As a Precision Motion Control Expert, you will lead the design and development of next-generation motion control systems for NAURA's advanced Hybrid Bonding equipment. Based in Beijing and reporting directly to the General Manager of the business division, you will play a critical role in advancing nanometer-level positioning and precision automation technologies that support the future of semiconductor manufacturing.
This role combines system architecture, control algorithm development, software engineering, and performance optimization to solve complex motion control challenges in a highly demanding environment. You will work at the intersection of mechanics, electronics, and software, driving innovations in vibration suppression, electromechanical coupling optimization, servo control, and real-time machine automation.
As a recognized technical authority, you will have the opportunity to shape the motion control strategy for one of China's leading semiconductor equipment companies, contributing directly to the development of cutting-edge hybrid bonding platforms and helping push the boundaries of semiconductor manufacturing technology.
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Lead the architecture design, control strategy development, and algorithm design of real-time control systems for complex semiconductor manufacturing equipment, ensuring the achievement of critical performance targets, including precision, stability, robustness, throughput, and real-time responsiveness.
- Design, develop, implement, and maintain motion-controller software, machine-control applications, and related automation systems.
- Develop high-precision motion-control solutions for advanced semiconductor equipment, including nanometer-level positioning, synchronised multi-axis control, trajectory planning, and precision motion optimisation.
- Design and implement machine control strategies, state machines, process control logic, and automation algorithms to manage equipment operation and process execution.
- Conduct system modelling, simulation, identification, and performance analysis to optimise overall equipment performance.
- Lead the development and optimisation of servo control algorithms, motion planning algorithms, and advanced control methodologies for high-performance automation systems.
- Analyse and resolve complex system issues encountered during machine integration, commissioning, validation, and production deployment.
- Drive system optimisation initiatives, including vibration suppression, jitter reduction, disturbance rejection, dynamic compensation, and electromechanical coupling optimisation.
- Perform dynamics analysis of complex equipment systems, including modal analysis, vibration transfer path analysis, structural dynamics assessment, and vibration damping optimisation.
- Collaborate closely with multidisciplinary engineering teams across software, electrical, mechanical, systems, and process engineering functions to deliver integrated solutions.
- Provide technical leadership and subject matter expertise on motion control technologies, contributing to technology roadmaps and next-generation product development initiatives.
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Master's degree or above in Automation, Control Engineering, Mechatronics, Electrical Engineering, Mechanical Engineering, or a related discipline.
- 10+ years of experience in motion control development within the semiconductor equipment industry.
- Proven experience developing motion control systems for high-precision semiconductor manufacturing equipment, such as hybrid bonding, wafer bonding, advanced packaging, lithography, inspection, metrology, or related automation platforms.
- Strong expertise in real-time control system architecture, motion control software development, and advanced control algorithm design.
- Deep understanding of precision motion control principles, servo systems, and high-performance automation technologies.
- Strong knowledge of mechanical vibration theory, vibration testing methodologies, and dynamic system analysis.
- Proven ability to conduct complex machine dynamics simulations, including modal analysis, vibration transfer path analysis, structural dynamics modelling, and vibration suppression optimisation.
- Extensive experience with servo motor control algorithms, motion control tuning methodologies, and closed-loop control system optimisation.
- Demonstrated expertise in electromechanical system modelling, simulation, performance prediction, and optimisation of coupled mechanical and motor systems.
- Experience with high-precision positioning systems, synchronised multi-axis motion control, macro-micro motion platforms, or nanometer-level positioning applications.
- Proficiency with engineering simulation and modelling tools such as MATLAB/Simulink, ANSYS, ADAMS, or equivalent platforms.
- Strong analytical and problem-solving skills, with the ability to diagnose and resolve complex multidisciplinary engineering challenges.
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