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    • 3. 发明授权
    • Non contact measuring method for three dimensional micro pattern in
measuring object
    • 测量对象中三维微图案的非接触式测量方法
    • US06005669A
    • 1999-12-21
    • US65493
    • 1998-04-24
    • Heui Jae PahkSung Wook ChoWoo Jung Ahn
    • Heui Jae PahkSung Wook ChoWoo Jung Ahn
    • G01B11/30G01B11/02G01B11/06G01B11/24G01B11/00
    • G01B11/0608G01B11/02
    • A non-contacting measuring method for three dimensional micro pattern in a measuring object is disclosed. Three dimensional micro pattern of the surface of the measuring object is measured using blur of light. For measurement, a mechanism of an optical window with a slit is inserted between light source and the measuring object. The blurred image is captured by charge coupled device sensor based image frame grabber, and is analyzed in personal computers. All the values of the relative height differences are obtained in overall scanning measurement area of the measuring object. The relative height differences are the distances from the reference position to the other positions. The reference position is selected when its image is sharp in focus on the screen. At this time, images of the other positions except the reference position are blurred out of focus on the screen. Also, from the law of geometric optics and the geometric similarity of triangles, the relation equation between the height difference and the ratio of blurred image size to sharp image size can be constructed. When the size of the image of the reference position and the sizes of the images with the blurred image of the other positions are measured, all the height differences between the reference position and the other position can be calculated if the coefficients of the relation equation are evaluated.
    • 公开了一种用于测量对象中的三维微图案的非接触测量方法。 使用模糊的光来测量测量对象的表面的三维微图案。 为了测量,在光源和测量对象之间插入具有狭缝的光学窗口的机构。 模糊图像通过基于电荷耦合器件传感器的图像帧获取器捕获,并在个人计算机中进行分析。 在测量对象的整个扫描测量区域中获得相对高差的所有值。 相对高度差是从参考位置到其他位置的距离。 当其图像在屏幕上焦点清晰时,选择参考点。 此时,除了参考位置之外的其他位置的图像在屏幕上失焦。 另外,从几何光学定律和三角形的几何相似度可以看出,高差与模糊图像尺寸与图像大小之间的关系方程可以被构建。 当测量参考位置的图像的大小和具有其他位置的模糊图像的图像的尺寸时,如果关系式的系数为 评估。
    • 9. 发明申请
    • AN INTELLECTUAL BIO-CHIP READER FOR ABUNDANT DIAGNOSIS BY USING AN OPTICAL IDENTIFICATION CODE
    • 一个知识型生物芯片阅读器,用于通过使用光学识别代码进行深入诊断
    • WO02053013A2
    • 2002-07-11
    • PCT/KR0001553
    • 2000-12-29
    • DIACHIP LTDPAHK HEUI-JAEHWANG YOUNG-MIN
    • PAHK HEUI-JAEHWANG YOUNG-MIN
    • G01N21/64A61B
    • G01N21/6428
    • The present invention relates to a bio-chip reader for abundant diagnosis, more concretely relates to a bio-chip reader by having an optical sensor for abundant diagnosis on medical testing samples on a bio-chip for a short time. The bio-chip reader recognizes an optical identification code on the bio-chip by using its optical sensor. Then, it retrieves patient-related information and bio-chip's information from a database corresponding to the optical identification code and automatically diagnoses the medical testing samples. The bio-chip's information includes at least one selected from the group consisting of sample types of spots, sequences and arrangements of spot-arrays, standard positions and sizes and spaces of spots. Additionally, the bio-chip reader recognizes standard spots sticking on the bio-chip by using its optical sensor. Then, it automatically aligns and classifies spot-arrays sticking on the bio-chip and diagnoses the medical testing samples by using the standard spots.
    • 本发明涉及用于大量诊断的生物芯片读取器,更具体地涉及一种生物芯片读取器,其具有用于在短时间内在生物芯片上对医学测试样品进行大量诊断的光学传感器。 生物芯片读取器通过使用其光学传感器识别生物芯片上的光学识别码。 然后,从与光学识别码对应的数据库中检索患者相关信息和生物芯片的信息,并自动诊断医学检测样本。 生物芯片的信息包括从斑点的样本类型,点阵列的顺序和排列,标准位置以及斑点的大小和空间中选择的至少一个。 此外,生物芯片读取器通过使用其光学传感器识别粘附在生物芯片上的标准点。 然后,它自动对准和分类贴在生物芯片上的点阵列,并通过使用标准点诊断医学测试样品。