Choose your language
Network Infrastructure Course
Over 400,000 professionals on the platform
Exclusive for companies

Network Infrastructure Course

Master every layer of modern network infrastructure, from IP addressing and switching to routing, security, and WAN technologies. This course gives you the technical depth and hands-on skills employers expect from network engineers. Build, secure, and troubleshoot real-world networks with confidence.

Dedika for students

What your team will master:

You will gain a thorough understanding of how networks are designed, built, and maintained at a professional level. The course covers OSI and TCP/IP models, Ethernet switching, VLAN design, and spanning tree operation. You will configure static and dynamic routing protocols including OSPF, EIGRP, and BGP across multi-subnet environments. Network security topics include firewalls, ACLs, IPsec VPNs, and AAA frameworks. You will also work through WAN technologies, DNS, DHCP, QoS, and SNMP-based monitoring. Supplementary chapters extend your skills into wireless design, data centre fabrics, cloud networking, and automation with Python and Ansible.

How your team learns practically Network Infrastructure Course

How your team practises Network Infrastructure Course

Professionals from these companies study at Dedika

ActemiumFR
Nunner LogisticsNL
GT Constructora GeotécnicaCR
Sydel StarBR
Metrô de São PauloBR
Aguas AndinasCL
DSMIN
MeridianbetRS
CDHCN

Course content

8 Chapters • 40 LessonsDuration between 4 and 360 hours (you decide)

Chapter 1See details

Foundations of Network Infrastructure

  • Lesson 1 • Network Standards and Governing Bodies

    Introduces IEEE, IETF, and ISO standards that define interoperability. Explains how RFCs and standards documents guide implementation decisions.

  • Lesson 2 • Core Networking Concepts and Terminology

    Establishes shared vocabulary for nodes, links, protocols, and data units. Provides the conceptual baseline required for every subsequent topic.

  • Lesson 3 • Network Topologies and Physical Layout

    Examines bus, star, ring, mesh, and hybrid topologies. Connects physical layout choices to performance, fault tolerance, and cost trade-offs.

  • Lesson 4 • The OSI and TCP/IP Reference Models

    Maps the seven OSI layers and the four TCP/IP layers to real protocol behaviour. Enables systematic troubleshooting by layer.

  • Lesson 5 • Transmission Media and Signal Types

    Covers copper, fibre-optic, and wireless media alongside analogue and digital signalling. Links media choice to distance, speed, and interference constraints.

Chapter 2See details

IP Addressing and Subnetting

  • Lesson 1 • Subnet Masks and CIDR Notation

    Teaches prefix-length notation and subnet mask arithmetic. Students calculate network and host boundaries for any given prefix.

  • Lesson 2 • IPv6 Addressing and Transition

    Covers 128-bit IPv6 format, address types, and stateless autoconfiguration. Explains dual-stack and tunnelling strategies for IPv4-to-IPv6 migration.

  • Lesson 3 • Subnetting Design and Practice

    Applies CIDR skills to divide address space into subnets meeting specific host requirements. Reinforces calculation speed and accuracy through structured exercises.

  • Lesson 4 • Address Management and Planning

    Introduces DHCP operation, IP address management (IPAM) tools, and documentation practices. Connects address planning to scalable network growth.

  • Lesson 5 • IPv4 Address Structure and Classes

    Decodes the 32-bit IPv4 format, classful ranges, and reserved blocks. Establishes the addressing foundation needed before subnetting is introduced.

Chapter 3See details

Switching and LAN Architecture

  • Lesson 1 • Spanning Tree Protocol and Variants

    Details STP, RSTP, and MSTP loop-prevention mechanisms and port states. Students tune STP to achieve fast convergence in redundant topologies.

  • Lesson 2 • VLANs and Trunking Protocols

    Covers VLAN creation, port assignment, and 802.1Q trunk configuration. Demonstrates how VLANs segment broadcast domains and improve security.

  • Lesson 3 • Switch Operation and MAC Learning

    Explains how switches build MAC address tables, forward frames, and handle unknown unicasts. Links switch behaviour to network performance and security.

  • Lesson 4 • Link Aggregation and High Availability

    Introduces EtherChannel and LACP for bandwidth aggregation and redundancy. Connects link aggregation design to uptime requirements in enterprise LANs.

  • Lesson 5 • Ethernet Fundamentals and Frame Structure

    Examines Ethernet frame fields, MAC addressing, and CSMA/CD operation. Provides the Layer 2 foundation required for switch configuration topics.

Chapter 4See details

Routing Principles and Protocols

  • Lesson 1 • Distance-Vector Routing Protocols

    Examines RIP and EIGRP metric calculation, update mechanisms, and convergence behaviour. Contrasts distance-vector limitations with link-state approaches.

  • Lesson 2 • Router Architecture and Packet Forwarding

    Covers routing table structure, longest-prefix matching, and administrative distance. Establishes how routers select paths before protocol-specific topics are introduced.

  • Lesson 3 • Link-State Routing with OSPF

    Covers OSPF LSA types, area design, DR/BDR election, and route summarisation. Students configure single-area and multi-area OSPF deployments.

  • Lesson 4 • Static and Default Routing

    Teaches static route configuration, floating static routes, and default gateway setup. Provides a controlled routing baseline before dynamic protocols are added.

  • Lesson 5 • Border Gateway Protocol Fundamentals

    Introduces eBGP and iBGP concepts, AS numbers, and path-selection attributes. Prepares students for internet edge and multi-homed routing scenarios.

Chapter 5See details

Wide Area Network Technologies

  • Lesson 1 • Leased Lines and Serial Connectivity

    Covers T1/E1 framing, HDLC, and PPP encapsulation for point-to-point links. Explains authentication options and link quality monitoring on serial interfaces.

  • Lesson 2 • SD-WAN Principles and Deployment

    Introduces SD-WAN overlay architecture, centralized control, and application-aware routing. Positions SD-WAN as a modern alternative to traditional MPLS-only designs.

  • Lesson 3 • Broadband and Internet WAN Options

    Compares DSL, cable, fiber broadband, and 4G/5G cellular for WAN access. Evaluates each option against reliability, throughput, and cost criteria.

  • Lesson 4 • MPLS Architecture and VPN Services

    Explains label switching, LSPs, and MPLS Layer 3 VPN operation. Connects MPLS to enterprise site interconnection and traffic engineering use cases.

  • Lesson 5 • WAN Concepts and Service Models

    Defines WAN terminology, service provider roles, and CPE vs. provider-managed equipment. Frames the WAN design decisions covered throughout the chapter.

Chapter 6See details

Network Security Fundamentals

  • Lesson 1 • Firewall Technologies and Deployment

    Compares stateless, stateful, and next-generation firewall capabilities. Covers DMZ design, zone-based policies, and firewall rule ordering principles.

  • Lesson 2 • Access Control Lists and Packet Filtering

    Teaches standard and extended ACL syntax, placement strategy, and wildcard masking. Demonstrates how ACLs enforce traffic policy at router and switch interfaces.

  • Lesson 3 • VPN Technologies and Encryption

    Covers IPsec tunnel and transport modes, IKE phases, and SSL/TLS VPN operation. Students configure site-to-site and remote-access VPN solutions.

  • Lesson 4 • Network Access Control and AAA

    Introduces 802.1X port authentication, RADIUS, and TACACS+ for centralized AAA. Connects identity-based access to zero-trust network principles.

  • Lesson 5 • Threat Landscape and Attack Vectors

    Catalogs reconnaissance, DoS, man-in-the-middle, and malware attack types targeting networks. Builds threat awareness needed to justify and prioritize security controls.

Chapter 7See details

Network Services and Infrastructure Protocols

  • Lesson 1 • Quality of Service Mechanisms

    Introduces QoS classification, marking, queuing, and policing to prioritize critical traffic. Connects QoS design to voice, video, and application performance requirements.

  • Lesson 2 • SNMP and Network Monitoring Protocols

    Covers SNMPv2c and SNMPv3 operation, MIB structure, and trap configuration. Positions SNMP as the foundation for network monitoring and alerting systems.

  • Lesson 3 • Network Time Protocol and Synchronization

    Explains NTP stratum hierarchy, client-server and peer modes, and authentication. Accurate time synchronization underpins logging, certificates, and security correlation.

  • Lesson 4 • DHCP Server Configuration and Relay

    Covers DHCP scope design, option configuration, and relay agent deployment across subnets. Reinforces address management skills introduced in the IP addressing chapter.

  • Lesson 5 • DNS Architecture and Resolution

    Explains recursive and iterative DNS resolution, zone types, and record formats. Connects DNS reliability to application availability and security.

Chapter 8See details

Network Troubleshooting and Operations

  • Lesson 1 • Troubleshooting Layer 1 and Layer 2 Issues

    Diagnoses physical connectivity failures, duplex mismatches, and STP topology changes. Applies switching knowledge from earlier chapters to real fault scenarios.

  • Lesson 2 • Troubleshooting Layer 3 and Routing Issues

    Isolates routing table errors, OSPF adjacency failures, and ACL-induced drops. Builds on routing protocol knowledge to resolve connectivity problems systematically.

  • Lesson 3 • Change Management and Incident Response

    Introduces change control processes, rollback planning, and post-incident review practices. Connects technical skills to operational governance required in enterprise environments.

  • Lesson 4 • Diagnostic Tools and Commands

    Covers ping, traceroute, nslookup, netstat, and packet capture tools for fault isolation. Hands-on use of these tools reinforces the troubleshooting methodologies taught earlier.

  • Lesson 5 • Structured Troubleshooting Methodologies

    Presents top-down, bottom-up, divide-and-conquer, and follow-the-path approaches. Selecting the right methodology reduces mean time to resolution in complex environments.

Certification

Your valid completion certificate

This course is for you:

  • IT support technicians ready to advance into dedicated networking roles.

  • College students pursuing computer science or information technology degrees.

  • System administrators who manage servers but lack formal networking depth.

  • Career changers from unrelated fields drawn to infrastructure and engineering work.

  • Home lab enthusiasts who want structured knowledge behind their hands-on experiments.

  • Junior network technicians preparing for their first professional certification exam.

Related Courses

FAQs

Who is Dedika?

Is the certificate valid in India?

Are the courses free?

What is the course workload?

What are the courses like?

How do the courses work?

What is the duration of the courses?

What is the cost or price of the courses?

What is an EAD or online course and how does it work?

PDF Course