NVIDIA推出Vera Rubin平台,合作云商启动部署

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NVIDIA Vera Rubin Driving Performance Per Watt, Lowest Token Cost for Partners Worldwide

NVIDIA Blog 原始链接

NVIDIA Vera Rubin is here, and it’s going gigascale. Vera Rubin NVL72 production is ramping up with racks running at partners CoreWeave, Google Cloud, Microsoft Azure and Oracle Cloud Infrastructure. Spanning 350+ factory sites in 30 countries, Vera Rubin has the largest, most mature rack-scale supply chain ever assembled to meet customer compute demand. The […]

NVIDIA Vera Rubin is here, and it’s going gigascale. Vera Rubin NVL72 production is ramping up with racks running at partners CoreWeave, Google Cloud, Microsoft Azure and Oracle Cloud Infrastructure. Spanning 350+ factory sites in 30 countries, Vera Rubin has the largest, most mature rack-scale supply chain ever assembled to meet customer compute demand.

The Vera Rubin platform is built from chip to grid to deliver the highest performance per watt and the lowest token cost. CoreWeave’s first benchmark on DeepSeek-R1 says it all: 10x more throughput per megawatt than Grace Blackwell NVL72 — landing directly on the metric that matters most for power-constrained AI factories.

Advancing Performance With Extreme Codesign What makes this possible is extreme codesign across seven chips and five rack trays — Vera Rubin NVL72, Vera CPU rack, Groq 3 LPX, Spectrum-6 SPX and Vera BlueField-4 STX — all engineered as a single system rather than assembled from separate off-the-shelf products.

The NVIDIA Vera CPU is at its center. It redefines what an AI factory CPU can be. Designed and built for the agent era, its custom Olympus core delivers 2x single-threaded performance, 3x core-to-core bandwidth and 40% lower memory latency versus competing chiplet designs, making it the most efficient single-threaded CPU for the agentic workloads that matter most.

Accelerating AI Factories With Purpose-Built Networking For networking, the platform’s sixth-generation NVLink scale-up delivers more than 2x throughput on complex workloads, 3x lower latency and 10x higher packet rates than off-the-shelf Ethernet. For scale-out, Spectrum-X Ethernet combines 102.

4T Spectrum-6 switch systems, 1. 6T ConnectX-9 SuperNICs, adaptive routing, advanced congestion control, telemetry and open operating system support, enabling 1. 6x higher RDMA bandwidth than off-the-shelf Ethernet. The world’s leading AI infrastructure builders — including CoreWeave, Microsoft, SpaceXAI and Tesla — are among the first to bring in Spectrum-6 switches to accelerate their AI factories.

NVIDIA Photonics with co-packaged optics for scale-out — the industry’s first such switch in volume manufacturing — adds 5x lower power and 10x higher MTBI versus pluggable transceivers, with CoreWeave, Lambda and OCI among the first adopters. Spectrum-XGS Ethernet extends performance across sites with 1.

9x multi-site throughput because gigascale AI isn’t a single building problem. And NVLink Fusion opens the NVIDIA infrastructure platform to third-party XPUs, giving partners a faster path to market on the proven NVLink scale-up stack and ecosystem. Saving Setup Time, Water NVIDIA’s three generations of rack-scale codesign produced a Vera Rubin NVL72 system with no cables, fans or hoses in the tray, cutting compute tray assembly time from hours to one minute.

A 45-degree Celsius liquid cooling inlet temperature design enables chiller-free dry-cooler operation. For new AI factories, this higher-temperature dry cooling along with the closed-loop liquid cooling system saves millions of gallons of water per megawatt annually.

Tuesday, July 21, 8:00 a. m. PT 🔗 NVIDIA Vera Rubin Powers Europe’s Open Model Era Vera Rubin is delivering next-generation performance to Europe’s AI infrastructure. It’s the foundation for a newly expanded Microsoft and Mistral partnership that brings frontier AI to the region, combining open European models with cloud and customer-controlled environments so governments and regulated industries can adopt it on their own terms.

Underpinning the partnership is a new multibillion-dollar agreement focused on expanding AI infrastructure in Europe. Mistral is adding its GPU capacity, drawing on thousands of the latest NVIDIA Vera Rubin GPUs to increase AI compute availability for customers and provide a shared platform for training, inference and large-scale deployment.

NVIDIA Vera Rubin is ramping into full production. The rack-scale AI supercomputer unifies seven new chips codesigned as one system, and it will power the next generation of Mistral Compute and Microsoft’s European AI infrastructure, drawing on tens of thousands of GPUs.

Europe wants the world’s most capable AI, running under its own laws, close to home, and fully within its control. And the bar keeps rising: agentic systems can consume up to 15x more tokens than traditional AI applications, making efficient infrastructure a strategic priority.

Meeting that expectation takes more than computing capacity: AI that scales efficiently while satisfying regional requirements for data control, governance, resilience and strategic autonomy. Vera Rubin provides the computing foundation for Europe’s open-model ecosystem.

Its full-stack architecture combines accelerated computing, networking and software so models and agents run efficiently from training through production. Open Models Built for Enterprise AI Together, Microsoft, Mistral and NVIDIA are delivering sovereign-ready AI across public cloud, cloud-connected and fully disconnected private cloud environments — pairing the flexibility of open models with the infrastructure required to operate them at scale.

Mistral Medium 3. 5 and OCR 4 are now available in Microsoft Foundry, and Mistral models are integrated into Microsoft Copilot Studio. Through Azure Local and Foundry Local, customers can use the same models, tools and operating patterns across cloud and customer-controlled environments.

AI on Europe’s Terms Government agencies can apply AI to sensitive workflows. Healthcare and financial services organizations can deploy within regional requirements. Manufacturers can process data on site for faster decisions. Compared with NVIDIA GB200 NVL72, Vera Rubin NVL72 delivers up to 10x more tokens per megawatt and one-tenth the cost per million tokens, providing more intelligence within the same power footprint.

Sovereign AI should not force organizations to choose among innovation, economics and control. With Vera Rubin as the computing foundation — and Microsoft and Mistral delivering sovereign cloud infrastructure and open European models — Europe can pursue all three.

Read the Microsoft and Mistral press release for more details. Tuesday, July 21, 8:00 a. m. PT 🔗 NVIDIA Vera Rubin NVL72 on CoreWeave Demonstrates 10x More Tokens Per Megawatt Than Blackwell in Benchmark Embracing extreme codesign with NVIDIA, CoreWeave is delivering an order-of-magnitude performance leap on Vera Rubin NVL72.

Close collaboration with partners like CoreWeave is mission-critical to bringing up a new generation of NVIDIA accelerated computing into AI factories. After months of co-engineering work, CoreWeave became the first AI cloud to bring up and validate Vera Rubin NVL72 — and it is now sharing the first measured performance numbers from live hardware.

CoreWeave ran a DeepSeek-R1 benchmark on Vera Rubin NVL72 and saw 10x improvement in tokens per second per megawatt compared with Grace Blackwell NVL72. Tokens per megawatt is the metric that determines whether AI infrastructure can profitably scale. More tokens per megawatt means more intelligence from the same power budget, or the same workload on significantly less power.

AI labs and enterprises such as Jane Street will use the Vera Rubin platform to scale its AI factories on the CoreWeave cloud. Beating Bottlenecks With NVIDIA Spectrum-X DeepSeek R1’s mixture-of-experts architecture makes all-to-all GPU communication a critical requirement at scale: Each token must be routed across distributed expert sub-networks.

Vera Rubin NVL72’s 260 TB/s all-to-all NVLink 6 fabric removes that constraint, enabling the rack to behave as a single unified accelerator. CoreWeave is among the first to deploy the NVIDIA Spectrum-X Ethernet SN6600-LD as the switching fabric for Vera Rubin NVL72.

Built on the 102. 4 Tb/s Spectrum-6 switch chip and featuring a liquid-cooled design, CoreWeave deploys dense switching racks, delivering 1. 64 Pb/s per rack with 100% more capacity than previous-generation air-cooled switches. CoreWeave also provides a fully non-blocking, multi-plane, multi-rail spine and leaf fabric connecting Vera Rubin NVL72 GPUs without oversubscription.

Tuesday, July 21, 8:00 a. m. PT 🔗 NVIDIA Vera Rubin NVL72 Drives New Google Cloud A5X Instance for Ineffable Intelligence NVIDIA Vera Rubin NVL72 is powering Google Cloud’s first A5X instance, now up and running for London startup Ineffable Intelligence. Ineffable Intelligence develops a new generation of intelligent “superlearner” systems that continuously learn through experience to discover new breakthroughs across all fields.

Ineffable Intelligence’s agents learn directly from interaction with their environments, rather than from static datasets. Instead of using large language models, Ineffable is developing “superlearner” systems through reinforcement learning, generating experience across continuously simulated, massively parallel environments and rapidly translating that experience into policy updates and evaluation.

These tightly coupled learning loops place exceptional demands on compute, memory bandwidth and interconnect, requiring infrastructure that can operate at enormous scale with extremely low latency. “The next era of research requires the next era of hardware,” said Lasse Espeholt, cofounder of Ineffable Intelligence.

“We feel privileged to work with the teams at NVIDIA and Google Cloud, who were able to grant us early access to Vera Rubin. The support across both teams has been unmatched; we were up and running almost immediately and are already testing infra for our superlearners.

” NVIDIA Vera Rubin NVL72 is designed for this kind of agentic training, delivering predictable latency, high utilization and significantly more intelligence per dollar than previous-generation systems, making it a natural platform choice for large-scale reinforcement learning.

Google Cloud A5X instances, announced at Google Cloud Next, are bare-metal instances built on NVIDIA Vera Rubin NVL72 rack-scale systems, delivering up to 10x lower inference cost per token and 10x higher token throughput per megawatt than the prior generation.

A5X uses NVIDIA ConnectX‑9 SuperNICs combined with next-generation Google Virgo networking, enabling clusters that can scale to tens of thousands of NVIDIA Rubin GPUs within a single site and up to nearly a million GPUs across multisite configurations, giving customers a unified, AI‑optimized stack for training, tuning and serving frontier, open, agentic and physical AI models while optimizing for performance, cost and sustainability.

This infrastructure is designed to help unlock the next generation of reinforcement learning systems for breakthroughs in superlearning and superintelligence. Tuesday, July 21, 8:00 a. m. PT 🔗 NVIDIA Vera CPU Doubles Orchestration Speed for DeepInfra AI Cloud Benchmark results from DeepInfra show that the NVIDIA Vera CPU is more than twice as fast and can support more concurrent AI agents compared with other CPUs.

Cloud platform DeepInfra, an early access participant in the NVIDIA open AI ecosystem, independently designed and ran benchmarks using its production AI agent infrastructure. DeepInfra processes nearly 5 trillion tokens a week, with about 30% driven by agentic systems.

Its cloud platform is built for high-throughput AI inference. The benchmarks demonstrate support for up to 1. 6x more concurrent AI agents at the same quality of service and up to 2. 2x faster orchestration than alternative CPUs, while improving infrastructure utilization and cost efficiency.

These results show that the NVIDIA Vera CPU delivers the cost efficiency, low latency and throughput that production agentic AI demands. As AI agents take on more complex reasoning, planning, tool use and data movement, CPU performance has become increasingly important for orchestrating work around each model call.

Part of NVIDIA’s extreme codesign approach to AI factories, the Vera CPU is built for agentic workloads. DeepInfra’s benchmark highlights how the NVIDIA Vera CPU helps cloud providers improve infrastructure utilization, increase cost efficiency and support more concurrent AI agents at the same quality of service.

Learn more about the NVIDIA Vera Rubin platform.

Built for Vera Rubin, NVIDIA Spectrum-6 Arrives in Gigascale AI Factories

NVIDIA Blog 原始链接

AI has entered the gigascale era. The world’s most advanced AI factories are bringing together hundreds of thousands of GPUs and CPUs to train frontier models, power agentic AI and generate intelligence at unprecedented scale. At this level, networking becomes a critical computing power multiplier in driving token generation. Marking a networking milestone, NVIDIA Spectrum-6 […]

AI has entered the gigascale era. The world’s most advanced AI factories are bringing together hundreds of thousands of GPUs and CPUs to train frontier models, power agentic AI and generate intelligence at unprecedented scale. At this level, networking becomes a critical computing power multiplier in driving token generation.

Marking a networking milestone, NVIDIA Spectrum-6 — a 102. 4-terabit-per-second Ethernet switch system delivering 2x the capacity of previous-generation systems and built as part of the NVIDIA Vera Rubin platform — is arriving across the world’s gigascale AI factories.

Spectrum-6 anchors the next generation of the NVIDIA Spectrum-X Ethernet platform, delivering the bandwidth, scale and intelligence needed to operate an AI factory as one end-to-end computing system. Leading AI Builders Move First The world’s leading AI infrastructure builders — including CoreWeave, Microsoft, Nebius, SpaceXAI and Tesla — will be among the first to bring in Spectrum-6 to accelerate their AI factories.

For cloud providers, Spectrum-6 means more compute capacity can operate as a unified, high-performance resource, helping customers train models and deploy inference services faster. “CoreWeave is built for the most demanding AI workloads, and networking is central to delivering that performance at scale,” said Min Jun, director of product for networking at CoreWeave.

“Bringing NVIDIA Spectrum-6 and liquid-cooled Spectrum-X Ethernet infrastructure into our AI factories will help us deliver the bandwidth, resilience and efficiency customers need to train frontier models and deploy inference faster. ” “At gigascale, performance comes down to coordination: keeping every GPU in lockstep so one slow link doesn’t stall an entire job,” said Laurelle Roseman, vice president of global partnerships at Nebius.

“That’s what NVIDIA Spectrum-6 goes after, and why we brought it in early — a fabric that stays fast and resilient as our customers’ most demanding workloads scale. ” For AI pioneers building their own infrastructure, Spectrum-6 means more GPUs working in lockstep, higher utilization during demanding collective operations and greater resilience for long-running jobs.

Across use cases, the outcome is faster time to results and better economics at extraordinary scale. CoreWeave, Microsoft and Nebius will be among the first providers to deploy NVIDIA Vera Rubin-based infrastructure with Spectrum-6, extending access to the platform across a broad community of developers, startups and enterprises.

AI Performance Is a Network Problem Peak GPU performance alone no longer predicts the performance of an AI factory. Large-scale training and inference workloads depend on thousands of accelerators exchanging data continuously. Collective communications are the fundamental operations that synchronize work across GPUs and generate intense east-west traffic, often with many systems transmitting simultaneously.

Ethernet was designed primarily for enterprise applications and north-south traffic moving between users, servers and storage. It wasn’t created for the synchronized, collective-heavy communication patterns of gigascale AI. Spectrum-X Ethernet changes that. Purpose-built for AI, it transforms Ethernet into a high-performance scale-out fabric engineered to keep every GPU fed with data.

The Next Generation of Spectrum-X Ethernet The Spectrum-6 switch chip combines with the NVIDIA ConnectX-9 SuperNIC to form the next generation of Spectrum-X Ethernet, and is engineered as part of NVIDIA Vera Rubin, bringing together the NVIDIA Vera CPU, Rubin GPU, NVLink 6 Switch, ConnectX-9 SuperNIC, BlueField-4 DPU and Spectrum-6 Ethernet switch.

Spectrum-6 supports both pluggable and co-packaged optics form factors. In addition, Spectrum-6 offerings support liquid cooling, enabling a comprehensive, end-to-end cooling approach for the entire AI factory while increasing network power efficiency. Unlike off-the-shelf Ethernet, the NVIDIA Spectrum-X Ethernet networking platform for AI factory scale-out combines intelligent switches, NVIDIA ConnectX-9 SuperNICs and full-stack networking software, all engineered together for AI.

The platform’s advanced features continuously optimize how traffic moves through the fabric. In addition, NVIDIA Spectrum-X technology intelligently balances traffic across available paths, rapidly bypasses failures and precisely recovers when data traveling across a network fails to reach its destination.

Plus, support for open network operating systems and a choice of RDMA transport models gives AI builders flexibility without compromising performance. Spectrum-X Ethernet is inherent to NVIDIA’s vertically integrated, horizontally open approach: codesigning silicon, systems and software across the full computing platform while supporting standard Ethernet, open network operating systems, open protocols and a broad ecosystem of cloud providers, system makers and infrastructure partners.

Instead of needing to assemble a collection of parts and optimize them afterward, customers gain a complete AI factory platform designed to deliver the fastest time to train and the lowest cost per token. Demonstrating this approach, Spectrum-X Ethernet delivers up to 1.

6x higher AI networking performance than off-the-shelf Ethernet and sustains up to 95% network efficiency across deployments exceeding 100,000 GPUs. Hardware-accelerated Spectrum-X multiplane topologies reduce the number of switches required for data centers by 1.

7x to further accelerate network efficiency. Further layering on the benefits achieved via Spectrum-X Ethernet Photonics, including 5x higher power efficiency and 10x improved mean time between incidents, network fabric enhancements continue to deliver workload accelerations beyond component-level optimization.

Learn more about the NVIDIA Spectrum-X Ethernet platform.