Get more replies from employers
Send a job-specific resume in minutes.
Maxwell Bond is seeking a Founding Robotics ML Research Engineer to turn cutting-edge robot learning into reliable, production-ready systems. You will work at the intersection of research and production, developing learning-based manipulation and autonomous behaviours, and building data collection and deployment infrastructure for hardware.
You'll explore research directions, train models, deploy to hardware, and iterate based on real-world results, influencing the stack and development culture
If your idea of robotics research is publishing a paper and moving on to the next experiment, this probably isn't for you.
This is a Founding Robotics ML Research Engineer opportunity for someone who wants to take the latest advances in robot learning and turn them into systems that work reliably on physical robots.
You'll join an early-stage robotics company developing autonomous systems for demanding real-world environments.
As a Founding Robotics ML Research Engineer, you'll sit at the intersection of robotics research and production engineering. You'll develop and deploy learning-based approaches for manipulation and autonomous behaviour, while building the infrastructure required to collect data, train models and run them reliably on physical systems.
The role is particularly suited to someone who enjoys the complete loop: identifying a promising research direction, experimenting with new approaches, training models, deploying them to hardware and then iterating based on what happens in the real world.
You'll work with modern learning approaches including behaviour cloning, reinforcement learning, diffusion-based policies and vision-language-action models, while grounding those techniques in classical robotics principles such as manipulation, control and motion planning.
This is a Founding Robotics ML Research Engineer role for someone who wants to work at the frontier of robotics learning without being separated from the physical systems that ultimately have to use it.
You'll have the freedom to explore new research directions, but the end goal isn't simply a benchmark result. Your work will need to survive contact with real hardware.
That creates a particularly interesting feedback loop: research ? training ? deployment ? failure analysis ? iteration.
You'll also have substantial influence over the infrastructure and technical foundations supporting the company's ML and robotics systems. As an early engineering hire, your decisions will help shape how the organisation approaches data, experimentation, training and deployment.
For someone who wants to see their research become part of a working robotic system, rather than sitting indefinitely in a research environment, this is a chance to have a significant impact.
We're looking for a Founding Robotics ML Research Engineer with strong experience in machine learning for robotics and a genuine interest in deploying learning-based systems on physical robots.
You'll ideally have:
Research contributions to conferences such as ICRA, CoRL, RSS, NeurIPS or CVPR would be valuable, but they're not essential.
Experience with embedded AI or edge deployment, open-source robotics or ML projects, production robotics, industrial automation or tactile sensing would also be advantageous.
This is an early-stage robotics team where research and engineering sit very close together.
You'll work alongside engineers who are focused on building practical robotic systems, with the freedom to experiment but also the expectation that promising ideas eventually need to work outside of simulation.
As a Founding Robotics ML Research Engineer, you'll have a meaningful voice in the research direction, engineering stack and development culture of the company.
There is no established playbook telling you which model to use, which architecture to follow or how the system should ultimately work. You'll help figure that out.
The team is looking for people who move quickly, think deeply and care about whether their technology actually works.