
CCNA Course
This CCNA course gives you the hands-on technical skills to build, configure, and troubleshoot real Cisco networks from the ground up. You'll master everything from subnetting and VLANs to dynamic routing and network security. Whether you're breaking into IT or leveling up your career, this is the training that gets you certified and job-ready.
What your team will master:
You'll start with networking fundamentals and the OSI model, then move into Ethernet, IPv4 addressing, and Cisco IOS configuration. From there, you'll tackle VLANs, trunking, static and dynamic routing with OSPF and EIGRP, and IPv6. The course also covers network services such as DHCP, DNS, and NAT, as well as security tools including ACLs and port security. Supplementary topics include STP, WAN technologies, wireless networking, SNMP, and network automation with Python and Ansible. You'll finish with structured troubleshooting methodology and targeted exam preparation to pass the CCNA certification exam.
How your team studies in practice CCNA Course
How your team practices CCNA Course
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Course content
8 Chapters • 36 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsNetworking Fundamentals and the OSI Model
Networking Fundamentals and the OSI Model
Lesson 1 • Introduction to Computer Networks
Defines networks, their types, and real-world roles. Establishes vocabulary used throughout the entire course.
Lesson 2 • The TCP/IP Model
Contrasts the TCP/IP stack with OSI and maps real protocols to each layer. Prepares students for protocol-level analysis used in later chapters.
Lesson 3 • The OSI Reference Model
Explains all seven OSI layers and their distinct functions. Provides the conceptual framework for troubleshooting and protocol analysis.
Lesson 4 • Binary, Hexadecimal, and Decimal Conversion
Develops number-system fluency required for IP addressing and subnetting. Directly supports accurate address calculation in subsequent chapters.
Chapter 2HideHide detailsSee detailsEthernet and LAN Technologies
Ethernet and LAN Technologies
Lesson 1 • Switch Operation and MAC Tables
Describes how switches learn, forward, filter, and flood frames. Establishes switching logic needed before VLANs and STP are introduced.
Lesson 2 • Ethernet Standards and Evolution
Traces Ethernet from 10 Mbps to 10 Gbps and explains CSMA/CD. Grounds students in the physical and data-link behavior of modern LANs.
Lesson 3 • MAC Addressing and Frame Structure
Explains the 48-bit MAC address format and Ethernet frame fields. Connects physical addressing to the switching behavior covered next.
Lesson 4 • Network Cabling and Media
Covers copper, fiber, and wireless media characteristics and limitations. Enables correct media selection for given distance and bandwidth requirements.
Chapter 3HideHide detailsSee detailsCisco IOS and Device Configuration
Cisco IOS and Device Configuration
Lesson 1 • Basic Device Configuration
Covers hostname, passwords, banners, and management interface setup. Establishes a secure, identifiable baseline configuration on any Cisco device.
Lesson 2 • Saving and Managing Configurations
Explains running vs. startup config, NVRAM, and IOS file management. Ensures students can preserve and restore device configurations reliably.
Lesson 3 • Securing Device Access
Applies SSH, service password-encryption, and access control to IOS devices. Directly supports network security principles introduced in later chapters.
Lesson 4 • Interface Configuration and Verification
Configures router and switch interfaces with IP addresses and descriptions. Connects interface setup to routing and switching behavior in later chapters.
Lesson 5 • Cisco IOS CLI Navigation
Introduces IOS modes, command syntax, and help features. Builds the CLI confidence required for all subsequent device configuration tasks.
Chapter 4HideHide detailsSee detailsIPv4 Addressing and Subnetting
IPv4 Addressing and Subnetting
Lesson 1 • IPv4 Address Structure and Classes
Explains 32-bit address format, classful ranges, and public vs. private space. Provides the addressing baseline for all subnetting work.
Lesson 2 • Subnet Masks and CIDR Notation
Introduces subnet masks, prefix lengths, and network/host boundary identification. Enables students to read and write any subnet in CIDR form.
Lesson 3 • IPv4 Troubleshooting and Verification
Uses ping, traceroute, and address analysis to diagnose IPv4 issues. Reinforces addressing accuracy through practical verification techniques.
Lesson 4 • Variable Length Subnet Masking
Extends subnetting to VLSM for efficient address allocation. Prepares students for real-world hierarchical addressing plans.
Lesson 5 • Subnetting a Network
Applies binary and formula-based methods to divide address space into subnets. Students can calculate network, broadcast, and host ranges accurately.
Chapter 5HideHide detailsSee detailsVLANs, Trunking, and Inter-VLAN Routing
VLANs, Trunking, and Inter-VLAN Routing
Lesson 1 • Configuring VLANs on Switches
Creates VLANs and assigns access ports using IOS commands. Builds on basic IOS skills to produce a segmented switch configuration.
Lesson 2 • Inter-VLAN Routing Methods
Implements router-on-a-stick and Layer 3 switch SVIs for inter-VLAN routing. Connects VLAN segmentation to routed communication between segments.
Lesson 3 • Trunk Links and 802.1Q
Configures 802.1Q trunks to carry multiple VLANs between switches. Explains native VLAN tagging and trunk negotiation with DTP.
Lesson 4 • VLAN Concepts and Benefits
Explains how VLANs segment broadcast domains logically. Motivates VLAN use through security, performance, and management advantages.
Chapter 6HideHide detailsSee detailsRouting Concepts and Static Routing
Routing Concepts and Static Routing
Lesson 1 • How Routers Make Forwarding Decisions
Explains routing table structure, longest-prefix match, and administrative distance. Provides the decision logic underlying all routing protocol discussions.
Lesson 2 • IPv6 Static Routing Basics
Extends static routing concepts to IPv6 addressing and IOS commands. Bridges IPv4 routing knowledge to the IPv6 chapter that follows.
Lesson 3 • Configuring Static Routes
Implements next-hop and exit-interface static routes using IOS commands. Enables students to build routed topologies without dynamic protocols.
Lesson 4 • Default and Summary Static Routes
Configures default routes and summarized static routes to reduce table size. Prepares students for scalable routing design used in dynamic protocol chapters.
Chapter 7HideHide detailsSee detailsDynamic Routing Protocols: OSPF and EIGRP
Dynamic Routing Protocols: OSPF and EIGRP
Lesson 1 • OSPF Concepts and Operation
Explains OSPF neighbor relationships, LSAs, and the SPF algorithm. Provides the conceptual foundation before any OSPF configuration is attempted.
Lesson 2 • Configuring Single-Area OSPFv2
Implements OSPFv2 with network statements, router IDs, and passive interfaces. Students produce a working OSPF topology and verify adjacency and routes.
Lesson 3 • Routing Protocol Tuning and Verification
Adjusts OSPF cost, EIGRP bandwidth, and timers to influence path selection. Reinforces troubleshooting skills through systematic verification commands.
Lesson 4 • Dynamic Routing Protocol Fundamentals
Compares distance-vector, link-state, and hybrid protocol categories. Establishes selection criteria applied when choosing OSPF or EIGRP.
Lesson 5 • EIGRP Concepts and Configuration
Covers EIGRP DUAL algorithm, feasible successors, and basic IOS configuration. Contrasts EIGRP behavior with OSPF to reinforce protocol selection skills.
Chapter 8HideHide detailsSee detailsIPv6, Network Services, and Security Fundamentals
IPv6, Network Services, and Security Fundamentals
Lesson 1 • DHCP and DNS Services
Configures IOS DHCP server, relay agent, and DNS resolution. Connects addressing automation to the routed network built in prior chapters.
Lesson 2 • Network Address Translation
Implements static NAT, dynamic NAT, and PAT for IPv4 address conservation. Prepares students to connect private networks to the public internet.
Lesson 3 • IPv6 Addressing and Configuration
Explains 128-bit address types, EUI-64, and SLAAC. Enables students to configure and verify IPv6 on Cisco routers and switches.
Lesson 4 • Access Control Lists
Creates standard and extended ACLs to filter traffic on router interfaces. Applies security policy enforcement using packet-matching logic.
Lesson 5 • Network Security Fundamentals
Introduces threat categories, port security, and DHCP snooping on switches. Establishes a security mindset applied to all device configurations.
Your valid completion certificate
This course is for you:
IT support technician: ready to move beyond helpdesk into real network engineering work.
Career changer: drawn to networking from a non-technical professional background.
Computer science student: wanting practical Cisco skills to complement academic coursework.
System administrator: looking to expand expertise into routing, switching, and network design.
Military veteran: transitioning into civilian IT and targeting a recognized industry certification.
Freelance tech enthusiast: building credible credentials to attract enterprise-level clients.
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