Bachelor Programme

Faculty of Electronic Engineering & Technology

Bachelor of Electronic Engineering
with Honours

Programme Code: UR6523005  |  Duration: 4 Years  |  Mode: Full-time

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Programme Overview

The Bachelor of Electronic Engineering with Honours is FKTEN's flagship undergraduate programme, providing students with a comprehensive foundation in electronic engineering theory and practice. It is the broadest and most versatile electronic engineering degree at UniMAP, covering analogue electronics, digital systems, communications, control systems, and signal processing.

Accredited by the Engineering Accreditation Council (EAC) and fully aligned with the Washington Accord, the programme prepares graduates for professional engineering registration and careers across the full spectrum of the electronics industry. Strong research and industry linkages enrich the learning experience throughout all four years.

Programme Highlights

EAC-accredited flagship programme aligned with Washington Accord standards
Broad coverage — analogue, digital, RF, communications, control and power electronics
State-of-the-art electronics, RF, and embedded systems laboratories
10-week industrial training placement in Year 3
Final Year Project with real industry or research problems
Clear pathway to IEM Graduate Engineer and Professional Engineer (Ir.) registration

Programme Curriculum

UR6523005 · Intake 2026/2027

Structured over 8 semesters (4 years) plus an Industrial Training break, totalling 135 credit hours across Discipline Core & Elective Courses (107 credits), Common Core Courses (12 credits) and University Requirement Courses (16 credits).

Year 1

Semester 1

18 Credit Hours
CodeCourse Name
NMJ11303Circuit Theory
NMJ10603Electronic Engineering Skills
NMJ10403Physics for Electronic
NMJ11103Electronic Devices
IMQ10103Engineering Mathematics 1
SMU13402Malaysian Nation-State Aspirations[3]
ZMZXXX01Co-Curriculum 1

Semester 2

16 Credit Hours
CodeCourse Name
NMJ11203Electrical Power System
NMJ10303Digital Electronic 1
NMJ10903Computer Programming
NMJ10203Analog Electronic 1 *
IMQ10203Engineering Mathematics 2
ZMZXXX01Co-Curriculum 2

Year 2

Semester 3

17 Credit Hours
CodeCourse Name
NMJ20303Analog Electronic 2 *
NMJ20503Digital Electronic 2 *
NMJ20603Semiconductor Physics
NMJ20703Signal and Systems *
IMQ20303Engineering Mathematics 3
SMB20102English for General Communication[2]

Semester 4

17 Credit Hours
CodeCourse Name
NMJ21603Integrated Circuit Design
NMJ21203Microprocessor
NMJ21803Electromagnetic Theory *
NMJ32703Control Systems
IMQ27103Engineering Statistics
SMB31202English for Technical Communication

Year 3

Semester 5

17 Credit Hours
CodeCourse Name
NMJ32303Digital Integrated Circuit Design
NMJ31203Microcontroller
NMJ32903Communication Systems
NMJ30403Instrumentation
NMJ31603Management for Engineers
SMU12102Integrity and Anti-Corruption

Semester 6

17 Credit Hours
CodeCourse Name
NMJ32603Computer Architecture
NMJ32503VLSI Design
NMJ31403Digital Signal Processing
NMJ32004Integrated Design Project
NMJ30602Professional Engineers
SMU22602Entrepreneurship
Semester Break — 5 Credit Hours: NMJ30905 Industrial Training

Year 4

Semester 7

16 Credit Hours
CodeCourse Name
NMJ41802Final Year Project 1
NMJ42003MEMS Design and Fabrication
NMJ42103Analogue Integrated Circuit Design
NMJ30803Reliability and Testability in Integrated Circuit Design
NMJXXXXXElective Course 1
SMU33702Artificial Intelligence in Society

Semester 8

12 Credit Hours
CodeCourse Name
NMJ41904Final Year Project 2
NMJ42203System on Chip
NMJXXXXXElective Course 2
SMU13302Philosophy and Contemporary Challenges[4]
Elective Courses 1 & 2 (choose from)
  • NMJ31703 Advanced Devices
  • NMJ43103 FPGA System Design
  • NMJ42403 Optoelectronic System
  • NMJ40303 Reliability and Failure Analysis
  • NMJ40403 Nanoelectronic Engineering
  • NMJ43203 Semiconductor Assembly and Test
  • NMJ40203 Data Analytics
  • Open Elective
Courses with a Prerequisite (marked *)
CoursePrerequisite
NMJ10203 Analog Electronic 1NMJ11103 Electronic Devices
NMJ20303 Analog Electronic 2NMJ10203 Analog Electronic 1
NMJ20503 Digital Electronic 2NMJ10303 Digital Electronic 1
NMJ20703 Signal and SystemsIMQ10203 Engineering Mathematics 2
NMJ21803 Electromagnetic TheoryIMQ10103 Engineering Mathematics 1
Audit Courses
  • SMB10102 Preparatory English[1]
  • SMB41102 University Malay Language[5]
Notes
  • [1] Compulsory for students with MUET Band 2.5 and below (local students) or TOEFL 4.5/IELTS 4.0 and below (international students).
  • [2] Exemption for students with MUET Band 4.0 and above (local students) or TOEFL 8.0/IELTS 5.5 and above (international students). Students must register for another 2-credit Optional Course.
  • [3] International students must register for SMU13502 Malaysian Citra.
  • [4] International students must register for SMB11002 Basic Malay Language.
  • [5] Compulsory for local students with Grade A− and below in Bahasa Melayu (SPM).

Programme Outcomes

Aligned with Engineering Accreditation Council (EAC) and Washington Accord graduate attributes. Upon completion, graduates will be able to:

PO1 – Knowledge: Apply knowledge of mathematics, natural science, computing and engineering fundamentals, and an engineering specialization as specified in WK1 to WK4 respectively to develop solutions to complex engineering problems.
PO2 – Problem Analysis: Identify, formulate, research literature and analyse complex engineering problems reaching substantiated conclusions using first principles of mathematics, natural sciences and engineering sciences with holistic considerations for sustainable development.
PO3 – Design/Development of Solutions: Design creative solutions for complex engineering problems and design systems, components or processes to meet identified needs with appropriate consideration for public health and safety, whole-life cost, net zero carbon as well as resource, cultural, societal, and environmental considerations as required.
PO4 – Investigation: Conduct investigation of complex engineering problems using research methods including research-based knowledge, including design of experiments, analysis and interpretation of data, and synthesis of information to provide valid conclusions.
PO5 – Tool Usage: Create, select and apply, and recognize limitations of appropriate techniques, resources, and modern engineering and IT tools, including prediction and modelling, to complex engineering problems.
PO6 – The Engineer and the World: Analyse and evaluate sustainable development impacts to society, the economy, sustainability, health and safety, legal frameworks, and the environment, in solving complex engineering problems.
PO7 – Ethics: Apply ethical principles and commit to professional ethics and norms of engineering practice and adhere to relevant national and international laws. Demonstrate an understanding of the need for diversity and inclusion.
PO8 – Individual and Collaborative Teamwork: Function effectively as an individual, and as a member or leader in diverse and inclusive teams and in multidisciplinary, face-to-face, remote and distributed settings.
PO9 – Communication: Communicate effectively and inclusively on complex engineering activities with the engineering community and with society at large, such as being able to comprehend and write effective reports and design documentation, make effective presentations, taking into account cultural, language, and learning differences.
PO10 – Project Management: Apply knowledge and understanding of engineering management principles and economic decision-making and apply these to one's own work, as a member and leader in a team, and to manage projects in multidisciplinary environments.
PO11 – Lifelong Learning: Recognise the need for, and have the preparation and ability for i) independent and life-long learning ii) adaptability to new and emerging technologies and iii) critical thinking in the broadest context of technological change.

Career Prospects

Graduates of this flagship programme enter the electronics industry in a wide variety of roles, benefiting from the broad and rigorous training received. They are eligible to register as Graduate Engineers with the Board of Engineers Malaysia (BEM) and progress towards Professional Engineer (Ir.) status.

Potential Career Paths

Electronics Design Engineer RF / Microwave Engineer Embedded Systems Engineer Control Systems Engineer Communication Systems Engineer Signal Processing Engineer IC Design Engineer Systems Integration Engineer Test & Verification Engineer R&D Engineer Consultant Engineer Academic / Researcher

Industries & Employers

Graduates are employed across Malaysia's electronics ecosystem — semiconductor firms (Intel, Infineon, ON Semi, Osram), defence and aerospace companies, telecommunications providers, utilities, automotive electronics, consumer electronics manufacturers, and engineering consultancies. Many graduates progress to postgraduate studies locally and internationally.

Programme Details

AwardBachelor with Honours (B.Eng Hons)
Duration4 Years (8 Semesters)
ModeFull-time
Credit Hours135 Credit Hours
MediumEnglish / Bahasa Malaysia
AccreditationEAC / MQA (Washington Accord)
BEM RegistrationEligible (Graduate Engineer)

Entry Requirements

STPM / A-Level: Min. Grade C in Mathematics and Physics

Diploma: CGPA ≥ 2.50 in Electronic/Electrical Engineering

Matriculation / Asasi / UPU Foundation: Minimum CGPA of 2.00 with a Grade C in Mathematics and one science subject (Physics, Chemistry, or Biology)

Enquiries

fkten@unimap.edu.my

04-988 5509 / 5515

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