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Imperial College of Engineering , Tathali, Bhaktapur

Bachelor of Electronics and Communication Engineering

Affiliated To: Tribhuvan University (TU)

course

B.E.

Course Level

Bachelor Degree

Duration

4 Years

Study Mode

Full Time

Total Seats

48

Medium

English

Recognition

Nepal Engineering Council

Overview

Bachelor of Electronics and Communication Engineering at Imperial College of Engineering: Course Details, Eligibility, Scope, and Career Path

Bachelor of Electronics and Communication Engineering at Imperial College of Engineering (ICE), Tathali, Bhaktapur, is a four-year undergraduate program under Tribhuvan University (TU) and the Institute of Engineering (IOE). The TU/IOE curriculum title used for this program is Bachelor of Electronics, Communication and Information Engineering, reflecting a combined focus on electronics, communication systems, and information and communication technologies.

The course builds from mathematics, physics, programming, and core electronics into communication systems, embedded systems, signal processing, RF and microwave engineering, wireless communication, project work, and internship. Admission is through the TU IOE BE–B.Arch entrance examination, followed by merit-based selection.

Quick Highlights

Item Details
Course Bachelor of Electronics and Communication Engineering (TU/IOE curriculum: Electronics, Communication and Information Engineering)
College Imperial College of Engineering (ICE)
Location Tathali, Bhaktapur, Nepal
Affiliation Tribhuvan University (TU), Institute of Engineering (IOE)
Duration 4 years (8 semesters / Year I–IV)
Study Mode Full-time
Seats 48
Entrance Exam BE–B.Arch Entrance Exam (TU IOE)
Key Components Minor Project, Project I, Project II, Internship, Electives (I–IV)
Contact info@jec.edu.np • +977-1-5091615 / +977-1-5091616 / +977-9764577250

Imperial College of Engineering Bhaktapur Building

Course Overview at Imperial College of Engineering

Electronics and communication engineering focuses on designing and integrating electronic devices, communication links, and information systems used in telecommunication and networked applications. The program covers electronics principles, information and communication technologies, the internet, telecommunication, and related topics, then develops the engineering skills needed to analyze and design complex electronics, communication, and information systems.

Curriculum Details

Core subject areas

  • Engineering mathematics, physics, chemistry, and communication English

  • Programming and object-oriented programming

  • Electronic devices, circuits, digital logic, and microprocessor fundamentals

  • Control systems, instrumentation, electromagnetics, signals and systems

  • Embedded systems, filter design, propagation and antennas

  • Communication systems, telecommunication and computer networks

  • Digital signal processing, RF and microwave engineering, wireless communication

  • Robotics, project management, engineering economics, electives

Year-wise structure (8 semesters)

Year I (Semesters I–II)

  • Semester I: Engineering Mathematics I, Engineering Physics, Computer Programming, Engineering Drawing, Fundamental of Electrical and Electronics Engineering, Engineering Workshop

  • Semester II: Engineering Mathematics II, Object Oriented Programming, Electronic Device and Circuits, Digital Logic, Electrical Circuits and Machines, Engineering Chemistry

Year II (Semesters III–IV)

  • Semester III: Engineering Mathematics III, Communication English, Computer Graphics and Visualization, Microprocessor, Advanced Electronics, Control System

  • Semester IV: Probability and Statistics, Discrete Structure and Algorithm, Instrumentation, Computer Organization & Architecture, Electromagnetics, Signals and Systems

Year III (Semesters V–VI)

  • Semester V: Numerical Methods, Artificial Intelligence, Filter Design, Embedded Systems, Propagation and Antenna, Elective I

  • Semester VI: ICT Project Management, Engineering Economics, Communication Systems, Telecommunication and Computer Networks, Minor Project, Elective II

Year IV (Semesters VII–VIII)

  • Semester VII: RF and Microwave Engineering, Robotics, Digital Signal Processing, Elective III, Project I, Wireless Communication

  • Semester VIII: Energy, Environment and Social Engineering, Internship, Elective IV, Project II

Practical, project, and internship components

  • Minor Project (Year III) builds hands-on development and technical documentation skills.

  • Project I and Project II (Year IV) form the final-year project pathway.

  • Internship (Year IV) connects classroom learning with professional practice.

Course Objectives

  • Develop engineers who can contribute to the design, development, and manufacturing or assembly of electronics and communication devices.

  • Build technical competence in electronics, communication, and information engineering topics needed for modern networked and device-based systems.

  • Strengthen applied problem-solving through progressive coursework, projects, and internship exposure.

Learning Outcomes

Graduates are prepared to:

  • Apply electronics and communication principles to real engineering problems

  • Work with signals, systems, electromagnetics, instrumentation, and control

  • Design and evaluate communication links, antenna/propagation elements, and wireless systems

  • Use embedded systems concepts and digital signal processing in system-level applications

  • Complete project work and technical reporting aligned with engineering practice

Skill Development Areas

Students develop practical and professional skills across:

  • Circuit analysis, digital logic, and microprocessor-based systems

  • Embedded systems and hardware–software integration

  • Communication systems and telecommunication networks

  • Antennas, propagation, RF and microwave topics

  • Signal processing and wireless communication applications

  • Project planning, teamwork, and reporting through project work and internship

Teaching Methodology and Learning Support

Academic delivery follows TU rules, guidelines, and the TU IOE annual calendar. Seminars, workshops, and training run throughout the semester, supported by field visits, project work, and field work.

Admission Requirements and Process

Entrance and selection

  • Admission is through the TU IOE BE–B.Arch Entrance Examination.

  • Candidates who pass the entrance are admitted on a merit basis.

Eligibility

Applicants can appear in the entrance examination if they meet one of the following:

  • Letter grading: minimum “C” grade in all subjects in Grade 11 and 12, or

  • Minimum 45% in I.Sc. or 10+2 (physical group or biological group with two paper mathematics), or

  • Diploma in engineering or an equivalent course recognized by TU

Exam and Result Process

Curriculum, examinations, and results follow TU rules, guidelines, and the TU IOE annual calendar.

Scholarships and Financial Aid

ICE provides need-based and merit-based scholarships. Scholarships are allocated to limited seats, and conditions apply. Scholarship percentages are published for the annual fee of BE courses in Computer and Electronics Engineering.

Scholarship range (annual fee: BE Computer and Electronics Engineering)

  • Aggregate score > 50 and < 55 — 50%

  • Aggregate score > 55 and < 60 — 55%

  • Aggregate score > 60 and < 65 — 65%

  • Aggregate score > 70 and < 75 — 70%

  • Aggregate score > 80 — 100%

Career Opportunities and Further Study Options

Electronics, communication, and information engineers contribute to designing, developing, and manufacturing or assembling electronics and communication devices. Career areas include:

  • Electronics device manufacturing industries

  • Telecommunication companies

  • Internet service providing companies

  • Hospitals and medicine (technology and systems roles)

  • Civil aviation (electronics and communication systems roles)

  • Industrial sectors and hydropower-related technical systems

Graduates also pursue higher education and opportunities in universities and research centers.

Why Students Choose Bachelor of Electronics and Communication Engineering at ICE

  • TU/IOE affiliation and structured academic calendar

  • 48-seat intake for Electronics and Communication Engineering

  • Clear applied-learning pathway through a minor project, final-year projects, and internship

  • Semester activities supported by seminars, workshops, training, and field-based learning

Conclusion

Bachelor of Electronics and Communication Engineering at Imperial College of Engineering offers a TU/IOE-aligned curriculum that moves from foundational science, programming, and core electronics into communication systems, embedded systems, networks, signal processing, RF and microwave engineering, wireless communication, and professional practice through project work and internship. The program suits students aiming for careers in electronics and communication technologies across telecom, device industries, and applied engineering systems.

Frequently Asked Questions

1) How long is the program?

The program runs for 4 years, organized as 8 semesters (Year I to Year IV).

2) How many seats are available in this program at ICE?

The program has 48 seats.

3) What entrance exam is required for admission?

Admission is through the TU IOE BE–B.Arch Entrance Examination.

4) What eligibility is accepted to sit for the entrance examination?

Minimum “C” grade in all Grade 11 and 12 subjects (letter grading) or 45% in I.Sc. / 10+2 (physical/biological group with two paper mathematics), or a diploma in engineering or equivalent recognized by TU.

5) Does the course include projects and internship?

Yes. The structure includes a Minor Project, Project I, Project II, and an Internship in the final year.

6) What are the main technical areas covered?

Core coverage includes electronics, digital logic, microprocessors, control and instrumentation, electromagnetics, signals and systems, embedded systems, communication systems, networks, digital signal processing, RF and microwave engineering, and wireless communication.

7) What career areas match this degree?

Common sectors include electronics device manufacturing, telecommunication, internet service providers, hospitals/medical technology systems, civil aviation systems, industries, and hydropower-related technical systems.

Contact Details of Imperial College of Engineering, Bhaktapur

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