Unmatched core density
128 cores provide extreme throughput for cloud-native, HPC, or virtualized environments.
128 Cores • 256 Threads • 512 MB L3 Cache • Up to 4.10 GHz Boost: Zen 5 Performance Engineered for AI, Cloud & High-Throughput Compute
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128 cores provide extreme throughput for cloud-native, HPC, or virtualized environments.
4.10 GHz boost enables rapid responsiveness under load.
512 MB L3 and DDR5-6000 deliver low-latency access to vast data.
128 lanes of PCIe 5.0 support multi-GPU, NVMe, and accelerator-intensive workloads.
Works in single or dual-socket SP5 configurations for up to 256 cores and 24-channel memory.
Deploy rapidly with expert support, crypto payments, and no hidden fees.
In 7-Zip compression/decompression workloads.
EPYC 9654 at similar or better efficiency.
Across OpenBenchmarking tests.
Multi-node training for LLMs or HPC workloads.
Host SAP HANA, Redis, in-memory Spark, or analytics clusters.
Run hundreds of vCPUs with reliable ECC memory and platform stability.
Complex simulations, Monte-Carlo risk engines, or PDE solvers.
Replace large cloud bills with predictable, high-performance bare metal.
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Common questions about the AMD EPYC 9755, answered by the engineers who run the hardware.
Yes, SP5 platforms deliver up to 700 W and our data centers support sustained 500 W operation comfortably.
With 128 PCIe 5.0 lanes, up to 8× GPUs (e.g., H100, A100) can be directly attached, contact us for NVLink/NVSwitch configurations.
Single-socket saves complexity and licensing; dual-socket boosts memory to 24-channel and offers 256 cores.
Performance-wise, EPYC 9755 offers 1.55× uplift over Genoa and remains competitive vs 9965, with advantage in cache density and boost speeds.
Compatible with TensorFlow, PyTorch, MPI, CUDA, ROCm frameworks and enterprise stacks like SAP, Oracle, VMware.
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