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AMD EPYC 7F52 3.5GHz 16 Cores 32 Threads Processor

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Product details

Management number 202056224 Release Date 2025/09/19 List Price $6,740.00 Model Number 202056224
Category

The AMD 100-000000140 is a server processor in the EPYC 7F52 series that brings enterprise-grade compute power to installations where responsiveness and parallel throughput matter. It joins 16 physical cores with simultaneous multithreading, so 32 execution threads are ready for database queries, container clusters, or mixed virtual machine fleets without the need to oversubscribe resources.

A base frequency of 3.5 GHz keeps everyday operations brisk, while boost clocks can reach 3.9 GHz when demand spikes. The sizeable 256 MB L3 cache places large data sets close to the execution units, cutting memory latency for analytics, in-memory databases, and high-frequency trading platforms.

Built on a 7 nm process, the chip balances performance with power efficiency, and its 240 W thermal design power gives data center teams a predictable target for cooling and power planning. Native PCIe 4.0 support doubles the lane bandwidth available in PCIe 3.0 systems, which is valuable for NVMe storage arrays, high-speed network adapters, and GPU or FPGA accelerators.

The processor installs in an SP3 socket and works in single-socket boards or in dual-socket configurations for environments that need more aggregate cores without a major platform change. Cloud providers, virtualization architects, and on-premises IT departments can all use this part to scale compute capacity quickly, whether the goal is to consolidate workloads, shorten batch-processing windows, or host latency-sensitive services.

Highlights:
  • 16 cores with simultaneous multithreading for 32 parallel threads
  • Base clock of 3.5 GHz and boost frequency up to 3.9 GHz
  • 256 MB L3 cache keeps frequently accessed data close to the cores
  • PCIe 4.0 interface delivers up to twice the I/O bandwidth of PCIe 3.0
  • Compatible with SP3 4094-pin sockets in single- or dual-processor boards
  • 7 nm manufacturing process balances performance and power efficiency
  • 240 W thermal design power for predictable cooling requirements

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