the course
Understand how modern security architectures move beyond the traditional network perimeter with this Zero Trust training.
Never trust. Always verify.
This training gives you a practical understanding of Zero Trust concepts such as ZTNA, CARTA, UEBA and Software Defined Perimeter (SDP).
Learn why traditional models based on firewalls and network zones are no longer sufficient, and how systems are designed without implicit trust.
Focus on architecture, principles and real-world trade-offs — not on specific vendors or tools.
This training is designed for IT professionals, architects and engineers who want to understand modern security concepts without diving into vendor-specific implementations.
Relevant roles include:
This training is available as a one-day classroom session or as a self-paced e-learning course.
The e-learning consists of approximately 20 videos of around 8 minutes each.
Please note: this e-learning does not include subtitles.
Basic understanding of IT infrastructure, networking and security concepts is recommended.
No prior experience with Zero Trust or advanced security frameworks is required.
If you are new to IT, we advise starting with our IT Fundamentals training.
Never trust. Always verify.
Course Agenda
Understand the fundamentals of Zero Trust and why traditional perimeter-based security models are no longer sufficient.
Explore why firewalls, VLANs and network segmentation fail in modern cloud and distributed environments.
Learn how identity becomes the new security perimeter and how access decisions are based on context and risk.
Understand core architectural concepts such as continuous verification, least privilege and micro-segmentation.
Discover how ZTNA replaces traditional VPNs and enables secure, identity-based access to applications.
Learn how trust is continuously evaluated based on behavior, context and risk signals.
Understand how behavior analytics and machine learning help detect anomalies and insider threats.
Explore how SDP hides infrastructure and dynamically controls access based on identity and policy.
Understand advanced threats such as APTs, lateral movement and insider attacks in modern environments.
Learn how encryption and secure protocols support Zero Trust principles in distributed systems.
Understand how policy engines and enforcement points control access decisions in real-time.
Learn how to limit blast radius and prevent lateral movement through fine-grained segmentation.
Explore how Zero Trust principles apply to cloud-native architectures and microservices.
Understand how Zero Trust enables secure access for remote users without relying on traditional VPNs.
Learn about the practical challenges of adopting Zero Trust and the trade-offs involved.
Understand the transition from legacy models to modern identity-based security architectures.
Learn how to apply Zero Trust principles to design secure and scalable systems from the ground up.
1-day classroom training with direct interaction, practical explanations and real-world examples — available on-site or virtually via Teams/Zoom.
Self-paced e-learning with approximately 20 videos of around 8 minutes each.
Please note: this e-learning does not include subtitles.
Available through preferred suppliers and procurement channels.
















Design a training that fits your IT landscape, standards and organization
• Combine proven content with your specific architecture and technologies
• Increase relevance and adoption with organization-specific examples
• Build custom classroom training for teams, engineers, management and architects
• Create tailored e-learning aligned with your internal guidelines
• Integrate learning into your intranet or LMS environment
• Deliver training in your branding and corporate identity
Understand how network and security converge in modern cloud environments
Learn the fundamentals of SASE architecture and cloud-native security
• Explore SD-WAN, CASB and Zero Trust concepts in context
• Understand identity-driven and policy-based access control
• Learn how networking evolves from MPLS to software-defined architectures
• Recognize modern challenges such as remote work, cloud adoption and complexity
Apply SASE principles to scalable and distributed systems