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Laser gauge for robotic calibration and monitoring

机译:激光测量仪,用于机器人校准和监控

摘要

A contactless, and accurate device and methods of use thereof are provided to calibrate and verify the calibration of a robotic arm and associated attachments. The device uses a laser gauge for calibrating and subsequently verifying the calibration of the robotic arm, digitizer, or robotic tools. An optical transmitter, in communication with an optical receiver is fixed nearly perpendicular to a second optical transmitter in communication with a second optical receiver that form two optical micrometers that are offset a small distance, forming a small gap, d, to create a measuring void having two distinct non-intersecting measurement planes. One measurement plane measures the position and size of an object in a first axis direction and the other measurement plane measures the position and size of an object in a second axis direction. The position and size of an object is measured within the measuring void in both axial directions.
机译:提供了一种非接触且准确的设备及其使用方法,以校准和验证机械臂及相关附件的校准。该设备使用激光测量仪进行校准,然后验证机械臂,数字转换器或机器人工具的校准。与光接收器通信的光发射器被固定为与与第二光接收器通信的第二光发射器几乎垂直,第二光接收器形成两个光学千分尺,两个光学千分尺偏移很小的距离,形成小的间隙d,从而产生测量空隙具有两个不同的不相交的测量平面。一个测量平面在第一轴向上测量物体的位置和尺寸,另一个测量平面在第二轴向上测量物体的位置和尺寸。在两个轴向方向上的测量空隙内测量物体的位置和大小。

著录项

  • 公开/公告号US10247545B2

    专利类型

  • 公开/公告日2019-04-02

    原文格式PDF

  • 申请/专利权人 THINK SURGICAL INC.;

    申请/专利号US201615549485

  • 发明设计人 GIBSON ELLIOT;

    申请日2016-02-12

  • 分类号G01B11/14;G01B11/24;G01B11/00;A61B34/20;A61B34/32;B25J9/16;A61B34/30;A61B17/00;A61B17/16;A61B90/00;

  • 国家 US

  • 入库时间 2022-08-21 12:11:01

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