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Solutions for AMD EPYC™ 9006  Series Server CPUs

Advanced Data Centers Select AMD EPYC CPUs.

Continued Leadership in Performance, I/O, and Memory Bandwidth

The future of data center computing arrives with the 6th Generation AMD EPYC™ Server CPUs. Built on cutting-edge Zen6 and Zen6c core architecture, Venice redefines what servers can achieve: more cores, more bandwidth, and more efficiency than ever before. At the heart of this leap forward are two purpose-built platforms: the "Venice" SP7, a powerhouse engineered for the most demanding cloud, HPC, and AI workloads with up to 256 cores and 16-channel memory bandwidth; and the "Venice" SP8, a versatile workhorse delivering enterprise-grade performance with balance power and cost efficiency. Together, they represent AMD's most ambitious server platform yet, giving businesses the freedom to choose the right balance of performance, density, and economy for every workload, from AI inference to large-scale virtualization.

Choose the Right CPU For the Job

9006 SP7 - Optimized Performance9006 SP8 - Balanced Efficiency
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9006 SP7 - Optimized Performance

Up to 256
CPU cores
More VMs per rack and more tasks done with less real estate 
Zen6 & Zen6c
Cores
Optimized core package to achieve high frequency or high density 
16 
DDR5 channels 
Delivering up to 1.6 TB/s memory bandwidth in 1DPC (MRDIMMs)
PCIe Gen6
Lanes
2x per-lane bandwidth vs Gen5, for next-gen GPUs, NICs, and storage 
2nm
Architecture
Smaller process node boosts core density and efficiency per watt
CXL 3.1
Support
Multi-host memory sharing and P2P over fabric at double data rate

Applications for SP7

Agentic AI

Agentic AI

Agentic AI workflows run largely on the CPU: coordinating agents, executing code, and retrieving enterprise data. High core-count CPUs scale agent concurrency and capacity, while high-frequency, high-bandwidth cores keep accelerators fed. Purpose-built CPU profiles match each stage of the workflow, avoiding one-size-fits-all compromise.
Supercomputing

Supercomputing

University and research supercomputers link thousands of nodes into a single system; what matters is aggregate cluster compute and memory bandwidth, not a single server. Scientifc simulations and modeling is limited less by core count than by how fast data reaches the processor, so wide, high-speed memory keeps every core fed, delivering the sustained throughput these systems are built for.
<div>Cloud-native 5G Core</div>

Cloud-native 5G Core

Telco 5G cores run as cloud-native software rather than fixed appliances, splitting workloads across containers and VMs at scale. High core-count, high-throughput CPUs let operators pack more network function instances per node. Carrier-grade reliability requires fast, stateful failover, while high memory bandwidth and networking throughput keep performance stable under peak loads.

Select GIGABYTE for the AMD EPYC™ 9006 Platform

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High Performance

Servers and motherboards by GIGABYTE are tested to ensure peak performance for demanding workloads such as high frequency training and scientific simulation.
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Advanced Cooling

GIGABYTE's lineup of cooling solutions spans direct liquid cooling and closed loop systems, engineered to keep next generation performance running at its best.
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Fast and Stable Connectivity

Keeping pace with the challenges for next gen technology, GIGABYTE boards provide users the signal integrity for PCIe 6.0 speeds and I/O flexibility.
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Optimal Price

A broad portfolio tailored to specific applications lets customers select only the features a workload needs, keeping total cost of ownership down.
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Memory Bandwidth

GIGABYTE boards support the maximum 32-channel DDR5 subsystem EPYC 9006 offers running at up to 12800 MT/s (MRDIMMs). Expertly crafted layouts ensure bandwidth remains stable under heavy workloads.
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