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    • 1. 发明申请
    • HIGH SPEED, HIGH RESOLUTION, THREE DIMENSIONAL PRINTED CIRCUIT BOARD INSPECTION SYSTEM
    • 高速,高分辨率,三维印刷电路板检测系统
    • WO2013081882A1
    • 2013-06-06
    • PCT/US2012/065838
    • 2012-11-19
    • CYBEROPTICS CORPORATIONCARUSO, Beverly
    • SKUNES, Timothy, A.HAUGAN, Carl, E.HAUGEN, Paul, R.RUDD, Eric, P.
    • H05K13/08G01N21/956H04N13/00
    • G01P3/40G01N21/8806G01N21/956H04N7/188H04N13/243H04N2013/0081
    • An optical inspection system (92) includes a printed circuit board (PCB) transport (26) and an illuminator (65) that provides at least a first strobed illumination field. The illuminator includes a light pipe (64) having a first end (68) proximate the PCB (12), and a second end (69) opposite the first end (68) and spaced from the first end (68). An array (4) of cameras (2A - 2H) is configured to digitally image the PCB (12) and to generate a plurality of images of the PCB (12) with the at least first strobed illumination field type. At least one structured light projector (8) is disposed to project structured illumination on the PCB (12). The at least one array of cameras (6,7) is configured to digitally image the PCB (12) while the PCB (12) is illuminated with structured light, to provide a plurality of structured light images. A processing device (80) is configured to generate an inspection result as a function of the plurality of images and the plurality of structured light images.
    • 光学检查系统(92)包括提供至少第一选通照明场的印刷电路板(PCB)传输(26)和照明器(65)。 照明器包括具有靠近PCB(12)的第一端(68)的光管(64)和与第一端(68)相对并且与第一端(68)间隔开的第二端(69)。 相机(2A-2H)的阵列(4)被配置为对所述PCB(12)进行数字成像,并且利用所述至少第一选通照明场类型生成所述PCB(12)的多个图像。 设置至少一个结构化的光投影仪(8)以将结构化照明投影在PCB(12)上。 所述至少一个相机阵列(6,7)被配置为在PCB(12)被结构化光照射的同时对PCB(12)进行数字成像,以提供多个结构化的光图像。 处理装置(80)被配置为产生作为多个图像和多个结构光图像的函数的检查结果。
    • 2. 发明申请
    • HIGH SPEED OPTICAL INSPECTION SYSTEM WITH ADAPTIVE FOCUSING
    • 具有自适应聚焦的高速光学检测系统
    • WO2011056976A1
    • 2011-05-12
    • PCT/US2010/055452
    • 2010-11-04
    • CYBEROPTICS CORPORATIONHAUGAN, Carl, E.SKUNES, Timothy, A.RUDD, Eric, P.CARUSO, Beverly
    • HAUGAN, Carl, E.SKUNES, Timothy, A.RUDD, Eric, P.
    • G01N21/956
    • H05K13/08G01N21/8806G01N21/8903G01N21/956G01N2021/8812G01N2021/8816G01N2021/8822G01N2021/8924G01N2021/95638G01N2201/0635G01R31/304
    • An optical inspection system (41, 42, 43, 44, 45) for inspecting a substrate (10) is provided. The system (41, 42, 43, 44, 45) includes an array (4) of cameras (2A-2H) configured to acquire a plurality of sets of images as the substrate (10) and the array (4) undergo relative motion with respect to each other. At least one focus actuator (9A-9H) is operably coupled to each camera (2A-2H) of the array (4) of cameras (2A-2H) to cause displacement of at least a portion of each camera (2A-2H) that affects focus. A substrate range calculator (16) is configured to receive at least portions of images from the array (4) and to calculate range between the array (4) of cameras (2A-2H) and the substrate (10). A controller (80) is coupled to the array (4) of cameras (2A-2H) and to the range calculator (16). The controller (80) is configured to provide a control signal to each of the at least one focus actuator (9A-9H) to adaptively focus each camera (2A-2H) of the array (4) during the relative motion.
    • 提供了一种用于检查基板(10)的光学检查系统(41,42,43,44,45)。 系统(41,42,43,44,45)包括被配置为获取多组图像作为基板(10)并且阵列(4)经历相对运动的相机(2A-2H)阵列(4) 相对于彼此。 至少一个聚焦致动器(9A-9H)可操作地耦合到相机(2A-2H)的阵列(4)的每个相机(2A-2H),以引起每个相机(2A-2H)的至少一部分的位移, 影响重点。 衬底范围计算器(16)被配置为接收来自阵列(4)的图像的至少一部分,并且计算摄像机(2A-2H)的阵列(4)和衬底(10)之间的距离。 控制器(80)耦合到相机(2A-2H)的阵列(4)和范围计算器(16)。 控制器(80)被配置为向至少一个聚焦致动器(9A-9H)中的每一个提供控制信号,以在相对运动期间自适应地聚焦阵列(4)的每个相机(2A-2H)。
    • 4. 发明申请
    • COMPONENT SENSOR FOR PICK AND PLACE MACHINE USING IMPROVED SHADOW IMAGING
    • 使用改进的阴影成像的拾取和放置机器的组件传感器
    • WO2008153885A1
    • 2008-12-18
    • PCT/US2008/007043
    • 2008-06-05
    • CYBEROPTICS CORPORATIONRUDD, Eric, P.KONICEK, John, P.GAIDA, John, D.
    • RUDD, Eric, P.KONICEK, John, P.GAIDA, John, D.
    • H05K13/04
    • H05K13/08
    • A method (100) of sensing a component (30) held by a nozzle (24) of a pick and place machine is provided. The method (100) includes engaging (102) a source of illumination (60) and recording (104) a reference background image when no component is held by the nozzle (24). Then, a component (30) is adhered (108) to the nozzle (24). A shadow image of the component is detected (110) while the component (30) is held by the nozzle (24). The detected shadow image of the component (30) is adjusted (112) based upon the recorded reference background image. Positional information relative to the component held on the nozzle is computed (118) using the adjusted shadow image. The component (30) is then mounted upon a workpiece using the positional information.
    • 提供一种感测由拾放机的喷嘴(24)保持的部件(30)的方法(100)。 方法(100)包括当没有部件被喷嘴(24)保持时,接合(102)照明源(60)并记录(104)参考背景图像。 然后,将部件(30)粘附(108)到喷嘴(24)。 当部件(30)被喷嘴(24)保持时,检测到部件的阴影图像(110)。 基于所记录的参考背景图像来调整(112)所检测到的分量(30)的阴影图像。 使用调整后的阴影图像来计算相对于保持在喷嘴上的部件的位置信息(118)。 然后使用位置信息将部件(30)安装在工件上。
    • 10. 发明申请
    • RAPID-FIRING FLASHLAMP DISCHARGE CIRCUIT
    • 快速闪光灯放电电路
    • WO2003034796A1
    • 2003-04-24
    • PCT/US2002/024959
    • 2002-08-08
    • CYBEROPTICS CORPORATION
    • RUDD, Eric, P.HAUGAN, Carl, E.
    • H05B41/34
    • G01B11/2518G01B11/30G06T1/0007G06T7/0002G06T7/0004G06T2207/30152H03K3/57H05B41/34
    • A flashlamp circuit (130) includes a charge reservoir (136) that receives a first voltage from an external source. The charge reservoir (136) is coupled to a resonator and a plurality of discharge capacitors (140, 142) to provide a second voltage to the plurality of discharge capacitors (140, 142) that is greater than the first voltage. A switch (144) is disposed between at least one of the discharge capacitors (140, 142) and ground to selectively charge the at least one discharge capacitor (140, 142) based upon an input to the switch (144). Discharge energy is passed from the discharge capacitor(s) (140, 142) to a flashlamp (143) through a discharge bank without passing through any inductive elements. A bleeder circuit (134) can be interposed between the power supply (132) and the reservoir (136) to discharge the reservoir (136) upon shutdown.
    • 闪光灯电路(130)包括从外部源接收第一电压的电荷贮存器(136)。 电荷贮存器(136)耦合到谐振器和多个放电电容器(140,142)以向多个放电电容器(140,142)提供大于第一电压的第二电压。 开关(144)设置在至少一个放电电容器(140,142)和接地之间,以基于对开关(144)的输入来选择性地对所述至少一个放电电容器(140,142)充电。 放电能量从放电电容器(140,142)通过放电组件通过闪光灯(143)而不通过任何电感元件。 在电源(132)和储存器(136)之间可以插入泄放电路(134),以在关闭时排出储存器(136)。