Course Overview
Automation and robotics are reshaping the future of manufacturing, enabling higher productivity, precision, and flexibility. This Automation and Robotics in Manufacturing Training Course equips participants with the knowledge and skills to design, implement, and manage automation systems and robotic solutions in industrial settings.
The course explores robotics technologies, automation systems, AI integration, and Industry 4.0 concepts. Participants will gain insights into optimizing production lines, improving safety, and reducing costs through case studies and hands-on activities.
By the end of the program, attendees will be able to evaluate automation opportunities, integrate robotics into manufacturing processes, and develop strategies for smart, connected factories.
Course Benefits
Understand the role of automation and robotics in modern manufacturing.
Apply robotics for efficiency, safety, and quality improvement.
Learn strategies for smart factory and Industry 4.0 integration.
Strengthen knowledge of AI and digital tools in automation.
Reduce costs and enhance productivity through technology.
Course Objectives
Explain principles of industrial automation and robotics.
Identify areas for automation in manufacturing processes.
Evaluate robotics technologies for various applications.
Integrate automation with AI, IoT, and digital tools.
Apply safety and regulatory standards in automation projects.
Design strategies for smart factory implementation.
Benchmark global best practices in robotics adoption.
Training Methodology
The course uses lectures, robotics demonstrations, group discussions, and simulation-based workshops. Participants will analyze real-world automation case studies and design practical applications.
Target Audience
Manufacturing engineers and managers.
Automation and robotics specialists.
Production and operations managers.
Industrial engineers and technology leaders.
Target Competencies
Industrial automation and robotics.
Smart factory design and management.
AI and IoT integration in manufacturing.
Process optimization and efficiency improvement.
Course Outline
Unit 1: Introduction to Automation and Robotics
Evolution of automation in manufacturing.
Robotics fundamentals and classifications.
Benefits and challenges of automation adoption.
Industry case studies of robotics applications.
Unit 2: Industrial Automation Systems
PLCs, SCADA, and control systems.
Sensors, actuators, and communication networks.
Integration of automation with production lines.
Safety and regulatory compliance.
Unit 3: Robotics in Manufacturing Applications
Robotic arms, AGVs, and collaborative robots (cobots).
Robotics in assembly, welding, and material handling.
Programming and controlling robotic systems.
Emerging robotics technologies.
Unit 4: Smart Factory and Industry 4.0
Concepts of smart manufacturing.
IoT and AI integration in automation.
Digital twins for manufacturing optimization.
Case studies of Industry 4.0 in practice.
Unit 5: Process Optimization with Automation
Identifying automation opportunities.
Reducing waste and improving efficiency.
Human-machine collaboration.
Lean manufacturing with robotics.
Unit 6: Economic and Strategic Aspects
Cost-benefit analysis of automation projects.
ROI and performance metrics.
Strategic roadmaps for automation adoption.
Global best practices in manufacturing automation.
Unit 7: Future Trends in Automation and Robotics
Advances in AI and autonomous robotics.
Flexible and adaptive manufacturing systems.
Robotics in additive manufacturing.
Roadmap for next-generation smart factories.
Ready to transform your manufacturing processes with robotics and automation?
Join the Automation and Robotics in Manufacturing Training Course with EuroQuest International Training and gain the expertise to lead the future of smart manufacturing.
The Automation and Robotics in Manufacturing Training Courses in Brussels provide professionals with a practical and strategic understanding of how automated systems and industrial robotics are reshaping modern production environments. Designed for manufacturing engineers, operations managers, production supervisors, process designers, and technology specialists, these programs focus on applying automation solutions to enhance productivity, consistency, safety, and cost efficiency across manufacturing operations.
Participants explore the essential components of industrial automation, including robotic systems, programmable logic controllers (PLCs), automated material handling, machine vision, and human-machine interfaces. The courses highlight how automation optimizes workflows, standardizes quality, and reduces manual intervention in repetitive or high-risk tasks. Through hands-on demonstrations, case studies, and process simulations, attendees learn to evaluate automation opportunities, select appropriate technologies, and manage implementation within existing production lines.
These automation and robotics training programs in Brussels also emphasize system integration, reliability engineering, and lifecycle support. The curriculum covers topics such as robotics programming and configuration, automation safety systems, predictive maintenance for automated equipment, and real-time monitoring for process improvement. Participants gain insights into how digital technologies—including sensors, IoT connectivity, and data analytics—enhance performance tracking and enable continuous optimization.
Beyond technical implementation, the courses address organizational considerations such as workforce adaptation, skills transformation, and cross-department collaboration. Participants develop the ability to lead automation initiatives, evaluate return on investment, and support scalable deployment strategies aligned with operational and business goals.
Attending these training courses in Brussels offers professionals access to an international learning environment enriched by industry expertise and cross-sector innovation. The city’s position as a European center for technology collaboration provides valuable opportunities for networking and knowledge exchange. By completing this specialization, participants will be equipped to maximize the benefits of automation and robotics—strengthening operational efficiency, improving production performance, and supporting sustainable competitive advantage in modern manufacturing.