{"version":"0.1","company":{"name":"YubHub","url":"https://yubhub.co","jobsUrl":"https://yubhub.co/jobs/skill/design-for-manufacturability"},"x-facet":{"type":"skill","slug":"design-for-manufacturability","display":"Design For Manufacturability","count":17},"x-feed-size-limit":100,"x-feed-sort":"enriched_at desc","x-feed-notice":"This feed contains at most 100 jobs (the most recently enriched). For the full corpus, use the paginated /stats/by-facet endpoint or /search.","x-generator":"yubhub-xml-generator","x-rights":"Free to redistribute with attribution: \"Data by YubHub (https://yubhub.co)\"","x-schema":"Each entry in `jobs` follows https://schema.org/JobPosting. YubHub-native raw fields carry `x-` prefix.","jobs":[{"@context":"https://schema.org","@type":"JobPosting","identifier":{"@type":"PropertyValue","name":"YubHub","value":"job_30e8cb24-1dc"},"title":"Aerostructures Design Manager","description":"<p>Shield AI is seeking an Aerostructures Design Manager to support the development of mechanisms for our next-generation autonomous aircraft. As a contributor on the Launch and Recovery Vehicle team, you will lead the design and development of high-performance mechanisms from concept through production release.</p>\n<p>In this role, you&#39;ll lead and contribute to the development of complex, mission-critical technologies while guiding a talented team to deliver at a high level. Blending hands-on technical work with leadership, you&#39;ll help drive innovation, solve challenging problems, and bring cutting-edge systems from concept to reality.</p>\n<p><strong>Functional Excellence:</strong></p>\n<ul>\n<li>Directly contribute to the design, analysis, and integration of mechanical systems and subsystems for X-BAT Launch and Recovery Vehicle.</li>\n<li>Establish and improve pragmatic mechanical engineering standards, templates, specifications, and best practices that increase design quality, reduce rework, and enable faster iteration.</li>\n<li>Own mechanical engineering deliverables across the product lifecycle,from early concept and prototyping through test, production, and field support,with a bias toward execution and delivery.</li>\n<li>Own failure mode analysis and reliability modeling for mechanical systems, establish lightweight, repeatable practices (e.g., FMEA, fault trees) that proactively identify risks, reduce field failures, and inform design tradeoffs.</li>\n<li>Partner closely with Engineering, Manufacturing, Supply Chain, Quality, Program Management, and Flight Operations to ensure designs are buildable, testable, and reliable in real-world environments.</li>\n<li>Provide hands-on technical support during ground and flight testing, demos, and field operations; rapidly troubleshoot and implement design fixes under tight timelines.</li>\n</ul>\n<p><strong>Team Leadership and Development:</strong></p>\n<ul>\n<li>Lead, mentor, and develop a team of mechanical engineers, providing technical guidance, regular feedback, and clear expectations for ownership and execution.</li>\n<li>Recruit and hire experienced mechanical engineers to strengthen team capability, elevate technical standards, and improve mentorship depth.</li>\n<li>Act as a player-coach: balance meaningful individual technical contribution with team leadership, design reviews, and day-to-day unblock of engineers.</li>\n<li>Establish team norms around accountability, decision-making speed, and engineering rigor,ensuring high-quality output without slowing momentum.</li>\n<li>Set clear priorities aligned with program goals; actively manage team bandwidth, identify risks early, and communicate tradeoffs to leadership.</li>\n<li>Drive clear and concise technical communication, ensuring design decisions, assumptions, and tradeoffs are well-documented and understood across functions.</li>\n</ul>\n<p><strong>Required qualifications:</strong></p>\n<ul>\n<li>Bachelor’s degree in Mechanical Engineering, Aerospace Engineering, or related discipline.</li>\n<li>10+ years of experience in mechanical design for aerospace, ground support equipment, or related ruggedized hardware systems.</li>\n<li>3+ years of leadership/manger with demonstrated excellence in building, retaining, and leading a high performing engineering team</li>\n<li>Proficiency in 3D CAD software (NX preferred) with demonstrated ability to create detailed GD&amp;T-compliant 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You will work closely with designers to collaborate on design for manufacturability, technicians to ensure they have what they need to keep building hardware, and test teams to collaboratively produce the future of communication satellites.</p>\n<p>Your key responsibilities will include:</p>\n<ul>\n<li>Design high-level architecture and manage vehicle integration and test operations</li>\n<li>Define and author flight hardware integration flows, plans, processes, and procedures</li>\n<li>Evaluate proposed designs for manufacturability and integration</li>\n<li>Evaluate non-conformances to determine root cause and create actionable items and system improvements</li>\n<li>Work hands-on with flight hardware at build, test and launch sites to ensure mission success</li>\n<li>Design ground support equipment to assist with the assembly, integration and test of the spacecraft</li>\n<li>Create, maintain and communicate detailed schedules, ensuring the team is aware of tasks and deadlines, including resource identification and acquisition</li>\n<li>Assist in recruiting, interviewing, and hiring additional teammates to our rapidly-growing team</li>\n</ul>\n<p>Requirements include:</p>\n<ul>\n<li>Bachelor&#39;s of Science degree in mechanical engineering, aerospace engineering, or equivalent</li>\n<li>2+ years experience in hands-on mechanical engineering, manufacturing, or equivalent role (including internships or club experience)</li>\n<li>Hands-on experience with handling, lifting, or building complex assemblies</li>\n<li>A passion for hardware development, including working in a fast-pace environment and hands-on design and/or process and development</li>\n<li>Ability to not only find problems, but also quickly identify and evaluate multiple solutions</li>\n<li>Strong communication skills</li>\n<li>Strong organizational skills and attention to detail</li>\n<li>Ability to handle multiple tasks and prioritize</li>\n<li>Strong sense of accountability, integrity, and team focus with extensive multitasking and organizational experience</li>\n</ul>\n<p>We offer a compensation package that includes equity and robust benefits. 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In addition to being a significant individual on your own, you will mentor and train junior mechanical engineers on such projects.</p>\n<p>Key responsibilities include:</p>\n<ul>\n<li>Complete ownership of product outcomes for spaceflight hardware, with a focus on high frequency active and passive RF and digital electronics</li>\n<li>Develop requirements for subsystems and components including loads, interfaces, and functional requirements</li>\n<li>Perform mechanical design and analysis of complex electronics enclosures to satisfy launch and on-orbit requirements</li>\n<li>Develop and define design best practices for future programs</li>\n<li>Manage system level schedule and integration requirements for your components while working together with the Assembly, Integration, and Test team to enable a smooth build process</li>\n</ul>\n<p>Requirements include:</p>\n<ul>\n<li>B.S. or M.S in mechanical, electrical, aerospace engineering, or equivalent</li>\n<li>4 - 15+ years of mechanical design or equivalent experience</li>\n<li>3+ years designing, analyzing, and testing active or passive high frequency RF electronics packages</li>\n<li>Familiarity with chip and wire and splitblock construction</li>\n<li>Strong CAD design and Finite Element analysis skills</li>\n<li>Experience with GD&amp;T and designing for manufacturability</li>\n<li>Demonstrated ability to personally design, evaluate, and procure complex mechanical assemblies with 30-40 components in aerospace or similar</li>\n<li>A passion for hardware development, including working in a fast-paced environment with hands-on design and development</li>\n<li>A motivated leader who has experience mentoring and supporting junior engineers</li>\n</ul>\n<p>Bonus requirements include:</p>\n<ul>\n<li>Experience with Ku, Ka, and Q/V band electronics package development for space missions</li>\n<li>Experience with thermal analysis and thermal management techniques for RF electronics in space applications, including with heat pipes</li>\n<li>Experience with vibration environments and mechanical testing on spacecraft components</li>\n<li>Experience with brazed construction techniques for RF packages</li>\n<li>Experience in synthesizing requirements and flowing them down to sub-scale verification builds and testing</li>\n</ul>\n<p>What we offer:</p>\n<ul>\n<li>All our positions offer a compensation package that includes equity and robust benefits</li>\n<li>Base pay is just one component of Astranis&#39;s total rewards package</li>\n<li>Your compensation also includes a significant equity package via incentive stock options, high-quality company-subsidized healthcare, disability and life insurance, 401(k) retirement planning, flexible PTO, and free on-site catered meals</li>\n<li>Astranis pay ranges are informed and defined through professional-grade salary surveys and compensation data sources</li>\n<li>The actual base salary offered to a successful candidate will additionally be influenced by a variety of factors including experience, credentials &amp; 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We&#39;re developing modern, aerospace- and automotive-inspired techniques to build our hulls, batteries, cooling systems, firmware, and software.</p>\n<p><strong>What we&#39;re looking for</strong></p>\n<p>We&#39;re seeking a Manufacturing Engineer to join our team, reporting to the Manager, Manufacturing Engineering. 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You should also have proven ability to perform root cause analysis and apply a basic understanding of electrical components for troubleshooting.</p>\n<p>Nice to have: experience with Python, MATLAB, C/C++, or other scripting languages for data analysis and test automation, familiarity with project and documentation management tools like Jira and Confluence, experience in the aerospace, defense, or robotics industry, and a strong sense of urgency and adaptability in a fast-paced, rapidly evolving environment.</p>\n<p style=\"margin-top:24px;font-size:13px;color:#666;\">XML job scraping automation by <a href=\"https://yubhub.co\">YubHub</a></p>","url":"https://yubhub.co/jobs/job_76557e99-e9c","directApply":true,"hiringOrganization":{"@type":"Organization","name":"Anduril","sameAs":"https://www.anduril.com","logo":"https://logos.yubhub.co/anduril.com.png"},"x-apply-url":"https://job-boards.greenhouse.io/andurilindustries/jobs/5116721007","x-work-arrangement":"onsite","x-experience-level":"mid","x-job-type":"full-time","x-salary-range":"$113,000-$155,000 USD","x-skills-required":["LabVIEW","NX CAD","DAQ systems","Physical testing","Mechanical, electrical, and electromechanical systems","Electric motors","Electromechanical actuators","Dynamometer testing","Torque transducers","Oscilloscopes","Servo control principles","Motor controllers","Embedded control systems","Communication protocols","MIL-STD-810 standards","CAD software","Design for manufacturability"],"x-skills-preferred":["Python","MATLAB","C/C++","Scripting languages","Project and documentation management tools","Jira","Confluence","Aerospace, defense, or robotics industry"],"datePosted":"2026-04-24T15:17:12.463Z","jobLocation":{"@type":"Place","address":{"@type":"PostalAddress","addressLocality":"Costa Mesa, California, United States"}},"employmentType":"FULL_TIME","occupationalCategory":"Engineering","industry":"Aerospace and Defense","skills":"LabVIEW, NX CAD, DAQ systems, Physical testing, Mechanical, electrical, and electromechanical systems, Electric motors, Electromechanical actuators, Dynamometer testing, Torque transducers, Oscilloscopes, Servo control principles, Motor controllers, Embedded control systems, Communication protocols, MIL-STD-810 standards, CAD software, Design for manufacturability, Python, MATLAB, C/C++, Scripting languages, Project and documentation management tools, Jira, Confluence, Aerospace, defense, or robotics industry","baseSalary":{"@type":"MonetaryAmount","currency":"USD","value":{"@type":"QuantitativeValue","minValue":113000,"maxValue":155000,"unitText":"YEAR"}}},{"@context":"https://schema.org","@type":"JobPosting","identifier":{"@type":"PropertyValue","name":"YubHub","value":"job_fb7f18c9-4be"},"title":"Manufacturing Engineer","description":"<p>We are looking for a Manufacturing Engineer to join our rapidly growing team in Quincy, MA. In this role, you will be responsible for rapidly iterating and building cutting-edge Autonomous Underwater Vehicles. 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Sydney","description":"<p>Job Title: Manufacturing Engineer - Sydney</p>\n<p>We are seeking a Manufacturing Engineer with a Mechanical/Mechatronic Engineering background to join our team in Sydney, Australia.</p>\n<p>As a Manufacturing Engineer, you will leverage deep technical expertise to solve complex manufacturing challenges, drive technology insertion, and ensure the manufacturability of next-generation products from the earliest stages of design.</p>\n<p>Key Responsibilities:</p>\n<ul>\n<li>Provide expert Design for Manufacturability (DFM) and Design for Assembly (DFA) feedback, influencing designs to ensure they are compatible with capable and cost-effective manufacturing processes.</li>\n</ul>\n<ul>\n<li>Analyze engineering drawings, material selections, and tolerance stacks to identify and mitigate manufacturing risks early in the product lifecycle.</li>\n</ul>\n<ul>\n<li>Investigate and resolve production line-down situations, assembly problems, process deviations, and tooling issues to minimize downtime and maintain schedule.</li>\n</ul>\n<ul>\n<li>Provide clear and concise interpretation of engineering drawings, specifications, and work instructions to the production team.</li>\n</ul>\n<ul>\n<li>Develop, maintain, and continuously improve detailed manufacturing work instructions, assembly guides, and Standard Operating Procedures (SOPs) to ensure clarity, repeatability, and quality.</li>\n</ul>\n<ul>\n<li>Manage these requirements within Anduril’s MES.</li>\n</ul>\n<ul>\n<li>Serve as the technical lead for investigating complex or systemic production issues, conducting deep-dive Root Cause Analysis (RCA) to identify fundamental process flaws.</li>\n</ul>\n<ul>\n<li>Develop novel tooling solutions for fabrication and assembly of structural parts.</li>\n</ul>\n<ul>\n<li>Assess the process impact of Engineering Change Notices (ECNs) and define the necessary requalification and validation activities.</li>\n</ul>\n<ul>\n<li>Provide support to Supply Chain in the technical qualification and development of critical suppliers, assessing their process capabilities to meet demanding engineering requirements.</li>\n</ul>\n<ul>\n<li>Collaborate on the design and optimization of workstation and production line layouts to enhance ergonomics, safety, and efficiency.</li>\n</ul>\n<ul>\n<li>Foster a collaborative environment that encourages knowledge sharing and team engagement.</li>\n</ul>\n<p>Requirements:</p>\n<ul>\n<li>5+ years of hands-on experience in a manufacturing environment (e.g., aerospace, defense, medical device, complex electronics).</li>\n</ul>\n<ul>\n<li>Bachelor’s degree in Manufacturing Engineering, Mechanical Engineering, Industrial Engineering, or a related technical field.</li>\n</ul>\n<ul>\n<li>Proven ability to troubleshoot technical manufacturing issues and lead root cause analysis.</li>\n</ul>\n<ul>\n<li>Experience with Lean Manufacturing and continuous improvement methodologies.</li>\n</ul>\n<ul>\n<li>Demonstrated experience reading and interpreting complex engineering drawings, schematics, and specifications, including a strong understanding of GD&amp;T (Geometric Dimensioning and Tolerancing).</li>\n</ul>\n<ul>\n<li>Excellent communication and interpersonal skills, with the ability to work effectively with operators, technicians, and senior management.</li>\n</ul>\n<ul>\n<li>Prior knowledge and interaction with a Manufacturing Execution System (MES) for production operations</li>\n</ul>\n<ul>\n<li>Prior knowledge of Oracle (ERP), Teamcenter (PLM) or similar systems.</li>\n</ul>\n<ul>\n<li>Ability to obtain and maintain an Australian Government Security Clearance (NV2).</li>\n</ul>\n<p>Preferred Qualifications:</p>\n<ul>\n<li>Production line design and set up including Value Stream Mapping, material flow, workstation and tooling design.</li>\n</ul>\n<ul>\n<li>Experience with work instruction authoring and MBOM configuration.</li>\n</ul>\n<ul>\n<li>Experience with CAD software (NX, Solidworks, Siemens/Teamcenter)</li>\n</ul>\n<p>Salary Range: An estimate based on a wide range of compensation factors, inclusive of base salary only. 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As a Manufacturing Engineer, you will be responsible for rapidly iterating and building cutting-edge Autonomous Underwater Vehicles. This responsibility includes Design for Manufacturability, tool design &amp; selection, process creation &amp; optimization, vendor sourcing &amp; interaction, quality planning, and work documentation associated with the hardware that the Manufacturing Engineer owns.</p>\n<p>Key responsibilities include:</p>\n<ul>\n<li>Owning a portion or all of the manufacturing value chain for a certain product or set of products</li>\n<li>Writing documentation required for successfully manufacturing their hardware at scale, such as work instructions, quality plans, inspection requirements, etc.</li>\n<li>Developing process flows, breaking down large, complex assemblies into a logical part flow of subassemblies and sub-processes</li>\n<li>Working with contract manufacturers across various disciplines (PCBA fab, metal/plastic manufacturing, assembly, etc.) to develop repeatable, sustained processes for quick-turn development as well as at-scale production</li>\n<li>Working with technicians and other engineers in a hands-on fashion building prototype hardware</li>\n<li>Developing novel tooling solutions for fabrication and assembly of structural parts</li>\n<li>Contributing to end-customer hardware mechanical or electrical design, including interconnects, board fabrication and inspection, etc.</li>\n</ul>\n<p>Requirements include:</p>\n<ul>\n<li>Degree in a technical field such as engineering, math, or a hard science</li>\n<li>3+ years of experience in a relevant field, preferably manufacturing or design of electromechanical hardware</li>\n<li>Demonstrated ability to deliver electromechanical hardware to spec in a start-up environment</li>\n<li>Personal experience physically manufacturing hardware via any means (machining, fabrication, soldering, assembly, etc.). 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rapidly troubleshoot and implement design fixes under tight timelines.</p>\n<p><strong>Team Leadership and Development:</strong></p>\n<p>Lead, mentor, and develop a team of mechanical engineers, providing technical guidance, regular feedback, and clear expectations for ownership and execution.</p>\n<p>Recruit and hire experienced mechanical engineers to strengthen team capability, elevate technical standards, and improve mentorship depth.</p>\n<p>Act as a player-coach: balance meaningful individual technical contribution with team leadership, design reviews, and day-to-day unblock of engineers.</p>\n<p>Establish team norms around accountability, decision-making speed, and engineering rigor,ensuring high-quality output without slowing momentum.</p>\n<p>Set clear priorities aligned with program goals; actively manage team bandwidth, identify risks early, and communicate tradeoffs to leadership.</p>\n<p>Drive clear and concise technical communication, ensuring design decisions, assumptions, and tradeoffs are well-documented and understood across functions.</p>\n<p style=\"margin-top:24px;font-size:13px;color:#666;\">XML job scraping automation by <a href=\"https://yubhub.co\">YubHub</a></p>","url":"https://yubhub.co/jobs/job_e9af4ede-264","directApply":true,"hiringOrganization":{"@type":"Organization","name":"Shield AI","sameAs":"https://www.shield.ai","logo":"https://logos.yubhub.co/shield.ai.png"},"x-apply-url":"https://jobs.lever.co/shieldai/f6f121b7-1e56-49bb-b540-99dafe1b1ff2","x-work-arrangement":"onsite","x-experience-level":"senior","x-job-type":"full-time","x-salary-range":"$180,000 - $270,000 a year","x-skills-required":["Mechanical design","Aerospace engineering","Ground support equipment","3D CAD software","NX","GD&T-compliant component and assembly 3D models and drawings","Drawing templates/standards","Design/manufacturing specifications","Industry standards (ASME, ISO, ASTM)","Regulatory requirements","Engineering analysis methods (FEA, stress, thermal, tolerance stack-up, fatigue, fluid flow)","Reliability modeling and analysis methods","Root cause analysis and structured problem-solving","Manufacturing processes (machining, sheet metal, injection molding, casting, additive manufacturing, composite layup)"],"x-skills-preferred":["Bachelor's degree in Mechanical Engineering or closely related field","Knowledge of manufacturing processes","Ability to design for manufacturability (DFM)","Familiarity with MIL-STD requirements and environmental qualification testing"],"datePosted":"2026-04-17T13:05:23.499Z","jobLocation":{"@type":"Place","address":{"@type":"PostalAddress","addressLocality":"Dallas"}},"employmentType":"FULL_TIME","occupationalCategory":"Engineering","industry":"Technology","skills":"Mechanical design, Aerospace engineering, Ground support equipment, 3D CAD software, NX, GD&T-compliant component and assembly 3D models and drawings, Drawing templates/standards, Design/manufacturing specifications, Industry standards (ASME, ISO, ASTM), Regulatory requirements, Engineering analysis methods (FEA, stress, thermal, tolerance stack-up, fatigue, fluid flow), Reliability modeling and analysis methods, Root cause analysis and structured problem-solving, Manufacturing processes (machining, sheet metal, injection molding, casting, additive manufacturing, composite layup), Bachelor's degree in Mechanical Engineering or closely related field, Knowledge of manufacturing processes, Ability to design for manufacturability (DFM), Familiarity with MIL-STD requirements and environmental qualification testing","baseSalary":{"@type":"MonetaryAmount","currency":"USD","value":{"@type":"QuantitativeValue","minValue":180000,"maxValue":270000,"unitText":"YEAR"}}},{"@context":"https://schema.org","@type":"JobPosting","identifier":{"@type":"PropertyValue","name":"YubHub","value":"job_9db2e7a8-dc1"},"title":"Senior Engineer, Manufacturing","description":"<p>We are seeking a highly skilled Manufacturing Engineer to support the fabrication and assembly of advanced composite airframe for next-generation aircraft. 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Unlike traditional production roles, this position emphasizes adaptability, creativity, and speed.</p>\n<p>You will routinely machine first-of-their-kind parts, refine processes in real time, and contribute to design decisions through hands-on feedback and Design for Manufacturability (DFM) insights.</p>\n<p>Success in this role requires deep technical expertise in multi-axis CNC machining, along with the judgment to balance precision, efficiency, and urgency.</p>\n<p>You will be expected to independently manage complex jobs from programming through final inspection, while also navigating shifting priorities and incomplete data.</p>\n<p>The ability to problem-solve on the fly,whether addressing tolerance challenges, optimizing toolpaths, or developing quick-turn fixturing,is essential.</p>\n<p>This role also carries a leadership component. As a Level 4 machinist, you will help set the standard for technical excellence on the shop floor, mentor less experienced team members, and contribute to building scalable prototype machining processes that support rapid product development.</p>\n<p>Your work will directly impact the speed, quality, and success of Shield AI’s hardware programs.</p>\n<p><strong>Responsibilities:</strong></p>\n<ul>\n<li>Program, set up, and operate 3-, 4-, and 5-axis CNC machines for prototype and short-run parts</li>\n<li>Develop and optimize CAM programs and G-code for speed, flexibility, and precision</li>\n<li>Interpret CAD models, drawings, and GD&amp;T to determine optimal machining strategies</li>\n<li>Collaborate directly with design engineers to provide DFM (Design for Manufacturability) feedback</li>\n<li>Execute rapid iteration cycles, including same-day or next-day part turnaround when required</li>\n<li>Design and implement quick-turn fixturing and workholding solutions</li>\n<li>Troubleshoot machining challenges in real time (tooling issues, deflection, tolerance stack-ups)</li>\n<li>Select appropriate cutting tools, feeds/speeds, and strategies for a wide range of materials</li>\n<li>Support first article inspection and ensure parts meet design intent and quality standards</li>\n<li>Document setups and processes while maintaining flexibility for evolving designs</li>\n<li>Mentor junior machinists and help elevate team capability</li>\n<li>Maintain a strong focus on safety, quality, and mission urgency</li>\n</ul>\n<p><strong>Work Environment:</strong></p>\n<ul>\n<li>Fast-paced R&amp;D and prototype machine shop</li>\n<li>Frequent priority shifts based on engineering and mission needs</li>\n<li>High-mix, low-volume work with constant design iteration</li>\n<li>Hands-on role requiring close collaboration with cross-functional teams</li>\n</ul>\n<p><strong>Requirements:</strong></p>\n<ul>\n<li>High school diploma or GED required; technical certification or associate degree in machining/CNC preferred</li>\n<li>7–10+ years of CNC machining experience, including advanced programming and setup</li>\n<li>Proven expertise in multi-axis machining (3-, 4-, and 5-axis)</li>\n<li>Advanced proficiency with CAM software (e.g., Mastercam, Fusion 360, or equivalent)</li>\n<li>Strong ability to read and interpret complex blueprints and GD&amp;T</li>\n<li>Demonstrated experience machining tight-tolerance, high-precision parts</li>\n<li>Deep understanding of cutting tools, feeds/speeds, and material behavior (e.g., aluminum, steel, titanium)</li>\n<li>Ability to create, edit, and optimize G-code programs</li>\n<li>Extensive experience with setup, fixturing, and workholding design</li>\n<li>Proven troubleshooting skills for machining issues, tool wear, and process inefficiencies</li>\n<li>Experience with quality inspection tools (micrometers, calipers, etc.)</li>\n<li>Strong knowledge of safety standards and manufacturing best practices</li>\n<li>Ability to work independently with minimal supervision and manage multiple priorities</li>\n</ul>\n<p><strong>Preferred Qualifications:</strong></p>\n<ul>\n<li>Associate’s or bachelor’s degree in Manufacturing Engineering, Mechanical Engineering, or related field</li>\n<li>Experience in aerospace, defense, or medical device manufacturing (high-mix, tight-tolerance environments)</li>\n<li>Familiarity with 5-axis simultaneous machining and advanced toolpath strategies</li>\n<li>Experience with CAD modeling (SolidWorks, NX, etc.)</li>\n<li>Knowledge of fixture and tooling design, including custom workholding solutions</li>\n<li>Experience with post-processor editing or customization</li>\n<li>Exposure to automation systems (robotics, pallet pools, lights-out machining)</li>\n<li>Understanding of lean manufacturing, Six Sigma, or continuous improvement methodologies</li>\n<li>Experience using ERP/MES systems (e.g., Palantir, JobBOSS, MaintainX )</li>\n<li>Familiarity with AS9100, ISO 9001, or other quality management systems</li>\n<li>Ability to collaborate in DFM activities, mentor junior team members, or provide technical guidance</li>\n<li>Strong documentation skills for setup sheets, work instructions, and process standardization</li>\n<li>Experience in machining exotic or difficult-to-machine materials (e.g., Inconel, titanium alloys, composites)</li>\n</ul>\n<p><strong>Salary and Benefits:</strong></p>\n<ul>\n<li>Pay within range listed + Bonus + Benefits + Equity</li>\n<li>Temporary employee offer package: Pay within range listed above + temporary benefits package (applicable after 60 days of employment)</li>\n</ul>\n<p><strong>How to Apply:</strong></p>\n<p>Please submit your application through our website.</p>\n<p>Note: All offers are contingent on a cleared background and possible reference check. Military fellows and part-time employees are not eligible for benefits.</p>\n<p style=\"margin-top:24px;font-size:13px;color:#666;\">XML job scraping automation by <a href=\"https://yubhub.co\">YubHub</a></p>","url":"https://yubhub.co/jobs/job_37191350-23b","directApply":true,"hiringOrganization":{"@type":"Organization","name":"Shield AI","sameAs":"https://www.shield.ai","logo":"https://logos.yubhub.co/shield.ai.png"},"x-apply-url":"https://jobs.lever.co/shieldai/24cc91f1-1558-4911-8777-6726a0e5acc8","x-work-arrangement":"onsite","x-experience-level":"staff","x-job-type":"full-time","x-salary-range":"$38 - $58 an hour","x-skills-required":["CNC machining","CAM software","CAD modeling","GD&T","Design for Manufacturability","G-code programming","Setup and fixturing","Workholding design","Troubleshooting","Quality inspection","Safety standards","Manufacturing best practices"],"x-skills-preferred":["5-axis simultaneous machining","Advanced toolpath strategies","Post-processor editing","Custom workholding solutions","Automation systems","Lean manufacturing","Six Sigma","ERP/MES systems","Quality management systems","Exotic material machining"],"datePosted":"2026-04-17T13:00:52.895Z","jobLocation":{"@type":"Place","address":{"@type":"PostalAddress","addressLocality":"Dallas"}},"employmentType":"FULL_TIME","occupationalCategory":"Engineering","industry":"Technology","skills":"CNC machining, CAM software, CAD modeling, GD&T, Design for Manufacturability, G-code programming, Setup and fixturing, Workholding design, Troubleshooting, Quality inspection, Safety standards, Manufacturing best practices, 5-axis simultaneous machining, Advanced toolpath strategies, Post-processor editing, Custom workholding solutions, Automation systems, Lean manufacturing, Six Sigma, ERP/MES systems, Quality management systems, Exotic material machining"},{"@context":"https://schema.org","@type":"JobPosting","identifier":{"@type":"PropertyValue","name":"YubHub","value":"job_3daacf47-f54"},"title":"Component and Product Quality Engineer, Interconnects","description":"<p><strong>Component and Product Quality Engineer, Interconnects</strong></p>\n<p><strong>About the Team</strong></p>\n<p>OpenAI&#39;s Hardware organization develops silicon and system-level solutions designed for the unique demands of advanced AI workloads. The team is responsible for building the next generation of AI-native silicon while working closely with software and research partners to co-design hardware tightly integrated with AI models. In addition to delivering production-grade silicon for OpenAI&#39;s supercomputing infrastructure, the team also creates custom design tools and methodologies that accelerate innovation and enable hardware optimized specifically for AI.</p>\n<p><strong>About the Role</strong></p>\n<p>OpenAI&#39;s Hardware organization builds supercompute platforms from silicon and boards to full rack-scale systems to power advanced AI workloads. This role owns end-to-end quality for high-speed interconnect hardware across the product lifecycle: early design influence, supplier/contract manufacturer readiness, qualification, ramp, and fleet quality in lab and data center environments.</p>\n<p>You will be the quality lead for advanced interconnect components and assemblies, including high-speed copper cables, cable cartridges, patch panels, backplane/cable-backplane solutions, high-speed connectors, and related electro-mechanical interfaces. You will partner closely with electrical, mechanical, SI/PI, systems, reliability, operations, and external vendors to prevent escapes and drive rapid, data-driven containment and corrective action.</p>\n<p><strong>Responsibilities</strong></p>\n<ul>\n<li>Own quality for advanced interconnect components and assemblies: high-speed connectors, high-speed copper cables, cable cartridges (e.g., ultra-pass / cable cassette style assemblies), patch panels &amp; optics, and backplane/cable-backplane interconnect solutions.</li>\n</ul>\n<ul>\n<li>Drive quality-by-design: participate in design reviews, DFM/DFx, tolerance stacks, material and plating selections, connector mating strategy, strain relief, and assembly methods to reduce variation and field failures.</li>\n</ul>\n<ul>\n<li>Define and track quality and reliability metrics (DPPM, yield, escapes, RMA/FRACAS trends, Cpk/Ppk where applicable) for interconnects across NPI and mass production.</li>\n</ul>\n<ul>\n<li>Build and execute qualification strategies for cables/connectors/patch panels (mechanical, environmental, electrical, and reliability), including test coverage, sample plans, clear pass/fail criteria, defining installation criteria and processes, optics termination quality management and setting fiber standards criteria.</li>\n</ul>\n<ul>\n<li>Partner with engineering and operations to drive smooth ramp: risk assessments, pilot build learnings, change control, and readiness reviews (EVT/DVT/PVT/MP or equivalent phases).</li>\n</ul>\n<ul>\n<li>Own supplier and CM performance management: scorecards, audits (process and quality system), and follow-up to close findings with verified effectiveness</li>\n</ul>\n<ul>\n<li>Work with suppliers to improve manufacturing throughput, stability, and yields for cable and connector assembly processes (e.g., wire prep, welding/crimping, overmolding/injection molding, plating, and assembly fixturing).</li>\n</ul>\n<ul>\n<li>Lead rapid containment and root-cause investigations for failures found during bring-up, system integration tests, reliability testing, and fleet deployments.</li>\n</ul>\n<ul>\n<li>Own the end-to-end corrective action process (8D, 5-Whys, Ishikawa, DOE as needed): define problem statements, isolate variables, validate root cause, implement fixes, and verify effectiveness.</li>\n</ul>\n<ul>\n<li>Partner with SI/PI and test teams to correlate electrical performance issues (e.g., link margin, BER, eye closure, impedance discontinuities, PAM4, TDR and VNA) with manufacturing and mechanical drivers (connector wear, plating, contamination, misalignment, cable routing, assembly variation).</li>\n</ul>\n<ul>\n<li>Support integration and deployment of OpenAI supercompute racks in lab and data center environments; identify quality risks tied to shipping, handling, installation, and service operations.</li>\n</ul>\n<p><strong>Requirements</strong></p>\n<ul>\n<li>Bachelor&#39;s degree in Electrical Engineering, Mechanical Engineering, Materials Science, or related field.</li>\n</ul>\n<ul>\n<li>5+ years of experience in quality engineering, with a focus on high-speed interconnects and electro-mechanical assemblies.</li>\n</ul>\n<ul>\n<li>Strong understanding of quality principles, including Six Sigma, Lean, and Design for Manufacturability (DFM).</li>\n</ul>\n<ul>\n<li>Experience with quality management systems, such as ISO 9001, and regulatory requirements, such as IEC 62368.</li>\n</ul>\n<ul>\n<li>Strong analytical and problem-solving skills, with the ability to analyze complex data and identify root causes.</li>\n</ul>\n<ul>\n<li>Excellent communication and collaboration skills, with the ability to work effectively with cross-functional teams.</li>\n</ul>\n<ul>\n<li>Experience with test and measurement equipment, such as oscilloscopes, signal generators, and network analyzers.</li>\n</ul>\n<ul>\n<li>Familiarity with simulation tools, such as ANSYS and COMSOL.</li>\n</ul>\n<ul>\n<li>Experience with data analysis and visualization tools, such as Excel, Python, and Tableau.</li>\n</ul>\n<p><strong>Preferred Qualifications</strong></p>\n<ul>\n<li>Master&#39;s degree in Electrical Engineering, Mechanical Engineering, Materials Science, or related field.</li>\n</ul>\n<ul>\n<li>8+ years of experience in quality engineering, with a focus on high-speed interconnects and electro-mechanical assemblies.</li>\n</ul>\n<ul>\n<li>Experience with advanced quality tools, such as Failure Mode and Effects Analysis (FMEA) and Design of Experiments (DOE).</li>\n</ul>\n<ul>\n<li>Familiarity with artificial intelligence and machine learning concepts and applications.</li>\n</ul>\n<ul>\n<li>Experience with cloud-based quality management systems, such as Salesforce and ServiceNow.</li>\n</ul>\n<p><strong>Salary and Benefits</strong></p>\n<ul>\n<li>Salary: $123K – $285K</li>\n</ul>\n<ul>\n<li>Offers Equity</li>\n</ul>\n<ul>\n<li>Medical, dental, and vision insurance for you and your family, with employer contributions to Health Savings Accounts</li>\n</ul>\n<ul>\n<li>Pre-tax accounts for Health FSA, Dependent Care FSA, and commuter expenses (parking and transit)</li>\n</ul>\n<ul>\n<li>401(k) retirement plan with employer match</li>\n</ul>\n<ul>\n<li>Paid parental leave (up to 24 weeks for birth parents and 20 weeks for non-birthing parents), plus paid medical and caregiver leave (up to 8 weeks)</li>\n</ul>\n<ul>\n<li>Paid time off: flexible PTO for exempt employees and up to 15 days annually for non-exempt employees</li>\n</ul>\n<ul>\n<li>13+ paid company holidays, and multiple paid coordinated company office closures throughout the year for focus and recharge, plus paid sick or safe time (1 hour per 30 hours worked, or more, as required by applicable state or local law)</li>\n</ul>\n<ul>\n<li>Mental health and wellness support</li>\n</ul>\n<ul>\n<li>Employer-paid basic life and disability coverage</li>\n</ul>\n<ul>\n<li>Annual learning and development stipend to fuel your professional 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