Boeing

The Future of Space Is Built Here

Starliner astronaut

With experience gained from supporting every major U.S. endeavor to escape Earth’s gravity, we’re designing and building the future of safe, assured space exploration and commercial access – even as we lead the digital transition of the satellite industry for both government and commercial customers around the globe.

We’re enabling critical research on the International Space Station (ISS) that benefits the future space economy, deep-space exploration and life on Earth; returning crew launch capabilities to U.S. soil with the CST-100 Starliner commercial spacecraft; ensuring successful delivery to Earth’s orbit with the United Launch Alliance (ULA) joint venture between Boeing and Lockheed Martin; and building heavy-lift, human-rated propulsion to deep space with the Space Launch System (SLS) rocket that will launch missions on a path to the Gateway cislunar outpost, the moon’s surface and Mars. Boeing-built Tracking and Data Relay Satellites (TDRS) provide high-bandwidth communications between Earth-orbiting spacecraft and facilities on the ground.

We also design and build advanced space and communications systems for military, commercial and scientific uses, including advanced digital payload, all-electric propulsion and 3D manufacturing capabilities for spacecraft that can operate in the geosynchronous, medium-Earth-orbital or low-Earth-orbital planes. We’re using innovative manufacturing practices, and simplifying and reducing the complexity of Boeing satellites.

What's Possible

Space  Features

Boeing and NASA Power Up Space Launch System Core Stage for Green Run

July 02, 2020 in Space, Technology

Test teams have turned on NASA’s SLS core stage in flight configuration with the stage controller for the first time at Stennis Space Center.

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Starliner Parachutes Perform Under Pressure

June 29, 2020 in Space

Boeing simulates more worst-case scenarios to further validate the safety of Starliner parachutes even under adverse environmental factors.

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Artemis I rocket successfully completes structural testing

June 26, 2020 in Space

The final pressure test of a Space Launch System liquid oxygen tank this week completed the SLS core stage structural qualification test campaign.

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Space to Ground

June 24, 2020 in Space

Genes in Space competition enables young scientists to launch DNA experiments to the International Space Station.

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Starliner Crew Training Goes Virtual

June 11, 2020 in Space, Our People

The team developing the training system for Boeing’s CST-100 Starliner is on a path to allow a wearable virtual-reality system to be plugged into the overall training network.

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Air Force Academy cadets build satellite for latest X-37B mission

May 17, 2020 in Space, Defense

Sixth mission of X-37B spaceplane set to begin.

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Tuning up for Green Run

April 28, 2020 in Space

Boeing and NASA Space Launch System teams have completed a rigorous avionics review so the program will be prepared to resume testing of the first SLS core stage when NASA reopens Stennis Space Center.

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Artemis

Lunar crew

NASA, the United States, and the space industry are building increased access to and commercialization of opportunities in low Earth orbit; a return to the moon’s surface by 2024 – this time to stay; and sustainable exploration of deep space, including the moon and Mars. We are committed to NASA’s Artemis program and to the National Space Council’s vision for continued American leadership and international partnerships in space.

Research underway on the International Space Station (ISS) that we built and sustain is enabling humans and technology to operate in space for months at a time. Commercial spacecraft such as our CST-100 Starliner will open a market for tourism and manufacturing in low Earth orbit, while increasing research conducted on the ISS. That will allow NASA and its partner agencies to focus on deep-space exploration missions.

You’ll need the most powerful rocket ever built to get people and massive payloads to the moon and Mars. NASA’s Space Launch System is the size of a 38-story building and will produce 8.8 million pounds of maximum thrust at launch. We’re providing its avionics, core stage and upper stages to support NASA’s Artemis moon missions and make the next generation of human spaceflight possible.

We’re designing a Gateway for cislunar space – the region between the Earth and the moon – to be a testbed and hub for robotic and crewed missions to the lunar surface and eventually to Mars. And we’re conducting studies on surface modules and other technologies for lunar exploration.

Going beyond Earth

#Artemis on @BoeingSpace

NASA Artemis 

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