Space & Satellites
SpaceX Launches Ninth GPS III Satellite for U.S. Space Force
SpaceX deployed the ninth GPS III satellite, enhancing navigation accuracy and anti-jamming for the U.S. Space Force. Final Block III launch set for March 2026.

This article is based on an official press release from SpaceX and mission data provided by the U.S. Space Force and Lockheed Martin.
SpaceX Successfully Deploys GPS III SV09 “Ellison Onizuka” for U.S. Space Force
SpaceX has successfully launched the ninth Global Positioning System III (GPS III) satellite into medium Earth orbit, continuing the modernization of the United States’ premier navigation constellation. The mission, managed by the U.S. Space Force, lifted off from Space Launch Complex 40 (SLC-40) at Cape Canaveral Space Force Station in Florida.
According to official mission data from SpaceX, the Falcon 9 rocket launched on Tuesday, January 27, 2026, at 11:53 p.m. EST. The payload, designated GPS III Space Vehicle 09 (SV09), was deployed approximately 89 minutes after liftoff. This mission marks another successful collaboration between commercial launch providers and national security agencies to maintain critical global infrastructure.
Launch Vehicle and Recovery Statistics
The mission utilized a flight-proven Falcon 9 first-stage booster, identified by tail number B1096. SpaceX confirmed that this was the fifth flight for this specific booster. Its service history includes the launch of the KF-01 Kuiper mission, NASA’s IMAP mission, the NROL-77 national security mission, and one Starlink deployment.
Following stage separation, the first stage executed a controlled descent and successfully landed on the droneship A Shortfall of Gravitas, which was stationed in the Atlantic Ocean. This recovery underscores the routine nature of booster reuse in modern National Security Space Launch (NSSL) missions.
Payload Capabilities: The “Ellison Onizuka” Satellite
The satellite launched on this mission is nicknamed “Ellison Onizuka” in honor of the U.S. Air Force Colonel and astronaut who perished in the Space Shuttle Challenger disaster. The launch timing was particularly poignant, occurring just hours before the 40th anniversary of the tragedy on January 28.
Manufactured by Lockheed Martin, SV09 is the ninth of ten planned “Block III” satellites. These spacecraft represent a significant technological leap over previous generations. According to manufacturer specifications, the GPS III series offers the following enhancements:
- Improved Accuracy: The satellites provide three times greater accuracy than the legacy Block II satellites.
- Anti-Jamming: The units feature eight times improved anti-jamming capabilities, a critical upgrade for operations in contested electronic warfare environments.
- Signal Interoperability: The satellite broadcasts the L1C civilian signal, which is interoperable with Europe’s Galileo system, as well as the M-Code military signal designed for secure use by U.S. and allied forces.
The satellite is designed for a lifespan of 15 years and will operate in a Medium Earth Orbit (MEO) at an altitude of approximately 12,550 miles (20,200 km).
AirPro News Analysis: Strategic Flexibility and Modernization
The successful deployment of SV09 highlights a critical operational capability within the U.S. Space Force: the “flexible manifest.” This mission was originally slated to fly on a United Launch Alliance (ULA) Vulcan Centaur rocket. However, due to certification delays associated with the Vulcan vehicle for NSSL missions, the Space Force exercised its ability to swap the payload to a SpaceX Falcon 9.
From our perspective, this decision demonstrates the maturity of the NSSL program’s goal to ensure schedule assurance. By pivoting between providers, the Space Force avoided potential capability gaps in the GPS constellation. Furthermore, with SV09 in orbit, the initial “Block III” upgrade cycle is nearly complete. This modernization effort is essential not just for military logistics, but for the global civilian economy that relies on precise timing and navigation data.
Future Outlook for the GPS Constellation
With the successful launch of SV09, the focus now shifts to the final satellite of this block. The tenth GPS III satellite (SV10) is currently scheduled for launch in March 2026. Following the completion of the Block III series, the Space Force and industry partners will transition to the next generation, known as GPS III Follow-On (GPS IIIF).
Launches for the GPS IIIF series are expected to commence in 2027. These future satellites promise even more robust capabilities, including a fully digital navigation payload and up to 60 times greater anti-jamming power compared to legacy systems.
Sources: SpaceX, Lockheed Martin, U.S. Space Force
Photo Credit: SpaceX
Space & Satellites
SpaceX Starship Flight 13 Deploys 20 Starlink V3 Satellites
SpaceX completed Starship’s 13th flight test on July 24, 2026, deploying 20 Starlink V3 satellites from Boca Chica, Texas.

This article summarizes reporting by Reuters by Joey Roulette.
Space Exploration Technologies Corp. (SpaceX) successfully launched the 13th integrated flight test of its Starship rocket system from Boca Chica, Texas, on July 24, 2026, deploying a payload of 20 next-generation Starlink V3 satellites into suborbital space.
The mission marks a critical operational milestone for the 400-foot (122-meter) launch vehicle as the manufacturers works toward establishing routine service by the end of 2026. According to Reuters, achieving this launch cadence is necessary to fulfill contracts for the National Aeronautics and Space Administration (NASA) Artemis lunar landing program and to expand the Starlink broadband constellation with future artificial intelligence-processing satellites.
Flight profile and payload deployment
Liftoff from the Starbase facility followed two previous delays. Spaceflight Now reported that an initial attempt on July 16, 2026, was aborted at T-0 when four Raptor engines failed to start. A subsequent attempt on July 23, 2026, was scrubbed due to low cloud cover. On July 24, 2026, the vehicle successfully cleared the pad.
Approximately 10 minutes into the flight, the Starship upper stage reached speeds of 16,400 mph (26,400 kph) in space, according to Reuters. SpaceX confirmed the deployment of 20 Starlink V3 satellites during this phase. Six of these satellites were modified with cameras designed to scan the Starship vehicle’s heat shield. The company noted that the suborbital satellites were expected to demise upon reentry approximately 20 minutes after deployment.
Super Heavy booster descent and recovery operations
The mission incorporated lessons from Flight 12, which took place in May 2026. During that previous test, the booster missed its intended landing target and the upper stage experienced a premature engine shutdown.
For Flight 13, the Super Heavy first stage, powered by 33 methane-fueled Raptor engines, executed its return sequence toward the Gulf of Mexico. Spaceflight Now reported that during the descent phase, 10 of the 13 targeted engines successfully restarted. At the moment of its “hard” splashdown in the water, five engines remained running. The upper stage was programmed for a separate splashdown in the Indian Ocean.
AirPro News analysis
We view the deployment of the Starlink V3 payload as a significant transition for the Starship program from purely developmental test flights to operational missions. While the “hard” splashdown of the Super Heavy booster indicates that precision recovery remains a technical hurdle, the successful deployment of a functional payload demonstrates the vehicle’s growing viability for commercial and government launch manifests. The integration of camera-equipped satellites to monitor the heat shield also highlights an innovative approach to gathering critical telemetry for future atmospheric reentry profiles.
Sources: Reuters
Photo Credit: SpaceX
Space & Satellites
Planet Labs Germany and Isar Aerospace Sign Launch Deal
Planet Labs Germany and Isar Aerospace target a Pelican satellite launch within 12 months aboard the Spectrum rocket from Norway.

Planet Labs Germany and Isar Aerospace have signed a strategic launch agreement to send a next-generation Pelican satellite into orbit, marking the first time a German-built satellite will fly on a domestic launch vehicle. The mission will utilize Isar Aerospace’s Spectrum rocket lifting off from the company’s dedicated complex at Andøya Space in Norway.
Announced in a press release on July 2, 2026, the partnership targets a launch window within 12 months, potentially placing the mission as early as late 2026. The agreement pairs a subsidiary of Earth observation operator Planet Labs PBC with a European launch startup to demonstrate sovereign space capabilities for the German commercial space sector.
Expanding German Space Manufacturing
The Pelican satellite designated for this mission will be assembled at Planet’s upcoming manufacturing facility in Berlin. To support the expansion of its production capabilities, Planet expects to add 70 new employees to its existing Berlin workforce of approximately 150 personnel.
Isar Aerospace will manufacture the Spectrum launch vehicle at its 40,000-square-meter factory located near Munich. The launch provider plans to scale its production capacity to build 40 launch vehicles per year at the Munich site to meet commercial and government demand.
Germany has set out an ambitious space agenda. Planet and Isar Aerospace are responding to the moment and delivering a first for the country: both satellite and rocket built in Germany.
Martin Polak, Managing Director of Planet Labs Germany, stated that the joint teams aim to execute the first launch within less than 12 months of the agreement. He noted the timeline showcases an agile aerospace approach supporting national priorities across security, resilience, and civil applications.
Constellation Deployment and Launch Vehicle Status
Planet Labs PBC has been rapidly deploying its next-generation high-resolution Pelican constellation throughout the year. The company successfully launched three Pelican satellites on May 3, 2026, and announced the shipment of its Pelican-11 satellite to a launch site on June 2, 2026.
The launch agreement represents a significant commitment to Isar Aerospace. According to reporting by Aviation Week, the startup’s Spectrum launch vehicle has yet to reach orbit. The upcoming mission will serve as a critical test of the vehicle’s commercial viability.
Stella Guillen, Chief Commercial Officer of Isar Aerospace, said the collaboration underscores the growing strategic importance of the European space ecosystem. She added that the company’s integrated launch capability aims to serve a rapidly growing global demand for access to space.
AirPro News analysis
We view this agreement as a critical milestone for European sovereign space capabilities. By pairing a domestic payload with a domestic launch provider, Germany is demonstrating a closed-loop commercial space ecosystem that reduces reliance on foreign launch services. However, the aggressive 12-month timeline relies heavily on Isar Aerospace successfully debuting its Spectrum rocket, a vehicle that has not yet achieved orbit. If successful, this mission could position Isar Aerospace as a primary launch provider for European Earth observation constellations and validate Planet’s strategy of diversifying its launch portfolio.
Sources: Planet Labs / Business Wire
Photo Credit: Isar Aerospace
Space & Satellites
Firefly Aerospace Advances Esrange Launch Complex for 2028 Orbital Debut
Firefly Aerospace and SSC Space complete infrastructure at Esrange Space Center, targeting first orbital launch in 2028.

Firefly Aerospace and the Swedish Space Corporation (SSC Space) have completed initial infrastructure and secured transatlantic regulatory frameworks to advance pad construction at Launch Complex 3C at Sweden’s Esrange Space Center, targeting a first orbital launch in 2028.
Announced in a June 30, 2026, press release, the milestone establishes a foundation for dedicated orbital launch capabilities from mainland Europe. The partnership will utilize Firefly’s Alpha launch vehicle to serve European commercial customers and the Swedish Armed Forces, expanding access to space for allied nations.
Infrastructure and regulatory progress
The companies have completed several key infrastructure projects at Launch Complex 3C to support the upcoming orbital missions. The finalized facilities include a launch control center, a payload processing facility, and a launch vehicle integration building. The site also features newly installed tracking and control systems, alongside dedicated security and storage facilities.
The physical construction aligns with recent diplomatic agreements designed to facilitate international commercial space operations. In April 2026, the Swedish National Space Agency (SNSA) and the U.S. Federal Aviation Administration (FAA) signed a Memorandum of Cooperation to streamline the launch licensing process and establish a shared understanding of commercial space regulations. This agreement builds upon a broader framework, making Sweden the sixth country to sign a Technology Safeguards Agreement with the United States.
Defense applications and payload capabilities
The development at Esrange Space Center carries direct implications for European defense logistics. SSC Space recently signed an agreement valued at SEK 209 million with the Swedish Defense Materiel Administration (FMV). The contract is structured to provide the Swedish Armed Forces with dedicated satellite launch capabilities from the domestic spaceport.
Missions from Launch Complex 3C will utilize the Firefly Alpha, a two-stage launch vehicle capable of delivering a 1,000-kilogram payload to Low Earth Orbit (LEO). The deployment of an American rocket from European soil represents a specific operational strategy for the Texas-based manufacturer.
“We’re proud to partner with SSC Space and work collaboratively with U.S. and Swedish agencies to provide European customers with a dedicated orbital launch capability using our flight-proven Alpha rocket. Our ‘launch as a franchise’ model provides our nation and allies with the launch site diversification required for resilient, responsive space missions.”
The statement from Firefly Aerospace CEO Jason Kim highlights the company’s focus on global launch expansion, utilizing the Swedish site as the starting point for its international franchise model.
AirPro News analysis
We view Firefly’s “launch as a franchise” model as a strategic pivot in the commercial space sector, moving away from centralized domestic launch sites toward distributed, allied-nation launch capabilities. The SEK 209 million defense agreement underscores the growing military reliance on commercial launch providers for responsive space access. By establishing a physical and regulatory foothold at Esrange Space Center, Firefly positions the Alpha rocket to capture a significant share of the emerging European small-lift market, while simultaneously offering the U.S. and its allies redundant launch options outside of traditional North American spaceports.
Sources: Firefly Aerospace
Photo Credit: Firefly Aerospace
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