Battle ‘Bots Introduction. Mr. Yersak Tech & Design Livingston High School. Your Problem:. Design and build a robot that can be controlled remotely, to disable the opposing robot, or score the most points. How to win:.By lea
Engineering. MVRT. Safety. General Safety. Safety is very important Use common sense If you think you shouldn’t be doing it then DON’T DO IT No running around/horseplay No Fooling around with tools OR THE ROBOT Never use tools or machinery if you do not know howBy elma
Robotics Safety. Guohua Cui, Dan Zhang and Marc A. Rosen Faculty of Engineering and Applied Science University of Ontario Institute of Technology Oshawa, Ontario, Canada July 2014. 1. Introduction to robotics safety. 2. Types of robots & industrial robots.By alton
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ROBOT SAFETY. OBJECTIVES: BE ACQUAINTED WITH ROBOITIC SAFETY. UNDERSTASND SFETY STANDARD. RECOGNISE SAFETY RELIABILITY. BE FAMILIAR WITH HUMAN FACTOR ISSUES. BE AWARE OF SAFETY SENSORS AND MONITORING. REALIZE SAFEGAURDING. PERCEIVE THE IMPORTANT FACTORS OF TRAINING.
University of Nebraska, Lincoln. Department of Mechanical Engineering Dr. Shane Farritor. Computer Science and Engineering Department Dr. Steve Goddard. Sponsored by The National Academy of Sciences IDEA Program and The National Science Foundation. Objective
Robot Safety Standard Independent Study. Cory Grant Spring 2011 Illinois State University. Objectives. Study ANSI/RIA R15.06 Safety Standard Develop Risk Assessments Per Standard Design Physical/Electrical Safety System Implement Designed Safety System
Robot-Assisted Machine Shop Safety. Aaron Fineman Prof Sonia Chernova. Why. People still get hurt 2010 statistics (courtesy of Brookhaven National Laboratories) 18,000 injured 800 dead. What. Camera Industrial Robot Safe. Who Else?.
Robot, Task. Task, Robot. The morally dubious exploitation of the new slave race. Robot, Game. Game, Robot. Welcoming our creations into the playful embrace of human culture. Why Tasks are Good. General-purpose perception, action = can of worms
Team 8:Recon Robot Safety and Reliability Analysis. Abhinav Valluru (presenter) Vinit bhamburdekar Arjun Bajaj Aabhas Sharma. Key Concerns. Reliability: Electronics for power supplies Motor control Microcontroller ,GPS and wireless transciever Safety: Batteries Burns
Robot and Robot Classification. Logics of presentation: Robot definition Robot classification. Robot Definition. Functional viewpoint: - automatically controlled, - reprogrammable multipurpose - reprogrammable axes Structural viewpoint: (see Fig. 2-1)
Schéma global de l’architecture. Robot. Energie. Châssis. Commandes. Moteur. Roues. Interface terminal. Navigation. I.E. Alim. Batterie. Châssis. Moteur. 4*Roues. Commandes. Navigation. Interface terminal. Intelligence embarquée. PC/ iPhone. Sans fils. Localisation relative.
Robot. Our Robot. People in group 1. Presented By: Audrey Yip , Megan So, Abby Chan ,Ronald Leung and Hung Chung Him!!!. About the robot. Have three wheels Have some beams Have two motors Have some gears. Ending. We are all very happy because we made two robots!!!!!!!!!!!!!!!