Skip to main content
E

ERETS

ERETS develops technologies focused on space sustainability and debris mitigation. The company utilizes a satellite constellation for real-time space debris data and explores laser technology for active debris removal. They aim to enhance the safety and efficiency of orbital operations for future space missions.

London, United KingdomFounded 2022113K+ followers
Updated 4 months ago

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Product

Problem

The increasing density of orbital objects poses a significant risk to operational satellites and future space missions, threatening the long-term sustainability of the space environment. Current methods for tracking and mitigating smaller debris fragments are insufficient, leading to a growing collision risk and potential disruption of critical space-based services.

Solution

ERETS is developing and deploying technologies for active space debris mitigation and enhanced orbital situational awareness. The company's Erets D mission focuses on laser-based debris removal for objects ranging from 1cm to 25kg, utilizing advanced optics and green propulsion systems. Concurrently, the Erets C mission employs a constellation of satellites with in-house developed payloads for precise detection and tracking of smaller debris particles. This integrated approach provides real-time debris data through the Erets 360 API platform, enabling satellite operators and space agencies to improve collision avoidance and space traffic management.

Target Audience

ERETS targets satellite operators, space agencies, and organizations involved in space traffic management and orbital sustainability.

Features

  • Laser-based debris removal technology for objects up to 25kg (Erets D mission).
  • In-house payload development for advanced optics and debris detection systems.
  • Satellite constellation for real-time tracking of orbital debris, including small particles (Erets C mission).
  • Erets 360 API platform providing real-time space debris data, including size, location, and trajectory.
  • Integration of Deep Neural Network (DNN) for AI-driven debris tracking and analysis.
  • Development of green propulsion systems for satellite operations.
  • Collaboration with research institutions and universities for AI and optics R&D.
  • Focus on sustainable composite materials for spacecraft components.
This profile is AI-generated and may contain inaccuracies.