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    • 3. 发明申请
    • Inspection Systems for Glass Sheets
    • 玻璃板检验系统
    • US20100296084A1
    • 2010-11-25
    • US12782832
    • 2010-05-19
    • David BergClarke Kimberly EastmanJacques Gollier
    • David BergClarke Kimberly EastmanJacques Gollier
    • G01N21/00
    • G01N21/896
    • Glass inspection systems are provided for detecting particles and defects in or on a glass sheet or glass ribbon (2, 14). The system is mounted so that the surface (1) to be inspected is in the object plane of a reflective lens (10). The lens images a thin stripe area, long in the direction tangent to the lens circumference and short in the radial direction, onto a linescan camera (18). A line illuminator (12) can be mounted so that it illuminates the stripe area. To perform the inspection, the system is moved with respect to the glass in the direction perpendicular to the long axis of the stripe, either by moving the system over the glass or by moving the glass while the system is fixed. Image information is collected by the linescan camera during this motion and assembled into an image.
    • 提供玻璃检查系统用于检测玻璃板或玻璃带上或其上的颗粒和缺陷(2,14)。 该系统被安装成使得被检查的表面(1)处于反射透镜(10)的物平面中。 透镜将与透镜圆周相切的方向上的长条形区域沿半径方向成像在条纹相机(18)上。 可以安装线照明器(12),使其照亮条纹区域。 为了执行检查,系统通过在系统固定时将系统移动到玻璃上或移动玻璃,使其相对于玻璃沿与条纹的长轴垂直的方向移动。 图像信息由行扫描摄像机在此运动期间收集并组装成图像。
    • 4. 发明授权
    • Inspection systems for glass sheets
    • 玻璃板检验系统
    • US07929129B2
    • 2011-04-19
    • US12782832
    • 2010-05-19
    • David BergClarke Kimberly EastmanJacques Gollier
    • David BergClarke Kimberly EastmanJacques Gollier
    • G01N21/00
    • G01N21/896
    • Glass inspection systems are provided for detecting particles and defects in or on a glass sheet or glass ribbon (2, 14). The system is mounted so that the surface (1) to be inspected is in the object plane of a reflective lens (10). The lens images a thin stripe area, long in the direction tangent to the lens circumference and short in the radial direction, onto a linescan camera (18). A line illuminator (12) can be mounted so that it illuminates the stripe area. To perform the inspection, the system is moved with respect to the glass in the direction perpendicular to the long axis of the stripe, either by moving the system over the glass or by moving the glass while the system is fixed. Image information is collected by the linescan camera during this motion and assembled into an image.
    • 提供玻璃检查系统用于检测玻璃板或玻璃带上或其上的颗粒和缺陷(2,14)。 该系统被安装成使得被检查的表面(1)处于反射透镜(10)的物平面中。 透镜将与透镜圆周相切的方向上的长条形区域沿半径方向成像为薄的条纹区域,并将其形成在线条相机(18)上。 可以安装线照明器(12),使其照亮条纹区域。 为了执行检查,系统通过在系统固定时将系统移动到玻璃上或移动玻璃,使其相对于玻璃沿与条纹的长轴垂直的方向移动。 图像信息由行扫描摄像机在此运动期间收集并组装成图像。
    • 8. 发明授权
    • Systems and methods for reducing speckle using diffusing surfaces
    • 使用扩散表面减少斑点的系统和方法
    • US08678599B2
    • 2014-03-25
    • US13112042
    • 2011-05-20
    • Jacques Gollier
    • Jacques Gollier
    • G03B21/28G03B21/26H04N3/08G02B5/02G02B13/20
    • G02B27/48H04N9/3129
    • A laser projection system includes a light source, an optical scanning component, a focusing component, a speckle reduction diffusing surface, and an optical collimating component. The light source may include at least one laser configured to emit an output beam. The focusing component focuses the output beam at a first focused point. The speckle reduction diffusing surface is selectively introduced into an optical path at the first focused point. The optical collimating component collimates the output beam onto the optical scanning component. At least a portion of a scanned laser image is generated on a projection surface by operating the laser for optical emission of encoded image data and controlling the optical scanning component to scan the output beam. The optical collimating component images the first focused point at a second focused point at the projection surface when the speckle reduction diffusing surface is in the optical path.
    • 激光投影系统包括光源,光学扫描部件,聚焦部件,散斑缩小扩散表面和光学准直部件。 光源可以包括配置成发射输出光束的至少一个激光器。 聚焦组件将输出光束聚焦在第一个聚焦点。 在第一聚焦点选择性地将光斑缩小扩散面引入光路。 光学准直部件将输出光束准直到光学扫描部件上。 扫描的激光图像的至少一部分通过对激光进行编码图像数据的光发射而在投影面上产生,并且控制光学扫描部件扫描输出光束。 当光斑缩小扩散表面处于光路时,光学准直分量将第一聚焦点成像在投影表面的第二聚焦点处。
    • 9. 发明申请
    • Multi-Colored Pixelated Display with Sparkle Reduction Surface
    • 多色像素显示与闪光表面
    • US20130127689A1
    • 2013-05-23
    • US13651652
    • 2012-10-15
    • Jacques Gollier
    • Jacques Gollier
    • G09G3/20
    • G02F1/133504G02B5/0215G02B5/1842G02F1/133502G02F2001/133562G02F2201/305
    • Multi-colored pixelated displays are provided where a sparkle reduction surface comprising a micron grade diffraction element is positioned between the image display element and the display surface. More specifically, in accordance with one embodiment of the present disclosure, a multi-colored pixelated display is provided comprising an image display element and a transparent display cover. The image display element comprises an array of display pixels divided into a plurality of display sub-pixels associated with respective dedicated display color components. The transparent display cover comprises a display surface that is susceptible to marking and a sparkle reduction surface. The sparkle reduction surface is positioned between the image display element and the display surface along an optical path of the pixelated display and is spaced from the image display element by an optical distance D. The sparkle reduction surface comprises a micron grade diffraction element.
    • 提供多色像素显示器,其中包括微米级衍射元件的闪光减少表面位于图像显示元件和显示表面之间。 更具体地,根据本公开的一个实施例,提供了包括图像显示元件和透明显示器盖的多色像素化显示器。 图像显示元件包括被分成与各个专用显示颜色分量相关联的多个显示子像素的显示像素的阵列。 透明显示盖包括易于标记的显示表面和闪光表面。 闪光减少表面沿着像素化显示器的光路定位在图像显示元件和显示表面之间,并且与图像显示元件间隔开光学距离D.闪光减少表面包括微米级衍射元件。