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Ampere is the codename for a graphics processing unit (GPU) microarchitecture developed by Nvidia as the successor to both the Volta and Turing architectures. It was officially announced on May 14, 2020, and is named after French mathematician and physicist André-Marie Ampère.
Model – The marketing name for the processor, assigned by Nvidia. Launch – Date of release for the processor. Code name – The internal engineering codename for the processor (typically designated by an NVXY name and later GXY where X is the series number and Y is the schedule of the project for that generation). Fab – Fabrication ...
Nvidia Denver 2014 Multicore, superscalar, 2-way decode, L2 Nvidia Carmel 2018 Multicore, 10-way superscalar, L3 POWER1: 1990 Superscalar, out-of-order execution POWER3: 1998 Superscalar, out-of-order execution POWER4: 2001 Superscalar, speculative execution, out-of-order execution POWER5: 2004
+ Nvidia RTX A2000 Ada w/8 GB GDDR6 + Nvidia RTX A3500 Ada w/12 GB GDDR6 + Nvidia RTX A4000 Ada w/12 GB GDDR6 + Nvidia RTX A5000 Ada w/16 GB GDDR6 + Nvidia RTX 4090 w/16 GB GDDR6. Intel AX211 2 x M.2 PCIe NVMe 1920×1200 IGZO 3840×2400 IGZO touch Windows 11 Home Windows 11 Pro Windows 11 Enterprice Ubuntu 22.04. 15.6" Mainstream Precision 5570 ...
Core i7, on the desktop platform no longer supports hyper-threading; instead, now higher-performing core i9s will support hyper-threading on both mobile and desktop platforms. Before 2007 and post-Kaby Lake, some Intel Pentium and Intel Atom (e.g. N270, N450) processors support hyper-threading. Celeron processors never supported it.
Intel's second generation of 32-bit x86 processors, introduced built-in floating point unit (FPU), 8 KB on-chip L1 cache, and pipelining. Faster per MHz than the 386. Small number of new instructions. P5 original Pentium microprocessors, first x86 processor with super-scalar architecture and branch prediction. P6