Senior Mechanical Engineer
Divergent
| Company | Divergent |
| Category | Engineering |
| Location | Torrance |
| Remote | On-site (inferred) |
| Employment | Not stated |
| Level | Senior |
| Salary | Not stated by the employer |
| Posted | 27 Jul 2026 |
| Last verified | 30 Jul 2026 |
| Source | Employer career page (greenhouse) |
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
Divergent’s Adaptive Production System (DAPS) combines software and purpose-built hardware to produce advanced structures for automotive, aerospace, and defense customers. As a Senior Mechanical Engineer, you will develop the machines and mechanical systems that enable that platform—you will make the machines that make the things.
As the Responsible Engineer for assigned systems and major design efforts, you will lead development from problem definition and requirements through concept design, detailed engineering, prototyping, validation, release, and machine integration. The role combines hands-on engineering with technical leadership and cross-functional ownership of complex production hardware.
The Role
Own assigned mechanical systems and major design efforts from problem definition through release, integration, and validation.
Translate technical and operational needs into clear requirements, interfaces, constraints, and acceptance criteria.
Develop concepts and detailed designs using CAD models, drawings, GD&T, tolerance analyses, engineering calculations, component selections, and bills of material.
Apply broad mechanical engineering fundamentals across structures, mechanisms, precision motion, fluids, thermal systems, sealing, enclosures, and machine integration.
Evaluate design alternatives and make sound tradeoffs across performance, reliability, safety, manufacturability, serviceability, cost, schedule, and technical risk.
Identify design and integration risks and plan and lead appropriate analysis, prototyping, assembly, testing, troubleshooting, and design iteration.
Lead technical coordination across engineering, manufacturing, quality, supply chain, suppliers, and other stakeholders; communicate decisions, status, risks, actions, and required support clearly.
Maintain complete technical documentation and drive engineering changes through release and downstream coordination, including procurement, manufacturing planning, validation, and deployment.
Support machine integration and fleet investigations when needed, converting relevant findings into durable design improvements and future development priorities.
Provide technical guidance, design reviews, and mentorship to other engineers.
Contribute to machine architecture, modularization, supplier and contract-manufacturing readiness, and future printer development.
Basic Qualifications
Ability to lawfully access information and technology that is subject to US export controls.
Bachelor’s degree in Mechanical Engineering or a related engineering discipline.
Demonstrated ability to independently develop complex mechanical systems from concept through detailed design, build, test, and release.
Strong capability in 3D CAD, engineering drawings, GD&T, tolerance analysis, component selection, and design for manufacturability and assembly.
Broad understanding of mechanical engineering fundamentals and the ability to apply them to unfamiliar or multidisciplinary design problems.
Ability to convert ambiguous needs into practical designs and make sound technical decisions
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