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Common features of Ryzen 2000 desktop CPUs: Socket: AM4. All the CPUs support DDR4-2933 in dual-channel mode, except for R7 2700E, R5 2600E, R5 1600AF and R3 1200AF which support it at DDR4-2666 speeds. All the CPUs support 24 PCIe 3.0 lanes. 4 of the lanes are reserved as link to the chipset. No integrated graphics.
Common features of Ryzen 9000 desktop CPUs: Socket: AM5. All the CPUs support DDR5-5600 in dual-channel mode. All the CPUs support 28 PCIe 5.0 lanes. 4 of the lanes are reserved as link to the chipset. Includes integrated RDNA2 GPU with 2 CUs and base, boost clock speeds of 0.4 GHz, 2.2 GHz. L1 cache: 80 KB (48 KB data + 32 KB instruction) per ...
In April 2022, AMD released the Ryzen 5 4600G to retail, and launched the Ryzen 4000 series of CPUs without integrated graphics, for budget-oriented users. [56] Unlike the Ryzen 3000 series CPUs which are based on "Matisse" cores, these new Ryzen 4000 series desktop CPUs are based on "Renoir" cores and are essentially APUs with the integrated ...
Common features of Ryzen 7000 desktop CPUs: Socket: AM5. All the CPUs support DDR5-5200 in dual-channel mode. L1 cache: 64 KB (32 KB data + 32 KB instruction) per core. L2 cache: 1 MB per core. All the CPUs support 28 PCIe 5.0 lanes. 4 of the lanes are reserved as link to the chipset.
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)
Ryzen 3 (Pro 1200, 1200, Pro 1300, 1300X) 4 No 3100–3500 (3400–3700 boost) 8.0 ... List of AMD CPU microarchitectures; List of AMD mobile microprocessors;
The integrated graphics is upgraded to RDNA 3.5, and top end models have 16 CUs of GPU and 12 cores of CPU, an increase from the maximum of 8 CPU cores on previous generation Ryzen ultrathin mobile processors. [38] Notebooks featuring Ryzen AI 300 series processors were released on July 17. [39] Common features of Ryzen AI 300 notebook APUs:
Zen 4 is the name for a CPU microarchitecture designed by AMD, released on September 27, 2022. [4] [5] [6] It is the successor to Zen 3 and uses TSMC's N6 process for I/O dies, N5 process for CCDs, and N4 process for APUs. [7]