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Tech May 11, 2026

Cowboy Space Raises $275 Million to Build Rockets for Space Data Centers

Cowboy Space has raised $275 million to develop its own rockets for space data centers, addressing …
The Critical Rocket Shortage for Space Data CentersThe apparently insatiable demand for AI compute has data center entrepreneurs looking to the stars. However, there's a key bottleneck: There aren't enough rockets to put data centers in orbit around the Earth, and they're too expensive. Most industry players are banking on SpaceX's Starship or Blue Origin's New Glenn, but these solutions may not be commercially available for years.Cowboy Space's Bold Rocket Development StrategyBaiju Bhatt, CEO and founder of Cowboy Space Corporation, has announced a different approach: "We're standing up our own rocket program." He expects the first launch before the end of 2028. The company, originally launched in 2024 as Aetherflux with plans to collect solar energy in space, has pivoted to focus on space data centers, which led to the development of its own rocket program and a new name.$275 Million Funding at $2 Billion ValuationToday, Cowboy Space announced the closure of a $275 million Series B round at a post-money valuation of $2 billion, led by Index Ventures. Breakthrough Energy Ventures, Construct Capital, IVP, and SAIC also participated. This substantial funding will serve as a downpayment on the company's ambitious rocket development program aimed at solving the launch capacity crisis for space data centers.Industry Transformation Through Vertical IntegrationCowboy Space's decision to develop its own rockets represents a significant shift in the space industry. While bringing rocket development in-house is logical, it's also extremely challenging—only a handful of private companies in the West, mainly SpaceX, Rocket Lab and Arianespace, are consistently launching commercial rockets. By building its rockets specifically for data center deployment, Cowboy Space enters direct competition with industry giants SpaceX and Blue Origin while addressing a critical bottleneck in the AI compute supply chain.The Future of Orbital Data Centers by 2030Cowboy Space plans to build its data centers directly into the second stage of its rockets, a design approach reminiscent of the first US satellite, Explorer 1. Each satellite is expected to have a mass of 20,000 to 25,000 kilograms and generate 1 MW of power for nearly 800 onboard GPUs. The company's rocket would be slightly more powerful than SpaceX's Falcon 9 but smaller than its Starship. With industry veterans from Blue Origin and SpaceX on board, Cowboy Space aims to have its first operational system ready before the end of 2028, potentially revolutionizing how AI compute is delivered in the coming decade.
#Cowboy Space #SpaceX #Blue Origin
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Tech May 10, 2026

SpaceX Powers Anthropic’s Claude AI with Colossus 1 Data Centre Amid Musk‑OpenAI Lawsuit

Anthropic has secured a deal to run its Claude AI models on SpaceX’s Colossus 1 data centre, adding…
The Strategic Alliance Between SpaceX and AnthropicAnthropic announced a landmark agreement to tap the full computing capacity of SpaceX’s Colossus 1 facility in Memphis, Tennessee. The deal marks a rapid shift from previous criticism to collaboration, providing the Claude chatbot maker with a massive boost in AI‑compute resources.Colossus 1: 220,000 Nvidia GPUs Deliver 300 MW to ClaudeUnder the terms disclosed on Wednesday, Anthropic will access:More than 220,000 Nvidia processors housed in the Colossus 1 data centre.300 megawatts of power—enough for over 300,000 homes—to be added within a month.Dedicated capacity for the Claude Pro and Claude Max AI assistants, enabling higher request volumes and removal of peak‑hour caps.The new “dreaming” feature unveiled at Anthropic’s developer day will also benefit from the expanded hardware, allowing AI agents to retain context across sessions.Capacity Surge Translates to Billions in AI Compute ValueIndustry analysts estimate that each megawatt of AI‑focused compute can be valued at roughly $10 million per year, suggesting the 300 MW addition could represent a $3 billion annual capability boost for Anthropic. The partnership also positions SpaceX to monetize its under‑utilised GPU fleet, diversifying revenue beyond launch services.Ripple Effects Across the AI Landscape and U.S. PolicyThe deal arrives amid Musk’s ongoing lawsuit against OpenAI and its CEO Sam Altman, intensifying competition for compute resources. While Microsoft, Google and Musk’s own xAI are negotiating government access to AI tools, Anthropic was excluded from recent Pentagon contracts, highlighting a potential strategic disadvantage that the SpaceX alliance aims to offset.Furthermore, the agreement fuels Musk’s long‑term vision of orbital data centres, signaling a possible new frontier for ultra‑large‑scale AI infrastructure.Future Trajectory: Orbital Data Centres and Competitive PressuresAnthropic plans to explore “multiple gigawatts” of space‑based compute with SpaceX, a venture that could redefine latency‑critical AI services. If successful, the partnership may force rivals to secure comparable high‑density compute, accelerating a race for both terrestrial and orbital AI super‑clusters.In the short term, expect Anthropic to double rate limits for paid users, remove usage caps, and roll out the “dreaming” capability broadly, while SpaceX will likely package its GPU assets as a commercial service for other AI firms.
#SpaceX #Anthropic #Elon Musk
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Tech May 06, 2026

SpaceX Eyes Up to $119 Billion for Texas ‘Terafab’ Chip Factory

SpaceX has filed a proposal to build a $119 billion multi‑phase semiconductor fab, dubbed Terafab, …
Executive Overview: SpaceX’s $119 Billion Terafab AmbitionSpaceX has filed a proposal to build a vertically integrated semiconductor and advanced computing fab—dubbed Terafab—in Grimes County, Texas. The plan outlines an initial spend of $55 billion with a potential total investment of $119 billion, targeting chips for AI servers, satellites, space‑based data centers, and autonomous vehicles.Project Blueprint: Multi‑Phase Facility DetailsLocation under review: Grimes County, with other sites being considered.Partnerships: Intel will collaborate on chip design and manufacturing.Scope: “next‑generation, vertically integrated semiconductor manufacturing and advanced computing fabrication facility.”Goal: Produce enough chips to deliver 1 terawatt of power per year.Financial Scope: $55 B Initial Outlay and $119 B Total ProjectionThe filing breaks down the budget into two phases:Phase 1: $55 billion for site acquisition, infrastructure, and early‑stage fab equipment.Phase 2: Additional spending to reach a cumulative $119 billion, covering full‑scale production lines and R&D.;Potential revenue streams: AI compute services, satellite communications, and licensing of proprietary chips.Strategic Implications for AI, Space and Automotive SectorsBy internalizing chip production, SpaceX aims to close a supply gap that Elon Musk says is slowing AI and robotics development across his ecosystem—including xAI, Tesla, and future space‑based data centers. The move could also shift competitive dynamics with traditional fabs in Taiwan, South Korea, and the United States.Future Outlook: Timeline, Competition and Market Ripple EffectsShort‑term: Decision on final site expected within the next 6‑12 months.Mid‑term: Groundbreaking could occur by 2027 if financing is secured.Long‑term: The combined SpaceX‑xAI entity, valued at $1.25 trillion, plans an IPO in June, potentially leveraging the fab’s output to boost valuation.Risk factors: Regulatory approvals, supply‑chain constraints, and the ability to attract top‑tier talent.
#SpaceX #Elon Musk #Terafab
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Politics Apr 28, 2026

UK Must Seize AI Initiative or Be Left at the ‘Mercy’ of the Future, Liz Kendall Warns

Technology secretary Liz Kendall warned that Britain must take control of its AI future or risk bei…
The LeadLiz Kendall, the UK technology secretary, warned that Britain must take control of its artificial‑intelligence future or risk being “at the mercy and whim” of foreign tech giants.Kendall Calls for a Home‑Grown AI Strategy Amid US DominanceIn a speech delivered on 28 April 2026, Kendall outlined a two‑pronged plan: a £500 million state AI investment fund and a forthcoming national chip‑design programme. She cited the launch of the fund this month as evidence of Labour’s commitment to domestic firms.Numbers That Reveal the Scale of the Challenge70 % of global AI compute is supplied by five US companies – Amazon, Google, Meta, Microsoft and Oracle – up from 60 % a year ago.OpenAI has paused a multi‑billion‑dollar data‑centre project in the UK, citing high energy costs and regulatory uncertainty.The UK‑based supercomputer slated for 2026 remains a “scaffolding yard” in Essex, according to recent investigations.Concentration Risks and the UK’s Competitive LagThe concentration of AI power in the United States threatens the UK’s ability to shape the technology according to its own values. Kendall warned that without a sovereign AI capability, Britain could become a peripheral player, echoing former deputy prime minister Nick Clegg’s comment that the UK is “without a single steam engine” in the AI revolution.Looking Ahead: Scenarios for UK AI SovereigntyIf the government follows through on the investment fund and chip‑design roadmap, the UK could attract a modest share of the AI supply chain and retain talent such as DeepMind. Conversely, continued reliance on foreign compute could lock the UK into a “phantom‑investment” cycle, limiting growth and strategic influence.
#Liz Kendall #UK AI policy #OpenAI
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Tech Apr 26, 2026

UK Government Departments Clash Over AI Datacentre Energy Demands

UK government departments are at odds over the energy demands of AI datacentres, with DSIT projecti…
The Government's Energy Calculations ClashThe UK government is facing internal divisions over the energy demands of AI datacentres, with two key departments offering vastly different projections. While the Department of Science, Innovation and Technology (DSIT) forecasts that AI datacentres will consume 6GW of electricity by 2030, the Department of Energy Security and Net Zero (DESNZ) projects usage of less than a tenth of that amount. This discrepancy raises questions about how the UK can simultaneously pursue its ambition to become an AI superpower while meeting decarbonization targets.Conflicting Projections from Key DepartmentsThe DSIT's "UK compute roadmap," published in 2025, sets out a "bold, long-term plan to transform our national compute ecosystem" by building AI datacentres. The document explicitly states: "We forecast that the UK will need at least 6GW of AI-capable datacentre capacity by 2030." This ambitious plan involves creating multiple AI growth zones across the country, each requiring at least 500MW of electricity.In contrast, DESNZ, which is responsible for the UK's carbon budget and climate targets, has incorporated AI datacentres into broader forecasts for the energy use of Britain's "commercial services" sector. These projections suggest the entire sector's energy use will grow by just 528MW between 2025 and 2030 – equivalent to adding the consumption of 1.7m homes by the end of the decade.The DESNZ has stated it does not hold separate projections for datacentre growth, despite the government's commitment to building significant AI infrastructure.The Scale of the DiscrepancyThe difference between the departments' projections is staggering. DSIT's estimate of 6GW for AI datacentres alone is more than ten times higher than DESNZ's projection for the entire commercial services sector's growth. This means that if DSIT's projections are accurate, the energy demands of AI datacentres would far outpace the government's current plans for grid expansion and decarbonization.Each proposed AI growth zone would require at least 500MW of electricity – an amount only slightly less than DESNZ's forecast for the increase in energy usage of the entire commercial services sector. This suggests that even a handful of these zones would strain the government's energy planning.Revised Emissions Figures and ControversyThe controversy surrounding these projections deepened when DSIT revised its figures for the carbon emissions of AI datacentres. Originally, DSIT's projections for the carbon emissions of additional AI computing capacity were between 0.025m and 0.142m tonnes of carbon equivalent (MtCO₂) – below 0.05% of Britain's projected emissions.After questions were raised about the plausibility of these figures, the document containing them was removed from the government website. Then, after inquiries from The Guardian, DSIT updated its numbers significantly. In a statement posted online, the department acknowledged: "The UK's cumulative 10-year greenhouse gas emissions from AI compute could range from 34 to 123 MtCO₂ – this is around 0.9-3.4% of the UK's projected total emissions over the 10-year period."This represents more than a hundredfold increase in the estimated emissions, raising serious questions about the initial calculations and the transparency of the government's planning process.Critics Question Government Competence and Corporate InfluenceThe conflicting projections have drawn sharp criticism from experts and observers. Tim Squirrell, the head of strategy for the NGO Foxglove, commented: "The government's cluelessness over the environmental impact of datacentres would be laughable, if it weren't so alarming."Cecilia Rikap, a researcher at University College London, offered two possible interpretations of the "misalignment": either DESNZ and DSIT are incompetent, or there's some kind of "magical thinking about AI and big tech." She added: "Either way, the episode uncovers how these corporations control not only the AI value chain, but also the UK government."Foxglove filed an environmental impact assessment request with DESNZ in January, asking how the department had incorporated AI datacentres into its projections for Britain's emissions. The response, which referred to broader forecasts for the commercial services sector, did not address the specific concerns raised.Future of UK AI Strategy and Climate GoalsThe UK government appears to be attempting to balance competing priorities: becoming a leader in artificial intelligence while meeting international climate commitments. Carbon budget 7, which will outline the UK's climate plans for the coming years, is set to be released this summer and may provide more clarity on how these objectives will be reconciled.A spokesperson for DESNZ noted that "datacentre emissions are factored into our modeling, including for carbon budget 7," and mentioned that "The AI Energy Council is exploring opportunities to attract investment and support the development of clean power for datacentres."However, the significant discrepancy between government departments suggests that the UK's strategy for becoming an AI superpower may be developed without adequate consideration of its environmental implications. As the government moves forward with its AI ambitions, the tension between technological advancement and climate responsibility will likely remain a central challenge.
#UK Government #AI Datacentres #Energy Demands
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Tech Apr 22, 2026

SpaceX Targets $60B Acquisition of Cursor to Secure AI Compute for IPO

SpaceX is partnering with the AI coding platform Cursor to develop next-generation software tools, …
SpaceX is aggressively positioning itself in the generative AI landscape by deepening its ties with Cursor, the developer-centric AI platform. The partnership, which includes a striking provision, grants SpaceX an option to acquire Cursor for $60 billion later this year. This move comes as SpaceX prepares for a highly anticipated public offering, signaling a strategic shift from merely renting compute to owning the software stack that will define the future of knowledge work. Key Developments Strategic Partnership: SpaceX is collaborating with Cursor to build a next-generation "coding and knowledge work AI," leveraging Cursor's distribution to software engineers alongside SpaceX's massive infrastructure. Compute Integration: The deal builds on existing ties where xAI is renting tens of thousands of chips from SpaceX's data centers to train Cursor's models. Talent Consolidation: Two of Cursor's senior engineering leaders, Andrew Milich and Jason Ginsberg, recently moved to xAI to work directly under Elon Musk, further blurring the lines between the two entities. Valuation Leap: The potential acquisition price reflects Cursor's explosive growth, having jumped from a $2.5 billion valuation in January 2026 to a projected $50 billion-$60 billion valuation. Data & Market Impact The financial implications of this deal are staggering. Cursor's valuation has increased by 2,400% in less than a year, driven by the insatiable demand for AI coding tools. SpaceX is betting that owning Cursor will provide a competitive moat against giants like OpenAI and Anthropic. Crucially, SpaceX is offering two paths: a $10 billion earn-out for development work or a full acquisition for $60 billion. This flexibility suggests SpaceX is hedging its bets on the speed of development. The partnership also highlights the scale of SpaceX's infrastructure, specifically its Colossus supercomputer, which boasts the equivalent compute power of 1 million Nvidia H100 chips. Why This Matters This partnership is a critical piece of the puzzle for SpaceX's upcoming IPO. Investors are looking for tangible assets and growth engines beyond launch services. By acquiring a leader in the hottest AI product category, SpaceX is attempting to extract maximum value from its sprawling tech conglomerate. For the broader market, this signals a shift in the "compute war." While companies like OpenAI rent data center space, SpaceX is vertically integrating by owning both the hardware (through Colossus) and the software (through Cursor). This could disrupt the current model where AI startups rely on third-party models like Claude and GPT, potentially allowing SpaceX to create a proprietary coding ecosystem that is difficult for competitors to replicate. Expert Insight The move reveals a strategic vulnerability in the current AI landscape: dependency. Cursor currently relies on Anthropic and OpenAI models, an "awkward arrangement" that SpaceX aims to resolve. By acquiring Cursor, SpaceX gains direct access to the user base and distribution channels necessary to launch its own proprietary models. However, the $60 billion valuation is a massive risk. SpaceX is widely reported to be losing money following the acquisitions of xAI and X. Paying such a premium for a startup that still relies on external models (until the new project is finished) raises questions about the sustainability of the valuation. It suggests that investors are pricing in the potential of the Colossus supercomputer more than the current state of Cursor's technology. What Happens Next IPO Timeline: The partnership will likely be a centerpiece of SpaceX's IPO prospectus, used to demonstrate its diversification into high-growth AI markets. Model Release: We can expect the development of the "next generation coding and knowledge work AI" to accelerate, potentially offering a direct challenge to OpenAI's o1 series and Anthropic's Claude 4. Valuation Pressure: If the acquisition option is exercised, it will set a new benchmark for AI startup valuations, potentially inflating the prices of other coding assistants. Regulatory Scrutiny: Given the concentration of power in Musk's ecosystem, regulators may scrutinize the integration of xAI, SpaceX, and Cursor more closely.
#SpaceX #Cursor #Elon Musk
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Tech Apr 21, 2026

Amazon's $13B Bet on Anthropic: A Strategic Pivot to Custom Silicon

Anthropic has secured a fresh $5 billion investment from Amazon, bringing the total commitment to $…
The Strategic Alliance Anthropic has announced a landmark agreement with Amazon, securing a fresh $5 billion investment that brings the total investment in the company to $13 billion. In return, Anthropic has committed to spending over $100 billion on Amazon Web Services (AWS) over the next 10 years. This massive expenditure is designed to secure up to 5 GW of new computing capacity, ensuring Anthropic has the infrastructure required to train and run its Claude models at scale.Amazon's Custom Chip Strategy Takes Center Stage This deal echoes the structure of Amazon's recent agreement with OpenAI, which prioritized cloud infrastructure and proprietary hardware over simple cash equity. The core of this partnership is Amazon's proprietary silicon stack, specifically the Trainium series. Anthropic has secured capacity for Trainium2 through Trainium4 chips, even though Trainium4 is not yet commercially available. The deal also includes options for future generations, signaling a long-term commitment to Amazon's silicon roadmap and reducing reliance on Nvidia.Massive Infrastructure Commitment The financial and technical scale of this deal is unprecedented in the current AI landscape. Anthropic is committing to a $100 billion expenditure on AWS over 10 years. To put this in perspective, this commitment unlocks up to 5 GW of new computing capacity. This level of capital expenditure is a clear signal to the market that the demand for generative AI compute is not only sustained but growing exponentially, validating Amazon's infrastructure investments.Redrawing the AI Infrastructure Landscape This deal highlights a critical shift in the AI industry: the race for specialized hardware. By locking in Anthropic, Amazon is aggressively courting the top-tier AI developers to utilize its custom Graviton and Trainium chips. This move strengthens Amazon's position as a viable alternative to Nvidia for AI workloads, potentially disrupting the current GPU monopoly and forcing competitors to rethink their hardware strategies.The $800 Billion Valuation Teaser Market analysts are speculating that this deal might be a prelude to a new funding round. Reports suggest venture capitalists are currently offering capital to Anthropic at a valuation exceeding $800 billion. The $100 billion AWS commitment serves as a tangible asset backing this high valuation, suggesting that Anthropic may be preparing to enter a new phase of aggressive scaling or an IPO preparation.
#Anthropic #Amazon #AWS
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World Economy Apr 15, 2026

Allbirds Stock Surges 582% as Eco-Friendly Shoe Maker Pivots to AI

Shares in eco-friendly shoe maker Allbirds surged 582% after the company announced it is pivoting t…
Shares in eco-friendly shoe maker Allbirds experienced a dramatic surge of 582% after the company announced a sudden pivot to artificial intelligence and rebranding as 'NewBird AI'. The unexpected move sent the company's stock price soaring during a flurry of trading.Allbirds, known for its minimalist wool sneakers popular in Silicon Valley, had struggled in recent years, with its shares losing 99% of their worth since 2021. The company was once valued at $4 billion but had fallen into disrepair. Earlier this month, Allbirds announced plans for a $39 million sale to brand management firm American Exchange Company.The company's new focus will be on acquiring graphics processing units to support AI compute. Allbirds stated, “The rise of AI development and adoption has created unprecedented structural demand for specialized, high-performance compute that the market is struggling to meet. NewBird AI is being built to help close that gap.”Allbirds has secured $50 million in funding from an unnamed investor for its new AI operation, according to a filing with the Securities and Exchange Commission. The company will shift from its status as an eco-conscious public benefit corporation to a conventional corporation, with a reduced focus on environmental conservation.Despite its initial success, with sustainability central to its marketing and endorsements from celebrities like Leonardo DiCaprio, Gwyneth Paltrow, Oprah Winfrey, and Barack Obama, Allbirds struggled to sustain momentum and largely fell out of fashion. The company closed its last physical stores in the US in January and reported a $20.3 million loss in the third quarter of last year.Allbirds is now awaiting shareholder approval for American Exchange Company’s purchase of the company in a vote next month. The sale will enable Allbirds “to pivot its business to AI compute infrastructure, with a long-term vision to become a fully integrated GPU-as-a-Service (GPUaaS) and AI-native cloud solutions provider.”
#company #allbirds #new
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Tech Apr 09, 2026

Google and Intel Deepen AI Infrastructure Partnership

Google and Intel have expanded their multiyear partnership, committing Google Cloud to Intel’s late…
Google and Intel announced an expanded multiyear agreement that will keep Google Cloud on Intel’s Xeon CPUs while accelerating joint development of custom infrastructure processing units (IPUs) designed for AI inference and data‑center workloads. Expanded Multiyear AI Infrastructure Deal Announcement date: 2026-04-09 Partnership originally launched in 2021 Focus on co‑development of ASIC‑based IPUs and continued use of Intel’s Xeon line Technical Scope and Processor Commitments The agreement specifies that Google Cloud will run Intel’s latest Xeon 6 chips for AI, cloud, and inference tasks, extending a decades‑long reliance on Xeon CPUs. Xeon 6 chips are positioned as the flagship CPU for AI workloads, complementing GPU accelerators. Custom IPUs will offload AI‑specific processing from general‑purpose CPUs, improving efficiency. Pricing details were not disclosed by Intel. Strategic Impact on the AI Compute Landscape Industry analysts note a pivot toward CPU‑centric architectures as the global AI boom strains GPU supply chains. By bolstering CPU and IPU capabilities, the partnership aims to deliver balanced systems that can scale AI workloads without relying solely on GPUs. Lip‑Bu Tan, Intel CEO, emphasized that “balanced systems” are essential for modern AI workloads. Recent CPU shortages have prompted rivals like Arm Holdings to launch their own AI‑focused CPUs (Arm AGI). The move may pressure other cloud providers to diversify beyond Nvidia‑centric stacks. Future Outlook for CPU‑Centric AI Architecture With the partnership deepening, both companies are likely to iterate on next‑generation Xeon processors and IPU designs, targeting higher throughput and lower power consumption. Expect further announcements on custom silicon roadmaps and potential joint reference designs for enterprise AI deployments. Short‑term: Expanded Xeon deployment across Google Cloud’s AI services. Mid‑term: Introduction of first‑generation custom IPUs in production workloads. Long‑term: A more heterogeneous compute stack where CPUs, IPUs, and GPUs coexist to meet diverse AI demands.
#Google #Intel #Google Cloud
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