Robotics

Behavior engineering for physical systems.

What we do

Deploying robots in production is harder than it looks in the demo. The gap between a robot that works in a controlled lab and one that works reliably on a factory floor, in a warehouse, or in an unstructured field environment is where most robotics projects fail. We work in that gap.
Our robotics practice covers behavior engineering — developing the policies, planners, and perception stacks that make robots useful — and deployment engineering — the integration, calibration, and monitoring work that keeps them running. We draw directly on our research in sim-to-real calibration and CI/CD for robot behaviors.
We work across manipulation, locomotion, and autonomous navigation. We’re platform-agnostic and focused on the software and systems layer: how behaviors are specified, trained, validated, and updated in production.

Industries served

Use cases

Where we apply this.

Manipulation & Pick-and-Place

Policy development for robotic arms in manufacturing, assembly, and logistics. Handles variation in object pose, shape, and surface properties.

Mobile Robotics

Navigation and task execution for autonomous mobile robots in warehouses, factories, and outdoor environments.

Sim-to-Real Deployment

Transferring policies trained in simulation to real hardware. Automated calibration pipelines that close the sim-to-real gap systematically.

Behavior Testing & CI

Continuous integration frameworks for robot policies — automated regression testing across simulation scenarios before deployment.

Human-Robot Collaboration

Safe, predictable robot behavior in shared workspaces. Perception and planning for dynamic environments with human presence.

Defense & Field Robotics

Autonomous systems for unstructured, contested environments. Designed for reliability under degraded sensor conditions.

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