LeoLabs is a leading commercial provider of Space Domain Awareness (SDA) and Space Traffic Management (STM) services. The company operates a global network of phased array radars to track objects in low Earth orbit (LEO), including satellites and space debris, down to 2cm in diameter. LeoLabs provides data and analytics to satellite operators, commercial enterprises, and government agencies like the U.S. Space Force and the European Space Agency (ESA) for collision avoidance, mission risk assessment, and space situational awareness. Their services support safe and sustainable operations in space, enabling customers to monitor and respond to threats in an increasingly congested orbital environment.
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LeoLabs will provide the UK Space Command with space domain awareness services that include persistent monitoring of selected space-based objects.
LeoLabs operates a global radar network and an AI-enabled data analytics platform that collect millions of measurements per day across more than 20,000 objects to maintain a living map of orbital traffic.
LeoLabs plans to offer intuitive, interoperable, and integrated space situational awareness and space domain awareness solutions to help UK organizations share information and data among themselves and eventually with allies.
LeoLabs will provide Space Domain Awareness services to the United Kingdom Space Command, including persistent monitoring of selected high-interest objects.
LeoLabs will provide the UK Space Command with Space Domain Awareness services that include persistent monitoring of selected high-interest objects.
LeoLabs was selected to support the launch and operations of the United Kingdom Space Command's Project Tyche by delivering space tracking, monitoring, and collision avoidance services.
LeoLabs operates a global radar network and an AI-enabled data analytics platform that collect millions of measurements per day across more than 20,000 objects to maintain a living map of orbital traffic.
The AFWERX SBIR contract supports LeoLabs’ development of the Direct Radiating Array toward technology readiness level (TRL) 9 and engagement with Space Force end users.
By adding modules, LeoLabs can create a more powerful Direct Radiating Array capable of tracking activity in medium-Earth or geosynchronous orbit.
LeoLabs has established a global network of radars to track spacecraft and debris in low Earth orbit.
Data from private firm LeoLabs indicate the Chinese spaceplane performed at least two and possibly three capture or docking operations with a co-orbiting object during its second flight in 2022-2023.
LeoLabs is committed to supporting the U.S. Department of Defense’s efforts to enhance tracking of non-cooperative launches, smaller orbital debris, and objects in very low Earth orbit.
LeoLabs has not announced the location for its first Direct Radiating Array, which is scheduled to begin providing service in mid-2025.
LeoLabs invested its own funds in Direct Radiating Arrays prior to winning the AFWERX contract.
LeoLabs announced plans on 2024-06-13 to build a new radar under a $1,245,000 AFWERX contract.
LeoLabs represents 5.8% of Seraphim Space Investment Trust’s net asset value.
LeoLabs provided on-orbit state data support for the Otter Pup–ION-SCV006 rendezvous operation.
LeoLabs estimated that TIMED and Cosmos 2221 passed within 20 meters of each other, with a collision probability as high as 8%.
LeoLabs currently tracks nearly 12,000 fragments in low Earth orbit (LEO).
LeoLabs trains its algorithms using data gathered over eight years of operating space-tracking radars.