会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 21. 发明申请
    • CONTROL COMPUTER AND METHOD OF CONTROLLING ROBOTIC ARM
    • 控制计算机和控制机器人的方法
    • US20120185097A1
    • 2012-07-19
    • US13211324
    • 2011-08-17
    • SHEN-CHUN LIHSIEN-CHUAN LIANGSHOU-KUO HSU
    • SHEN-CHUN LIHSIEN-CHUAN LIANGSHOU-KUO HSU
    • B25J9/10
    • B25J9/1679G05B19/4015
    • A computer determines a first origin of a first coordinate system of a PCB, and controls a robotic arm to position a probe above the first origin. Furthermore, the computer determines a second origin of a second coordinate system of the robotic arm, and determines displacement values from the first origin to a test point in controlling movements of the robotic arm in the second coordinate system. A graph representing the test point is recognized in an image of the PCB, pixel value differences between the graph center and the image center are determined and converted to displacement correction values for controlling the movements of the robotic arm and determining 3D coordinates of the test point. The robotic arm is moved along a Z-axis of the second coordinate system to precisely position the probe on the test point of the PCB.
    • 计算机确定PCB的第一坐标系的第一原点,并且控制机器人臂将探针定位在第一原点上方。 此外,计算机确定机器人手臂的第二坐标系的第二原点,并且在控制机器人手臂在第二坐标系中的运动中确定从第一原点到测试点的位移值。 在PCB的图像中识别表示测试点的图形,并且确定图形中心和图像中心之间的像素值差异并将其转换为用于控制机器人手臂的运动并确定测试点的3D坐标的位移校正值 。 机器人臂沿着第二坐标系的Z轴移动,以将探头精确地定位在PCB的测试点上。
    • 25. 发明申请
    • REVERSING TRANSMISSION
    • 反向传输
    • US20110094334A1
    • 2011-04-28
    • US12761417
    • 2010-04-16
    • SHEN-CHUN LISHOU-KUO HSUYUNG-CHIEH CHENHSIEN-CHUAN LIANGSHIN-TING YENHUNG CHAO
    • SHEN-CHUN LISHOU-KUO HSUYUNG-CHIEH CHENHSIEN-CHUAN LIANGSHIN-TING YENHUNG CHAO
    • F16H3/40F16H3/08
    • F16D41/10F16H3/14Y10T74/19172
    • The REVERSING TRANSMISSION includes a shaft, a retainer, a spacing collar, a plurality of reversing members, two gears and two covers. The holder is sleeved on the shaft with spaced sliding notches formed thereon. The spacing collar is mounted on an outer surface of the retainer. The reversing members each includes two spaced swing plates with two reversed spiral teeth dented on two diagonal half surfaces of the two spaced swing plate. The reversing members slide into the sliding notches of the holder with two swing plates distributed at different side of the spacing collar. Each of the gears has a group of spiral teeth formed on the inner side for engaging with the group of spiral teeth of the reversing members, and cogs formed on the outer circumference surface. The covers are mounted on two opposite ends of the holder to keep the reversing member in position.
    • 逆向变速器包括轴,保持器,间隔套环,多个换向构件,两个齿轮和两个盖。 保持器套在轴上,其上形成有间隔开的滑动凹口。 间隔套环安装在保持器的外表面上。 反转构件各自包括两个间隔开的摆动板,其中两个相反的螺旋齿凹陷在两个间隔开的摆动板的两个对角半面上。 反转构件滑入保持器的滑动凹口中,两个摆动板分布在间隔环的不同侧。 每个齿轮具有形成在内侧上的一组螺旋齿,用于与反转构件的一组螺旋齿接合,并且形成在外周表面上的齿。 盖子安装在保持器的两个相对端上,以使反向构件保持在适当位置。
    • 28. 发明申请
    • ACTUATING MECHANISM AND MOBILE PLATFORM USING THE SAME
    • 执行机构和移动平台使用它
    • US20120241232A1
    • 2012-09-27
    • US13172834
    • 2011-06-30
    • SHEN-CHUN LIHSIEN-CHUAN LIANGSHOU-KUO HSU
    • SHEN-CHUN LIHSIEN-CHUAN LIANGSHOU-KUO HSU
    • B60K1/00F16H21/10
    • B65G47/901B65G47/912Y10T74/18056Y10T74/1836
    • An actuating mechanism includes first and second hollow outer shafts, two rotating wheels located between the first and second outer shafts, and an inner shaft received in the second outer shaft. Each of the first and second outer shafts forms a connecting portion at one end thereof. Each connecting portion defines two receiving holes. Each rotating wheel includes a body and a rod extending through the body. The bodies of the rotating wheels are in contact with each other. Two ends of the rod of each rotating wheel are correspondingly received in the receiving holes of the first and second outer shafts to connect the first and second outer shafts together. One end of the inner shaft contacts the rod of one rotating wheel. The inner shaft is rotatable in the second outer shaft to drive the two rotating wheels to rotate.
    • 致动机构包括第一和第二中空外轴,位于第一和第二外部轴之间的两个旋转轮以及容纳在第二外部轴中的内部轴。 第一和第二外轴中的每一个在其一端形成连接部。 每个连接部分限定两个接收孔。 每个旋转轮包括主体和延伸穿过主体的杆。 旋转轮的主体彼此接触。 每个旋转轮的杆的两端相应地容纳在第一和第二外部轴的接收孔中,以将第一和第二外部轴连接在一起。 内轴的一端接触一个旋转轮的杆。 内轴可在第二外轴中旋转以驱动两个旋转轮旋转。
    • 29. 发明申请
    • ELECTRONIC DEVICE AND METHOD FOR OPTIMIZING ORDER OF TESTING POINTS OF CIRCUIT BOARDS
    • 用于优化电路板测试点的电子设备和方法
    • US20120182154A1
    • 2012-07-19
    • US13221858
    • 2011-08-30
    • HSIEN-CHUAN LIANGSHEN-CHUN LISHOU-KUO HSU
    • HSIEN-CHUAN LIANGSHEN-CHUN LISHOU-KUO HSU
    • G08B21/00G06F19/00G06F15/00
    • G01R31/2808
    • In a method for optimizing an order in which certain points on a circuit board can be tested and evaluated, a coordinate system is established in a circuit diagram of a circuit board, and at least one locating point is preset. When an operator selects a signal path routing within the circuit diagram, the method can display the testing points in the selected signal path routing on a display device. After calculating the distance between each of the testing points and each of the at least one locating point, a group of distances is obtained. By comparing the distances, the minimum distance can be determined from the group of distances. The method further optimizes the order of the testing points according to the distance between each of the testing points and the locating point that consists of the minimum distance.
    • 在用于优化电路板上的某些点可以被测试和评估的顺序的方法中,在电路板的电路图中建立坐标系,并且至少设置一个定位点。 当操作员在电路图中选择信号路径路由时,该方法可以在显示设备上的所选信号路径路由中显示测试点。 在计算每个测试点与至少一个定位点中的每一个之间的距离之后,获得一组距离。 通过比较距离,可以根据距离组确定最小距离。 该方法根据每个测试点与由最小距离组成的定位点之间的距离进一步优化测试点的顺序。
    • 30. 发明申请
    • ELECTRONIC DEVICE AND METHOD FOR CONFIGURATING SETTING VALUES OF OSCILLOSCOPES
    • 电子设备和配置振荡器设定值的方法
    • US20120173181A1
    • 2012-07-05
    • US13284991
    • 2011-10-31
    • HSIEN-CHUAN LIANGSHEN-CHUN LISHOU-KUO HSU
    • HSIEN-CHUAN LIANGSHEN-CHUN LISHOU-KUO HSU
    • G06F19/00
    • G01R13/029
    • A method for configuring setting values of oscilloscopes selects manufactures for a first oscilloscope and a second oscilloscope, and sends a command of acquiring a type respectively to the first oscilloscope and the second oscilloscope using the control codes of the selected manufacturers, to determine if the selected manufactures are the actual manufacturer. The method sends a command of acquiring setting values, respectively to the first oscilloscope and the second oscilloscope, using the control codes of the selected manufacturers, receives and compares the setting values of the first oscilloscope and the second oscilloscope. The method changes the setting values of the second oscilloscope to be same or similar with the first oscilloscope, and writes the changed setting values into the second oscilloscope.
    • 用于配置示波器的设置值的方法为第一示波器和第二示波器选择制造商,并且使用所选制造商的控制代码向第一示波器和第二示波器分别发送获取类型的命令,以确定所选择的 制造商是实际的制造商。 该方法使用所选制造商的控制代码,分别向第一示波器和第二示波器发送获取设置值的命令,接收并比较第一示波器和第二示波器的设置值。 该方法将第二个示波器的设置值与第一个示波器相同或相似,并将更改的设置值写入第二个示波器。