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Oil Sector Automation Technician Course
More than 2 million students worldwide

Oil Sector Automation Technician Course

5

Master the technical skills that oil and gas facilities demand from automation technicians. This course covers instrumentation, PLCs, control valves, SCADA, and functional safety from the ground up. You will graduate ready to install, calibrate, program, and troubleshoot automation systems in real oil field environments.

Dedika for businesses

What you will learn:

You will build a complete skill set covering electrical fundamentals, process instrumentation, PLC programming, and PID control theory. The course walks you through control valve selection and maintenance, SCADA and DCS configuration, and safety instrumented system design. You will also study industrial communication networks, cybersecurity for OT environments, and rotating equipment monitoring. Practical topics like technical documentation, P&ID interpretation, and loop drawings are included throughout. By the end, you will have the knowledge to work confidently as an automation technician in upstream, midstream, or downstream oil operations.

How you study in practice Oil Sector Automation Technician Course

How you practise Oil Sector Automation Technician Course

For companies looking to train their teams

With Dedika for businesses, the course includes exercises and examples tailored to your company and its specific needs.

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Course content

8 Chapters • 39 LessonsDuration between 4 and 360 hours (you decide)

Chapter 1See details

Foundations of Oil Sector Operations

  • Lesson 1 • Oil Field Equipment and Terminology

    Introduces standard equipment found on oil fields and refineries. Builds vocabulary essential for reading technical documents and schematics.

  • Lesson 2 • Overview of the Oil Industry

    Maps the global oil value chain from exploration to refining. Provides context for where automation technicians operate and add value.

  • Lesson 3 • Health, Safety, and Environment Basics

    Covers hazard identification, personal protective equipment, and emergency response fundamentals. Establishes the safety mindset required before any field work.

  • Lesson 4 • Regulatory and Standards Framework

    Surveys functional safety standards, process safety regulations, and industry codes applicable to automation. Enables compliance-aware decision-making throughout the course.

Chapter 2See details

Electrical Fundamentals for Automation

  • Lesson 1 • Electrical Safety and Lockout/Tagout

    Covers arc flash hazards, electrical isolation procedures, and lockout/tagout protocols. Prepares technicians to de-energise equipment safely before any maintenance task.

  • Lesson 2 • DC and AC Circuit Principles

    Covers voltage, current, resistance, and power in both DC and AC systems. Provides the theoretical base for understanding sensor and actuator wiring.

  • Lesson 3 • Electrical Measurement and Test Equipment

    Teaches use of multimeters, clamp meters, and oscilloscopes in field conditions. Connects measurement skills directly to instrument calibration and fault finding.

  • Lesson 4 • Grounding, Shielding, and Noise Reduction

    Explains grounding strategies and shielding methods that protect signal integrity. Directly supports accurate sensor readings in electrically noisy oil field environments.

  • Lesson 5 • Wiring Practices and Cable Management

    Addresses proper conductor pipe sizing, termination techniques, and cable routing in hazardous areas. Ensures installations meet functional safety and reliability requirements.

Chapter 3See details

Instrumentation and Process Measurement

  • Lesson 1 • Flow Measurement Technologies

    Surveys differential pressure, magnetic, ultrasonic, and Coriolis flow meters. Guides selection based on fluid properties and process conditions.

  • Lesson 2 • Pressure Measurement Instruments

    Covers gauge, absolute, and differential pressure transmitters and their operating principles. Connects pressure measurement to process control loop performance.

  • Lesson 3 • Level Measurement Instruments

    Covers float collar, displacer, radar, and guided-wave radar level technologies. Relates level measurement accuracy to separator and tank inventory control.

  • Lesson 4 • Temperature Measurement Instruments

    Examines thermocouples, RTDs, and infrared sensors used in oil and gas processes. Addresses signal conditioning and cold-junction compensation for accurate readings.

  • Lesson 5 • Instrument Calibration and Documentation

    Establishes calibration procedures, tolerance verification, and as-found/as-left record keeping. Ensures traceability and compliance with functional safety requirements.

Chapter 4See details

Control Valves and Final Control Elements

  • Lesson 1 • Valve Maintenance and Troubleshooting

    Addresses packing replacement, seat lapping, and actuator bench-set procedures. Connects maintenance practices to extended valve service life and loop reliability.

  • Lesson 2 • On-Off Valves and Solenoid Systems

    Covers block valves, check valves, and solenoid-operated valve systems used in safety and isolation duties. Links these devices to emergency shutdown logic.

  • Lesson 3 • Control Valve Sizing and Cv Calculation

    Applies flow coefficient calculations to size valves for liquid and gas service. Prevents oversizing and undersizing errors that degrade control performance.

  • Lesson 4 • Valve Actuators and Positioners

    Covers pneumatic, electric, and hydraulic actuators and their associated positioners. Explains how positioners improve valve response and reduce hysteresis.

  • Lesson 5 • Control Valve Types and Selection

    Compares globe, ball, butterfly, and rotary valve designs for oil process applications. Links valve characteristics to control loop stability and rangeability.

Chapter 5See details

Programmable Logic Controllers in Oil Processes

  • Lesson 1 • Ladder Logic Programming Fundamentals

    Introduces contacts, coils, timers, counters, and comparison instructions in ladder logic. Enables learners to write basic control programs for pumps and valves.

  • Lesson 2 • Analog Signal Handling in PLCs

    Covers scaling, engineering unit conversion, and analog alarm configuration in PLC programs. Connects raw sensor counts to meaningful process variable displays.

  • Lesson 3 • PLC Architecture and Hardware

    Explains CPU, I/O modules, power supplies, and communication backplanes in industrial PLCs. Provides the hardware knowledge needed before any programming activity.

  • Lesson 4 • PLC Program Structures and Best Practices

    Addresses modular programming, subroutines, and documentation standards for maintainable code. Prepares learners to write programs that other technicians can read and modify.

  • Lesson 5 • PLC Fault Diagnosis and Recovery

    Teaches systematic fault isolation using diagnostic LEDs, error logs, and online monitoring tools. Reduces mean time to repair during production-critical PLC failures.

Chapter 6See details

Process Control Theory and PID Tuning

  • Lesson 1 • PID Tuning Methods

    Applies Ziegler-Nichols, lambda, and IMC tuning rules to real process loops. Enables learners to achieve stable, responsive control without excessive oscillation.

  • Lesson 2 • PID Controller Modes and Functions

    Covers proportional, integral, and derivative actions and their individual effects on loop behaviour. Builds intuition for how each mode corrects different error patterns.

  • Lesson 3 • Loop Performance Monitoring

    Covers control loop performance metrics, oscillation detection, and valve stiction diagnosis. Enables continuous improvement of loop performance after initial commissioning.

  • Lesson 4 • Advanced Control Strategies

    Introduces cascade, ratio, feedforward, and override control configurations. Addresses complex oil process interactions that single-loop PID cannot handle effectively.

  • Lesson 5 • Process Dynamics and Response

    Explains gain, dead time, and time constants using step-response analysis. Provides the dynamic understanding required to select appropriate control strategies.

Chapter 7See details

SCADA and Distributed Control Systems

  • Lesson 1 • Alarm Management and Rationalisation

    Addresses alarm philosophy, rationalisation, and nuisance alarm reduction using industry guidelines. Improves operator situational awareness during abnormal process conditions.

  • Lesson 2 • DCS Architecture and Components

    Explains controllers, I/O subsystems, operator stations, and engineering workstations in a DCS. Provides the system-level view needed before configuration tasks begin.

  • Lesson 3 • SCADA System Design and Communication

    Covers SCADA server architecture, remote terminal units, and communication protocols for oil field data acquisition. Links field devices to centralised monitoring and control.

  • Lesson 4 • Historian and Data Management

    Covers process historian configuration, tag compression, and data retrieval for performance analysis. Connects stored process data to troubleshooting and optimisation activities.

  • Lesson 5 • HMI Display Design and Usability

    Applies human factors principles to create effective process graphics, navigation, and alarm displays. Reduces operator error by following high-performance HMI design guidelines.

Chapter 8See details

Safety Instrumented Systems and Functional Safety

  • Lesson 1 • Functional Safety Concepts and SIL

    Explains safety integrity levels, risk reduction factors, and the safety lifecycle framework. Establishes the conceptual foundation for all SIS design and verification work.

  • Lesson 2 • SIS Architecture and Hardware Selection

    Covers redundant sensor voting, logic solver selection, and final element architecture for SIL targets. Links hardware choices to probability of failure on demand calculations.

  • Lesson 3 • Management of Change for Safety Systems

    Covers the management-of-change process for modifications to SIS hardware, software, and setpoints. Prevents unintended reduction of safety integrity during plant modifications.

  • Lesson 4 • Safety Logic Solver Programming

    Addresses cause-and-effect matrix implementation, interlock logic, and bypass management in safety PLCs. Ensures safety programmes meet functional requirements without spurious trips.

  • Lesson 5 • Proof Testing and Maintenance Procedures

    Establishes proof test procedures, test coverage calculations, and documentation for SIS maintenance. Maintains SIL compliance over the operational life of the safety system.

Certification

Your valid completion certificate

This course is for you:

  • Electrical technician: looking to transition into oil sector automation roles.

  • Instrumentation apprentice: wanting structured, industry-specific knowledge to advance faster.

  • Mechanical maintenance worker: ready to expand into process control and automation duties.

  • Recent engineering graduate: seeking practical field-level skills employers expect from day one.

  • Military veteran with technical training: translating service experience into civilian oil industry work.

  • Industrial operator: aiming to move into a technician role with greater responsibility.

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