
Network and Infrastructure Course
Master the skills that keep enterprise networks running — from physical cabling and switching to routing protocols, security, and cloud connectivity. This course gives you a complete, practical foundation in network and infrastructure engineering. Whether you're starting out or leveling up, you'll finish ready to design, secure, and troubleshoot real-world networks.
What you will learn:
This course covers every layer of modern network infrastructure, starting with core concepts like the OSI model, IP addressing, and subnetting, then moving into LAN design, VLANs, and switching technologies. You will configure dynamic routing protocols including OSPF, EIGRP, and BGP, and connect enterprise sites using MPLS, broadband, and cellular WAN options. Network security is covered in depth, including firewalls, ACLs, VPNs, and intrusion detection systems. You will also deploy essential services such as DNS, DHCP, and NAT, and learn to monitor and troubleshoot network failures using structured methodologies and diagnostic tools. The course finishes with data center architecture, cloud networking, and an introduction to network automation with Python and Ansible.
How you study in practice Network and Infrastructure Course
How you practise Network and Infrastructure 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.
Course content
8 Chapters • 40 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsFoundations of Networking Concepts
Foundations of Networking Concepts
Lesson 1 • Core Networking Terminology
Defines essential vocabulary including nodes, packets, bandwidth, and latency. Provides a shared language for all subsequent technical discussions.
Lesson 2 • Ports, Protocols, and Services
Maps common application protocols to their port numbers and transport mechanisms. Grounds students in how services are identified on a network.
Lesson 3 • Data Transmission Fundamentals
Explains how data moves across a network using signals, encoding, and media. Connects physical transmission to higher-layer protocols.
Lesson 4 • Network Models and Frameworks
Introduces the OSI and TCP/IP models as blueprints for understanding data communication. Establishes the layered thinking required throughout the course.
Lesson 5 • IP Addressing and Subnetting
Covers IPv4 and IPv6 addressing schemes, classes, and subnet calculations. Enables students to design and interpret address plans.
Chapter 2HideHide detailsSee detailsNetwork Hardware and Physical Layer
Network Hardware and Physical Layer
Lesson 1 • Cabling Standards and Media
Covers copper, fibre, and wireless media specifications and their use cases. Connects physical infrastructure choices to performance and reliability outcomes.
Lesson 2 • Wireless Access Points and Controllers
Covers 802.11 standards, access point placement, and controller-based management. Links wireless hardware to network design decisions.
Lesson 3 • Network Interface Cards and Switches
Explains NIC operation, MAC addressing, and Layer 2 switching behaviour. Builds understanding of how local network segments are created and managed.
Lesson 4 • Routers and Layer 3 Devices
Introduces router architecture, interfaces, and basic routing decisions. Prepares students for routing protocol configuration in later chapters.
Lesson 5 • Power and Environmental Infrastructure
Addresses UPS systems, power distribution, cooling, and rack organisation. Ensures students understand the physical environment supporting network hardware.
Chapter 3HideHide detailsSee detailsLAN Design and Switching Technologies
LAN Design and Switching Technologies
Lesson 1 • LAN Architecture and Design Principles
Introduces hierarchical network design using core, distribution, and access layers. Establishes the design framework applied throughout the chapter.
Lesson 2 • VLAN Configuration and Management
Teaches VLAN creation, port assignment, and inter-VLAN routing. Connects logical segmentation to security and traffic management benefits.
Lesson 3 • Spanning Tree Protocol
Explains STP, RSTP, and MSTP operation to prevent Layer 2 loops. Prepares students to tune and troubleshoot spanning tree in production networks.
Lesson 4 • Switch Security Features
Introduces port security, DHCP snooping, and dynamic ARP inspection. Applies security hardening directly to the LAN switching environment.
Lesson 5 • Link Aggregation and Redundancy
Covers EtherChannel and LACP for bandwidth aggregation and link redundancy. Reinforces high-availability design principles introduced earlier.
Chapter 4HideHide detailsSee detailsRouting Protocols and WAN Technologies
Routing Protocols and WAN Technologies
Lesson 1 • Interior Gateway Protocols
Compares OSPF, EIGRP, and RIP in terms of convergence, scalability, and configuration. Enables students to deploy and tune IGPs in enterprise environments.
Lesson 2 • Quality of Service for WAN
Applies QoS classification, marking, queuing, and shaping to WAN links. Ensures students can prioritise critical traffic across constrained connections.
Lesson 3 • WAN Connectivity Technologies
Surveys MPLS, leased lines, broadband, and cellular WAN options. Guides students in matching WAN technology to business requirements.
Lesson 4 • Routing Fundamentals and Static Routing
Reviews routing table concepts and configures static and default routes. Provides the baseline before introducing dynamic protocols.
Lesson 5 • Border Gateway Protocol Essentials
Introduces BGP as the internet routing protocol, covering eBGP peering and path attributes. Connects enterprise edge routing to service provider connectivity.
Chapter 5HideHide detailsSee detailsNetwork Security Fundamentals
Network Security Fundamentals
Lesson 1 • Intrusion Detection and Prevention
Differentiates IDS and IPS deployment modes and signature vs. anomaly detection. Prepares students to position and tune detection systems in a network.
Lesson 2 • VPN Technologies and Encryption
Explains IPsec, SSL/TLS VPN, and tunnelling protocols for secure remote access. Connects encryption fundamentals to practical VPN deployment.
Lesson 3 • Network Hardening Practices
Applies device hardening, AAA, and secure management protocols to reduce attack surface. Reinforces security across all previously studied network components.
Lesson 4 • Firewalls and Access Control Lists
Covers stateless and stateful firewall operation and ACL rule construction. Teaches students to filter traffic at network boundaries effectively.
Lesson 5 • Security Concepts and Threat Landscape
Defines the CIA triad, common attack vectors, and threat actor categories. Frames all subsequent security controls within a risk-based mindset.
Chapter 6HideHide detailsSee detailsNetwork Services and Protocol Operations
Network Services and Protocol Operations
Lesson 1 • Network Address Translation
Covers static NAT, dynamic NAT, and PAT for address conservation and security. Reinforces IP addressing concepts with practical translation scenarios.
Lesson 2 • Network Management Protocols
Introduces SNMP, syslog, and NetFlow for monitoring and data collection. Prepares students for the monitoring and management chapter ahead.
Lesson 3 • Time Synchronisation with NTP
Explains NTP stratum hierarchy, client-server configuration, and authentication. Highlights the role of accurate time in logging and security correlation.
Lesson 4 • DNS Architecture and Configuration
Covers DNS hierarchy, record types, zone transfers, and resolver behaviour. Enables students to deploy and troubleshoot name resolution services.
Lesson 5 • DHCP Server Deployment
Explains DHCP lease process, scope configuration, and relay agent operation. Connects dynamic addressing to the IP planning covered in Chapter 1.
Chapter 7HideHide detailsSee detailsNetwork Monitoring and Troubleshooting
Network Monitoring and Troubleshooting
Lesson 1 • Diagnostic Tools and Commands
Covers ping, traceroute, nslookup, netstat, and packet capture tools. Connects command-line proficiency to rapid fault isolation.
Lesson 2 • Troubleshooting Methodologies
Introduces top-down, bottom-up, and divide-and-conquer troubleshooting models. Establishes a repeatable process for diagnosing any network problem.
Lesson 3 • Log Analysis and Event Correlation
Teaches syslog collection, filtering, and correlation to identify root causes. Integrates logging infrastructure with security and operational workflows.
Lesson 4 • Network Performance Monitoring
Deploys SNMP-based and flow-based monitoring to establish baselines and detect anomalies. Builds on network management protocols introduced in Chapter 6.
Lesson 5 • Troubleshooting Common Network Failures
Applies the troubleshooting framework to connectivity, performance, and service failures. Synthesises skills from all previous chapters into realistic scenarios.
Chapter 8HideHide detailsSee detailsData Centre and Cloud Infrastructure
Data Centre and Cloud Infrastructure
Lesson 1 • Cloud Networking Fundamentals
Explains cloud service models, virtual networks, and cloud connectivity options. Prepares students to extend enterprise networks into public cloud environments.
Lesson 2 • Data Centre Network Architecture
Introduces spine-leaf topology, east-west traffic patterns, and fabric design. Contrasts data centre design with the campus LAN models from Chapter 3.
Lesson 3 • Virtualisation and Software-Defined Networking
Covers hypervisor networking, virtual switches, and SDN controller architecture. Connects virtualisation concepts to physical infrastructure management.
Lesson 4 • Hybrid Cloud Connectivity
Covers VPN gateways, dedicated interconnects, and SD-WAN for hybrid cloud access. Integrates WAN technologies from Chapter 4 with cloud networking.
Lesson 5 • Infrastructure as Code for Networks
Introduces automation tools and declarative configuration for network provisioning. Bridges manual configuration skills to modern automated infrastructure management.
Your valid completion certificate
This course is for you:
IT support technicians ready to move into infrastructure engineering roles.
College students pursuing a degree in computer science or information technology.
System administrators who manage servers but lack formal networking knowledge.
Career changers from non-technical fields drawn to enterprise infrastructure work.
Home lab enthusiasts who want structured, professional-grade networking knowledge.
Junior help desk staff aiming to qualify for network technician positions.
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