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The Ryzen family is an x86-64 microprocessor family from AMD, based on the Zen microarchitecture. The Ryzen lineup includes Ryzen 3, Ryzen 5, Ryzen 7, Ryzen 9, and Ryzen Threadripper with up to 96 cores.
The purpose of overclocking is to increase the operating speed of a given component. [3] Normally, on modern systems, the target of overclocking is increasing the performance of a major chip or subsystem, such as the main processor or graphics controller, but other components, such as system memory or system buses (generally on the motherboard), are commonly involved.
Vulkan 1.0 support was introduced in Radeon Software 16.3.2. Radeon Software 17.7.1 is the final driver for Windows 8.1. Radeon Software 18.9.3 is the final driver for 32-bit Windows 7/10. AMD Software 22.6.1 is the final driver for Windows 7 (and Windows 8.1 unofficially); 22.6.1 is also the final driver for GCN 1, GCN 2 and GCN 3 based GPUs [42]
Common features of Ryzen 3000 HEDT/workstation CPUs: Socket: sTRX4 (Threadripper), sWRX8 (Threadripper PRO). Threadripper CPUs support DDR4-3200 in quad-channel mode while Threadripper PRO CPUs support DDR4-3200 in octa-channel mode.
Zen 3 is the last microarchitecture before AMD switched to DDR5 memory and new sockets, which are AM5 for the desktop "Ryzen" chips alongside SP5 and SP6 for the EPYC server platform and sTRX8. [3] According to AMD, Zen 3 has a 19% higher instructions per cycle (IPC) on average than Zen 2.
Barceló-R Ryzen 7030 series (laptop) Milan Epyc 7003 series (server) Milan-X Epyc 7003X series (server) Zen 3+ series CPUs and APUs (released 2022) Rembrandt Ryzen 6000 series (laptop) Rembrandt-R Ryzen 7035 series (laptop) Zen 4 series CPUs and APUs (released 2022) Raphael Ryzen 7000 series (desktop) Storm Peak Ryzen Threadripper 7000 series ...
Common features of Ryzen AI 300 notebook APUs: Socket: BGA, FP8 package type. All models support DDR5-5600 or LPDDR5X-7500 in dual-channel mode. All models support 16 PCIe 4.0 lanes. Native USB 4 (40Gbps) Ports: 2; Native USB 3.2 Gen 2 (10Gbps) Ports: 2; iGPU uses the RDNA 3.5 microarchitecture. NPU uses the XDNA 2 AI Engine (Ryzen AI).
ROCm [3] is an Advanced Micro Devices (AMD) software stack for graphics processing unit (GPU) programming. ROCm spans several domains: general-purpose computing on graphics processing units (GPGPU), high performance computing (HPC), heterogeneous computing.