Functional Safety Industrial Cybersecurity Training Course

Coordinate hazards, cyber threats, controls, changes, and assurance evidence across industrial automation teams.
Functional Safety Industrial Cybersecurity Training Course

At a glance

Duration
5 days
Format
Classroom
Cities
Geneva, Istanbul, Tashkent, Tbilisi, Langkawi, Madrid and more
Next session
25 – 29 October 2026, Geneva
Average fee
5,800 €

Overview

Functional Safety and Industrial Cybersecurity Integration Training Course is a five-day intermediate course for control engineers, safety practitioners, OT security teams, automation engineers, risk managers, and assurance functions who leave with a Joint Safety-Cyber Assurance Case. Participants connect system boundaries, hazard and threat scenarios, coordinated requirements, risk treatment, change control, incident implications, and assurance evidence across industrial control environments. The course applies IEC TR 63069, IEC 61508, IEC 62443, and OT security guidance without offering certification. Agile Leaders Training Center develops safety-security integration practice.

Who Should Attend

  • Control engineering functions responsible for industrial automation design and operation
  • Functional safety functions responsible for hazards, requirements, and assurance evidence
  • OT cybersecurity functions responsible for threats, zones, conduits, and controls
  • Automation maintenance functions responsible for changes and system integrity
  • Risk and assurance functions responsible for coordinated industrial decisions

The course assumes participants can interpret industrial control architectures and risk records, and leaves out detailed safety calculations, product certification, penetration testing, and generic enterprise security administration.

Departments and Industries

The course supports departments and industries operating safety-related industrial automation and control systems.

  • Process manufacturing and chemical operations
  • Energy, utilities, and pipeline control
  • Industrial machinery and automated production
  • Water and environmental process control
  • Engineering assurance and asset maintenance

Learning Objectives

By the end of this course, participants will be able to:

  • Apply shared safety-security system boundaries
  • Analyze linked hazard and cyber threat scenarios
  • Build coordinated safety and cybersecurity requirements
  • Evaluate controls for safety and security interactions
  • Prioritize change and incident assurance evidence
  • Build a Joint Safety-Cyber Assurance Case

Course Agenda

Day 1: Establish the Shared System Context

  • IEC TR 63069 Integration Framework Map
  • IEC 61508 Safety Lifecycle Context Diagram
  • IEC 62443 Industrial Security Lifecycle Map
  • Shared System Boundary and Asset Register
  • Safety-Security Roles and Decision Matrix

Day 2: Connect Hazards and Threats

  • Hazard and Cyber Threat Scenario Worksheet
  • Unsafe Control Action and Attack Path Map
  • Consequence, Likelihood, and Exposure Matrix
  • Zone and Conduit Interaction Diagram
  • Combined Risk Assumption Register

Day 3: Coordinate Requirements and Controls

  • Safety and Security Requirement Traceability Matrix
  • Defense-in-Depth and Safety Function Interaction Table
  • Control Conflict and Dependency Analysis Method
  • Risk Treatment Selection Record
  • Verification Responsibility and Evidence Plan

Day 4: Manage Change and Incidents

  • Safety-Security Change Impact Checklist
  • Configuration Baseline and Approval Record
  • Cyber Incident Safety Consequence Decision Tree
  • Temporary Control and Compensating Measure Log
  • Recovery Validation and Assurance Evidence Pack

Day 5: Practice Joint Assurance

  • Exercise: Define Shared Industrial System Boundaries
  • Exercise: Link Hazard and Threat Scenarios
  • Exercise: Reconcile Conflicting Safety and Security Controls
  • Exercise: Assess a Change and Incident Evidence Trail
  • Capstone: Joint Safety-Cyber Assurance Case

Practical Exercises

The course uses suggested activities based on process plants, utilities, automated production, and water-control systems.

  • Suggested activity: identify shared assets, boundaries, assumptions, and decision owners.
  • Suggested activity: connect a cyber attack path with hazardous operational consequences.
  • Suggested activity: compare control options for security benefit and safety interaction.
  • Suggested activity: assemble requirements, treatment decisions, change records, and evidence into an assurance case.

FAQs

Who suits functional safety and industrial cybersecurity integration training, and what does it assume?

Control engineers, safety practitioners, OT security teams, automation engineers, risk managers, and assurance functions suit the training; it assumes they can interpret control architectures and risk records.

How does safety-security integration differ from generic SCADA security training?

Safety-security integration coordinates hazards, threats, safety functions, cyber controls, changes, incidents, and assurance evidence, while generic SCADA security training concentrates mainly on protecting control-system assets and communications.

Why must functional safety and cybersecurity requirements be coordinated?

Requirements must be coordinated because a security control can affect availability or response timing, while a safety design choice can create access, monitoring, maintenance, or recovery dependencies.

How should industrial teams assess a cybersecurity change for safety impact?

Industrial teams should trace the change to system boundaries, hazards, threats, safety functions, operational modes, dependencies, validation needs, approvals, and residual assumptions before implementation.

What belongs in a joint safety-cyber assurance case?

A joint assurance case should contain scope, claims, assumptions, linked scenarios, coordinated requirements, treatment decisions, verification evidence, change records, incident implications, gaps, ownership, and review actions.

Conclusion

Participants take back a Joint Safety-Cyber Assurance Case linking boundaries, hazards, threats, requirements, controls, changes, incidents, and evidence. It changes separate safety and cybersecurity records into a coordinated industrial assurance workflow. The case supports traceable decisions across engineering, operations, maintenance, cybersecurity, risk, and assurance functions.

credits: 5 credit per day

Course Mode: full-time

Provider: Agile Leaders Training Center

Showing 41-60 of 74 events
Image Location Dates Duration Mode Price Actions
Berlin Berlin Week 16, 2027
19 – 23 April 2027
5 Days Onsite €5,700
Dubai Dubai Week 18, 2027
3 – 7 May 2027
5 Days Onsite €4,500
San Diego San Diego Week 18, 2027
3 – 7 May 2027
5 Days Onsite €14,000
London London Week 19, 2027
10 – 14 May 2027
5 Days Onsite €5,700
Abu Dhabi Abu Dhabi Week 19, 2027
10 – 14 May 2027
5 Days Onsite €4,700
Paris Paris Week 20, 2027
17 – 21 May 2027
5 Days Onsite €5,700
Zanzibar Zanzibar Week 20, 2027
23 – 27 May 2027
5 Days Onsite €5,500
Tokyo Tokyo Week 21, 2027
24 – 28 May 2027
5 Days Onsite €10,000
Accra Accra Week 21, 2027
30 May – 3 June 2027
5 Days Onsite €4,100
Barcelona Barcelona Week 22, 2027
31 May – 4 June 2027
5 Days Onsite €5,700
Manama Manama Week 23, 2027
13 – 17 June 2027
5 Days Onsite €4,700
Marbella Marbella Week 24, 2027
20 – 24 June 2027
5 Days Onsite €5,700
Montreux Montreux Week 27, 2027
5 – 9 July 2027
5 Days Onsite €7,500
London London Week 28, 2027
12 – 16 July 2027
5 Days Onsite €5,700
Muscat Muscat Week 28, 2027
18 – 22 July 2027
5 Days Onsite €5,700
Milan Milan Week 29, 2027
19 – 23 July 2027
5 Days Onsite €5,700
Baku Baku Week 30, 2027
26 – 30 July 2027
5 Days Onsite €5,000
Porto Porto Week 30, 2027
26 – 30 July 2027
5 Days Onsite €5,700
Frankfurt Frankfurt Week 31, 2027
2 – 6 August 2027
5 Days Onsite €5,700
Casablanca Casablanca Week 32, 2027
9 – 13 August 2027
5 Days Onsite €4,100

Frequently asked questions

What does this course cover?

OverviewFunctional Safety and Industrial Cybersecurity Integration Training Course is a five-day intermediate course for control engineers, safety practitioners, OT security teams, automation engineers, risk managers, and assurance functions who leave with a Joint Safety-Cyber Assurance Case. Participants connect system boundaries, hazard and threat scena…

Are training dates available?

Yes. Available dates and destinations are listed in the course dates section on this page.

How can I register?

Choose an available date on this page and complete the registration form, or send a programme enquiry.

Can I download the course brochure?

Yes. Use the brochure download link provided on this page.

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