
CWNP Certification Training
Master every domain of the CWNP certification track — from RF fundamentals and 802.11 MAC operations to enterprise architecture and advanced Wi-Fi 6E technologies. This training gives wireless networking professionals the technical depth and exam readiness needed to earn industry-recognized CWNP credentials and advance their careers.
What you will learn:
This course covers the full CWNP knowledge base, starting with RF physics, frequency bands, and antenna theory, then moving into 802.11 MAC operations, CSMA/CA, and QoS mechanisms. You will learn how to design and validate wireless site surveys, plan channel reuse for high-density environments, and architect scalable enterprise WLAN systems. Security topics include WPA2, WPA3, 802.1X authentication, and wireless intrusion prevention. Advanced modules address Wi-Fi 6, Wi-Fi 6E, Wi-Fi 7, OFDMA, and multi-link operation. The course closes with structured exam preparation, scenario-based practice questions, and a full review of the CWNP certification roadmap.
How you study in practice CWNP Certification Training
How you practice CWNP Certification Training
For companies that want to train their team
With Dedika for Business, 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 detailsWireless Networking Fundamentals
Wireless Networking Fundamentals
Lesson 1 • Wireless Standards and Organizations
Identifies key standards bodies and the 802.11 amendment timeline. Connects regulatory and technical standards to real-world equipment selection.
Lesson 2 • Wireless Network Topologies
Defines BSS, ESS, IBSS, and mesh topology models. Sets the architectural vocabulary used throughout the entire course.
Lesson 3 • Frequency Bands and Channels
Examines 2.4 GHz, 5 GHz, and 6 GHz band structures and channel plans. Directly supports channel planning and interference mitigation skills.
Lesson 4 • OSI Model in Wireless Context
Maps wireless functions to OSI layers, emphasizing Layers 1 and 2. Prepares students to troubleshoot protocol interactions in later chapters.
Lesson 5 • Radio Frequency Principles
Covers wavelength, frequency, amplitude, and phase as they apply to wireless signals. Provides the physics base needed for antenna and propagation topics ahead.
Chapter 2HideHide detailsSee detailsRF Signal Propagation and Antennas
RF Signal Propagation and Antennas
Lesson 1 • Antenna Types and Characteristics
Compares omnidirectional, directional, and sector antennas by gain, beamwidth, and polarization. Antenna choice directly affects coverage shape and link budget.
Lesson 2 • Link Budget Calculations
Teaches EIRP, receiver sensitivity, and system operating margin calculations. Students apply these values to validate compliant and reliable wireless links.
Lesson 3 • RF Propagation Behaviors
Explains reflection, refraction, diffraction, scattering, and absorption. These behaviors directly determine coverage gaps and multipath effects in deployments.
Lesson 4 • MIMO and Spatial Multiplexing
Introduces multiple-input multiple-output technology and its role in throughput gains. Connects antenna configuration to 802.11n/ac/ax performance expectations.
Chapter 3HideHide detailsSee details802.11 MAC Layer Operations
802.11 MAC Layer Operations
Lesson 1 • Quality of Service and WMM
Explains EDCA access categories, traffic prioritization, and WMM certification requirements. QoS configuration is critical for voice and video application support.
Lesson 2 • 802.11 Frame Types and Structure
Dissects management, control, and data frame formats and their subtype roles. Frame analysis skills are essential for protocol troubleshooting in later chapters.
Lesson 3 • Power Management Mechanisms
Covers legacy power save, U-APSD, and TWT for client battery optimization. Power management directly affects latency and throughput in dense deployments.
Lesson 4 • Association and Authentication Process
Traces the full client join sequence from probe through association. Understanding this flow is prerequisite for security and roaming topics.
Lesson 5 • CSMA/CA and Medium Access
Explains distributed coordination function, backoff timers, and collision avoidance. This mechanism governs all shared-medium access in 802.11 networks.
Chapter 4HideHide detailsSee detailsWireless LAN Security Fundamentals
Wireless LAN Security Fundamentals
Lesson 1 • Legacy Security and Its Weaknesses
Analyzes WEP, open authentication, and shared-key flaws to motivate modern solutions. Understanding past failures clarifies why current standards are designed as they are.
Lesson 2 • WPA2 and WPA3 Protocols
Compares WPA2-Personal, WPA2-Enterprise, WPA3-SAE, and WPA3-Enterprise security models. Protocol selection determines the authentication and encryption strength of the network.
Lesson 3 • Wireless Threats and Attack Vectors
Catalogs rogue APs, evil twin attacks, deauthentication floods, and eavesdropping. Threat awareness drives the WIPS and monitoring strategies covered next.
Lesson 4 • Wireless Intrusion Prevention Systems
Covers WIPS sensor deployment, rogue classification, and automated containment. WIPS is the operational enforcement layer for the security policies defined earlier.
Lesson 5 • 802.1X and EAP Authentication
Details the supplicant, authenticator, and authentication server roles with common EAP types. This framework underpins enterprise identity-based access control.
Chapter 5HideHide detailsSee detailsWLAN Site Survey and Design
WLAN Site Survey and Design
Lesson 1 • Capacity Planning and Channel Reuse
Calculates per-AP client capacity and designs channel reuse patterns for high-density environments. Capacity planning ensures performance under peak load conditions.
Lesson 2 • Passive and Active Survey Methods
Contrasts passive spectrum capture with active throughput testing and their appropriate use cases. Method selection determines the accuracy and completeness of survey data.
Lesson 3 • Post-Deployment Validation
Validates installed networks against design specifications using measurement tools and reporting. Validation closes the design loop and documents compliance with requirements.
Lesson 4 • AP Placement and Coverage Design
Applies signal propagation knowledge to determine AP locations, mounting heights, and antenna orientation. Coverage design directly determines network reliability and roaming quality.
Lesson 5 • Pre-Survey Planning and Requirements
Defines application requirements, user density, and coverage thresholds before fieldwork begins. Proper planning prevents costly redesigns after deployment.
Chapter 6HideHide detailsSee detailsEnterprise WLAN Architecture and Deployment
Enterprise WLAN Architecture and Deployment
Lesson 1 • Controller-Based WLAN Architecture
Examines centralized controller functions, CAPWAP tunneling, and split-MAC operation. Controller architecture is the dominant enterprise deployment model and exam focus.
Lesson 2 • Cloud-Managed and Distributed Architectures
Compares cloud-managed, autonomous, and distributed AP models for different organizational scales. Architecture selection impacts management complexity, cost, and resilience.
Lesson 3 • Wireless Network Management and Monitoring
Covers SNMP, syslog, RF management tools, and dashboard-based monitoring for operational visibility. Ongoing management sustains performance and security posture post-deployment.
Lesson 4 • Roaming and Fast Transition
Details Layer 2 and Layer 3 roaming, 802.11r fast BSS transition, and OKC mechanisms. Seamless roaming is critical for voice, video, and real-time application support.
Lesson 5 • VLAN and Network Integration
Connects WLAN SSIDs to wired VLANs, trunking, and routing for multi-segment networks. Proper integration ensures traffic segmentation and policy enforcement.
Chapter 7HideHide detailsSee detailsAdvanced 802.11 Technologies
Advanced 802.11 Technologies
Lesson 1 • BSS Coloring and Spatial Reuse
Details BSS color field operation and adaptive CCA thresholds for dense deployment efficiency. Spatial reuse reduces unnecessary deferrals and increases aggregate throughput.
Lesson 2 • OFDMA and Multi-User Scheduling
Explains orthogonal frequency-division multiple access resource unit allocation for uplink and downlink. OFDMA is the core efficiency mechanism in Wi-Fi 6 and later standards.
Lesson 3 • Wi-Fi 6E and 6 GHz Operations
Covers 6 GHz band access rules, automated frequency coordination, and preferred scanning channels. The 6 GHz band offers clean spectrum unavailable in legacy deployments.
Lesson 4 • IoT and Low-Power Wireless Integration
Examines 802.11ah, 802.11ba, and Wi-Fi HaLow for IoT and low-power device integration. IoT connectivity requirements differ fundamentally from traditional client device needs.
Lesson 5 • Wi-Fi 7 Multi-Link Operation
Introduces 802.11be multi-link operation, 320 MHz channels, and 4K-QAM modulation. Wi-Fi 7 represents the current frontier of wireless performance and exam relevance.
Chapter 8HideHide detailsSee detailsCWNP Exam Preparation and Practice
CWNP Exam Preparation and Practice
Lesson 1 • CWNP Certification Roadmap Review
Maps CWTS, CWNA, CWSP, CWDP, CWAP, and CWNE certifications to career roles and exam domains. Understanding the full roadmap helps students prioritize study effort effectively.
Lesson 2 • Scenario-Based Practice Questions
Presents complex multi-domain scenarios requiring integrated analysis and decision-making. Scenario practice mirrors actual exam question style and difficulty.
Lesson 3 • Exam Strategy and Test-Taking Skills
Provides time management, elimination strategies, and question interpretation techniques for multiple-choice exams. Effective test-taking strategy maximizes score independent of content knowledge.
Lesson 4 • Domain-by-Domain Knowledge Review
Systematically revisits each exam domain with targeted summaries and key formula review. Structured review identifies and closes individual knowledge gaps before the exam.
Lesson 5 • Protocol Analysis and Packet Capture
Applies frame analysis tools to capture and interpret real 802.11 exchanges. Hands-on analysis reinforces theoretical MAC and security knowledge from earlier chapters.
Your valid completion certificate
This course is for you:
Network administrators ready to formalize their wireless expertise with credentials.
IT support technicians who troubleshoot Wi-Fi issues daily without formal training.
Systems engineers expanding their skill set into dedicated wireless infrastructure roles.
Career changers from wired networking who want to specialize in wireless technologies.
Telecom professionals transitioning into enterprise WLAN design and deployment work.
Ambitious IT students who want a vendor-neutral certification to stand out immediately.
What our students say
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