
SCADA Training Course
Master every layer of industrial SCADA systems, from field instrumentation and PLCs to cybersecurity and cloud integration. This comprehensive training course covers real protocols, hands-on configuration, and project delivery practices used across utilities, oil and gas, water treatment, and manufacturing. Build the technical depth employers demand in today's automation-driven industries.
What you will learn:
You will gain a thorough understanding of SCADA architecture, field devices, communication protocols, and HMI design. The course covers PLC and RTU programming using IEC 61131-3 languages, along with historian setup and master station configuration. You will learn how to secure SCADA networks using the Purdue model, ISA/IEC 62443 frameworks, and endpoint hardening techniques. Advanced topics include cloud SCADA architectures, IIoT integration, PID tuning, and functional safety principles. By the end, you will be equipped to design, commission, and support complete SCADA systems in demanding industrial environments.
How you study practically SCADA Training Course
How you practise SCADA Training Course
For companies looking to train their teams
With Dedika for businesses, the course includes exercises and examples tailored to your own business and the way your company needs.
Course content
8 Chapters • 37 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsIntroduction to SCADA Systems
Introduction to SCADA Systems
Lesson 1 • Key Standards and Regulatory Frameworks
Introduces functional safety, cybersecurity, and interoperability standards governing SCADA deployments. Prepares students to evaluate compliance requirements in their sector.
Lesson 2 • Core SCADA System Architecture
Explains the layered structure of a SCADA system including field devices, communication networks, and control centres. Establishes vocabulary used throughout the course.
Lesson 3 • SCADA in Industrial Sectors
Surveys SCADA applications across utilities, oil and gas, water treatment, and manufacturing. Helps students map generic concepts to real operational environments.
Lesson 4 • History and Evolution of SCADA
Traces SCADA development from early telemetry to modern networked systems. Provides context for understanding current design choices and industry standards.
Chapter 2HideHide detailsSee detailsField Devices and Instrumentation
Field Devices and Instrumentation
Lesson 1 • Signal Types and Wiring Standards
Distinguishes analog, discrete, and digital signal types used in field wiring. Ensures students can read loop diagrams and troubleshoot wiring faults.
Lesson 2 • Actuators and Final Control Elements
Examines control valves, motor drives, and relay outputs that execute SCADA commands. Links actuator selection to process response and safety requirements.
Lesson 3 • Sensors and Measurement Principles
Covers physical measurement principles for temperature, pressure, flow, and level. Grounds students in how raw process variables become digital signals.
Lesson 4 • Device Calibration and Maintenance
Presents calibration procedures, drift detection, and preventive maintenance schedules for field instruments. Directly supports data integrity at the SCADA input layer.
Chapter 3HideHide detailsSee detailsPLCs, RTUs, and IEDs
PLCs, RTUs, and IEDs
Lesson 1 • Intelligent Electronic Devices
Introduces IEDs used in power systems for protection, metering, and control. Connects IED data output to SCADA integration via standard communication protocols.
Lesson 2 • Controller Diagnostics and Troubleshooting
Develops systematic fault-finding skills using status LEDs, diagnostic registers, and online monitoring tools. Prepares students to restore controller operation under time pressure.
Lesson 3 • PLC Architecture and Operation
Explains CPU, memory, I/O modules, and scan cycle of a programmable logic controller. Establishes the processing model underlying all ladder and function-block programmes.
Lesson 4 • IEC 61131-3 Programming Languages
Teaches the five standard PLC programming languages: ladder diagram, function block, structured text, instruction list, and sequential function chart. Students write and test basic programmes.
Lesson 5 • RTU Design and Remote Communication
Covers RTU hardware, polling architectures, and low-bandwidth communication links used in geographically distributed SCADA sites. Contrasts RTU and PLC deployment scenarios.
Chapter 4HideHide detailsSee detailsSCADA Communication Protocols
SCADA Communication Protocols
Lesson 1 • DNP3 Protocol for SCADA
Explains DNP3 data link, transport, and application layers with emphasis on unsolicited reporting and time synchronisation. Targets utility and water sector deployments.
Lesson 2 • Serial Communication Fundamentals
Reviews RS-232, RS-485, and RS-422 electrical standards and framing parameters. Provides the physical-layer foundation for Modbus and DNP3 serial implementations.
Lesson 3 • Modbus Protocol Deep Dive
Covers Modbus RTU, ASCII, and TCP variants including function codes, register maps, and exception responses. Students configure master-slave exchanges and verify data integrity.
Lesson 4 • OPC Standards and Data Exchange
Covers OPC DA, OPC HDA, and OPC UA for vendor-neutral data exchange between SCADA components. Students configure an OPC UA server and browse its address space.
Lesson 5 • IEC 60870-5 and IEC 61850
Introduces IEC 60870-5-101/104 for telecontrol and IEC 61850 for substation automation. Highlights GOOSE messaging and logical node modelling used in modern substations.
Chapter 5HideHide detailsSee detailsHMI Design and Configuration
HMI Design and Configuration
Lesson 1 • HMI Security and Access Control
Configures role-based access, audit logging, and session timeout policies within the HMI application. Prevents unauthorised control actions and supports incident investigation.
Lesson 2 • Building Process Mimics and Graphics
Teaches construction of process flow diagrams, dynamic objects, and trend displays within HMI software. Students create a functional mimic for a sample process.
Lesson 3 • Alarm Management in HMI
Implements alarm rationalisation, priority assignment, shelving, and suppression within the HMI platform. Addresses alarm flood prevention and regulatory alarm management guidance.
Lesson 4 • HMI Design Principles
Applies high-performance HMI guidelines covering colour, hierarchy, and situational awareness. Connects display design directly to operator error reduction and response time.
Lesson 5 • Tag Database and Data Binding
Covers tag naming conventions, data types, scaling, and binding HMI objects to live data sources. Ensures accurate real-time display of process values.
Chapter 6HideHide detailsSee detailsSCADA Master Station and Historian
SCADA Master Station and Historian
Lesson 1 • Process Data Historian Setup
Configures tag compression, storage rates, and retention policies in a process historian. Enables long-term trend analysis and regulatory data archiving.
Lesson 2 • Master Station Architecture
Describes server roles, redundancy topologies, and database structures within a SCADA master station. Connects architecture choices to availability and scalability requirements.
Lesson 3 • Data Acquisition and Polling Configuration
Sets up communication drivers, scan rates, and exception reporting to optimise data throughput and network load. Balances data freshness against bandwidth constraints.
Lesson 4 • Reporting and Analytics Tools
Builds operational reports, KPI dashboards, and ad-hoc queries using historian and SCADA data. Translates raw process data into actionable management information.
Chapter 7HideHide detailsSee detailsSCADA Cybersecurity Fundamentals
SCADA Cybersecurity Fundamentals
Lesson 1 • Identity and Access Management
Configures multi-factor authentication, privileged access management, and Active Directory integration for SCADA systems. Enforces least-privilege principles across all user roles.
Lesson 2 • Industrial Cybersecurity Threat Landscape
Profiles threat actors, attack vectors, and notable ICS incidents relevant to SCADA environments. Motivates the security controls introduced in subsequent sections.
Lesson 3 • Endpoint Hardening for ICS
Applies OS hardening, application whitelisting, and patch management to SCADA servers and HMI workstations. Balances security controls with operational availability requirements.
Lesson 4 • Network Segmentation and Zones
Implements the Purdue model and ISA/IEC 62443 zone-and-conduit approach to isolate SCADA networks. Reduces attack surface through firewall rules and DMZ design.
Lesson 5 • Security Monitoring and Incident Response
Deploys passive network monitoring, SIEM integration, and ICS-specific detection rules. Prepares students to execute an incident response plan for a SCADA cyber event.
Chapter 8HideHide detailsSee detailsSCADA System Integration and Project Delivery
SCADA System Integration and Project Delivery
Lesson 1 • Factory Acceptance Testing
Develops FAT test scripts, executes hardware and software checks, and documents results before site delivery. Reduces commissioning risk by resolving defects in a controlled environment.
Lesson 2 • Site Installation and Commissioning
Covers cable installation, panel termination, loop checking, and live commissioning sequences. Connects field activities to the SCADA configuration completed in earlier chapters.
Lesson 3 • Change Management and Lifecycle Support
Implements management-of-change procedures, version control, and long-term support planning for operational SCADA systems. Sustains system integrity throughout the asset lifecycle.
Lesson 4 • Site Acceptance Testing and Handover
Executes SAT scripts with the client, resolves punch-list items, and completes as-built documentation. Formally transfers system ownership and establishes support arrangements.
Lesson 5 • Requirements and System Design
Translates operational needs into functional and technical SCADA requirements. Produces a system design document that guides all subsequent engineering activities.
Your valid completion certificate
This course is for you:
Instrumentation technician: ready to move beyond field devices into full systems.
Electrical engineer: transitioning from power systems into industrial automation roles.
IT professional: shifting into operational technology and industrial control environments.
Recent engineering graduate: building specialised skills before entering the automation workforce.
Plant operator: seeking deeper technical understanding of the systems they monitor daily.
Systems integrator: formalising hands-on experience with structured, standards-based knowledge.
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