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We are a fast-growing medical robotics startup developing robotic ultrasound systems for abdominal and pelvic imaging.
We are seeking an experienced Control & Integration Engineer to take a leading role as a focal point in system-level integration and control of force-sensitive robotic platforms that physically interact with patients.
This is a deeply hands-on role combining motion control, force control, hardware–software integration, and real-world medical robotics challenges such as soft-tissue interaction, safety, and robustness.
Experience in robotics is mandatory. Background in medical devices is a strong advantage.
Key Responsibilities:
· Lead system integration of robotic ultrasound subsystems, including actuators, force/torque sensors, encoders, safety sensors, and controllers.
· Design, implement, and tune control algorithms for position, velocity, and force control.
· Develop and tune closed-loop control for compliant interaction with soft tissue.
· Integrate real-time control software with higher-level applications and imaging workflows.
· Work closely with mechanical and electrical engineers to translate physical system behavior into stable and safe control loops.
· Support system bring-up, calibration, debugging, and performance optimization on physical robotic platforms.
· Define and execute system-level tests for accuracy, repeatability, force limits, and safety.
· Participate in risk analysis, failure investigation, and mitigation related to patient-contact robotics.
· Contribute to technical documentation supporting development, verification, validation, and regulatory submissions.
Requirements:
Mandatory:
· BSc or MSc in Mechanical Engineering or Electrical Engineering.
· 5+ years of hands-on experience in control, integration, or robotics system engineering roles (PhD experience is equivalent)
· Proven hands-on experience in robotic systems – mandatory.
· Strong understanding of motion control (TwinCAT), drives, motors, encoders, and force/torque sensing.
· Hands-on experience with force-controlled or compliant robotic systems.
· Experience with real-time control architectures and Ethercat-based motion systems.F
· Demonstrated ability to bring up, debug, and tune complex electromechanical systems.
· Strong analytical thinking, documentation, and communication skills.
Advantage:
· Experience with medical imaging systems and regulated environments.
· Familiarity with IEC 60601, ISO 13485, ISO 14971, and safety-related control architectures.
Experience working with multi-axis robotic arms or custom robotic mechanisms.
CV to: [email protected]