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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]
Specifications vary depending on OEM, similar to GT230 v2. G92 [57] 500 1250 256 51.20 256 4.000 24.00 240.0 G92B [58] 96:32:16 1024 16.32 DDR2 128 8.000 GeForce GT 340 GT215 550 1340 3400 96:32:8 512 1024 54.4 GDDR5 [59] 128 257.3 69 OEM Card, similar to GT240
Painting of Blaise Pascal, eponym of architecture. Pascal is the codename for a GPU microarchitecture developed by Nvidia, as the successor to the Maxwell architecture. The architecture was first introduced in April 2016 with the release of the Tesla P100 (GP100) on April 5, 2016, and is primarily used in the GeForce 10 series, starting with the GeForce GTX 1080 and GTX 1070 (both using the ...
GTX 1080 Ti die (GP-102-350-K1-A1) The biggest highlight to this line of notebook GPUs is the implementation of configured specifications close to (for the GTX 1060–1080) and exceeding (for the GTX 1050/1050 Ti) that of their desktop counterparts, as opposed to having "cut-down" specifications in previous generations.
Specifications of Intel Gen5 graphics processing units [22] [23] Name Launch Market Processor Device ID Execution units Core clock Memory API support Intel Clear Video HD; Code name Model DVMT Bandwidth Direct3D OpenGL OpenCL; HD Graphics 2010 Desktop Ironlake Celeron G1101 0042 12 533 1720 17 10.1 FL10_0 2.1 ES 2.0 Linux: No No
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.
Graphics Double Data Rate 5 Synchronous Dynamic Random-Access Memory (GDDR5 SDRAM) is a type of synchronous graphics random-access memory (SGRAM) with a high bandwidth ("double data rate") interface designed for use in graphics cards, game consoles, and high-performance computing. [1]
For example, the introduction of AGP and, more recently, PCI Express have influenced motherboard design. However, the standardized size and layout of motherboards have changed much more slowly and are controlled by their own standards. The list of components required on a motherboard changes far more slowly than the components themselves.