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Oura

Senior Product Quality Engineer, EE

Oura · San Francisco, CA, United States

ContractHybridPosted 26 September 2026
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Job description

Our mission at Oura is to empower every person to own their inner potential. Our award-winning products help our global community gain a deeper knowledge of their readiness, activity, and sleep quality by using their Oura Ring and its connected app. We've helped millions of people understand and improve their health by providing daily insights and practical steps to inspire healthy lifestyles. Empowering the world starts with living our values and empowering our team. As a quickly growing company focused on helping people live healthier and happier lives, we ensure that our team members have what they need to do their best work — both in and out of the office. At Oura, our mission is to empower every person to own their inner potential. With our award-winning Oura Ring and app, we help over 3 million people turn insights about sleep, activity, and readiness into healthier, more balanced lives. We believe that starts from within — by creating a culture where our team feels supported, included, and inspired to do their best work. Our values guide how we show up for each other and our community every day. We are looking for a Senior Product Quality Engineer, EE to join our Product Quality team in San Francisco, California. In this role you will lead Early Field Failure Analysis (EFFA), field quality, and product safety for the Oura Ring, covering both products currently in mass production and earlier generations still in members’ hands. You will determine why electrical failures occur in the field, confirm the mechanism behind them, and drive the design, process, supplier, and test changes required to prevent them from recurring. Job responsibilities include leading electrical failure analysis on returned units, building serial-level evidence packages from manufacturing, test, and telemetry data, and establishing commonality across build, supplier, revision, and geography. You will define containment and escalation for field safety issues, direct corrective action with our contract manufacturers (CMs) and suppliers, and verify effectiveness against field and factory data before an action is considered closed. A core objective of this role is closing the quality loop. You will convert confirmed field and factory findings into design, DFMEA, test coverage, and component selection inputs for NPI programs, so that mechanisms identified on shipping products are designed out of the next generation. This requires close partnership with Electrical Engineering, Firmware, Reliability, Manufacturing, Supplier Quality, Data, and Member Experience. This role spans the bench, the data, and the factory floor. Strong electrical engineering fundamentals, hands-on failure analysis capability, and practical data analysis skill are all essential for success in this role. This is a US Hybrid role based in the San Francisco Bay Area, with an in-office requirement of three days per week. What you will do: Own electrical Early Field Failure Analysis (EFFA) for Oura Ring products, from returned unit intake and evidence review through technical disposition, confirmed mechanism, and closure Lead field quality and safety investigations for battery, charging, and power-related issues, including risk assessment, containment and escalation decisions, and the supporting technical rationale for Reliability, Regulatory, and Member Experience Direct non-destructive-first analysis workflows covering received-condition documentation, electrical characterization, ring diagnostics, optical inspection, and imaging prior to any destructive analysis Isolate failure mechanisms across power, battery, charging, sensor, clock, connectivity, interconnect, and leakage-related faults to the component, material, or process level using DMM, oscilloscope, current measurement, thermal imaging, micro-probing, and X-ray/CT Build serial-level evidence packages combining product configuration, hardware and firmware revision, manufacturing genealogy, factory test history, telemetry, and diagnostic records against the member-reported symptom Analyze field, factory, and FA data to establish commonality across manufacturing site, build lot, supplier, component, ring size, hardware and firmware revision, product age, geography, and diagnostic signature Distinguish reported symptom from failed function and confirmed mechanism, documenting supporting and contradicting evidence, remaining open questions, and confidence in the disposition<

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