
Configure manual link aggregation on Huawei switches by bundling two interfaces into a single Ethernet trunk, hard-code speed and duplex to 100 Mbps full duplex, and verify with trunk status.
Configure static link aggregation on Huawei switches, create an ethernet transport, assign ports to a trunk, and verify the active links and port priorities.
Configure trunk and access ports on Huawei switches, create ethernet trunks, assign VLANs for end devices, and verify inter-switch connectivity with demonstrations of access, trunk, and hybrid port behavior.
Configure trunk and access port types on Huawei switches, justify VLAN assignments with IP addressing, and validate inter-VLAN communication and reachability through lab-based exercises.
Configure hybrid ports on Huawei switches to carry tagged and untagged traffic, enabling VLAN 2 and VLAN 4 connectivity and inter-VLAN communication.
Explore how to create VLANs on one Huawei switch and propagate them across multiple switches using GVRP, and compare propagation models while configuring interface membership in this lab.
Configure gvrp on Huawei switches to propagate VLAN 100 and 200 across multiple switches through trunks, enabling global IP and per-interface gvrp settings, and compare normal and fixed registration behaviors.
Explore inter-VLAN routing on Huawei with a router-on-a-stick to enable VLAN communication. The lab shows configuring a router, a switch, and two PCs to route traffic between VLANs via gateway.
Master inter-vlan routing with a router on a stick by configuring a trunk, creating subinterfaces as gateways for VLAN two and VLAN three, and enabling communication between VLANs.
Learn how to enable inter-VLAN communication with Layer 3 switches, configuring switch-based routing, allowing PCs in different VLANs to communicate without a separate router, using the latest Huawei release.
Configure inter-vlan routing with layer 3 switches to enable communication between vlans using trunk links, vlan interfaces as gateways, and ip addressing, all without external routers.
Configure inter-VLAN routing with layer 3 switches by enabling IP connectivity between VLAN interfaces, deploying a dynamic routing protocol, and validating end-to-end connectivity with ping tests.
Explore wan technologies for connecting headquarters to branch offices, compare sdlc encapsulations for leased lines, and learn to configure aclc and pbt on Huawei routers.
Configure hdlc encapsulation on two Huawei routers in a point-to-point serial link within a lab scenario, switch from default to sdlc, assign ip addresses, and verify the link is up.
Configure ppp encapsulation on serial interfaces and enable pap authentication between two routers. Create local usernames and passwords with aaa, then verify the link with debugging and ping tests.
Configure PPP encapsulation with CHAP authentication on two interfaces, set IP addresses, enable LCP and NCP, create local users for CHAP, and verify the three-way handshake via debug output.
Frame Relay encapsulation and virtual circuits, contrasting multipoint and point-to-point configurations, enabling connectivity between headquarters and offices through the family cloud and shared subnets.
Configure point-to-point frame relay on Huawei routers by creating subinterfaces, applying frame-relay encapsulation, and mapping traffic with lci for virtual links, using lmi and rip v2 for loopback routing.
Explore configuring point-to-multipoint frame relay on Huawei routers, including enabling broadcast, mapping the DLC to IPs, disabling inverse, and validating with RIP version 2.
Configure pppoe on Huawei routers by setting one router as the pppoe server and another as the pppoe client, so the client authenticates with a username and password for IP.
Configure pppoe on Huawei routers by creating an IP pool, a virtual template interface, binding it to the gigabit interface, and setting up username and password authentication for pppoe clients.
Explore traffic filtering with access control lists and learn how to classify and filter IP addresses, including basic and advanced ACL types, and their practical uses.
Configure basic and advanced access control lists on Huawei routers to filter traffic by source, destination, protocol, and ports, and apply them inbound on interfaces in lab scenarios.
Configure advanced ACLs on Huawei routers to permit ICMP traffic between routers using source, destination, and protocol criteria, then apply the ACL on the inbound interface.
Explore how easy IP NAT works on Huawei routers, and compare static and dynamic NAT, then follow a hands-on lab to configure, test FTP access, and verify routing.
This lecture explains GRE tunneling on Huawei routers, showing how to encapsulate IP packets between headquarters and a branch over the ISP using a tunnel interface.
This course is the 2nd part of the Huawei HCIA-HNTD (H12-211 exam) certification. In this course, I will be focusing on practicing with LABS in order to understand complex topics of HCIA-HNTD intermediate level.
All LABS are made on the Huawei eNSP simulator which is a free of charge software that you can install on your PC. As I am going to use eNSP, then you don't require to have any physical hardwares from Huawei.
Huawei certifications are becoming very known in the IT sector market. Holding the HCIA certification from Huawei will open for you many doors for jobs and will recognize you as Huawei Network Engineer.
In this course, you will learn topics such as:
Link aggregation
Different L2 port types (access, trunk, hybrid)
Inter-vlan using Router and L3 switches
VLAN propagation using GVRP
WAN technologies such as (HDLC, PPP, Frame Relay, PPPoE)
Traffic filtering using Access Control List
Network Address Translation
Tunneling using GRE Encapsulation
If you have any question about the course topics, you can always write on udemy and will answer your ASAP.
See you in the course.