Delta Robotics develops advanced artificial muscle technology for various applications. The company focuses on creating high-performance actuation systems that mimic biological muscle function. This technology aims to provide flexible and powerful solutions for robotics and automation.
Funding
$30K raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.
Founders
Product
Problem
Traditional actuators used in robotics and prosthetics are often rigid, bulky, and unable to mimic the natural, fluid movements of biological muscles. This limits the dexterity, responsiveness, and overall functionality of robotic systems and prosthetic devices.
Solution
Delta Robotics' ThermoFlex™ actuators are designed to replicate biological muscle movement, offering a lightweight and flexible alternative to traditional actuators. Constructed from Nitinol, a shape memory alloy, ThermoFlex™ provides a high force-to-weight ratio and enables smooth, natural motion in a compact form factor. These artificial muscles can bend and flex to accommodate various angles and rotations, making them suitable for applications requiring dynamic and adaptable movement. The ThermoFlex™ system includes a smart muscle controller for precise power delivery and ease of integration.
Target Audience
Delta Robotics targets engineers and developers in robotics, prosthetics, aerospace, and special effects industries seeking lightweight, flexible, and high-performance actuation solutions.
Features
- Lightweight Nitinol construction for high force-to-weight ratio
- Flexible design enabling bending and twisting motions
- Compact form factor for easy integration into various applications
- Mimics natural biological muscle movement for fluid and responsive motion
- ThermoFlex™ Node Controller for precise power and control
- Available in various diameters and lengths
- Quick disconnect M4 mounting holes for easy attachment
- Silent operation for applications requiring minimal noise