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SpaceMine Aerotech Private Limited

In-Situ Resource Utilization (ISRU)

Securing Critical Minerals for Terrestrial Supply Chains

The Shift

Modern industry is facing an imminent supply shortage of rare-earth elements and group metals. SpaceMine Aerotech is bypassing Earth's finite limits by sourcing raw materials directly from celestial bodies.

The Value

By mastering In-Situ Resource Utilization (ISRU), we target the autonomous extraction and processing of resources on the Moon and Near-Earth Asteroids.

The Goal

Establishing secure, repeatable, and automated off-earth supply loops to return strategic minerals safely back to Earth's high-tech manufacturing sectors.

Autonomous Space Robotics

Microgravity-Hardened Heavy Machinery

The Challenge

Extreme vacuum conditions, sharp abrasive regolith dust, and deep cryogenic temperatures make cosmic mining impossible for standard earth machinery.

The Core Tech

We focus on engineering specialized, rugged payloads and closed-loop robotic joints built to survive and operate flawlessly in extreme environments.

The Intellect

Our systems utilize edge-computing artificial intelligence to navigate terrains and execute high-precision robotics drills autonomously without human intervention or signal lag from Earth.

Commercial Nano-Satellite Solutions

Custom, mission-specific satellite architectures tailored for academic institutions, commercial enterprises, and global organizations.

🛠️ Custom Payload Integration

SpaceMine Aerotech designs and deploys versatile, flight-proven nano-satellite platforms (including CubeSats) engineered to meet the unique operational requirements of modern enterprises. From communication arrays to specialized hardware integration, we engineer the end-to-end framework required to get your technology into orbit.

📊 Advanced Remote Sensing & Imaging

Leveraging our proprietary artificial intelligence data pipelines, our nano-satellite configurations provide high-resolution orbital imaging and earth observation data.

💼 Institutional & Academic Programs

We provide dedicated, cost-effective space access programs specifically tailored for universities and research institutions. Our engineering team handles the complex system architecture, subsystem safety validation, and launch integration support, allowing academic researchers to focus entirely on their core scientific payloads.

Development Roadmap

Strategic Path to Operational Deployment

P1
Current Phase

Phase 1 — Core Architecture & IP Framework

Finalizing our structural frameworks and securing our foundational intellectual property strategy.

P2
Upcoming Phase

Phase 2 — Orbital Technology Development

Commencing development on our custom commercial nano satellite platforms and payload configurations after prototype development.

P3
Future Track-1

Phase 3 — Surface Mobility Systems

Transitioning our technology to autonomous surface exploration assets by nano satellite and planetary rovers prototype development starts in this phase.

P4
Future Track-2

Phase 4 — Deep Space Resource Harvesting

Progressing toward full-scale deployment and integrated space resource extraction operations.