Unitree Go2 Autonomous Legged Robot
Agile 4D LiDAR-equipped quadruped with GPT-AI integration and 5m/s peak speed for all-terrain mobility.

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Unitree Go2 · 3 product images· Contact LVH for CAD files
Product Overview
The Unitree Go2 is an industry-leading quadruped robot featuring ultra-wide 4D LiDAR and integrated GPT-AI intelligence. Designed for home companionship, industrial inspection, and educational research, it provides elite mobility on stairs, rocks, and uneven terrain.
The Unitree Go2 represents the evolution of the consumer and professional quadruped market. This robotic dog is designed to bridge the gap between high-tech toys and serious industrial tools. The Go2 features Unitree proprietary 4D LiDAR L1 which provides an ultra-wide 360 by 90 degree hemispherical field of view with a very small blind spot allowing the robot to navigate complex environments with high confidence. A major technical highlight is the integration of Large Language Models via Unitree GPT feature enabling the robot to understand complex natural language commands. Mechanically the Go2 is built for agility and can jump, stretch, and climb stairs with ease reaching speeds of up to 5m/s in the Pro and Edu variants. The internal heat management and sealed joints allow for operation in varied outdoor conditions. The Go2-Edu variant supports an optional robotic arm Z1 and secondary depth sensors making it the preferred platform for university-level robotics research. LVH Systems sources the Go2 for a wide range of clients from security firms needing patrol robots to tech enthusiasts building smart home integrations. Available for sourcing through LVH Systems global procurement network.
Key Capabilities
Industrial Grade
Built to industrial standards for reliable operation in demanding automation environments.
High Precision
Precision mechanical components deliver consistent, repeatable performance.
LVH Global Sourcing
Sourced through LVH Systems with full technical support and global procurement capabilities.
Typical Applications
The Unitree Go2 is available through LVH Systems with full technical support and application engineering.
Key Specifications
Critical performance parameters at a glance
Technical Specifications
Specifications
Industrial Applications
These products support advanced robotics, automation, and industrial motion systems where precision, durability, and integration quality are important.
Industrial Automation
Used in automation systems where dependable motion performance and integration quality are required.
Robotics
Supports robotic subsystems that require reliable motion, control, or feedback components.
Machine Building
Integrated into custom equipment and OEM platforms where motion-system performance matters.
Precision Equipment
Applied in specialist systems requiring stable performance, compact packaging, and dependable operation.
Material Handling
Used in handling, transfer, and positioning systems across industrial applications.
Custom Engineering
Selected for engineered systems where application-specific performance and packaging are critical.
Factory Modification & Custom Sourcing
This product supports custom configurations and equivalent sourcing
Available Modifications
- •Torque and speed ratio customization
- •Mounting interface modifications
- •Connector and wiring specifications
- •Housing and enclosure options
Sourcing Options
- •Standard product sourcing
- •Equivalent product identification
- •Replacement part sourcing
- •Volume pricing (MOQ may apply)
Request Pricing & Availability
Submit an RFQ for standard products, custom configurations, or equivalent alternatives
Frequently Asked Questions
Technical answers sourced from engineering specifications and integration guides.
The Go2 comes in three primary versions: Air entry-level, Pro includes 4G faster processing and higher speed, and EDU fully open-source with the highest speed and hardware expansion options for research.
Have a technical question not answered above?
Our application engineers review every RFQ and respond with specification-matched recommendations.