号:US11940886

    申请日:2007-11-15

    IPC分类号: A61B3/10 A61B3/00

    CPC分类号: A61B3/1015 A61B3/10

    摘要: Scattering can be measured by using an optical system having a Hartman-Shack wave-surface sensor. An eye optical characteristic measuring instrument comprises a light source unit 10 for emitting a light beam of a wavelength in the near-infrared region, an illumination optical system 40 for illuminating a small area of the retinal of an eye to be measured with the light beam from the light source unit 10, a light-receiving optical system 20 for receiving a part of the reflected beam of the light beam from the light source unit 10 reflected from the retina through a converting member for converting the part of the reflected light beam into at least substantially 17 light beams, a light-receiving section 23 for receiving the received light beam directed by the light-receiving optical system 20 and generating a signal, and a calculating unit for determining the wavefront aberration of the light beam entering the light-receiving optical system 20 and the degree of scattering of the received light beam on the basis of the signal from the light-receiving section 23.

    摘要翻译: 可以通过使用具有Hartman-Shack波表面传感器的光学系统来测量散射。 眼睛光学特性测量仪器包括用于发射近红外区域的波长的光束的光源单元10,用于用光束照射待测眼睛的视网膜的小区域的照明光学系统40 来自光源单元10的光接收光学系统20,用于接收来自光源单元10的光束的反射光束的一部分,该光源单元10从视网膜反射通过转换部件,用于将部分反射光束转换成 至少基本上17个光束,用于接收由光接收光学系统20引导的接收光束并产生信号的光接收部分23,以及用于确定进入发光装置的光束的波前像差的计算单元, 基于来自光接收部23的信号,接收光学系统20和接收光束的散射程度。

    Plant sensor
    137.
    发明申请
    Plant sensor 有权
    植物传感器

    公开(公告)号:US20100053628A1

    公开(公告)日:2010-03-04

    申请号:US12461803

    申请日:2009-08-25

    IPC分类号: G01N21/55

    摘要: A plant sensor includes a light source section having first and second light emitters configured to irradiate the first and second measuring light toward the object to be measured, respectively, and a light receiver configured to receive reflected light from the object to be measured, and output light-receiving signals, a controller configured to control emission of the first and second light emitters at a different timing, an integrator configured to integrate the light-receiving signals, and output an integration signal, and a calculator configured to calculate, according to the integration signal, a reflection rate as a ratio of light volume of the reflected light of the first measuring light from the object to be measured to light volume of the first measuring light, a reflection rate as a ratio of light volume of the reflected light of the second measuring light from the object to be measured to light volume of the second measuring light, and obtains information regarding a growing condition of the object to be measured.

    摘要翻译: 植物传感器包括:光源部分,其具有分别被配置为朝向被测量物体照射第一和第二测量光的第一和第二发光体;以及受光器,被配置为接收来自被测量物体的反射光,并输出 光接收信号,被配置为在不同的定时控制第一和第二发光体的发射的控制器,被配置为积分光接收信号并输出​​积分信号的积分器,以及计算器,被配置为根据 积分信号,作为被测定物体的第一测定光的反射光的光量与第一测定光的光量的比的反射率,作为反射光的反射光的光量的比的反射率 将来自被测量物体的第二测量光与第二测量光的光量进行比较,得到关于长条的信息 g待测物体的状态。

    GPS-installed all-azimuth camera and spatial data collecting device
    138.
    发明申请
    GPS-installed all-azimuth camera and spatial data collecting device 有权
    GPS安装全方位摄像机和空间数据采集装置

    公开(公告)号:US20100033371A1

    公开(公告)日:2010-02-11

    申请号:US12462004

    申请日:2009-07-28

    IPC分类号: G01S1/00

    摘要: The present invention provides a GPS-installed all-azimuth camera, comprising at least a pair of GPS antennas (29a and 29b) disposed on up and down in parallel to each other, a plurality of cameras (28a-28f) which are disposed on a plane running in parallel to the GPS antennas and are capable of obtaining images in all azimuths, and a case (27) for accommodating the cameras and the GPS antennas, wherein a reference position of the GPS antennas is concurred with an image reference position of the cameras.

    摘要翻译: 本发明提供了一种GPS安装的全方位摄像机,包括至少一对彼此平行地上下设置的一对GPS天线(29a和29b),多个照相机(28a-28f)设置在 与GPS天线平行运行并且能够获得所有方位图像的平面和用于容纳摄像机和GPS天线的情况(27),其中GPS天线的参考位置与图像参考位置一致 相机。

    Ophthalmologic measuring apparatus
    139.
    发明授权
    Ophthalmologic measuring apparatus 失效
    眼科测量仪器

    公开(公告)号:US07635186B2

    公开(公告)日:2009-12-22

    申请号:US11681420

    申请日:2007-03-02

    IPC分类号: A61B3/10

    CPC分类号: A61B3/1015

    摘要: There is provided a Shack-Hartmann wavefront sensor which can repetitively perform a measurement at high speed and at short measurement intervals. An illuminating optical system includes a first polarizing optical member to alternately change a polarization condition to a first polarized light or a second polarized light, and illuminates a pulse light from a laser light source part to an ocular fundus of a subject eye through a first polarizing optical member. A light receiving optical system includes a second polarizing optical member to select each polarized light component of the reflected light from the subject eye illuminated according to the polarization condition of the first polarizing optical member, and a first and a second light receiving parts to alternately receive the reflected light of the selected polarized light component. An ophthalmologic measuring apparatus measures the wavefront aberration of the subject eye at short intervals based on the output of the first and the second light receiving parts.

    摘要翻译: 提供了Shack-Hartmann波前传感器,可以在高速和短的测量间隔内重复执行测量。 照明光学系统包括:第一偏振光学构件,用于交替地将偏振状态改变为第一偏振光或第二偏振光,并且通过第一偏振将来自激光源部分的脉冲光照射到被摄体眼睛的眼底 光学构件。 光接收光学系统包括:第二偏振光学构件,用于选择根据第一偏振光学构件的偏振状态照亮的来自被摄体的反射光的各个偏振光分量;以及第一和第二光接收部,交替地接收 所选择的偏振光分量的反射光。 眼科测量装置基于第一和第二光接收部分的输出以短的间隔测量被检眼的波前像差。

    Method for joining an optical fiber and an optical lens
    140.
    发明授权
    Method for joining an optical fiber and an optical lens 失效
    用于连接光纤和光学透镜的方法

    公开(公告)号:US07628040B2

    公开(公告)日:2009-12-08

    申请号:US10947679

    申请日:2004-09-23

    申请人: Toshiaki Takahara

    发明人: Toshiaki Takahara

    IPC分类号: C03B37/07 G02B6/255

    摘要: In the jointing method of jointing an optical fiber F a softening point of which is higher than an optical lens L to the optical lens L, only the optical lens is softened by heating, and an end face as a joint portion of the optical fiber is pushed into a joint portion of the softened optical lens to thereby joint them.

    摘要翻译: 在将软化点高于光学透镜L的光纤F连接到光学透镜L的接合方法中,仅光学透镜通过加热软化,并且作为光纤的接合部的端面为 推入软化的光学透镜的接合部分,从而将它们接合。