Browse the latest facts and intelligence extracted from space industry sources.
| Information | Article | Published |
|---|---|---|
Browse the latest facts and intelligence extracted from space industry sources.
total items
| Information | Article | Published |
|---|---|---|
Artemis II featured Canadian astronaut Jeremy Hansen. GeneralValue 1.5 | May 26, 2026 | |
Joshua Kutryk said he will spend his six-month stay on the International Space Station on a tightly scheduled timeline with five-minute increments, balancing station operations with Canadian science experiments. |
| May 26, 2026 |
Joshua Kutryk is scheduled to launch aboard a SpaceX Crew Dragon no earlier than September 12, 2026. PlanGeneralValue 4.0 | May 26, 2026 |
Joshua Kutryk has served as a military pilot and test pilot. GovernanceValue 2.0 | May 26, 2026 |
Canadian astronaut Joshua Kutryk will fly a six-month mission to the International Space Station as part of Crew 13. PlanValue 4.0 | May 26, 2026 |
Joshua Kutryk linked space medicine research to remote healthcare and AI-assisted healthcare for remote communities in Canada. GeneralCapabilityValue 2.0 | May 26, 2026 |
Eileen has 3D-printed TPU wheels and a six-degree-of-freedom arm. CapabilityValue 2.5 | May 26, 2026 |
DEIMOS uses a 6-wheel triple-rocker design and can carry a 6-axis cycloidal arm, a science payload, and a vision module. CapabilityValue 4.6 | May 26, 2026 |
ARES may be fitted with a gripper to help with delivery tasks if it proves capable of doing so this year. PlanCapabilityValue 2.5 | May 26, 2026 |
Space Concordia’s drone ARES produces 24 kg of thrust at maximum throttle and is designed as a scout and radio repeater for the rover. CapabilityValue 4.0 | May 26, 2026 |
Shenzhou-23 is the seventh mission in the expansion and development phase of the Tiangong space station. PlanGeneralValue 3.5 | May 26, 2026 |
A Long March-2F Y23 rocket launched Shenzhou-23. PlanValue 4.0 | May 26, 2026 |
NASA's Artemis program aims to return humans to the Moon in 2028. PlanValue 4.2 | May 26, 2026 |
Lai Ka-ying is a former Hong Kong police inspector. GovernanceValue 2.0 | May 26, 2026 |
The Shenzhou-23 crew consists of Zhu Yangzhu, Zhang Zhiyuan, and Lai Ka-ying. GovernanceValue 2.0 | May 26, 2026 |
The China Manned Space Agency will decide later which Shenzhou-23 astronaut will stay on Tiangong for approximately one year. PlanGrowthGeneralValue 3.0 | May 26, 2026 |
Some of the scientific materials for Shenzhou-23 were launched with the spacecraft and some arrived aboard Tianzhou-10. GeneralValue 3.0 | May 26, 2026 |
Shenzhou-23 docked successfully with the Tianhe core module of the Tiangong space station. PlanGeneralValue 2.0 | May 26, 2026 |
China is pursuing a crewed lunar mission before 2030. PlanGrowthGeneralValue 3.0 | May 26, 2026 |
One Shenzhou-23 astronaut will remain on Tiangong for approximately one year. PlanValue 4.0 | May 26, 2026 |
Zhu Yangzhu and Zhang Zhiyuan belong to the astronaut division of the Chinese People's Liberation Army. GovernanceValue 2.5 | May 26, 2026 |
China launched the Shenzhou-23 crewed spacecraft from the Jiuquan Satellite Launch Center with three astronauts aboard. PlanCapabilityValue 4.0 | May 26, 2026 |
Eastman Kodak in Rochester, New York was the primary site for original negative production, and AFSPPF served as backup. CapabilityValue 3.0 | May 26, 2026 |
AFSPPF's production division had an original negative and duplicate film photo processing facility that handled CORONA, GAMBIT, HEXAGON, U-2, and D-21 TAGBOARD drone missions. CapabilityValue 4.0 | May 26, 2026 |
The 6594 Test Squadron Air Force Special Projects Production Facility (AFSPPF) was based at Westover Air Force Base in Massachusetts. CapabilityGeneralValue 3.0 | May 26, 2026 |
AFSPPF provided the bulk of duplicate film production for U.S. military and government mapping, charting, and geodesy organizations. RelationshipsValue 3.0 | May 26, 2026 |
AFSPPF received guidance, direction, and funding from SAFSP on the West Coast. RelationshipsFinancialValue 2.2 | May 26, 2026 |
AFSPPF was an imagery facility with three divisions that directly supported the National Reconnaissance Program: production, evaluation, and R&D. CapabilityGeneralValue 4.0 | May 26, 2026 |
AFSPPF was designated and funded to seek out and evaluate emerging technologies in film processing, printing, and image quality evaluation. GeneralCapabilityValue 1.2 | May 26, 2026 |
The Controlled Range Network (CORN) program was managed and directed by AFSPPF. GovernanceGeneralValue 2.5 | May 26, 2026 |
DSI Aerospace develops computer systems, information technologies, control systems, and advanced communication systems for aerospace applications. CapabilityValue 3.2 | May 26, 2026 |
DSI Aerospace’s customers include Airbus DS, OHB, the German Aerospace Center, and the European Space Agency. RelationshipsValue 4.0 | May 26, 2026 |
DSI Aerospace was founded in 1997. GeneralValue 1.0 | May 26, 2026 |
The ACS DY110 C chamber is used to test commercial components for suitability in space applications. CapabilityValue 3.5 | May 26, 2026 |
DSI Aerospace participates in ESA missions including MetOp-SG, JUICE, Biomass, FLEX, PLATO, and Hera. RelationshipsGeneralValue 3.5 | May 26, 2026 |
DSI Aerospace provides high-performance electronic components for aerospace applications. CapabilityValue 2.0 | May 26, 2026 |
The ACS DY110 C chamber uses the low-temperature refrigerant R472 B, which has a GWP of 526. CapabilityValue 4.0 | May 26, 2026 |
The ACS DY110 C chamber can simulate environmental conditions from -65°C to +180°C. CapabilityValue 4.0 | May 26, 2026 |
The ACS DY110 C chamber supports heating and cooling rates of up to 3 K per minute. CapabilityValue 4.0 | May 26, 2026 |
DSI Aerospace supplies space-qualified digital systems that reduce power consumption, weight, and volume while increasing computing power and reliability through FPGA and ASIC hardware. CapabilityValue 4.0 | May 26, 2026 |
Orbit Fab has signed the first government and commercial fuel delivery agreements in GEO. RelationshipsValue 4.0 | May 26, 2026 |
Orbit Fab has signed government and commercial fuel delivery agreements in GEO. RelationshipsGeneralValue 3.8 | May 26, 2026 |
Orbit Fab secured a European Space Agency contract worth approximately $830,000 to work with telecom primes on integrating xenon refueling technology into GEO commercial satellites. RelationshipsFinancialCapabilityPlanValue 5.0 | May 26, 2026 |
The Office of Space Commerce’s voluntary Space Commerce Certification process creates a consolidated interagency review pathway for commercial space activities including satellite servicing, on-orbit refueling, proximity operations, and orbital computing. LegalGeneralValue 2.5 | May 26, 2026 |
Four U.S. government missions are scheduled to demonstrate geosynchronous Earth orbit refueling in 2026. PlanValue 4.0 | May 26, 2026 |
GEO satellites launched without Rapid Attachable Fluid Transfer Interface compatibility cannot be refueled by Orbit Fab’s system. CapabilityValue 4.0 | May 26, 2026 |
The Astroscale U.S. Refueler spacecraft has a mass of 300 kilograms. CapabilityValue 4.0 | May 26, 2026 |
The Astroscale U.S. Refueler will attempt the first-ever hydrazine refueling operations above GEO targeting U.S. Space Force Tetra-5 satellites. PlanCapabilityValue 4.0 | May 26, 2026 |
Orbit Fab’s Rapid Attachable Fluid Transfer Interface is already embedded in government procurement language. GeneralLegalRelationshipsValue 2.0 | May 26, 2026 |
Astroscale U.S. Refueler is a 300-kilogram spacecraft with a refillable hydrazine tank designed to support two planned refueling operations. CapabilityPlanValue 4.0 | May 26, 2026 |
Artemis II featured Canadian astronaut Jeremy Hansen.
Joshua Kutryk said he will spend his six-month stay on the International Space Station on a tightly scheduled timeline with five-minute increments, balancing station operations with Canadian science experiments.
Joshua Kutryk is scheduled to launch aboard a SpaceX Crew Dragon no earlier than September 12, 2026.
Joshua Kutryk has served as a military pilot and test pilot.
Canadian astronaut Joshua Kutryk will fly a six-month mission to the International Space Station as part of Crew 13.
Joshua Kutryk linked space medicine research to remote healthcare and AI-assisted healthcare for remote communities in Canada.
Eileen has 3D-printed TPU wheels and a six-degree-of-freedom arm.
DEIMOS uses a 6-wheel triple-rocker design and can carry a 6-axis cycloidal arm, a science payload, and a vision module.
ARES may be fitted with a gripper to help with delivery tasks if it proves capable of doing so this year.
Space Concordia’s drone ARES produces 24 kg of thrust at maximum throttle and is designed as a scout and radio repeater for the rover.
Shenzhou-23 is the seventh mission in the expansion and development phase of the Tiangong space station.
A Long March-2F Y23 rocket launched Shenzhou-23.
NASA's Artemis program aims to return humans to the Moon in 2028.
Lai Ka-ying is a former Hong Kong police inspector.
The Shenzhou-23 crew consists of Zhu Yangzhu, Zhang Zhiyuan, and Lai Ka-ying.
The China Manned Space Agency will decide later which Shenzhou-23 astronaut will stay on Tiangong for approximately one year.
Some of the scientific materials for Shenzhou-23 were launched with the spacecraft and some arrived aboard Tianzhou-10.
Shenzhou-23 docked successfully with the Tianhe core module of the Tiangong space station.
One Shenzhou-23 astronaut will remain on Tiangong for approximately one year.
Zhu Yangzhu and Zhang Zhiyuan belong to the astronaut division of the Chinese People's Liberation Army.
China launched the Shenzhou-23 crewed spacecraft from the Jiuquan Satellite Launch Center with three astronauts aboard.
Eastman Kodak in Rochester, New York was the primary site for original negative production, and AFSPPF served as backup.
AFSPPF's production division had an original negative and duplicate film photo processing facility that handled CORONA, GAMBIT, HEXAGON, U-2, and D-21 TAGBOARD drone missions.
The 6594 Test Squadron Air Force Special Projects Production Facility (AFSPPF) was based at Westover Air Force Base in Massachusetts.
AFSPPF provided the bulk of duplicate film production for U.S. military and government mapping, charting, and geodesy organizations.
AFSPPF received guidance, direction, and funding from SAFSP on the West Coast.
AFSPPF was an imagery facility with three divisions that directly supported the National Reconnaissance Program: production, evaluation, and R&D.
AFSPPF was designated and funded to seek out and evaluate emerging technologies in film processing, printing, and image quality evaluation.
The Controlled Range Network (CORN) program was managed and directed by AFSPPF.
DSI Aerospace develops computer systems, information technologies, control systems, and advanced communication systems for aerospace applications.
DSI Aerospace’s customers include Airbus DS, OHB, the German Aerospace Center, and the European Space Agency.
DSI Aerospace was founded in 1997.
The ACS DY110 C chamber is used to test commercial components for suitability in space applications.
DSI Aerospace participates in ESA missions including MetOp-SG, JUICE, Biomass, FLEX, PLATO, and Hera.
DSI Aerospace provides high-performance electronic components for aerospace applications.
The ACS DY110 C chamber uses the low-temperature refrigerant R472 B, which has a GWP of 526.
The ACS DY110 C chamber can simulate environmental conditions from -65°C to +180°C.
The ACS DY110 C chamber supports heating and cooling rates of up to 3 K per minute.
DSI Aerospace supplies space-qualified digital systems that reduce power consumption, weight, and volume while increasing computing power and reliability through FPGA and ASIC hardware.
Orbit Fab has signed the first government and commercial fuel delivery agreements in GEO.
Orbit Fab has signed government and commercial fuel delivery agreements in GEO.
Orbit Fab secured a European Space Agency contract worth approximately $830,000 to work with telecom primes on integrating xenon refueling technology into GEO commercial satellites.
The Office of Space Commerce’s voluntary Space Commerce Certification process creates a consolidated interagency review pathway for commercial space activities including satellite servicing, on-orbit refueling, proximity operations, and orbital computing.
Four U.S. government missions are scheduled to demonstrate geosynchronous Earth orbit refueling in 2026.
GEO satellites launched without Rapid Attachable Fluid Transfer Interface compatibility cannot be refueled by Orbit Fab’s system.
The Astroscale U.S. Refueler spacecraft has a mass of 300 kilograms.
The Astroscale U.S. Refueler will attempt the first-ever hydrazine refueling operations above GEO targeting U.S. Space Force Tetra-5 satellites.
Orbit Fab’s Rapid Attachable Fluid Transfer Interface is already embedded in government procurement language.
Astroscale U.S. Refueler is a 300-kilogram spacecraft with a refillable hydrazine tank designed to support two planned refueling operations.