Support design transfer by building prototypes, developing test fixtures and stations, and performing troubleshooting, failure analysis, and root cause analysis on failed electrical assemblies. System-level electrical engineering competency across analog, digital, mixed-signal (ADC/DAC), communications, and high-power electronics within complex electro-mechanical systems.
Numbers & Facts
Location
San Carlos, CA
Description
Qualifications:
Bachelors degree in Electrical Engineering plus 7+ years of relevant industry experience, or Masters degree in Electrical Engineering plus 5+ years of relevant industry experience.
7+ years of experience in medical devices or a closely related regulated hardware industry (medical device experience strongly preferred).
Proficiency with Altium Designer (or equivalent EDA tools) and hands-on PCBA development including schematic capture, BOM generation, and PCB layout review.
System-level electrical engineering competency across analog, digital, mixed-signal (ADC/DAC), communications, and high-power electronics within complex electro-mechanical systems.
Working knowledge of IEC 60601-1 and IEC 60601-1-2 and the ability to develop verification evidence for electrical safety, EMC, and functional performance in a design-controlled environment.
Hands-on use of lab test and measurement equipment (DMMs, oscilloscopes, function generators, power analyzers, spectrum analyzers).
Experience with reliability analysis, design risk mitigation, and controlled documentation environments (GMP or similar).
Preferred experience developing and integrating motion control, closed-loop control, and power distribution subsystems.
Responsibilities:
Lead system-level electrical design and architecture for new product development and support sustaining engineering and continuous improvement for released products.
Author system requirements, design specifications, test plans, protocols, and verification reports for power, EMC, electrical safety, and functional performance.
Partner with mechanical and software engineering to ensure compliance with applicable medical device standards and design-controlled processes.
Drive system-level design tradeoffs balancing performance, cost, reliability, and manufacturability across cross-functional stakeholders.
Support design transfer by building prototypes, developing test fixtures and stations, and performing troubleshooting, failure analysis, and root cause analysis on failed electrical assemblies.