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Project Suncatcher is our moonshot exploring whether we can one day host machine learning infrastructure in space 🚀 To do so, we need to know whether our AI hardware can operate in orbit. Can our TPUs handle the physical stress of spaceflight and the radiation and thermal extremes of...

946,296 görüntüleme • 19 saat önce •via X (Twitter)

31 Yorum

Google profil fotoğrafı
Google19 saat önce

Some things can only be tested in space — like how the hardware holds up to solar events, cosmic rays, or bitflip errors caused by radiation — which is why we’re putting our first TPUs in orbit.

Google profil fotoğrafı
Google19 saat önce

Learn more about the mission — directly from the team of scientists and engineers who worked on it.

Prompt Heat profil fotoğrafı
Prompt Heat19 saat önce

give me gemini 4 argon!!!

FutureAlpha profil fotoğrafı
FutureAlpha19 saat önce

thermal management in a vacuum is already a nightmare, so running high power TPUs in orbit sounds insane.

TechP profil fotoğrafı
TechP19 saat önce

Space-based AI sounds insane until you realize the infrastructure could eventually run where the data is generated. The real question: can TPUs survive orbit long enough to make this economically viable?

anish profil fotoğrafı
anish18 saat önce

vibration tests and radiation i get, but i think cooling is the part i'd lose sleep over, no air up there to carry the heat away from four tpus

Will {AI} profil fotoğrafı
Will {AI}19 saat önce

We want today Gemini 4 Argon

Sarah Tran | Trang profil fotoğrafı
Sarah Tran | Trang19 saat önce

May today bring you good energy, a peaceful heart, and a few lovely surprises.🍀🥰

张思考者 profil fotoğrafı
张思考者19 saat önce

Decoupling high-density compute from terrestrial thermodynamic and energy constraints represents a profound civilizational transition. Validating accelerator resilience against cosmic radiation and thermal extremes directly confronts the physical boundaries of planetary infrastructure. Durable progress begins with testing hardware at the edge of physics.

Thusatharan profil fotoğrafı
Thusatharan19 saat önce

cooling in vacuum seems harder than the radiation side ngl

John Herzog profil fotoğrafı
John Herzog19 saat önce

will you share how the four tpus hold up on radiation errors once the first data comes back

defectz profil fotoğrafı
defectz18 saat önce

Say it with me “thank you SpaceX”

Hamido Teck profil fotoğrafı
Hamido Teck19 saat önce

Google has been improving so good

Marius Laurusevicius profil fotoğrafı
Marius Laurusevicius18 saat önce

Four chips in orbit is a small start for a very big idea. Curious what breaks first up there, the heat or the radiation.

Lennart Reus profil fotoğrafı
Lennart Reus19 saat önce

I think it is very smart to put AI in space. :) We have a plan

Lucy Sky💘 profil fotoğrafı
Lucy Sky💘18 saat önce

people keep begging for gemini 4 while google is out here launching math homework into orbit

AnnE profil fotoğrafı
AnnE18 saat önce

radiation-hardened chips for data centers in orbit... the power bill alone must've been a fun spreadsheet to build

Humberto Brandon profil fotoğrafı
Humberto Brandon18 saat önce

Honestly, the thermal cycling sounds scarier than the radiation. Have you run any ground tests simulating that rapid hot/cold cycle?

Harshith profil fotoğrafı
Harshith19 saat önce

video with three js on this:

Thomas Shaffer profil fotoğrafı
Thomas Shaffer18 saat önce

the vibration table clip is the part i rewound. shaking tpus to launch loads before they ever see orbit is the unglamorous work that makes this real

Daily.ai profil fotoğrafı
Daily.ai18 saat önce

The first test is only hardware survival. Google says TPUs face 100G launches — orbital compute economics come later.

Little Pirate profil fotoğrafı
Little Pirate18 saat önce

somewhere a regular software bug is about to get blamed on a cosmic ray

RealAndy👑 profil fotoğrafı
RealAndy👑19 saat önce

Is Gemini 4 Argon coming out today? 🤔

SiEdge profil fotoğrafı
SiEdge19 saat önce

Power is the easy part up there. Getting four TPUs to shed heat with no air to cool them is what decides if orbital data centers ever make sense.

Umair khawas profil fotoğrafı
Umair khawas19 saat önce

Imagine debugging a TPU and the solution is Have you tried restarting the satellite?😂

Polash Khan profil fotoğrafı
Polash Khan18 saat önce

Got you. Follow @polash_ai and I’ll send the Claude Code guide via DM.

鹿柴LuChai profil fotoğrafı
鹿柴LuChai19 saat önce

The 50–100g chip-level figure is the fun part — that's survivable with the right packaging, but the real constraint shows up after arrival: in vacuum there's no convection, so a rack of TPUs running hot has to dump everything through radiators. Ground liquid cooling doe

The Lunar Misfit profil fotoğrafı
The Lunar Misfit18 saat önce

The IT department is going to need a very different ladder.

Marc | Criterio IA · Builder profil fotoğrafı
Marc | Criterio IA · Builder18 saat önce

Ground results were already good: Trillium survived a total ionizing dose above a 5-year mission in a UC Davis proton beam. The open question for me is heat: in vacuum it's heat pipes and radiators only. Will you share thermal data from orbit?

BullBear.News profil fotoğrafı
BullBear.News19 saat önce

cosmic rays love uncorrected memory

Master Thought profil fotoğrafı
Master Thought18 saat önce

AI infrastructure in space is no longer just science fiction. 🚀🛰️ Testing TPUs in orbit is a major step toward understanding what space-based computing could look like. The future is getting closer.

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