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Atomic Industries in Detroit is seeking an EDM Operator / Electrode Designer to extract and design electrodes from 3D mold models and to program and operate sinker EDM machines to burn precise details into hardened tooling.
This hands‑on role works closely with mold design, CNC machining, and assembly teams to ensure electrodes and burns meet dimensional, surface finish, and quality requirements while promoting efficient cycle times and repeatable processes.
Atomic Industries is reinventing how the world makes things. From cars and aerospace systems to medical devices and packaging, most physical goods begin life in a mold or are shaped by a manufacturing tool. Producing these tools has always been slow, manual, and dependent on scarce expertise, taking weeks or months. We're changing that.
At our Detroit headquarters, we combine the industrial DNA of America's manufacturing heartland with the speed, intelligence, and precision of Silicon Valley. Our AI‑driven platform tackles the hardest problems in geometry, process planning, and fabrication, collapsing production timelines from months to days and soon, minutes. We don't just build software; we run a fully operational factory where our technology produces production‑grade tooling every week, enabling tight feedback loops and rapid iteration.
Backed by top‑tier investors, we're restoring speed, flexibility, and capability to the American industrial base. Our mission is to make manufacturing as agile and scalable as the digital world, and in doing so, rebuild the infrastructure of the physical economy.
We are seeking a skilled EDM Operator / Electrode Designer to join our tooling and engineering team. This role is responsible for extracting and designing electrodes from 3D mold models and operating sinker (ram) EDM machines to burn precise detail into hardened tooling components. This is a hands‑on, highly collaborative role working closely with mold design, CNC machining, and assembly teams to ensure electrodes and EDM burns meet dimensional, surface finish, and quality requirements while supporting efficient cycle times.