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Intel Graphics Technology [4] (GT) [a] is the collective name for a series of integrated graphics processors (IGPs) produced by Intel that are manufactured on the same package or die as the central processing unit (CPU). It was first introduced in 2010 as Intel HD Graphics and renamed in 2017 as Intel UHD Graphics.
The Intel Graphics Media Accelerator (GMA) is a series of integrated graphics processors introduced in 2004 by Intel, replacing the earlier Intel Extreme Graphics series and being succeeded by the Intel HD and Iris Graphics series. This series targets the market of low-cost graphics solutions.
GPU virtualization refers to technologies that allow the use of a GPU to accelerate graphics or GPGPU applications running on a virtual machine.GPU virtualization is used in various applications such as desktop virtualization, [1] cloud gaming [2] and computational science (e.g. hydrodynamics simulations).
Java: 2006 Yes 3D Cross-platform: GPL: Java port of Quake II game engine Java 3D: Java: Yes 3D Cross-platform: BSD: Community-centric project. Used by many schools as part of course work Jedi: C: Yes 2.5D DOS, Windows: Star Wars: Dark Forces, Outlaws: Proprietary: Rumored to have been reverse-engineered from Doom engine jMonkeyEngine: Java ...
Intel Graphics Media Accelerator (GMA), a series of integrated graphics released from 2005 to 2008; Larrabee (microarchitecture), the code name for an unreleased Intel graphics processing unit; Intel HD and Iris Graphics, a series of processor-based graphics first released in 2010
Specifications of Intel HD Graphics series [24] Graphics Launch Market Processor Code name Device id. [3] Core clock Execution units API support [13] Memory bandwidth DVMT QSV; Direct3D OpenGL OpenCL; HD Graphics 2011 Mobile Celeron B7x0 Celeron 7x7 Celeron 8x7 Celeron B8xx Pentium B9x0 Pentium 9x7 Sandy Bridge: 010A 350–1150 6 (GT1) 10.1 11. ...
OpenGL (Open Graphics Library [4]) is a cross-language, cross-platform application programming interface (API) for rendering 2D and 3D vector graphics. The API is typically used to interact with a graphics processing unit (GPU), to achieve hardware-accelerated rendering .
This architecture allows for the use of graphics accelerators, such as OpenCL, with the integrated graphics processor. [33] The goal is to create a "fully integrated" APU, which, according to AMD, will eventually feature 'heterogeneous cores' capable of processing both CPU and GPU work automatically, depending on the workload requirement.
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