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BEng Robotics Engineering

Design, programming and commissioning of robotic systems in manufacturing.

Qualification
allgemeine Hochschulreife oder ein als gleichwertig anerkannter ausländischer Abschluss
Academic credits
180
Study mode
Hybrid / Campus
Language of instruction
Deutsch / English
Duration
6 Semester
Start
1. Oktober 2027
Tuition
2.450 EUR pro Semester, insgesamt 14.700 EUR
Application deadline
15. Juli 2027

Overview

Design, programming and commissioning of robotic systems in manufacturing. The programme combines scientific foundations with project-based engineering practice, delivered in structured semesters with supervised teaching.

Curriculum

Illustrative curriculum. The officially approved module structure will be published once programme documentation is available.

  1. Semester 1

    • Calculus I
    • Physics I — Mechanics
    • Programming I (Python)
    • Electrical Circuits
    • Engineering Mechanics
  2. Semester 2

    • Calculus II
    • Linear Algebra
    • Programming II (C/C++)
    • Digital Systems Design
    • Materials Science
  3. Semester 3

    • Signals and Systems
    • Microcontrollers and Embedded C
    • Control Engineering
    • CAD and Machine Design
    • Foundation Laboratory
  4. Semester 4

    • Embedded Systems
    • Robot Mechanics and Kinematics
    • Sensors and Perception
    • Electrical Machines and Drives
    • Interdisciplinary Team Project
  5. Semester 5

    • Robot Programming (ROS 2)
    • Navigation, SLAM and Path Planning
    • Modern and Optimal Control
    • Safety and Standards (ISO 10218 / TS 15066)
    • Advanced Laboratory
  6. Semester 6

    • Industrial Placement Semester
    • Elective Modules
    • Bachelor's Thesis and Colloquium

Learning outcomes

  • Apply scientific method to technical problems
  • Design, model and evaluate complex systems
  • Communicate results to specialist and international audiences
  • Assess technological developments in ethical and legal terms

Admission requirements

  • Recognised secondary qualification or equivalent — higher education entrance qualification including mathematics and one natural science (overall grade 2.5 or better)
  • Evidence of proficiency in the language of instruction — English C1 (IELTS 7.0 / TOEFL iBT 95) or German C1 (TestDaF 4x4 / DSH-2), depending on the language of instruction
  • Complete application documentation — transcripts, language certificate, CV and identity document

Career opportunities

  • Development and design roles in technology-driven organisations
  • Research and development in institutes and industry
  • Project and systems responsibility in interdisciplinary teams
  • Progression to master's or doctoral study

Virtual laboratories

Practical engineering education requires laboratory work. TU Eisenfeld develops virtual laboratory environments in which students work with realistic models, measurement data and control tasks.

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