The Intel Xeon Max 9480 is one of Intel’s most advanced CPUs, purpose-built for high-performance computing (HPC), artificial intelligence (AI), deep learning, simulation, and large-scale scientific research. Featuring a groundbreaking architecture with integrated high-bandwidth memory (HBM), it delivers unmatched memory throughput, scalability, and floating-point performance — making it the processor of choice for next-generation compute-intensive workloads.
At Telefly, a leading China supplier of enterprise hardware and OEM computing components, we provide the Intel Xeon Max 9480 through wholesale channels, complete with global delivery, configurable options, buy discount deals for bulk orders, regularly updated pricelist, and optional multi-years warranty coverage. Whether you are a system integrator building HPC clusters, a data center scaling AI platforms, or a university lab running simulation models — Telefly delivers powerful, scalable solutions at competitive global pricing.
Key Specifications of Intel Xeon Max 9480:
Core/Thread Count: 56 cores / 112 threads
Base Frequency: 1.90 GHz
Turbo Boost Max Technology: Up to 3.50 GHz
Cache: 105 MB L3 Cache
Integrated High-Bandwidth Memory (HBM2e): 64GB
Memory Bandwidth: >1 TB/s with HBM (significantly higher than DDR5-based setups)
Process Technology: Intel 7 (10nm Enhanced SuperFin)
TDP: 350W
Socket: LGA 4677
What Makes Xeon Max 9480 Unique?
On-Package HBM2e (64GB)
The Xeon Max 9480 is part of Intel’s first-ever CPU family to include integrated HBM, dramatically boosting memory bandwidth for memory-bound applications. This eliminates the need for separate memory controllers and brings data closer to compute.
Designed for AI & HPC Fusion
Whether training AI models, running fluid dynamics simulations, genomic sequencing, or rendering in parallel environments, the Xeon Max 9480 is optimized for large-scale matrix operations and parallel execution.
Scalable Systems Architecture
Built to integrate with Intel’s oneAPI and advanced MPI stacks, it's ideal for deployment in supercomputing clusters and AI research labs.
Energy Efficiency at Performance Scale
Despite its immense power, the chip leverages advanced power management to deliver performance-per-watt improvements essential for sustainable data centers.
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