Your role
- Technological design and further development of active magnetic bearing systems for high-speed rotors
- Definition, specification, and evaluation of requirements for sensors, power electronics, real-time systems, and control functions
- Technical coordination and evaluation of external development partners in the fields of electronics and software development
- Development and validation of system models to describe the dynamic behavior of rotors, magnetic bearings, sensors, and control systems
- Analysis and optimization of the stability and robustness of mechatronic systems
- Evaluation of sensor, actuator, and electronics concepts with regard to performance, reliability, and manufacturability
- Support of electromagnetic actuator and sensor design using analytical methods and numerical simulations (e.g., ANSYS Maxwell, FEMM)
- Definition, execution, and evaluation of laboratory tests to verify functional hypotheses and system requirements
- Technical support in the qualification of active magnetic bearing systems and the transfer of new technologies into series production
- Close collaboration with experts in rotor dynamics, mechanics, testing, electronics, and software development, as well as with external partners and research institutions
To succeed, you will need
- Successfully completed university degree in Electrical Engineering, Mechatronics, Control Engineering, Physics, or a comparable field, ideally with a PhD
- In-depth understanding of mechatronic systems and their dynamic behavior
- Strong expertise in several of the following areas:
- Active Magnetic Bearings
- Control Engineering and Systems Theory
- Sensors and Signal Processing
- Power Electronics
- Real-Time Systems
- Electromagnetic Actuators
- High-Dynamic Electric Drives
- Experience in modeling, simulation, and analysis of dynamic systems
- Proficiency in MATLAB/Simulink, Python, and ideally ANSYS Maxwell, FEMM, or comparable simulation tools
- Ability to understand and evaluate technical relationships across multiple engineering disciplines
- Enthusiasm for working on complex interdisciplinary challenges in the field of highly dynamic precision systems
- Strong analytical skills and a scientific, methodical approach to problem-solving
- High level of responsibility, with an independent and structured working style
- Fluent English language skills; German language skills are desirable
In return, we offer
- Culture of trust and accountability
- Lifelong learning and career growth
- Innovation powered by people
- Comprehensive compensation and benefits
- Health and well-being
Contact information
Talent Acquisition Team: David Gabriel