Xiaoyubot provides a general‑purpose embodied intelligence platform that equips industrial robots with multimodal perception and a native 4D world model. By integrating visual, tactile, electrical and command inputs, it enables robots to build spatial representations, predict states and generate motion trajectories end‑to‑end, allowing fine‑grained manipulation without task‑specific programming. The modular hardware‑software stack can be deployed in factories, warehouses and field sites, turning intelligent robotic labor into reusable infrastructure.
Funding
Funding not disclosed
Founders
Product
Problem
Manufacturers and logistics operators often rely on manual labor for repetitive, precision tasks, leading to high labor costs, safety risks, and limited scalability. Existing industrial robots are typically task‑specific, expensive, and require extensive integration effort, restricting broader adoption across diverse work environments.
Solution
Xiaoyubot offers a general‑purpose embodied intelligence platform that equips robots with multimodal perception and a native 4D world model. By fusing multi‑view video, force feedback, electrical signals, and human commands, the system builds implicit spatial representations, predicts future states, and generates motion trajectories end‑to‑end. This enables robots to understand their surroundings, locate objects, and execute fine‑grained manipulation without bespoke programming for each task. The platform is delivered as a modular hardware‑software stack that can be deployed in factories, warehouses, and field sites, turning intelligent robotic labor into a reusable infrastructure.
Target Audience
Primary customers are manufacturers, warehouse operators, and automation integrators seeking flexible, high‑precision robotic solutions for a wide range of repetitive tasks.
Features
- Multimodal sensor suite integrating visual, tactile, and electrical inputs for comprehensive environment awareness
- Native 4D world model that performs implicit spatial encoding, state prediction, and trajectory generation
- End‑to‑end learning pipeline allowing robots to acquire new skills from demonstration or minimal supervision
- High‑precision actuation and control algorithms supporting delicate assembly and handling operations
- Modular hardware design compatible with existing industrial robot arms and mobile bases
- Unified API for rapid integration into manufacturing execution systems and warehouse management software