Atride creates textile‑based wearable devices by coating yarns with carbon, silver, and gold and embedding stretchable microelectronic circuits using liquid metals and polymers. This approach delivers high‑precision physiological sensors that are comfortable, flexible, and capable of continuous monitoring, remote data transmission, and AI‑driven health analytics for medical device makers, healthcare providers, and wellness brands.
Funding
Funding not disclosed
Founders
Product
Problem
Current wearable health solutions often rely on rigid components and low-fidelity sensors, limiting comfort, durability, and signal quality for continuous monitoring. This hampers the ability to collect reliable physiological data in everyday settings and restricts the integration of advanced diagnostics into routine life.
Solution
Atride develops textile-based wearables that embed nanotechnology, microelectronics, and liquid-metal circuits directly into yarns, creating stretchable, high‑performance sensors. By coating fibers with carbon, silver, and gold, the company achieves superior signal quality while maintaining the flexibility and comfort of regular clothing. The platform supports remote patient monitoring, early diagnosis, and therapy delivery, enabling health data collection at the point of need. Atride’s human‑centered design ensures the devices are intuitive, aesthetically pleasing, and adaptable to both clinical and consumer wellness contexts. The integration of IoT and AI capabilities allows real‑time data processing and actionable insights for users and healthcare professionals.
Target Audience
Atride’s primary customers are medical device manufacturers, healthcare providers seeking remote monitoring solutions, and wellness brands looking to incorporate advanced health sensors into everyday apparel.
Features
- Textile yarns coated with carbon, silver, and gold for high‑precision signal acquisition
- Stretchable microelectronic circuits using liquid metals and polymers that move with the body
- Embedded sensors capable of continuous physiological monitoring and remote data transmission
- AI‑enabled analytics pipeline for early detection and personalized health insights
- Compliance‑focused development process meeting medical device standards for clinical use
- Human‑centered design approach delivering comfortable, aesthetically integrated wearables