Industrial Robotics

Industry-Specific
Digital Skills

Industry

Duration

40 hours

PRESENTATION

The Robotics Course It's yours a gateway to the fascinating world of advanced technology, a sector in steady growth and with a Rising Number of Labor Lawsuits. The robotics is essential in the process automation and the resource optimization, and this course offers you the necessary tools for understand its evolution and key concepts. You'll learn about the the role of robots in automated production lines, their technical and morphological characteristics, as well as the interaction with other teams and the The Use of Sensors in Robotics. Plus, you'll delve into the robot programming, one aspect crucial for the development of advanced applications. Choosing us means opting for a comprehensive and up-to-date training that prepares you for tackle the challenges of the modern job market. With our online approach, you'll have the the flexibility to learn at your own pace, acquiring skills that will position you as a valuable and versatile professional in a a field full of opportunities.

Objectives

  • Understanding the Evolution and Basic Concepts of Industrial Robotics.

  • Identify the components and subsystems of a robotic system.

  • Analyze the integration of robots into automated production lines.

  • Evaluate the technical and morphological characteristics of robots.

  • Distinguish between the types and operation of actuators and transmissions.

  • Implement the use of sensors in robotic applications.

  • Understanding the Function and Operation of the Controller Unit in Robots.

Syllabus

TEACHING UNIT 1. ROBOTICS: EVOLUTION AND KEY CONCEPTS Introduction to Robotics The Context of Industrial Robotics The Current Market for Manipulator Arms What Is Meant by an Industrial Robot Components of a Robotic System Robot subsystems Tasks Performed by Robots Classification of Robots TEACHING UNIT 2. INTEGRATING A ROBOT INTO AN AUTOMATED PRODUCTION LINE The Role of Robotics in Automation Interaction of Robots with Other Machines The robotic cell Technical and economic analysis of the robot Regulations Accidents and safety measures TEACHING UNIT 3. TECHNICAL AND MORPHOLOGICAL CHARACTERISTICS OF ROBOTS Components of the robotic arm Characteristics and Capabilities of Robots Definition of Degrees of Freedom Definition of Payload Capacity Definition of Movement Speed Spatial Resolution, Accuracy, Repeatability, and Flexibility Definition of Working Volume Considerations Regarding Control Systems Robot Morphology Cartesian Coordinate Systems Cantilever and gantry Cylindrical type Spherical type Universal robotic arms TEACHING UNIT 4. ACTUATOR SYSTEMS Types of actuators and transmissions Operation and characteristic curves Operation of servomotors Stepper motors Hydraulic actuators Pneumatic actuators Comparative study Types of transmissions – Transmissions. – Gearboxes. – Direct drive. – Types TEACHING UNIT 5. SENSORS IN ROBOTICS Sensing Devices Technical Characteristics Sensor Commissioning Non-Optical Position Sensors Optical Position Sensors Speed Sensors Proximity Sensors Force Sensors Machine Vision TEACHING UNIT 6. THE CONTROLLER UNIT The Controller Hardware Control Methods The Processor in a Robotic Controller Real-Time Execution TEACHING UNIT 7. END-EFFECTORS AND MATERIAL HANDLING APPLICATIONS. PICK AND PLACE Robot End-Effectors and Actuators Connection between the wrist and the end-effector Use of robots for material handling and automated loading/unloading. Pick and place Material handling applications. Pick and place Vacuum gripping and holding of parts. Suction cups Permanent magnets and electromagnets Mechanical Grippers Adhesive Systems Fluidic Systems Clamping with Hooks TEACHING UNIT 8. COMPONENTS FOR PAINTING, WELDING, AND ASSEMBLY TASKS Robotic Painting The painting system. Mixer and equipment Robotic welding TIG and MIG welding Spot welding Laser welding The assembly process Assembly methods Matching and joining parts Positioning parts TEACHING UNIT 9. GUIDED AND TEXTUAL PROGRAMMING Introductory Concepts of Robot Programming Guided Programming: Passive and Active The Ideal Textual Language for Programming Robots Existing Types of Textual Languages General Characteristics Robot-Oriented, Object-Oriented, and Task-Oriented Programming Robot-Level Programming Object-Level Programming Task-Level Textual Programming The V+ or V3 Language The RAPID Programming Language The IRL Language The OROCOS Language CAD Programming
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Are the Educa PHAROS courses eligible for credit?

Many courses can be credited toward the master's programs at Structuralia.

Facts about our area

+ 1.483

Hours

+88.999

Minutes

264

Courses

Educa PHAROS is a next-generation training model that places a company’s human capital at the forefront. Through a platform that adapts to each company’s corporate identity and offers a total of more than 900 courses, it provides tailored training for each organization. The unlimited flat-rate plan provides each company with the number of courses that best suits its needs, as well as the ability to determine which employees will have access.
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