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Lead Manufacturing Integration Engineer

Seurat Technologies
CompanySeurat Technologies
CategoryEngineering
LocationWilmington
RemoteOn-site (inferred)
EmploymentNot stated
LevelLead
SalaryNot stated by the employer
Posted21 Jul 2026
Last verified30 Jul 2026
SourceEmployer career page (greenhouse)
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Description
About Seurat Seurat is transforming manufacturing for people and our planet by delivering a scalable additive manufacturing solution to fundamentally change how products are made. Seurat’s proprietary Area Printing process, developed at Lawrence Livermore National Labs (LLNL), allows metal components to be manufactured at price points and quality levels that compete directly with conventional manufacturing techniques, enabling the reshoring of supply chains and promoting the decarbonization of industry. Seurat has raised over $180M and is backed by leading venture partners like Capricorn, NVentures (NVIDIA), True Ventures, General Motors Ventures, Denso, Porsche SE, SIP global partners, Honda, Xerox Ventures/Myriad Venture Partners, Cubit Capital, Siemens Energy, and Maniv Mobility. Lead Manufacturing Integration Engineer The Lead Manufacturing Integration Engineer owns the development and industrialization of advanced metal additively manufactured products. This role is responsible for guiding new products from concept through production release, collaborating across engineering, manufacturing, quality, and commercial teams to deliver innovative, manufacturable, and cost-effective solutions. This role is expected to work hands-on, lead cross-functional technical decisions, and create reusable standards that improve the speed and success of future launches.   New Product Development Lead cross-functional development of new metal additive manufactured products from concept through production launch. Evaluate customer requirements and convert them into manufacturable product designs. Develop and execute product development plans, including design reviews, risk assessments, and validation activities. Serve as the technical lead for new product introductions (NPI). Develop and define the end-to-end machining, heat treatment, finishing, and inspection processes. Establish manufacturing documentation including work instructions, SOP’s, and process control plans. Design Engineering Create and optimize 3D CAD models and engineering drawings. Apply Design for Additive Manufacturing (DfAM) principles to maximize performance, manufacturability, and cost efficiency. Design fixtures, tooling, supports, and secondary machining strategies. Perform engineering analyses including tolerance stack-ups, thermal distortion evaluation, and structural assessments. Participate in technical reviews, design discussions, and project planning meetings. Quality & Continuous Improvement Collaborate with Quality Engineering to develop inspection strategies and validation plans. Perform root cause analysis and corrective actions for manufacturing issues. Drive continuous improvement using Lean Manufacturing and Six Sigma methodologies. Support qualification and certification activities for aerospace, medical, defense, or industrial applications. Technology Development Evaluate emerging additive manufacturing post-processing technologies, materials, and software. Lead process development initiatives to improve part quality and manufacturing efficiency. Support equipment selection, installation, and commissioning of new manufacturing systems. Support quotation activities by estimating manufacturing costs and production timelines. Mentor junior engineers and contribute to engineering best practices. Required Qualifications Bachelor's degree in Mechanical Engineering, Manufacturing Engineering, Materials Engineering, or a related discipline. 7–10+ years of engineering experience in manufacturing or product development. 3+ years of experience with metal additive manufacturing technologies. Strong understanding of DfAM principles. Experience with CNC machining, tooling and fixture design, heat treatment, finishing, and secondary manufacturing processes. Proficiency with CAD software such as SolidWorks, Netfabb, nTop, and Magics or comparable tools E
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