Extreme parallelism
128 cores / 256 threads unlock massive scale for containerized environments and HPC workloads.
128 Cores • 256 Threads • 256 MB L3 Cache • Up to 3.10 GHz Boost, Zen 4c Powerhouse for Hyperscale, Cloud-Native & AI-Driven Workloads
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128 cores / 256 threads unlock massive scale for containerized environments and HPC workloads.
3.1 GHz boost across all cores with configurable TDP (320-400 W) offers tuned performance and efficiency.
256 MB L3 cache + 460 GB/s DDR5 + 128 PCIe 5 lanes, ideal for NVMe, accelerators, and network-intensive apps.
Supports single or dual-socket configurations with up to 24 memory channels and 256 cores.
Designed for high-density container/cloud workloads on par with Genoa.
Rapid setup, crypto support, no fees, unmetered bandwidth, and expert support worldwide.
Host thousands of containers or microservices on a single node with high core counts and efficient ECC memory.
Ideal for simulations, scientific computing, large-scale Monte Carlo, and engineering workflows.
Delivers 1.11× uplift in DLRM and Stable Diffusion throughput over Genoa-grade CPUs, excellent for large-scale inference.
Optimized for Redis, SAP HANA, Spark, or PostgreSQL with large L3 cache and TB-scale DDR5 capacity.
Replace public cloud bills with high-density bare metal, offering predictability and control with full root access.
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Common questions about the AMD EPYC 9754, answered by the engineers who run the hardware.
Yes. Our SP5-capable racks support sustained 320-400 W power envelopes with advanced cooling systems.
Absolutely. SP5 allows dual-socket configurations, scaling to 256 cores and 24-channel memory.
Yes, fully compatible with Gen 4/3 devices, supporting accelerated GPUs, NVMe, and CXL.
This Bergamo chip offers higher core density with AVX-512 support and better container performance, without losing Genoa-level I/O.
Supports all major HPC, AI, and enterprise frameworks: TensorFlow, PyTorch, MPI, CUDA, ROCm, Redis, PostgreSQL, KVM, Docker, Kubernetes.
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