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Dresden

active
CommunicationsLEOCOSPAR 2025-185ALaunched 8/23/2025
Admin Edit
Mission & Launch
Launch Mission
Live, Laugh, Launch
Launch Vehicle
Electron
Launch Date
8/23/2025
Orbit & Mass
Orbit Class
LEO
Altitude
661 km
Inclination
97.97 deg
Dry Mass
30 kg
Total Mass
30 kg
Payload Classification
Mission Type
Communications
Payload Category
COM
Payload Class
B
Organizations
Operator
E-Space
Manufacturer
E-Space
Constellation
Name
E-Space LEO constellation
Active Satellites
4
Registry
COSPAR ID
2025-185A
UN Registration
ST/SG/SER.E/1305
Track
Mentions
7
All verified mentions of this spacecraft in source documents.
0.0-5.0
Actions

Dresden University of Technology is listed as a research group participant in Deutsche Telekom's Multi-Orbit Early Adopter Program.

RelationshipsPlanValue 4.0Apr 30, 2026Deutsche Telekom to satellite IoT/D2D providers: Come one, come all, but remember you’re just clowns in our circus

Morpheus Space’s Dresden mass production facility currently produces 100 units of the company’s proprietary GO-2 electric propulsion system as of July 2025.

CapabilityGrowthValue 4.0Feb 5, 2026Latest News

Morpheus Space will use the strategic investment to expand mass production capabilities at its mass production facility in Dresden.

GrowthFinancialCapabilityValue 4.0Feb 5, 2026Latest News

The Helmholtz Center Dresden-Rossendorf is studying bubble formation during water electrolysis in weightlessness.

CapabilityGeneralValue 2.2Oct 30, 2025Von der Elektrolyse bis zur Lageregelung von Kleinsatelliten

A new wind tunnel in Dresden will test the use of residual atmosphere as fuel for satellites.

CapabilityPlanValue 3.0Feb 18, 2025Windkanal für Satelliten im sehr niedrigen Erdorbit

Morpheus Space plans to establish a factory in Dresden, Germany to produce thousands of propulsion systems annually.

GrowthCapabilityPlanValue 4.5Sep 14, 2022Morpheus Space raises $28 million in Series A round

An international team led by Airbus Defence and Space (Friedrichshafen, Germany) and including Fraunhofer IFAM (Dresden, Germany), Boston University (Massachusetts, USA), and Abengoa Innovación (Seville, Spain) demonstrated oxygen and metals production from simulated lunar regolith using the ROXY process.

CapabilityValue 4.0Oct 27, 2020Oxygen From Lunar Dust? Int’l Team Says Such Could Occur