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Research & Education Development Platform

Research & Education Development Platform

An open platform tool providing complete software and hardware interfaces with simulation support — empowering university teaching and algorithm validation. Its full-stack open ecosystem, standardized interfaces, and efficient algorithm iteration capabilities significantly reduce R&D barriers, offering a reliable physical platform for cutting-edge research in motion control, multi-robot coordination, and related fields.

Scenario Adaptability

The LINXAI Research & Education Edition quadruped robot features a full-stack open ecosystem, simulation environment support, and rapid iteration capabilities. The robot provides complete SDK development manuals, STP 3D models, and maintenance documentation — supporting both high-level and low-level development. The proprietary SVIP algorithm reduces training time from 100 hours to just 3 hours.

Full-Stack Open Ecosystem

Complete SDK development manuals, STP 3D models, and maintenance documentation — supporting high-level and low-level development.

Simulation Environment Support

Robot models and simulation interfaces provided — compatible with Isaac Sim and other simulation platforms, reducing algorithm validation costs.

Rapid Iteration Capability

Proprietary SVIP algorithm reduces training time from 100 hours to 3 hours — accelerating research cycles.

Standardized Interfaces

12 sets of M8 standard heavy-duty mounting points — facilitating integration of custom sensors and experimental equipment,

Application Value

As an open platform tool, LINXAI delivers complete software and hardware interfaces with simulation support — empowering university teaching and algorithm validation. Its full-stack open ecosystem, standardized interfaces, and efficient algorithm iteration capabilities significantly lower R&D barriers, offering a reliable physical platform for cutting-edge research in motion control, multi-robot coordination, and related fields.

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Robotics Teaching Platform

Provides a complete quadruped robot hardware platform with development documentation — supporting university courses in motion control, computer vision, embedded systems, and other laboratory curricula.

Robotics Teaching Platform

Expected Outcomes

The LINXAI Research & Education Edition quadruped robot delivers a full-stack open ecosystem, simulation environment support, and rapid iteration capabilities. It provides complete SDK development manuals, STP 3D models, and maintenance documentation — supporting both high-level and low-level development. The proprietary SVIP algorithm reduces training time from 100 hours to just 3 hours.

3× Increase in Hands-on Student Opportunities

60%+ Reduction in Algorithm Validation Costs

50%+ Faster Research Project Deployment