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Facts and figures
Vehicle Development for Sustainable Mobility
Instead of focusing solely on traditional vehicle engineering, youāll take a broader view of mobility. If you want to develop and improve new modes of transport such as e-scooters, cargo bikes and other sustainable concepts, the āVehicle Development for Sustainable Mobilityā specialisation is the right choice for you.
During your degree, youāll learn in detail how vehicles are designed, analyse motion and force sequences, and discover how technical components interact to form fully functional systems. In doing so, youāll combine traditional Mechanical Engineering with the latest requirements for sustainable mobility and develop solutions that blend technical functionality with future-proof design.
An overview of the course content
Vehicle Development for Sustainable Mobility specifically addresses the current challenges facing vehicle and mobility development. You will explore micromobility, electrical components and modern vehicle technology, whilst simultaneously working on real-world development tasks as part of a collaborative development project. Over the course of several semesters, youāll work in a team with other students to develop technical solutions and gain experience that goes far beyond traditional theory. This will enable you to understand not only individual vehicle components, but also the entire development processes of modern mobility systems.
Fundamentals of Design with Introductory Practical Course
Fundamentals of Manufacturing Technology with Introductory Practical Course
Fundamentals of Information Technology with Introductory Practical Course
Fundamentals of Materials Science with Introductory Practical Course
Engineering Mechanics I
Mathematics
Machine Elements I
Engineering Materials
General Chemistry
Fundamentals of Physics
Engineering Mechanics II
Mathematics ā Analysis
Machine Elements II
CAD Techniques
Measurement Technology/Manufacturing Measurement Technology
Electrical Engineering
Business Management
transversal skills
Collaborative Development Project
Propulsion Technology
Technical Thermodynamics/Fluid Mechanics
Automation Technology
Fundamentals of Production Operations
2 specialisation modules:
- Fundamentals of Micromobility
- Electrical Components
Collaborative Development Project
Hydraulics/Pneumatics
CNC programming
Manufacturing Process Design
Plastics Technology
2 specialisation modules:
- Micromobiles
- Machine dynamics
Cooperative Development Project
Work placement and Bachelorās thesis
: Independent academic and practical work within a company, culminating in an independent academic thesis
. Duration: 20 weeks
Mechanical Engineering in Mittweida
In summary ā Vehicle Development for Sustainable Mobility in Mittweida
Specialisation within the full-time Bachelorās degree programme in Mechanical Engineering
(180 Credits)
After completing your degree in Mechanical Engineering, specialising in sustainable mobility, you could, for example, work as a development engineer in automotive engineering or in the development of technical components and mobile systems. Roles in design, product development or technical simulation are also typical career paths.
Application and Admission
Applicants must hold a general university entrance qualification, a university of applied sciences entrance qualification, a subject-specific university entrance qualification or an equivalent recognised qualification. Applicants who have completed vocational training and have at least three yearsā professional experience may also be admitted following a consultation and a successful entrance examination.
Language skills:
Anyone who did not obtain their university entrance qualification at a German-speaking institution must demonstrate German language proficiency at level C1 of the Common European Framework of Reference for Languages. Proof of this can be provided, for example, by passing the āGerman as a Foreign Languageā (TestDaF) test at the Mittweida University Preparatory College with an average score of TDN 3 in all four sections, or by presenting an equivalent certificate.
The application period for the winter semester begins on 15 April and ends on 15 July. You can register online via the HSMW application portal. Once you have submitted all your documents, you can enrol. Once you have enrolled, your place at Mittweida is secured. For international applicants, the application deadline is 15 May, to allow sufficient time to apply for a visa.
Weāve got you covered! Excellent study conditions, modern facilities and affordable rent allow you to focus fully on your studies. Tutorials are on hand to help with academic queries, the SAXEED start-up network supports you on your journey to developing your own business idea, and the Social Support Service offers assistance with specific life situations, such as childcare or caring for relatives. The campus also has plenty to offer: two music festivals a year, an active esports team and a vibrant student community. Discover just how diverse life in Mittweida is ā at the Open Day or the Night of Science.
Frequently Asked Questions
Yes, once youāve completed the core modules, youāll choose one of the four specialisations: Digital product development, Vehicle Development for Sustainable Mobility, Resource-efficient Manufacturing Technology, or Laser and surface technology. This allows you to tailor your degree programme precisely to your interests and develop into a specialist in your chosen field.
As a graduate, almost every door in industry is open to you, from traditional vehicle and plant engineering through to aerospace, medical technology and the energy sector. You will often work in development, design, production or quality management, and your skills are in demand wherever complex technology is designed and built.
Definitely, because Mittweida focuses on ālearning by doingā in state-of-the-art laboratories and through an integrated practical module in industry. Many students also take the opportunity to write their final-year dissertations in direct collaboration with companies, which often serves as a springboard to their first job.
Studying in Mittweida stands out thanks to its friendly atmosphere and close contact with lecturers, combined with state-of-the-art technical facilities (particularly in the field of laser technology). Here, youāre not just a number in an overcrowded lecture theatre, but work in small teams on real-world projects that prepare you for a career in industry.
As well as an interest in technology and physics, you should have a solid understanding of maths to be able to handle the calculations behind the scenes.