Course Catalog
MCAST - Implementing Cisco Multicast v2.0
Code: MCAST 2.0
Duration: 5 Day
$4295 USD

OVERVIEW

Implementing Cisco Multicast is a five-day instructor-led course designed to provide technical solutions for simple deployments of IP multicast within a provider or customer network. This course covers the fundamentals of IP multicasting including multicast applications, sources, receivers, group management, and IP multicast routing protocols (such as Protocol Independent Multicast [PIM]) used within a single administrative domain (intradomain). The issues of switched LAN environments and reliable IP multicasting have also been incorporated.

The labs incorporated in this course provide delegates with hands-on experience of the configuration and troubleshooting guidelines for implementing IP multicast on Cisco routers.

DELIVERY FORMAT

This course is available in the following formats:

Virtual Classroom

Duration: 5 Day

CLASS SCHEDULE

Delivery Format: Virtual Classroom
Date: Aug 10 2026 - Aug 14 2026 | 08:30 - 16:30 EDT
Location: Online
Course Length: 5 Day

$ 4295

Delivery Format: Virtual Classroom
Date: Oct 05 2026 - Oct 09 2026 | 08:30 - 16:30 EDT
Location: Online
Course Length: 5 Day

$ 4295

Delivery Format: Virtual Classroom
Date: Dec 14 2026 - Dec 18 2026 | 08:30 - 16:30 EST
Location: Online
Course Length: 5 Day

$ 4295

Delivery Format: Virtual Classroom
Date: Feb 08 2027 - Feb 12 2027 | 08:30 - 16:30 EST
Location: Online
Course Length: 5 Day

$ 4295

Delivery Format: Virtual Classroom
Date: Mar 29 2027 - Apr 02 2027 | 08:30 - 16:30 EDT
Location: Online
Course Length: 5 Day

$ 4295

Delivery Format: Virtual Classroom
Date: May 17 2027 - May 21 2027 | 08:30 - 16:30 EDT
Location: Online
Course Length: 5 Day

$ 4295

GOALS

After completing this course, you should be able to:

  • Introduce IP multicast services, to evaluate the functional model of IP multicasting and the technologies present in IP multicasting, acknowledge IP multicast benefits and associated caveats, and determine various types of multicast applications in order to understand the IP multicast conceptual model and its implementation prerequisites
  • Configure and deploy MSDP in the interdomain environment
  • Identify IP multicast issues on a data link layer, explain the methods of mapping network layer multicast addresses to data link layer addresses, and list the mechanisms for constraining multicast streams in a LAN environment
  • Answer to and design multicast-related application and network solutions in customer and service provider networks
  • Introduce Protocol Independent Multicast sparse mode (PIM-SM) as the most current scalable IP multicast routing protocol to learn the principles of protocol operation and details, become familiar with the determinism built into sparse mode multicast protocols, and configure and deploy PIM-SM in complex IP multicast network deployments
  • Review RP distribution solutions, recognize the drawbacks of manual RP configuration, become familiar with the Auto-Rendezvous Point (Auto-RP) and the bootstrap router (BSR) mechanisms, and introduce the concept of Anycast RP that works in combination with the Multicast Source Discovery Protocol (MSDP)
  • Recognize the drawbacks of the PIM-SM and introduce two extensions to provide possible solutions; learn about mechanics of the Source Specific Multicast (SSM) and bidirectional mode of PIM-SM in order to configure and deploy SSM and bidirectional mode of the PIM-SM in a large service provider network
  • Explain basic concepts of Multiprotocol BGP (MP-BGP) and its use in the IP multicast environment, apply steps that are associated with configuring MP-BGP with Address Family Identifier (AFI) syntax to support IP multicast in the interdomain environment
  • Introduce solutions to mitigate security issues in the IP multicast network. Examine and implement suitable virtual private network (VPN) technologies, such as Generic Routing Encapsulation (GRE) with IP Security (IPsec) and Group Encrypted Transport (GET) VPN
  • Describe the process of monitoring and maintaining multicast high-availability operations, introduce the PIM triggered join feature, and describe how load splitting IP multicast traffic over Equal-Cost Multipath (ECMP) works
OUTLINE


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IP Multicast Concepts and Technologies

  • Introducing IP Multicast
  • Understanding the Multicast Service Model
  • Defining Multicast Distribution Trees and Forwarding
  • Reviewing Multicast Protocols

Multicast on the LAN

  • Mapping Layer 3 to Layer 2
  • Working with Cisco Group Management Protocol
  • Using IGMP Snooping

PIM Sparse Mode

  • Introducing Protocol Independent Multicast Sparse Mode
  • Understanding PIM-SM Protocol Mechanics
  • Using PIM-SM in a Sample Situation
  • Configuring and Monitoring PIM-SM

Rendezvous Point Engineering

  • Identifying RP Distribution Solutions
  • Implementing Auto-RP
  • Using PIMv2 BSR
  • Using Anycast RP and MSDP

PIM Sparse Mode Protocol Extensions

  • Introducing Source Specific Multicast
  • Configuring and Monitoring SSM
  • Reviewing Bidirectional PIM
  • Configuring and Monitoring Bidirectional PIM

Multiprotocol Extensions for BGP

  • Introducing MP-BGP
  • Configuring and Monitoring MP-BGP

Interdomain IP Multicast

  • Examining Dynamic Interdomain IP Multicast
  • Explaining Multicast Source Discovery Protocol
  • Using MSDP SA Caching
  • Configuring and Monitoring MSDP

IP Multicast Security

  • Introducing IP Multicast and Security
  • Securing a Multicast Network

Multicast Optimization and High-Availability Features

  • Using Multicast Optimization and High-Availability Features

Applications of Multicast

  • Exploring IP Multicast and Video Applications
  • Using IP Multicast in Mission-Critical Environments
  • Exploring How Enterprise IT Uses IP Multicasting Globally
LABS


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  • Layer 2 and Layer 3 Multicast
  • PIM-SM Protocol Basics
  • PIM-SM Protocol Mechanics and Timers
  • PIM Sparse-Dense Mode and Manual RP Configuration
  • Configuring Dynamic RP Information Distribution
  • Bidirectional PIM
  • Source-Specific Multicast
  • Anycast RP, External MP-BGP, and MSDP Peering
WHO SHOULD ATTEND

This course is intended for pre and post-sales technical engineers responsible for designing, implementing, and/or troubleshooting basic IP multicast enabled networks within a single domain.

PREREQUISITES

Attendees should meet the following prerequisites:

  • ICND1 - Interconnecting Cisco Network Devices Part 1
  • ICND2 - Interconnecting Cisco Network Devices Part 2

Or

  • CCNABC - Cisco CCNA Certification Fast Track Programme

Plus

  • ROUTE - Implementing Cisco IP Routing

Recommended prerequisites: