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    • 3. 发明申请
    • AUTOMATED OPTICAL INSPECTION SYSTEM FOR THE RUNOUT TOLERANCE OF CIRCULAR SAW BLADES
    • 自动光学检测系统,用于圆锯片的耐磨性
    • US20120242827A1
    • 2012-09-27
    • US13052579
    • 2011-03-21
    • Wen-Tung ChangChih-Hsien SuDong-Xie GuoGeo-Ry TangFang-Jung Shiou
    • Wen-Tung ChangChih-Hsien SuDong-Xie GuoGeo-Ry TangFang-Jung Shiou
    • H04N7/18
    • G01B11/08G01B11/2408
    • An automated optical inspection system for the runout tolerance of circular saw blades comprises a rotating device, a first and a second optical inspection module, and a computing device. The rotating device is used to rotate a circular saw blade. The circular saw blade includes multiple teeth, and each tooth has a side and a back. The first/second optical inspection module is used to capture a side/back image of the tooth. The computing device activates the rotating device to rotate the circular saw blade, and activates the first and the second optical inspection module to capture the side image and the back image of each tooth upon rotation of the circular saw blade. The computing device performs a radial-position-calculating procedure according to the side images, to obtain an amount of radial runout, and performs an axial-position-calculating procedure according to the back images, to obtain an amount of axial runout.
    • 用于圆锯片的跳动公差的自动光学检测系统包括旋转装置,第一和第二光学检查模块以及计算装置。 旋转装置用于旋转圆锯片。 圆锯片包括多个齿,每个齿都有一个侧面和一个后部。 第一/第二光学检查模块用于捕获牙齿的侧面/背面图像。 计算装置激活旋转装置以旋转圆锯片,并且激活第一和第二光学检查模块以在圆锯片旋转时捕获每个齿的侧面图像和背面图像。 计算装置根据侧面图像执行径向位置计算步骤,以获得径向跳动量,并且根据背景图像执行轴向位置计算步骤,以获得轴向跳动量。
    • 5. 发明授权
    • Magnetic separation device
    • 磁选机
    • US07763169B2
    • 2010-07-27
    • US12014708
    • 2008-01-15
    • Chih-Hsien SuChao-Hung KaoYuh-Jiuan Lin
    • Chih-Hsien SuChao-Hung KaoYuh-Jiuan Lin
    • B03C1/02
    • B03C1/288B01L9/06B03C1/03B03C1/0335B03C1/06G01N35/0098Y10T436/25Y10T436/25375Y10T436/255
    • A magnetic separation device, comprising: a separator, including a top base and a bottom base; at least a groove set, each composed of two arc-like grooves having curvatures opposite to each other; at least a magnetic member, being movably fitted inside the two arc-like grooves of the at least one groove set; and at least a test tube slot, each being formed at the outer rim of a base selected from the group consisting of the top and the bottom base of the separator; wherein the top and the bottom bases are assembled by means of a pivotal axis piecing through about at the center of the top and the bottom bases for enabling the two bases to rotate relative to each other; and one of the two arc-like groove is formed on the top base at a surface thereof facing toward the bottom base while forming another arc-like groove on the bottom base at a surface thereof facing toward the top base. With the aforesaid device, the magnetic member can be driven to slide inside the groove set while the top and the bottom bases are driven to rotate relative to each other, thereby, the magnetic member can be moved between two positions whereas one is near the test tube slot and the other is away from the same.
    • 一种磁分离装置,包括:分离器,包括顶部基部和底部底部; 至少一个槽组,每个由两个具有彼此相对的曲率的弧形槽组成; 至少一个磁性构件,可移动地装配在所述至少一个凹槽组的两个弧形槽内; 以及至少一个试管狭槽,每个试管槽形成在选自分离器的顶部和底部基部的底部的外缘上; 其中所述顶部和底部底座通过枢转轴线组装,所述枢转轴线在所述顶部和底部底部的中心附近接合,以使所述两个基座能够相对于彼此旋转; 并且两个弧形槽中的一个形成在顶部底座上的面向底部底面的表面上,同时在底部底部的面向顶部基部的表面上形成另一个弧形槽。 利用上述装置,可以驱动磁性构件在凹槽组内滑动,同时顶部和底部基座相对于彼此旋转,从而磁性构件可以在两个位置之间移动,而一个靠近测试 管槽和另一个远离同一个。
    • 6. 发明申请
    • Blood sugar detecting system
    • 血糖检测系统
    • US20080020471A1
    • 2008-01-24
    • US11703190
    • 2007-02-07
    • Chi-Min ChauChih-Hsien SuHsiang-Yuan HuangYuh-Jiuan Lin
    • Chi-Min ChauChih-Hsien SuHsiang-Yuan HuangYuh-Jiuan Lin
    • G01N33/49
    • G01N33/49
    • A blood sugar detecting system using emission quantum dots is provided. A non-cyclodextran carbohydrate-containing molecule and a glucose-recognizing molecule respectively bind to an emission quantum dot and a light-absorbing molecule to form the blood sugar measuring system. When the non-cyclodextran carbohydrate-containing molecule and the glucose-recognizing molecule bind together to bring the emission quantum dot very close to the light-absorbing molecule, a fluorescence resonance energy transfer effect is happened between them. Glucose can compete with the non-cyclodextran carbohydrate-containing molecule for the binding site of the glucose-recognizing molecule to detect glucose concentration variation.
    • 提供了使用发射量子点的血糖检测系统。 含有非环糊精碳水化合物的分子和葡萄糖识别分子分别结合发射量子点和光吸收分子以形成血糖测量系统。 当含有非环糊精碳水化合物的分子和葡萄糖识别分子结合在一起使得发光量子点非常接近光吸收分子时,它们之间发生荧光共振能量转移效应。 葡萄糖可以与含葡萄糖识别分子的结合位点的含有非环糊精碳水化合物的分子竞争,以检测葡萄糖浓度变化。