We are GaltTec. We are building the energy source that will unlock the true potential of the drone industry: a novel, high-performance microtubular fuel cell. We are a deep-tech hardware startup with a vision to change the world.
But hardware is hard. It is slow. It relies on supply chains that keep us waiting for materials to test a hypothesis that takes days to conceive.
We are changing that. And we want you to lead the revolution.
We are looking for a Principal Engineer, Computational R&D to serve as the Lead Architect of our full-scale digital transformation. We don’t just want a simulation engineer; we want a pioneer who will transition our R&D workflow from a “Make-and-Test” physical cycle to a “Model-and-Validate” digital engine in all aspects
This is a greenfield opportunity to build a department from scratch. You will be the technical authority on computational engineering, acting as the right hand to our Head of R&D and a strategic partner to the CEO.
You will have the mandate to:
Note: This role is designed for a builder who aspires to executive leadership. Success in this role leads to a clear path toward high-level strategic ownership (think, VP of Digital Engineering).
GaltTec is at the forefront of fuel cell technology innovation, developing lightweight, sustainable and highly efficient energy solutions to meet the growing global demand. Our advanced fuel cell technology outstandingly extends the operational endurance of drones, IoT devices, and other portable systems—redefining what’s possible in industries that depend on reliable, long-lasting power. As the first Estonian startup selected for the NATO DIANA accelerator, GaltTec is proud to contribute to the advancement of deep-tech solutions that support defense and critical infrastructure.
Don’t just send a CV. Tell us about a time you used simulation or digital tools to solve a hardware problem faster than the “standard” process allowed. We want to hear how you think. Get us excited.
Submit all documents to info@galttec.com
GaltTec extends UAV endurance with next-generation fuel cell systems — maximizing flight time, minimizing downtime, and advancing the future of aerial energy.