Senior/Mechanical Engineer, Factory Automation
Listed on 2026-09-05
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Engineering
Mechanical Engineer, Systems Engineer, Automation & Mechatronics Engineer, Manufacturing Engineer
Divergent is building the new industrial age. Every day, our teams design, manufacture, and assemble advanced systems for some of the world’s most demanding industries. Our integrated engineering and manufacturing platform transforms complex designs into production-ready solutions, helping customers move faster, build smarter, and deliver critical systems when they matter most. Divergent is a qualified Tier 1 supplier to global automotive OEMs and supports leading U.S. aerospace and defense companies.
Join us and help push the boundaries of what can be built.
PurposeA Senior/Staff Mechanical Engineer on the Factory Automation team will own the mechanical design and deployment of automation systems that form the foundation of Divergent’s Adaptive Production Systems (DAPS). These systems will enable Divergent factories to rapidly reconfigure for simultaneous production of automotive, aerospace, and defense structures—eliminating the traditional tooling bottlenecks that constrain flexible manufacturing.
This is a hands‑on role with significant technical ownership. You will translate manufacturing and operational needs into robust mechanical designs, evaluate tradeoffs across performance, cost, reliability, manufacturability, and deployment speed, and drive complex mechanical systems from concept through production. The ideal candidate has a track record of independently architecting, designing, building, testing, and deploying complex mechanical systems, with strong experience in machine design, manufacturing methods, motion systems, and structures.
You will work on bleeding‑edge industrial automation systems and help develop technologies that have few existing precedents. By combining advanced automation, software, and factory data, you will contribute to a new model for flexible, sustainable manufacturing. Divergent is pushing the boundaries of what a factory can be, and we are looking for an engineer who thrives in a fast‑moving environment, operates with a high degree of autonomy, and wants to turn ambitious concepts to deployed hardware.
The Role- Own the mechanical design and development of significant automation systems and mechanical initiatives, from problem definition and concept development through detailed design, release, integration, validation, and deployment.
- Translate manufacturing and operational needs into clear system requirements, interfaces, constraints, and acceptance criteria, working closely with mechanical, electrical, controls, software, manufacture, and operations teams.
- Develop effective solutions to complex and evolving factory needs, balancing technical requirements with practical constraints around cost, schedule, manufacturability, and deployment.
- Develop mechanical architectures and detailed designs for complex automation systems using CAD, drawings, GD&T, tolerance analysis, engineering calculations, component selection, and bills of material, while ensuring designs meet system-level requirements.
- Apply broad mechanical engineering expertise across structures, mechanisms, precision motion, fluids, thermal systems, sealing, enclosures, and machine integration to solve challenging technical problems and deliver robust designs.
- Evaluate design alternatives and make sound technical tradeoffs across performance, reliability, safety, manufacturability, serviceability, cost, schedule, and technical risk.
- Identify technical and integration risks and path and execute appropriate analysis, prototyping, assembly, testing, troubleshooting, and design iteration to resolve them.
- Lead the resolution of complex technical issues within owned systems and incorporate lessons learned into design improvements and future development.
- Lead technical coordination across engineering, manufacturing quality, supply chain, suppliers, and other stakeholders; communicate technical decisions, status, risks, actions, and required support clearly.
- Contribute to engineering standards, design practices, system interfaces, and reusable designs that improve the speed and reliability of automation development and deployment.
- Drive technical readiness of owned systems through release, procurement, manufacturing…
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