Electrical engineering
# 324
QS Subject Rankings
3.5 years
Program duration
No
Scholarships
Program Overview
Main Subject
Electrical Engineering
Degree
BEng
Study Level
Undergraduate
Study Mode
On Campus
Engineers in electronics play an indispensable role in reducing CO2 emissions and making the transition to sustainable energy. If you are passionate about developing innovative electronic equipment, this program is for you.
This degree from SDU gives you a wide range of career opportunities both in Denmark and abroad. There is a shortage of electronic engineers, and the skills you have developed will be sought after across a wide range of industries.
After graduating from SDU Sønderborg, you are offered 6 months of employment if you haven’t landed your first job after you finished your BEng studies.
Admission requirement
GPA and Subject Requirement
-English level B
--Mathematics level A
Physics B or Geoscience A
-Quota 1: Study places are allocated based on GPA
Study places in quota 1 are allocated based on the applicants' grades. To be considered for a study place in quota 1, the grade point average of your qualifying degree must meet a minimum requirement.
To be considered for a study place in quota 1, your GPA must be equivalent to 5.0 or higher in the Danish grading scale.
Please note that fulfilling the minimum requirement is no guarantee for admission. If there are more qualified applicants than study places, the study places are given to the applicants with the highest grade point averages.
-Quota 2: Study places are allocated based on an entrance examination
After you submit your application, you will be invited to participate in an entrance examination. Participating puts you in a position for the study places in quota 2. The study places are offered to the applicants with the highest test scores.
You may choose to skip the entrance examination if you meet the minimum requirements for quota 1. However: By participating in the entrance examination, you will be optimizing your chance of admission.
English Language Requirement
Applicants can also demonstrate English proficiency with a TOEFL score of 88 or higher, or a C1 Advanced (CAE) or C2 Proficiency (CPE) certificate
Applicants from the European Union or the EEA can demonstrate English proficiency at the B level
Applicants must document their English skills using the Language Requirement Form, which is signed by both the applicant and their home university
Tuition Fees
Domestic Students
Tuition Fee/year Free | Other Expenses |
International Students
Tuition Fee/year 12,800 Euro | Other Expenses
|
Autumn
Domestic Deadline | International Deadline |
---|---|
May 1 | April 1 |
Spring
Domestic Deadline | International Deadline |
---|---|
November 1 | October 1 |
Course Curriculum
Semester 1:
1. Electronics Semester
2. Electronics 1
3. Embedded Systems 1
4. Physics
5.Physics
6.Mathematics for Engineering 1
Semester 2:
1.Electronics Semester Project 2 D
2.Electronics 2
3.Embedded systems 2
4.Signal and Filters
5.Mathematics for Engineering
Semester 3:
1.Electronics Semester Project 3 D
2.Digital Signal processing
3.Electromagnetics M
4.Fundamentals of Electrical
5.Mathematics for engineering
Semester 4:
1.Electronics Semester Project 4 D
2.Power Electronics
3.Digital Design and Signal
4.Control Engineering 1
5. Introduction to Machine
Semester 5:
1.Exploring Entrepreneurship
2.Advan-
3.Theory of
4.Elective
5.Elective
6.Elective
Semester 6:
Industrial Engineering Training
Program Benefits
Electronics and computer engineers are, for example, qualified to develop mobile phones, robots and surveillance systems.
Graduates will have competencies in fields characterised by rapid technological change – and have great impact on the development of society. You are qualified for work in the private as well as in the public sector.
From this program You could :
-learn about analogue, digital and power electronics as well as signal processing
-learn how to develop advanced software as well as the use of computer-based modelling and simulation tools for electronic components and circuits
-be taught in the design of electronic circuits, which requires strong skills in advanced mathematics and a good understanding of the underlying physics
-learn to consider not only the technical aspects – a broader approach is needed when developing new electronic products
-learn to include all relevant aspects such as economy and the environment when developing new products
-get used to working in project groups where you and your fellow students will solve problems for companies through case-based work
-learn both how to apply the theoretical knowledge in practice as well as how to work on a project incl. project planning, risk assessment, teamwork etc.
Career possibilities
Generally speaking, electronics engineers work with development, project engineering, consultancy, sales and management.
You could work in, for example:
1. Medical equipment
2. Computers and data network
3. Telecommunication: mobile phones, TV, radio, etc.
4. Energy technology (wind turbines, solar cells, batteries)
5. Electrical devices and appliances: From measurement equipment to power plants
6. Robots and drone
7. Software development
8. Control and automation of production processes
9. Industrial electronics.
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