Skyspace provides a modular, off‑grid medical mobility system that combines electric vertical take‑off and landing (eVTOL) aircraft with AI‑driven surgical robotics and renewable‑powered hubs. The system enables rapid vertical transport of patients and equipment, on‑site high‑precision surgery via remote specialist control, and continuous operation through solar‑wind energy, water and food production, all managed by a digital‑twin platform for predictive maintenance.
Funding
Funding not disclosed
Founders
Product
Problem
Populations in remote, disaster‑affected, or conflict zones often lack timely access to advanced medical care, resulting in preventable morbidity and mortality. Conventional air‑medical services rely on fixed infrastructure and crewed helicopters, which are costly, slow to deploy, and limited by fuel and runway requirements.
Solution
Skyspace delivers a modular, self‑sustaining medical mobility ecosystem that combines electric vertical take‑off and landing (eVTOL) aircraft, AI‑driven surgical robotics, and off‑grid renewable infrastructure. Deployable hubs can be assembled in weeks, providing on‑site patient housing, power, water, and food production to support continuous operations. The Med‑X eVTOL fleet offers rapid vertical transport of patients, equipment, and medical teams, while AI routing optimizes flight paths and coordinates with ground resources. Integrated telemedicine links the hubs to remote specialists, and AI‑powered robotic surgery platforms enable high‑precision procedures without the need for on‑site surgeons. A digital‑twin data platform monitors hub performance, predicts maintenance needs, and supports real‑time decision making. Together, these components create a scalable, climate‑resilient network that brings advanced emergency and surgical care to locations previously unreachable by traditional means.
Target Audience
Primary customers are national and regional governments, public health agencies, and disaster‑response organizations that require rapid, autonomous medical transport and on‑site advanced care capabilities.
Features
- Modular Skyspace hubs with 3D‑printed, climate‑resilient housing for patients and staff
- Low‑noise, zero‑emission eVTOL aircraft (Med‑X) equipped with AI‑assisted flight planning and autonomous landing capabilities
- AI‑powered surgical robotics integrated with secure telemedicine for remote specialist control
- Off‑grid renewable energy systems (solar, wind, battery storage) and closed‑loop water/food production to ensure self‑sufficiency
- Real‑time simulation and training centers that enable remote upskilling of responders via VR/AR interfaces
- Digital twin platform that aggregates sensor data for predictive maintenance, operational analytics, and resource optimization
- Over 80 % of components sourced from existing commercial suppliers, reducing development risk and lead time
- Built‑in cybersecurity and data encryption to protect patient information and mission‑critical communications