+237 657 768 165 +237 679 742 744
2026 admissions are open - secure your place at MEHIT University today. Register Now
Programme Telecommunication
School of Engineering & Technology

Telecommunication

Connecting people, systems and institutions through reliable communication technology.

The Telecommunication programme at MEHIT University prepares students with practical knowledge in communication systems, network infrastructure, signal transmission, wireless technologies, telecom equipment, technical testing and service support for careers in telecommunications companies, network service providers, IT departments, infrastructure projects and digital communication environments.

About the Programme

Preparing future telecommunication technology professionals.

Reliable communication depends on strong networks, precise signals and disciplined technical support.

The Telecommunication programme develops students’ understanding of communication systems, network infrastructure, signal transmission, wireless technologies, telecom equipment and service support practices used in modern digital communication environments.

Students build practical knowledge in network equipment, transmission systems, technical testing, telecom infrastructure, troubleshooting and documentation so they can contribute to telecom companies, network service providers, IT departments and infrastructure projects.

Communication Systems

Learn how voice, data and digital signals move through modern communication systems.

Network Infrastructure

Build awareness of network equipment, structured connectivity and the systems that support communication services.

Signal Transmission

Understand transmission principles, signal quality, testing awareness and the movement of information across networks.

Telecom Infrastructure

Study the technical infrastructure used by service providers, institutions and digital communication systems.

Wireless Systems

Develop awareness of wireless communication, mobile networks and radio-based digital connectivity.

Technical Support

Practice troubleshooting, documentation and professional support routines for telecom systems and users.

Professional Journey

From engineering foundations to
telecommunications systems practice.

The programme guides students from core engineering knowledge into communication systems, signal transmission, network infrastructure, wireless technologies and professional telecom readiness.

Students studying telecommunication engineering foundations in a professional classroom
Stage 01 Foundation
Students working with communication systems and telecom equipment in a laboratory
Stage 02 Systems
Students practicing network infrastructure, signal testing and wireless systems support
Stage 03 Infrastructure
Students presenting telecommunication portfolio work in a technical learning environment
Stage 04 Readiness
Current Stage 01
Progress 01 / 04
Stage 01

Build Your Engineering Foundation

Begin with mathematics, physics, electronics and technical principles needed to understand communication systems and network infrastructure.

Foundation
Stage 02

Develop Communication Systems Skills

Learn voice, data and signal transmission concepts, telecom equipment awareness and the principles behind reliable digital communication.

Systems
Stage 03

Advance into Network Infrastructure and Wireless Systems

Build practical awareness of network equipment, infrastructure support, signal testing, wireless systems and technical service routines.

Infrastructure
Stage 04

Telecommunication Portfolio & Professional Readiness

Complete applied telecommunication projects that demonstrate readiness to support network services, communication systems and telecom infrastructure environments.

Readiness
Professional Formation

From engineering foundations to telecommunications practice, students build the confidence to support connected systems with precision, structure and technical responsibility.

What You'll Learn

Learn the systems behind communication networks, signals and telecom infrastructure.

Explore the communication, network infrastructure, wireless and technical support skills that prepare students to work with modern telecommunications systems and digital connectivity environments.

Students working with communication systems and telecom equipment in a technical laboratory
Students reviewing network infrastructure, telecom cabinets and connectivity equipment
Students studying signal transmission, testing equipment and communication diagrams
Students examining telecom infrastructure plans and service provider systems
Students learning wireless systems, mobile network concepts and radio-based connectivity
Students practicing telecommunication troubleshooting and technical support routines
01 Communication Systems

Learn how voice, data and digital signals move through modern communication systems.

Build awareness of network equipment, structured connectivity and the systems that support communication services.

Understand transmission principles, signal quality, testing awareness and the movement of information across networks.

Study the technical infrastructure used by service providers, institutions and digital communication systems.

Develop awareness of wireless communication, mobile networks and radio-based digital connectivity.

Practice troubleshooting, documentation and professional support routines for telecom systems and users.

Learning Experience

Learning shaped by telecom labs, signal testing and network infrastructure practice.

Students learn through telecommunications laboratory sessions, network equipment practice, signal testing exercises, wireless systems exposure, infrastructure support tasks and portfolio-based projects that prepare them to support modern communication systems.

Students working in a telecommunications lab with network equipment, signal testing tools and communication infrastructure systems

Practical learning for connected systems and communication infrastructure.

The learning experience connects engineering knowledge with telecom practice: working with network equipment, testing signals, studying wireless systems, reviewing infrastructure layouts and building a professional portfolio around applied communication technology tasks.

Telecom Lab Practice

Students work with communication systems, telecom equipment and supervised technical procedures.

Network Equipment Training

Learners build awareness of network devices, structured connectivity and infrastructure support.

Signal Testing Exercises

Students practice signal observation, quality awareness, measurement support and technical documentation.

Wireless Systems Exposure

Practical sessions introduce wireless communication, mobile networks and radio-based connectivity.

Infrastructure Practice

Students study telecom infrastructure layouts, service support routines and network environment coordination.

Portfolio-Based Telecom Projects

Applied projects help students demonstrate communication systems, signal testing and infrastructure readiness.

Career Opportunities

Career pathways in telecommunications, network services and communication infrastructure.

Graduates are prepared to support telecommunications companies, network service providers, IT departments, infrastructure projects and digital communication environments through telecom systems practice, signal testing, network equipment support and technical service.

Professional telecommunications laboratory with students reviewing network equipment, signal testing tools and communication infrastructure

Telecommunication Technician

Network Infrastructure Assistant

Signal Testing Assistant

Wireless Systems Assistant

Telecom Support Assistant

Network Service Assistant

Communication Systems Assistant

Technical Service Assistant

Programme Information

Essential details for future telecommunication students.

Qualification

HND / Degree Pathway

Confirm with Admissions

Duration

2 Years

Four Semesters + Practical Telecommunications Training

Entry Requirements

GCE Advanced Level

Mathematics, physics, computer science, electronics or relevant subjects preferred

Study Mode

Morning

Full-time On-Campus Programme

Campus

Yaoundé

MEHIT University Main Campus

Tuition

Contact Admissions

Current tuition available from Admissions Office.

Practical Learning

Applied Telecommunications Training

  • Telecom Lab Practice
  • Network Equipment Training
  • Signal Testing
  • Telecommunication Portfolio
Career Outcome

Professional Telecommunication Pathway

Prepared for telecommunications support, network infrastructure assistance, signal testing, wireless systems, network service and technical support roles.

FAQ

Questions about Telecommunication.

The Telecommunication programme is completed over two academic years including practical telecommunications lab training and portfolio-based technical work.

Students study communication systems, network infrastructure, signal transmission, telecom infrastructure, wireless systems and technical support.

Yes. Students develop practical skills through telecom lab practice, network equipment training, signal testing exercises, wireless systems exposure, infrastructure practice and portfolio-based telecom projects.

Yes. Graduates may progress to further studies in telecommunication engineering, computer networking, electronics, information technology or related fields subject to the University’s admission requirements.

Graduates may work as Telecommunication Technicians, Network Infrastructure Assistants, Signal Testing Assistants, Wireless Systems Assistants, Telecom Support Assistants, Network Service Assistants, Communication Systems Assistants and Technical Service Assistants.

Applications are submitted through the MEHIT University Admissions Office. Contact Admissions for entry requirements, tuition fees and application deadlines.

Apply to MEHIT University

Begin Your Career in Telecommunication.

Join an engineering programme designed to develop practical, disciplined and technically confident professionals ready to support communication systems, network infrastructure, signal testing, wireless technologies and reliable digital connectivity.