Each of these objectives comes with a specific set of skills that are described in detail below:
This topic includes the following skills: explaining the network components role; describing network topology architectures; comparing cabling and physical interface types; defining cable and interface issues (collisions, speed, errors, mismatch duplex); comparing TCP and UDP; customizing and verifying subnetting IPv4 subnetting and addressing; describing the necessity of private IPv4 addressing; customizing and verifying IPv6 prefix and addressing; comparing IPv6 address types; verifying IP parameters for Client OS (Linux, Windows, Mac OS); describing switching principles; explaining wireless concepts; explaining virtualization basics (virtual machines).
Within this domain, the examinees need to demonstrate their ability to: interpret the routing table components (routing protocol code, network mask, prefix, next hop, last resort gateway, administrative distance, metric); customize IPv4 and IPv6 static routing (host route, default route, floating static, network route); identify how a router makes a forwarding decision by default (administrative distance, longest match, routing protocol metric); customize and verify single area OSPFv2 (point-to-point, neighbor adjacencies, router ID, broadcast); explain the objective of first hop redundancy protocol.
This subject area evaluates the following skills of the candidates: identifying core security concepts (vulnerabilities, threats, exploits, mitigation techniques); explaining security program elements (physical access control, user awareness, and training); customizing device access control using local passwords; explaining the elements of security password policies, including complexity, management, password alternatives (multifactor authentication, certificates, and biometrics); describing site-to-site VPNs and remote access; configuring and verifying access control lists; configuring security features of Layer 2 (dynamic ARP inspection, DHCP snooping, port security); differentiating accounting, authentication, and authorization concepts; describing WPA, WPA2, and WPA3 security protocols; customizing WLAN with the help of WPA2 PSK.
Here the applicants need to demonstrate that they are capable of: explaining how automation affects network management; distinguishing traditional networks from controller-based networking; describing software defined and controller-based architectures (fabric, overlay, underlay); distinguishing traditional campus device management from Cisco DNA Center enabled device management; describing REST-based APIs characteristics (data encoding, CRUD, HTTP verbs); recognizing the abilities of Puppet, Chef, and Ansible configuration management mechanisms; interpreting JSON encoded data.
This objective combines the questions that check competency of the test takers in: customizing and verifying within source NAT with the help of static and pools; customizing and verifying NTP operating in a server and client mode; explaining the function of DHCP and DNS within the network; explaining the role of SNMP in executing network operations; describing the utilization of syslog features including facilities and levels; customizing and verifying DHCP relay and client; explaining the forwarding per-hop behavior (PHB) for QoS, including classification, queuing, marking, shaping, congestion, policing; customizing remote access network devices with the help of SSH; describing the function of TFTP/FTP in the network.
Who should take the 200-301 CCNA Exam: Cisco Certified Network Associate
This certification is for a Network Engineers who has to handle the systems and documentation that are required for audits and compliance and if the professionals must actively participate in the disaster recover development, exercises, and actual events. They should know how to implement new network and Infrastructures initiatives across various departments. The Associate Network Engineer has to coordinate with the staff to maintain quality and maintainable systems. They have to push for new capabilities that can come in handy for the users.
The professional must locate the areas of improvement for supportability. They have to be instrumental in technical work for one or more projects. The Associate Network Engineer verifies the rollout plans before the corporate release. They must ensure everyone works within the change control guidelines. The professional acts as the primary point of contact for the IT and System support teams. The Network Engineer must monitor all network equipment to ensure peak functionality.
The Associate Network Engineer provides technical support for the design and deployment of network solution. They play a prominent role in the building configuration and deploying network equipment. The professional takes care of the Cisco network hardware and iOS software that needs a regular update. The Network Engineer has to examine networking solutions and improve the resiliency of the current network environment.
Basics of Network Access
Network access covers the concepts of VLAN configuration and verification, interswitch connectivity verification and configuration, the configuration and verification of Layer 2 discovery protocols, and Cisco wireless architectures. It also addresses the configuration of wireless LAN components, WLC, and AP management access connections, and physical infrastructure connections of WLAN components.
What Skills Does It Measure?
The Cisco 200-301 test is designed to gage the following skills:
- Network Access (20%).
- Automation and Programmability (10%);
- Security Fundamentals (15%);
- IP Services (10%);
- IP Connectivity (25%);
- Network Fundamentals (20%);
Cisco 200-301 Deutsch Exam Syllabus Topics:
| Section | Weight | Objectives |
|---|---|---|
| Topic 1: IP Services | 10% | - SNMP, Syslog, and QoS basics - NAT and PAT - DHCP, DNS, and NTP |
| Topic 2: Automation and Programmability | 10% | - SDN and network programmability concepts - Configuration management tools (Ansible) - Network monitoring and automation tools - REST APIs and data formats (JSON, YAML) |
| Topic 3: Network Fundamentals | 20% | - Ethernet fundamentals and switching concepts - Wireless LAN principles - IPv6 addressing and concepts - OSI and TCP/IP models - IPv4 addressing and subnetting |
| Topic 4: Security Fundamentals | 15% | - Layer 2 security features - AAA and identity management - VPN technologies and security protocols - Access Control Lists (ACLs) - Device hardening and access control |
| Topic 5: IP Connectivity | 25% | - Routing fundamentals and routing tables - OSPFv2 and OSPFv3 configuration - Static routing and dynamic routing protocols - First Hop Redundancy Protocols (HSRP, VRRP) |
| Topic 6: Network Access | 20% | - Wireless network configuration and security - VLANs and inter-VLAN routing - Spanning Tree Protocol (STP) - EtherChannel and link aggregation |














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