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Course Fees and Duration

Course Duration:
(48 m) 4 years
Course Tuition Fees:
USD 9,349
Course Miscellanous Fees:

Placing

Area:
Not provided
Location of Study:
Selangor
Full Time/Part Time:
Full Time
Awarding University:
Universiti Selangor

Bachelor of Engineering (Hons) Electronics

  Institution: Private: Universiti Selangor

Field Of Study:
Engineering
Level Of Study:
Undergraduate
Course Subject:
Engineering - Electrical/Electronics
Course Intake:
August, January, June

Programme Name

Bachelor of Engineering (Hons) Electronics [KPT/JPS/R/523/6/0095/09/17]

Professional Recognition

• Engineering Accreditation Council (EAC)
• Malaysian Qualification Agency (MQA)

Intake

• January/June/August

Duration

• 4 Years

Fees

• RM41,570.00

Entry Requirement

1. Foundation in Science from UNISEL/ Matriculation Certificate in Physical Science from Ministry of Education/Private Institution with at least CGPA 2.00; or
2. Diploma in Engineering/ Science/ Technology or equivalent from UNISEL or Public/Private Institution with at least CGPA 2.00; or
3. STPM or equivalent with at least 3 principals inclusive of Mathematics and Science.
4. Other qualification that organized by Malaysian Government

and

5. Prefered candidates with Malaysia University English Test(MUET) certificate, if not students are compulsory to sit for MUET test while studying at UNISEL;

or

6. STAM- candidates passed with grade JAYYID and passed in BahasaMelayu/Bahassa Malaysia (SPM level)

or

7. Australian Senior Secondary Qualification

Passed in south Australian Certificate Education (SACE) with minimum 50 marks in 5 subjects.
West Australian certificate of Education(WACE) with minimum gred C;
New South Wales Higher School Certificate(NSWHSC) with minimum 60 marks (BAND 3); or
Other qualifications recognized by Australian States itself.
8. Canadian International Programme (CIMP)/International Canadian Pre University Programme (ICPU)

Ontario Secondary School Diploma(OSSD) with minimum 60% marks in 6 subjects; or
Others qualification Gred 12 that recognised by countries/states itself.

INTRODUCTION

Bachelor of Engineering (Hons.) Electronics programme provides a broad foundation of scientific principles, hands-on workshop and laboratory work, practical design experience, theoretical and application knowledge with regards to industrial needs.

Electronics Engineering is a broad discipline which involves the use of mathematics, physics, and other sciences in the design of electronic devices and systems. Malaysia is a well-known country of having a lot of electronics factories. Electronic engineers are involved in the electronic design system, manufacturing of electronic devices and many other forms of technology that have an impact on the quality of our lives. Electronics engineers are involved in the design and fabrication of electronics integrated circuits (ICs), microelectronics, communication systems, mobile and satellite systems, computer programmes, and many other forms of technology that have an impact on the quality of our lives.

THE PROGRAMME

A four-year degree programme that aims to provide advance education in engineering that is relevant to electronic, communication, computer and instrumentation. Apart from the basic knowledge and skills in electronic engineering, students will undertake the core syllabus that requires specialization during the final year.

Graduates of the Electronics Engineering program are expected to be competent and productive in the practice of modern Electronics Engineering, engage in careers that provide opportunities for growth and leadership, keep informed of new technological developments and contribute to the expansion of engineering knowledge.

Student will be able to take advantage of the extensive laboratories that are equipped with specialized features such as the Digital / Analogue / Basic Electronics, Communications, Microprocessors, Control Systems and Electrical Technology as well as the electronics workshop that allows students for hands-on experience on electronic devices.

Programme Learning Outcomes

PLO

PLO Statements
After completing the programme, students should be able to:

PLO 1

Apply knowledge of mathematics, science and engineering fundamentals to the solution of complex engineering problems.

PLO 2

Identify, formulate, research literature and analyse complex engineering problems.

PLO 3

Design solutions for complex engineering problems that meet specified needs with appropriate consideration for public health and safety, societal, and environmental considerations.

PLO 4

Conduct investigation into complex problems using research based knowledge and research methods including design of experiments, analysis and interpretation of data, and synthesis of information to provide valid conclusions.

PLO 5

Apply reasonable and practical knowledge to assess societal, health, safety, legal and cultural issues and the consequent responsibilities relevant to professional engineering practice.

PLO 6

Explain the impact of professional engineering solutions in societal and environmental contexts and demonstrate knowledge of and need for sustainable development.

PLO 7

Demonstrate knowledge of engineering, management and financial principles in multidisciplinary environments.

PLO 8

Function effectively as an individual, and as a member or leader in diverse teams and in multi-disciplinary settings.

PLO 9

Communicate effectively on complex engineering activities with the engineering community and with society at large.

PLO10

Create, select and apply appropriate techniques, resources, and modern engineering and IT tools, including prediction and modelling, to complex engineering activities, with an understanding of the limitations.

PLO11

Apply ethical principles and commit to professional ethics and responsibilities and norms of engineering practice.

PLO12

Recognise the need for, and have the preparation and ability to engage in independent and life-long learning in the broadest context of technological change.

 

Program Structure

Year

Semester

Code

Courses

1

ZES 1133

Technical English 1

HKU 1111

Co-Curriculum

KFS 1141

Engineering Drawing

KFS 1113

Engineering Maths 1

MPW 2143/2153

Pengajian Islam / Pendidikan Moral

KES 1123

Digital Electronics

ZES 1243

Technical English 2

KFS 1213

Engineering Maths 2

KES 1223

Solid State Electronic Devices

KES 1233

Circuit Theory 1

H** 1211

Co-Curriculum 2

KES 1112

Workshop Practice

MPW 2113/2123

B. Kebangsaan A/B

MPW 2133

Pengajian Malaysia

2

KES 2114

Electronics 1

KFS 2113

Engineering Maths 3

KES 2143

Measurement and Instrumentation

KES 2153

Circuit Theory 2

KFS 2143

Computer Programming

KFS 2213

Engineering Maths 4

KPS 2213

Electrical Technology

KES 2213

Electronics 2

KPS 2223

Introduction to Power System

KES 2263

Microprocessor

3

KES 3143

Computer System Engineering

KES 3153

Electromagnetic Theory

KES 3173

Digital Systems

KES 3164

Signals and Systems

KFS 3122

Entrepreneurship

KES 3214

Communication Systems

KRS 3123

Control System 1

KES 3223

Digital Signal Processing

KFS 3223

Engineering Management and Economics

KES 3233

Electronic Engineering Project

KFS 3236

Industrial Training

4

KES ****

Elective I *

KES ****

Elective II *

KES 4113

Microwave Engineering

KFS 4132

Final Year Project 1

KFS 4122

Engineer and Society

KJS 3153

Occupational Safety and Health

)

KES ****

Elective II *

KES ****

Elective III *

KFS 4234

Final Year Project 2

KPS 3123

Power Electronics

KES 4213

Data Communication and Network

Elective Courses*

4

KES 4163

Antenna Theory

KES 4193

Image Processing

KRS 4123

Microcontroller

KES 4183

VLSI Design

KES 4263

Optical Communication

KES 4283

Mobile and Satellite Communications

KES 4293

IC Fabrication

KES 4203

Testing and Reliability

Core Course Description

Course code

Course

Synopsis

KES 1223 Solid State Electronic Devices This course addresses the basic solid state physics and electronic structure of materials. An introduction to the theory of quantized energy levels and energy bands in solid. The basic concepts of concentration and carrier transport in solid will be covered. PN junction theory is developed and applied to the analysis of operation of solid state devices such as bipolar and field effect transistor.
KES 1123 Digital Electronics This course aims to provide the students with a thorough understanding of the principles and practical aspects of modern digital circuits and systems. It will cover the following topics: number systems and codes, logic gates and Boolean algebra, K-Maps method, combinational logic circuits, MSI logic circuits and sequential circuit (flip flops).
KES 2114 Electronics 1 This subject includes fundamentals of semiconductor material and PN junction, diodes and its applications, Bipolar Junction Transistor (BJT), BJT biasing, the analysis of Field Effect Transistor (FET) and biasing.
KES 1233 Circuit Theory I This subject includes fundamentals of electric circuit, the resistive circuits, techniques of circuit analysis, introduction of inductors and capacitors, basic RL and RC of first order circuits and two port networks.
KES 2213 Electronics 2 The course will enhance the students’ knowledge and understanding of the physical principles underlying microelectronic device operation and the application of these principles to specific devices. It analyzes operational amplifier circuit, design multistage amplifiers using MOSFET and BJT. Also, analyze frequency response circuit using BJT.
KES 2153 Circuit Theory II This course is a continuation of Circuit Theory I and reinforces the students understanding of circuit analysis, through the study of the transient analysis for RL, RC and RLC circuits, AC circuit analysis technique, Laplace Transform and inverse Laplace Transform and two ports network in s-domain.
KES 2263 Microprocessor The course will equip the candidate with the knowledge and skills required to design and write assembly language to be applied to microprocessor based system. The course introduces the candidates to microprocessor 8085 design and architecture, assembly programming techniques and interfacing of microprocessor with other computer components.
KES 2143 Measurement and Instrumentation This course will introduce the students with the basic principle of measurement and demonstrate the operation and application of electronic instruments. It will covers   the following topics : measurement concepts, AC and DC meters, oscilloscope (CRO), bridges circuit and transducers application.
KES 3214 Communication Systems Students will learn about the theory and principles of analog and digital modulation system . Topics include the introduction of communication system such as basic modulation theory, types of modulator and demodulator, introduction to RF circuits. Students are exposed to the analog system like AM, FM and PM and Digital System like ASK, PSK , FSK. Method of converting analog to digital signal will also be highlighted like PCM, quantization and encoding. Finally, the discussion about transmission line will be included in the last topic.
KES 3143 Computer System Engineering Computer fundamentals, interconnection structures and common bus system, memory system of computer, principles of I/O ports , operating system, CPU structure, computer arithmetic, instructions set and operating system.
KPS 2223 Introduction to Power System To provide students with the basic concept of power system structure including Malaysia power industry. To give students an ability to understand the concept of power system load modeling and operation of electric power system. To clearly understand the fundamental of electric power system.
KES 3153 Electromagnetic Theory This course introduces students to some major views and theories in the area of electrostatic, magnetostatic and electromagnetic fields. This elementary electromagnetic field theory is summarized in Maxwell’s equations for static and time varying fields in integral and differential forms.
KES 3164 Signal and Systems This course will covered continuous and discrete signals and systems, convolution, Fourier series ,Fourier transform, Z transform, Laplace transform and steady state.
KES 3173 Digital Systems This course introduces basic techniques to construct and apply complex digital systems. It emphasizes on techniques to design, analyze, plan, and implement complex digital systems using programmable logic, with specific focus on programmable logic devices. In order to smooth the learning process, VHDL software is used throughout the course. Some practical problems and solutions are included in this course.
KES 3223 Digital Signal Processing Introduction to digital signal processing, basic idea and benefits, examples and applications. Discrete-time signals and systems ; signal definition : periodic and periodic, stability, causality, convolution. Spectrum of representation of discrete-time signals; sampling theorem, the discrete-time Fourier transform (DTFT) and its properties. Difference equations and discrete-time systems; difference equations : infinite impulse response (IIR) and finite impulse response (FIR) and signal flow graphs. z-transform : derivations, region of convergence, transformation properties, stability-poles and zeros, inverse z-transform-long division and partial fraction expansion, conversion to analog to digital system : impulse invariant and bilinear transform. Analysis and design and of digital filters : Filter basics, analog filter prototypes, design of IIR filter – bilinear transformation method, design of FIR filter – window method, window functions. Discrete Fourier transform: Discrete Fourier Series (DFS), Discrete Fourier transform (DFT), spectrum analysis of signals, Fast Fourier transform (FFT), frequency domain implementations of linear systems. Application of digital signal processing: speech processing, image processing, signal analysis, and telecommunications.
KES 4213 Data Communication and Network The course will enhance the students ‘knowledge on data communication and computer networks. It explains the basic process of data communication, protocol, interfacing and inter-working between computer networks and switching components in telecommunication systems. The student will be taught various possible techniques to build computer networks.
KES 1112 Workshop Practice The course will enhance the students ‘knowledge on regulation and practice of electrical wiring and electronic on PCB. The student will be taught various possible techniques to build computer networks. Introduction to Safety, Cable and cabling, understand the latest IEEE wiring regulation and acts of Energy and Gas Commission assessment; understand the roles and duties of building services supervisor enable students to design simple power distribution system. The students will also learn soldering, mini project design on protoboard and design simple electronic circuit on PCB.
KES 4113 Microwave Engineering To provide students with the knowledge and comprehension of the theoretical foundation of microwave engineering, components and applications that will assist them to design, analyze and perform measurements relating microwave distributed circuit elements.
KES 4183 VLSI Design(Elective) This course concentrates on system design process, basic circuit concept, scaling of IC and digital subsystem design.   Practical considerations and issues on testability are discussed. Students are also exposed to the use of CAD tools for designing VLSI circuits and systems
KES 4293 IC Fabrication(Elective) This course concentrates on microelectronic and optoelectronic processing technology, lithography, etching, oxidation, diffusion, implantation, annealing, film deposition, epitaxial growth, metallization, process integration, simulation. The goal is to introduce basic principles for fabricating micro-electronic and opto-electronic components.
KES 4263 Optical Communication (Elective) The course covers the basic elements of optical fiber, propagation of light in optical fiber, several types of optical fiberand their characteristics. This course also covers the light sources and detectors. The exposure to incorporation of fiber optics communication system into local area networks also included in this course.
KES 4193 Image Processing (Elective) This course introduces students to basic and fundamentals techniques in digital image processing field. In particular, the course will focus on 4 main areas in image processing and these are enhancement, restoration, segmentation, and compression/coding techniques. To demonstrate the understanding of these concepts, this course will engage students in small projects whereby they need to write simple programs using MATLAB or C/C++ programming language involving practical applications along with their analytical discussions and comments.

Career Opportunities

Graduate are able to pursue a wide range of careers such as electronics engineer, computer engineer, communication engineer, operation engineer, project engineer or research/test engineer. Graduate can also be actively involved in consultation works. Exciting and challenging career opportunities await them in companies such as:

  • Microcontroller / microprocessor base
  • Semiconductor / fabrication / Design / Manufacturing of integrated circuits
  • Government Agencies
  • Consultation Firms
  • Computer / Communications
  • Researchers – Research Officer / Research Assistance
  • Education – Tutor / Lecturer

Expected Salary

  1. Public sector – basic salary and allowances is based on government salary scheme for Bachelor Degree graduates, depends on fields – either education or technical; starting basic salary approximately RM2300.00 – RM2500.00 onwards.
  2. Private sector – basic salary and allowances (or lump-sum salary) may vary subject to company’s offer and negotiation – depends on qualification / experience or other requirements; starting approximately RM2500.00 onwards.

Source Universiti Selangor

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