
RT & Kernel Engineer (human) at Neura Robotics (Munich, Germany)
Neura Robotics· Munich, Germany·
Role details
Attractive Salary · Flexible Working Hours · 30 Days Of Vacation · Corporate Benefits Program · Flat Hierarchies · Company Events
Neura Robotics at a glance
German cognitive-robotics company building humanoid and collaborative robots that see, hear, feel, and learn to work alongside people.
NEURA Robotics designs cognitive robots (humanoids, collaborative arms, and mobile bases) plus the AI and platform that run them, all built in-house. Its flagship 4NE1 humanoid targets industrial workflows and everyday assistance, and the Neuraverse platform links deployed robots into a shared learning network.
~$1.7B+ raised · latest: Series C · up to $1.4B · June 2026 · backed by Tether, Amazon, NVIDIA, Qualcomm
Summary
This role involves owning the real-time embedded Linux kernel and operating system for robot platforms, including co-kernel and kernel-preemption approaches. Responsibilities include Yocto BSP development, WCET analysis, and safety integration for deterministic control and communication stacks.
Job description
YOUR MISSION & CHALLENGES
We are scaling our real-time embedded Linux capability across NEURA's current and next-generation robot platforms — cobots, mobile manipulators, humanoids, quadrupeds, and the shared Compute Unit. This role owns the operating system, kernel, and board-support layer that every control and communication stack on these platforms depends on.
You will collaborate closely with the RT Communication Bus engineer, hardware, simulation, and safety / certification stakeholders to deliver platforms that are deterministic, maintainable, and suitable for a controlled product lifecycle.
- Real-time Linux platforms — both co-kernel and kernel-preemption approaches — including RT scheduling policy and interrupt-latency budgeting to meet the timing requirements of the control and estimation loops running on the platform (kHz-class whole-body control and high-rate state estimation).
- SOM board bring-up and the Yocto BSP for each robot platform hardware revision: boot flow, kernel configuration, device trees, and driver work at the C/C++ boundary, with hands-on debugging on real hardware.
- Yocto layers, recipes, and images for development, validation, and release; structured evaluations and migrations across multiple SoCs and board variants as hardware evolves.
- WCET analysis across RT loop configurations, and RT memory management practice (memory locking, huge pages, NUMA-aware allocation, priority inversion avoidance).
- Co-review of WCET budgets and cycle timing with the RT Communication Bus engineer at the OS / fieldbus boundary, ensuring scheduling, interrupt, and synchronisation assumptions hold under load.
- Safety integration at the kernel level (e.g. E-stop chain wiring, ISO 10218 safety PLC integration); design participation, documentation, and traceability for controlled change practices.
- Build, flash, and test automation; technical documentation kept current for the wider engineering organisation.
WHAT WE CAN LOOK FORWARD TO
- Embedded Linux BSP engineering background with hands-on Yocto / OpenEmbedded experience on production hardware.
- Hands-on real-time Linux kernel patching and tuning experience, with practical scheduling-oriented reasoning (SCHED_FIFO/RR, priorities, affinity, interrupt path).
- Working knowledge of WCET analysis methodology and tooling (e.g. OTAWA, Chronos, or vendor equivalents).
- Solid C and C++ at the kernel/driver boundary; device tree authoring; practical scripting for engineering workflows.
- Experience on ARM SoCs with multi-cluster configurations (e.g. Cortex-A + Cortex-R), or comparable platforms.
- A collaborative working style: shared design, constructive code review, proactive communication, and reliable coordination across hardware, communications, and safety disciplines. Strong teamwork is essential for this role.
- Bachelor's degree in a relevant field, or equivalent practical experience.
Nice to Have
- EtherCAT familiarity sufficient for OS / fieldbus-boundary co-review (WCET budgets and cycle timing).
- Exposure to functional safety engineering practices (ISO 26262, IEC 61508, or ISO 10218) — documentation, evidence, review cycles. Certification sign-off is not required for this role.
- Experience with PTP / IEEE 1588 hardware timestamping at the kernel network driver level.
- Background in robotics, motion control, or industrial automation with strict timing expectations.
- Interest in growing scope as the platform team expands.
WHAT YOU CAN LOOK FORWARD TO
- Become part of an agile company, actively shape topics and benefit from flat hierarchies in a highly motivated team.
- Enjoy an attractive salary, flexible working hours and 30 days of vacation.
- The freedom to contribute your own ideas and drive them forward.
- Celebrate successes together with company events.
- Take advantage of our corporate benefits program.
- And even more fun with great colleagues.
Why work at Neura Robotics
- Culture: "Passion for Winning" — achievement-driven, self-responsible culture with flat hierarchies. Values include trust, honesty, speed, and "We Are Human" (people at the heart of everything).
- Flexibility: Flexible working hours, 30 days of vacation, and a hybrid-friendly environment.
- Team: Over 1,400 employees from more than 45 countries — highly skilled, international team of experts.
- Growth & Development: Support for personal and professional growth via Udemy training platform and more.
- Compensation: Competitive salary package with exclusive employee discounts.
- Perks: Summer parties, company town hall meetings, and regular team celebrations.
- Impact: Opportunity to work on cutting-edge cognitive robotics and AI that directly addresses labor shortages and makes a meaningful societal impact.
- Diversity: Explicitly welcomes applications from all backgrounds, emphasizing building a team that reflects the world.
- Application Process: Fast — initial feedback within a few days, interviews scheduled within two weeks.