--- title: 'Operations - Quality Engineering Lead at Bedrock Robotics Inc' canonical: 'https://feeny.ai/job/operations-quality-engineering-lead-bedrock-robotics-inc-san-francisco-22kx7gkntgh7' type: 'job' last_seen: '2026-09-12' --- # Operations - Quality Engineering Lead at Bedrock Robotics Inc - **Company:** Bedrock Robotics Inc - **Location:** San Francisco, CA - **Employment:** full-time - **Work type:** hybrid - **Posted:** 2026-06-18 - **Last confirmed live:** 2026-09-12 - **Apply:** https://jobs.ashbyhq.com/bedrock-robotics/aea0c35e-1f83-46b8-8ab3-95979212b05d/application **Skills:** Quality program management, Design for Manufacturing (DFM), Design for Assembly (DFA), FMEA, CAPA, 8D, 5 Whys, Fishbone analysis, Statistical methods, HALT/HASS, Environmental testing, Lifecycle testing, Root cause analysis, Failure analysis, HIL/SIL testing, Automated testing frameworks, Embedded systems, Firmware, Cloud-connected platforms, AI agents > Lead end-to-end quality strategy for hardware development and robotic fleet operations, ensuring product reliability and scalability from prototyping through production and field deployment. Drive continuous improvement across design, manufacturing, and field performance using data-driven insights and AI-enabled wor... ## Job description Join the team bringing advanced autonomy to the built world At Bedrock, we're moving AI out of the lab and into the real world. Our team includes veterans who helped launch Waymo, scaled Segment to a $3.2B acquisition, and grew Uber Freight to $5B in revenue. Today, we're deploying autonomous systems on heavy construction equipment across the country, improving safety on job sites and accelerating schedules on critical infrastructure projects. We're not here debating the future of AI. We're deploying it in the real world. In just two years, we've raised $350M and achieved the first fully autonomous excavator deployments in construction. This is where algorithms meet steel-toed boots. You'll work alongside construction veterans and world-class engineers to solve physical-world problems that simulations can't touch. If you're ready to do meaningful work on hard problems, we'd love to have you join us. Role Overview: We are seeking a Product Quality Engineer to establish and drive end-to-end quality strategy across hardware development and robotic fleet operations. This role sits at the intersection of engineering, manufacturing, and field operations, ensuring product reliability, scalability, and performance from early prototyping through high-volume production and real-world deployment. You will own quality systems, metrics, and continuous improvement initiatives across the full lifecycle—spanning design, supplier quality, manufacturing execution, and field performance—while leveraging modern tools including automation, diagnostics, and AI-driven workflows. Key Responsibilities: Product & Design Quality - Lead Design for Quality initiatives, including Design for Manufacturing (DFM) and Design for Assembly (DFA) - Partner with hardware, electrical, and software engineering teams during EVT/DVT/PVT phases to ensure robust design validation - Define and enforce quality gates, risk assessments (FMEA), and validation plans - Drive design improvements based on failure data, field insights, and reliability testing - Risk Management: Proactively identify and mitigate business-critical risks and dependencies that may impact delivery or operational performance. Develop contingency plans as necessary and maintain visibility to the relevant company functions of major issues and alerts. Manufacturing & Supplier Quality - Establish and manage Incoming Quality Control (IQC), In-Process Quality Control (IPQC), and Outgoing Quality Control (OQC) frameworks - Develop supplier quality strategy, including qualification, audits, and performance management - Implement process controls, yield tracking, and defect reduction initiatives across contract manufacturers - Lead root cause analysis and corrective/preventative actions (CAPA) for production issues Reliability & Validation - Define reliability requirements and test strategies (HALT/HASS, environmental, lifecycle testing) - Own validation metrics and ensure products meet performance and durability targets - Drive continuous reliability improvements through structured failure analysis Fleet Quality & Field Operations - Establish systems for field triage, failure tracking, and escalation management across deployed robotic fleets - Analyze field performance data to identify systemic issues and prioritize fixes - Partner with operations and service teams to improve uptime, serviceability, and MTBF - Develop feedback loops from field → engineering → manufacturing Software & Systems Quality - Ensure alignment between hardware and software quality standards - Define test strategies for embedded systems, firmware, and cloud-connected platforms - Drive automated testing frameworks (HIL/SIL), regression testing, and release quality metrics Data, Metrics & Continuous Improvement - Define and track KPIs across the lifecycle: yield, defect rates, DPPM, MTBF, MTTR, fleet uptime - Build dashboards and reporting systems to provide visibility across engineering, operations, and leadership - Lead structured problem-solving using 8D, 5 Whys, Fishbone, and statistical methods Automation, Diagnostics & AI Enablement - Build diagnostic and alert frameworks for rapid issue identification and communication across hardware and software systems - Leverage AI agents and tools to: - Streamline root cause analysis and data triage - Automate reporting, anomaly detection, and workflow management - Improve cross-functional coordination across complex, multi-phase programs Key Requirements: - Experience: 8-10+ years in quality program management or a similar role, with proven experience managing complex, cross-functional projects in fast-paced, tech-driven environments. - Technical Proficiency: Strong understanding of quality concepts and the ability to communicate complex ideas across diverse teams. Experience with robotics, automation, or key hardware-related areas such as compute, memory design and utilization is a plus. - Problem-Solving Mindset: Ability to manage and resolve complex challenges with little to no established playbooks, using creative and proven strategic thinking to drive solutions. - Cross-Functional Leadership: Demonstrated ability to work effectively across diverse teams (Engineering, Product, Operations, Partnerships, etc.). - Communication Skills: Exceptional verbal and written communication skills. Comfort in presenting Metrics and Quality approaches to senior leadership and external stakeholders. - Risk Management: Proven track record of identifying, managing, and mitigating risks in large, complex programs. - Adaptability: Comfortable with ambiguity and able to thrive in a fast-moving, constantly evolving environment. - Travel: Willing to travel domestically and internationally up to 20% Preferred Qualifications: - Bachelor’s or Master’s degree in Engineering (Mechanical, Electrical, Systems, or related field) - 8+ years of experience in product quality, manufacturing quality, or reliability engineering—preferably in component level, system hardware, robotics and/or autonomous systems - Proven experience across NPI phases (EVT, DVT, PVT, ramp, sustaining) - Deep expertise in quality systems: FMEA, SPC, CAPA, 8D, Six Sigma methodologies - Hands-on experience overseeing quality processes enabling checks and balances, developing supplier with “quality first” mindset - Strong background in reliability engineering and failure analysis - Experience with fleet-based or deployed systems is highly preferred If you thrive in dynamic environments, love solving complex challenges, and want to make an impact with cutting-edge technology, we’d love to hear from you! Day in the life - QE You spend your day turning messy, cross-functional problems into structured insights and scalable fixes—so the product works reliably at scale. Morning: Data, Triage, and Alignment You usually start by reviewing dashboards and overnight reports: - Fleet health metrics (uptime, failure rates, MTBF/MTTR) - Manufacturing yield and defect paretos from the previous build - Any critical field escalations or production line stops If something is off—say a spike in failures in a subsystem—you’ll quickly prioritize it for deeper investigation. From there, you jump into a cross-functional stand-up with hardware, software, manufacturing, and operations: - Align on top quality risks across EVT/DVT/PVT or production builds - Review open issues, owners, and timelines - Decide where escalation or additional resources are needed You’re setting the tone: what matters today, and what cannot slip. Mid-Morning: Deep Dive on Issues This is where you spend focused time on root cause analysis. Example scenarios: - A recurring field failure in the robotic fleet → you’re reviewing logs, diagnostic data, and failure modes with the firmware and systems teams - A yield drop at a contract manufacturer → digging into process changes, supplier variation, or test coverage gaps - A reliability test failure → working with engineering to understand whether it’s a design limitation or test artifact You’re not just asking “what failed”—you’re pushing toward: - Root cause clarity (not symptoms) - Containment actions (what do we do now?) - Permanent fixes (design, process, or supplier changes) Midday: Factory / Lab / Field Interface Depending on the phase of the program, this block varies: - During NPI builds (EVT/DVT/PVT): You’re on the line (physically or virtually), reviewing: - First pass yield - Assembly issues (DFA gaps) - Test coverage and escapes - During production: - Reviewing IQC/IPQC/OQC trends - Syncing with supplier quality teams on incoming defects - Auditing process controls and corrective actions - For fleet operations: - Meeting with field ops on triage trends - Reviewing top downtime drivers - Prioritizing fixes that impact uptime and serviceability Afternoon: Systems, Process, and Scaling This is where you zoom out from individual issues to system-level improvements. You might be: - Building or refining quality dashboards and KPIs - Defining new quality gates for upcoming builds or releases - Improving diagnostic frameworks so failures are easier to detect and classify - Working on automated test strategies (production or validation) This is also where AI and tooling come in: - Setting up automated anomaly detection on fleet or manufacturing data - Streamlining how issues are categorized and routed - Reducing manual triage work through smarter workflows The goal: make the system smarter so the same problems don’t repeat. Late Afternoon: Cross-Functional Reviews & Decisions You’ll often close the day in decision-making forums: - Design reviews (pushing for DFM/DFA improvements) - Quality reviews with leadership (status, risks, mitigation plans) - Supplier calls for escalations or performance management This is where you influence: - Whether a build proceeds or is gated - Whether a design is ready for the next phase - Where the team invests time and resources End of Day: Synthesis & Prioritization Before wrapping up, you: - Reassess top risks across product, manufacturing, and fleet - Ensure owners and timelines are clear for critical issues - Prepare concise updates for leadership (what’s broken, what’s improving, what’s at risk) What Makes the Role Unique: - You’re one of the few roles that sees the full picture—design → factory → field - You operate at both microscopic level (root cause) and system level (process + metrics) - You constantly balance speed vs. quality in a fast-moving hardware environment - No two days are the same—priorities shift based on real-world data Bedrock Robotics is an Equal Opportunity Employer We’re committed to building a diverse and inclusive workplace. We consider all qualified applicants for employment without regard to race, color, religion, sex, sexual orientation, gender identity, national origin, ancestry, age, disability, veteran status, genetic information, or any other protected characteristic. Reasonable Accommodations We want our hiring process to be accessible to everyone. If you need an accommodation to participate in the application or interview process, please let your recruiter know so we can support you. ## About Bedrock Robotics Inc ## Company Overview - **One-liner**: Bedrock Robotics brings advanced autonomy to heavy machinery, upgrading existing construction equipment for fully autonomous operation to help the industry build faster and safer. - **Entity Type**: Private (Series B) - **Headquarters**: San Francisco, California, United States - **Founded**: 2024 - **Founders**: Boris Sofman (Co-Founder & CEO), Kevin Peterson (Co-Founder & CTO), Tom Eliaz (Co-Founder & VP, Engineering), Laurent Hautefeuille (Co-Founder & VP, Engineering) ## Core Business - **Primary industry**: Robotics Engineering / Autonomous Heavy Equipment / Construction Technology - **Target customers**: B2B — construction companies, infrastructure developers, and heavy machinery fleet operators - **Mission or purpose**: Transforming how we develop the world by enabling the construction industry to build at the pace of societal demand through autonomous technology. ## Products & Services - **[Bedrock Operator]**: An autonomous system that retrofits existing heavy equipment (e.g., excavators) to operate independently, adapting to on-site challenges, tracking productivity, and delivering expert-level quality with superhuman safety. Type: Hardware + Software (Autonomy Platform). ## Market Standing - **Valuation**: Not publicly disclosed (latest funding round values the company at a significant premium). - **Key Metric**: Total Funding — $350M raised (Series B of $270M closed in early 2026). - **Notable Investors/Partners**: NVentures (NVIDIA), Valor Equity Partners, 8VC, Eclipse, Tishman Speyer, and 21+ other investors. Backed by key strategic partners in construction and real estate. - **Growth Signals**: - Headcount grew 5,950% YoY (from ~1 to 85 employees in its first year). - Named "Outperformer" among 15 companies including Caterpillar, Sandvik, and Epiroc by CB Insights. - Covered by The New York Times, Forbes, and Engineering News Record for major funding and field deployments. - Completed a major project removing 65,000 cubic yards of dirt on a Southwest construction site. ## Competitive Advantages - **Deep autonomy heritage**: Founding team spent years at Waymo perfecting autonomous systems for complex, safety-critical driving on public roads — a rare and transferable expertise. - **Real-world deployment**: Technology is proven on active construction sites (not just simulations), with tens of thousands of hours of field data. - **Retrofit model**: Upgrades existing heavy equipment rather than requiring new machinery, lowering adoption barriers for construction firms. - **Continuous improvement**: The Bedrock Operator learns and sharpens skills with every project, creating a data moat. ## Strategic Focus - Scaling deployment of autonomous heavy equipment across major construction projects (housing, data centers, energy, factories). - Expanding the range of machinery types that can be retrofitted. - Deepening partnerships with construction firms and equipment manufacturers. - Growing the engineering and field operations teams to accelerate product development and customer support. ## Why Work Here - **Culture**: A passionate, product-driven team that works hand-in-hand with customers. Emphasizes real-world impact — field tests on active construction sites generate as much excitement as breakthrough code. - **Work Environment**: Hybrid presence with offices in Downtown San Francisco, Soho (New York City), and test facilities in Texas and California. - **Perks**: Comprehensive health & well-being coverage, daily in-office meals, commuter benefits, unlimited time off, paid parental leave, 401k retirement plan. - **Engineering Focus**: Work on unsolved problems — bringing autonomous technology to market that will revolutionize construction. Exposure across product, technology, and business. First pair of steel-toed boots provided. - **Team**: Collaborate with a diverse group of experts from Waymo, Zoox, Cruise, Caterpillar, and other top robotics/autonomy companies. ## Sources 1. [bedrockrobotics.com](https://bedrockrobotics.com/) 2. [bedrockrobotics.com/about](https://bedrockrobotics.com/about) 3. [bedrockrobotics.com/careers](https://bedrockrobotics.com/careers) 4. [cbinsights.com](https://www.cbinsights.com/company/bedrock-robotics) 5. 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