HCIP-Transmission Course Overview

HCIP-Transmission Course Overview

The HCIP-Transmission course is a comprehensive training program designed to equip learners with in-depth knowledge and hands-on experience in the field of transmission networks, particularly focusing on Next-Generation Wavelength Division Multiplexing (NG WDM). Through the course's 26 modules, participants will delve into product overviews, hardware architectures, networking applications, service configurations, system commissioning, protection, testing, routine maintenance, troubleshooting, and new transmission technologies.

Learners will benefit from gaining a solid understanding of NG WDM systems, mastering the Optical and Electrical Layer Grooming techniques, and learning to effectively configure and maintain WDM services. The course also covers advanced topics such as ASON Intelligent Optical Network, MSTP Technology, and cutting-edge advancements like Super 100G Technology. Upon completing the HCIP-Transmission course, participants will be well-prepared to design, implement, and manage modern transmission networks, enhancing their employment prospects and technical expertise in this evolving industry.

This is a Rare Course and it can be take up to 3 weeks to arrange the training.

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  • Live Online Training (Duration : 80 Hours)
  • Per Participant
  • Guaranteed-to-Run (GTR)
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♱ Excluding VAT/GST

Classroom Training price is on request

  • Live Online Training (Duration : 80 Hours)
  • Per Participant

♱ Excluding VAT/GST

Classroom Training price is on request

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Course Prerequisites

To successfully undertake the HCIP-Transmission course, potential learners should ideally meet the following minimum prerequisites:


  • Basic understanding of optical networks and transmission principles.
  • Familiarity with SDH (Synchronous Digital Hierarchy), WDM (Wavelength Division Multiplexing), and OTN (Optical Transport Network) technologies.
  • Knowledge of network design and planning concepts.
  • Experience with general networking protocols and configuration, including IP/MPLS.
  • Ability to comprehend network diagrams and equipment architecture.
  • Some hands-on experience with network devices, such as switches and routers, would be beneficial.
  • Elementary troubleshooting skills for network issues.
  • Enthusiasm to learn new technologies and adapt to complex networking scenarios.

These prerequisites are meant to ensure that learners have a foundational knowledge base to build upon during the course. However, individuals with a strong desire to learn and a commitment to the coursework may overcome gaps in their initial knowledge through dedication and study.


Target Audience for HCIP-Transmission

The HCIP-Transmission course caters to professionals seeking advanced knowledge in next-generation WDM, network configuration, and maintenance.


  • Telecommunications Engineers
  • Network Designers and Planners
  • Optical Network Engineers
  • Transmission Network Technicians
  • IT Professionals working with fiber optic technologies
  • Network Operations Center (NOC) Engineers
  • Network Administrators overseeing WDM systems
  • Maintenance Personnel for Optical Transmission Equipment
  • Technical Support Engineers for Transmission Systems
  • Network Infrastructure Architects
  • IT Project Managers involved in network upgrades and deployment
  • Professionals aiming for Huawei HCIP Transmission certification
  • Technical Sales and Pre-sales Consultants specializing in transmission products
  • Network Quality Assurance and Performance Testing Engineers
  • Network Security Specialists dealing with transmission layers


Learning Objectives - What you will Learn in this HCIP-Transmission?

  1. Introduction: The HCIP-Transmission course equips students with in-depth knowledge of NG WDM systems, their networking, service configurations, troubleshooting, and emerging transmission technologies.

  2. Learning Objectives and Outcomes:

  • Gain a comprehensive understanding of NG WDM systems, including product functions, features, and hardware architecture.
  • Understand network layers, system architecture, site types, and application scenarios for NG WDM equipment.
  • Learn optical and electrical layer grooming techniques within NG WDM systems, including OADM and ROADM site models.
  • Acquire skills in configuring common data, optical layer services, and electrical layer services on NG WDM equipment.
  • Master the preparation and execution of NG WDM system commissioning, including optical power commissioning for various transmission systems.
  • Develop a solid grasp of NG WDM protection mechanisms at the equipment, optical, and electrical layers.
  • Be able to perform routine maintenance operations on NG WDM equipment and manage service indicators through NMS.
  • Diagnose and troubleshoot NG WDM systems, with a focus on alarm signal flow and fault classification.
  • Understand the principles and applications of the Optical Doctor (OD) and Fiber Doctor (FD) systems.
  • Explore new transmission technologies, including Super 100G and intelligent network operations and maintenance (O&M).
  • Learn about Multi-Service Transport Platform (MSTP) technologies, including clock protection, ECC maintenance, and PCM technology.
  • Gain practical experience in MSTP board replacement, discrete service analysis, and Ethernet service performance testing.
  • Understand the fundamentals of Automatically Switched Optical Network (ASON) and its applications in intelligent optical networking.