The U.S. Space Force awarded All Points Technologies $250 million to expand satellite processing infrastructure at Vandenberg Space Force Base in California. The contract funds construction of new facilities designed to accelerate the preparation, integration, and testing of military satellites before launch.
All Points will build additional processing bays and support structures to handle increased throughput of satellite missions. The expansion addresses a critical bottleneck in the Space Force's launch cadence. As the military shifts toward more frequent orbital operations and resilient distributed satellite constellations, the current facilities at Vandenberg cannot accommodate the volume of spacecraft requiring processing and preparation.
Vandenberg serves as the Space Force's primary West Coast launch complex and satellite processing hub. The base handles payloads bound for polar and sun-synchronous orbits, orbits essential for Earth observation, weather monitoring, and reconnaissance missions. The expansion project recognizes that satellite preparation infrastructure has lagged behind the Space Force's accelerating launch schedule and growing constellation deployments.
The investment reflects the Pentagon's broader strategy to reduce timelines between satellite development, integration, and orbital operations. Faster processing cycles translate to quicker mission deployment and enhanced operational flexibility in space operations.
All Points Technologies provides space and defense infrastructure services to the military and commercial sectors. The company specializes in launch operations, satellite processing, and ground support infrastructure.
The contract positions Vandenberg to handle substantially more satellites annually while reducing preparation times. This expansion supports the Space Force's operational agenda of maintaining space superiority and enabling rapid satellite deployment across multiple orbital regimes. The project underscores the Pentagon's commitment to modernizing ground infrastructure as a force multiplier for space operations.
