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X-Pro: A Reconfigurable Mobile Robot for Multi-Modal Mobility

One Robot. Three Mobility Modes. Up to 200 kg Payload.



VIU Tech introduces X-Pro, a new-generation reconfigurable mobile robot designed to move beyond the limitations of conventional mobile and quadruped robots.


Built around a variable-configuration platform, X-Pro combines embodied AI, a composite active suspension system, and unlimited-rotation joint technology. The robot can adapt its mobility configuration according to different environments, tasks, and payload requirements.

With a maximum payload of 200 kg, X-Pro is designed for applications including material transportation, warehouse logistics, complex-terrain mobility, stair navigation, heavy-load cruising, and stable load carrying.


Three Core Mobility Modes

1. Cruise Mode

Designed for stable and efficient movement on relatively flat surfaces, Cruise Mode is ideal for long-distance transportation, warehouse logistics, and heavy-load mobility.

Its composite active suspension system helps maintain stability while carrying heavy payloads, enabling smooth and controlled movement in demanding industrial environments.

Cruise model robot dog

2. All-Terrain Mode

When facing stairs, gaps, slopes, and uneven terrain, X-Pro can switch to All-Terrain Mode.

Its legged mobility allows the robot to navigate complex ground conditions that can be challenging for conventional wheeled platforms, providing greater terrain adaptability for industrial, construction, emergency-response, and other demanding applications.

All-Terrain Mode robot dog

3. Omni-Directional Mode

Omni-Directional Mode focuses on flexible movement and positioning.

The robot can move and reposition itself without always needing to turn around, making it suitable for warehouses, factories, confined spaces, and heavy-load positioning tasks.

Together, the three modes allow X-Pro to adapt its movement strategy to different environments and missions.

Omni-Directional Mode AI robot

Four Core Technologies

1.Reconfigurable Platform

X-Pro features a variable-configuration platform with multiple fundamental mobility configurations. Its form can be adapted according to terrain, task, and payload requirements, enabling one robot to handle multiple mobility scenarios.


2.Composite Active Suspension

The robot combines superstructure elastic units with joint motors to create a composite active suspension system.

By combining mechanical elasticity with active control, the system helps X-Pro maintain stability while moving across different terrain and carrying heavy payloads.


3.Unified Foundation Model

X-Pro integrates visual, environmental, terrain, posture, motion, payload, and mission information through a unified foundation model.

This enables the robot to coordinate perception, decision-making, and physical movement, providing a foundation for more adaptive embodied intelligence.


4.Unlimited-Rotation Joints

X-Pro’s joints support 360° continuous rotation without traditional mechanical end stops.

This provides greater freedom for motion control and configuration changes, supporting the robot’s multi-modal mobility architecture.


Beyond the Conventional Quadruped Robot

Traditional mobile robots are often optimized for specific environments. Wheeled robots perform efficiently on flat surfaces, while legged robots offer greater terrain adaptability.

X-Pro combines these advantages through a reconfigurable mobility architecture.

Instead of using different robots for different environments, X-Pro is designed to change how it moves according to the task.


From warehouse transportation and industrial logistics to rough-terrain operations and heavy-load mobility, one platform can address multiple ground-mobility requirements.


Built for the Next Generation of Robotics


X-Pro combines:

Reconfigurable Mobility + Embodied Intelligence + Active Suspension + High Payload + Unlimited-Rotation Joints

With its three core mobility modes and up to 200 kg payload capacity, X-Pro represents a new approach to industrial mobile robotics—one where the robot can adapt its physical form and movement strategy to the task.


Cruise for stability.
All-Terrain for versatility.
Omni-Directional for freedom.


X-Pro — Redefining Mobility Through Reconfigurable Embodied Intelligence.

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