
RIPng Reloaded Course
Published 9/2026
Created by Lazaro (Laz) Diaz
MP4 | Video: h264, 1920x1080 | Audio: AAC, 44.1 KHz, 2 Ch
Level: All Levels | Genre: eLearning | Language: English | Duration: 14 Lectures ( 1h 56m ) | Size: 1.2 GB
IPv6 Routing Information Protocol — Fundamentals to Verification, with Integrated Lab
What you'll learn
How RIPng compares to RIPv2 — what stayed the same (hop-count metric, split horizon, timers) and what changed (UDP port, multicast address, interface-based conf
How to configure RIPng from scratch on Cisco IOS devices: enabling IPv6 unicast routing, creating a RIPng process, and enabling it per interface.
Route control techniques including manual summarization, default route origination, passive interfaces, and metric-offset tuning.
ow to verify and troubleshoot RIPng using commands like show ipv6 route rip, show ipv6 rip, and debug ipv6 rip, plus how to secure RIPng using IPsec since it haRequirements
Completion of the RIPv2 module (this course builds directly on that foundation).
Basic understanding of IPv6 addressing fundamentals.
Access to lab tools — Packet Tracer, GNS3, devices with IPv6 unicast routing support.
Roughly 4–6 hours available for the seven modules, plus 2–3 hours for the integrated four-router lab.Description
This self-paced course teaches IPv6 routing using RIPng (RIP next generation), building on prior RIPv2 knowledge and basic IPv6 addressing. Across seven modules plus an integrated four-router lab, students learn what RIPng is and where it fits, including its RFC 2080 origins and how it compares to RIPv2 in terms of hop-count metric, split horizon, and timers, versus what changed, like UDP port, multicast addressing, and interface-based configuration.
Students then move into protocol mechanics (multicast updates, timers, and metric behavior), followed by hands-on base configuration: enabling IPv6 unicast routing, creating a RIPng process, and activating it per interface. From there, the course covers route control techniques such as manual summarization, default route origination, passive interfaces, and metric offsets, before teaching verification and troubleshooting using key show and debug commands.
A dedicated module addresses RIPng's lack of built-in authentication and what securing it actually requires, and the course closes by comparing RIPng against RIPv2, OSPFv3, and EIGRP for IPv6 for exam-readiness. The integrated lab ties every concept together on a single topology.
This is a self-paced module. Work through Modules 1-7 in order — each builds on the last. Every module ends with a Self-Check box; do not move on until you can answer those without looking back. The Integrated Lab at the end exercises every topic covered across all seven modules on a single four-router topology.
Who this course is for
CCNA 200-301 candidates studying the IP Connectivity — IPv6 Routing domain.
Networking students who've completed a RIPv2 module and want to extend that knowledge to IPv6.
Self-paced learners who prefer working through structured modules with self-check boxes before attempting a hands-on lab.
Anyone needing a low-complexity option for small networks, labs, or training environments where RIPng is a practical, appropriate protocol choice.
Code:
https://rapidgator.net/file/f2dcd2445fafc20b532f81e735668850/RIPng_Reloaded_Course.part1.rar.html
https://rapidgator.net/file/a106e6248edc7ac0ec3b0439cb8ff604/RIPng_Reloaded_Course.part2.rar.html