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    • 51. 发明公开
    • METHOD OF TIMING HEADLAMPS OR LIGHTING PROJECTORS
    • VERFAHREN ZUR EINSTELLUNG VON SCHEINWERFERN ODER LICHTPROJEKTOREN
    • EP1903323A2
    • 2008-03-26
    • EP06831910.2
    • 2006-05-30
    • Seetech Sabadell S.C.P
    • SERRA CAMACHO, JuanSERRA AMORÓS, JAN
    • G01M11/06
    • G01M11/065G01M11/064
    • Comprises the following phases: in first phase a vehicle (1) is facing an obstacle (4), screen or wall defining a distance, in second phase is determined the type of headlamp or lighting projector and its space position in relation to the obstacle, screen or wall, automated or hand operated, in third phase the headlamp or lighting projector of the vehicle is turn on and its beam (3) is projected in the obstacle, screen or wall, defining a real drawing (5) of the beam, in fourth phase, according to the space position, the distance to the wall, screen or obstacle and the type of headlamp or lighting projector a processor defines a theoretical beam, and in fifth phase a first artificial viewer (10) takes data of the real drawing and transfers them to the processor which compares them with those of the theoretical drawing.
    • 包括以下阶段:在第一阶段,车辆(1)面向障碍物(4),在第二阶段中限定距离的屏幕或壁确定前照灯或照明投影仪的类型及其相对于障碍物的空间位置, 屏幕或墙壁,自动化或手动操作,在第三阶段,车辆的前照灯或照明投影仪被打开,并且其光束(3)被投影在障碍物,屏幕或壁中,限定了光束的真实绘图(5) 在第四阶段中,根据空间位置,到墙壁,屏幕或障碍物的距离以及处理器定义理论波束的前照灯或照明投影仪的类型,并且在第五阶段中,第一人造观察器(10)获取真实的数据 绘制并将其传输到处理器,将其与理论图纸进行比较。
    • 58. 发明公开
    • Horizontal zero, viewing port assembly
    • Einbau einer durchsichtigen Abdeckung zurPrüfungeiner horizo​​ntalen Einstellung。
    • EP0618107A2
    • 1994-10-05
    • EP94200539.8
    • 1994-03-03
    • TEXTRON INC.
    • Schmitt, Karl Roger
    • B60Q1/068G01M11/06
    • B60Q1/007B60Q1/0686G01M11/062
    • The present invention envisions a headlamp calibration assembly (42) for use with an adjustable headlamp assembly (22). The headlamp assembly (22) includes a housing (30), a moveable headlamp component (32), such as a reflector, adjustably retained in the housing (30) and horizontal and vertical aiming devices (36,34). The housing (30) has a viewing port (46) formed therethrough for viewing inside of the housing (30) for observing the movable component. The calibration assembly (42) includes an adjustably mounted lens (44) positioned over the viewing port (46), horizontal position indicia (62) on the reflector (32) positioned for viewing through the lens (44) and viewing port (46) including a zero adjustment indicator (80) represented by a selected one of the horizontal position indicia (62), and sight means (66) on the lens (44) in the form of indicia or the like for sighting and alignment with the horizontal position indicia (62) to attain zero adjustment. The sighting device (66) on the lens (44) includes two pairs of spaced apart parallel lines (68) on either side of the lens (44) to minimize parallax when viewing the horizontal position indicia (62). Additionally, a magnifying prism (64) may be formed in the lens (44) so that smaller indicia may be used to thereby increase the precision of the horizontal adjustment. The horizontal position indicia (62) may be positionable on or proximate to a vertical position indicating device (50) such as a spirit level (54). The vertical position indicating device (50) may be positioned for viewing through the lens (44) and viewing port (46).
    • 诸如反射器的相对可移动的部件可调节地保持在壳体中。 相对可移动的部件可以水平瞄准,在壳体的表面中具有观察口,用于在壳体内观察。 前照灯校准组件包括设置在观察端口上方的相对可移动的透镜; 以及水平位置,以指示的形式指示与相对可移动部件可操作地相关联并且通过透镜和观察端口定位。 瞄准器可操作地与透镜相关联,用于瞄准标记,使得一旦达到相对可移动部件的期望的水平位置,可以移动透镜以使视线与标记对准以提供所需位置的可再现指示。 水平位置指示器包括从反射器延伸的臂,臂具有放置它的标记。 反射镜的水平运动产生标记相对于视线的相应运动。