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    • 1. 发明申请
    • DISTANCE MEASURING APPARATUS
    • 距离测量装置
    • US20100245799A1
    • 2010-09-30
    • US12555980
    • 2009-09-09
    • Hong Ki KIMJoo Hong KIMDong Ik SHINJung Eun NOHBack Kue LEEBoris KIRILLOV
    • Hong Ki KIMJoo Hong KIMDong Ik SHINJung Eun NOHBack Kue LEEBoris KIRILLOV
    • G01C3/02
    • G01C3/08
    • A distance measuring apparatus according to an aspect of the invention may include: a light source irradiating reference light to measure a distance; a lower reflective mirror reflecting the reference light to irradiate the reference light onto a peripheral obstacle, and reflecting reflected light, rebounded from an obstacle, so that the reflected light moves in an opposite direction along the same optical path as the reference light; a sensor lens arranged above the lower reflective mirror, converting the reference light into parallel light beams and focusing the reflected light; an upper reflective mirror arranged above the sensor lens and switching an optical path of the reflected light; and an optical sensor receiving the reflected light having the optical path thereof switched by the upper reflective mirror, wherein the upper reflective mirror reflects back the reflected light, focused after passing through the sensor lens, in an opposite direction to a moving direction thereof so that a focus of the reflected light is formed between the lower reflective mirror and the upper reflective mirror.
    • 根据本发明的一个方面的距离测量装置可以包括:照射参考光以测量距离的光源; 反射参考光的下反射镜,将参考光照射到周边障碍物上,反射从障碍物反弹的反射光,使得反射光沿与参考光相同的光路沿相反方向移动; 设置在下反射镜上方的传感器透镜,将参考光转换成平行光束并聚焦反射光; 上反射镜布置在传感器透镜之上并切换反射光的光路; 以及光学传感器,其接收由上反射镜切换的光路的反射光,其中上反射镜反射反射光,该反射光在通过传感器透镜后聚焦,沿与其移动方向相反的方向聚焦,使得 在下反射镜和上反射镜之间形成反射光的焦点。
    • 2. 发明申请
    • SURFACE DEFECT DETECTING APPARATUS AND METHOD OF CONTROLLING THE SAME
    • 表面缺陷检测装置及其控制方法
    • US20130258324A1
    • 2013-10-03
    • US13572892
    • 2012-08-13
    • Young Hun LeeJoo Hong KimSuk Joon Lee
    • Young Hun LeeJoo Hong KimSuk Joon Lee
    • G01N21/88
    • G01N21/8806G01N21/9501
    • Disclosed herein is a surface defect detecting apparatus including a stage unit having an upper surface on which a subject is disposed; at least one light source unit that is moved according to an examination condition and irradiates examination light onto a surface of the subject; an imaging unit that receives light emitted from the surface of the subject and captures an image of the surface of the subject; a controller that is connected to the at least one light source unit and the imaging unit, sets the examination condition, controls an overall operation, and detects a surface defect of the subject by using the image captured by the imaging unit; and a display unit displaying image information on the surface defect detected by the controller.
    • 本发明公开了一种表面缺陷检测装置,包括:具有上表面的台单元,物体设置在该上表面上; 至少一个光源单元,其根据检查条件移动并将检查光照射到被检体的表面上; 成像单元,其接收从被检体的表面发射的光并捕获被检体的表面的图像; 连接到所述至少一个光源单元和所述成像单元的控制器,设置所述检查条件,控制整体操作,并且通过使用由所述成像单元捕获的图像来检测所述被摄体的表面缺陷; 以及显示单元,显示由控制器检测到的表面缺陷的图像信息。
    • 3. 发明授权
    • Distance measuring apparatus
    • 距离测量仪
    • US08081299B2
    • 2011-12-20
    • US12555980
    • 2009-09-09
    • Hong Ki KimJoo Hong KimDong Ik ShinJung Eun NohBack Kue LeeBoris Kirillov
    • Hong Ki KimJoo Hong KimDong Ik ShinJung Eun NohBack Kue LeeBoris Kirillov
    • G01C3/08
    • G01C3/08
    • A distance measuring apparatus according to an aspect of the invention may include: a light source irradiating reference light to measure a distance; a lower reflective mirror reflecting the reference light to irradiate the reference light onto a peripheral obstacle, and reflecting reflected light, rebounded from an obstacle, so that the reflected light moves in an opposite direction along the same optical path as the reference light; a sensor lens arranged above the lower reflective mirror, converting the reference light into parallel light beams and focusing the reflected light; an upper reflective mirror arranged above the sensor lens and switching an optical path of the reflected light; and an optical sensor receiving the reflected light having the optical path thereof switched by the upper reflective mirror, wherein the upper reflective mirror reflects back the reflected light, focused after passing through the sensor lens, in an opposite direction to a moving direction thereof so that a focus of the reflected light is formed between the lower reflective mirror and the upper reflective mirror.
    • 根据本发明的一个方面的距离测量装置可以包括:照射参考光以测量距离的光源; 反射参考光的下反射镜,将参考光照射到周边障碍物上,反射从障碍物反弹的反射光,使得反射光沿与参考光相同的光路沿相反方向移动; 设置在下反射镜上方的传感器透镜,将参考光转换成平行光束并聚焦反射光; 上反射镜布置在传感器透镜之上并切换反射光的光路; 以及光学传感器,其接收由上反射镜切换的光路的反射光,其中上反射镜反射反射光,该反射光在通过传感器透镜后聚焦,沿与其移动方向相反的方向聚焦,使得 在下反射镜和上反射镜之间形成反射光的焦点。
    • 7. 发明申请
    • DRIVING CONTROL OF SCANNING DEVICE
    • 扫描装置的驱动控制
    • US20080283604A1
    • 2008-11-20
    • US12101842
    • 2008-04-11
    • Gi-Young ByunJoo-Hong Kim
    • Gi-Young ByunJoo-Hong Kim
    • G06K7/10
    • G06K7/10732
    • Disclosed are an apparatus for controlling a driving of a scanning device included in a scanning display apparatus and a method thereof. The apparatus for controlling a driving of the scanning device can include a sensing unit, sensing an operation status of the scanning device and outputting a sensing signal corresponding to the operation status; a sensing signal determining unit, determining whether the sensing signal is within a predetermined range; a mode selecting unit, selecting an open loop mode or a close loop mode according to a result determined by the sensing signal determining unit; and a processing unit, controlling the driving of the scanning device by outputting a driving signal according to the selected mode.
    • 公开了一种用于控制扫描显示装置中包括的扫描装置的驱动的装置及其方法。 用于控制扫描装置的驱动的装置可以包括感测单元,感测扫描装置的操作状态并输出对应于操作状态的感测信号; 感测信号确定单元,确定感测信号是否在预定范围内; 模式选择单元,根据由感测信号确定单元确定的结果来选择开环模式或闭环模式; 以及处理单元,通过根据所选择的模式输出驱动信号来控制扫描装置的驱动。