AMD EPYC 9124 Processor 3 GHz 16-Core 64 MB L3 Cache Socket SP5
The AMD EPYC 9124 is a 16‑core, 32‑thread server CPU built on the Genoa architecture, delivering up to 3.7 GHz boost frequency and 64 MB L3 cache via an SP5 socket.
The AMD EPYC 9124 is a 16‑core, 32‑thread server CPU built on the Genoa architecture, delivering up to 3.7 GHz boost frequency and 64 MB L3 cache via an SP5 socket.
The AMD EPYC 9124 is a 16‑core, 32‑thread server CPU built on the Genoa architecture, delivering up to 3.7 GHz boost frequency and 64 MB L3 cache via an SP5 socket.
The AMD Ryzen Threadripper Pro 5955WX is a high-performance CPU featuring 16 cores, 32 threads, and a clock speed of up to 4.0 GHz. It boasts an impressive 72 MB cache, making it perfect for multithreaded applications and heavy workloads.
Shop the AMD EPYC 7713 Processor: a 64-core powerhouse with 2 GHz speed & 256 MB L3 cache for unmatched server performance. Ideal for enterprise-level tasks
The AMD EPYC 9254 is a powerful server processor with clock speed of 2.9 GHz and 128MB L3 cache. This tray-branded processor offers reliable performance for high-demand applications and systems.
The AMD EPYC 9254 is a powerful server processor with clock speed of 2.9 GHz and 128MB L3 cache. This tray-branded processor offers reliable performance for high-demand applications and systems.
The AMD EPYC 9254 is a powerful server processor with clock speed of 2.9 GHz and 128MB L3 cache. This tray-branded processor offers reliable performance for high-demand applications and systems.
AMD EPYC 74F3 Processor - High-performance 3.2 GHz CPU with 256 MB L3 Cache for advanced computing tasks.
Unleash unparalleled performance with the AMD Ryzen Threadripper 7970X. Boasting a blazing 4 GHz clock speed, 128 MB of L3 cache, and a powerful 32-core configuration, it's designed for demanding workloads and professional computing needs.
Unleash unparalleled performance with the AMD Ryzen Threadripper 7970X. Boasting a blazing 4 GHz clock speed, 128 MB of L3 cache, and a powerful 32-core configuration, it's designed for demanding workloads and professional computing needs.
Unleash extreme multitasking with AMD Ryzen Threadripper 7960X, featuring 24 cores, 48 threads running at 4.2 GHz, a massive 128 MB L3 cache, and the sTR5 socket for unparalleled performance in content creation, simulation, and demanding workloads.
Unleash unparalleled performance with the AMD EPYC 9224 Processor—a 24-core powerhouse at 2.5 GHz featuring 64 MB L3 cache and 48 threads for demanding workloads in data centers and high-performance computing environments.
The AMD Ryzen 9 7950X is a powerful CPU with 16 cores, 32 threads, and up to 5.7GHz clock speed on Socket AM5 platform.
AMD EPYC 7543 Processor with 32 cores, 64 threads, 2.8 GHz base frequency, and 3.7 GHz boost frequency, offering exceptional performance for demanding applications.
Experience peak performance with the AMD Ryzen Threadripper PRO 5955WX, a powerhouse featuring 4 GHz base clock speed and 64 MB of L3 cache.
Unleash unparalleled performance with the AMD EPYC 7663, featuring 56 cores and 112 threads. Boasting a 2.0 GHz base frequency and up to 3.5 GHz boost frequency, it delivers exceptional power for demanding workloads.
The AMD EPYC 7303 Processor features 16 powerful cores operating at 2.4 GHz, delivering exceptional performance for demanding workloads. With a substantial 64 MB L3 cache and SP3 socket compatibility, it ensures efficient data handling and multitasking capabilities, making it ideal for data centers and enterprise applications.
Unleash unparalleled performance with the AMD Ryzen 9 7900X3D processor, featuring a robust 4.4 GHz base speed and expansive 128 MB L3 cache for exceptional gaming and multitasking capabilities. Elevate your computing experience to new heights.
AMD EPYC 9135 delivers 16 cores running at 3.65 GHz with a 64 MB L3 cache and 200 W TDP, providing high throughput for demanding server workloads.
AMD EPYC 9135 delivers 16 cores running at 3.65 GHz with a 64 MB L3 cache and 200 W TDP, providing high throughput for demanding server workloads.