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AILOS Robotics

AILOS Robotics develops high-performance, compact gearboxes and actuation systems specifically for human-centered robots. The company focuses on designing backdrivable, efficient, and robust transmission architectures for applications like humanoids, cobots, and wearable robotics. They manage the full lifecycle from concept ideation and 3D design through prototyping and production optimization.

Brussels, Belgium2100+ followers
Updated 2 months ago

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Product

Problem

Traditional robotic systems often face limitations in precision, efficiency, and operational versatility due to the inherent constraints of existing gearbox technologies. This can hinder the adoption of advanced automation solutions across various industrial and service sectors.

Solution

AILOS Robotics engineers advanced gearboxes designed to elevate the performance of robotic systems. Our proprietary designs focus on enhancing kinematic accuracy, reducing energy consumption, and expanding the operational envelope of robotic manipulators and mobile platforms. By integrating novel material science and optimized gear profiles, we enable robotic applications to achieve higher throughput and greater dexterity. This technological advancement supports the broader transition towards more capable and efficient automated solutions in manufacturing, healthcare, and agriculture.

Target Audience

Our primary customers are robotic system integrators, original equipment manufacturers (OEMs), and automation solution providers seeking to improve the performance characteristics of their robotic end-effectors and platforms.

Features

  • High-precision planetary and cycloidal gear reduction systems engineered for minimal backlash.
  • Optimized gear tooth geometry and surface treatments to improve torque density and reduce friction losses.
  • Integrated sensor feedback for real-time monitoring of torque, speed, and temperature.
  • Modular design allowing for customization of gear ratios and mounting configurations.
  • Lightweight composite materials for enhanced power-to-weight ratios.
  • Robust sealing mechanisms for operation in harsh environmental conditions.
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