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    • 1. 发明授权
    • Measuring device for measuring distance
    • 测量距离测量装置
    • US09310197B2
    • 2016-04-12
    • US13481396
    • 2012-05-25
    • Torsten GogollaStefan TiefenthalerHelmut SeifertGero Schusser
    • Torsten GogollaStefan TiefenthalerHelmut SeifertGero Schusser
    • G01C3/08G01S7/481G01S7/497G01S17/08
    • G01C3/08G01S7/4812G01S7/4813G01S7/4972G01S17/08
    • A measuring device and a method for adjusting the measuring device is disclosed. The device includes a first electro-optical component, a second electro-optical component, a beam-shaping optical element, an optics carrier, and a printed circuit board. The optics carrier includes a first receptacle, where the first electro-optical component is mounted in the first receptacle, and a second receptacle, where the beam-shaping optical element is mounted in the second receptacle. The printed circuit board includes a third receptacle, where the second electro-optical component is mounted in the third receptacle. The first electro-optical component and the beam-shaping optical element are adjustable relative to the optics carrier in a direction of a respective optical axis of the first electro-optical component and the beam-shaping optical element and the second electro-optical component is adjustable and fixable in a plane essentially perpendicular to an optical axis of the second electro-optical element.
    • 公开了一种用于调节测量装置的测量装置和方法。 该装置包括第一电光部件,第二电光部件,光束整形光学元件,光学载体和印刷电路板。 光学载体包括第一插座,其中第一电光部件安装在第一插座中,第二插座,其中光束整形光学元件安装在第二插座中。 印刷电路板包括第三插座,其中第二电光部件安装在第三插座中。 第一电光部件和光束整形光学元件相对于光学载体在第一电光部件的相应光轴的方向上是可调节的,并且光束整形光学元件和第二电光部件是 可调节并且可固定在基本上垂直于第二电光元件的光轴的平面中。
    • 6. 发明授权
    • Electro-optical para-axial distance measuring system
    • 电光对轴测距系统
    • US06781675B2
    • 2004-08-24
    • US10388013
    • 2003-03-13
    • Torsten GogollaAndreas WinterHelmut SeifertMartin PenzoldGero SchusserDieter Schmidt
    • Torsten GogollaAndreas WinterHelmut SeifertMartin PenzoldGero SchusserDieter Schmidt
    • G01C308
    • G01S17/10G01S7/481G01S7/487G01S7/497
    • An electro-optical distance measuring system (1, 1′) for large measurement ranges having a para-axial arrangement of a beam source (2) with a transmitting optics (3) and a beam receiver, configured as at least one small-area photodiode (4), with an associated receiving optics (5), which contains the processes for signal extension for the lower distance measurement range for distances (X). The beam source (2), the transmitting optics (3), the small-area photodiode (4) and the receiving optics (5) are each oriented with their optical axes (A1, A2) parallel to the measurement light beam (6). The measurement light beam (6) is directed from the transmitting optics (2) to the measurement object and continues to the receiving optics. The beam source (2) and the small-area photodiode (4) are connected rigidly with each other by at least one rigidly connected circuit board (8, 8a, 8b), such that at least the small-area photodiode (4) can electrically conduct and temporarily adjust in a position (9, 9′) at least using its electrical contacts (10). The small-area photodiode (4) is fixed directly in the adjusted position (9, 9′) on the circuit board (8, 8a, 8b).
    • 一种用于大测量范围的电光距离测量系统(1,1'),其具有光束源(2)与发射光学器件(3)和光束接收器的对轴布置,该光束源配置为至少一个小面积 具有相关联的接收光学器件(5)的光电二极管(4),其包含用于距离(X)的较低距离测量范围的信号扩展的处理。 光源(2),发射光学器件(3),小面积光电二极管(4)和接收光学元件(5)各自的光轴(A1,A2)与测量光束(6)平行, 。 测量光束(6)从发射光学器件(2)引导到测量对象并且继续到接收光学器件。 光束源(2)和小面积光电二极管(4)通过至少一个刚性连接的电路板(8,8a,8b)彼此刚性连接,使得至少小面积光电二极管(4)可以 至少使用其电触头(10)在导电和临时调节位置(9,9')。 小面积光电二极管(4)直接固定在电路板(8,8a,8b)上的调整位置(9,9')上。
    • 10. 发明申请
    • MEASURING DEVICE FOR MEASURING DISTANCE
    • 用于测量距离的测量装置
    • US20130135604A1
    • 2013-05-30
    • US13481396
    • 2012-05-25
    • Torsten GogollaStefan TiefenthalerHelmut SeifertGero Schusser
    • Torsten GogollaStefan TiefenthalerHelmut SeifertGero Schusser
    • G01C3/08
    • G01C3/08G01S7/4812G01S7/4813G01S7/4972G01S17/08
    • A measuring device and a method for adjusting the measuring device is disclosed. The device includes a first electro-optical component, a second electro-optical component, a beam-shaping optical element, an optics carrier, and a printed circuit board. The optics carrier includes a first receptacle, where the first electro-optical component is mounted in the first receptacle, and a second receptacle, where the beam-shaping optical element is mounted in the second receptacle. The printed circuit board includes a third receptacle, where the second electro-optical component is mounted in the third receptacle. The first electro-optical component and the beam-shaping optical element are adjustable relative to the optics carrier in a direction of a respective optical axis of the first electro-optical component and the beam-shaping optical element and the second electro-optical component is adjustable and fixable in a plane essentially perpendicular to an optical axis of the second electro-optical element.
    • 公开了一种用于调节测量装置的测量装置和方法。 该装置包括第一电光部件,第二电光部件,光束整形光学元件,光学载体和印刷电路板。 光学载体包括第一插座,其中第一电光部件安装在第一插座中,第二插座,其中光束整形光学元件安装在第二插座中。 印刷电路板包括第三插座,其中第二电光部件安装在第三插座中。 第一电光部件和光束整形光学元件相对于光学载体在第一电光部件的相应光轴的方向上是可调节的,并且光束整形光学元件和第二电光部件是 可调节并且可固定在基本上垂直于第二电光元件的光轴的平面中。