AMRs · Manipulators · ROS 2 · Fleet software
Robotics & Autonomous Systems
We engineer robots end to end — the mechatronics, the embedded control, the ROS 2 software stack and the fleet platform that puts them to work. Our robots navigate busy facilities, inspect equipment, carry payloads and hand work to people and systems around them.
Sensing
%LEL · warn 10 · alarm 20
Perception
15 Hz · 72 rays · 7 m
Motion control
1 kHz loop · 2 × 250 W
Edge AI
on-board · 12 ms
Robots connect to your ERP and dashboards to run missions from your orders and report to your control room. We test their behaviour in a digital twin before deployment on site.
- Autonomous mobile robots: SLAM, localisation, path planning and obstacle avoidance
- Perception with LIDAR, depth and thermal cameras, and sensor fusion
- Manipulators and grippers: motion planning, pick-and-place, custom end effectors
- Fleet management, traffic control, charging and mission orchestration
- Integration of commercial robots and fleets with your WMS, ERP and safety systems
- Teleoperation, remote diagnostics and over-the-air updates
- Safety concepts: protective fields, safety PLCs, risk assessment and CE documentation
Interactive previews of systems we build where Robotics plays a central role. Use them — every button works.
Robotics · Digital twin · Industrial IoT
Copy linkIndustrial digital twin with autonomous robots
A live twin of an industrial hall: five autonomous robots plan, drive and inspect on their own, every onboard sensor is streamed, and incidents — a gas leak, an overheating pump, a blocked aisle — are detected, reported and routed around.
- Multi-robot navigation: A* planning, pure-pursuit control, safety fields
- Onboard RGB, rear, thermal/OGI and LIDAR feeds with teleoperation
- Gas and thermal inspection rounds with automatic work orders
- Costmap, TF, telemetry and a rosout-style event log
Try it: Pick a robot, drive it (joystick or W A S D), send it on a mission — then inject a gas leak and run the inspection round.
Interactive preview with illustrative data. Client names and branding are omitted.
- 01 /
Navigation that holds up
ROS 2 / Nav2 stacks tuned for real facilities — narrow aisles, people, changing layouts and mixed traffic.
- 02 /
Perception you can trust
LIDAR, cameras and thermal sensing fused into maps, obstacle detection and inspection data.
- 03 /
One fleet, many robots
Mission queues, traffic rules, docking and charging — orchestrated from one console and your ERP.
- 04 /
Safety by design
Protective fields, emergency stops and safety-rated controllers designed in from the first sketch.
- 05 /
Twin-first delivery
Every behaviour is proven in simulation and hardware-in-the-loop before commissioning on site.
- 06 /
Service after go-live
Remote diagnostics, telemetry dashboards and OTA updates keep robots productive for years.
- 100%
- of robot behaviours tested in the digital twin before they run on site
- 0
- failed safety functions in the site acceptance test
- < 6 weeks
- from twin to first missions on site
Illustrative targets, not results of named clients. Baselines and acceptance criteria are agreed for each project.
Technology
Tools we trust
From prototype to daily fleet operation, with tested mechanics, electronics, software and safety.
- ROS 2
- Nav2
- MoveIt 2
- SLAM
- LIDAR
- Sensor fusion
- C++
- Python
- Safety PLC
- NVIDIA Isaac Sim
- ros2_control
- OpenCV
- Gazebo
- RViz
- micro-ROS
- BehaviorTree.CPP
- URDF
- MQTT
- … and more
A selection of our tools and frameworks. We choose what fits your requirements, integrations and team.
Straight answers about how we work. Can't find yours? Ask us directly.
Do you build robots or integrate existing ones?
Both. We develop custom robots and modules, and we integrate commercial AMRs, arms and sensors into your processes, software and ERP.
Which software stack do you use?
Mostly ROS 2 with Nav2 and MoveIt 2, custom C++ and Python nodes, and our own fleet and teleoperation software — chosen per project.
How do you handle safety?
Safety is part of the design from day one: risk assessment, protective fields, safety-rated stops and controllers, and the documentation needed for CE conformity.
Robotics
Ready to move from idea to a working system?
Tell us about your goals and constraints. We'll come back with a clear technical direction and next steps.
