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    • 1. 发明申请
    • Three dimensional microscope system and image display method thereof
    • 三维显微镜系统及其图像显示方法
    • US20040264765A1
    • 2004-12-30
    • US10874263
    • 2004-06-24
    • Kohtaro Ohba
    • G06K009/00G02B026/08
    • G02B21/22G06T5/50G06T7/12G06T7/571G06T7/593G06T2200/04G06T2207/10056G06T2207/10064G06T2207/30024G06T2207/30148
    • A three dimensional microscope system having a microscope and an image processing apparatus for displaying an image by processing an image signal obtained by the microscope, comprises reflecting units which is provided so that first optical paths from an object are approximately symmetric, and objective lens which is provided so that second optical paths from the reflecting units are approximately symmetric, wherein shading data of each part of an image is measured when focal distance of the objective lens to an imaging surface is changed, focal position of the each part being detected, an all-in-focus image about depth of the object being formed in parallel with respect to time based on a pixel having a focused pixel value, contour images of the object being recognized and formed based on each all-in-focus image, and a three dimensional image being formed by synthesizing the recognized contour images.
    • 具有显微镜和用于通过处理由显微镜获得的图像信号显示图像的图像处理装置的三维显微镜系统包括反射单元,其设置成使得来自物体的第一光路近似对称,并且物镜为 被设置为使得来自反射单元的第二光路近似对称,其中当物镜与成像表面的焦距改变时,测量图像的每个部分的阴影数据,检测每个部分的焦点位置,全部 - 关于基于具有聚焦像素值的像素而相对于时间平行地形成的物体的深度的对焦图像,基于每个全焦点图像识别和形成的对象的轮廓图像,以及三个 通过合成识别的轮廓图像形成三维图像。
    • 6. 发明申请
    • Window
    • 窗口
    • US20040246551A1
    • 2004-12-09
    • US10203938
    • 2002-10-10
    • Herman Hubertus Jacobus Reijnen
    • G02B026/08
    • G02B7/007
    • A window comprises a holder (30) having an opening for receiving a layer (44) of diamond, sapphire or like material, the opening being defined by a surface (38) which slopes from one edge (40) to an opposite edge (42) and a layer (44) of diamond, sapphire or like material having an edge surface (50) complemental with the opening-defining surface (38) located in the opening such that the complemental surfaces (38, 50) complement each other and are bonded to each other. Generally, a bonding layer (52) is provided between the complemental surfaces (38, 50).
    • 窗口包括具有用于接收金刚石,蓝宝石或类似材料的层(44)的开口的保持器(30),该开口由从一个边缘(40)向相对边缘(42)倾斜的表面(38)限定 )和金刚石,蓝宝石或类似材料的层(44),其具有与位于开口中的开口限定表面(38)互补的边缘表面(50),使得互补表面(38,50)彼此互补,并且是 彼此粘合。 通常,在互补表面(38,50)之间设置结合层(52)。
    • 8. 发明申请
    • Broadband optical beam steering system and device
    • 宽带光束转向系统及装置
    • US20040240766A1
    • 2004-12-02
    • US10838823
    • 2004-05-03
    • J. Steve AndersonMichael Y. Pines
    • G02B026/08
    • G02F1/2955G02F1/13G02F1/133524G02F1/216G02F2001/291
    • A small, compact optical scanning system with small aperture size requirements, wide field-of-regard and minimal color dispersion characteristics. The inventive scanning system and method provides for optical beam steering over a broad spectral band and over a wide field-of-regard. The inventive system includes a novel device for receiving an input wavefront of electromagnetic energy along a first axis and refracting the wavefront as an output wavefront along a second axis. The device is a unique form of a multi-channel liquid crystal array in which each channel has a length parallel to the first axis. By applying signals to change the refractive index of each channel, the incident wavefront can be steered at an angle with respect to the first axis and otherwise manipulated according to the index variant pattern induced in the array. Accordingly, the output beam is steered in response to the applied signals.
    • 一种小型,紧凑的光学扫描系统,具有小孔径尺寸要求,广泛的视野和最小的色散特性。 本发明的扫描系统和方法提供了在宽谱带上和广泛的视野范围内的光束转向。 本发明的系统包括一种新颖的装置,用于沿第一轴接收电磁能的输入波前,并沿着第二轴折射波前作为输出波前。 该装置是多通道液晶阵列的独特形式,其中每个通道具有与第一轴平行的长度。 通过施加信号以改变每个通道的折射率,入射波阵面可以相对于第一轴线成角度转向,并根据阵列中引起的折射率变化图案进行操作。 因此,输出光束响应于所施加的信号被转向。
    • 9. 发明申请
    • Movable microstructure with contactless stops
    • 具有非接触式止动件的可移动微结构
    • US20040240021A1
    • 2004-12-02
    • US10871466
    • 2004-06-18
    • PTS Corporation
    • Lilac Muller
    • G02B026/08
    • B81B3/0016B81B2201/042G02B26/0841Y10S359/90Y10S359/904
    • A movable microstructure is provided that mitigates stiction. A substrate is provided on which a structural linkage is connected to support a structural film. A hold electrode is connected with the substrate at a position laterally beyond an orthogonal projection of the structural film on the substrate. It is configured to hold the structural film electrostatically in a tilted position with respect to the substrate upon application of a potential difference between the structural film and the hold electrode. Because of its positioning with respect to the structural film, it is ensured that the structural film is not in contact with the substrate when the structural film is being held by the hold electrode.
    • 提供可移动的微结构以减轻粘性。 提供了一个其上连接有结构连杆以支撑结构膜的基底。 保持电极在横向超过结构膜在基板上的正交投影的位置处与基板连接。 构造成在施加结构膜和保持电极之间的电位差时,将结构膜静电地保持在相对于基板的倾斜位置。 由于其相对于结构膜的定位,当结构膜被保持电极保持时,确保结构膜不与基板接触。