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Ada Lovelace, also referred to simply as Lovelace, [1] is a graphics processing unit (GPU) microarchitecture developed by Nvidia as the successor to the Ampere architecture, officially announced on September 20, 2022. It is named after the 19th century English mathematician Ada Lovelace, [2] one of the first computer programmers.
This is a list of eponyms of Nvidia GPU microarchitectures.The eponym in this case is the person after whom an architecture is named. Listed are the person, their portrait, their profession or areas of expertise, their birth year, their death year, their country of origin, the microarchitecture named after them, and the year of release of the GPU architecture.
Consumer Product Graphics Cards Fahrenheit (1998) STG-2000 RIVA 128 RIVA TNT RIVA TNT2: Celsius (1999) GeForce 256 GeForce 2 series: Kelvin (2001) GeForce 3 series
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 .
For example, when a kernel performs computations in GPU memory and a parallel kernel performs communications with a peer, the local kernel will flush its writes, resulting in slower NVLink or PCIe writes. In the Hopper architecture, the GPU can reduce the net cast through a fence operation.
Blackwell is a graphics processing unit (GPU) microarchitecture developed by Nvidia as the successor to the Hopper and Ada Lovelace microarchitectures.. Named after statistician and mathematician David Blackwell, the name of the Blackwell architecture was leaked in 2022 with the B40 and B100 accelerators being confirmed in October 2023 with an official Nvidia roadmap shown during an investors ...
The GeForce 30 series is a suite of graphics processing units (GPUs) developed by Nvidia, succeeding the GeForce 20 series.The GeForce 30 series is based on the Ampere architecture, which features Nvidia's second-generation ray tracing (RT) cores and third-generation Tensor Cores. [3]
The book summarizes the contributions of several innovators who have made pivotal breakthroughs in computer technology and its applications—from the world's first computer programmer, Ada Lovelace, and Alan Turing's work in artificial intelligence, through the Information Age of the present.