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    • 4. 发明授权
    • Noncontact surface form measuring apparatus
    • 非接触式表面测量装置
    • US07777874B2
    • 2010-08-17
    • US12107991
    • 2008-04-23
    • Katsushige NakamuraKatsuhiro Miura
    • Katsushige NakamuraKatsuhiro Miura
    • G01N21/00
    • G01B11/24
    • A noncontact form measuring apparatus emits a laser beam L. In the apparatus, a prism bends the laser beam into an X-axis direction, so that a Z-axis displacement of an objective optical system is converted by the prism into an X-axis displacement on a measurement coordinate system. A movement of an X-axis stage is converted into a Z-axis displacement on the measurement coordinate system. The apparatus moves an internal gear as a measurement object and the prism, reads X, Y, and Z coordinates at each focal point, and measures a three-dimensional form of inner teeth of the internal gear. The apparatus may translate the internal gear in a Y-axis direction, to measure a partial form of the inner teeth. The apparatus may turn the internal gear in an angular θ-direction, to measure a whole circumferential form of the inner teeth.
    • 非接触形式测量装置发射激光束L.在该装置中,棱镜将激光束弯曲成X轴方向,使得物镜光学系统的Z轴位移由棱镜转换为X轴 测量坐标系上的位移。 X轴平台的移动在测量坐标系上转换为Z轴位移。 该装置移动作为测量对象的内齿轮和棱镜,在每个焦点处读取X,Y和Z坐标,并测量内齿轮的内齿的三维形式。 该装置可以沿Y轴方向平移内齿轮,以测量内齿的部分形式。 该装置可以使内齿轮以角度和方向转动,以测量内齿的整个圆周形式。
    • 6. 发明申请
    • NONCONTACT SURFACE FORM MEASURING APPARATUS
    • 非表面表面测量装置
    • US20080266569A1
    • 2008-10-30
    • US12107991
    • 2008-04-23
    • Katsushige NakamuraKatsuhiro Miura
    • Katsushige NakamuraKatsuhiro Miura
    • G01B9/02
    • G01B11/24
    • A noncontact form measuring apparatus emits a laser beam L. In the apparatus, a prism bends the laser beam into an X-axis direction, so that a Z-axis displacement of an objective optical system is converted by the prism into an X-axis displacement on a measurement coordinate system. A movement of an X-axis stage is converted into a Z-axis displacement on the measurement coordinate system. The apparatus moves an internal gear as a measurement object and the prism, reads X, Y, and Z coordinates at each focal point, and measures a three-dimensional form of inner teeth of the internal gear. The apparatus may translate the internal gear in a Y-axis direction, to measure a partial form of the inner teeth. The apparatus may turn the internal gear in an angular θ-direction, to measure a whole circumferential form of the inner teeth.
    • 非接触形式测量装置发射激光束L.在该装置中,棱镜将激光束弯曲成X轴方向,使得物镜光学系统的Z轴位移由棱镜转换为X轴 测量坐标系上的位移。 X轴平台的移动在测量坐标系上转换为Z轴位移。 该装置移动作为测量对象的内齿轮和棱镜,在每个焦点处读取X,Y和Z坐标,并测量内齿轮的内齿的三维形式。 该装置可以沿Y轴方向平移内齿轮,以测量内齿的部分形式。 该装置可以使角度θ方向的内齿轮转动,以测量内齿的整个周向形状。
    • 8. 发明授权
    • Stereomicroscope
    • 立体显微镜
    • US08477416B2
    • 2013-07-02
    • US12746655
    • 2008-12-09
    • Katsushige Nakamura
    • Katsushige Nakamura
    • G02B21/22
    • G02B21/0012G02B21/22
    • A stereomicroscope has a rotary mirror to switch an optical path of a beam from an objective optical system between a normal optical path A and an image optical path B. Accordingly, a main operator D1 can keep his or her eyes on eyepieces 15 when switching an optical image through the normal optical path A and an electronic image through the image optical path B from one to another. A zooming optical system 10 is horizontally arranged in the normal optical path A and a high-magnification optical path C is formed on a horizontally outer side of the zooming optical system 10, to reduce a vertical dimension of a body of the microscope and secure a wide work space.
    • 立体显微镜具有旋转镜,以在正常光路A和图像光路B之间切换来自物镜光学系统的光束的光路。因此,主操作器D1可以在切换时将其眼睛保持在目镜15上 通过正常光路A的光学图像和通过图像光路B从一个到另一个的电子图像。 缩放光学系统10在普通光路A中水平布置,并且高倍率光路C形成在变焦光学系统10的水平外侧,以减小显微镜主体的垂直尺寸并确保 宽工作空间。
    • 9. 发明授权
    • Dental treatment observation system
    • 牙科治疗观察系统
    • US08200073B1
    • 2012-06-12
    • US13011110
    • 2011-01-21
    • Katsushige Nakamura
    • Katsushige Nakamura
    • A61B1/04
    • A61B1/00193A61B1/00149
    • A dental treatment observation system includes a photographing unit supported with a first auxiliary arm at a front end of a support arm extending from a stand and a stereoscopic display unit supported with a second auxiliary arm at the front end of the support arm. The stand allows the photographing unit and stereoscopic display unit together to be widely moved and the first and second auxiliary arms allow the units to be separately moved in optional directions. The system is appropriate for dental treatment and is capable of reducing fatigue of a dentist during treatment.
    • 牙科治疗观察系统包括拍摄单元,所述拍摄单元由支撑臂的前端处的第一辅助臂和在支撑臂的前端处由第二辅助臂支撑的立体显示单元支撑。 支架允许拍摄单元和立体显示单元一起被广泛移动,并且第一和第二辅助臂允许单元在任选的方向上分开移动。 该系统适用于牙科治疗,能够减少治疗期间牙医的疲劳。
    • 10. 发明授权
    • Stereomicroscope with camera for assistant
    • 立体显微镜带摄像头助手
    • US08144393B2
    • 2012-03-27
    • US13070042
    • 2011-03-23
    • Katsushige Nakamura
    • Katsushige Nakamura
    • G02B21/22
    • G02B21/0012G02B21/22G02B21/362
    • A stereomicroscope includes a microscope main body and a camera for assistant. The microscope main body includes therein an objective optical system, a zoom optical system and an eyepiece optical system. The camera for assistant is detachably mounted to the microscope main body. The microscope main body provides to a main operator a pair of optical images including a certain binocular disparity as viewed from an observation direction of the main operator. The camera for assistant provides to an assistant a pair of electron images including a certain binocular disparity as viewed from an observation direction of the assistant. The observation directions of the main operator and the assistant cross at a certain angle. The camera for assistant outputs the pair of electron images into a stereo viewer which is separated from the microscope main body.
    • 立体显微镜包括显微镜主体和助手相机。 显微镜主体包括物镜光学系统,变焦光学系统和目镜光学系统。 助手相机可拆卸地安装在显微镜主体上。 显微镜主体向主操作者提供从主操作者的观察方向观察到的包括一定的双目视差的一对光学图像。 辅助摄像机向辅助人员提供一对电子图像,包括从助手的观察方向观察到的一定的双目视差。 主操作员和助手的观察方向以一定角度交叉。 辅助摄像机将一对电子图像输出到与显微镜主体分离的立体观察器中。