Job Description
We are looking for a Senior Electrical Engineer who will play a pivotal role in leading the electrical architecture, hardware design, and system integration of next-generation medical imaging systems. In this role, you will drive the design of high-density PCBAs, precision motor control systems for mechanical positioning gantries, and critical imaging signal chains, while mentoring engineers and acting as the technical anchor for a cross-geography engineering team. This position requires a proactive experienced engineer who can balance deep hands-on hardware work with design controls, documentation, and supplier coordination.
Expected skills:
Bachelor's or Master's degree in Electrical Engineering, Electronics Engineering, or a related technical discipline
8+ years of experience in hardware development, including 3+ years in a high-reliability hardware engineering environment (Medical Devices preferred; Aerospace or Automotive considered)
High proficiency with schematic capture and PCB CAD tools (Cadence Allegro, Altium Designer, etc..)
Practical experience architecting AC/DC power stages, gate drivers, current sensing, and protection circuitry
Hands-on expertise designing precision motor control architectures (BLDC and Stepper) for mechanical positioning systems
Strong understanding of signal integrity, EMI/EMC mitigation, and noise reduction in microvolt-level analog/imaging signal chains
Exposure to safety, EMC, and risk management frameworks (such as IEC 60601-1, IEC 60601-1-2, ISO 14971); specific regulatory standard expectations are currently TBD and will be finalized based on project scope
Expert-level command of lab equipment (oscilloscopes, spectrum analyzers, logic analyzers, function generators)
Strong technical leadership skills with a track record of mentoring engineers and driving CAPA/root-cause investigations
Advanced English communication and presentation skills, able to translate hardware constraints for global, cross-functional stakeholders
Job Responsibilities
Drive the design, prototyping, and testing of complex electrical systems, subsystems, and high-density multi-layer PCBAs for next-generation medical imaging platforms
Architect and optimize AC/DC power stages, gate drivers, current sensing, protection circuitry, and precision BLDC/Stepper motor control used in mechanical positioning gantries
Analyze and optimize the critical electrical image chain to minimize noise, manage EMI/EMC, and improve system-level imaging performance
Assist in defining and adapting hardware designs as formal regulatory, safety, and EMC standard compliance requirements are finalized
Author and review engineering documentation(schematics, design descriptions, risk assessments, verification protocols) in alignment with applicable quality processes
Serve as technical point of contact for the APAC engineering pod; mentor junior engineers, lead CAPA/root-cause analysis, and coordinate with suppliers and CMs on DFM
Department/Project Description
Company Description:
A global leader in medical technology dedicated to enabling healthier lives through early detection, advanced diagnosis, and premium diagnostic imaging solutions. The organization develops high-precision capital equipment and integrated hardware systems used by healthcare providers worldwide.
Project Description:
The project focuses on the electrical hardware architecture of a flagship digital mammography and 3D tomosynthesis platform used for breast cancer screening and diagnosis. Work spans the system's mechanical positioning gantry (motorized C-arm rotation and compression mechanisms), power electronics, and the electrical signal chain feeding the digital detector, with a strong emphasis on image quality, patient/technologist safety, and system-level performance. The role combines hands-on hardware design and lab-based debugging with technical leadership and mentorship of a distributed engineering team.