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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.
Ryzen 5 5600 Ryzen 7 5700X 6/8 3400–3500 (4400–4600 boost) Ryzen 7 5800X3D 8 3400 (4500 boost) 96 MB January 2021: Cezanne Ryzen 3 (5300G, 5300GE, 5400U) 4 2600–4000 (4000–4200 boost) 8 MB Mobile: Socket FP6. Desktop: Socket AM4. Mobile: Dual-channel DDR4 or LPDDR4. Desktop: Dual-channel DDR4. Ryzen 5 (5600G, 5600GE, 5600U, 5600H, 5600HS) 6
AMD Turbo Core a.k.a. AMD Core Performance Boost (CPB) is a dynamic frequency scaling technology implemented by AMD that allows the processor to dynamically adjust and control the processor operating frequency in certain versions of its processors which allows for increased performance when needed while maintaining lower power and thermal parameters during normal operation. [1]
An AMD Ryzen 5 2600 Die shot of a Ryzen 3 1200. Zen series CPUs and APUs (released 2017) Summit Ridge Ryzen 1000 series (desktop) Whitehaven Ryzen Threadripper 1000 series (desktop) Raven Ridge Ryzen 2000 APU series with RX Vega (desktop & laptop) and Athlon APU series with Radeon Vega (desktop & laptop)
AMD Zen 3+ Family 19h – 2022 revision of Zen 3 used in Ryzen 6000 mobile processors using a 6 nm process. AMD Zen 4 Family 19h – fourth generation Zen architecture, in 5 nm process. [5] Used in Ryzen 7000 consumer processors on the new AM5 platform with DDR5 and PCIe 5.0 support. Adds support for AVX-512 instruction set.
Ryzen 3 PRO 2100GE [2] found in some OEM markets in limited quantities. Ryzen (/ ˈ r aɪ z ən / RY-zən) [3] is a brand [4] of multi-core x86-64 microprocessors, designed and marketed by AMD for desktop, mobile, server, and embedded platforms, based on the Zen microarchitecture.
The Zen 5-based Ryzen 7 9800X3D has a 500 MHz increased base frequency over the Zen 4-based Ryzen 7 7800X3D and allows overclocking for the first time. [ 28 ] Ryzen AI 300 APUs, codenamed "Strix Point", features 24 MB of total L3 cache which is split into two separate cache arrays. 16 MB of dedicated L3 cache is shared the 4 Zen 5 cores and 8 ...
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.