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    • 22. 发明授权
    • Measuring device
    • 测量工具
    • US08102515B2
    • 2012-01-24
    • US11912682
    • 2006-07-03
    • Uwe Skultety-BetzBjoern HaaseJoerg StierlePeter WolfKai Renz
    • Uwe Skultety-BetzBjoern HaaseJoerg StierlePeter WolfKai Renz
    • G01C3/08
    • G01S7/497G01S7/481G01S17/08G01S17/36
    • The invention relates to a measuring instrument, particularly a hand-held instrument (10) for measuring distances, comprising at least one transmission branch (28) for a test signal and adjustable switching means (36) for deflecting the test signal. The switching means (36) reflect at least a portion of the test signal in a first switched position (42) while unblocking the transmission branch (28) for the measuring radiation in a second switched position (42′). According to the invention, the switching means (36) reflect the measuring radiation in a diffuse manner in the first switched position (42). Also disclosed is a method for producing such a measuring instrument.
    • 本发明涉及一种测量仪器,特别是用于测量距离的手持式仪器(10),包括用于测试信号的至少一个传输分支(28)和用于偏转测试信号的可调开关装置(36)。 切换装置(36)在第一切换位置(42)中反映测试信号的至少一部分,同时在第二切换位置(42')中解除用于测量辐射的传输分支(28)。 根据本发明,切换装置(36)在第一切换位置(42)中以漫射方式反射测量辐射。 还公开了一种用于生产这种测量仪器的方法。
    • 25. 发明申请
    • DEVICE FOR OPTICAL DISTANCE MEASUREMENT
    • 光学距离测量装置
    • US20090185158A1
    • 2009-07-23
    • US12293861
    • 2007-02-12
    • Peter WolfUwe Skultety-BetzJoerg StierleBjoern HaaseKai Renz
    • Peter WolfUwe Skultety-BetzJoerg StierleBjoern HaaseKai Renz
    • G01C3/08
    • G01C15/002G01S7/4816G01S17/08G01S17/32
    • The invention relates to a device for optically measuring distance, in particular a hand-held device, comprising an transmitter unit (12) which is provided with a light source (17, 18) for transmitting optical measuring radiation (13, 20, 22) to a target object (15), and a capturing unit (14) which is arranged at a distance on the optical axis (38) of the transmitter unit (14). Said capturing unit (14) comprises at least one optical detector (54) comprising a detection surface (66) for capturing optical radiation (16, 49, 50) reflected by the target object (15). According to the invention, the detection surface (66) of the detector (54) comprises an optical near range element (68), whose optically active surface (72, 74) is elongated in the direction (61) of the radiation shift for receding target object separations (48) and expands or has at least one essentially constant extension.
    • 本发明涉及一种用于光学测量距离的装置,特别是一种手持式装置,包括一个发射器单元(12),该发射器单元(12)设置有用于传输光学测量辐射(13,20,22)的光源(17,18) 以及在发射器单元(14)的光轴(38)上一定距离配置的拍摄单元(14)。 所述捕获单元(14)包括至少一个光学检测器(54),其包括用于捕获由目标物体(15)反射的光辐射(16,49,50)的检测表面(66)。 根据本发明,检测器(54)的检测表面(66)包括光学近距离元件(68),其光学活性表面(72,74)在辐射移位的方向(61)上是细长的,用于后退 目标对象分离(48)并扩展或具有至少一个基本上恒定的扩展。
    • 30. 发明申请
    • Device for adjusting an optical mirror
    • 用于调整光学镜的装置
    • US20060152829A1
    • 2006-07-13
    • US10523467
    • 2003-12-10
    • Joerg StierlePeter WolfKai RenzClemens Schulte
    • Joerg StierlePeter WolfKai RenzClemens Schulte
    • G02B5/08
    • G01S7/4813G01S7/4972G01S17/08G02B7/1825
    • A device for adjusting an optical mirror (33) is disclosed, which has a mirror holder (36), which receives the mirror (33) and is held on a holder profile section (40), and three adjusting pins (37), which pass through threaded bores (42), offset in the circumferential direction from one another in the mirror holder (36), and which are axially adjustable by being screwed into the threaded bores (42) and are braced by their base points (371) on buttresses (43) embodied on the holder profile section (40). For the sake of exact, fast adjustment of the mirror (33), the buttresses (43) are embodied such that on the one hand, they center the mirror holder (36) via the adjusting pins (37), and on the other, at least two buttresses (43) allow the base point (371) of the respective adjusting pin (37) to shift radially outward (FIG. 4).
    • 公开了一种用于调整光学镜(33)的装置,其具有容纳反射镜(33)并保持在保持器轮廓部分(40)上的反射镜保持器(36)和三个调节销(37),其中 通过螺纹孔(42),其在反射镜保持器(36)中沿圆周方向彼此偏移,并且其可通过旋入螺纹孔(42)而被轴向调节并且由其基点(371)支撑在 托架(43)体现在支架轮廓部分(40)上。 为了精确地快速调节反射镜(33),支撑件(43)被实施为使得它们一方面通过调节销(37)将镜保持器(36)居中,另一方面, 至少两个支撑件(43)允许相应的调节销(37)的基点(371)径向向外移动(图4)。