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Programme : Bachelor of Engineering Technology (Hons.) in Medical Electronics

Sarjana Muda Teknologi Kejuruteraan (Kepujian) Elektronik Perubatan

Programme Summary
Programme Code : JPT/BPP (R/520/6/0043) 06/18, MQA A 9006
Status Programme : Accredited
Institutes : Universiti Kuala Lumpur British Malaysian Institute (UniKL BMI)
Specialisation : Medical Engineering Technology
Study Level : Bachelor Degree
Intake : Jan/Sept
Duration : 4 Years
   

Medical electronics has become one branch of engineering that is in demand in Malaysia. With the growing numbers of new private and government hospitals, the amount of equipment involved is massive along with the need to operate and maintained it. These factors contribute towards the shortage of graduates and the growing need in Malaysia for medical electronics engineers. The programme provides students with the unique opportunity to achive understanding, knowledge and skills in both electronics techniques and human physiology and enable then to make an immediate contribution in electronics and clinical aspects of their work.

Programme Educational Objectives (PEOs)
 
  1. PEO 1
    UniKL graduates who are knowledgeable, competent, and innovative, which will contribute towards the requirement of human capital in Engineering Technology field.
  2. PEO 2
    UniKL graduates who are effective leaders with teamwork skills, as well as verbal and non-verbal interpersonal communication skills to support their role in industry
  3. PEO 3
    UniKL graduates who are committed towards the importance of lifelong learning and continuous improvement.
  4. PEO 4
    UniKL graduates who are professional, ethical, and socially responsible
  5. PEO 5
    UniKL graduates who are capable of embarking on business and technopreneurial activities.
 
 
Programme Learning Outcomes (PLOs)
 
Majors in engineering technology will be able to:
  1. PLO 1
    Apply knowledge of mathematics, science, engineering fundamentals and Medical Engineering Technology to define and applied engineering procedures, processes, systems or methodologies.
  2. PLO 2
    Identify, formulate, research literature and solve systematically broadly defined Medical Engineering problems reaching substantiated conclusions using analytical tools appropriate to electronic engineering discipline.
  3. PLO 3
    Design solutions for broadly defined Medical Engineering Technology problem and contribute to the design of systems, components or processes to meet specified needs with appropriate consideration for public health and safety, cultural, societal, and environmental and sustainability.
  4. PLO 4
    Plan and conduct experimental investigations of broadly defined Medical Engineering Technology problems using data from relevant sources.
  5. PLO 5
    Select and apply appropriate techniques, resources and modern engineering tools, with an understanding of the limitations.
  6. PLO 6
    Function effectively as an individual and as a member or leader in diverse technical teams.
  7. PLO 7
    Communicate effectively with the engineering community and with society at large.
  8. PLO 8
    Demonstrate awareness and consideration for societal, health, safety, legal and cultural issues and the consequent responsibilities and norms of engineering technology practice.
  9. PLO 9
    Demonstrate an understanding of professional ethics, responsibilities and norms of engineering technology practice.
  10. PLO 10
    Demonstrate the understanding of the impact of engineering practices, taking into account the need for sustainable development.
  11. PLO 11
    Demonstrate an understanding of management, business practices and entrepreneurship.
  12. PLO 12
    Recognize the need for professional development and engage in independent and lifelong learning.
 
Career Path
The advancement in healthcare technologies has increased the demand for engineers who are responsible for designing, development and maintenance of specialized biomedical instrumentation systems. Relatively, graduates with Bachelor of Engineering Technology (Hons.) in Medical Electronics shall be able to pursue careers as biomedical engineers, medical electronics engineers, or medical equipment specialists. The graduates shall also be employed as electrical or electronics engineers because they have the foundations in electrical and electronics engineering as well.

Strengths 

  1. Acquired fundamental knowledge of human system and various medical electronics field such as in human physiology, medical physics, medical lasers, medical imaging, medical instrumentation, electronics in therapeutics and rehabilitation and electromechanical medical devices and telemedicine technology.
  2. Acquired understanding and skills in Plan Preventive Maintenance (PPM) including Equipment Safety Test (EST) on certain medical electronics equipment.
  3. Our Teaching Factory bridges pertinent maintenance training with academic learning to expose students to real industrial exposure.
  4. Acquired basic skills in constructing, testing and troubleshooting electronics circuits as part of the process in designing medical electronics equipment/device during labs and FYP.
  5. Our courses always update the students with the latest medical engineering technologies, especially in the areas of Diagnostic and Therapeutic, Bioinstrumentation and Medical Imaging. 
  6. We offer an extensive coverage of some of the most popular engineering programmes, including Bioinstrumentation, Nano-engineering, Medical Imaging and Rehabilitation Engineering until PhD level.
  7. We offer limited session of optional Professional Certification in Electrical Safety Test to senior year students to create added values to their resumes.  

 

Upon completion, BET Medical Electronics Degree holders may register as an Engineering Technologist and join the industrial workforce in many sectors such as: 

  1. Biomedical Engineers 

  1. Medical Electronics Engineers 

  1. Biomedical / Medical Electronics Technologist 

  1. Medical Equipment Specialist 

  1. Medical Electronics Sales Engineers/Representatives 

  1. Customer Support Engineers 

  1. Biomedical / Medical Electronics Technicians 

  1. Electrical / Electronics Engineers 

  1. Academicians 

  1. Entrepreneurs 

 

 

 
Semester 1
  • Fundamental English
  • Professional English 1
  • Engineering Mathematics 1
  • Tamadun Islam & Tamadun Asia (TITAS)
  • Bahasa Melayu Komunikasi 2
  • Technopreneurship
  • Programming for Engineers
  • Introduction to Digital Electronics
 
Semester 2
  • Engineering Mathematics 2
  • Electrical and Electronics Workshop
  • Introduction to Electric Circuit
  • Introduction to Electronics 
  • Digital Electronics
  • Hubungan Etnik
  • Pengajian Malaysia 3
 
 
Semester 3
  • Engineering Mathematics 3
  • Engineering Mechanics
  • Electrical Circuit Theorem
  • Human Physiology
  • Essential Management Principles
  • Mandarin 1
 
 
Semester 4
  • Engineering Mathematics 4
  • Professional English 2
  • Network Analysis 
  • Electronics Devices and Circuits
  • Introduction to Microprocessor
  • Physiological Measurement
  • Mandarin 2
 
 
Semester 5
  • Signals and Systems
  • Microcontroller and Interfacing
  • Electronics Amplifier Circuits
  • Medical Physics
  • Medical Instrumentation
  • Isu-isu Kotemporari Muslim di Malaysia
  • Culture & Lifestyle in Malaysia 
 
 
Semester 6
  • Final Year Project 1
  • Industrial Safety and Health
  • Medical Lasers
  • Electronics in Therapy and Rehabilitation
  • Innovation Management
  • Elective 1
 
 
Semester 7
  • Final Year Project 2
  • Biomedical Imaging
  • Hospital Management and Regulatory
  • Elective 2
  • Co Curriculum 2
 
 
Semester 8
• Industrial Training
 
ELECTIVE SUBJECT
  • Rehabilitation Engineering
  • Telemedicine Technology
  • Electromechanical Medical Devices 
 
 

Contact Us

For further information please contact

 

Medical Engineering Section

Universiti Kuala Lumpur

British Malaysian Institute
Bt. 8, Jalan Sungai Pusu
53100 Gombak

Selangor Darul Ehsan


Attn:Dr Noor Hasmiza Harun

Tel : 03-6184 1000
Fax : 03-6186 4040

email:noorhasmiza@unikl.edu.my