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Archer is an aerospace company based in San Jose, California building an all-electric vertical takeoff and landing aircraft with a mission to advance the benefits of sustainable air mobility. We are designing, manufacturing, and operating an all-electric aircraft that can carry four passengers while producing minimal noise. As an Electrical Analysis Engineer, you will work on circuit analysis within Archer’s high voltage battery management system.
Job Responsibility:
Analyze circuit schematics, working closely with safety engineers to find single-point failures
Analyze the system-level effects of individual component failures within PCBAs
Roll-up power consumption of the BMS PCBAs in each operating mode, and correlate to lab tests
Perform worst-case accuracy analysis on measurement circuits
Use circuit simulation tools to model and analyze hardware circuits in support of accuracy analyses
Use software for automated circuit analysis in support of schematic-level FMEAs
Analyze the system-level effects of single-event upsets and latch-ups
Support reliability engineers to understand electrical operating conditions and derive failure rates
Perform electrical stress analysis and component derating analysis on individual components
Work closely with design engineers, to ensure the BMS hardware meets Archer’s safety, accuracy, and reliability requirements
Requirements:
BS or MS degree in Electrical Engineering, Mechanical Engineering or a related field
3+ years of experience designing, modeling, or analyzing mixed-signal electrical circuits
Experienced in circuit simulation tools such as LTSpice
Excellent organizational, communication, and troubleshooting skills
Nice to have:
Experience with high voltage systems or battery electronics
Experience with electronics in regulated industries (e.g., aviation, medical devices)
Experience with DO-160G, DO-254, ISO 26262, or related standards
Experienced in Altium Designer or a similar design tool
Familiarity with Functional Hazard Assessment (FHA), Fault Tree Analysis (FTA), and Failure Modes, Effects, and Diagnostic Analysis (FMEDA)