About this role
Job Description
As a Senior Electronics Engineer – Functional Safety, you will own the hardware-level Functional Safety design for our robots’ custom electronics. You will design fault-tolerant circuits at the schematic and PCB level — implementing redundant architectures, hardware diagnostics, and safe-state mechanisms — and perform the quantitative reliability analysis to substantiate that your designs meet the required Safety Integrity Level. This is a hands-on circuit design role, not a systems-level safety concept or process management position.
What You’ll Be Doing
- Design fault-tolerant circuits for safety-critical subsystems, selecting appropriate safety architectures (e.g., 1oo2, 1oo2D) based on the required SIL target.
- Implement hardware diagnostic and monitoring mechanisms to detect dangerous failures.
- Design circuits that enforce a defined safe state when a fault is detected.
- Apply Common-Cause Failure mitigation techniques at the component and PCB level.
- Perform FMEDA on your own schematics — identifying failure modes per component and calculating Safe Failure Fraction (SFF) and Diagnostic Coverage (DC).
- Build Reliability Block Diagrams and compute SIL metrics to verify your designs meet the target.
- Select and derate components based on failure rate data, mission profiles, and expected lifetime.
- Advise system architects on hardware safety constraints and review PCB layouts for safety compliance.
- Collaborate with electronics, firmware, and systems engineering teams to integrate safety functions into the overall robot design.
- Create and maintain Functional Safety documentation for your hardware modules.
What You Must Have
- Master’s degree or higher in Electrical Engineering, Electronics, or a closely related field.
- 5+ years designing electronics hardware for Functional Safety–certified products.
- Proven work under IEC 61508 (preferred), ISO 13849, or ISO 26262.
- Delivered PCB-level hardware that achieved SIL 2 or SIL 3 (or equivalent PL d/e, ASIL B–D) certification.
- Background in analog, power, and/or mixed-signal circuit design .
- Hands-on experience implementing safety architectures in schematics — not just block diagrams.
- Ability to perform FMEDA and SIL metrics calculations on your own designs.
- Understanding of failure rate data sources and component derating for reliability.
- Strong problem-solving skills and ability to debug fault-tolerant hardware.
- Comfortable working cross-functionally with firmware, mechanical, and systems teams.
Get Some Bonus Points
- Experience with safety-rated ICs (safe supply supervisors, safety MCUs, smart drivers with diagnostic feedback).
- Has contributed to or authored a Safety Manual for a hardware module.
- Familiar with Proven-in-Use argumentation for off-the-shelf components.
- PCB layout skills relevant to safety (creepage/clearance, redundant channel routing).
- Experience with circuit simulation (SPICE) to verify fault response behaviour.
- Experience in robotics, automotive, aerospace, or medical device sectors.
- PhD degree in a relevant engineering discipline.
