Hardware Layer
Robotic bodies, mobility systems, manipulation interfaces, power systems and field-ready mechanical design.

AORO PRIME / Technology
The AORO PRIME technology platform is being developed to connect hardware, compute, autonomy and operations into a deployable physical AI system.
Platform Layers
The technology strategy is public-facing by design: explain the operating architecture without exposing exact internal engineering specifications.
Robotic bodies, mobility systems, manipulation interfaces, power systems and field-ready mechanical design.
On-board and connected compute resources for perception, supervision, reporting and controlled operation.
Embodied AI capabilities for perception, navigation, planning, interaction and mission execution under oversight.
Fleet OS, monitoring, maintenance workflows, analytics and pilot deployment support for sustained robotic operations.
Embodied AI
AORO PRIME treats embodied AI as a control and operations discipline, not a screen-based software feature. The platform is designed to perceive, plan, act and report in environments that are dynamic, physical and consequential.
Environmental understanding for objects, people, routes, constraints and operating context.
Mission-level reasoning that translates operator intent into controlled robotic actions.
Human-supervised operation, clear status reporting and predictable behaviour around people.
Pilot and validation experience is intended to improve shared behaviours while respecting privacy, safety and governance requirements.
Robotics Architecture
The robotics architecture supports different form factors while preserving a common operational foundation across the platform family.
Bipedal, mobile and field-adapted systems configured for the domain rather than rebuilt from scratch.
Task interfaces and support payloads selected for the work environment and supervised mission.
Layered constraints, oversight modes and deployment procedures designed for accountable operation.
Field support, diagnostics and maintenance workflows designed for long-duration enterprise use.
Operating System
The operating system coordinates the machine, the operator and the fleet. It provides the software foundation for supervised autonomy, status, updates, access control and operational reporting.
Designed to assign, monitor and adapt robotic work across sites and fleet roles.
Identity, access and governance controls for institutional operations.
Human-in-the-loop and human-on-the-loop workflows for sensitive environments.
Pilot telemetry is intended to support safer, more predictable and more useful deployments over time.
AORO PRIME