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CCNA Exam Topics

The “200-301 Cisco Certified Network Associate (CCNA) Exam” covers fundamental networking concepts and Cisco device configuration.

  • Current Version: 1.1
  • Languages: English, Japanese
  • Duration: 120 minutes
  • Questions: 50-60 questions
  • Passing Score: 825/1000
  • Format: Multiple choice and simulation questions
1. Network Fundamentals 20%
  • 1.1 Explain the role and function of network components
  • 1.2 Describe characteristics of network topology architectures
  • 1.3 Compare physical interface and cabling types
  • 1.4 Identify interface and cable issues (collisions, errors, mismatch duplex, and/or speed)
  • 1.5 Compare TCP to UDP
  • 1.6 Configure and verify IPv4 addressing and subnetting
  • 1.7 Describe private IPv4 addressing
  • 1.8 Configure and verify IPv6 addressing and prefix
  • 1.9 Describe IPv6 address types
  • 1.10 Verify IP parameters for Client OS (Windows, Mac OS, Linux)
  • 1.11 Describe wireless principles* **
  • 1.12 Explain virtualization fundamentals (server virtualization, containers, and RFs)
  • 1.13 Describe switching concepts
2. Network Access 20%
  • 2.1 Configure and verify VLANs (normal range) spanning multiple switches
  • 2.2 Configure and verify interswitch connectivity
  • 2.3 Configure and verify Layer 2 discovery protocols (Cisco Discovery Protocol and LLDP)
  • 2.4 Configure and verify (Layer 2/Layer 3) EtherChannel (LACP)
  • 2.5 Interpret basic operations of Rapid PVST+ Spanning Tree Protocol
  • 2.6 Describe Cisco Wireless Architectures and AP modes
  • 2.7 Describe physical infrastructure connections of WLAN components (AP, WLC, access/trunk ports, and LAG)
  • 2.8 Describe network device management access (Telnet, SSH, HTTP, HTTPS, console, TACACS+/RADIUS, and cloud managed)
  • 2.9 Interpret the wireless LAN GUI configuration for client connectivity, such as WLAN creation, security settings, QoS profiles, and advanced settings
3. IP Connectivity 25%
  • 3.1 Interpret the components of routing table
  • 3.2 Determine how a router makes a forwarding decision by default
  • 3.3 Configure and verify IPv4 and IPv6 static routing
  • 3.4 Configure and verify single area OSPFv2
  • 3.5 Describe the purpose, functions, and concepts of first hop redundancy protocols
4. IP Services 10%
  • 4.1 Configure and verify inside source NAT using static and pools
  • 4.2 Configure and verify NTP operating in a client and server mode
  • 4.3 Explain the role of DHCP and DNS within the network
  • 4.4 Explain the function of SNMP in network operations
  • 4.5 Describe the use of syslog features including facilities and levels
  • 4.6 Configure and verify DHCP client and relay
  • 4.7 Explain the forwarding per-hop behavior (PHB) for QoS, such as classification, marking, queuing, congestion, policing, and shaping
  • 4.8 Configure network devices for remote access using SSH
  • 4.9 Describe the capabilities and functions of TFTP/FTP in the network
5. Security Fundamentals 15%
  • 5.1 Define key security concepts (threats, vulnerabilities, exploits, and mitigation techniques)
  • 5.2 Describe security program elements (user awareness, training, and physical access control)
  • 5.3 Configure and verify device access control using local passwords
  • 5.4 Describe security password policies elements, such as management, complexity, and password alternatives (multifactor authentication, certificates, and biometrics)
  • 5.5 Describe IPsec remote access and site-to-site VPNs
  • 5.6 Configure and verify access control lists
  • 5.7 Configure and verify Layer 2 security features (DHCP snooping, dynamic ARP inspection, and port security)
  • 5.8 Compare authentication, authorization, and accounting concepts
  • 5.9 Describe wireless security protocols (WPA, WPA2, and WPA3)
  • 5.10 Configure and verify WLAN within the GUI using WPA2 PSK
6. Automation and Programmability 10%
  • 6.1 Explain how automation impacts network management
  • 6.2 Compare traditional networks with controller-based networking
  • 6.3 Describe controller-based, software defined architecture (overlay, underlay, and fabric)
  • 6.4 Explain AI (generative and predictive) and machine learning in network operations
  • 6.5 Describe characteristics of REST-based APIs (authentication types, CRUD, HTTP verbs, and data encoding)
  • 6.6 Recognize the capabilities of configuration management mechanisms, such as Ansible and Terraform
  • 6.7 Recognize components of JSON-encoded data