Uploaded October 2024 | Updated September 2026, 2 weeks ago
Want to see this in even more detail? Watch the 57-minute version here: youtu.be/vAJvnPfot5M
The Outer Barrel Assembly, or OBA, is a key part of the Nancy Grace Roman Space Telescope. It is made of two main parts: the shell section, a baffled carbon-fiber tube that surrounds the telescope to keep the temperature stable and project it from stray light; and the support struts, which extend past the instruments to connect the shell section to the rear spacecraft bus where all the support systems are located. Although the OBA is one of the less complicated parts of the overall observatory, the testing process for it is anything but simple. This time-lapse covers one tiny part of the intricate dance that all of Roman’s systems have been working their way through on their path to joining together as the complete observatory.
Just one of the many tests the OBA undergoes is static load testing in NASA’s Goddard Space Flight Center’s 120-foot-diameter centrifuge. The two parts of the OBA are separated and tested individually, with aluminum weights called mass simulators, or mass sims for short, taking the place of other parts of the spacecraft and creating the correct center of gravity. Nearly 100 sensors are connected throughout the structure to carefully measure the strain on each part of it. The OBA is attached to a metal plate which can tip and rotate hydraulically to change the position of the test hardware. These changes in position ensure that every component of the hardware experiences the full launch load.
The struts are tested in six different orientations first. Tilting for the sixth, and final test, is where this time-lapse begins. After the final test, the multi-day process of removing the struts and replacing them with the shell section begins. All of the mass sims and sensors need to come off of the struts, while, at the same time, different mass sims are added to the shell section, which is in a separate clean room. The shell section is also wrapped in protective Kapton film to reduce contamination in the non-clean environment of the centrifuge.
The struts are topped with a metal interface ring that connects them and gives structural stability. This same ring is needed to connect the shell section to the adjustable test platform and so it must be transferred from the struts to the shell. The simplest way to do this is to connect the two pieces in, with the interface ring between them, in an adjoining “high-bay” with plenty of vertical room and floor space for the two pieces to sit side-by-side on dollies. The complete OBA is then hand-pushed into the centrifuge, to a different crane, and the shell section is lifted off with the interface ring now attached only to it. The struts are pushed out and taken to the next testing step.
The OBA is attached to the centrifuge test platform and has 96 sensors carefully connected at key locations. Like the struts, it will have six spins of different intensities and positions, culminating in a final spin at 18.4 rpm and 7.1 Gs. At that speed, the wind around the edges of the centrifuge travels at 80 miles per hour, and at over 130 mph along the ground.
Music credit: "Concave Hexagon" from the album Geometric Shapes. Written and produced by Lars Leonhard.
Credit: NASA’s Goddard Space Flight Center
Producer: Scott Wiessinger (eMITS)
Videographers: Scott Wiessinger (eMITS)
Chris Gunn (InuTeq, LLC)
Sophia Roberts (eMITS)
Jolearra Tshiteya (ASRC Federal)
Public affairs officer: Claire Andreoli (NASA/GSFC)
Editor: Scott Wiessinger (eMITS)
This video can be freely shared and downloaded at svs.gsfc.nasa.gov/14695. While the video in its entirety can be shared without permission, the music and some individual imagery may have been obtained through permission and may not be excised or remixed in other products. Specific details on such imagery may be found here: svs.gsfc.nasa.gov/14695. For more information on NASA’s media guidelines, visit nasa.gov/multimedia/guidelines.
If you liked this video, subscribe to the NASA Goddard YouTube channel: youtube.com/NASAGoddard
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Want to see this in even more detail? Watch the 57-minute version here: youtu.be/vAJvnPfot5M
The Outer Barrel Assembly, or OBA, is a key part of the Nancy Grace Roman Space Telescope. It is made of two main parts: the shell section, a baffled carbon-fiber tube that surrounds the telescope to keep the temperature stable and project it from stray light; and the support struts, which extend past the instruments to connect the shell section to the rear spacecraft bus where all the support systems are located. Although the OBA is one of the less complicated parts of the overall observatory, the testing process for it is anything but simple. This time-lapse covers one tiny part of the intricate dance that all of Roman’s systems have been working their way through on their path to joining together as the complete observatory.
Just one of the many tests the OBA undergoes is static load testing in NASA’s Goddard Space Flight Center’s 120-foot-diameter centrifuge. The two parts of the OBA are separated and tested individually, with aluminum weights called mass simulators, or mass sims for short, taking the place of other parts of the spacecraft and creating the correct center of gravity. Nearly 100 sensors are connected throughout the structure to carefully measure the strain on each part of it. The OBA is attached to a metal plate which can tip and rotate hydraulically to change the position of the test hardware. These changes in position ensure that every component of the hardware experiences the full launch load.
The struts are tested in six different orientations first. Tilting for the sixth, and final test, is where this time-lapse begins. After the final test, the multi-day process of removing the struts and replacing them with the shell section begins. All of the mass sims and sensors need to come off of the struts, while, at the same time, different mass sims are added to the shell section, which is in a separate clean room. The shell section is also wrapped in protective Kapton film to reduce contamination in the non-clean environment of the centrifuge.
The struts are topped with a metal interface ring that connects them and gives structural stability. This same ring is needed to connect the shell section to the adjustable test platform and so it must be transferred from the struts to the shell. The simplest way to do this is to connect the two pieces in, with the interface ring between them, in an adjoining “high-bay” with plenty of vertical room and floor space for the two pieces to sit side-by-side on dollies. The complete OBA is then hand-pushed into the centrifuge, to a different crane, and the shell section is lifted off with the interface ring now attached only to it. The struts are pushed out and taken to the next testing step.
The OBA is attached to the centrifuge test platform and has 96 sensors carefully connected at key locations. Like the struts, it will have six spins of different intensities and positions, culminating in a final spin at 18.4 rpm and 7.1 Gs. At that speed, the wind around the edges of the centrifuge travels at 80 miles per hour, and at over 130 mph along the ground.
Music credit: "Concave Hexagon" from the album Geometric Shapes. Written and produced by Lars Leonhard.
Credit: NASA’s Goddard Space Flight Center
Producer: Scott Wiessinger (eMITS)
Videographers: Scott Wiessinger (eMITS)
Chris Gunn (InuTeq, LLC)
Sophia Roberts (eMITS)
Jolearra Tshiteya (ASRC Federal)
Public affairs officer: Claire Andreoli (NASA/GSFC)
Editor: Scott Wiessinger (eMITS)
This video can be freely shared and downloaded at svs.gsfc.nasa.gov/14695. While the video in its entirety can be shared without permission, the music and some individual imagery may have been obtained through permission and may not be excised or remixed in other products. Specific details on such imagery may be found here: svs.gsfc.nasa.gov/14695. For more information on NASA’s media guidelines, visit nasa.gov/multimedia/guidelines.
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![NASA’s IMAP Mission (Trailer)
NASA’s Interstellar Mapping and Acceleration Probe, or IMAP, is a new mission that will map the boundaries of our heliosphere — a giant protective bubble created by the Sun that encapsulates our solar system. The spacecraft will study the Sun’s activity and how the heliosphere boundary interacts with the local galactic neighborhood beyond.
The heliosphere protects the solar system from dangerous high-energy particles called galactic cosmic rays. Mapping the heliosphere’s boundaries helps scientists understand our home in space and how it came to be habitable.
IMAP is launching no earlier than Sept. 23, 2025, aboard a SpaceX Falcon 9 rocket from Launch Complex 39A at NASA’s Kennedy Space Center in Florida.
Learn more about IMAP: https://science.nasa.gov/mission/imap/
Music credit: “Proxima Centauri” by Sebastian Barnaby Robertson [BMI}, Michael Garcia [BMI] via Universal Production Music
Credit: NASA/Joy Ng
This video can be freely shared and downloaded at https://svs.gsfc.nasa.gov/14896. While the video in its entirety can be shared without permission, the music and some individual imagery may have been obtained through permission and may not be excised or remixed in other products. Specific details on such imagery may be found here: https://svs.gsfc.nasa.gov/14896. For more information on NASA’s media guidelines, visit https://nasa.gov/multimedia/guidelines.
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![NASAs Illuminate: The Suns Cycle
The seasons of the Sun 🌿☀️🍂❄️
Just as Earth goes through seasonal changes, our Sun moves from times of frequent explosive eruptions to calm stretches of relative quiescence. It’s all part of the roughly 11-year alternation in magnetic activity known as the solar cycle.
Right now we’re in the period known as solar maximum — and solar activity is at its peak! Flares, coronal mass ejections, and the northern and southern lights are most readily observed during this time. But eventually, our closest star will return to its slumber… only to reawaken years later.
NASA’s Illuminate: Out-of-this-world images shining light on our Sun and solar system.
#NASAsIlluminate #HelioBigYear #NASA #SDO #SolarMax #Space #Sun
Music Credit: Kinetic Worlds by Jay Price [PRS] by Universal Production Music
Video Credit: NASA
Producer: Joy Ng (NIA/eMITS)
This video can be freely shared and downloaded at https://svs.gsfc.nasa.gov/14706 While the video in its entirety can be shared without permission, the music and some individual imagery may have been obtained through permission and may not be excised or remixed in other products. Specific details on such imagery may be found here: https://svs.gsfc.nasa.gov/14706
For more information on NASA’s media guidelines, visit https://www.nasa.gov/nasa-brand-center/images-and-media/.
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![Interstellar Visitor is Fastest Comet Ever Recorded
NASAs Hubble Space Telescope just captured an incredible image of interstellar comet 3I/ATLAS racing through our solar system at 130,000 mph!
This cosmic wanderer from beyond our solar system may have been traveling for billions of years before astronomers spotted it.
Watch now to discover what this ancient visitor reveals about our galaxys history and why scientists are racing to study it before its close encounter with the Sun in 2025!
For more information, visit science.nasa.gov/mission/hubble
Credit: NASAs Goddard Space Flight Center
Paul Morris: Lead Producer
Music Credit:
God is in the Wind by Yat Fung Wong [CASH] via Universal Publishing Production Music Asia [CASH] and Universal Production Music
Video Credits:
Halley’s Comet Animation via Pond5
Milky Way Timelapse via Pond5
Comet Grazing the Sun (Tsuchinshan-ATLAS)
Exocomets in Solar System
ESO/L. Calçada/N. Risinger
Comets orbiting White Dwarf Star
ESA/Hubble, NASA, ESO, M. Kornmesser
Oumuamua Image
ESA/Hubble, NASA, ESO, M. Kornmesser
This video can be freely shared and downloaded at https://svs.gsfc.nasa.gov/14882. While the video in its entirety can be shared without permission, the music and some individual imagery may have been obtained through permission and may not be excised or remixed in other products. Specific details on such imagery may be found here: https://svs.gsfc.nasa.gov/14882. For more information on NASA’s media guidelines, visit https://www.nasa.gov/multimedia/guidelines/index.html.
See more Hubble videos on YouTube: https://www.youtube.com/playlist?list=PLiuUQ9asub3Ta8mqP5LNiOhOygRzue8kN
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![Hubbles AI Revolution
Artificial Intelligence has transformed our world, reshaping everything from healthcare to home cooking. Now, this same technology is revolutionizing how we explore the cosmos, turning vast amounts of space data into meaningful discoveries at unprecedented speeds.
As telescopes like the upcoming Nancy Grace Roman Space Telescope prepare to collect data in the petabytes, human analysis alone wont suffice. The next great astronomical discoveries will emerge from the powerful partnership between human curiosity and machine intelligence, processing in minutes what would take decades by traditional methods.
For more information, visit science.nasa.gov/mission/hubble
Credit: NASAs Goddard Space Flight Center
Sanchali Pothuru: Lead Producer / Editor
Paul Morris: Support
Video Credit:
Cutout Hand Paper On Alpha by Wonder&Render via MotionArray
Silhouettes Of People Walking Pack by Cosku via MotionArray
Asteroid Pack by Space Stock Footage via MotionArray
Laptop Blank Screen On Bed In House by Fascinadora via MotionArray
Digital Static Lines Overlay by the7dew via MotionArray
Hamburger Holographic Scan by 2ragon via MotionArray
Medical Pack by Gurbuz via MotionArray
Hands Down Collage Overlays & BGs by Wonder&Render via MotionArray
Distortion Green Lines 4K Background by Nataliya Bermas via MotionArray
Holographic Man HUD by A Luna Blue via MotionArray
Big Asteroids Floating In Space by FynneFilms via MotionArray
Glitch Coding Background by the7dew via MotionArray
Laptop Blank Screen On Bed In House by Fascinadora via MotionArray
Music Credit:
Floating by Nicholas Smith [PRS] via Collection Ideale [SACEM] and Universal Production Music
Silver Soul by Nicholas Smith [PRS] via Collection Ideale [SACEM] and Universal Production Music
Solo Trip by Nicholas Smith [PRS] via Collection Ideale [SACEM] and Universal Production Music
Kinetic World by Jay Price [PRS] via Sketch Music Limited [PRS] and Universal Production Music
Spiritual Engineering by Chris Jones [ASCAP] via ZFC Music [SESAC] and Universal Production Music
This video can be freely shared and downloaded at https://svs.gsfc.nasa.gov/14860. While the video in its entirety can be shared without permission, the music and some individual imagery may have been obtained through permission and may not be excised or remixed in other products. Specific details on such imagery may be found here: https://svs.gsfc.nasa.gov/14860. For more information on NASA’s media guidelines, visit https://www.nasa.gov/multimedia/guidelines/index.html.
See more Hubble videos on YouTube: https://www.youtube.com/playlist?list=PLiuUQ9asub3Ta8mqP5LNiOhOygRzue8kN
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![Hubble Accidentally Catches Comet Breaking Up
In a happy twist of fate, NASA’s Hubble Space Telescope just witnessed a comet in the act of breaking apart. The chance of that happening while Hubble watched is extraordinarily miniscule.
Comet K1, whose full name is Comet C/2025 K1 (ATLAS)—not to be confused with interstellar comet 3I/ATLAS—was not the original target of the Hubble study.
Before it fragmented, K1 was likely a bit larger than an average comet, probably around 5 miles across. The team estimates the comet began to disintegrate eight days before Hubble viewed it. Hubble took three 20-second images, one on each day from November 8 through November 10, 2025. As it watched the comet, one of K1’s smaller pieces also broke up.
Because Hubble’s sharp vision can distinguish extremely fine details, the team could trace the history of the fragments back to when they were one piece. That allowed them to reconstruct the timeline. But in doing so, they uncovered a mystery: Why was there a delay between when the comet broke up and when bright outbursts were seen from the ground? When the comet fragmented and exposed fresh ice, why didn’t it brighten almost instantaneously?
Sometimes the best science happens by accident!
For more information, visit science.nasa.gov/mission/hubble
Credit: NASAs Goddard Space Flight Center
Paul Morris: Lead Producer
Original Story Written by: Ann Jenkins / Christine Pulliam of the Space Telescope Science Institute
Video Credits:
Milky Way with comets timelapse. Credit: POND5
Comet Shoemaker Levy colliding with Jupiter from ESAs movie 15 Years of Discovery. Credit: ESA/Hubble (M. Kornmesser & L. L. Christensen)
Comet K1 Image. Credit: NASA, ESA, D. Bodewits (Auburn). Image processing: J. DePasquale (STScI).
Diagram of K1’s path through the Solar System. Credit: NASA, ESA, R. Crawford (STScI)
Music Credit:
“Le nozze di Figaro” by Wolfgang Amadeus Mozart via Chappell Recorded Music Library Ltd [PRS] and Universal Production Music
This video can be freely shared and downloaded at https://svs.gsfc.nasa.gov/14989. While the video in its entirety can be shared without permission, the music and some individual imagery may have been obtained through permission and may not be excised or remixed in other products. Specific details on such imagery may be found here: https://svs.gsfc.nasa.gov/14989. For more information on NASA’s media guidelines, visit https://www.nasa.gov/multimedia/guidelines/index.html.
See more Hubble videos on YouTube: https://www.youtube.com/playlist?list=PLiuUQ9asub3Ta8mqP5LNiOhOygRzue8kN
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![NASA’s Illuminate: Why Is the Sun Smiling?
June 21, 2026, is the longest day of the year in the Northern Hemisphere, a.k.a. the summer solstice! ☀️
The extra sunlight has got us smiling, but the Sun owes its grin to something else: coronal holes! 🕳️
Coronal holes are cooler, lower density parts of the solar atmosphere where solar material escapes to space at incredible speeds. Dive into coronal holes with us in this episode of NASA’s Illuminate.👇
NASA’s Illuminate: Out-of-this-world images shining light on our Sun and solar system.
#NASAsIlluminate #NASA #sun #space #science
Music credit: Hectic Motion by Koka Media [SACEM] from Universal Production Music
Credit: NASAs Goddard Space Flight Center
Producer/Editor/Narrator: Joy Ng (eMITS)
Writer: Joy Ng (eMITS)
This video can be freely shared and downloaded at https://svs.gsfc.nasa.gov/14954. While the video in its entirety can be shared without permission, the music and some individual imagery may have been obtained through permission and may not be excised or remixed in other products. Specific details on such imagery may be found here: https://svs.gsfc.nasa.gov/14954. For more information on NASA’s media guidelines, visit https://www.nasa.gov/nasa-brand-center/
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· Flickr: http://www.flickr.com/photos/gsfc NASA’s Illuminate: Why Is the Sun Smiling?](https://i.ytimg.com/vi/qj1hvYi-hmA/mqdefault.jpg)

![Legacy of Light: Exploring Cosmic Frontiers
How does the universe work? How is it changing, and what does its future hold? Is there other life in the cosmos awaiting our discovery? The answers to some of humanity’s most profound questions lie in the stars.
From their unique vantage point in space, NASA’s astrophysics observatories have shaped our understanding of the universe and our place in it.
Join us as we celebrate three decades of observing the cosmos, reflect on the most groundbreaking discoveries, and look towards the future of scientific exploration.
For more information, visit https://www.nasa.gov/goddard/
Credit: NASAs Goddard Space Flight Center
Speakers:
Dr. Makenzie Lystrup
Dr. Jennifer Wiseman
Dr. Jane Rigby
Dr. Julie McEnery
Dr. Giada Arney
Paul Morris: Producer
Swarupa Nune: Producer
Claire Andreioli: Producer
Rob Andreioli: Videographer
John Philyaw: Videographer
Mike Velle: Engineer
HWO Video Production:
Scott Wiessinger: Producer/Videographer
Sophia Roberts: Producer/Videographer
Michael McClare: Videographer
Francis Reddy: Drone Pilot
Narrator: Jacob Pinter
Music Credit:
Infinite Horizons, Dan Thiessen [BMI] Universal Production Music
This video can be freely shared and downloaded at https://svs.gsfc.nasa.gov/14782. While the video in its entirety can be shared without permission, the music and some individual imagery may have been obtained through permission and may not be excised or remixed in other products. Specific details on such imagery may be found here: https://svs.gsfc.nasa.gov/14782. For more information on NASA’s media guidelines, visit https://www.nasa.gov/nasa-brand-center/images-and-media/.
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![The Weirdest Worlds Hubble Has Seen
Over 6,000 worlds and counting! NASA recently reached an incredible milestone in the search for planets beyond our solar system: more than six thousand confirmed exoplanets. From blazing hot Jupiters to mysterious super-Earths and puffy gas giants, each new discovery expands our view of the galaxy and deepens our oldest questions.
When the Hubble Space Telescope launched in 1990, not a single exoplanet was known. Yet Hubble’s precision and ultraviolet vision helped pioneer this field, revealing the atmospheres of distant worlds, tracing escaping gases, and uncovering exotic planets unlike anything in our solar system. Its studies have shown planets that are football-shaped, evaporating into space, or as dark as fresh asphalt, each one a testament to nature’s imagination.
Today, Hubble continues to team up with NASA’s new generation of observatories like Webb, TESS, and the upcoming Nancy Grace Roman Space Telescope to explore these alien worlds in ever greater detail. Together, they’re unraveling what these planets are made of, how they evolve, and whether some might harbor life. As we celebrate 6,000 confirmed exoplanets, we look ahead to the next 6,000 and to the discoveries still waiting beyond our cosmic horizon.
For more information, visit science.nasa.gov/mission/hubble
Credit: NASAs Goddard Space Flight Center
Paul Morris: Lead Producer
Video Credits:
Artist’s Impression of WASP-121b
NASA, ESA, and J. Olmsted (STScI)
Music Credit:
Winds by Frederik Helmut Wiedmann [GMR] via Thousand Notes Music [GMR] and Universal Production Music
This video can be freely shared and downloaded at https://svs.gsfc.nasa.gov/14912. While the video in its entirety can be shared without permission, the music and some individual imagery may have been obtained through permission and may not be excised or remixed in other products. Specific details on such imagery may be found here: https://svs.gsfc.nasa.gov/14912. For more information on NASA’s media guidelines, visit https://www.nasa.gov/multimedia/guidelines/index.html.
See more Hubble videos on YouTube: https://www.youtube.com/playlist?list=PLiuUQ9asub3Ta8mqP5LNiOhOygRzue8kN
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