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ATMI BizDEC
Training Program Automation & Control

PLC Automation Engineering for Industrial Application

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Program Description

This program develops participants’ competency in designing, programming, integrating, and commissioning PLC-based automation systems for industrial applications. Participants progress from PLC architecture and control concepts to I/O configuration, control logic development, sequence programming, HMI integration, system commissioning, and troubleshooting through practical industrial automation projects.

Certification BNSP - Teknisi Otomasi PLC
Duration 40 JP

Method

Instructor-led technical sessions, demonstrations, guided programming exercises, hands-on PLC and HMI practice, simulation, industrial case studies, system commissioning, troubleshooting exercises, and project-based assessment.

Requirements

Basic knowledge of electrical systems, industrial control, and automation.
Basic understanding of PLC programming and digital logic is recommended.
Basic ability to read electrical and control system diagrams.

Target Participants

Automation engineers, control engineers, electrical engineers, instrumentation engineers, maintenance engineers and technicians, system integrators, production engineers, and vocational or higher-education instructors involved in industrial automation.

Learning Output

Participants are able to engineer a PLC-based automation system by developing control logic, configuring I/O, integrating operator interfaces, commissioning the system, and systematically troubleshooting operational or programming faults based on industrial process requirements.

Program Advantages

The program emphasizes end-to-end industrial automation engineering, combining PLC programming with system integration, HMI operation, commissioning, and troubleshooting. Participants gain practical experience in developing automation solutions that are structured, functional, maintainable, and aligned with real manufacturing applications.

Subject Materials

  • PLC Automation Engineering Fundamentals
  • 1.1 PLC architecture, hardware, and industrial automation systems
  • 1.2 Control principles, I/O architecture, and signal types
  • 1.3 Industrial automation safety and engineering considerations
  • PLC Programming & Control Logic
  • 2.1 PLC addressing, programming structure, and control instructions
  • 2.2 Timers, counters, interlocking, and sequential control
  • 2.3 Development and debugging of machine control programs
  • Automation System Integration
  • 3.1 PLC I/O configuration and field device integration
  • 3.2 Sensor, actuator, motor, and control device interfacing
  • 3.3 HMI integration and basic operator control functions
  • Commissioning & Troubleshooting
  • 4.1 I/O checking, program testing, and system commissioning
  • 4.2 Fault identification and systematic troubleshooting
  • 4.3 Program and system optimization for reliable operation
  • Industrial Automation Project
  • 5.1 Development of a PLC-based automation application
  • 5.2 Integration, functional testing, and performance verification
  • 5.3 Project presentation and competency-based assessment