ForgeStar-1 Satellite Prepares for First US Mission | Aero-News Network
Aero-News Network
RSS icon RSS feed
podcast icon MP3 podcast
Subscribe Aero-News e-mail Newsletter Subscribe

Airborne Unlimited -- Most Recent Daily Episodes

Episode Date

Airborne-Monday

Airborne-Tuesday

Airborne-Wednesday Airborne-Thursday

Airborne-Friday

Airborne On YouTube

Airborne-Unlimited-06.23.25

Airborne-NextGen-06.24.25

AirborneUnlimited-06.25.25

Airborne-AffordableFlyers-06.26.25

AirborneUnlimited-06.27.25

Fri, Apr 18, 2025

ForgeStar-1 Satellite Prepares for First US Mission

Space Forge Ships Tech to the US for In-Space Advanced Manufacturing

In preparation for an upcoming In-Space Advanced Manufacturing (ISAM) mission, UK-based startup Space Forge has officially shipped its ForgeStar-1 satellite to the US. The work aims to harness space’s extreme conditions to create materials unavailable here on the blue planet.

“This is the moment we’ve been working towards. This upcoming in-orbit mission is more than just a test flight – it’s a critical step toward building an entire infrastructure that can support us back on Earth with space-made materials,” stated Joshua Western, CEO and Co-founder of Space Forge. “With this mission laying the groundwork, the next is all systems go for commercial manufacturing – returning materials that will transform entire industries.”

The company’s first rendition of the microwave-sized in-space manufacturing satellite, titled Forgestar-0, launched on a Virgin Orbit rocket in January 2023. However, a failure of the spacecraft’s fuel filter caused Forgestar-0 and several other research satellites to land in the Atlantic Ocean rather than orbit.

Space Forge recreated the platform as ForgeStar-1, planning to ship it off to the US for a mission in early 2024. Though undisclosed factors delayed the launch, the company has confirmed that the ForgeStar-1 is finally making its way overseas.

ForgeStar-1 will be sent up to space later this year for its first ISAM test. The mission aims to confirm that “high-performance semiconductor materials can be manufactured in space and safely returned to Earth.” To do so, it will utilize the microgravity, extreme temperatures, and vacuum of space that Earth cannot replicate.

While compound semiconductors, which are essential for many electronics, can be and currently are manufactured on Earth, the process is slow, expensive, and energy-intensive. Space is a completely new ball game.

"Producing compound semiconductors is a very intense and very slow process, they are literally grown by atoms," explained Western. "And so gravity has a profound effect, basically shifting the bonds between those atoms. In space you're able to overcome that barrier, because there's an absence of gravity."

FMI: www.spaceforge.com

Advertisement

More News

NTSB Prelim: Piper PA-23

Pilot Also Reported That Due To A Fuel Leak, The Auxiliary Fuel Tanks Were Not Used On June 4, 2025, at 13:41 eastern daylight time, a Piper PA-23, N2109P, was substantially damage>[...]

ANN FAQ: Submit a News Story!

Have A Story That NEEDS To Be Featured On Aero-News? Here’s How To Submit A Story To Our Team Some of the greatest new stories ANN has ever covered have been submitted by our>[...]

Classic Aero-TV: One Man’s Vietnam

From 2023 (YouTube Edition): Reflections on War’s Collective Lessons and Cyclical Nature The exigencies of war ought be colorblind. Inane social-constructs the likes of racis>[...]

ANN's Daily Aero-Linx (07.03.25)

Aero Linx: Colorado Pilots Association (CPA) Colorado Pilots Association was incorporated as a Colorado Nonprofit Corporation in 1972. It is a statewide organization with over 700 >[...]

ANN's Daily Aero-Term (07.03.25): High Speed Taxiway

High Speed Taxiway A long radius taxiway designed and provided with lighting or marking to define the path of aircraft, traveling at high speed (up to 60 knots), from the runway ce>[...]

blog comments powered by Disqus



Advertisement

Advertisement

Podcasts

Advertisement

© 2007 - 2025 Web Development & Design by Pauli Systems, LC