Come Innovate Motion with Us
As a Control Strategy Developer, you will play a key role in the development of advanced Model-Based Design (MBD) control strategies for next-generation thermal management systems. Working closely with system, software and validation engineers, you will design and optimize compressor capacity modulation, mode switching, and energy efficiency through advanced algorithms and real-time vehicle integration.
Your responsibilities will be to:
Develop MATLAB/Simulink control system models and algorithms
Design compressor capacity modulation strategy for optimal cooling/heating
Optimize mode switching logic (cooling heating defrost)
Energy management for electric vehicle (battery thermal conditioning)
Model-in-the-loop (MIL) and hardware-in-the-loop (HIL) validation
Integrate control algorithms with vehicle embedded software (CAN communication)
Collaborate with test engineers for SIL/HIL validation
Evaluate AI/ML approaches for intelligent thermal management (future roadmap)
Our requirements:
Master's degree in Control Engineering, Electrical Engineering, Mechanical Engineering, or related field; PhD is considered a strong advantage
Minimum 7 years of experience in automotive control systems, thermal management systems, or embedded software development; experience within an automotive OEM, Tier 1 supplier, or equivalent engineering environment is highly desirable
Proven experience delivering control strategies through at least two major thermal management or powertrain projects
Deep understanding of Control Systems, Model-Based Design, Embedded Systems, Machine Learning (optional)
Strong expertise in Model-Based Design (MBD) using MATLAB/Simulink and Stateflow
Experience with control theory, including PID control, state-space control, adaptive control, and optimization algorithms
Solid understanding of automotive thermal systems, refrigerant cycles, HVAC systems, and thermal dynamics
Experience with MIL, SIL, and HIL validation methodologies and related toolchains (dSPACE, ETAS, National Instruments, or equivalent)
Knowledge of embedded systems, automotive communication protocols (CAN), and vehicle software integration
Familiarity with electric vehicle architectures, battery thermal management, and energy management strategies
Experience with Python and data analysis tools; exposure to machine learning techniques is considered an advantage
Understanding of R290 and other low-GWP refrigerants is beneficial
Strong analytical and problem-solving mindset, with the ability to independently manage complex technical challenges and drive solutions in dynamic development environments
Collaborative and proactive professional with excellent communication skills, a passion for innovation, and a commitment to continuous learning and advancing next-generation thermal management technologies
Fluent English is mandatory; German and/or French would be considered a strong advantage
What we offer:
A truly international and multicultural and fast-moving work environment
A cutting-edge, fully automated production environment where innovation meets execution
The opportunity to further develop your professional skills in a diverse and engaging job
Come join our global, inclusive & diverse team
Our purpose is to improve the quality of life of everyone we touch through our innovative motion systems. We are a truly global team bound together by our shared values. Our culture is built on the diversity, knowledge, skills, creativity, and talents that each employee brings to the company. Our people are our company’s most valuable asset. We are committed to providing an inclusive, diverse and equitable workplace where employees of different backgrounds feel valued and respected, regardless of their age, gender, race, ethnicity or religious background. We are committed to inspiring our employees to grow, act with ownership and find fulfilment and meaning in the work they do.