Anthropic and Elon Musk Strike Unexpected Data Center Deal


Just a few months ago, Elon Musk accused the AI company Anthropic of stealing artificial intelligence training data “at massive scale” in a post on his social network X

That apparently hasn’t stopped the billionaire from doing business with the company. Musk’s SpaceX has signed a data center deal that will give Anthropic access to more than 200,000 Nvidia GPUs worth of power at its Colossus 1 supercomputer facility in Tennessee.

The partnership will give Anthropic additional firepower to “directly improve capacity for Claude Pro and Claude Max subscribers,” SpaceX said in a website post. “As part of this agreement, Anthropic also expressed interest in partnering to develop multiple gigawatts of orbital AI compute capacity.”

Because of this deal, Anthropic said in its own post, the company is raising usage limits for users across some of its products. The changes, effective immediately, double Claude Code rate limits for users of Claude on Pro, Max, Team and seat-based Enterprise plans, remove peak-hour restrictions of Claude Code for Pro and Max accounts and raise API limits for Claude Opus models.

More AI means more data center deals

In the same post, Anthropic listed some of its other data center agreements with companies, including Amazon, Google and Microsoft, and reiterated its intention to keep expanding internationally. In the era of data center backlashes, Anthropic also announced in February that it has pledged to cover the costs of energy price increases driven by data center activity. Critics have questioned how companies such as Anthropic can uphold those pledges.

The deal with SpaceX, which acquired Musk’s AI company xAI earlier this year, may have surprised some, but AI companies are scrambling to secure data center resources as they continue to develop increasingly data-hungry artificial intelligence models.

At the same time, some communities are pushing back on new data center construction, leading some in the industry, Musk in particular, to plan to build data centers in space

Among the groups criticizing the deal is the NAACP, which said in a statement about SpaceX, “Any company that disregards the obvious environmental and health concerns of Black communities to supposedly power a future that will help us all is sending a clear message about who it intends to serve in that future… Anthropic’s use of a data center that pollutes a historically Black community is, at best, an uninformed decision, and at worst, a total disregard for the community’s wishes and health.”

The organization pointed to a lawsuit it has filed against SpaceX over environmental concerns at its Colossus 1 computing center.





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Researchers in South Korea developed a wearable system that uses seven smart rings to read finger and hand motions to translate American Sign Language and International Sign Language into text. The purpose is to make communicating easier between those who sign and nonsigners without needing a separate human interpreter. 

AI Atlas

According to the study, published Friday in the journal Science Advances, the system reliably recognized 100 ASL and ISL words during testing. It also performed well with users the system had not seen before, and it didn’t require recalibration for each person. Because the system detects words in sequence, it can produce sentence-level translations without extra training on grammar. 

ASL and ISL are the everyday languages of more than 72 million deaf and hard-of-hearing people. However, most hearing people do not know any words in these languages or have a very basic understanding. That gap makes certain tasks, like ordering at a restaurant or asking for help, much more difficult. 

A graphic shows two illustrated people talking in sign language, ASL and ISL. The graphic also shows the different components of the ring as well as pictures of hands modeling the rings.

A concept of how the rings work in the real world. 

American Association for the Advancement of Science (AAAS)

Existing sign language translator prototypes often rely on bulky gloves that can distract from or block natural hand movement or feel uncomfortable for the wearer, which limits real word adaption. Camera-based technologies can work well in controlled environments but are often limited to those places where a camera can be set up with a clear line of sight, the researchers wrote. 

To solve these problems, the researchers designed sensing rings for each finger that can capture precise motion and finger position while letting the hands move naturally. The rings can detect both signs that involve movement, like the words for “dance,” “fly” and “sun,” and signs that are held still, like “I” and “you.”

“These advances suggest that [the device could enable] barrier-free public translation systems for unseen users and unrestricted daily assistive interfaces,” the authors wrote in the study. 

The authors are affiliated with Yonsei University, Hankuk University of Foreign Studies and the Korea Institute of Science and Technology, among others. While the technology is still experimental, the authors wrote that the technology has the potential to ease communication difficulties. The underlying idea could also help improve controls for other systems, like virtual or augmented reality.

“Beyond sign language translation, the ring-type, wireless, and modular architecture of (wirelessly connected, ring-type sign language translators) may also be extended to other gesture-driven applications such as virtual or augmented reality control, touchless device interfaces, or rehabilitation monitoring systems where fine-grained hand movement tracking is essential,” they wrote.





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