- Mar 14, 2018 - help i wanted to reinstall my laptops graphics driver and when i tried this. Can I run GTA 5 with 4 gb ram and Intel graphics 4400 and Intel i5 4th generation clock 1.70ghz. Can't Open Intel HD Graphics Control Center.
- Intel® Graphics Drivers Find support information, downloads, and more for Intel® Graphics Drivers. Intel will be supplying Windows DCH Drivers for its products beginning in November.
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API support | |
---|---|
Direct3D | Direct3D 10.1+ (see capabilities)[1] Shader Model 4.1+ (see capabilities)[1] |
OpenCL | Depending on version (see capabilities)[1] |
OpenGL | OpenGL 2.1+ (see capabilities)[1][2][3] |
Vulkan | Depending on version |
History | |
Predecessor | Intel GMA |
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.
Intel Iris Graphics and Intel Iris Pro Graphics are the IGP series introduced in 2013 with some models of Haswell processors as the high-performance versions of HD Graphics. Iris Pro Graphics was the first in the series to incorporate embedded DRAM.[5]
In the fourth quarter of 2013, Intel integrated graphics represented, in units, 65% of all PC graphics processor shipments.[6] However, this percentage does not represent actual adoption as a number of these shipped units end up in systems outfitted with discrete graphics cards.
- 2Generations
- 2.5Broadwell
- 3Features
- 3.4Multiple monitors
- 5Capabilities (GPU video acceleration)
History
Before the introduction of Intel HD Graphics, Intel integrated graphics were built into the motherboard's northbridge, as part of the Intel's Hub Architecture. They were known as Intel Extreme Graphics and Intel GMA. As part of the Platform Controller Hub (PCH) design, the northbridge was eliminated and graphics processing was moved to the same die as the central processing unit (CPU).
The previous Intel integrated graphics solution, Intel GMA, had a reputation of lacking performance and features, and therefore was not considered to be a good choice for more demanding graphics applications, such as 3D gaming. The performance increases brought by Intel's HD Graphics made the products competitive with integrated graphics adapters made by its rivals, Nvidia and ATI/AMD.[7] Intel HD Graphics, featuring minimal power consumption that is important in laptops, was capable enough that PC manufacturers often stopped offering discrete graphics options in both low-end and high-end laptop lines, where reduced dimensions and low power consumption are important.
Generations
Intel HD and Iris Graphics are divided into generations, and within each generation are divided into 'tiers' of increasing performance, denominated by the 'GTx' label.
Westmere
In January 2010, Clarkdale and Arrandale processors with Ironlake graphics were released, and branded as Celeron, Pentium, or Core with HD Graphics. There was only one specification:[8] 12 execution units, up to 43.2 GFLOPS at 900 MHz. It can decode a H264 1080p video at up to 40 fps.
Its direct predecessor, the GMA_X4500, featured 10 EUs at 800 MHz, but it lacked some capabilities.[9]
Model number | Tier | Execution units | Boost Clock (MHz) | max GFLOPS |
---|---|---|---|---|
HD Graphics | ? | 12 | 900 | 43.2 |
Sandy Bridge
In January 2011, the Sandy Bridge processors were released, introducing the 'second generation' HD Graphics:
Model number | Tier | Execution units | Boost Clock (MHz) | max GFLOPS |
---|---|---|---|---|
HD Graphics | GT1 | 6 | 1000 | 96 |
HD Graphics 2000 | 1350 | 129.6 | ||
HD Graphics 3000 | GT2 | 12 | 1350 | 259.2 |
Sandy Bridge Celeron and Pentium have Intel HD, while Core i3 and above have either HD 2000 or HD 3000. HD Graphics 2000 and 3000 include hardware video encoding and HD postprocessing effects.
Ivy Bridge
On 24 April 2012, Ivy Bridge was released, introducing the 'third generation' of Intel's HD graphics:[10]
Model number | Tier | Execution units | Shading units | Boost Clock (MHz) | max GFLOPS |
---|---|---|---|---|---|
HD Graphics | GT1 | 6 | 48 | 1050 | 100.8 |
HD Graphics 2500 | 1150 | 110.4 | |||
HD Graphics 4000 | GT2 | 16 | 128 | 1300 | 332.8 |
Ivy Bridge Celeron and Pentium have Intel HD, while Core i3 and above have either HD 2500 or HD 4000. HD Graphics 2500 and 4000 include hardware video encoding and HD postprocessing effects.
For some low-power mobile CPUs there is limited video decoding support, while none of the desktop CPUs have this limitation.
Haswell
On 12 September 2012, Haswell CPUs were announced, with four models of integrated GPUs:
Market | Model number | Tier | Execution units | Shading units | eDRAM (MB) | Boost Clock (MHz) | max GFLOPS |
---|---|---|---|---|---|---|---|
Consumer | HD Graphics | GT1 | 10 | 80 | N/A | 1150 | 184 |
HD Graphics 4200 | GT2 | 20 | 160 | 850 | 272 | ||
HD Graphics 4400 | 950 – 1150 | 304 – 368 | |||||
HD Graphics 4600 | 900 – 1350 | 288 – 432 | |||||
HD Graphics 5000 | GT3 | 40 | 320 | 1000 – 1100 | 640 – 704 | ||
Iris Graphics 5100 | 1100 – 1200 | 704 – 768 | |||||
Iris Pro Graphics 5200 | GT3e | 128 | 1300 | 832 | |||
Professional | HD Graphics P4600 | GT2 | 20 | 160 | N/A | 1200 – 1250 | 384 – 400 |
HD Graphics P4700 | 1250 – 1300 | 400 – 416 |
The 128 MB of eDRAM in the Iris Pro GT3e is on the same package as the CPU, but in a separate die manufactured in a different process. Intel refers to this as a Level 4 cache, available to both CPU and GPU, naming it Crystalwell. Linux support for this eDRAM is expected in kernel version 3.12, by making the drm/i915
driver aware and capable of using it.[11][12][13]
Integrated Iris Pro Graphics was adopted by Apple for their late-2013 15-inch MacBook Pro laptops (with Retina Display), which for the first time in the history of the series did not have discrete graphics cards, although only for the low-end model.[14] It was also included on the late-2013 21.5-inch iMac.[15]
Broadwell
In November 2013, it was announced that Broadwell-K desktop processors (aimed at enthusiasts) will also carry Iris Pro Graphics.[16]
The following models of integrated GPU are announced for Broadwell processors:[17][better source needed]
Market | Model number | Tier | Execution units | Shading units | eDRAM (MB) | Boost Clock (MHz) | max GFLOPS |
---|---|---|---|---|---|---|---|
Consumer | HD Graphics | GT1 | 12 | 96 | – | 850 | 163.2 |
HD Graphics 5300 | GT2 | 24 | 192 | 900 | 345.6 | ||
HD Graphics 5500 | 950 | 364.8 | |||||
HD Graphics 5600 | 1050 | 403.2 | |||||
HD Graphics 6000 | GT3 | 48 | 384 | 1000 | 768 | ||
Iris Graphics 6100 | 1100 | 844.8 | |||||
Iris Pro Graphics 6200 | GT3e | 128 | 1150 | 883.2 | |||
Professional | HD Graphics P5700 | GT2 | 24 | 192 | – | 1000 | 384 |
Iris Pro Graphics P6300 | GT3e | 48 | 384 | 128 | 1150 | 883.2 |
Braswell
Model number | CPU model | Tier | Execution units | Clock speed (MHz) |
---|---|---|---|---|
HD Graphics 400 | E8000 | GT1 | 12 | 320 |
N30xx | 320 – 600 | |||
N31xx | 320 – 640 | |||
J3xxx | 320 – 700 | |||
HD Graphics 405 | N37xx | 16 | 400 – 700 | |
J37xx | 18 | 400 – 740 |
Skylake
The Skylake line of processors, launched in August 2015, retires VGA support, while supporting multi-monitor setups of up to three monitors connected via HDMI 1.4, DisplayPort 1.2 or Embedded DisplayPort (eDP) 1.3 interfaces.[18][19]
The following models of integrated GPU are available or announced for the Skylake processors:[20][21][better source needed]
Market | Model number | Tier | Execution units | Shading units | eDRAM (MB) | Boost Clock (MHz) | max GFLOPS |
---|---|---|---|---|---|---|---|
Consumer | HD Graphics 510 | GT1 | 12 | 96 | – | 950 | 182.4 |
HD Graphics 515 | GT2 | 24 | 192 | 1000 | 384 | ||
HD Graphics 520 | 1050 | 403.2 | |||||
HD Graphics 530 | 1150[18] | 441.6 | |||||
Iris Graphics 540 | GT3e | 48 | 384 | 64 | 1050 | 806.4 | |
Iris Graphics 550 | 1100 | 844.8 | |||||
Iris Pro Graphics 580 | GT4e | 72 | 576 | 128 | 1000 | 1152 | |
Professional | HD Graphics P530 | GT2 | 24 | 192 | – | 1150 | 441.6 |
Iris Pro Graphics P555 | GT3e | 48 | 384 | 128 | 1000[22] | 768 | |
Iris Pro Graphics P580 | GT4e | 72 | 576 | 1000 | 1152 |
Apollo Lake
Model number | CPU model | Tier | Execution units | Shading units | Clock speed (MHz) |
---|---|---|---|---|---|
HD Graphics 500 | E3930 | GT1 | 12 | 96 | 400 – 550 |
E3940 | 400 – 600 | ||||
N3350 | 200 – 650 | ||||
N3450 | 200 – 700 | ||||
J3355 | 250 – 700 | ||||
J3455 | 250 – 750 | ||||
HD Graphics 505 | E3950 | 18 | 144 | 500 – 650 | |
N4200 | 200 – 750 | ||||
J4205 | 250 – 800 |
Kaby Lake
New Features: Speed increases, support for 4K UHD 'premium' (DRM encoded) streaming services, media engine with full hardware acceleration of 8- and 10-bit HEVC and VP9 decode[23][24]
Market | Model number | Tier | Execution units | Shading units | eDRAM (MB) | Base clock (MHz) | Boost clock (MHz) | max GFLOPS | Used in |
---|---|---|---|---|---|---|---|---|---|
Consumer | HD Graphics 610 | GT1 | 12 | 96 | – | 300−350 | 900 − 1100 | 172.8 – 211.2 | Desktop Celeron, Desktop Pentium G45**, i3-7101 |
HD Graphics 615 | GT2 | 24 | 192 | 300 | 900 – 1050 | 345.6 – 403.2 | m3-7Y30/32, i5-7Y54/57, i7-7Y75, Pentium 4415Y | ||
HD Graphics 620 | 1000 – 1050 | 384 – 403.2 | i3-7100U, i5-7200U, i5-7300U, i7-7500U, i7-7600U | ||||||
HD Graphics 630 | 350 | 1000 – 1150 | 384 − 441.6 | Desktop Pentium G46**, i3, i5 and i7, and Laptop H-series i3, i5 and i7 | |||||
Iris Plus Graphics 640 | GT3e | 48 | 384 | 64 | 300 | 950 – 1050 | 729.6 − 806.4 | i5-7260U, i5-7360U, i7-7560U, i7-7660U | |
Iris Plus Graphics 650 | 1050 – 1150 | 806.4 − 883.2 | i3-7167U, i5-7267U, i5-7287U, i7-7567U | ||||||
Professional | HD Graphics P630 | GT2 | 24 | 192 | – | 350 | 1000 – 1150 | 384 − 441.6 | Xeon E3-**** v6 |
Kaby Lake Refresh / Amber Lake / Coffee Lake / Whiskey Lake
New Features: HDCP 2.2 support [25]
Market | Model number | Tier | Execution units | Shading units | eDRAM (MB) | Base clock (MHz) | Boost clock (MHz) | max GFLOPS | Used in |
---|---|---|---|---|---|---|---|---|---|
Consumer | UHD Graphics 610 | GT1 | 12 | 96 | – | 350 | 1050 | 201.6 | Pentium Gold G54**, Celeron G49** |
UHD Graphics 615 | GT2 | 24 | 192 | 300 | 900 – 1050 | 345.6 – 403.2 | i7-8500Y, i5-8200Y, m3-8100Y | ||
UHD Graphics 617 | 1050 | 403.2 | i7-8510Y, i5-8310Y, i5-8210Y | ||||||
UHD Graphics 620 | 1000 – 1150 | 422.4 – 441.6 | i3-8130U, i5-8250U, i5-8350U, i7-8550U, i7-8650U i3-8145U, i5-8265U, i5-8365U, i7-8565U, i7-8665U | ||||||
UHD Graphics 630 | 23[26] | 184 | 350 | 1100 – 1150 | 404.8 – 423.2 | i3-8350K, i3-8100 with stepping B0 | |||
24 | 192 | 1050 – 1250 | 403.2 – 480 | i9, i7, i5, i3, Pentium Gold G56**, G55** | |||||
Iris Plus Graphics 655 | GT3e | 48 | 384 | 128 | 300 | 1050 – 1200 | 806.4 – 921.6 | i7-8559U, i5-8269U, i5-8259U, i3-8109U | |
Professional | UHD Graphics P630 | GT2 | 24 | 192 | – | 350 | 1100 – 1200 | 422.4 – 460.8 | Xeon E 21**G, 21**M, 22**G, 22**M |
Gemini Lake
New Features: HDMI 2.0 support, VP9 10-bit Profile2 hardware decoder[27]
Intel Hd Graphics 4400 Driver Update
Model number | Tier | Execution units | CPU model | Clock speed (MHz) | GFLOPS |
---|---|---|---|---|---|
UHD Graphics 600 | GT1 | 12 | |||
N4000 | 200 – 650 | 38.4 – 124.8 | |||
N4100 | 200 – 700 | 38.4 – 134.4 | |||
J4005 | 250 – 700 | 48.0 – 134.4 | |||
J4105 | 250 – 750 | 48.0 – 144.0 | |||
UHD Graphics 605 | GT1.5 | 18 | |||
N5000 | 200 – 750 | 57.6 – 216 | |||
J5005 | 250 – 800 | 72.0 – 230.4 |
Ice Lake
New Features: 10 nm Gen 11 GPU microarchitecture[28][29][30][31][32]
Features
Intel Insider
Beginning with Sandy Bridge, the graphics processors include a form of digital copy protection and digital rights management (DRM) called Intel Insider, which allows decryption of protected media within the processor.[33][34] Previously there was a similar technology called Protected Audio Video Path (PAVP).
Intel Quick Sync Video
Intel Quick Sync Video is Intel's hardware video encoding and decoding technology, which is integrated into some of the Intel CPUs. The name 'Quick Sync' refers to the use case of quickly transcoding ('syncing') a video from, for example, a DVD or Blu-ray Disc to a format appropriate to, for example, a smartphone. Quick Sync was introduced with the Gen 6 in Sandy Bridge microprocessors on 9 January 2011.
Graphics Virtualization Technology
Graphics Virtualization Technology was announced 1 January 2014 and is supported by Iris Pro GPUs.[35]
Multiple monitors
Ivy Bridge
HD 2500 and HD 4000 GPUs in Ivy Bridge CPUs are advertised as supporting three active monitors, but many users have found that this does not work for them due to the chipsets only supporting two active monitors in many common configurations. The reason for this is that the chipsets only include two phase-locked loops (PLLs); a PLL generates a pixel clock at a certain frequency which is used to sync the timings of data being transferred between the GPU and displays.[36]
Therefore, three simultaneously active monitors can only be achieved by a hardware configuration that requires only two unique pixel clocks, such as:
- Using two or three DisplayPort connections, as they require only a single pixel clock for all connections.[37] Passive adapters from DisplayPort to some other connector rely on the chipset being able to emit a non-DisplayPort signal through the DisplayPort connector, and thus do not count as a DisplayPort connection. Active adapters that contain additional logic to convert the DisplayPort signal to some other format count as a DisplayPort connection.
- By using two non-DisplayPort connections of the same connection type (for example, two HDMI connections) and the same clock frequency (like when connected to two identical monitors at the same resolution), so that a single unique pixel clock can be shared between both connections.[38]
- Using the Embedded DisplayPort on a mobile CPU along with any two other outputs.[37]
Haswell
ASRock Z87- and H87-based motherboards support three displays simultaneously.[39]Asus H87-based motherboards are also advertised to support three independent monitors at once.[40]
Capabilities
Micro- architecture - Socket | Brand | Graphics | Vulkan | OpenGL | Direct3D | HLSL shader model | OpenCL | |||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
'Core' | 'Pentium' | 'Celeron' | Gen | Graphics brand | Linux | Windows | Linux | Windows | Linux | Windows | Linux | Windows | ||
Westmere - 1156 | i3/5/7-xxx | (G/P)6000 and U5000 | P4000 and U3000 | 5.5th[41] | HD | N/A | 2.1 | N/A | 10.1[1] | 4.1 | N/A | |||
Sandy Bridge - 1155 | i3/5/7-2000 | (B)900, (G)800 and (G)600 | (B)800, (B)700, G500 and G400 | 6th[42] | HD 3000 and 2000 | 3.3[43] | 3.1[1] | |||||||
Ivy Bridge - 1155 | i3/5/7-3000 | (G)2000 and A1018 | G1600, 1000 and 900 | 7th[44][45] | HD 4000 and 2500 | 1.0 | N/A | 4.2[46] | 4.0[1][47] | 11.0 | 5.0 | 1.2 (Beignet) | 1.2[48] | |
Bay Trail - SoCs | N/A | J2000, N3500 and A1020 | J1000 and N2000 | HD Graphics (Bay Trail)[49] | ||||||||||
Haswell - 1150 | i3/5/7-4000 | (G)3000 | G1800 and 2000 | 7.5th[50] | HD 5000, 4600, 4400 and 4200; Iris Pro 5200, Iris 5000 and 5100 | 4.5[51] (4.6 WIP) | 4.3[52] | 12 (fl 11_1)[53] | ||||||
Broadwell - 1150 | i3/5/7-5000 | 3800 | 3700 and 3200 | 8th[54] | Iris Pro 6200[55] and P6300, Iris 6100[56] and HD 6000,[57] P5700, 5600,[58] 5500,[59] 5300[60] and HD Graphics (Broadwell)[61] | 4.4[1] | 1.2 (Beignet) / 2.1 (Neo)[62] | 2.0 | ||||||
Braswell - SoCs | N/A | N3700 | N3000, N3050, N3150 | HD Graphics (Braswell),[63] based on Broadwell graphics | 1.2 (Beignet) | |||||||||
(J/N)3710 | (J/N)3010, 3060, 3160 | (rebranded) HD Graphics 400, 405 | ||||||||||||
Skylake - 1151 | i3/5/7-6000 | (G)4000 | 3900 and 3800 | 9th | HD 510, 515, 520, 530 and 535; Iris 540 and 550; Iris Pro 580 | 1.1 Mesa 18.1 | 1.1[64] | 4.6[65] | 12 (fl 12_1) | 6.0 | 2.0 (Beignet)[66] / 2.1 (Neo)[67] | |||
Apollo Lake - SoCs | N/A | (J/N)4xxx | (J/N)3xxx | HD Graphics 500, 505 | 2.0 (Beignet)[68] / 1.2 (Neo)[69] | |||||||||
Gemini Lake - SoCs | N/A | Silver (J/N)5xxx | (J/N)4xxx | 9.5th[70] | UHD 600, 605 | |||||||||
Kaby Lake - 1151 | m3/i3/5/7-7000 | (G)4000 | (G)3900 and 3800 | HD 610, 615, 620, 630, Iris Plus 640, Iris Plus 650 | 2.0 (Beignet)[71] / 2.1 (Neo)[72] | 2.1[73] | ||||||||
Kaby Lake Refresh - 1151 | i5/7-8000U | N/A | N/A | UHD 620 | ||||||||||
Whiskey Lake - 1151 | i3/5/7-8000U | N/A | N/A | |||||||||||
Coffee Lake - 1151 | i3/5/7/9-8000 i3/5/7/9-9000 | Gold (G)5xxx | (G)49xx | UHD 630, Iris Plus 655 |
OpenCL 2.1 and 2.2 possible with software update on OpenCL 2.0 hardware (Broadwell+) with future software updates.[74]
While Mesa does support Direct3D 9.3, this is only implemented for Gallium3D-style drivers and not for the Mesa Intel driver.
Capabilities (GPU video acceleration)
Intel developed a dedicated SIP core which implements multiple video decompression and compression algorithms branded Intel Quick Sync Video. Some are implemented completely, some only partially.
Hardware-accelerated algorithms
CPU's microarchitecture | Steps | video compression and decompression algorithms | |||||||
---|---|---|---|---|---|---|---|---|---|
H.265 (HEVC) | H.264 (MPEG-4 AVC) | H.262 (MPEG-2) | VC-1/WMV9 | JPEG / MJPEG | VP8 | VP9 | |||
Westmere[75] | Decode | ✘ | ✓ | ✓ | ✓ | ✘ | ✘ | ✘ | |
Encode | ✘ | ✘ | ✘ | ||||||
Sandy Bridge | Decode | Profiles | ✘ | ConstrainedBaseline, Main, High, StereoHigh | Simple, Main | Simple, Main, Advanced | ✘ | ||
Levels | |||||||||
Max. resolution | |||||||||
Encode | Profiles | ConstrainedBaseline, Main, High | ✘ | ||||||
Levels | |||||||||
Max. resolution | |||||||||
Ivy Bridge | Decode | Profiles | ✘ | ConstrainedBaseline, Main, High, StereoHigh | Simple, Main | Simple, Main, Advanced | Baseline | ✘ | ✘ |
Levels | |||||||||
Max. resolution | |||||||||
Encode | Profiles | ConstrainedBaseline, Main, High | Simple, Main | ✘ | ✘ | ✘ | ✘ | ||
Levels | |||||||||
Max. resolution | |||||||||
Haswell | Decode | Profiles | Partial 8-bit[76] | Main, High, SHP, MHP | Main | Simple, Main, Advanced | Baseline | ✘ | ✘ |
Levels | 4.1 | Main, High | High, 3 | ||||||
Max. resolution | 1080/60p | 1080/60p | 16k×16k | ||||||
Encode | Profiles | ✘ | Main, High | Main | ✘ | Baseline | ✘ | ✘ | |
Levels | 4.1 | High | - | ||||||
Max. resolution | 1080/60p | 1080/60p | 16k×16k | ||||||
Broadwell[77][78] | Decode | Profiles | Partial 8-bit & 10-bit[76] | Main | Simple, Main, Advanced | 0 | Partial[76] | ||
Levels | Main, High | High, 3 | Unified | ||||||
Max. resolution | 1080/60p | 1080p | |||||||
Encode | Profiles | ✘ | Main | - | ✘ | ✘ | ✘ | ||
Levels | Main, High | ||||||||
Max. resolution | 1080/60p | ||||||||
Skylake[79] | Decode | Profiles | Main | Main, High, SHP, MHP | Main | Simple, Main, Advanced | Baseline | 0 | 0 |
Levels | 5.2 | 5.2 | Main, High | High, 3 | Unified | Unified | Unified | ||
Max. resolution | 2160/60p | 2160/60p | 1080/60p | 3840×3840 | 16k×16k | 1080p | 4k/24p@15Mbit/s | ||
Encode | Profiles | Main | Main, High | Main | ✘ | Baseline | Unified | ✘ | |
Levels | 5.2 | 5.2 | High | - | Unified | ||||
Max. resolution | 2160/60p | 2160/60p | 1080/60p | 16k×16k | - | ||||
Kaby Lake[80] Coffee Lake[81] Whiskey Lake | Decode | Profiles | Main, Main 10 | Main, High, MVC, Stereo | Main | Simple, Main, Advanced | Baseline | 0 | 0, 2 |
Levels | 5.2 | 5.2 | Main, High | Simple, High, 3 | Unified | Unified | Unified | ||
Max. resolution | 2160/60p | 2160/60p | 1080/60p | 3840×3840 | 16k×16k | 1080p | 2160p | ||
Encode | Profiles | Main | Main, High | Main | ✘ | Baseline | Unified | Support 8 bits 4:2:0 BT.2020 may be obtained the pre/post processing | |
Levels | 5.2 | 5.2 | High | - | Unified | ||||
Max. resolution | 2160/60p | 2160/60p | 1080/60p | 16k×16k | - |
Intel Pentium and Celeron family
Intel Pentium & Celeron family | GPU video acceleration | ||||||||
---|---|---|---|---|---|---|---|---|---|
VED (Video Encode / Decode) | H.265/HEVC | H.264/MPEG-4 AVC | H.262 (MPEG-2) | VC-1/WMV9 | JPEG/MJPEG | VP8 | VP9 | ||
Braswell[82][b][c][d] | Decode | Profile | Main | CBP, Main, High | Main, High | Advanced | 850 MP/s 4:2:0 640 MP/s 4:2:2 420 MP/s 4:4:4 | ||
Level | 5 | 5.2 | High | 4 | |||||
Max. resolution | 4k×2k/30p | 4k×2k/60p | 1080/60p | 1080/60p | 4k×2k/60p | 1080/30p | |||
Encode | Profile | ✘ | CBP, Main, High | Main, High | ✘ | 850 MP/s 4:2:0 640 MP/s 4:2:2 420 MP/s 4:4:4 | Up to 720p30 | ||
Level | 5.1 | High | |||||||
Max. resolution | 4k×2k/30p | 1080/30p | 4k×2k/30p | ||||||
Apollo Lake[83] | Decode | Profile | Main, Main 10 | CBP, Main, High | Main, High | Advanced | 1067 MP/s 4:2:0 800 MP/s 4:2:2 533 MP/s 4:4:4 | 0 | |
Level | 5.1 | 5.2 | High | 4 | |||||
Max. resolution | 4kx2k/60p | 1080p240, 4k×2k/60p | 1080/60p | 1080/60p | 4k×2k/60p | 4k×2k/60p | |||
Encode | Profile | Main | CBP, Main, High | ✘ | ✘ | 1067 MP/s 4:2:0 800 MP/s 4:2:2 533 MP/s 4:4:4 | |||
Level | 4 | 5.2 | |||||||
Max. resolution | 4kx2k/30p | 1080p240, 4k×2k/60p | 4k×2k/30p | 480p30 (SW only) | |||||
Gemini Lake[84] | Decode | Profile | Main, Main 10 | CBP, Main, High | Main, High | Advanced | 1067 MP/s 4:2:0 800 MP/s 4:2:2 533 MP/s 4:4:4 | 0, 2 | |
Level | 5.1 | 5.2 | High | 4 | |||||
Max. resolution | 4kx2k/60p | 1080p240, 4k×2k/60p | 1080/60p | 1080/60p | 4k×2k/60p | 4k×2k/60p | |||
Encode | Profile | Main | CBP, Main, High | Main, High | ✘ | 1067 MP/s 4:2:0 800 MP/s 4:2:2 533 MP/s 4:4:4 | 0 | ||
Level | 4 | 5.2 | High | ||||||
Max. resolution | 4kx2k/30p | 1080p240, 4k×2k/60p | 1080/60p | 4k×2k/30p |
Intel Atom family
Intel Atom family | GPU video acceleration | ||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|
VED (Video Encode / Decode) | H.265/HEVC | H.264/MPEG-4 AVC | MPEG-4 Visual | H.263 | H.262 (MPEG-2) | VC-1/WMV9 | JPEG/MJPEG | VP8 | VP9 | ||
Bay Trail-T | Decode[85] | Profile | ✘ | Main, High | Main | 0 | ✘ | ||||
Level | 5.1 | High | |||||||||
Max. resolution | 4k×2k/30p | 1080/60p | 4k×2k/30p | 4k×2k/30p | |||||||
Encode[85] | Profile | Main, High | Main | - | - | ||||||
Level | 5.1 | High | - | - | |||||||
Max. resolution | 4k×2k/30p | 1080/60p | 1080/30p | - | 1080/30p | ||||||
Cherry Trail-T[86] | Decode | Profile | Main | CBP, Main, High | Simple | Main | Advanced | 1067 Mbit/s – 4:2:0 800 Mbit/s – 4:2:2 | |||
Level | 5 | 5.2 | High | 4 | |||||||
Max. resolution | 4k×2k/30p | 4k×2k/60p, 1080@240p | 480/30p | 480/30p | 1080/60p | 1080/60p | 4k×2k/30p | 1080/30p | |||
Encode | Profile | ✘ | Constrained Baseline, Main, High (MVC) | 1067 Mbit/s – 4:2:0 800 Mbit/s – 4:2:2 | ✘ | ||||||
Level | 5.1 (4.2) | ||||||||||
Max. resolution | 4k×2k/30p, 1080@120p | 480/30p | 4k×2k/30p |
Documentation
Intel releases programming manuals for most of Intel HD Graphics devices via its Open Source Technology Center.[87] This allows various open source enthusiasts and hackers to contribute to driver development, and port drivers to various operating systems, without the need for reverse engineering.
See also
- Accelerated processing unit (APU)
Notes
- ^The abbreviation 'GT' appears in certain monitoring tools, such as Intel Power Gadget in reference to the graphics core on Intel processors.
- ^VP9 media codec GPU accelerator to be supported post TTM, for non-Windows operating systems only.
- ^Resolution details for media codec on open source Linux OS depends on platform features and drivers used. Decode/Encode features may not align to Table 8-4 that is specific to Win8.1 and Win7 operating systems.
- ^All capabilities dependent on OS. Here HW support is mentioned. For more info, see Table 8-4 on page 80 of PDF.
References
- ^ abcdefgh'Supported APIs and Features for Intel Graphics Drivers'. Intel. Retrieved 2016-05-19.
- ^Michael Larabel (18 October 2013). 'OpenGL 3.3 Support Lands In Mesa! Possible Mesa 11.0'. Phoronix.
- ^'OpenGL ES Conformant product list'.
- ^'Experience Visual Perfection with Intel® Graphics Technology'. Intel. Retrieved 31 July 2018.
- ^'Intel Iris Pro 5200 Graphics Review: Core i7-4950HQ Tested'. AnandTech. Retrieved 2014-01-12.
- ^'GPU market up—Intel and Nvidia graphics winners in Q4, AMD down'. Jon Peddie Research. 2014-02-18. Retrieved 2014-05-14.
- ^'AMD Radeon HD 7310'. Notebookcheck.net. 2013-01-17. Retrieved 2014-04-20.
- ^J. F. Amprimoz (2009-02-22). 'The Delayed Mobile Nehalems: Clarksfield, Arrandale, and the Calpella Platform'. Bright Hub. Retrieved 2014-01-15.
- ^'Intel HD Graphics: A Lot Better'.
- ^'Intel's Official Ivy Bridge CPU Announcement Finally Live'.
- ^Michael Larabel (2013-09-02). 'Linux 3.12 Enables Haswell's Iris eLLC Cache Support'. Phoronix. Retrieved 2013-10-25.
- ^'drm/i915: Use eLLC/LLC by default when available'. kernel.org. 2013-07-16. Retrieved 2013-10-25.
- ^'drm/i915: Use Write-Through cacheing for the display plane on Iris'. kernel.org. 2013-08-22. Retrieved 2013-10-25.
- ^'15-inch Retina MacBook Pro review: A tale of two laptops'. Macworld. 2013-10-31. Retrieved 2014-01-12.
- ^Anand Lal Shimpi (7 October 2013). '21.5-inch iMac (Late 2013) Review: Iris Pro Driving an Accurate Display'. AnandTech. Retrieved 2014-01-12.
- ^. Archived from the original
|archive-url=
requires|url=
(help) on 2014-01-12.Missing or empty|title=
(help); Missing or empty|url=
(help) - ^'Intel will announce Broadwell U 14nm cpu at CES 2014'. chinese.vr-zone.com. Retrieved 2014-06-12.
- ^ abIan Cutress (2015-08-05). 'Skylake's iGPU: Intel Gen9 – The Intel 6th Gen Skylake Review: Core i7-6700K and i5-6600K Tested'. AnandTech. Retrieved 2015-08-06.
- ^Michael Larabel (2014-09-10). 'Intel Publishes Initial Skylake Linux Graphics Support'. Phoronix. Retrieved 2014-09-16.
- ^'Khronos Products: Conformant Products'. khronos.org. 2015-07-11. Retrieved 2015-08-08.
- ^Ian Cutress (2015-09-01). 'Intel's Generation 9 Graphics – The Intel Skylake Mobile and Desktop Launch, with Architecture Analysis'. AnandTech. Retrieved 2015-09-02.
- ^Ian Cutress (2016-05-31). 'Intel Announces Xeon E3-1500 v5: Iris Pro and eDRAM for Streaming Video'. AnandTech. Retrieved 2016-05-31.
- ^'New 7th Gen Intel Core Processor: Built for the Immersive Internet'. Intel Newsroom. Retrieved 2018-08-04.
- ^'The Media Engine - Intel Kaby Lake: 14nm+, Higher Clocks, New Media Engine'. Tom's Hardware. 30 August 2016. Retrieved 2018-08-04.
- ^Cutress, Ian. 'Intel Launches 8th Generation Core CPUs, Starting with Kaby Lake Refresh for 15W Mobile'.
- ^'Intel® Product Specification Comparison'. Web.archive.org. 7 October 2017. Retrieved 27 May 2018.
- ^Shilov, Anton. 'Intel Launches New Pentium Silver and Celeron Atom Processors: Gemini Lake is Here'.
- ^'Intel Posts Initial Open-Source Graphics Driver Patches For Icelake 'Gen 11' Hardware - Phoronix'. www.phoronix.com. Retrieved 2018-02-11.
- ^'Intel's Latest Icelake Patches Let The Display Light-Up - Phoronix'. www.phoronix.com. Retrieved 2018-02-11.
- ^https://www.anandtech.com/show/13699/intel-architecture-day-2018-core-future-hybrid-x86/3
- ^https://software.intel.com/sites/default/files/managed/db/88/The-Architecture-of-Intel-Processor-Graphics-Gen11_R1new.pdf
- ^https://software.intel.com/en-us/articles/developer-and-optimization-guide-for-intel-processor-graphics-gen11-api
- ^Knupffer, Nick. 'Intel Insider – What Is It? (IS it DRM? And yes it delivers top quality movies to your PC)'. Archived from the original on 2013-06-22. Retrieved 2011-02-02.
- ^Agam Shah (2011-01-06). 'Intel: Sandy Bridge's Insider is not DRM'. Computerworld. Retrieved 2014-03-22.
- ^'Intel® Graphics Virtualization Update'.
- ^LG Nilsson (2012-03-12). 'Most desktop Ivy Bridge systems won't support three displays'. VRZone.
Despite the fact that Intel has been banging its drums about support for up to three displays on the upcoming 7-series motherboards in combination with a shiny new Ivy Bridge based CPU, this isn't likely to be the case. The simple reason behind this is that very few, if any motherboards will sport a pair of DisplayPort connectors.
- ^ abDavid Galus (February 2013). 'Migration to New Display Technologies on Intel Embedded Platforms'(PDF). Intel.
The Intel® 7 Series Chipset based platform allows for the support of up to three concurrent displays with independent or replicated content. However, this comes with the requirement that either one of the displays is eDP running off the CPU or two DP interfaces are being used off the PCH. When configuring the 2 DP interfaces from the PCH, one may be an eDP if using Port D. This limitation exists because the 7 Series Intel PCH contains only two display PLLs (the CPU has one display PLL also) which will control the clocking for the respective displays. All display types other than DP have an external variable clock frequency associated with the display resolution that is being used. The DP interface has an embedded clocking scheme that is semi- variable, either at 162 or 270 MHz depending on the bandwidth required. Therefore, Intel only allows sharing of a display PLL with DP related interfaces.
- ^Michael Larabel (2011-10-06). 'Details On Intel Ivy Bridge Triple Monitor Support'. Phoronix.
A limitation of this triple monitor support for Ivy Bridge is that two of the pipes need to share a PLL. Ivy Bridge has three planes, three pipes, three transcoders, and three FDI (Flexible Display Interface) interfaces for this triple monitor support, but there's only two pipe PLLs. This means that two of the three outputs need to have the same connection type and same timings. However, most people in a triple monitor environment will have at least two — if not all three — of the monitors be identical and configured the same, so this shouldn't be a terribly huge issue.
- ^'Z87E-ITX'. ASRock.
This motherboard supports Triple Monitor. You may choose up to three display interfaces to connect monitors and use them simultaneously.
- ^'H87I-PLUS'. Asus.
Connect up to three independent monitors at once using video outputs such as DisplayPort, Mini DisplayPort, HDMI, DVI, or VGA. Choose your outputs and set displays to either mirror mode or collage mode.
- ^'Techpowerup GPU database'. Techpowerup. Retrieved 2018-04-22.
- ^'2nd Generation Intel® Core : Datasheet, Volume 1'(PDF). Intel.com. Retrieved 27 May 2018.
- ^Michael Larabel (2014-09-20). 'OpenGL 3.3 / GLSL 3.30 Lands For Intel Sandy Bridge On Mesa'. Phoronix.
- ^'Desktop 3rd Gen Intel Core Processor Family: Datasheet, Vol. 1'. Intel. Retrieved 2015-06-18.
- ^'Intel Pentium Processor N3500-series, J2850, J2900, and Intel Celeron Processor N2900-series, N2800-series, J1800-series, J1900, J1750 – Datasheet'(PDF). Intel. 2014-11-01. p. 19. Retrieved 2016-02-08.
- ^Francisco Jerez (14 April 2017). 'mark GL_ARB_vertex_attrib_64bit and OpenGL 4.2 as supported by i965/gen7+'. freedesktop.org.
- ^'Release Notes Driver version: 15.33.22.64.3621'(PDF). 2014-06-02. Retrieved 2014-07-21.
- ^'Archived copy'(PDF). Archived from the original(PDF) on 2015-04-02. Retrieved 2015-03-07.CS1 maint: Archived copy as title (link)
- ^'Intel HD Graphics (Bay Trail)'. notebookcheck.net. Retrieved 2016-01-26.
- ^'Desktop 4th Generation Intel® Core : Datasheet – Volume 1 of 2'(PDF). Intel.com. Retrieved 27 May 2018.
- ^Michael Larabel (16 January 2017). 'Mesa 17.0 Git Lands OpenGL 4.5 Support For Intel Haswell'. Phoronix.
- ^'Release Notes Driver version: 15.36.3.64.3907'(PDF). 2014-09-07. Retrieved 2014-09-05.
- ^'Intel® Graphics Driver PV 15.40.36.4703 Release Notes'(PDF). Intel. June 23, 2017.
- ^'5th Generation Intel Core Processor Family, Intel Core M Processor Family, Mobile Intel Pentium Processor Family, and Mobile Intel Celeron Processor Family Datasheet – Volume 1 of 2'(PDF). Intel. 2015-06-01. p. 22. Retrieved 2016-02-11.
- ^'Intel Iris Pro Graphics 6200'. notebookcheck.net. Retrieved 2016-02-09.
- ^'Intel Iris Graphics 6100'. notebookcheck.net. Retrieved 2016-02-09.
- ^'Intel HD Graphics 6000'. notebookcheck.net. Retrieved 2016-02-09.
- ^'Intel HD Graphics 5600'. notebookcheck.net. Retrieved 2016-02-09.
- ^'Intel HD Graphics 5500'. notebookcheck.net. Retrieved 2016-02-09.
- ^'Intel HD Graphics 5300'. notebookcheck.net. Retrieved 2016-02-09.
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- ^Adam Cetnerowski (22 March 2018). ''Enable OpenCL 2.1 in Broadwell''. Github.
- ^'Intel HD Graphics (Braswell)'. notebookcheck.net. Retrieved 2016-01-26.
- ^'DRIVER VERSION: 26.20.100.6890'(PDF). Downloadmirror.intel.com. Retrieved May 29, 2019.
- ^'DRIVER VERSION: 26.20.100.6890'(PDF). Downloadmirror.intel.com. Retrieved May 29, 2019.
- ^Michael Larabel (20 January 2017). 'Beignet 1.3 Released With OpenCL 2.0 Support'. Phoronix.
- ^Michael Larabel (16 February 2018). 'Intel Open-Sources LLVM Graphics Compiler, Compute Runtime With OpenCL 2.1+'. Phoronix.
- ^Michael Larabel (20 January 2017). 'Beignet 1.3 Released With OpenCL 2.0 Support'. Phoronix.
- ^Brandon Fliflet (21 December 2017). 'Initial Commit'. Github.
- ^Michael Larabel (27 October 2015). 'Intel Is Already Publishing Open-Source 'Kabylake' Graphics Driver Patches'. Phoronix.
- ^Michael Larabel (20 January 2017). 'Beignet 1.3 Released With OpenCL 2.0 Support'. Phoronix.
- ^Michael Larabel (16 February 2018). 'Intel Open-Sources LLVM Graphics Compiler, Compute Runtime With OpenCL 2.1+'. Phoronix.
- ^'DRIVER VERSION: 26.20.100.6890'(PDF). Downloadmirror.intel.com. Retrieved May 20, 2019.
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External links
Intel Hd Graphics 4400 Controller Drivers
- Intel Open Source Technology Center: Linux graphics documentation (includes the GPU manuals)
Hello Lindsay,
Thank you for visiting Microsoft Community and providing us with the detailed description about the issue.
As per the description, I understand that you are experiencing issue with display driver HD graphics driver stopped working in the system.
I certainly understand your concern and will try my best to help you.
There is a possibility that this issue might have occurred due to incompatible or corrupt display drivers in the system.
I would suggest you to try the following methods and check if that helps.
Method 1:
To diagnose the problem whether any third party program or application is causing the conflict, I would suggest you to try “clean boot” and check if it helps.
Placing your system in “Clean Boot” state helps in identifying if any third party applications or startup items are causing the issue. You need to follow the steps from the article mentioned below to perform a Clean Boot.
If the issue does not occur in “Clean Boot”, then you may determine which application/service on the computer is causing this issue. This can be done by following the instructions for “Windows 8.1 and Windows 8” given in the section “How to determine what is causing the problem by performing a Clean Boot” from the same given link.
Note: Refer 'How to reset the computer to start normally after clean boot troubleshooting' to reset the computer to start as normal after troubleshooting.
The above steps holds good for Windows 10 as well.
If the issue persists, follow method 2
Method 2:
Run inbuilt Hardware & Device troubleshooter
Let’s try running inbuilt Hardware and Devices troubleshooter to get the problem automatically detected and fixed. It checks for common issues and makes sure that any new device or hardware attached to your computer was installed correctly.
Press Windows + W keys on your keyboard to get the search option.
Type Troubleshooting and click Troubleshooting.
Now click on view all option.
Click on Hardware and Device and follow the prompts to run the troubleshooter.
If the issue persists, follow method 3
Method 3:
Step 1: Update the Display driver. Please follow the steps given below to update the display driver.
Click Start and go to Run.
In the Run prompt, type devmgmt.msc and then click OK.
Device Manager will open.
In Device Manager expand Display adapters.
Right-click the display driver and click Update Driver Software.
Select Search Automatically for Updated Driver Software.
Step 2: Check if there are any updates for display drivers available in Optional Updates; this might fix the issue. Refer to the following steps.
At the Start screen, type Windows Update.
Click or tap Settings on the right side of the screen, and then select Install optional updates from the left results.
When the Windows Update control panel opens, click on “Check for Updates” on the top left corner to receive a fresh list of updates.
Step 3: If the issue persists, I would suggest you to uninstall and reinstall the Display driver. Please follow the steps mentioned below to uninstall the display driver.
Open Device Manager.
Expand Display adapters.
Right-click the display card driver and click Uninstall.
Windows will prompt you to confirm the device’s removal. Click OK to remove the driver.
After the un-installation is complete, reboot your computer as soon as possible.
Computer will load the generic display drivers. Now, please go to the manufacturer’s website, download and install the compatible display card drivers for your computer and check.
Intel Hd 4400 Graphics Driver
You may also refer to the following website below to download the drivers for the Graphics card.
http://support.amd.com/en-us/download.
The above steps holds good for Windows 10 as well.
If the issue persists, follow method 4
Method 4:
How to use the System File Checker tool to repair missing or corrupted system files, please follow the steps in the link provided below.
Note: System File Checker is a utility in Windows that allows users to scan for corruptions in Windows system files and restore corrupted files. This article describes how to run the System File Checker tool (SFC.exe)to scan your system files and to repair missing or corrupted system files in Windows 8.1 or Windows 8. If a Windows Resource Protection (WRP) file is missing or is corrupted, Windows may not behave as expected.
The above steps holds good for Windows 10 as well.
For more Information:
I would suggest you to refer to the suggestions provided by “Andre Da Costa” replied on January 22, 2015 in the following Microsoft Community link.
Frequently Asked Questions: Windows 10
I hope this information is helpful.
Intel Hd Graphics 4400 Upgrade
Please do let us know if you need any further assistance, we will be glad to assist you.
Intel Hd 4400 Driver Update
Thank you.