AMD Unveils Helios AI Platform to Power Agentic AI at Scale

As AI expands from training to inference and agentic workloads, compute demand is accelerating rapidly. AMD delivers an open, full-stack AI platform that gives customers the flexibility to deploy the right compute for every workload.
AMD Unveils Helios AI Platform to Power Agentic AI at Scale
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AMD launched its next-generation  AI infrastructure and physical AI portfolio at Advancing AI 2026, led by AMD Helios rackscale  solutions, now in production to be deployed by leading AI companies at gigawatt scale. 

As AI expands from training to inference and agentic workloads, compute demand is  accelerating rapidly. AMD delivers an open, full-stack AI platform that gives customers the  flexibility to deploy the right compute for every workload. 

“The next phase of AI will span frontier models, agents and physical AI, creating new  opportunities to bring intelligence everywhere,” said Dr. Lisa Su, chair and CEO, AMD.  “Realizing that potential will take the entire industry working together. AMD is partnering across  the ecosystem to deliver leadership compute and open platforms that give customers the  performance, flexibility and choice to scale AI from the data center to the edge.” 

AMD Helios: The Highest Performance Rack-Scale AI Solution 

Delivering frontier AI requires a fully integrated rack architecture, with every part of the stack pushing the boundaries of performance. AMD Helios rackscale solutions are built for this, with  co-optimized silicon spanning 72 high-performance AMD Instinct™ MI455X GPUs and 18 powerful 6th Gen AMD EPYC™ “Venice” CPUs, connected by AMD Pensando™ front-end,  scale-up and scale-out networking, and accelerated by AMD ROCm™ open software. AMD 

Helios combines leadership compute performance, memory capacity and networking bandwidth  to deliver up to 30% more tokens per dollar than the leading competitive solution1.

Leading AI labs and cloud providers are choosing AMD Helios for its open, full-stack  performance. They include OpenAI, Anthropic, Meta, Microsoft, Oracle, HUMAIN, Tensorwave,  Vultr, Cirrascale and others. Systems will be available from leading OEMs, including Bull, HPE,  Lenovo and Supermicro, as well as infrastructure partners Sanmina and Wiwynn. 

At Advancing AI, AMD partners detailed how they deploy AMD AI infrastructure at scale for  frontier training and inference: 

• Anthropic and AMD further outlined Wednesday’s strategic partnership announcement to  deploy up to 2 gigawatts of AMD Instinct MI455X GPUs in AMD Helios rackscale  solutions. The companies are launching a multiyear engineering collaboration to use  Claude to accelerate AMD software development. Specifically, the teams will use Claude  to optimize workloads for AMD Instinct GPUs and accelerate ROCm software  

development. AMD will also broadly adopt Claude across its engineering and product  development teams. 

• OpenAI and AMD are partnering to optimize the full AI stack, from silicon to software.  Leveraging OpenAI’s Triton framework with AMD ROCm software, the companies are  optimizing GPT-class workloads on AMD Instinct MI455X GPUs and AMD Helios racks. OpenAI expects to bring Helios online beginning in the fourth quarter of 2026, with  deployments accelerating throughout 2027. 

• Meta and AMD are co-designing for gigawatt-scale deployments, optimizing AMD’s full  AI compute stack for Meta workloads. Meta is now validating 6th Gen EPYC CPU platforms in its labs and has begun testing and validating workloads on AMD Helios  racks as they prepare to deploy at scale. 

• Cerebras and AMD are collaborating to deliver a combined solution of Cerebras ultra low-latency AI compute and AMD Helios high-throughput rack-scale infrastructure to  help improve inference efficiency, scalability and economics for ultra-low-latency  inference serving. 

Delivering the Highest Performance Data Center CPUs and GPUs 

6th Gen EPYC processors deliver the broadest server CPU portfolio for agentic AI,2 spanning  cloud, enterprise, general-purpose and high-performance computing (HPC) workloads. With  leadership per-core performance and the highest thread density3, they enable the most agents  per watt, per dollar and per rack.4,5,6 For AI host nodes, 6th Gen EPYC CPUs deliver the speed and memory bandwidth to keep accelerators fully fed. And for general-purpose servers, they bring leadership performance and energy efficiency to run business critical applications and AI support tasks. 

With AMD Instinct™ MI400 Series GPUs, AMD delivers powerful performance for cloud,  enterprise and HPC workloads. AMD Instinct MI455X GPUs deliver 34x higher token throughput  compared to MI355X GPUs7. For high-precision workloads, the AMD Instinct™ MI430X  accelerator is the most advanced for HPC and sovereign AI with up to 288 TFLOPS of  hardware-based FP64 performance for scientific computing. Instinct MI430X accelerators are  powering the next wave of exascale-class supercomputers across the U.S. and Europe. 

AMD also launched the Instinct MI350P GPU, bringing seamless AI acceleration to existing  infrastructure with leadership token economics. MI350P GPUs deliver up to 4.2x more tokens  per second per dollar than the competition8.

Advancing the Open Software Ecosystem 

For developers, AMD ROCm is the open software platform with the performance, flexibility and  ecosystem support needed to build and deploy AI on AMD hardware. Building on that  foundation, AMD is introducing ROCm.ai, an AI-driven development platform that helps  developers build, optimize and deploy GPU software faster across AMD platforms. ROCm.ai  brings AI-assisted GPU programming to developers by enabling popular coding agents such as  Claude, Codex and Cursor to understand AMD platforms and ROCm natively.  

ROCm.ai is accelerating software enablement for AMD Instinct MI455X GPUs while optimizing  performance. Leading open-source frameworks including PyTorch, Hugging Face, vLLM and  SGLang are already enabled on MI455X and seeing great results. 

Accelerating Next-Generation AI Infrastructure 

AMD is extending its annual cadence of CPU, GPU, networking and rack-scale innovation  through 2030. The company shared new details on its roadmaps, including: 

• Next-generation EPYC server CPUs based on the “Zen 7” architecture are coming in  2028. The “Florence,” “Ferrara” and “Fidenza” CPUs are expected to extend AMD’s  leadership in density, performance, performance-per-system dollar and performance per-watt. 

• “Ravenna” CPUs based on the “Zen 8” architecture are coming in 2030, designed to  continue AMD server CPU leadership. 

• Next-generation AMD Instinct MI500 Series GPUs are coming in 2027, with next generation compute, memory and interconnect technologies for leadership performance. • AMD Instinct MI600 Series GPUs are coming in 2028. 

• The next-generation AMD Helios 500 rackscale solution will be powered by AMD Instinct  MI500 Series GPUs and AMD EPYC “Verano” CPUs, with next-gen Pensando “Como”  and “Monza” networking. The AMD Helios 600 rackscale solution will follow, powered by  AMD Instinct MI600 Series GPUs, EPYC “Ferrara” CPUs and Pensando “Palma” and  “Levanzo” networking.  

Scaling AI Across Enterprise 

Leading enterprises run on AMD infrastructure, from cloud, hybrid and on-prem data centers to AI-enabled PC fleets. AMD technologies are helping customers scale quickly and accelerate  enterprise transformation. 

At Advancing AI, AT&T illustrated how it is deploying flexible enterprise AI using AMD  technology across cloud, on-premises and air-gapped environments. AT&T is also using AMD Instinct GPUs and ROCm software to power its OTel 2.0 model, an open-source model trained  specifically for telecoms.  

With the AMD Ryzen™ AI Halo developer platform, AMD delivers performance, efficiency and  simplicity that makes local AI development accessible. More AMD Ryzen AI Halo platforms,  powered by Ryzen™ AI Max PRO 400 Series processors, will be available later this year from  AMD and OEM partners.  

Cisco and AMD are collaborating to combine AMD high-performance inference engines, including AMD Ryzen AI Halo systems, with Cisco networking, observability and security  capabilities, so enterprises can deploy, govern and manage hybrid and local agentic AI at scale. 

Advancing the Next Frontier of Physical AI 

As AI expands across cloud, enterprise and local systems, the next frontier is bringing  intelligence into machines that perceive, reason and act in the physical world. Building on a long  legacy in robotics with AMD FPGAs and adaptive SoCs, AMD introduced AMD Kria™ AI  solutions, extending the company’s robotics capabilities from the robot body to the robot brain.  AMD uniquely brings AI perception, reasoning and agentic decision-making and control together  on a single platform to deliver the performance required for demanding real-world robotic  systems.  

The portfolio includes new AMD Kria AI system-on-modules (SOMs), powered by the new AMD  Ryzen AI Embedded X100 Series processors, and the AMD Kria AI Robotics Developer  Platform, the first open, turnkey integrated platform for autonomous robotics combining CPU,  GPU, NPU and FPGA compute. Together with an expanded open software ecosystem, AMD  Kria AI solutions remove vendor lock-in and help developers and customers accelerate the path  from prototype to production for next-generation physical AI systems. 

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