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The US Space Force X-37B Spaceplane Is 29 Feet Long, Weighs 11,000 Pounds and Has a Payload Bay 7 Feet Long. Nobody Outside the Program Has Ever Been Told What Goes Inside It.

The X-37B is 29 feet long with a 15-foot wingspan, weighs 11,000 pounds, and has a payload bay about 7 feet long. It launches on an Atlas V or a Falcon 9, stays in orbit for hundreds of days at a time, and lands itself on a runway. The US Space Force announces the launch and the landing. What the spaceplane does in between, and what it carries in that bay, is classified.

X-37B
X-37B. Image Credit: Creative Commons.

Summary and Key Points: The X-37B is 29 feet long, has a 15-foot wingspan, weighs 11,000 pounds, and carries a payload bay roughly 7 feet long. That is nearly everything the public knows about it. The US Space Force announces when the uncrewed spaceplane launches — on an Atlas V or a Falcon 9 — and announces when it lands itself on a runway hundreds of days later. Between those two dates, there is almost nothing: no orbit, no payload, no mission description. The vehicle began as a NASA project, passed to DARPA, then to the Air Force, and now belongs to the Space Force. What sits in that 7-foot bay has never been disclosed, and the ambiguity is itself the point.

X-37B: A Mystery in Space 

The X-37B looks like a miniature Space Shuttle but operates in near-total secrecy.

Russia and China have stated, in different formats and publications, that their experts think it could be some sort of military platform, even a nuclear space bomber. 

Nonetheless, flown by the US Space Force, these missions last for hundreds of days, yet the public knows next to nothing beyond the launch and landing. Otherwise, all information is withheld. 

Officially, the X-37B is not a weapon, but merely a platform designed to test, observe, and signal. 

What Is the X-37B

We don’t know exactly what the X-37B is. 

What we do know is that the mysterious spaceplane is an uncrewed, reusable orbital spaceplane.

Originally developed by NASA, it was transferred to DARPA and then the US Air Force, and most recently, the US Space Force, which operates the program today.

The X-37B is launched atop the Atlas V or Falcon 9 rocket and lands autonomously on conventional runways.

X-37B. Image Credit: NASA YouTube/Screenshot.

X-37B. Image Credit: NASA YouTube/Screenshot.

The X-37B Orbital Test Vehicle (OTV), the Air Force's unmanned, reusable space plane, landed at Vandenberg Air Force Base at 5:48 a.m. (PDT) June 16. OTV-2, which launched from Cape Canaveral Air Force Station, Fla., March 5, 2011, conducted on-orbit experiments for 469 days during its mission. The X-37B is the newest and most advanced re-entry spacecraft. Managed by the Air Force Rapid Capabilities Office, the X-37B program performs risk reduction, experimentation and concept of operations development for reusable space vehicle technologies. (photo credit: Boeing)

The X-37B Orbital Test Vehicle (OTV), the Air Force’s unmanned, reusable space plane, landed at Vandenberg Air Force Base at 5:48 a.m. (PDT) June 16. OTV-2, which launched from Cape Canaveral Air Force Station, Fla., March 5, 2011, conducted on-orbit experiments for 469 days during its mission. The X-37B is the newest and most advanced re-entry spacecraft. Managed by the Air Force Rapid Capabilities Office, the X-37B program performs risk reduction, experimentation and concept of operations development for reusable space vehicle technologies. (photo credit: Boeing)

What happens in between is unclear. 

Presumably, the X-37B bridges a gap between satellites and spacecraft, designed to stay in orbit for years before returning to Earth. 

Technical Specifications 

The X-37B measures 29 feet long with a wingspan of 15 feet. Weighing 11,000 pounds, the X-37B has a 7-foot-long payload bay, though the exact payload capabilities remain classified.

The spacecraft is launched on a conventional launch vehicle and relies on a deployable solar array for on-orbit power. An advanced reusable heat shield is used for thermal protection. The guidance and landing systems are autonomous. 

X-37B Orbital Test Vehicle

In a testing procedure, the X-37B Orbital Test Vehicle taxis on the flightline March 30, 2010, at the Astrotech facility in Titusville, FLa. (Courtesy photo)

X-37B. Image Credit: Creative Commons.

X-37B. Image Credit: Creative Commons.

X-37B. Image Credit: NASA.

X-37B. Image Credit: NASA.

Why So Secret?

The program’s secrecy is designed to protect the payload, mission profiles, and capabilities.

Likely roles include sensor testing, materials experiments, and satellite technology validation. The X-37B likely has the ability to change orbit and return hardware. 

The platform is inherently sensitive; disclosure would help adversaries and enable countermeasures.

Ambiguity itself is strategic because rivals must now assume the X-37B is capable of multiple mission types, even if none are offensive

Likely Uses in Orbit

We can only guess—but the best guesses are that the X-37B is used as a technology demonstrator of sensors, propulsion, and thermal systems

Space environment testing is likely to occur as well to gauge radiation effects and long-duration exposure. Orbital maneuver experiments, including inclination changes and repositioning.

The X-37B may also fill an inspection role, providing close-proximity operations. The platform may also be used to deploy and retrieve small payloads and experiments. Intelligence gathering can’t be ruled out either; it is possible, though unconfirmed

Regardless, the X-37B’s key advantages are reusability and the ability to remain in orbit for years at a time. Unlike satellites, the X-37B can be recovered and reused. 

Tactical Value of the X-37B

The X-37B’s tactical value lies in flexibility. Unlike satellites, the platform is not confined to a single orbit. And unlike crewed spacecraft, there is no human risk. 

This enables rapid experimentation and operational surprise

The X-37B can act as a testbed for future space systems. This supports faster innovation cycles. In space, adaptability equals advantage; the X-37B integrates development, testing, and validation into a single platform

Strategic Implications

The X-37B sends a message merely by existing; it signals that the US is technologically sophisticated and enjoys long-duration access to space.

It raises questions for adversaries: Is the US watching? Is the US testing space weapons? Is the US testing satellite interference? 

Space Shuttle Discovey at Smithsonian 19FortyFive Photo

Space Shuttle Discovery at Smithsonian 19FortyFive Photo

Space Shuttle Discovery at Smithsonian 19FortyFive Photo

Space Shuttle Discovery at Smithsonian 19FortyFive Photo

Even if the answer is no, that uncertainty has an effect.

As space becomes increasingly contested, the X-37B fits into the deterrence-by-ambiguity strategy. It reinforces the US intent to operate freely in orbit without overt militarization. 

Officially, the spaceplane is not a weapon.

There is no evidence of offensive payloads. But its dual-use nature matters, like inspection and proximity operations. These capabilities are inherently sensitive.

The X-37B blurs the lines between research and operations—that blur is deliberate and strategically useful. 

Future of the Program

In the future, expect the X-37B to continue on long missions and to be launched from new launch vehicles.

Likely future evolutions include AI-enabled autonomy, on-orbit servicing tests, and advanced propulsion trials. 

Space Shuttle Discovery at Smithsonian 19FortyFive Photo

Space Shuttle Discovery at Smithsonian 19FortyFive Photo

The platform may inform the design of next-generation military spacecraft and could spawn larger variants or specialized derivatives.

Whatever happens, the spaceplane is unlikely to be an endpoint; it is more likely the beginning of a more varied fleet of spacecraft. 

About the Author: Harrison Kass

Harrison Kass is an attorney and journalist covering national security, technology, and politics. Previously, he was a political staffer and candidate, and a US Air Force pilot selectee. He holds a JD from the University of Oregon and a master’s in global journalism and international relations from NYU. 

Written By

Harrison Kass is a Senior Defense Editor at 19FortyFive. Kass is a writer and attorney focused on national security, technology, and political culture. His work has appeared in City Journal, The Hill, Quillette, The Spectator, and The Cipher Brief. More at harrisonkass.com.

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