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Blue Origin is seeking a senior engineer to own end‑to‑end integration verification for the NPI solar array production lines, ensuring scalable, high‑volume manufacturing. This role is hands‑on on the factory floor and will write the models that prove the architecture meets ramp targets.
You will work on cell interconnection, lamination, bonding, mechanism assembly, tooling and automation, and you’ll analyze process capability, yield and throughput to guide design choices and capital investments.
Applications will be accepted on an ongoing basis until the requisition is closed.
At Blue Origin, we envision millions of people living and working in space for the benefit of Earth. We’re working to develop reusable, safe, and low-cost space vehicles and systems within a culture of safety, collaboration, and inclusion. Join our team of problem solvers as we add new chapters to the history of spaceflight!
This role is part of Advanced Concepts and Enterprise Engineering (ACE), supporting Blue Origin’s mission of millions of people living and working in space for the benefit of Earth. The team fosters innovation and drives engineering workflows of the future, shared solutions and standards, simplicity and lower costs, and manufacturable design.
As part of a hardworking team of specialists, technicians, and engineers, you will own end‑to‑end integration verification for the New Product Introduction (NPI) lines that bring next‑generation spacecraft solar arrays into production at unprecedented rates and reliability. This is an architecture‑level opportunity for green‑field design and process integration – the equipment is still being specified, the flow has not been locked, and the architecture is still a set of open decisions.
You will work on a team of manufacturing, process, and ground support equipment engineers owning their individual process areas – cell interconnection, lamination and bonding, mechanism assembly, tooling, fixturing, automation. You own the interfaces between them and the overall performance of the manufacturing system as a whole. Your object is the value stream as a system, raw material intake through wing integration, verified end to end as scalable and stable for high volume production.
You will use data to make enhancements to the solar array design with design engineers vertically integrated within the organization.
You will not only ensure that each process works, but more importantly you will be responsible for making the integrated system scalable. That is a claim about distributions and resource envelopes: process capability, equipment availability, yield, test throughput, and lot‑to‑lot variation. You will build the models that determine whether it closes, instrument the line to find out what it actually does, and generate the verification evidence the program’s scalability claim rests on.
You will partner with Operations to define the architecture the full‑rate line(s) are built to, ensuring the lines inherit proven designs instead of new discovery, enabling a rapid ramp up to rate production.
This is a hands‑on building role. You will write the models yourself and be on the floor with the machines and instrumentation. You’ll play a front seat role in architecting high volume production lines powering the next generation of space vehicles.
We are primarily seeking a senior‑level engineer to help establish and scale this capability, but are open to exceptional candidates at adjacent career levels whose manufacturing, industrialization, NPI, and cross‑functional execution experience align with the needs of the role.