ROKAE Unveils Helios Wheeled Humanoid Robot for Real-World Industrial Automation
Robot Details
Helios Wheeled Robot • ROKAEPublished
July 5, 2026
Reading Time
3 min read
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Origin Of Bots Editorial Team

New Industrial Breakthrough
The global manufacturing sector faces mounting pressure to automate complex tasks like joint assembly and inspection without sacrificing flexibility or safety. ROKAE Robotics has directly addressed this challenge by officially unveiling the Helios, a wheeled dual-arm humanoid robot designed for real-world industrial action, with its debut prominently featured at Automate 2026 in Chicago. This new platform represents a significant step in the company's Embodied Intelligence Series, bringing advanced robotics and AI together to deliver precision and scalability for tomorrow's factories.
Why Helios Leads
Helios stands out in the humanoid category through its unique combination of full-body coordination, natural human interaction, and the ability to perform real-time motion imitation with high fidelity. Unlike systems that rely solely on pre-programmed libraries, this robot supports teleoperation capabilities that allow human operators to guide complex maneuvers remotely. The Helios is less about raw hardware specs and more about redefining how humans control robots at scale in dynamic factory environments.

How It Works
The technical system flow of Helios follows a clear input-to-output structure where human motion input is captured and processed by an AI model to generate joint actuation commands and balance corrections. This process ensures that the robot maintains stability while manipulating tools or packages, effectively translating human intent into precise robotic movement. The integration of ROS2, proprietary OS, and Python APIs allows for flexible customization to meet specific industrial needs.
Factory Floor Focus
In a specific deployment scenario, Helios is utilized for joint assembly tasks where it must handle precision instruments and interact safely with human workers on the assembly line. The robot's omnidirectional wheeled base allows it to navigate tight spaces between machinery while its dual arms perform intricate assembly operations with high repeatability. This application demonstrates how Helios bridges the gap between automated efficiency and the adaptability required for complex manufacturing workflows.

Capabilities in Motion
The Helios is designed to feature an extended dimension of 180 x 60 x 60 cm and a weight of 100 kg, enabling it to carry tools, packages, and precision instruments effectively. Its speed of 4 km/h and a battery life with a total usable duration of 4 to 5 years ensure sustained operation during long production cycles. Equipped with RGB and stereo cameras, LiDAR, and ultrasonic sensors, the robot achieves robust indoor and visual SLAM navigation for reliable autonomous movement.
Rivals Edge Check
| Robot | Key Advantage | Where Helios Wheeled Robot Wins | Target Use |
|---|---|---|---|
| Miro U | Superior outdoor navigation | Stronger indoor SLAM and precision for tight factory lines | Assembly and inspection |
| Q5 | High-speed bipedal motion | Stable wheeled base with dual arms for heavy payload handling | Material handling |
| Borg 01 | Advanced teleoperation interface | Integrated force and torque sensing for safer human interaction | Collaborative tasks |
| ALICE 4 | Low-cost entry model | Longer battery life and superior sensor suite for complex environments | Advanced robotic operations |
Industry Direction Signal
This development signals a decisive shift in the humanoid industry toward teleoperation-first architectures that prioritize human oversight over fully autonomous pre-programmed motion libraries. Manufacturers are increasingly recognizing that real-world scalability in human-centric spaces requires robots that can be guided by humans rather than just executing static scripts. The rise of platforms like Helios indicates that the future of industrial robotics lies in hybrid systems where AI enhances human capability rather than replacing it entirely.
One Robot
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One Robot
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