PLC Ladder Programming Training Course
Programmable Logic Controllers (PLCs) are essential tools in modern automation systems. This course introduces participants to PLC ladder programming, enabling them to design, implement, and troubleshoot automation processes effectively.
This instructor-led, live training (online or onsite) is aimed at beginner-level automation engineers and enthusiasts who wish to learn the fundamentals of PLC ladder programming and apply it in industrial and personal projects.
By the end of this training, participants will be able to:
- Understand the basic concepts and applications of PLCs in automation systems.
- Write simple and advanced ladder programs using logical functions and memory management.
- Integrate PLCs with networks for broader system applications.
- Apply learned skills to create and test real-world automation scenarios.
Format of the Course
- Interactive lecture and discussion.
- Lots of exercises and practice.
- Hands-on implementation in a live-lab environment.
Course Customization Options
- To request a customized training for this course, please contact us to arrange.
Course Outline
Introduction to PLCs
- What is a PLC and its role in automation?
- Key components and architecture of PLCs
- Overview of applications with PLCs
Overview of PLC Programming Languages
- Introduction to Ladder Logic
- Sequential Function Charts (SFC)
- Structured Text and C programming for PLCs
Getting Started with Ladder Programming
- Understanding ladder diagrams
- Creating basic ladder programs
- Common elements: coils, inputs, and outputs
Working with Memory
- Memory types and their applications
- Storing and retrieving data
- Implementing memory in ladder programming
Logical Functions and Advanced Features
- Using AND, OR, and NOT functions in ladder logic
- Timers and counters
- Advanced functionality: arithmetic and comparison operations
Practical Ladder Programming Exercises
- Designing small automation programs
- Troubleshooting common programming issues
- Testing and validating ladder programs
PLC and Networking
- Integrating PLCs with network systems
- Communication protocols and standards
- Practical applications of networked PLCs
Summary and Next Steps
Requirements
- Logical thinking
- Basic knowledge of programming
Audience
- Automation engineers
- Hobbyists interested in creating intelligent home solutions
Open Training Courses require 5+ participants.
PLC Ladder Programming Training Course - Booking
PLC Ladder Programming Training Course - Enquiry
PLC Ladder Programming - Consultancy Enquiry
Consultancy Enquiry
Testimonials (1)
every time i wasn't sure about some exercise, the trainer explained to me in multiple ways, until I understood.
Oncel Seleamet - IRROM Industrie
Course - PLC Ladder Programming
Upcoming Courses
Related Courses
Allen-Bradley PLC Programming and Applications in Manufacturing
21 HoursThis instructor-led, live training in Hungary (online or onsite) is aimed at beginner-level to intermediate-level engineers and technicians who wish to master the fundamentals of AB PLCs and apply them to real-world manufacturing scenarios.
By the end of this training, participants will be able to:
- Understand the role and applications of AB PLCs in the manufacturing industry.
- Program AB PLCs using RSLogix 5000/Studio 5000.
- Troubleshoot common issues and perform maintenance on PLC systems.
- Design and implement a PLC-controlled system for a manufacturing process.
- Demonstrate proficiency in PLC programming through a practical project.
Introduction to AI in Smart Factories and Industrial Automation
14 HoursAI in Smart Factories is the application of artificial intelligence to automate, monitor, and optimize industrial operations in real time.
This instructor-led, live training (online or onsite) is aimed at beginner-level decision-makers and technical leads who wish to gain a strategic and practical introduction to how AI can be leveraged in smart factory environments.
By the end of this training, participants will be able to:
- Understand the core principles of AI and machine learning.
- Identify key AI use cases in manufacturing and automation.
- Explore how AI supports predictive maintenance, quality control, and process optimization.
- Evaluate the steps involved in launching AI-driven initiatives.
Format of the Course
- Interactive lecture and discussion.
- Real-world case studies and group exercises.
- Strategic frameworks and implementation guidance.
Course Customization Options
- To request a customized training for this course, please contact us to arrange.
CANoe for CAN Compact Training
28 HoursCANoe is a comprehensive software tool developed by Vector that is used for the development, testing, and analysis of in-vehicle networks and ECUs, especially those using the CAN (Controller Area Network) protocol.
This instructor-led, live training (online or onsite) is aimed at beginner-level to intermediate-level automotive engineers and testers who wish to use CANoe to simulate, test, and analyze CAN-based communication systems..
By the end of this training, participants will be able to:
- Install and configure CANoe and its components
- Understand CAN protocol fundamentals and message framing
- Create simulations for ECUs and CAN networks using CAPL scripting
- Monitor, analyze, and debug CAN traffic effectively
Programming and Operating Fanuc and Epson Robots
14 HoursThis instructor-led, live training in Hungary (online or onsite) is aimed at intermediate-level to advanced-level engineers and technicians who wish to learn how to program, operate, and optimize Fanuc and Epson robotic systems for industrial applications.
By the end of this training, participants will be able to:
- Understand the architecture and functionalities of Fanuc and Epson robots.
- Program robot movements, logic, and sensor integrations.
- Implement safety protocols and troubleshooting techniques.
- Optimize robotic workflows for improved efficiency.
Introduction to OMRON PLC programming
21 HoursThis course introduces the student to the basics of Programmable Logic Controllers (PLC). After the discussion of the fundamental concept of PLCs the basic Ladder Diagram instructions are learned and practiced in Industrial Automation tasks. Audience - Electrical Specialists - Mechanical Engineers - Programmers with interest in Industrial Automation
Omron PLC Motion Control with Sysmac Studio
14 HoursThis instructor-led, live training in Hungary (online or onsite) is aimed at intermediate-level automation engineers and control system designers who wish to implement motion control solutions using Omron PLCs.
By the end of this training, participants will be able to:
- Understand fundamental motion control concepts and their applications.
- Configure motion hardware and software in Sysmac Studio.
- Program and optimize single-axis and multi-axis motion control.
- Implement coordinated motion strategies, including interpolation and synchronization.
Omron PLC with Sysmac Studio
35 HoursThis instructor-led, live training in Hungary (online or onsite) is aimed at intermediate-level programmers who wish to enhance their skills in Omron PLC programming, HMI configuration, motion control, and safety systems.
By the end of this training, participants will be able to:
- Configure and program Omron PLCs using Sysmac Studio.
- Understand and apply IEC concepts in ladder logic and structured text programming.
- Develop motion control programs for single-axis and coordinated movements.
- Create HMI interfaces using the NA series and integrate them with Sysmac controllers.
- Implement and simulate safety standards and programs using NX series safety hardware.
Smart Robots for Developers
84 HoursA Smart Robot is an Artificial Intelligence (AI) system that can learn from its environment and its experience and build on its capabilities based on that knowledge. Smart Robots can collaborate with humans, working along-side them and learning from their behavior. Furthermore, they have the capacity for not only manual labor, but cognitive tasks as well. In addition to physical robots, Smart Robots can also be purely software based, residing in a computer as a software application with no moving parts or physical interaction with the world.
In this instructor-led, live training, participants will learn the different technologies, frameworks and techniques for programming different types of mechanical Smart Robots, then apply this knowledge to complete their own Smart Robot projects.
The course is divided into 4 sections, each consisting of three days of lectures, discussions, and hands-on robot development in a live lab environment. Each section will conclude with a practical hands-on project to allow participants to practice and demonstrate their acquired knowledge.
The target hardware for this course will be simulated in 3D through simulation software. The ROS (Robot Operating System) open-source framework, C++ and Python will be used for programming the robots.
By the end of this training, participants will be able to:
- Understand the key concepts used in robotic technologies
- Understand and manage the interaction between software and hardware in a robotic system
- Understand and implement the software components that underpin Smart Robots
- Build and operate a simulated mechanical Smart Robot that can see, sense, process, grasp, navigate, and interact with humans through voice
- Extend a Smart Robot's ability to perform complex tasks through Deep Learning
- Test and troubleshoot a Smart Robot in realistic scenarios
Audience
- Developers
- Engineers
Format of the course
- Part lecture, part discussion, exercises and heavy hands-on practice
Note
- To customize any part of this course (programming language, robot model, etc.) please contact us to arrange.