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ATMI BizDEC
Training Program Electrical & Mechatronics

Industrial Robotics Program for Manufacturing Automation

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Program Description

This program develops participants’ practical competence in operating and applying industrial robots for manufacturing automation. The training progresses from robot fundamentals and safety to robot configuration, coordinate systems, programming, end-of-arm tooling, I/O integration, production sequencing, commissioning, troubleshooting, and optimization of robotic applications.

Certification Certificate of Completion – Industrial Robotics Program for Manufacturing Automation, awarded upon successful completion of the training and competency-based assessment.
Duration 10 Days / 80 Training Hours

Method

Instructor-led technical instruction, demonstrations, and interactive discussions.
Hands-on practice using industrial robot systems, controllers, end-effectors, sensors, and peripheral equipment.
Application exercises, programming tasks, troubleshooting, and project-based competency assessment.

Requirements

Basic knowledge of mechanical, electrical, or industrial automation systems.
Basic understanding of technical drawings, sensors, actuators, and industrial control concepts.
Basic computer skills and willingness to perform practical robot programming activities.

Target Participants

Industrial robot operators and production technicians.
Automation, electrical, mechanical, and mechatronics engineers.
Maintenance, manufacturing, and process personnel involved in robotic automation systems.

Learning Output

Participants are able to safely operate and configure industrial robots, establish coordinate systems and tool data, develop and execute basic-to-intermediate robot programs, integrate robot I/O and peripheral devices, troubleshoot common operational faults, and apply robotic automation to defined manufacturing processes.

Program Advantages

The program provides a practical pathway from industrial robotics fundamentals to production-oriented automation, enabling participants to develop the skills required to operate, program, integrate, troubleshoot, and optimize robotic systems for safer, more consistent, and efficient manufacturing operations.

Subject Materials

  • 1. Industrial Robotics Fundamentals & Safety
  • 1.1 Robot types, components, axes, controllers, and manufacturing applications.
  • 1.2 Robot operating modes, safety systems, work envelopes, and safe operating procedures.
  • 1.3 Basic robotic cell architecture and interaction with production equipment.
  • 2. Robot Configuration & Programming
  • 2.1 Robot coordinate systems, tool frames, work objects, and position teaching.
  • 2.2 Programming fundamentals, motion instructions, sequences, and program execution.
  • 2.3 Program verification, simulation, and operational parameter management.
  • 3. Robotic Cell Integration
  • 3.1 End-of-arm tooling, grippers, fixtures, sensors, and peripheral equipment.
  • 3.2 Digital I/O, interlocks, and communication between robot and automation devices.
  • 3.3 Integration of robot sequences with manufacturing process requirements.
  • 4. Operation, Troubleshooting & Process Optimization
  • 4.1 Production operation, monitoring, recovery procedures, and routine checks.
  • 4.2 Identification and troubleshooting of common robot, tooling, sensor, and I/O faults.
  • 4.3 Optimization of cycle sequence, motion, positioning, and process consistency.
  • 5. Applied Robotic Manufacturing Project
  • 5.1 Development of a robotic automation application based on a defined manufacturing process.
  • 5.2 Robot programming, cell integration, testing, commissioning, and troubleshooting.
  • 5.3 Evaluation of safety, cycle performance, repeatability, and production readiness.