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Key features of Ryzen 8040 notebook APUs: Socket: BGA (FP7, FP7r2 or FP8 type packages). All models support DDR5-5600 or LPDDR5X-7500 in 128-bit "dual-channel" mode. CPU uses Zen4 cores (Phoenix) or a combination of Zen4 and Zen4c cores (Phoenix2). GPU uses the RDNA 3 (Navi 3) architecture. Some models include first generation Ryzen AI NPU (XDNA).
A software method called "zp7" is, in fact, faster on these machines.) [21] For optimum performance it is recommended that compiler developers choose to use individual instructions in the extensions based on architecture specific performance profiles rather than on extension availability.
The Ryzen 7040 series is a new design based on Zen 4, targeting "elite ultrathin" segment. [79] It integrates a built-in AI accelerator (branded as "Ryzen AI") for the first time in an x86 processor, [81] and features RDNA 3 integrated graphics with up to 12 compute units. The Ryzen 7045 series is the top of
As of 2019, AMD's Ryzen processors were reported to outsell Intel's consumer desktop processors. [187] At CES 2020 AMD announced their Ryzen Mobile 4000, as the first 7 nm x86 mobile processor, [vague] the first 7 nm 8-core (also 16-thread) high-performance mobile processor, and the first 8-core (also 16-thread) processor for ultrathin laptops ...
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TSMC was the first foundry to market 7-nanometre and 5-nanometre (used by the 2020 Apple A14 and M1 SoCs, the MediaTek Dimensity 8100, and AMD Ryzen 7000 series processors) production capabilities, and the first to commercialize ASML's extreme ultraviolet (EUV) lithography technology in high volume.
Zen 2 is a computer processor microarchitecture by AMD.It is the successor of AMD's Zen and Zen+ microarchitectures, and is fabricated on the 7 nm MOSFET node from TSMC.The microarchitecture powers the third generation of Ryzen processors, known as Ryzen 3000 for the mainstream desktop chips (codename "Matisse"), Ryzen 4000U/H (codename "Renoir") and Ryzen 5000U (codename "Lucienne") for ...
After all bits have been shifted out and in, the master and slave have exchanged register values. If more data needs to be exchanged, the shift registers are reloaded and the process repeats. Transmission may continue for any number of clock cycles. When complete, the master stops toggling the clock signal, and typically deselects the slave.