
Network Architect Course
The Network Architect Course gives you the technical depth and strategic thinking to design enterprise-grade networks from the ground up. You will master routing protocols, data centre fabrics, cloud connectivity, and security architecture in one comprehensive programme. Whether you are advancing your career or stepping into an architect role, this course delivers the skills employers demand.
What you will learn:
You will learn how to design and document enterprise networks that meet real business requirements, from LAN and campus infrastructure to WAN routing and data centre fabrics. The course covers OSPF, BGP, MPLS, SD-WAN, VXLAN, and spine-leaf architecture in practical detail. You will also build expertise in network security, including zero-trust design, firewall placement, and VPN architecture. Cloud and hybrid connectivity topics include AWS and multi-cloud networking, dedicated interconnects, and SD-WAN integration. Finally, you will apply automation tools and infrastructure-as-code practices to streamline network deployments and reduce configuration errors.
How you study practically Network Architect Course
How you practise Network Architect 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 • 40 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsFoundations of Network Architecture
Foundations of Network Architecture
Lesson 1 • Networking Models and Frameworks
Covers OSI and TCP/IP models, their layers, and practical relevance to design decisions. Establishes the conceptual vocabulary used throughout the course.
Lesson 2 • Network Topologies and Media
Surveys physical and logical topologies alongside transmission media types. Connects topology choice to performance, resilience, and cost trade-offs.
Lesson 3 • Network Architecture Design Principles
Introduces hierarchical design, modularity, and scalability as guiding principles. Frames how architects balance performance, availability, and manageability.
Lesson 4 • Switching and Routing Basics
Introduces Layer 2 switching and Layer 3 routing concepts essential for segmenting and interconnecting networks. Prepares students for advanced routing in later chapters.
Lesson 5 • Core Protocols and Addressing
Examines IP addressing, subnetting, and essential protocols that underpin all network communication. Provides the addressing foundation required for design work.
Chapter 2HideHide detailsSee detailsLAN Design and Campus Networks
LAN Design and Campus Networks
Lesson 1 • Campus Network Design Patterns
Applies hierarchical and collapsed-core models to real campus scenarios. Students evaluate design patterns against capacity, budget, and resilience goals.
Lesson 2 • Structured Cabling and Physical Design
Covers cabling standards, data center infrastructure, and physical plant planning. Connects physical layer decisions to long-term network reliability.
Lesson 3 • Advanced Switching and VLANs
Deepens VLAN design, trunking protocols, and inter-VLAN routing strategies. Builds on basic switching to support multi-segment campus environments.
Lesson 4 • High Availability and Redundancy
Addresses link aggregation, first-hop redundancy, and dual-homed designs for continuous availability. Ties redundancy techniques to uptime and failover requirements.
Lesson 5 • Spanning Tree and Loop Prevention
Examines Spanning Tree Protocol variants and loop-prevention mechanisms for redundant switched networks. Ensures students can design stable Layer 2 topologies.
Chapter 3HideHide detailsSee detailsRouting Protocols and WAN Design
Routing Protocols and WAN Design
Lesson 1 • WAN Redundancy and Optimization
Covers dual-carrier WAN designs, WAN optimisation techniques, and QoS for wide-area links. Ensures students can meet SLA requirements across distributed sites.
Lesson 2 • Interior Gateway Routing Protocols
Covers OSPF, EIGRP, and IS-IS operation, metric calculation, and area design. Provides the routing protocol knowledge needed for enterprise WAN design.
Lesson 3 • Border Gateway Protocol and Internet Routing
Examines BGP attributes, path selection, and policy-based routing for internet connectivity. Connects BGP design to multi-homing and traffic engineering goals.
Lesson 4 • WAN Technologies and Connectivity
Surveys MPLS, SD-WAN, leased lines, and broadband WAN options. Connects technology selection to bandwidth, latency, and cost requirements.
Lesson 5 • Route Redistribution and Policy
Addresses redistributing routes between protocols and applying routing policies. Enables students to integrate heterogeneous routing domains safely.
Chapter 4HideHide detailsSee detailsData Centre Network Architecture
Data Centre Network Architecture
Lesson 1 • VXLAN and Network Virtualisation
Examines VXLAN encapsulation, EVPN control plane, and overlay network design. Enables students to extend Layer 2 domains across routed data centre fabrics.
Lesson 2 • Data Centre Interconnect Strategies
Covers DCI technologies including dark fibre, DWDM, and stretched fabric designs. Prepares students to connect geographically separated data centres reliably.
Lesson 3 • Storage Networking Integration
Addresses Fibre Channel, iSCSI, and NVMe-oF storage networking within data centre designs. Connects storage protocol choice to latency, throughput, and fabric requirements.
Lesson 4 • Data Centre Design Fundamentals
Introduces data centre tiers, physical layout, and power and cooling considerations. Frames how physical infrastructure constrains and shapes network design.
Lesson 5 • Spine-Leaf Fabric Architecture
Covers the spine-leaf topology, equal-cost multipath routing, and fabric scalability. Replaces traditional three-tier thinking with modern east-west traffic design.
Chapter 5HideHide detailsSee detailsNetwork Security Architecture
Network Security Architecture
Lesson 1 • Intrusion Detection and Prevention
Addresses IDS and IPS placement, signature and behavioural detection, and inline vs. passive modes. Enables students to position detection controls within the network architecture.
Lesson 2 • Security Architecture Principles
Establishes defence-in-depth, least privilege, and zero-trust as architectural frameworks. Provides the security design philosophy applied throughout this chapter.
Lesson 3 • Firewall and Perimeter Design
Covers stateful and next-generation firewall placement, DMZ design, and perimeter policy. Connects firewall architecture to traffic flow and threat containment.
Lesson 4 • Encrypted Traffic and VPN Architecture
Covers IPsec, TLS, and VPN topologies for securing traffic across untrusted networks. Connects encryption design to performance, key management, and compliance needs.
Lesson 5 • Network Access Control and Identity
Examines 802.1X, RADIUS, and identity-based access control for wired and wireless networks. Ties authentication to dynamic policy enforcement at the network edge.
Chapter 6HideHide detailsSee detailsCloud and Hybrid Network Architecture
Cloud and Hybrid Network Architecture
Lesson 1 • Container and Microservice Networking
Addresses container network interfaces, service mesh, and east-west traffic in microservice architectures. Connects modern application deployment patterns to network design decisions.
Lesson 2 • Multi-Cloud Network Design
Examines transit networking, cloud exchange fabrics, and inter-cloud routing strategies. Enables students to design consistent connectivity across multiple cloud providers.
Lesson 3 • Hybrid Cloud Connectivity
Covers dedicated interconnects, VPN gateways, and SD-WAN integration for hybrid cloud access. Connects on-premises networks to cloud environments with predictable performance.
Lesson 4 • Cloud Security and Compliance Architecture
Covers cloud-native security controls, shared responsibility, and compliance-driven network segmentation. Ensures students embed security requirements into cloud network designs.
Lesson 5 • Cloud Networking Fundamentals
Introduces virtual private clouds, cloud routing, and software-defined networking in cloud platforms. Establishes cloud networking vocabulary and constructs used throughout this chapter.
Chapter 7HideHide detailsSee detailsNetwork Automation and Programmability
Network Automation and Programmability
Lesson 1 • Automation Concepts and Tools
Introduces network automation drivers, toolchain components, and automation maturity models. Frames why and how automation transforms network architecture and operations.
Lesson 2 • Intent-Based Networking
Covers intent-based networking platforms, closed-loop automation, and policy abstraction. Prepares students to design self-validating networks that enforce business intent.
Lesson 3 • Infrastructure as Code for Networks
Examines declarative configuration management, version control, and CI/CD pipelines for network changes. Connects IaC practices to consistent, auditable network deployments.
Lesson 4 • APIs and Programmable Interfaces
Covers REST APIs, NETCONF, RESTCONF, and gRPC for programmatic network device interaction. Enables students to integrate network devices into automated workflows.
Lesson 5 • Network Telemetry and Observability
Addresses streaming telemetry, model-driven monitoring, and observability platforms for real-time network insight. Ties telemetry data to proactive architecture decisions.
Chapter 8HideHide detailsSee detailsEnterprise Network Architecture Strategy
Enterprise Network Architecture Strategy
Lesson 1 • Network Capacity and Performance Planning
Covers traffic modelling, capacity forecasting, and performance baseline techniques for enterprise networks. Enables architects to size and plan networks for current and future demand.
Lesson 2 • Business Requirements and Architecture Alignment
Translates business goals, SLAs, and regulatory requirements into network architecture constraints. Establishes the requirements-driven design process used in enterprise projects.
Lesson 3 • Network Resilience and Disaster Recovery
Addresses RTO, RPO, redundancy strategies, and disaster recovery network design. Ensures students can architect networks that meet business continuity requirements.
Lesson 4 • Architecture Documentation and Governance
Covers architecture documentation standards, design review processes, and lifecycle governance. Prepares students to produce and maintain professional architecture artefacts.
Lesson 5 • Enterprise Architecture Frameworks
Examines enterprise architecture frameworks and how they structure network design within broader IT strategy. Connects network architecture to organisational governance models.
Your valid completion certificate
This course is for you:
Network engineers ready to move into architecture and design roles.
Systems administrators who manage infrastructure and want broader network ownership.
IT generalists seeking a focused path into enterprise networking specialisation.
Junior network technicians building toward senior or lead-level responsibilities.
Cloud engineers who need stronger on-premises and hybrid networking foundations.
Career changers from IT support who want to transition into network design.
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