Chang Gung University

Taiwan
3 Scholarships 2 Programs 1 Degree levels
Bachelor

bs-bachelors-department-electronics-engineering

Offered at Chang Gung University, Taiwan
DegreeBachelor
FieldElectronics Engineering

The Bachelor of Science in Electronics Engineering at Chang Gung University is an undergraduate programme that teaches the fundamentals of electronic circuits, semiconductor devices, embedded systems and signal processing, with an emphasis on laboratory practice and industry-relevant design projects. It suits students who enjoy physics and mathematics, want hands-on experience with hardware and software integration, and aim for careers in semiconductor, consumer electronics, automation or medical-device engineering.

What you'll study

The programme combines core theory, practical laboratories and design projects across electronics, circuits and systems. Early-year modules build foundational knowledge in mathematics, physics and basic electrical engineering, while later years focus on specialised topics and project work.

  • Core engineering fundamentals: Calculus and linear algebra for engineers, engineering physics, introduction to electrical circuits and digital logic.
  • Electronics and devices: Semiconductor device physics, analogue electronics, digital electronics, microelectronics and VLSI fundamentals.
  • Systems and design: Embedded systems and microcontrollers, digital signal processing, control systems, communication systems and power electronics basics.
  • Laboratory and hands-on modules: Electronics laboratories, PCB design and fabrication, instrumentation and measurement, embedded systems lab and software-hardware integration exercises.
  • Special topics and electives: Courses in RF and microwave engineering, optoelectronics, Internet of Things (IoT), robotics, and biomedical electronics reflecting local research strengths and industry demand.
  • Capstone project and industrial practice: A year-long or semester capstone design project supervised by faculty, plus opportunities for internships or cooperative placements with local technology firms and medical-device partners.
  • Professional skills: Courses and modules that develop engineering ethics, technical communication, project management and teamwork.

Programme structure

The degree is typically structured over four academic years, with progressive laboratory work and increasing emphasis on elective specialisation and a final-year design project. Students are assessed by a mix of written exams, lab reports, project deliverables and presentations.

Entry requirements

Applicants are expected to have completed secondary education with strong performance in mathematics and science subjects. Entry pathways differ for domestic and international applicants:

  • Domestic applicants: Successful completion of national university entrance examinations or equivalent qualifications as defined by Taiwanese admissions procedures. Competitive performance in mathematics and physics is typically expected.
  • International applicants: A recognised secondary-school diploma with emphasised strengths in maths and science. Evidence of ability to study in the language of instruction may be required; English proficiency tests or other language qualifications may be requested depending on the programme language.
  • Additional considerations: Admissions decisions may also take into account portfolios of technical projects, entrance interviews, recommendation letters and prior practical experience. Specific course prerequisites and minimum scores are published by the university’s admissions office.

Career prospects

Graduates with a BSc in Electronics Engineering enter a broad range of technology roles across private and public sectors. The degree provides technical foundations for engineering positions as well as a pathway to advanced study.

  • Industry roles: Design and test engineer roles in semiconductor and consumer electronics firms, embedded systems developer, hardware engineer, circuit designer, RF and communications engineer.
  • Emerging and cross-disciplinary fields: IoT system developer, robotics and automation engineer, renewable-energy electronics specialist and sensor-system designer.
  • Medical and biomedical opportunities: Design and development roles in medical-device companies and hospital-linked research projects, leveraging the university’s proximity to clinical partners.
  • Further study and research: Graduates often progress to master’s or doctoral programmes in electronics, electrical engineering, biomedical engineering or related fields, or transition into management and entrepreneurship following additional training.

Why study at Chang Gung University

Chang Gung University offers a practical, industry-oriented electronics curriculum supported by well-equipped laboratories and faculty active in applied research. The university maintains collaborative links with regional technology companies and medical institutions, providing students with internship and project opportunities that connect academic learning to real-world applications.

  • Applied facilities: Modern electronics and microelectronics labs, embedded-systems workshops and access to prototyping resources for student projects.
  • Industry and clinical connections: Partnerships with local semiconductor firms, electronics manufacturers and the nearby Chang Gung medical system that enable internships, joint projects and exposure to biomedical-electronics applications.
  • Project-led learning: Emphasis on team-based capstone projects and laboratory coursework to develop practical engineering skills and employability.
  • Career support: University career services and faculty networks that assist with industrial placements, recruitment events and graduate pathways.

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Programme details are indicative and may change — always verify current information with the official university website before applying.