CCNP Enterprise Design ENSLD 300-420: Designing Cisco Enterprise Networks – CS-ENSLD

CCNP Enterprise Design ENSLD 300-420
Course Code: CS-ENSLD
This new five day Cisco CCNP Enterprise Design ENSLD 300-420 course will provide delegates with the knowledge and skills you need to design an enterprise network.
- Duration: 5 Day
- Level: Professional
- Technology: Cisco
- Delivery Method: Instructor Led
- Training Credits: NA
This course is primarily intended for:
System Administrators , Network Design Engineers, Network engineers, System Engineers
Individuals preparing for the Designing Cisco Enterprise Networks (ENSLD) exam, which is part of Cisco’s CCNP Enterprise certification
Before attending this course, delegates must have attended AWS Cloud Practitioner Essentials classroom or digital training, or have:
– Working knowledge of distributed systems
– Familiarity with general networking concepts
– Familiarity with IP addressing
– Working knowledge of multi-tier architectures
– Familiarity with cloud computing concepts
On completion of this course, participants should be familiar with:
– Creating a structured addressing plans for IPv4 and IPv6
– Determining IPv6 migration strategies
– Creating stable, secure, and scalable routing designs for IS-IS
– Creating stable, secure, and scalable routing designs for EIGRP
– Creating stable, secure, and scalable routing designs for OSPF
– Creating stable, secure, and scalable routing designs for BGP
– Multicast routing concepts (source trees, shared trees, RPF, rendezvous points)
– Designing multicast services (SSM, Bidirectional PIM, MSDP)
– Designing network management techniques (in-band versus out-of-band, segmented management networks, prioritizing network management traffic)
– Hierarchical design models ,architecture, LAN media and Spanning Tree Protocol design considerations
– Designing campus networks for high availability
– Designing multi-campus Layer 3 infrastructures
– WAN technologies in enterprise networks
– WAN design and QoS
– SD-Access architecture and SD-Access fabric design considerations for wired and wireless access
– Cisco SD-WAN architecture (orchestration plane, management plane, control plane, data plane, onboarding plane and provisioning, and security)
– Cisco SD-WAN design considerations (control plane design, overlay design, LAN design, high availability, redundancy, scalability, security design, QoS, and multicast over SD-WAN fabric)
– YANG data models with IETF and OpenConfig, along with NETCONF and RESTCONF protocols
– Model-driven telemetry and how it can be used to gather information from network devices.
Exam #300-420 is associated with the new CCNP Enterprise certification. This exam will test a candidate’s knowledge of enterprise design, including:
– Advanced addressing and routing solutions
– Advanced enterprise campus networks
– WAN
– Security services
– Network services
– SDA
Modules
– IPv4 Header:
– IPv4 Addressing
– IP Address Subnets
– IP Addressing Design
– Address Assignment and Name Resolution
– IPv6 Header
– IPv6 Address Representation
– IPv6 Address Scope Types and Address Allocations
– IPv6 Mechanisms
– IPv6 Routing Protocols
– IPv4-to-IPv6 Migration Strategies and Deployment Models
– Routing Protocol Characteristics
– Routing Protocol Metrics and Loop Prevention
– EIGRP:
– IS-IS
– OSPFv2
– OSPFv3
– BGP
– Route Manipulation
– IP Multicast Review
– Network Management Design
– Hierarchical Network Models
– LAN Media
– Spanning Tree Protocol Design Considerations
– Campus LAN Design and Best Practices:
– High Availability Network Services
– WAN Overview
– WAN Transport Technologies:
– Site-to-Site VPN Design
– WAN Design Methodologies
– Design for High Availability
– Internet Connectivity
– Backup Connectivity
– QoS Strategies
– Designing End-to-End QoS Policies
– SD-Access Architecture:
– SD-Access Fabric Design Considerations for Wired and Wireless Access
– SD-WAN Architecture
– SD-WAN Design Considerations
– Introduction to Network APIs and Protocols
– YANG, NETCONF, and RESTCONF Explored
– IETF, OpenConfig, and Cisco YANG Models
– Model-Driven Telemetry