
Generality and Scalability
Noematrix Brain
The Noematrix Brain is an embodied intelligence system built on generality and cognitive capability. Delivering unmatched performance via large, force-centered models, an atomic skill library, a core software framework, and an end-to-end toolchain for fully autonomous robot operation, the Noematrix Brain is the foundation for next-generation robotics.
The End-to-End Embodied Intelligence System

Perception
- Multimodal
- Perception Fusion
- Multi-Sensor Functionality
Planning
- Advanced Semantic Planning
- Long-term Planning
- Dynamic Planning
Memory
- Short-term memory
- Long-term memory
Action
- Robot Action-Flow Engine
- Hardware-Software Co-Optimization
- Atomic Skill Library

Large Physical World Model
The Large Robot Behavior Model fully integrates physical common-sense representations of manipulation skills with high-precision force feedback from robots, enabling human-like decision-making through hybrid force–position control.

Large Robot Behavior Model
The Large Robot Behavior Model fully integrates physical common-sense representations of manipulation skills with high-precision force feedback from robots, enabling human-like decision-making through hybrid force–position control.
Technical Framework of Noematrix Brain
AnySkill






Core Components

Perception

Planning

Memory

Action
Large Models

Large Physical World Model

Large Robot Behavior Model
Embodied Toolchain
Data Collection Suite
Data Management Platform
Training Platform
Brain Toolkit
Fully Integrated Hardware-Software Solution
Standard Hardware Platform


Unified Development Platform
- •Embodied Intelligence: Leverage the full-stack capabilities of the Noematrix Brain to create autonomous robot behaviors.
- •User-Friendliness: Accelerate integration with open APIs accessible at every level of the stack.
- •Adaptability: Design for versatility with built-in support for multiple tasks and seamless handling of spatial constraints.
- •Fast Deployment: Achieve out-of-the-box readiness that ensures rapid iteration and seamless integration.
