Apparatus for inspection of packaged printed circuit boards
    1.
    发明授权
    Apparatus for inspection of packaged printed circuit boards 失效
    用于检查封装印刷电路板的装置

    公开(公告)号:US5489985A

    公开(公告)日:1996-02-06

    申请号:US181586

    申请日:1994-01-14

    摘要: There is provided an apparatus of inspecting a packaged state by scanning a packaged printed circuit board with a fine light beam and detecting reflection beams of the fine light beam in a plurality of directions. A fine light beam emitted from a light source is scanned on the packaged printed circuit board substantially vertically thereto by means of a polygon mirror and a light projection f.theta. lens. An optical path correcting system receives reflection beams scattered from the packaged printed circuit board and corrects optical paths of the reflection beams. The correction is done in such a way that reflection beams having constant directional vectors regardless of the change of the scanning position of the fine light beam are received and guided to light receiving positions complying with a height at a scanning position on a plurality of photoelectric conversion devices. Through this, the packaged state of parts is inspected at a high speed, with high accuracy and over a wide range without expanding the light receiving area of the photoelectric conversion device and without causing characteristics of triogonometrical survey to change with the scanning position.

    摘要翻译: 提供了一种通过用精细光束扫描封装的印刷电路板并且检测多个方向上的精细光束的反射光来检查封装状态的装置。 通过多面反射镜和光投射光圈透镜在基板垂直于其上的印刷电路板上扫描从光源发射的精细光束。 光路校正系统接收从封装的印刷电路板散射的反射光束并校正反射光束的光路。 以这样的方式进行校正,使得具有恒定方向向量的反射光束与精细光束的扫描位置的变化无关地被接收并被引导到符合多个光电转换处的扫描位置处的高度的光接收位置 设备。 通过这种方式,在不扩大光电转换装置的光接收面积的同时,以高精度和大范围的高速度检查部件的封装状态,并且不会导致三角测量的特征随扫描位置而变化。

    Exposure equipment for display tube fabrication
    2.
    发明授权
    Exposure equipment for display tube fabrication 失效
    显示管制造曝光设备

    公开(公告)号:US5822130A

    公开(公告)日:1998-10-13

    申请号:US613101

    申请日:1996-03-08

    摘要: Light radiated from a light source is gathered by an oval mirror. The gathered light is incident on one end of a rod-shaped optical integrator, integrated and made uniform within the optical integrator, and is radiated from the other end of the optical integrator. The light from the optical integrator is diffused and projected on an exposure area of a display tube by a lens system. The lens system presents an astigmatism, thereby forming a first virtual focus and a second virtual focus on its virtual image area. The diffused light is apparently diffused vertically at the first virtual focus and apparently diffused horizontally at the second virtual focus. The first vertical focus and the second vertical focus correspond respectively in position to the positions of the vertical deflection means and horizontal deflection means of the display tube. Therefore, the directions of the exposure light beams which shed light on green, blue, and red dots are in agreement with the directions of the deflected electron beams. As a result, the deflected electron beams can sweep over the green, blue, and red dots accurately in synchronization with image signals.

    摘要翻译: 从光源辐射的光由椭圆形镜子聚集。 收集的光入射到棒状光学积分器的一端,在光学积分器内整合并均匀,并从光学积分器的另一端辐射。 来自光学积分器的光被透镜系统扩散并投影在显示管的曝光区域上。 透镜系统呈现散光,从而在其虚拟图像区域上形成第一虚拟焦点和第二虚拟焦点。 散射光明显地在第一虚拟焦点处垂直扩散,并且在第二虚拟焦点处明显地水平扩散。 第一垂直焦点和第二垂直焦点分别对应于显示管的垂直偏转装置和水平偏转装置的位置。 因此,在绿色,蓝色和红色点处发光的曝光光束的方向与偏转的电子束的方向一致。 结果,偏转的电子束可以与图像信号同步地精确地扫过绿色,蓝色和红色点。