ติวสอบ CCNA 200-301

 

This course is designed for anyone seeking CCNA certification. The course also provides foundational knowledge for all support technicians involved in the basic installation, operation, and verification of Cisco networks.
The job roles best suited to the material in this course are:
⦁ Entry-level network engineer
⦁ Network administrator
⦁ Network support technician
⦁ Help desk technician

Objectives
⦁ Identify the components of a computer network and describe their basic characteristics
⦁ Understand the model of host-to-host communication
⦁ Describe the features and functions of the Cisco Internetwork Operating System (IOS®) software
⦁ Describe LANs and the role of switches within LANs
⦁ Describe Ethernet as the network access layer of TCP/IP and describe the operation of switches
⦁ Install a switch and perform the initial configuration
⦁ Describe the TCP/IP Internet layer, IPv4, its addressing scheme, and subnetting
⦁ Describe the TCP/IP Transport layer and Application layer
⦁ Explore functions of routing
⦁ Implement basic configuration on a Cisco router
⦁ Explain host-to-host communications across switches and routers
⦁ Identify and resolve common switched network issues and common problems associated with IPv4 addressing
⦁ Describe IPv6 main features and addresses, and configure and verify basic IPv6 connectivity
⦁ Describe the operation, benefits, and limitations of static routing
⦁ Describe, implement, and verify Virtual Local Area Networks (VLANs) and trunks
⦁ Describe the application and configuration of inter-VLAN routing
⦁ Explain the basics of dynamic routing protocols and describe components and terms of Open Shortest Path First (OSPF)
⦁ Explain how Spanning Tree Protocol (STP) and Rapid Spanning Tree Protocol (RSTP) work
⦁ Configure link aggregation using EtherChannel
⦁ Describe the purpose of Layer 3 redundancy protocols
⦁ Describe basic WAN and VPN concepts
⦁ Describe the operation of Access Control Lists (ACLs) and their applications in the network
⦁ Configure Internet access using Dynamic Host Configuration Protocol (DHCP) clients and explain and configure Network Address Translation (NAT) on Cisco routers
⦁ Describe basic Quality of Service (QoS) concepts
⦁ Describe the concepts of wireless networks, which types of wireless networks can be built, and how to use Wireless LAN Controllers (WLCs)
⦁ Describe network and device architectures and introduce virtualization
⦁ Introduce the concept of network programmability and Software-Defined Networking (SDN) and describe smart network management solutions such as Cisco DNA Center™, Software-Defined Access (SD-Access), and Software-Defined Wide Area Network (SD-WAN)
⦁ Configure basic IOS system monitoring tools
⦁ Describe the management of Cisco devices
⦁ Describe the current security threat landscape
⦁ Describe threat defense technologies
⦁ Implement a basic security configuration of the device management plane
⦁ Implement basic steps to harden network devices

Prerequisites
Before taking this course, you should have:
⦁ Basic computer literacy
⦁ Basic PC operating system navigation skills
⦁ Basic Internet usage skills
⦁ Basic IP address knowledge

Course outline
⦁ Network Fundamentals

⦁ Explain the role and function of network components
⦁ Routers
⦁ L2 and L3 switches
⦁ Next-generation firewalls and IPS
⦁ Access points
⦁ Controllers (Cisco DNA Center and WLC)
⦁ Endpoints
⦁ Servers
⦁ Describe characteristics of network topology architectures
⦁ 2 tier
⦁ 3 tier
⦁ Spine-leaf
⦁ Compare TCP to UDP
⦁ Configure and verify IPv4 addressing and subnetting
⦁ Describe the need for private IPv4 addressing
⦁ Configure and verify IPv6 addressing and prefix
⦁ Compare IPv6 address types
⦁ Global unicast
⦁ Unique local
⦁ Link local
⦁ Anycast
⦁ Multicast
⦁ Modified EUI 64
⦁ Verify IP parameters for Client OS (Windows, Mac OS, Linux)
⦁ Describe wireless principles 1.11.a Nonoverlapping Wi-Fi channels 1.11.b SSID 1.11.c RF 1.11.d Encryption
⦁ Explain virtualization fundamentals (virtual machines)
⦁ Describe switching concepts
⦁ MAC learning and aging
⦁ Frame switching
⦁ Frame flooding
⦁ MAC address table

⦁ Implementing VLANs and Trunks
⦁ Configure and verify VLANs (normal range) spanning multiple switches
⦁ Access ports (data and voice)
⦁ Default VLAN
⦁ Connectivity
⦁ Configure and verify interswitch connectivity
⦁ Trunk ports
⦁ 802.1Q
⦁ Native VLAN

⦁ Configure and verify Layer 2 discovery protocols (Cisco Discovery Protocol and LLDP)
⦁ Configure and verify (Layer 2/Layer 3) EtherChannel (LACP)
⦁ Describe the need for and basic operations of Rapid PVST+ Spanning Tree Protocol and identify basic operations
⦁ Root port, root bridge (primary/secondary), and other port names
⦁ Port states (forwarding/blocking)
⦁ PortFast benefits
⦁ IP Connectivity
⦁ Routing Between VLANs

⦁ Introducing OSPF
⦁ Configure and verify single area OSPFv2
⦁ Neighbor adjacencies
⦁ Point-to-point
⦁ Broadcast (DR/BDR selection)
⦁ Router ID

⦁ Describe the purpose of first hop redundancy protocol
⦁ Exploring Layer 3 Redundancy
⦁ Introducing WAN Technologies
⦁ Small office/home office (SOHO)
⦁ On-premises and cloud
⦁ Compare physical interface and cabling types
⦁ Single-mode fiber, multimode fiber, copper
⦁ Connections (Ethernet shared media and point-to-point)
⦁ Concepts of PoE

⦁ IP Services
⦁ Configure and verify inside source NAT using static and pools
⦁ Explain the role of DHCP and DNS within the network
⦁ Explain the function of SNMP in network operations
⦁ Describe the use of syslog features including facilities and levels
⦁ Configure and verify DHCP client and relay
⦁ Explain the forwarding per-hop behavior (PHB) for QoS such as classification, marking, queuing, congestion, policing, shaping
⦁ Configure network devices for remote access using SSH
⦁ Describe the capabilities and function of TFTP/FTP in the network

⦁ Explaining Basics of ACL
⦁ Enabling Internet Connectivity
⦁ Introducing QoS
⦁ Explaining Wireless Fundamentals
⦁ Compare Cisco Wireless Architectures and AP modes
⦁ Describe physical infrastructure connections of WLAN components (AP, WLC, access/trunk ports, and LAG)
⦁ Describe AP and WLC management access connections (Telnet, SSH, HTTP, HTTPS, console, and TACACS+/RADIUS)
⦁ Configure the components of a wireless LAN access for client connectivity using GUI only such as WLAN creation, security settings, QoS profiles, and advanced WLAN settings

⦁ Introducing Architectures and Virtualization
⦁ Explaining the Evolution of Intelligent Networks
⦁ Introducing System Monitoring
⦁ Managing Cisco Devices

⦁ Examining the Security Threat Landscape
⦁ Implementing Threat Defense Technologies
⦁ Define key security concepts (threats, vulnerabilities, exploits, and mitigation techniques)
⦁ Describe security program elements (user awareness, training, and physical access control)

⦁ Securing Administrative Access
⦁ Configure device access control using local passwords
⦁ Describe security password policies elements, such as management, complexity, and password alternatives (multifactor authentication, certificates, and biometrics)
⦁ Describe remote access and site-to-site VPNs
⦁ Configure and verify access control lists

⦁ Implementing Device Hardening
⦁ Configure Layer 2 security features (DHCP snooping, dynamic ARP inspection, and port security)
⦁ Differentiate authentication, authorization, and accounting concepts
⦁ Describe wireless security protocols (WPA, WPA2, and WPA3)
⦁ Configure WLAN using WPA2 PSK using the GUI

⦁ Automation and Programmability
⦁ Explain how automation impacts network management
⦁ Compare traditional networks with controller-based networking
⦁ Describe controller-based and software defined architectures (overlay, underlay, and fabric)
⦁ Separation of control plane and data plane
⦁ North-bound and south-bound APIs
⦁ Compare traditional campus device management with Cisco DNA Center enabled device management
⦁ Describe characteristics of REST-based APIs (CRUD, HTTP verbs, and data encoding)
⦁ Recognize the capabilities of configuration management mechanisms Puppet, Chef, and Ansible
⦁ Interpret JSON encoded data

Lab outline
⦁ Get Started with Cisco Command-Line Interface (CLI)
⦁ Observe How a Switch Operates
⦁ Perform Basic Switch Configuration
⦁ Implement the Initial Switch Configuration
⦁ Inspect TCP/IP Applications
⦁ Configure an Interface on a Cisco Router
⦁ Configure and Verify Layer 2 Discovery Protocols
⦁ Implement an Initial Router Configuration
⦁ Configure Default Gateway
⦁ Explore Packet Forwarding
⦁ Troubleshoot Switch Media and Port Issues
⦁ Troubleshoot Port Duplex Issues
⦁ Configure Basic IPv6 Connectivity
⦁ Configure and Verify IPv4 Static Routes
⦁ Configure IPv6 Static Routes
⦁ Implement IPv4 Static Routing
⦁ Implement IPv6 Static Routing
⦁ Configure VLAN and Trunk
⦁ Troubleshoot VLANs and Trunk
⦁ Configure a Router on a Stick
⦁ Implement Multiple VLANs and Basic Routing Between the VLANs
⦁ Configure and Verify Single-Area OSPF
⦁ Configure and Verify EtherChannel
⦁ Improve Redundant Switched Topologies with EtherChannel
⦁ Configure and Verify IPv4 ACLs
⦁ Implement Numbered and Named IPv4 ACLs
⦁ Configure a Provider-Assigned IPv4 Address
⦁ Configure Static NAT
⦁ Configure Dynamic NAT and Port Address Translation (PAT)
⦁ Implement PAT
⦁ Log into the WLC
⦁ Monitor the WLC
⦁ Configure a Dynamic (VLAN) Interface
⦁ Configure a DHCP Scope
⦁ Configure a WLAN
⦁ Define a Remote Access Dial-In User Service (RADIUS) Server
⦁ Explore Management Options
⦁ Explore the Cisco DNA™ Center
⦁ Configure and Verify NTP
⦁ Configure System Message Logging
⦁ Create the Cisco IOS Image Backup
⦁ Upgrade Cisco IOS Image
⦁ Configure WLAN Using Wi-Fi Protected Access 2 (WPA2) Pre-Shared Key (PSK) Using the GUI
⦁ Secure Console and Remote Access
⦁ Enable and Limit Remote Access Connectivity
⦁ Secure Device Administrative Access
⦁ Configure and Verify Port Security
⦁ Implement Device Hardening

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02-2740864, 02-2740867

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