4 Years On Campus Bachelors Program
The Electrical Engineering Bachelor's degree is a comprehensive full-time programme taught entirely in English that prepares you to become an innovative engineer capable of developing cutting-edge products, from hardware and software development to technical project management and sales. Whether you're passionate about autonomous systems, robotics, biomedical technology, or smart health applications, this programme gives you the theoretical foundation and hands-on experience to launch a successful career in one of the world's most in-demand fields.
Curriculum Structure
Year 1: Building Your Engineering Foundation
Your first year establishes the essential groundwork for advanced electrical engineering concepts. You'll dive into Mathematics and Natural Sciences I & II, which form the backbone of all technical problem-solving, alongside Computer Science & Programming to develop the coding skills modern engineers need. The programme also introduces Electrical and Electronics Engineering I and explores Innovation & Engineering Ethics, ensuring you understand both the technical and responsible dimensions of engineering work.
Year 2: Core Engineering Principles and Practical Application
In your second year, you'll deepen your technical expertise with Electrical and Electronics Engineering II, Electronic Development, and Analogue Electronics, while courses like Numerical Methods and Engineering Design teach you to model real-world problems mathematically and creatively. This year bridges theory and practice, preparing you for specialized projects and industrial applications.
Year 3: Specialization and Advanced Technologies
Your third year introduces Sensors & Actuators, Control Engineering, Microcontrollers, and Applied Digital Signal Processing—the technologies that power everything from smart devices to industrial automation. You'll also take Stochastic Systems and Project Management to manage complex engineering projects professionally.
Year 4 & 5: Specialization Tracks and Integrated Learning
In your final years, you'll choose between two exciting specialization paths: "Autonomous and Intelligent Systems" or "Biomedical and Health Technologies". Both tracks integrate Power Electronics, Embedded Systems, Internet of Things, and Systems Integration & Safety, allowing you to focus on the cutting-edge field that excites you most.
Focus Areas
Autonomous systems, robotics, biomedical sensing, embedded systems, IoT applications, and intelligent health technologies.
Learning Outcomes
Students develop comprehensive theoretical and practical knowledge across electrical engineering disciplines, master both hardware and software development, learn technical project management and innovation methodologies, and gain the ability to solve complex technical challenges creatively.
Professional Alignment
The programme is accredited and taught in English, meeting international standards for engineering education. Graduates are prepared for diverse career opportunities as electrical engineers in hardware development, software engineering, technical project management, and technical sales across multiple industries.
Reputation & Employability
SRH University's School of Technology and Architecture offers industry-relevant, practice-oriented learning that optimally prepares students for the demands of the engineering sector. The university emphasizes developing qualified engineers with comprehensive technical knowledge, practical skills for designing complex systems, expertise in efficient project planning, and the ability to develop innovative solutions.
At SRH Berlin University of Applied Sciences, our Bachelor of Engineering in Electrical Engineering dives deep into hands-on learning from day one, so you'll build real-world skills in areas like electromobility, energy technology, and mobile robotics through practical exercises and team-based projects. You'll tackle interdisciplinary challenges in state-of-the-art engineering labs on our 12,000-square-meter waterfront campus, designed for collaboration with LEED Gold certification, rooftop solar panels, and spaces that blend technical work with creative innovation. This setup ensures you're not just studying theory—you're applying it with cutting-edge tools and facilities tailored to engineering programs.
Here's how our experiential learning brings it all to life:
- Interdisciplinary projects and exercises: Solve real practical problems independently or in teams, like engineering design projects in semester 2 and sensors/actuators work in semester 3, preparing you for industry challenges.
- Siemens Mechatronic Systems Certificate Program (SMSCP): Integrated across levels, combining electrical engineering with hands-on mechatronics training in electromechanical systems design.
- Specialized labs and technical facilities: Engineering labs, IT and technical labs, plus measurement technologies in project labs for hands-on work in electronics, signal processing, and control engineering.
- Software and digital tools: Training in programming (e.g., computer science basics, data analysis, basic programming languages), CAD design (AutoCAD or Siemens NX), microcontrollers, digital signal processing, and networks/communication.
- Group projects and production focus: Team-based production modules, project management, and innovation labs like the Project Lab with SMSCP Level 1 for collaborative technical development.
This practical edge, backed by our modern Berlin campus, positions you perfectly for top engineering roles—imagine applying right away and standing out to employers.
At SRH Berlin University of Applied Sciences, our Bachelor of Engineering in Electrical Engineering dives deep into hands-on learning from day one, so you'll build real-world skills in areas like electromobility, energy technology, and mobile robotics through practical exercises, interdisciplinary projects, and team-based problem-solving. You'll work in our state-of-the-art engineering labs on the 12,000-square-meter waterfront campus, equipped for collaborative, CORE-inspired learning with modern tools tailored to engineering programs. This setup lets you apply theory immediately—think designing circuits, programming systems, and tackling industry challenges in a sustainable, LEED Gold-certified space with rooftop solar and innovative facilities.
Here's how our program makes experiential learning come alive with specific tools, projects, and opportunities designed for electrical engineering success:
- Interdisciplinary and engineering design projects: Tackle practical problems in team settings, like sensor/actuator technology projects and engineering design in semesters 2-3, preparing you for technical industries.
- Siemens Mechatronic Systems Certificate Program (SMSCP): Integrated across levels, combining electrical engineering with hands-on mechatronics training in electromechanical systems—directly relevant to your degree.
- Specialized software and digital tools: Gain expertise in CAD design (AutoCAD or Siemens NX), programming (from basics in semester 1 to data analysis, AI, and digital signal processing), microcontrollers, and networks/communication tools.
- Engineering labs and technical facilities: Access dedicated IT and technical labs, measurement technologies, and production-focused spaces on the Berlin campus for hands-on work in electronics, control engineering, and stochastic systems.
- Group projects and project management: Semester 3 includes dedicated Project Management and Production modules, plus project labs with real-world applications like signals/systems and applied digital signal processing.
- Large campus library and collaborative spaces: Study and collaborate in our extensive library, rooftop terrace, chill-out areas, and waterfront outdoor spaces, all fostering innovation alongside engineering work.
Imagine graduating with a portfolio of projects and certifications that employers can't ignore—spots fill up fast, so apply today to secure your place in this dynamic program!



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