
Networking Peripherals and Wireless Technologies Course
Master the full spectrum of networking peripherals and wireless technologies — from cabling and switches to Wi-Fi 6E and IoT security. This course gives IT professionals the hands-on knowledge to design, deploy, and troubleshoot modern wired and wireless networks with confidence.
What you will learn:
Configure switches, routers, and structured cabling systems to enterprise-grade standards.
Design and validate wireless networks using predictive RF modelling and active site surveys.
Implement WPA3, 802.1X, and WIDS/WIPS controls to secure wireless environments effectively.
Deploy and manage networked peripherals including IP cameras, printers, and IoT devices.
Troubleshoot wired and wireless faults using structured diagnostic methodologies and professional tools.
Evaluate emerging technologies such as Wi-Fi 7, 5G, and AI-driven network management platforms.
How you study in a practical way Networking Peripherals and Wireless Technologies Course
How you practise Networking Peripherals and Wireless Technologies 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 • 39 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsFoundations of Networking and Peripherals
Foundations of Networking and Peripherals
Lesson 1 • Core Networking Concepts and Terminology
Introduces OSI and TCP/IP models, protocols, and addressing. Provides the vocabulary needed for all subsequent networking topics.
Lesson 2 • Peripheral Devices in Networks
Defines network peripherals including NICs, hubs, and print servers. Explains how each device extends or connects network infrastructure.
Lesson 3 • Data Transmission Fundamentals
Explains bandwidth, latency, throughput, and signal types. Grounds students in the physical constraints affecting all network performance.
Lesson 4 • Network Topologies and Architectures
Covers star, bus, ring, and mesh topologies and their trade-offs. Connects topology choice to performance and fault tolerance outcomes.
Chapter 2HideHide detailsSee detailsWired Network Hardware and Cabling
Wired Network Hardware and Cabling
Lesson 1 • Switches: Operation and Configuration
Teaches Layer 2 and Layer 3 switching, VLANs, and port configuration. Connects switch setup to network segmentation and traffic management.
Lesson 2 • Ethernet Standards and Cable Categories
Covers Cat5e through Cat8 specifications, fiber types, and connector standards. Links cable selection to speed and distance requirements.
Lesson 3 • Routers and Gateway Devices
Explains routing tables, static and dynamic routing, and NAT. Prepares students to connect multiple network segments securely.
Lesson 4 • Structured Cabling and Patch Panels
Covers TIA/EIA cabling standards, patch panel installation, and cable management. Ensures students can build organised, standards-compliant wiring closets.
Lesson 5 • Power over Ethernet and PoE Devices
Introduces PoE standards, injectors, and powered device classes. Connects PoE knowledge to deploying IP cameras, phones, and access points.
Chapter 3HideHide detailsSee detailsWireless Networking Fundamentals
Wireless Networking Fundamentals
Lesson 1 • Radio Frequency and Signal Propagation
Covers RF spectrum, wavelength, and signal attenuation factors. Establishes the physical layer knowledge required for wireless design.
Lesson 2 • Frequency Bands and Channel Planning
Explains 2.4 GHz, 5 GHz, and 6 GHz band characteristics and non-overlapping channels. Guides students in reducing co-channel and adjacent-channel interference.
Lesson 3 • Antennas and Transmission Power
Explains omnidirectional, directional, and sector antennas with gain and polarisation. Prepares students to match antenna type to coverage objectives.
Lesson 4 • Wireless Network Modes and Topologies
Covers infrastructure, ad hoc, mesh, and bridging modes. Connects mode selection to deployment scenarios and coverage requirements.
Lesson 5 • IEEE 802.11 Standards Evolution
Traces 802.11a/b/g/n/ac/ax capabilities, channel widths, and modulation schemes. Connects standard selection to throughput and compatibility goals.
Chapter 4HideHide detailsSee detailsWireless Access Points and Controllers
Wireless Access Points and Controllers
Lesson 1 • Standalone AP Configuration
Teaches SSID setup, band steering, and basic QoS on autonomous APs. Provides hands-on skills for small-scale wireless deployments.
Lesson 2 • Access Point Hardware and Placement
Covers AP form factors, mounting options, and site survey methods. Links physical placement decisions to signal coverage and capacity outcomes.
Lesson 3 • Cloud-Managed Wireless Platforms
Covers cloud dashboard management, zero-touch provisioning, and analytics. Prepares students to deploy and monitor APs without on-site controllers.
Lesson 4 • Roaming and Fast Transition Protocols
Explains 802.11r fast BSS transition, 802.11k neighbour reports, and 802.11v BSS management. Ensures students can configure seamless client roaming.
Lesson 5 • Wireless LAN Controllers
Explains centralised controller architecture, CAPWAP tunnelling, and AP provisioning. Connects controller use to scalable enterprise wireless management.
Chapter 5HideHide detailsSee detailsWireless Security Protocols and Practices
Wireless Security Protocols and Practices
Lesson 1 • 802.1X and RADIUS Authentication
Covers EAP methods, RADIUS server integration, and certificate-based authentication. Prepares students to enforce identity-based wireless access control.
Lesson 2 • Guest Network and Captive Portal Design
Covers isolated guest VLANs, captive portal authentication, and bandwidth policies. Ensures students can provide secure, policy-compliant guest access.
Lesson 3 • Wireless Intrusion Detection and Prevention
Explains WIDS/WIPS operation, rogue AP containment, and anomaly detection. Links proactive monitoring to rapid threat response on wireless networks.
Lesson 4 • WPA2 and WPA3 Encryption Standards
Compares WPA2-Personal, WPA2-Enterprise, WPA3-SAE, and WPA3-Enterprise. Connects encryption standard selection to data confidentiality and authentication strength.
Lesson 5 • Wireless Threat Landscape
Identifies eavesdropping, rogue APs, evil twin attacks, and deauthentication floods. Frames the threat context that motivates all wireless security controls.
Chapter 6HideHide detailsSee detailsWireless Network Design and Site Surveys
Wireless Network Design and Site Surveys
Lesson 1 • Requirements Gathering and Capacity Planning
Covers client density, application SLAs, and coverage zone definition. Translates business requirements into measurable wireless design parameters.
Lesson 2 • Outdoor and Long-Range Wireless Links
Covers point-to-point and point-to-multipoint outdoor links, Fresnel zone clearance, and link budget calculation. Extends design skills to campus and building-to-building scenarios.
Lesson 3 • High-Density Wireless Environments
Addresses stadium, conference, and open-office deployments with airtime fairness and MU-MIMO. Prepares students to sustain performance under heavy concurrent client loads.
Lesson 4 • Active and Passive Site Surveys
Distinguishes passive scanning from active throughput testing and explains survey tools. Validates real-world RF performance against design predictions.
Lesson 5 • Predictive RF Modelling
Uses floor plan import, material attenuation values, and AP placement simulation. Produces pre-deployment heat maps to validate coverage before installation.
Chapter 7HideHide detailsSee detailsNetwork Peripherals: Printers, Cameras, and IoT
Network Peripherals: Printers, Cameras, and IoT
Lesson 1 • IoT Device Categories and Protocols
Introduces IoT device classes, MQTT, CoAP, and Zigbee protocols. Frames the protocol diversity students must manage in modern IoT deployments.
Lesson 2 • IoT Network Segmentation and Security
Covers IoT VLAN isolation, firewall policies, and firmware update management. Reduces attack surface by separating IoT traffic from critical network segments.
Lesson 3 • Networked Printer Deployment
Covers print server setup, driver management, and print queue administration. Connects printer network integration to user productivity and IT manageability.
Lesson 4 • IP Camera and Video Surveillance Systems
Explains IP camera types, ONVIF standards, NVR integration, and bandwidth planning. Prepares students to design and deploy scalable video surveillance networks.
Lesson 5 • Peripheral Lifecycle and Asset Management
Explains procurement, onboarding, maintenance, and decommissioning of network peripherals. Connects lifecycle management to cost control and security compliance.
Chapter 8HideHide detailsSee detailsNetwork Troubleshooting and Performance Optimisation
Network Troubleshooting and Performance Optimisation
Lesson 1 • Structured Troubleshooting Methodology
Introduces the OSI-layer approach, divide-and-conquer, and change management in fault isolation. Provides a repeatable framework applicable to all network problem types.
Lesson 2 • Wired Network Diagnostics
Covers cable testers, TDR, ping, traceroute, and switch log analysis. Connects tool selection to rapid identification of physical and logical wired faults.
Lesson 3 • Performance Monitoring and Baseline Management
Introduces SNMP, NetFlow, and wireless analytics dashboards for ongoing monitoring. Connects baseline establishment to proactive fault detection and capacity planning.
Lesson 4 • QoS Configuration and Traffic Prioritisation
Covers DSCP marking, WMM access categories, and queuing policies for voice and video. Ensures students can prioritise latency-sensitive traffic across wired and wireless segments.
Lesson 5 • Wireless Diagnostic Tools and Techniques
Explains spectrum analysers, packet capture, and RSSI/SNR measurement. Enables students to isolate RF interference, association failures, and throughput degradation.
Your valid completion certificate
This course is for you:
IT Support Technician: ready to move from fixing devices to building networks.
Junior Network Engineer: filling knowledge gaps in wireless design and peripheral management.
Career Changer: transitioning into IT from a technical or operations background.
Small Business IT Manager: needing structured knowledge to handle growing network demands.
Cybersecurity Student: building foundational network infrastructure knowledge before specialising further.
Home Lab Enthusiast: turning hands-on curiosity into job-ready professional networking skills.
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