[ FreeCourseWeb ] Udemy - FANUC Robot Programming and Roboguide Simulation Advanced

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[ FreeCourseWeb ] Udemy - FANUC Robot Programming and Roboguide Simulation Advanced (Size: 2.4 GB)
  001 CNC PROGRAMMING.en.srt 29.5 KB
  001 CNC PROGRAMMING.mp4 244.9 MB
  002 CNC PROGRAMMING 2.en.srt 19.7 KB
  002 CNC PROGRAMMING 2.mp4 227 MB
  003 CNC PROGRAMMING 3.en.srt 23.2 KB
  003 CNC PROGRAMMING 3.mp4 247 MB
  004 FLASHING LIGHTS.en.srt 16.1 KB
  004 FLASHING LIGHTS.mp4 109.6 MB
  005 MULTIMOVE ROBOT PROGRAMMING.en.srt 31.3 KB
  005 MULTIMOVE ROBOT PROGRAMMING.mp4 264.7 MB
  006 MULTIMOVE ROBOT PROGRAMMING 2.en.srt 34.4 KB
  006 MULTIMOVE ROBOT PROGRAMMING 2.mp4 310.6 MB
  007 MULTIMOVE ROBOT PROGRAMMING 3.en.srt 14.1 KB
  007 MULTIMOVE ROBOT PROGRAMMING 3.mp4 116.6 MB
  008 MULTIMOVE ROBOT PROGRAMMING 4.en.srt 48.6 KB
  008 MULTIMOVE ROBOT PROGRAMMING 4.mp4 325.8 MB
  009 MULTIMOVE ROBOT PROGRAMMING 5.en.srt 24 KB
  009 MULTIMOVE ROBOT PROGRAMMING 5.mp4 210.8 MB
  010 MULTIMOVE ROBOT PROGRAMMING 6.en.srt 31.6 KB
  010 MULTIMOVE ROBOT PROGRAMMING 6.mp4 250.4 MB
  011 TEACH PATH PROGRAMMING.en.srt 16.7 KB
  011 TEACH PATH PROGRAMMING.mp4 164.2 MB
  Bonus Resources.txt 307.2 B
  Get Bonus Downloads Here.url 204.8 B
  ▲ 24 total files

Description


FANUC Robot Programming and Roboguide Simulation Advanced

MP4 | Video: h264, 1280x720 | Audio: AAC, 44.1 KHz, 2 Ch
Genre: eLearning | Language: English + srt | Duration: 11 lectures (3h 40m) | Size: 2.43 GB
FANUC Robot Programming and Roboguide Simulation Advanced with English and Other Subtitles
What you'll learn:
Automation simulations

Requirements
Automation simulations

Description
Accuracy and repeatability are different measures. Repeatability is usually the most important criterion for a robot and is similar to the concept of 'precision' in measurement—see accuracy and precision. ISO 9283[16] sets out a method whereby both accuracy and repeatability can be measured. Typically a robot is sent to a taught position a number of times and the error is measured at each return to the position after visiting 4 other positions. Repeatability is then quantified using the standard deviation of those samples in all three dimensions. A typical robot can, of course make a positional error exceeding that and that could be a problem for the process. Moreover, the repeatability is different in different parts of the working envelope and also changes with speed and payload. ISO 9283 specifies that accuracy and repeatability should be measured at maximum speed and at maximum payload. But this results in pessimistic values whereas the robot could be much more accurate and repeatable at light loads and speeds. Repeatability in an industrial process is also subject to the accuracy of the end effector, for example a gripper, and even to the design of the 'fingers' that match the gripper to the object being grasped. For example, if a robot picks a screw by its head, the screw could be at a random angle. A subsequent attempt to insert the screw into a hole could easily fail. These and similar scenarios can be improved with 'lead-ins' e.g. by making the entrance to the hole tapered.

Who this course is for
Engineers, students and anyone else interested in Robotics and Automation

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