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    • 3. 发明申请
    • CAPACITOR AND MANUFACTURING METHOD THEREOF
    • 电容器及其制造方法
    • US20130155578A1
    • 2013-06-20
    • US13615650
    • 2012-09-14
    • Hsieh-Ho TsaiYu-Lin HsinYu-Ming LinLi-Key ChenMei-Hua WangChih-Kuang Chang
    • Hsieh-Ho TsaiYu-Lin HsinYu-Ming LinLi-Key ChenMei-Hua WangChih-Kuang Chang
    • H01G9/00H01G9/042
    • H01G11/24H01G11/28H01G11/32H01G11/86Y02E60/13
    • A capacitor and a manufacturing method thereof are provided. Two electrodes are disposed opposite to each other. Two electrode protection layers are respectively disposed on inner sides of the electrodes and include carbon particles each covered and bonded with a polymer shell. Active carbon layers are disposed on opposite inner sides of the electrode protection layers. The separator is disposed between the active carbon layers. The electrolyte fills between the electrode protection layers. The polymer shells of each electrode protection layer are bonded to the surface of the corresponding electrode by first and second functional groups. The first functional groups include thiol groups. The second functional groups include epoxy groups or carboxylic groups. The electrode protection layers serve as adhesion layers between the active carbon layers and the electrodes, and protect the electrodes from being corroded by the acid electrolyte solution.
    • 提供电容器及其制造方法。 两个电极彼此相对设置。 两个电极保护层分别设置在电极的内侧,并且包括各自覆盖并与聚合物壳结合的碳颗粒。 活性碳层设置在电极保护层的相对的内侧。 分离器设置在活性碳层之间。 电解质填充在电极保护层之间。 每个电极保护层的聚合物壳通过第一和第二官能团结合到相应电极的表面。 第一官能团包括硫醇基团。 第二官能团包括环氧基或羧基。 电极保护层用作活性碳层和电极之间的粘合层,并且保护电极免受酸性电解质溶液的腐蚀。
    • 4. 发明授权
    • Capacitor and manufacturing method thereof
    • 电容器及其制造方法
    • US08848339B2
    • 2014-09-30
    • US13615650
    • 2012-09-14
    • Hsieh-Ho TsaiYu-Lin HsinYu-Ming LinLi-Key ChenMei-Hua WangChih-Kuang Chang
    • Hsieh-Ho TsaiYu-Lin HsinYu-Ming LinLi-Key ChenMei-Hua WangChih-Kuang Chang
    • H01G9/00H01G9/145
    • H01G11/24H01G11/28H01G11/32H01G11/86Y02E60/13
    • A capacitor and a manufacturing method thereof are provided. Two electrodes are disposed opposite to each other. Two electrode protection layers are respectively disposed on inner sides of the electrodes and include carbon particles each covered and bonded with a polymer shell. Active carbon layers are disposed on opposite inner sides of the electrode protection layers. The separator is disposed between the active carbon layers. The electrolyte fills between the electrode protection layers. The polymer shells of each electrode protection layer are bonded to the surface of the corresponding electrode by first and second functional groups. The first functional groups include thiol groups. The second functional groups include epoxy groups or carboxylic groups. The electrode protection layers serve as adhesion layers between the active carbon layers and the electrodes, and protect the electrodes from being corroded by the acid electrolyte solution.
    • 提供电容器及其制造方法。 两个电极彼此相对设置。 两个电极保护层分别设置在电极的内侧,并且包括各自覆盖并与聚合物壳结合的碳颗粒。 活性碳层设置在电极保护层的相对的内侧。 分离器设置在活性碳层之间。 电解质填充在电极保护层之间。 每个电极保护层的聚合物壳通过第一和第二官能团结合到相应电极的表面。 第一官能团包括硫醇基团。 第二官能团包括环氧基或羧基。 电极保护层用作活性碳层和电极之间的粘合层,并且保护电极免受酸性电解质溶液的腐蚀。
    • 6. 发明授权
    • System and method for simulating measuring process of workpiece
    • 用于模拟工件测量过程的系统和方法
    • US09002688B2
    • 2015-04-07
    • US13316489
    • 2011-12-10
    • Chih-Kuang ChangXin-Yuan WuMin Wang
    • Chih-Kuang ChangXin-Yuan WuMin Wang
    • G06F17/50G01B21/04G05B19/401
    • G06F17/5009G01B21/047G05B2219/35346Y02P90/265
    • In a method for simulating a measuring process of a workpiece, one or more virtual probes of a workpiece measuring machine are created. A vector of each of the virtual probes is calculated, and an appropriate vector for each of measuring points of a workpiece is acquired for a computerized drawing of the workpiece. The angle between the vector of each of the measuring points and the vector of each of the virtual probes is calculated. A virtual probe is determined for each measuring point according to the calculated angles. The measuring points are sorted according to the virtual probe of each measuring point, and the measuring programs of the sorted measuring points that relate to the same virtual probe are combined. The combined measuring programs are executed to determine whether the actual probe would collide with the workpiece.
    • 在用于模拟工件的测量过程的方法中,产生工件测量机的一个或多个虚拟探针。 计算每个虚拟探针的矢量,并且为工件的计算机绘图获取工件的每个测量点的适当矢量。 计算每个测量点的矢量与每个虚拟探针的矢量之间的角度。 根据计算的角度为每个测量点确定虚拟探针。 测量点根据每个测量点的虚拟探头进行分类,并且组合与相同虚拟探针相关的排序测量点的测量程序。 执行组合的测量程序以确定实际探头是否与工件碰撞。
    • 7. 发明授权
    • Electronic device and method for establishing a safety plane in coordinate measurements
    • 用于在坐标测量中建立安全平面的电子设备和方法
    • US08982119B2
    • 2015-03-17
    • US13449294
    • 2012-04-17
    • Chih-Kuang ChangXin-Yuan Wu
    • Chih-Kuang ChangXin-Yuan Wu
    • G06T17/00G01C9/00G01B5/008G01B21/04
    • G01B5/008G01B21/047
    • In a method for establishing a safety plane in coordinate measurements, the method meshes a 3D model of a workpiece and a probe by triangles, and calculates a maximum bounding box of the probe. The method further obtains a moving path of the maximum bounding box after moving the maximum bounding box from a first measuring point to a second, and obtains a maximum space box of the moving path. If the maximum space box has one or more intersections with the workpiece, the method calculates a distance between vertices of each of the triangles falling within the maximum space box and a bottom face of the maximum space box, and obtains a point in the bottom face of the maximum space box that has a maximum distance from the triangles. By correcting a plane containing the point, the safety plane is obtained.
    • 在一种用于在坐标测量中建立安全平面的方法中,该方法通过三角形将工件和探头的三维模型网格化,并计算探头的最大边界框。 该方法在将最大边界框从第一测量点移动到第二测量点之后进一步获得最大边界框的移动路径,并获得移动路径的最大空间框。 如果最大空间框具有与工件的一个或多个交点,则该方法计算落入最大空间框中的每个三角形的顶点与最大空间框的底面之间的距离,并获得底面中的点 的最大空间框与三角形具有最大距离。 通过校正包含该点的平面,获得安全平面。