Morpheus Space offers the GO-2 Electric Propulsion system, a modular FEEP-based solution for satellite mobility. This system provides precise station-keeping, constellation deployment, and deorbiting maneuvers with high redundancy and simplified plug-and-play integration.
Funding
$28M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.







Founders
Product
Problem
Satellite operators face challenges in achieving sustained mobility and precise station-keeping throughout a mission's lifecycle. Traditional propulsion systems can be complex to integrate and may not offer the necessary redundancy or control for advanced orbital maneuvers, impacting payload value and mission longevity.
Solution
Morpheus Space provides the GO-2 Electric Propulsion system, a modular and highly redundant FEEP-based solution designed for comprehensive satellite mobility. This system enables efficient station-keeping, constellation deployment, collision avoidance, and deorbiting maneuvers, ensuring maximum operational uptime and payload value. Its plug-and-play integration and solid metallic propellant simplify deployment and eliminate leakage risks. The GO-2 system's design offers precise control and high reliability, addressing the evolving demands of modern satellite operations.
Target Audience
The primary customers are satellite manufacturers and operators requiring robust, efficient, and easily integrated propulsion solutions for small satellites and constellations.
Features
- FEEP-based electric propulsion system utilizing a solid metallic propellant for zero leakage and simplified integration.
- Modular 1U unit design, scalable for spacecraft ranging from 6U to support payloads up to 250kg.
- Features 40 independent emitters with individual thrust and propellant control for precise maneuvering and high redundancy.
- Plug-and-play integration with a single connector for power and data, minimizing system integration complexities.
- Fully self-contained design with no moving parts, pressurized tanks, valves, or external piping.
- Offers high total impulse for extended mission durations and sustained satellite mobility.
- Flight-proven technology with heritage hardware in orbit since 2018, including successful collision avoidance maneuvers.
- Scaled production capabilities to support demanding delivery schedules for satellite constellations.