Senior Advanced Manufacturing Engineer
DivergentTorrance, California, United States$122k – $168kPosted 26 March 2026
Tech Stack
Job Description
Divergent is a technology company that has architected, invented, built, and commercialized an end-to-end factory system called the Divergent Adaptive Production System (DAPS) that comprehensively uses machine learning to optimally engineer, additively manufacture, and flexibly assemble complex integrated vehicle structures and subsystems. Products created using DAPS are superior in performance, lower in cost, rapidly customizable to meet mission and customer-specific requirements, faster to market, and scalable on demand to high volume production. Divergent is a qualified Tier 1 supplier to global automotive OEMs, and Divergent is now expanding to support mission critical needs in the Aerospace and Defense sector. Join us to be a part of this transformative journey, where your impact will shape the future of technology and production.
Purpose
This role serves as the technical bridge between design/manufacturing engineers and the production team, with a core focus on developing scalable, high-reliability automated, machining, inspection processes. This person is responsible for driving process improvements, solving complex production challenges, and helping to eliminate part flow blockers. Rather than simply supporting products, this engineer leads process innovation enabling rapid iteration, increasing production efficiency, and helping scale Divergent’s capabilities to meet program demands.
The Role
As the Senior Advance Manufacturing engineer, you will lead the development, execution, and continuous improvement of day-to-day operations for machining, automated assembly, automated anodize, inspection, cleaning work centers. You’ll be one of the primary technical resources supporting these areas with troubleshooting production issues, refining the processes, and enabling scalability through smart programming, tooling/fixturing, documentation, and workflow improvements. This role is hands-on, fast-paced, and essential to delivering high-precision, high-reliability hardware across automotive, aerospace, and defense programs.
The ideal candidate is well versed in aerospace production environment and has direct experience with supporting the production floor, DFM, machining, assembly, coating, metrology, thrives on solving complex shop floor problems, and brings a strong process mindset to drive quality, speed, and consistency.
Key Responsibilities
Operations Support
Own daily production execution, working directly with production floor to resolve issues, and ensure steady throughput.
Develop and implement best practices, processes, strategies, and calibration procedures to improve operational capacity.
Monitor utilization and WIP flow through the work centers, help push/pull work as needed to maintain alignment with production targets.
Technical Execution
Act as the technical bridge between design/manufacturing engineering and production teams.
Lead development, execution, and continuous improvement of machining, automated assembly, automated anodize, inspection, and cleaning work centers.
Collaborate on programming for 3-axis, 3+2, and 5-axis CNC mills using Siemens NX CAM software.
Provide feedback using advanced understanding of GDT, tooling, feeds/speeds, and fixturing.
Introduce standardized strategies, programming conventions, and setup documentation to improve consistency and reduce cycle time.
Leverage metrology and inspection expertise to drive quality assurance in production.
Process Development Scalability
Help lead efforts to integrate new machines, equipment, tools, and fixturing into production; support commissioning.
Co-Drive design-for-manufacturing (DFM) conversations with Manufacturing engineering to improve part manufacturability and reduce complexity at the machine.
Develop and implement innovative fixturing strategies tailored for complex additive manufactured geometries.
Support integration of automated machining technologies to enhance scalability and precision.
Continuous Improvemen ... (truncated, view full listing at source)
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