About the role
We're looking for a Hardware Reliability Test Engineer to own environmental and durability qualification for LyteVision modules and the custom silicon inside them (LyteCore SoC, analog front-end, laser control chip). You'll design and run the test programs that prove our sensors survive vibration, thermal cycling, humidity, shock, and years of field duty — and you'll turn failures into root causes the design team can act on.Â
This is a hands-on role: you'll be in the lab running HALT/HASS chambers as often as you're in front of a laptop analyzing failure data.Â
What you'll do
- Design, execute, and analyze HALT (Highly Accelerated Life Testing) and HASS (Highly Accelerated Stress Screening) programs for LyteVision modules and subassembliesÂ
- Build and run test plans for vibration, mechanical shock, thermal cycling, thermal shock, humidity/condensation, dust/ingress (IP rating validation), and EMI/EMCÂ
- Characterize optical and sensor performance drift under environmental stressÂ
- Define accelerated life test models and translate chamber results into field-life reliability predictions (e.g., MTBF/MTTF estimates, Weibull analysis)Â
- Lead failure analysis (FA) on units that fail in test or in the field — coordinate with silicon, optics, and mechanical teams to drive root cause and corrective actionÂ
- Own reliability test fixtures and chamber infrastructure; work with contract labs when internal capacity is constrainedÂ
- Contribute reliability requirements and DFR (Design for Reliability) input early into new module and PCB designs, alongside the hardware and silicon teamsÂ
- Maintain test documentation, qualification reports, and traceability suitable for customer and regulatory reviewÂ
- Support functional safety and durability claims for robotics, automotive-adjacent, and industrial deployment environmentsÂ
Required Qualifications
- 3–6 years of experience in hardware reliability engineering, environmental test engineering, or product qualification — ideally on sensors, optics, consumer electronics, or automotive-grade hardwareÂ
- Hands-on experience running HALT/HASS chambers, vibration tables, and thermal chambersÂ
- Working knowledge of reliability statistics: MTBF/MTTF, Weibull analysis, accelerated life testing models (Arrhenius, Coffin-Manson, etc.)Â
- Experience with failure analysis techniques or close partnership with FA labsÂ
- Familiarity with relevant standards (e.g., MIL-STD-810, IEC 60068, IPC/JEDEC, ISO 16750, or automotive/industrial equivalents)Â
- Comfort working with optical or MEMS-based sensing hardware, or strong appetite to learn — our modules combine photonics, analog electronics, and custom siliconÂ
- Bachelor's or master's degree in mechanical engineering, Electrical Engineering, Materials Science, or a related fieldÂ
- Strong instincts for root-causing ambiguous failures and communicating findings clearly to cross-functional hardware and silicon teamsÂ
Preferred Qualifications
- Experience testing sensor modules for robotics, AMRs, or autonomous vehicle platformsÂ
- Exposure to functional safety processes (ISO 26262 or similar)Â
- Experience working with contract manufacturers or OSAT partners on qualification buildsÂ
Benefits (subject to location and local regulations)
- Competitive salary and equityÂ
- Comprehensive medical, dental, and vision coverageÂ
- 401(k) retirement planÂ
- Flexible vacation and time-off policyÂ
- Collaborative, fast-paced, and inclusive work environmentÂ
- Opportunity to work on cutting-edge technologies with a highly cross-functional teamÂ
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