ZJ Humanoid offers a modular, general‑purpose humanoid robot platform that combines advanced AI cognition with interchangeable hardware such as legs, wheels, and dexterous manipulators. Its ROS‑compatible SDK and low‑code development environment let enterprises quickly configure robots for tasks like retail assistance, hazardous material handling, or industrial automation without deep robotics expertise.
Funding
Funding not disclosed
Founders
Product
Problem
Many industries lack flexible, intelligent humanoid robots that can operate safely in diverse environments, perform complex manipulation tasks, and be quickly adapted to specific use cases. Existing solutions are often single‑purpose, require extensive custom integration, and are difficult for non‑robotics experts to deploy.
Solution
ZJ Humanoid provides a fully modular, general‑purpose humanoid robot platform that combines advanced AI cognition with a flexible hardware framework. The system supports interchangeable limbs, wheels or legs, and a variety of end‑effectors such as dexterous hands or grippers, enabling rapid reconfiguration for tasks ranging from retail assistance to hazardous material handling. An open SDK and ROS‑compatible APIs expose low‑level control, state monitoring, and sensor data, while a low‑code AI development environment offers pre‑built skill libraries and task‑decomposition agents that can be assembled via drag‑and‑drop. Cloud‑hosted AI models deliver navigation, perception, and manipulation capabilities, reducing development cycles by up to 50 % and allowing customers to deploy autonomous humanoid robots without deep robotics expertise.
Target Audience
Primary customers are enterprises in industrial manufacturing, retail, logistics, hazardous‑environment services, and educational or research institutions that require autonomous, adaptable humanoid robots for automation, service, or training applications.
Features
- Modular hardware architecture with interchangeable legs, wheels, and manipulators for seamless adaptation to different scenarios
- Integrated AI stack providing perception, navigation, and multi‑task planning via pre‑trained large‑model skill libraries
- Full ROS‑compatible SDK exposing hardware drivers, status monitoring, and control interfaces for custom software development
- Low‑code development platform that enables non‑engineers to compose complex behaviors using drag‑and‑drop components
- Real‑time sensor fusion and safety monitoring, including collision avoidance and emergency stop mechanisms
- Support for voice, facial expression, and customizable appearance modules to enhance human‑robot interaction
- Scalable cloud analytics for fleet management, performance diagnostics, and over‑the‑air updates