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Etot spisok soderzhit osnovnuyu informaciyu o graficheskih processorah NVIDIA serii GeForce i videokartah postroennyh na oficialnyh specifikaciyah NVIDIA Zamechaniya o versiyah DirectXVersiya DirectX oboznachaet klyuchevuyu dostupnuyu osobennost DirectX 6 0 DirectX 7 0 apparatnaya podderzhka DirectX 8 0 shejdernaya model 1 1 DirectX 8 1 pikselnye shejdery 1 4 i vershinnye shejdery 1 1 DirectX 9 0 shejdernaya model 2 0 DirectX 9 0b pikselnye shejdery 2 0b i vershinnye shejdery 2 0 DirectX 9 0c shejdernaya model 3 0 DirectX 9 0L versiya DirectX 9 0 dlya Windows Vista DirectX 10 shejdernaya model 4 0 tolko Windows Vista Windows 7 DirectX 10 1 shejdernaya model 4 1 tolko Windows Vista Windows 7 DirectX 11 shejdernaya model 5 0 tolko Windows Vista Windows 7 DirectX 11 1 shejdernaya model 5 1 tolko Windows Vista Windows 7 DirectX 11 3 DirectX 12 shejdernaya model 5 1 tolko Zamechaniya o versiyah OpenGLVersiya OpenGL oboznachaet to kakie operacii graficheskogo uskoreniya podderzhivaet dannaya graficheskaya karta OpenGL 1 1 obekty tekstur OpenGL 1 2 3D tekstury formaty BGRA i upakovannyh pikselej OpenGL 1 3 multiteksturirovanie multisempling szhatie tekstur OpenGL 1 4 tekstury glubiny OpenGL 1 5 VBO Occlusion Querys OpenGL 2 0 GLSL 1 1 tekstury s razmerami ne yavlyayushimisya stepenyu dvojki Two sided stencil OpenGL 2 1 GLSL 1 2 Pixel Buffer Object PBO tekstury sRGB OpenGL 3 0 GLSL 1 3 Massivy tekstur uslovnyj rendering FBO OpenGL 3 1 GLSL 1 4 Instancing Texture Buffer Object Uniform Buffer Object Primitive restart OpenGL 3 2 GLSL 1 5 Geometry Shader Multi sampled texturesBuffer Object FBO Frame VBO Vertex PBO Pixel Texture UniformOpenGL 4 0 GLSL 4 00 tesselyaciya na GPU shejdery s 64 bitnoj tochnostyu Rasshifrovka oboznachenij v polyah tablicyPolya tablicy perechislennye nizhe oboznachayut sleduyushee Model rynochnoe nazvanie dlya graficheskogo processora GP prisvoennoe nVidia God data god data vypuska processora Kodovoe imya vnutrennee imya processora v processe razrabotki obychno oboznachaetsya imenem vida NVXY i pozzhe GXY gde X oboznachaet serijnyj nomer pokoleniya a Y etap proekta dlya etogo pokoleniya Tehprocess srednij razmer elementarnyh komponentov processora Shina shina po kotoroj graficheskij processor podklyuchyon k sisteme obychno slot rasshireniya takoj kak PCI AGP ili PCI Express Maks obyom pamyati maksimalnoe kolichestvo pamyati kotoroe mozhet ispolzovatsya processorom Chastota yadra maksimalnaya fabrichnaya chastota yadra tak kak nekotorye proizvoditeli graficheskih kart mogut eyo uvelichivat ili umenshat eta chastota vsegda yavlyaetsya oficialno specificirovannoj nVidia Chastota pamyati maksimalnaya fabrichnaya chastota raboty s pamyatyu tak kak nekotorye proizvoditeli graficheskih kart mogut eyo uvelichivat ili umenshat eta chastota vsegda yavlyaetsya oficialno specificirovannoj nVidia Konvejery x TMU x VPU spisok sostoyashij iz kolichestva pikselnyh konvejerov teksturnyh obrabotchikov na kazhdyj konvejer i vershinnyh obrabotchikov v processore V pozdnih modelyah shejdery integrirovany v unificirovannuyu shejdernuyu arhitekturu v rezultate lyuboj shejder mozhet vypolnyat lyubuyu iz tryoh perechislennyh funkcij Graficheskie processory s ogranichennym funkcionirovaniem obrabotchika T amp L oboznachayutsya kak imeyushie 0 5 VPU SPU x TAU x ROP spisok sostoyashij iz kolichestva shejdernyh processorov obrabotchikov teksturnyh adresov obshee kolichestvo i operatorov rasterizacii obshee kolichestvo v processore Skorost zapolneniya maksimalnaya teoreticheski dostupnaya skorost zapolneniya filrejt v teksturirovannyh pikselyah v sekundu Eto kolichestvo v osnovnom ispolzuetsya kak maksimalnaya propusknaya sposobnost dlya graficheskogo processora i v osnovnom bolee vysokaya skorost zapolneniya harakterizuet bolee moshnye i bystrye GP Propusknaya sposobnost pamyati maksimalnaya teoreticheskaya propusknaya sposobnost processora rabotayushego na fabrichnoj chastote s fabrichnoj razryadnostyu shiny zdes GB 109 bajt Tip shiny pamyati tip ispolzuemoj shiny pamyati Shirina shiny pamyati maksimalnaya ispolzuemaya shirina shiny pamyati v bitah Eto vsegda fabrichnaya shirina shiny Direct X maksimalnaya polnostyu podderzhivaemaya versiya Direct3D Open GL maksimalnaya polnostyu podderzhivaemaya versiya OpenGL Osobennosti dopolnitelnye osobennosti Sravnitelnaya tablica desktopnye graficheskie processoryDo GeForce 1Vershinnyh shejderov Pikselnyh shejderov Teksturnyh blokov Blokov rasterizaciiModel Data Kodovoe imya Teh process nm Interfejs Vvoda vyvoda Obyom videopamyati MB Chastota yadra MGc Chastota pamyati MGc mega tekselej s Konfiguraciya yadra 1 Pamyat Podderzhivaemaya versiya API ZametkiPropusknaya sposobnost MB s Tip Shina bit DirectX OpenGLNV1 STG 2000 Sentyabr 1995 NV1 500 PCI 2 4 75 0 5 12 EDO VRAM 64 1 n a 2D 3D NURBS Game Port AV playbackRIVA 128 Aprel 1997 NV3 350 AGP 1x PCI 4 100 100 1 6 0 1 1 1 100 SDR 128 5 First DirectX compatibleRIVA 128 ZX Mart 1998 NV3 350 AGP 2x PCI 8 100 100 1 6 0 1 1 1 100 SDR 128 5 1 0RIVA TNT 1998 NV4 350 AGP 2x PCI 8 16 90 110 1 7 0 2 2 2 180 SDR SG 128 6 1 1 AGP sideband rev 4 Vanta 1999 NV6 250 AGP 4x PCI 16 100 110 1 0 0 2 2 2 200 SDR 64 6 1 1 RAMDAC 250 MHzVanta LT 1999 NV6 250 AGP 4x 8 80 100 0 8 0 2 2 2 160 SDR 64 6 1 1 RIVA TNT2 M64 Iyul 1999 NV5 220 AGP 4x PCI 16 32 125 135 1 2 0 2 2 2 250 SDR 64 6 1 1 RAMDAC 300 MHzRIVA TNT2 Mart 1999 NV5 250 AGP 4x PCI 16 32 125 150 2 4 0 2 2 2 250 SDR 128 6 1 1RIVA TNT2 Pro 1999 NV5 250 AGP 4x PCI 16 32 143 166 2 7 0 2 2 2 286 SDR 128 6 1 1RIVA TNT2 Ultra Maj 1999 NV5 250 AGP 4x PCI 16 32 150 183 2 9 0 2 2 2 300 SDR 128 6 1 1GeForce series 1Vershinnyh shejderov Pikselnyh shejderov Teksturnyh blokov Blokov rasterizaciiModel Data Kodovoe imya Teh process nm Interfejs Vvoda vyvoda Obyom videopamyati MB Chastota yadra MHz Chastota pamyati MHz Konfiguraciya yadra 1 mega tekselej s Pamyat podderzhivaemyj API versiya FeaturesPropusknaya sposobnost GB s Tip Shina bit DirectX OpenGLGeForce 256 SDR Oktyabr 1999 NV10 220 AGP 4x 32 64 120 166 0 4 4 4 480 2 7 SDR 128 7 1 2 Apparatnaya transformaciya i osveshenieGeForce 256 DDR Yanvar 2000 NV10 220 AGP 4x 32 64 120 300 0 4 4 4 480 4 8 DDR 128 7 1 2 Apparatnaya transformaciya i osveshenieGeForce 2 Series 1Vershinnyh shejderov Pikselnyh shejderov Teksturnyh blokov Blokov rasterizacii 2 GeForce2 Ti VX nikogda ne predstavlyalsya oficialno hotya eto ne chto inoe kak GeForce2 Ti so snizhennoj chastotoj Model Data Kodovoe imya Teh process nm Interfejs Vvoda vyvoda Obyom videopamyati MB Chastota yadra MHz Chastota pamyati MHz Konfiguraciya yadra 1 mega tekselej s Pamyat podderzhivaemyj API versiya FeaturesPropusknaya sposobnost GB s Tip Shina bit DirectX OpenGLGeForce2 MX 100 2001 NV11 180 AGP 4x 16 32 143 166 0 2 4 2 572 0 6 SDR 32 7 1 2GeForce2 MX 200 Mart 2001 NV11 180 AGP 4x PCI 16 32 64 175 166 0 2 4 2 700 1 2 SDR DDR 64 7 1 2GeForce2 MX Iyun 2000 NV11 180 AGP 4x PCI 32 175 166 0 2 4 2 700 2 7 SDR 128 7 1 2 TwinView Shaders NVIDIA Shading Rasterizer OpenGL only GeForce2 MX 400 Mart 2001 NV11 180 AGP 4x PCI 32 64 200 166 183 334 0 2 4 2 800 2 9 5 3 SDR DDR 64 128 7 1 2 TwinviewGeForce2 GTS Aprel 2000 NV15 180 AGP 4x 32 64 200 333 0 4 8 4 1600 5 3 DDR 128 7 1 2 TwinViewGeForce2 Pro 2000 NV15 180 AGP 4x 32 64 200 400 0 4 8 4 1600 6 4 DDR 128 7 1 2GeForce2 Ti VX 2 2001 NV15 150 AGP 4x 64 225 400 0 4 8 4 1800 6 4 DDR 128 7 1 2GeForce2 Ti Oktyabr 2001 NV15 150 AGP 4x 32 64 250 400 0 4 8 4 2000 6 4 DDR 128 7 1 2GeForce2 Ultra Avgust 2000 NV16 180 AGP 4x 64 250 460 0 4 8 4 2000 7 4 DDR 128 7 1 2GeForce 3 Series 1Vershinnyh shejderov Pikselnyh shejderov Teksturnyh blokov Blokov rasterizaciiModel Data Kodovoe imya Teh process nm Interfejs Vvoda vyvoda Obyom videopamyati MB Chastota yadra MHz Chastota pamyati MHz Konfiguraciya yadra 1 mega tekselej s Pamyat podderzhivaemyj API versiya FeaturesPropusknaya sposobnost GB s Tip Shina bit DirectX OpenGLGeForce3 Fevral 2001 NV20 150 AGP 4x 64 128 200 460 1 4 8 4 1600 7 4 DDR 128 8 0 1 3 Shaders v1 1 LMA TwinViewGeForce3 Ti 200 Oktyabr 2001 NV20 150 AGP 4x 64 128 175 400 1 4 8 4 1400 6 4 DDR 128 8 0 1 3GeForce3 Ti 500 Oktyabr 2001 NV20 150 AGP 4x 64 128 240 500 1 4 8 4 1920 8 0 DDR 128 8 0 1 3GeForce 4 Series 1Vershinnyh shejderov Pikselnyh shejderov Teksturnyh blokov Blokov rasterizacii AGP 3 0 oboznachaet ponizhenie napryazheniya i uvelichenie maksimalnoj teoreticheskoj polosy propuskaniya dostupnye skorosti 4X i 8X vmesto 2X i 4X sami yadra ne imeli nikakih izmenenij ot NV17 do NV18 ili NV25 k NV28 Krome uvelichennoj taktovoj chastoty i umenshennogo napryazheniya kolebaniya signala ot 1 5 V k 0 8 V AGP 3 0 vse eshyo podderzhivaet sideband adresaciyu pozdnee dobavlena k specifikaciyam AGP 1 0 uvelichila prakticheskuyu propusknuyu sposobnost i bystruyu zapis v specifikaciyah AGP 2 0 dannye pryamo zapisyvayutsya v pamyati videokarty Model Data Kodovoe imya Teh process nm Interfejs Vvoda vyvoda Obyom videopamyati MB Chastota yadra MHz Chastota pamyati MHz Konfiguraciya yadra 1 mega tekselej s Pamyat podderzhivaemyj API versiya FeaturesPropusknaya sposobnost GB s Tip Shina bit DirectX OpenGLGeForce4 MX 420 6 fevralya 2002 NV17 150 AGP 4x 64 250 166 0 2 4 2 1000 2 7 SDR 128 7 1 2 TwinView LMA2GeForce4 MX 440SE 2002 NV17 150 AGP 4x PCI 64 250 166 333 0 2 4 2 1100 2 7 5 3 SDR DDR 64 128 7 1 2GeForce4 MX 440 6 fevralya 2002 NV17 150 AGP 4x PCI 64 128 270 400 0 2 4 2 1100 6 4 DDR 128 7 1 2GeForce4 MX 440 8x Oktyabr 2002 NV18 150 AGP 8x 64 128 275 513 0 2 4 2 1100 8 2 DDR 128 7 1 2 AGP 3 0GeForce4 MX 460 6 fevralya 2002 NV17 150 AGP 4x 64 300 550 0 2 4 2 1200 8 8 DDR 128 7 1 2GeForce4 MX 4000 2003 NV18B 150 AGP 4x 8x PCI 64 128 250 275 266 333 400 0 2 4 2 1100 1 1 3 2 5 3 DDR 32 64 128 7 1 2GeForce PCX 4300 2004 NV19 150 PCI E 128 275 513 0 2 4 2 1100 8 2 DDR 128 7 1 2 PCI EGeForce4 Ti 4200 Aprel 2002 NV25 150 AGP 4x 64 128 250 500 444 2 4 8 4 2000 8 0 7 1 DDR 128 8 0a 1 4 Shaders v1 1 vertex v1 3 pixel 1 Vertex unitGeForce4 Ti 4200 8x Oktyabr 2002 NV28 150 AGP 8x 128 250 513 2 4 8 4 2000 8 2 DDR 128 8 0a 1 4 AGP 3 0GeForce4 Ti 4400 6 fevralya 2002 NV25 150 AGP 4x 128 275 550 2 4 8 4 2200 8 8 DDR 128 8 0a 1 4GeForce4 Ti 4800 SE Fevral 2003 NV28 150 AGP 8x 128 275 550 2 4 8 4 2200 8 8 DDR 128 8 0a 1 4 AGP 3 0GeForce4 Ti 4600 6 fevralya 2002 NV25 150 AGP 4x 128 300 650 2 4 8 4 2400 10 4 DDR 128 8 0a 1 4GeForce4 Ti 4800 Fevral 2003 NV28 150 AGP 8x 128 300 650 2 4 8 4 2400 10 4 DDR 128 8 0a 1 4 AGP 3 0GeForce 5 Series 1Vershinnyh shejderov Pikselnyh shejderov Teksturnyh blokov Blokov rasterizacii NV31 NV34 i NV36 ispolzuyut 2x2 konvejernyj dizajn vypolnyaya verteksnyj shejder v ostalnyh sluchayah ispolzuyut 4x1 konvejernyj dizajn GeForce FX series imeyut ogranichennuyu podderzhku OpenGL 2 1 s poslednim drajverom Windows XP vypushennym dlya etogo 175 19 Model Data Kodovoe imya Teh process nm Interfejs Vvoda vyvoda Obyom videopamyati MB yadro MHz pamyat MHz Konfiguraciya yadra 1 Pikovaya skorost zapolneniya Pamyat Podderzhivaemyj API versiya TDP Vt giga pikselej s giga tekselej s Propusknaya sposobnost GB s Tip Shina bit DirectX OpenGLapparatno drajverom programmno GeForce FX 5200 Mart 2003 NV34 150 AGP 8x PCI 128 256 250 333 400 1 2 2 2 4 4 4 1 1 2 7 6 4 DDR 64 128 9 0a 1 5 2 1 GeForce FX 5200 Ultra Mart 2003 NV34 150 AGP 8x 256 325 650 1 2 2 2 4 4 4 1 3 1 3 10 4 DDR 128 9 0a 1 5 2 1 GeForce PCX 5300 2003 NV34 150 PCI e 256 250 400 2 4 4 1 1 3 2 6 4 DDR 64 128 9 0a 1 5 2 1 GeForce FX 5500 Mart 2004 NV34 150 AGP 8x PCI 128 256 270 400 1 2 2 2 4 4 4 1 08 1 08 3 2 6 4 DDR 64 128 9 0a 1 5 2 1 GeForce FX 5600 XT 2003 NV31 130 AGP 8x 128 256 235 400 1 2 2 2 4 4 4 0 94 0 94 6 4 DDR 64 128 9 0a 1 5 2 1 GeForce FX 5600 2003 NV31 130 AGP 8x 128 256 325 550 1 2 2 2 4 4 4 1 3 1 3 8 8 DDR 128 9 0a 1 5 2 1 GeForce FX 5600 Ultra Mart 2003 NV31 130 AGP 8x 256 350 700 1 2 2 2 4 4 4 1 4 1 4 11 2 DDR 128 9 0a 1 5 2 1 GeForce FX 5600 Ultra Rev 2 Avgust 2003 NV31 130 AGP 8x 256 400 800 1 2 2 2 4 4 4 1 6 1 6 12 8 DDR 128 9 0a 1 5 2 1 GeForce FX 5700 VE 2003 NV36 130 AGP 8x 128 256 300 500 3 2 2 2 4 4 4 1 2 1 2 8 0 DDR 128 9 0a 1 5 2 1 GeForce FX 5700 LE 2003 NV36 130 AGP 8x PCI 128 256 250 400 3 2 2 2 4 4 4 1 1 6 4 DDR 128 9 0a 1 5 2 1 GeForce FX 5700 2003 NV36 130 AGP 8x 128 256 425 550 3 2 2 2 4 4 4 1 7 1 7 8 8 DDR 128 9 0a 1 5 2 1 25GeForce FX 5700 Ultra Oktyabr 2003 NV36 130 AGP 8x 256 475 900 3 2 2 2 4 4 4 1 9 1 9 14 4 GDDR2 128 9 0a 1 5 2 1 47GeForce FX 5700 Ultra GDDR3 Mart 2004 NV36 130 AGP 8x 256 475 950 3 2 2 2 4 4 4 1 9 1 9 15 2 GDDR3 128 9 0a 1 5 2 1 GeForce PCX 5750 2004 NV36 130 PCI E 256 425 500 4 4 4 1 7 1 7 8 0 GDDR3 128 9 0a 1 5 2 1 GeForce FX 5800 Yanvar 2003 NV30 130 AGP 8x 256 400 800 2 4 8 8 2 8 8 8 no Z 3 2 3 2 12 8 GDDR2 128 9 0a 1 5 2 1 GeForce FX 5800 Ultra Yanvar 2003 NV30 130 AGP 8x 256 500 1000 2 4 8 8 2 8 8 8 no Z 4 4 16 0 GDDR2 128 9 0a 1 5 2 1 GeForce FX 5900 XT Dekabr 2003 NV35 130 AGP 8x 256 400 700 3 4 8 8 3 8 8 8 no Z 3 2 3 2 22 4 DDR 256 9 0a 1 5 2 1 GeForce FX 5900 Maj 2003 NV35 130 AGP 8x 256 400 850 3 4 8 8 3 8 8 8 no Z 3 2 3 2 27 2 DDR 256 9 0a 1 5 2 1 GeForce FX 5900 Ultra Maj 2003 NV35 130 AGP 8x 256 450 850 3 4 8 8 3 8 8 8 no Z 3 6 3 6 27 2 DDR 256 9 0a 1 5 2 1 GeForce PCX 5900 2004 NV35 130 PCI E 256 425 550 3 4 8 8 3 8 8 8 no Z 3 4 3 4 17 6 DDR 256 9 0a 1 5 2 1 GeForce FX 5950 Ultra Oktyabr 2003 NV38 130 AGP 8x 256 475 950 3 4 8 8 3 8 8 8 no Z 3 8 3 8 30 4 DDR 256 9 0a 1 5 2 1 74GeForce PCX 5950 2004 NV38 130 PCI E 256 350 950 3 4 8 8 3 8 8 8 no Z 3 8 3 8 30 4 DDR 256 9 0a 1 5 2 1 GeForce 6 Series 1Vershinnyh shejderov Pikselnyh shejderov Teksturnyh blokov Blokov rasterizacii 2 Graficheskaya karta podderzhivayushaya TurboCache v razmer pamyati vhodit polnaya pamyat VRAM System RAM inache vhodit tolko VRAMModel Data Kodovoe imya Teh process nm Interfejs Vvoda vyvoda Obyom videopamyati MB Chastota yadra MHz Chastota pamyati MHz Konfiguraciya yadra 1 Pikovaya skorost zapolneniya Pamyat podderzhivaemyj API versiya TDP Vt mega pikselej s mega verteksov s mega tekselej s Propusknaya sposobnost GB s Tip Shina bit DirectX OpenGLGeForce 6100 nForce 430 nForce 410 Noyabr 2005 MCP51 90 Hyper Transport Do 256 iz sistemnoj pamyati 425 Sistemnaya pamyat 1 2 2 1 425 106 3 850 Sistemnaya pamyat do propusknoj sposobnosti HT Sistemnaya pamyat 64 128 9 0c 2 1GeForce 6150 LE nForce 405 nForce 400 Iyun 2006 MCP61 S V 90 Hyper Transport Do 256 iz sistemnoj pamyati 425 Sistemnaya pamyat 1 2 2 1 425 106 3 850 Sistemnaya pamyat do propusknoj sposobnosti HT Sistemnaya pamyat 64 128 9 0c 2 1GeForce 6150 nForce 430 Noyabr 2005 MCP51 90 Hyper Transport Do 256 iz sistemnoj pamyati 475 Sistemnaya pamyat 1 2 2 1 475 118 8 950 Sistemnaya pamyat do propusknoj sposobnosti HT Sistemnaya pamyat 64 128 9 0c 2 1GeForce 6150 SE nForce 430 Iyun 2006 MCP61P 90 Hyper Transport Do 256 iz sistemnoj pamyati 425 Sistemnaya pamyat 1 2 2 1 425 106 3 850 Sistemnaya pamyat do propusknoj sposobnosti HT Sistemnaya pamyat 64 128 9 0c 2 1GeForce 6200 2004 NV43 110 PCIe x16 AGP 8X PCI 128 256 300 550 3 4 4 2 600 225 1200 8 8 DDR 128 9 0c 2 1GeForce 6200 TC2 2005 NV44 110 PCIe x16 16 32 64 128 256 350 700 3 4 4 2 700 262 5 1400 5 6 11 2 DDR 64 128 9 0c 2 1GeForce 6200 LE 2005 NV44 110 PCI x16 128 256 350 532 2 2 2 1 350 131 25 700 4 326 DDR 64 9 0c 2 1GeForce 6200 AGP 2005 NV44A 110 AGP 8X 128 256 512 350 300 550 3 4 4 2 700 600 262 5 225 1400 1200 4 4 8 8 DDR 64 128 9 0c 2 1GeForce 6500 2005 NV43 NV44 110 PCIe x16 128 256 350 550 3 4 4 4 1400 262 5 1400 4 2 DDR2 64 9 0c 2 1GeForce 6600LE 2005 NV43 110 PCIe x16 AGP 8x 128 256 300 500 3 4 4 4 1200 225 1200 8 8 DDR 128 9 0c 2 1GeForce 6600 2004 NV43 110 PCIe x16 AGP 8x 128 256 512 300 500 3 8 8 4 1200 225 2400 8 8 DDR 128 9 0c 2 1GeForce 6600 DDR2 Noyabr 2005 NV43 110 PCIe x16 256 512 350 800 3 8 8 4 1400 262 5 2800 12 8 DDR2 128 9 0c 2 1GeForce 6600 GT Noyabr 2004 NV43 110 AGP 8X 128 500 900 3 8 8 4 2000 375 4000 14 4 GDDR3 128 9 0c 2 1GeForce 6600 GT 12 avgusta 2004 2005 NV43 110 PCIe x16 128 256 500 1000 3 8 8 4 2000 375 4000 16 0 GDDR3 128 9 0c 2 1GeForce 6700 XL Noyabr 2005 NV43 110 PCIe x16 128 525 1100 3 8 8 4 2100 375 4200 17 6 GDDR3 128 9 0c 2 1GeForce 6800 LE 2004 NV40 130 AGP 8X 256 325 700 4 8 8 8 2600 325 2600 22 4 DDR 256 9 0c 2 1GeForce 6800 XT 2005 NV40 NV41 NV42 110 PCIe x16 AGP 8x 256 325 700 4 8 8 8 2600 325 2600 35 1 GDDR3 256 128 9 0c 2 1GeForce 6800 14 aprelya 2004 NV40 130 AGP 8X 128 256 325 700 5 12 12 8 2600 406 3 3900 22 4 DDR 256 9 0c 2 1 39GeForce 6800 2004 NV41 NV42 130 110 PCIe x16 128 256 325 600 5 12 12 12 3900 406 3 3900 19 2 DDR 256 9 0c 2 1 39GeForce 6800 GTO Tolko OEM 2004 NV41 NV45 130 PCIe x16 256 350 900 5 12 12 12 5 12 12 12 4200 437 5 4200 28 8 GDDR3 256 9 0c 2 1GeForce 6800 GS Dekabr 2005 NV40 130 AGP 8X 256 350 1000 5 12 12 12 4200 437 5 4200 32 0 GDDR3 256 9 0c 2 1GeForce 6800 GS Noyabr 2005 NV42 110 PCIe x16 256 425 1000 5 12 12 8 3400 531 25 5100 32 0 GDDR3 256 9 0c 2 1GeForce 6800 GT Maj 2004 NV40 130 PCIe x16 AGP 8X 256 512 PCI e only 350 1000 6 16 16 16 5600 525 5600 32 0 GDDR3 256 9 0c 2 1 55GeForce 6800 Ultra 14 aprelya 2004 NV40 130 AGP 8X 256 400 1100 6 16 16 16 6400 600 6400 35 2 GDDR3 256 9 0c 2 1 72GeForce 6800 Ultra Extreme Iyun 2004 NV45 130 PCIe x16 256 450 1200 6 16 16 16 7200 618 75 7200 38 4 GDDR3 256 9 0c 2 1 gt 80GeForce 6800 Ultra Mart 2005 NV45 130 PCIe x16 512 400 1050 6 16 16 16 6400 600 6400 33 6 GDDR3 256 9 0c 2 1 72GeForce 7 Series 1Vershinnyh shejderov Pikselnyh shejderov Teksturnyh blokov Blokov rasterizacii 2 Dlya graficheskoj karty podderzhivayushej TurboCache v razmer pamyati vhodit polnaya pamyat VRAM System RAM inache vhodit tolko VRAMModel Data Kodovoe imya Teh process nm Interfejs Vvoda vyvoda Obyom videopamyati MB Chastota yadra MHz Chastota pamyati MHz Konfiguraciya yadra 1 Pikovaya skorost zapolneniya Pamyat podderzhivaemyj API versiya Zametki TDP Vt mega pikselej s mega verteksov s mega tekselej s Propusknaya sposobnost GB s Tip Shina bit DirectX OpenGLGeForce 7025 Iyul 2007 MCP68S 90 Hyper Transport Do 256 iz sistemnoj pamyati 425 Sistemnaya pamyat 1 2 2 2 850 106 25 850 Sistemnaya pamyat DDR2 64 128 9 0c 2 1GeForce 7050 PV SE Iyul 2007 MCP68PV 90 Hyper Transport Do 256 iz sistemnoj pamyati 425 Sistemnaya pamyat 1 2 2 2 850 106 25 850 Sistemnaya pamyat DDR2 64 128 9 0c 2 1GeForce 7050 25 sentyabrya 2007 MCP73 80 PCIe x16 Do 256 iz sistemnoj pamyati 500 Do 667 1 2 2 2 1000 125 1000 Do 5 336 DDR2 64 9 0c 2 1GeForce 7100 25 sentyabrya 2007 MCP73 80 PCIe x16 Do 256 iz sistemnoj pamyati 600 Do 800 1 2 2 2 1200 150 1200 Do 6 4 DDR2 64 9 0c 2 1GeForce 7150 25 sentyabrya 2007 MCP73 80 PCIe x16 Do 256 iz sistemnoj pamyati 630 Do 800 1 2 2 2 1260 157 5 1260 Do 6 4 DDR2 64 9 0c 2 1GeForce 7100 GS2 Sentyabr 2007 NV44 110 PCIe x16 128 512 350 667 3 4 4 2 700 262 5 1400 5 33 DDR2 64 9 0c 2 1GeForce 7200 GS2 Aprel 2007 G72 90 PCIe x16 64 128 256 512 450 667 800 2 2 2 2 900 225 900 5 33 6 4 DDR2 64 9 0c 2 1GeForce 7300 SE2 Mart 2006 G72 90 PCIe x16 128 256 256 512 450 667 2 2 2 2 900 225 900 5 33 DDR 64 9 0c 2 1GeForce 7300 LE2 Mart 2006 G72 90 PCIe x16 128 256 512 450 667 3 4 4 2 900 337 5 1800 5 33 DDR2 64 9 0c 2 1GeForce 7300 GS2 Yanvar 2006 G72 90 PCIe x16 AGP 8x 128 256 256 512 550 810 3 4 4 2 1100 412 5 2200 6 48 DDR2 64 9 0c 2 1GeForce 7300 GT Maj 2006 G73 90 PCIe x16 AGP 8x 256 512 350 400 500 533 667 800 1400 4 8 8 8 2800 350 2800 8 53 10 67 22 4 DDR2 DDR3 128 9 0c 2 1GeForce 7500 LE2 2006 G72 90 PCIe x16 256 512 550 800 3 4 4 2 1100 412 5 1100 12 8 DDR2 64 9 0c 2 1GeForce 7600 GS Mart 2006 G73 90 PCIe x16 AGP 8x 256 512 400 560 800 533 5 12 12 8 3200 500 4800 12 8 8 64 DDR2 DDR3 128 9 0c 2 1GeForce 7600 GT 9 marta 2006 G73 90 PCIe x16 AGP 8x 256 512 560 1400 800 5 12 12 8 4480 700 6720 22 4 12 8 GDDR3 DDR2 128 9 0c 2 1GeForce 7600 GT 80 nm Yanvar 2007 G73 B1 80 nm 80 PCIe x16 AGP 8x 256 512 650 560 1600 800 5 12 12 8 5200 4480 812 5 700 7800 6720 25 6 12 8 GDDR3 DDR2 128 9 0c 2 1GeForce 7800 GS 2 fevralya 2006 G70 110 AGP 8x 256 375 1200 6 16 16 8 6000 562 5 6000 38 4 GDDR3 256 9 0c 2 1GeForce 7800 GT 11 avgusta 2005 G70 110 PCIe x16 256 400 1000 7 20 20 16 6400 700 8000 32 0 GDDR3 256 9 0c 2 1GeForce 7800 GTX 22 iyunya 2005 G70 110 PCIe x16 256 430 1200 8 24 24 16 6880 940 10320 38 4 GDDR3 256 9 0c 2 1 80GeForce 7800 GTX 512 14 noyabrya 2005 G70 110 PCIe x16 512 550 1700 8 24 24 16 8800 1100 13200 54 4 GDDR3 256 9 0c 2 1 gt 80GeForce 7900 GS 6 sentyabrya 2006 roznica G71 90 PCIe x16 AGP 8x 256 512 450 1320 7 20 20 16 7200 822 5 9000 42 2 GDDR3 256 9 0c 2 1 Maj 2006 Tolko OEM GeForce 7900 GT 9 marta 2006 G71 90 PCIe x16 256 512 450 1320 8 24 24 16 7200 940 10800 42 2 GDDR3 256 9 0c 2 1GeForce 7900 GTO sentyabr 2006 G71 90 PCIe x16 512 650 1320 8 24 24 16 10400 1300 15600 42 2 GDDR3 256 9 0c 2 1GeForce 7900 GTX 9 marta 2006 G71 90 PCIe x16 512 650 1600 8 24 24 16 10400 1400 15600 51 2 GDDR3 256 9 0c 2 1 84GeForce 7950 GT 1 kvartal 2007 256 14 sentyabrya 2006 512 G71 90 PCIe x16 AGP 8x 256 512 550 1400 8 24 24 16 8800 1100 13200 44 8 GDDR3 256 9 0c 2 1GeForce 7950 GX2 5 iyunya 2006 roznica G71 90 PCIe x16 2x 512 500 1200 2x 8 24 24 16 16000 2000 24000 76 8 GDDR3 2x 256 9 0c 2 1 Mart 2006 Tolko OEM GeForce 8 Series 1Unificirovannyh shejdernyh processorov Teksturnyh blokov Blokov rasterizacii 2 Polnyj G80 soderzhit 32 bloka adresacii tekstur i 64 bloka filtracii tekstur v otlichie ot G92 kotoryj soderzhit 64 bloka adresacii tekstur i 64 bloka filtracii tekstur 3 S etih videokart nachinaetsya podderzhka OpenGL 3 3 Model Data Kodovoe imya Teh process nm Tranzis torov mln Ploshad chipa mm2 Interfejs Vvoda vyvoda Obyom videopamyati MB Konfiguraciya yadra 1 chastoty Pikovaya skorost zapolneniya Pamyat podderzhivaemyj API versiya Teoreticheskaya proizvoditelnost 2 Gigaflops TDP Vt Zametkiyadro MHz shejdernyj blok MHz pamyat MHz giga pikselej s giga tekselej s Propusknaya sposobnost GB s Tip Shina bit DirectX OpenGLGeForce 8100 mGPU 2008 MCP78 80 PCIe 2 0 x16 Do 512 iz sistemnoj pamyati 16 4 4 500 1200 800 sistemnaya pamyat 2 2 6 4 12 8 DDR2 64 128 10 0 3 3 57 6 Blok dekodirovaniya HD video PureVideo HD otklyuchenGeForce 8200 mGPU 2008 MCP78 80 PCIe 2 0 x16 Do 512 iz sistemnoj pamyati 16 4 4 500 1200 800 sistemnaya pamyat 2 2 6 4 12 8 DDR2 64 128 10 0 3 3 57 6GeForce 8300 mGPU 2008 MCP78 80 PCIe 2 0 x16 Do 512 iz sistemnoj pamyati 16 4 4 500 1500 800 sistemnaya pamyat 2 2 6 4 12 8 DDR2 64 128 10 0 3 3 72GeForce 8300 GS iyul 2007 G86 80 210 86 PCIe 1 0 x16 512 8 8 4 450 900 800 1 8 3 6 6 4 DDR2 64 10 0 3 3 22 40 Tolko OEMGeForce 8400 GS 15 iyunya 2007 G86 80 210 127 PCIe 1 0 x16 PCI 128 256 512 16 8 4 450 900 800 1 8 3 6 6 4 DDR2 64 10 0 3 2 43 40GeForce 8400 GS rev 2 4 dekabrya 2007 G98 65 86 PCIe 2 0 x16 PCI 128 256 512 8 8 4 567 1400 800 2 268 4 536 6 4 DDR2 64 10 0 3 3 33 25GeForce 8500 GT 17 aprelya 2007 G86 80 210 127 PCIe 1 0 x16 256 512 1024 16 8 8 450 900 800 3 6 3 6 12 8 GDDR3 128 10 0 3 3 43 45GeForce 8600 GS aprel 2007 G84 80 289 169 PCIe 1 0 x16 256 512 32 16 8 540 1180 800 4 32 8 64 12 8 DDR2 128 10 0 3 3 113 47 Tolko OEMGeForce 8600 GT 17 aprelya 2007 G84 80 289 169 PCIe 1 0 x16 PCI 256 512 1024 32 16 8 540 1180 800 1400 4 32 8 64 12 8 22 4 DDR2 GDDR3 128 10 0 3 3 113 47GeForce 8600 GTS 17 aprelya 2007 G84 80 289 169 PCIe 1 0 x16 256 512 32 16 8 675 1450 2000 5 4 10 8 32 GDDR3 128 10 0 3 3 139 75GeForce 8800 GS yanvar 2008 G92 65 754 324 PCIe 2 0 x16 384 768 96 48 12 550 1375 1600 6 7 26 6 38 4 GDDR3 192 10 0 3 3 396 105GeForce 8800 GTS G80 12 fevralya 2007 320 8 noyabrya 2006 640 G80 90 681 484 PCIe 1 0 x16 320 640 96 242 20 513 1188 1584 10 26 12 312 63 4 GDDR3 320 10 0 3 3 346 143GeForce 8800 GTS G80 November 19 2007 G80 90 681 484 PCIe 1 0 x16 640 112 282 20 513 1188 1584 10 26 14 364 63 4 GDDR3 320 10 0 3 3 399 gt 150W tolko XFX EVGA i BFGGeForce 8800 GT 29 oktyabrya 2007 512 11 dekabrya 2007 256 1024 G92 65 754 324 PCIe 2 0 x16 256 512 1024 112 56 16 600 1500 1400 256 1800 512 1024 9 6 33 6 57 6 GDDR3 256 10 0 3 3 504 105GeForce 8800 GTS 512 G92 11 dekabrya 2007 G92 65 754 324 PCIe 2 0 x16 512 128 64 16 650 1625 1940 10 4 41 6 62 1 GDDR3 256 10 0 3 3 624 135GeForce 8800 GTX 8 noyabrya 2006 G80 90 681 484 PCIe 1 0 x16 768 128 322 24 575 1350 1800 13 8 18 4 86 4 GDDR3 384 10 0 3 3 518 155GeForce 8800 Ultra 2 maya 2007 G80 90 681 484 PCIe 1 0 x16 768 128 322 24 612 1500 2160 14 688 19 584 103 7 GDDR3 384 10 0 3 3 576 171GeForce 9 Series 1Unificirovannyh shejdernyh processorov Teksturnyh blokov Blokov rasterizaciiModel Data Kodovoe imya Teh process nm Tranzis torov mln Ploshad chipa mm2 kol vo chipov Interfejs Vvoda vyvoda Obyom videopamyati MB Konfiguraciya yadra 1 chastoty Pikovaya skorost zapolneniya Pamyat podderzhivaemyj API versiya Teoreticheskaya proizvoditelnost 2 Gigaflops TDP Vt Zametkiyadro MHz shejdernyj blok MHz pamyat MHz giga pikselej s giga tekselej s Propusknaya sposobnost GB s Tip Shina bit DirectX OpenGLGeForce 9300 mGPU Oktyabr 2008 MCP7A S 65 282 159 5 14 5x11 1 PCIe 2 0 x16 Do 512 iz sistemnoj pamyati 16 8 4 450 1200 800 1333 1 8 3 6 6 4 12 8 10 664 21 328 DDR2 DDR3 64 128 10 0 3 3 57 6 osnovana na 8400 GSGeForce 9400 mGPU Oktyabr 2008 MCP7A U 65 282 159 5 14 5x11 1 PCIe 2 0 x16 Do 512 iz sistemnoj pamyati 16 8 4 580 1400 800 1333 2 32 4 64 6 4 12 8 10 664 21 328 DDR2 DDR3 64 128 10 0 3 3 67 2 12 osnovana na 8400 GSGeForce 9300 GE Iyun 2008 G98 65 86 1 PCIe 2 0 x16 256 8 8 4 540 1300 1000 2 16 4 32 8 DDR2 64 10 0 3 3 31 2 GeForce 9300 GS Iyun 2008 G98 65 86 1 PCIe 2 0 x16 256 8 8 4 567 1400 1000 2 268 4 536 8 DDR2 64 10 0 3 3 33 6 GeForce 9400 GT 27 avgusta 2008 G96a b 65 55 314 144 1 PCIe 2 0 x16 PCI 256 512 1024 16 8 4 550 1400 800 1600 2 2 4 4 12 8 25 6 GDDR2 GDDR3 128 10 0 3 3 67 2 50GeForce 9500 GT 29 iyulya 2008 G96a b 65 55 314 144 1 PCIe 2 0 x16 PCI 256 512 1024 32 16 8 550 1400 1000 1600 4 4 8 8 16 0 25 6 DDR2 GDDR3 128 10 0 3 3 134 4 50GeForce 9600 GSO Maj 2008 G92 65 754 324 1 PCIe 2 0 x16 384 768 1536 96 48 12 550 1375 1600 6 7 26 6 38 4 GDDR3 192 10 0 3 3 396 84GeForce 9600 GSO 512 Oktyabr 2008 G94a b 65 55 505 240 196 1 PCIe 2 0 x16 512 48 24 16 650 1625 800 10 4 15 6 25 6 DDR2 256 10 0 3 3 234 90GeForce 9600 GT Green Edition 2009 G94b 55 505 196 1 PCIe 2 0 x16 512 1024 64 32 16 600 625 1500 1625 1400 1800 1800 9 6 10 19 2 20 44 8 57 6 57 6 GDDR3 256 10 0 3 3 288 312 59 Napryazhenie yadra 1V u obychnoj 9600 GT 1 1VGeForce 9600 GT 21 fevralya 2008 G94a b 65 55 505 240 196 1 PCIe 2 0 x16 512 1024 64 32 16 650 1625 1800 10 4 20 8 57 6 GDDR3 256 10 0 3 3 312 95GeForce 9800 GT Green Edition 2009 G92b 55 754 260 1 PCIe 2 0 x16 512 1024 112 56 16 550 1375 1400 1600 1800 8 8 30 8 44 8 51 2 57 6 GDDR3 256 10 0 3 3 462 75 Napryazhenie yadra 1V u obychnoj 9800 GT 1 1VGeForce 9800 GT Iyul 2008 G92a b 65 55 754 324 260 1 PCIe 2 0 x16 512 1024 112 56 16 600 1500 1800 9 6 33 6 57 6 GDDR3 256 10 0 3 3 504 125 105GeForce 9800 GTX 1 aprelya 2008 G92 65 754 324 1 PCIe 2 0 x16 512 128 64 16 675 1688 2200 10 8 43 2 70 4 GDDR3 256 10 0 3 3 648 140GeForce 9800 GTX 16 iyulya 2008 G92b 55 754 260 1 PCIe 2 0 x16 512 1024 128 64 16 738 1836 2200 11 808 47 232 70 4 GDDR3 256 10 0 3 3 705 141 V marte 2009 byla pereimenovana v GTS 250GeForce 9800 GX2 18 marta 2008 G92 65 2x 754 2x 324 2 PCIe 2 0 x16 2x 512 2x 128 64 16 600 1500 2000 2x 9 6 2x 38 4 2x 64 0 GDDR3 2x 256 10 0 3 3 2x 576 197GeForce 100 Series 1Unificirovannyh shejdernyh processorov Teksturnyh blokov Blokov rasterizaciiModel Data Kodovoe imya Teh process nm Tranzis torov mln Ploshad chipa mm2 Interfejs Vvoda vyvoda Obyom videopamyati MB Konfiguraciya yadra 1 chastoty Pikovaya skorost zapolneniya Pamyat podderzhivaemyj API versiya Teoreticheskaya proizvoditelnost 2 Gigaflops TDP Vt Zametkiyadro MHz shejdernyj blok MHz pamyat MHz giga pikselej s giga tekselej s Propusknaya sposobnost GB s Tip Shina bit DirectX OpenGLGeForce G 100 10 marta 2009 G98 65 86 PCIe 2 0 x16 512 16 8 4 567 1400 500 2 15 4 3 8 0 DDR2 64 10 0 3 2 33 6 35 Tolko OEMGeForce GT 120 10 marta 2009 G96b 55 314 121 PCIe 2 0 x16 512 32 16 8 500 1400 800 4 4 8 8 16 0 DDR2 128 10 0 3 2 134 4 50 Tolko OEMGeForce GT 130 10 marta 2009 G94b 55 505 196 PCIe 2 0 x16 1536 48 24 12 500 1250 500 6 12 24 0 DDR2 192 10 0 3 2 180 75 Tolko OEMGeForce GT 140 10 marta 2009 G94b 55 505 196 PCIe 2 0 x16 1024 64 32 16 650 1625 1800 10 4 20 8 57 6 GDDR3 256 10 0 3 2 312 105 Tolko OEMGeForce GTS 150 10 marta 2009 G92b 55 754 260 PCIe 2 0 x16 1024 128 64 16 738 1836 1000 11 808 47 232 64 0 GDDR3 256 10 0 3 2 705 141 Tolko OEMGeForce 200 Series 1 Potokovyj processor Teksturnyj blok Blok rasterizaciiModel Data Kodovoe imya Teh process nm Tranzis torov mln Ploshad chipa mm2 kol vo chipov Interfejs Vvoda vyvoda Obyom videopamyati MB Konfiguraciya yadra 1 chastoty Pikovaya skorost zapolneniya Pamyat podderzhivaemyj API versiya Teoreticheskaya proizvoditelnost FMAD 2 Gigaflops TDP Vt Zametkiyadro MHz shejdernyj blok MHz pamyat MHz giga pikselej s giga tekselej s Propusknaya sposobnost GB s Tip Shina bit DirectX OpenGLGeForce 205 26 noyabrya 2009 GT218 40 260 57 1 PCIe 2 0 x16 512 8 4 4 589 1402 1000 2 356 2 356 8 DDR2 64 10 1 3 3 33 4 30 5 Tolko OEMGeForce GT 210 12 oktyabrya 2009 GT218 40 260 57 1 PCIe 2 0 x16 512 16 8 4 589 1402 1000 1600 2 356 4 712 8 12 8 DDR2 DDR3 64 10 1 3 3 67 296 30 5GeForce GT 220 12 oktyabrya 2009 GT216 40 486 100 1 PCIe 2 0 x16 512 1024 48 16 8 615 OEM 625 1335 OEM 1360 1000 1580 5 10 16 25 3 DDR2 DDR3 128 10 1 3 3 192 OEM 196 58GeForce GT 230 v 1 2009 G94b 55 505 196 1 PCIe 2 0 x16 512 1024 48 24 16 650 1625 1800 10 4 15 6 57 6 GDDR3 256 10 3 3 234 75 Tolko OEMGeForce GT 230 v 2 2009 G92b 65 754 260 1 PCIe 2 0 x16 1536 96 48 12 500 1242 1000 6 24 24 DDR2 192 10 3 3 357 69 75 Tolko OEMGeForce GT 240 17 noyabrya 2009 GT215 40 727 139 1 PCIe 2 0 x16 1024 GDDR3 512 GDDR5 96 32 8 550 1340 1800 2000 3400 GDDR5 4 4 17 6 28 8 OEM 32 54 4 GDDR5 DDR3 GDDR3 GDDR5 128 10 1 3 3 385 9 69GeForce GTS 240 Q4 2009 G92a b 65 55 754 324 260 1 PCIe 2 0 x16 1024 112 56 16 675 1620 2200 10 8 37 8 70 4 GDDR3 256 10 0 3 3 554 32 120 Tolko OEMGeForce GTS 250 3 marta 2009 G92b 55 754 260 1 PCIe 2 0 x16 512 1024 128 64 16 738 1836 2200 2000 11 808 47 232 70 4 64 GDDR3 256 10 0 3 3 705 024 145 Pereimenovannaya GeForce 9800 GTX GeForce GTX 260 16 iyunya 2008 GT200 65 1400 576 1 PCIe 2 0 x16 896 192 64 28 576 1242 1998 16 128 36 864 111 9 GDDR3 448 10 0 3 3 715 392 182 byla zamenena na GTX 260 Core 216GeForce GTX 260 Core 216 16 sentyabrya 2008 GT200a b 65 55 1400 576 470 1 PCIe 2 0 x16 896 1792 216 72 28 576 1242 1998 16 128 41 472 111 9 GDDR3 448 10 0 3 3 804 816 182 171GeForce GTX 275 9 aprelya 2009 GT200b 55 1400 470 1 PCIe 2 0 x16 896 240 80 28 633 1404 2268 17 724 50 6 127 0 GDDR3 448 10 0 3 3 1010 880 219GeForce GTX 280 17 iyunya 2008 GT200 65 1400 576 1 PCIe 2 0 x16 1024 240 80 32 602 1296 2214 19 264 48 16 141 7 GDDR3 512 10 0 3 3 933 120 236 byla zamenena na GTX 285GeForce GTX 285 16 yanvarya 2009 GT200b 55 1400 470 1 PCIe 2 0 x16 1024 2048 240 80 32 648 1476 2484 20 736 51 84 159 0 GDDR3 512 10 0 3 3 1062 720 204 Palit i EVGA vypustili 2GB versii EVGA vypustili GTX285 Classified s podderzhkoj 4 way SLIGeForce GTX 295 8 yanvarya 2009 GT200b 55 2x 1400 2x 470 2 PCIe 2 0 x16 2x 896 2x 240 80 28 576 1242 1998 2x 16 128 2x 46 08 2x 111 9 GDDR3 2x 448 10 0 3 3 1788 480 289 modeli s 2 PCB postepenno zameneny na modeli s 1 PCB c 2 GPU 1Unificirovannyh shejdernyh processorov Teksturnyh blokov Blokov rasterizacii 2 Kazhdyj potokovyj multiprocessor SM v GPU arhitektury G80 GT200 soderzhit 8 shejdernyh processorov SP i 2 bloka specializirovannyh funkcij SFU Kazhdyj SP mozhet vypolnyat do dvuh operacij MAD ADD MUL odinarnoj tochnosti za takt a kazhdyj SFU do chetyryoh operacij za takt eti bloki takzhe mogut obrabatyvat odno umnozhenie odinarnoj tochnosti s plavayushej zapyatoj za takt Pikovoe sootnoshenie operacij vypolnyaemymi SP k operaciyam vypolnyaemymi SFU 2 1 Teoreticheskaya summarnaya proizvoditelnost FLOPSsp sfu GFLOPS blokov SP i SFU rasschityvaetsya po formule FLOPSsp sfu f n 3 gde n kolichestvo SP f GHz ih chastota Analogichnaya formula FLOPSsp sfu f m 8 SPs 2 MAD 4 2 SFUs gde m kolichestvo SM Model Data Kodovoe imya Teh process nm Tranzis torov mln Ploshad chipa mm2 Interfejs Vvoda vyvoda Obyom videopamyati MB Konfiguraciya yadra 1 chastoty Pikovaya skorost zapolneniya Pamyat podderzhivaemyj API versiya Teoreticheskaya proizvoditelnost 2 Gigaflops TDP Vt Zametkiyadro MHz shejdernyj blok MHz pamyat MHz giga pikselej s giga tekselej s Propusknaya sposobnost GB s Tip Shina bit DirectX OpenGLGeForce 310 27 noyabrya 2009 GT218 40 260 57 PCIe 2 0 x16 512 16 8 4 589 1402 1000 2 356 4 712 8 DDR2 64 10 1 3 2 67 296 30 5 Tolko OEMGeForce 315 fevral 2010 GT216 40 486 100 PCIe 2 0 x16 512 1024 48 16 8 475 1100 1580 3 8 7 6 12 6 DDR3 64 10 1 3 2 158 4 33 Tolko OEMGeForce GT 320 fevral 2010 GT215 40 727 144 PCIe 2 0 x16 1024 72 24 8 540 1302 1580 4 32 12 96 25 3 GDDR3 128 10 1 3 2 281 23 43 Tolko OEMGeForce GT 330 fevral 2010 G92b 55 754 260 PCIe 2 0 x16 1024 1536 2048 96 48 8 96 48 12 112 56 16 500 550 1250 1340 1000 DDR2 1600 GDDR3 24 32 DDR2 GDDR3 128 192 256 10 3 2 75 Tolko OEM Specifikacii izmenyayutsya v zavisimosti ot OEM GeForce GT 340 fevral 2010 GT215 40 727 144 PCIe 2 0 x16 512 1024 96 32 8 550 1340 3400 4 4 17 6 54 4 GDDR5 128 10 1 3 2 385 9 69 Tolko OEMGeForce 400 Series Unificirovannyh shejdernyh processorov Teksturnyh blokov Blokov rasterizacii Kazhdyj potokovyj multiprocessor SM v GPU arhitektury GF100 soderzhit 32 shejdernyh processora SP i 4 bloka specializirovannyh funkcij SFU Kazhdyj potokovyj multiprocessor SM v GPU arhitektury GF104 GF106 GF108 soderzhit 48 shejdernyh processorov SP i 8 blokov specializirovannyh funkcij SFU Kazhdyj SP mozhet vypolnyat do dvuh operacij FMA Fused ADD MUL odinarnoj tochnosti za takt a kazhdyj SFU do chetyryoh operacij za takt Pikovoe sootnoshenie operacij vypolnyaemymi SP k operaciyam vypolnyaemymi SFU dlya GF100 SFU 4 1 dlya GF104 106 108 3 1 Teoreticheskaya proizvoditelnost FLOPSsp sfu GFLOPS blokov SP rasschityvaetsya po formule FLOPSsp f n 2 gde n kolichestvo SP f GHz ih chastota Analogichnaya formula dlya GF100 FLOPSsp f m 32 SPs 2 FMA dlya GF104 106 108 FLOPSsp f m 48 SPs 2 FMA gde m kolichestvo SM Polnuyu proizvoditelnost GPU mozhno rasschitat po formule dlya GF100 FLOPSsp f m 32 SPs 2 FMA 4 4 SFUs dlya GF104 106 108 FLOPSsp f m 48 SPs 2 FMA 4 8 SFUs ili dlya GF100 FLOPSsp f n 2 5 dlya GF104 106 108 FLOPSsp f n 8 3 Model Data Kodovoe imya Teh process nm Tranzis torov mln Ploshad chipa mm2 kol vo chipov Interfejs Vvoda vyvoda Obyom videopamyati MB kol vo SM Konfiguraciya yadra 1 Chastoty Pikovaya skorost zapolneniya Pamyat podderzhivaemyj API versiya Teoreticheskaya proizvoditelnost FMA 2 Gigaflops TDP Vt Rekomendovannaya cena USD yadro MHz shejdernyj blok MHz pamyat MHz giga pikselej s giga tekselej s Propusknaya sposobnost GB s Tip Shina bit DirectX OpenGL OpenCLGeForce GT 420 OEM 3 sentyabrya 2010 GF108 40 585 116 1 PCIe 2 0 x16 2048 1 48 8 4 700 1400 1800 2 8 5 6 28 8 GDDR3 128 11 4 1 1 1 134 4 50 OEMGeForce GT 430 OEM 11 oktyabrya 2010 GF108 40 585 116 1 PCIe 2 0 x16 2048 2 96 16 4 700 1400 1600 1800 2 8 11 2 25 6 28 8 GDDR3 128 11 4 1 1 1 268 8 60 OEMGeForce GT 430 11 oktyabrya 2010 GF108 40 585 116 1 PCIe 2 0 x16 512 1024 2 96 16 4 700 1400 1800 2 8 11 2 28 8 GDDR3 128 11 4 1 1 1 268 8 49 79GeForce GT 440 1 fevralya 2011 GF108 40 585 116 1 PCIe 2 0 x16 512 1024 2048 2 96 16 4 810 1620 1800 3200 3 24 12 96 28 8 51 2 GDDR3 GDDR5 128 11 4 1 1 1 311 04 65 79GeForce GT 440 OEM 11 oktyabrya 2010 GF106 40 1170 238 1 PCIe 2 0 x16 1536 3072 3 144 24 24 594 1189 1800 14 26 14 26 43 2 GDDR3 192 11 4 1 1 1 342 43 56 OEMGeForce GT 450 OEM 11 oktyabrya 2010 GF106 40 1170 238 1 PCIe 2 0 x16 1536 3 144 24 24 790 1580 4000 18 96 18 96 96 GDDR5 192 11 4 1 1 1 455 04 106 OEMGeForce GTS 450 13 sentyabrya 2010 GF106 40 1170 238 1 PCIe 2 0 x16 512 1024 4 192 32 16 783 1566 3608 12 53 25 06 57 73 GDDR5 128 11 4 1 1 1 601 34 106 129GeForce GTX 460 SE 15 noyabrya 2010 GF104 40 1950 332 1 PCIe 2 0 x16 1024 6 288 48 32 650 1300 3400 20 8 31 2 108 8 GDDR5 256 11 4 1 1 1 748 8 150GeForce GTX 460 OEM 11 oktyabrya 2010 GF104 40 1950 332 1 PCIe 2 0 x16 1024 7 336 563 32 650 1300 3400 20 8 36 4 108 8 GDDR5 256 11 4 1 1 1 873 6 150 OEMGeForce GTX 460 12 iyulya 2010 GF104 40 1950 332 1 PCIe 2 0 x16 768 7 336 563 24 675 1350 3600 16 2 37 8 86 4 GDDR5 192 11 4 1 1 1 907 2 150 1991024 2048 336 56 32 21 6 115 2 256 160 229GeForce GTX 460 v2 24 sentyabrya 2011 GF114 40 1950 332 1 PCIe 2 0 x16 1024 7 336 56 24 778 1556 4008 18 67 43 57 96 2 GDDR5 192 11 4 2 1 1 1045 6 160 199GeForce GTX 465 31 maya 2010 GF100 40 3000 529 1 PCIe 2 0 x16 1024 11 352 443 32 607 1215 3206 19 42 26 71 102 6 GDDR5 256 11 4 0 1 1 855 36 200 279GeForce GTX 470 26 marta 2010 GF100 40 3000 529 1 PCIe 2 0 x16 1280 14 448 563 40 607 1215 3348 24 28 34 133 9 GDDR5 320 11 4 0 1 1 1088 64 215 349GeForce GTX 480 26 marta 2010 GF100 40 3000 529 1 PCIe 2 0 x16 1536 15 480 603 48 700 1401 3696 33 60 42 177 4 GDDR5 384 11 4 0 1 1 1344 96 250 499GeForce 500 Series 1Unificirovannyh shejdernyh processorov Teksturnyh blokov Blokov rasterizacii 2 Kazhdyj potokovyj multiprocessor SM v GPU arhitektury GF110 soderzhit 32 shejdernyh processora SP i 4 bloka specializirovannyh funkcij SFU Kazhdyj SP mozhet vypolnyat do dvuh operacij FMA Fused ADD MUL odinarnoj tochnosti za takt a kazhdyj SFU do chetyryoh operacij za takt Pikovoe sootnoshenie operacij vypolnyaemymi SP k operaciyam vypolnyaemymi SFU dlya GF100 SFU 4 1 Teoreticheskaya proizvoditelnost FLOPSsp sfu GFLOPS blokov SP rasschityvaetsya po formule FLOPSsp f n 2 gde n kolichestvo SP f GHz ih chastota Analogichnaya formula dlya GF110 FLOPSsp f m 32 SPs 2 FMA gde m kolichestvo SM Polnuyu proizvoditelnost GPU mozhno rasschitat po formule dlya GF110 FLOPSsp f m 32 SPs 2 FMA 4 4 SFUs ili dlya GF110 FLOPSsp f n 2 5 Model Data Kodovoe imya Teh process nm Tranzis torov mln Ploshad chipa mm2 kol vo chipov Interfejs Vvoda vyvoda Obyom videopamyati MB kol vo SM Konfiguraciya yadra 1 Chastoty Pikovaya skorost zapolneniya Pamyat podderzhivaemyj API versiya Teoreticheskaya proizvoditelnost FMA 2 Gigaflops TDP Vt Rekomendovannaya cena USD yadro MHz shejdernyj blok MHz pamyat MHz giga pikselej s giga tekselej s Propusknaya sposobnost GB s Tip Shina bit DirectX OpenGL OpenCLGeForce GT 520 13 aprelya 2011 GF119 40 1 PCIe 2 0 x16 1024 2048 1 48 8 4 810 1620 1800 3 24 6 5 14 4 DDR3 64 12 4 6 1 1 155 5 29 59GeForce GTX 550 Ti 15 marta 2011 GF116 40 1170 238 1 PCIe 2 0 x16 1024 4 192 32 24 900 1800 4104 21 6 28 8 98 5 GDDR5 192 12 4 6 1 2 691 2 116 149GeForce GTX 560 SE 13 marta 2012 GF114 40 1950 360 1 PCIe 2 0 x16 1024 6 288 48 24 736 1472 3828 17 7 35 3 92 GDDR5 192 12 4 6 1 2 849 150 GeForce GTX 560 17 maya 2011 GF114 40 1950 332 1 PCIe 2 0 x16 1024 7 336 56 32 810 1620 4008 25 9 45 3 128 1 GDDR5 256 12 4 6 1 2 1088 6 150 199GeForce GTX 560 Ti 25 yanvarya 2011 GF114 40 1950 332 1 PCIe 2 0 x16 1024 2048 8 384 64 32 822 1645 4008 26 3 52 61 128 27 GDDR5 256 12 4 6 1 2 1263 4 170 249GeForce GTX 560 Ti 448 core 29 noyabrya 2011 GF110 40 3000 520 1 PCIe 2 0 x16 1280 14 448 56 40 730 1460 3800 29 28 40 99 152 GDDR5 320 12 4 6 1 2 1311 7 210 280GeForce GTX 570 7 dekabrya 2010 GF110 40 3000 520 1 PCIe 2 0 x16 1280 15 480 60 40 732 1464 3800 29 28 43 92 152 GDDR5 320 12 4 6 1 2 1405 4 219 349GeForce GTX 580 9 noyabrya 2010 GF110 40 3000 520 1 PCIe 2 0 x16 1536 3072 16 512 64 48 772 1544 4008 37 056 49 408 192 384 GDDR5 384 12 4 6 1 2 1581 056 244 499GeForce GTX 590 24 marta 2011 2x GF110 40 2x 3000 2x 520 2 PCIe 2 0 x16 2x 1536 2 16 2x 512 64 48 607 1215 3414 2 29 14 2 38 85 2 163 87 GDDR5 2 384 12 4 6 1 2 2488 3 365 699GeForce 600 Series 1Unificirovannyh shejdernyh processorov Teksturnyh blokov Blokov rasterizacii 2 GeForce 605 OEM pereimenovannaya GeForce 510 3 GeForce GT 610 pereimenovannaya GeForce GT 520 4 GeForce GT 620 OEM pereimenovannaya GeForce GT 520 5 GeForce GT 620 pereimenovannaya GeForce GT 530 6 GeForce GT 630 DDR3 pereimenovannaya GeForce GT 440 DDR3 7 GeForce GT 630 GDDR5 pereimenovannaya GeForce GT 440 GDDR5 8 GeForce GT 640 OEM pereimenovannaya GeForce GT 545 DDR3 9 GeForce GT 645 OEM pereimenovannaya GeForce GTX 560 SE Model Data Kodovoe imya Teh process nm Tranzis torov mln Ploshad chipa mm2 kol vo chipov Interfejs Vvoda vyvoda Obyom video pamyati MB kol vo SM Konfigu raciya yadra 1 Chastoty Pikovaya skorost zapolneniya Pamyat podderzhivaemyj API versiya Teoreticheskaya proizvodi telnost FMA Gigaflops TDP Vt Gigaflops Vt Rekomendo vannaya cena USD yadro MHz srednyaya chastota MHz maksi malnaya chastota MHz shejdernyj blok MHz pamyat MHz giga pikselej s giga tekselej s Propusknaya sposobnost GB s Tip Shina bit DirectX OpenGL OpenCL Vulkan API GeForce 6052 3 aprelya 2012 GF119 40 292 79 1 PCIe 2 0 x16 512 1024 1 48 8 4 523 n d n d 1046 1798 2 1 4 3 14 4 DDR3 64 12 4 6 1 1 N D 100 4 25 4 02 OEMGeForce GT 610 3 15 maya 2012 GF119 40 292 79 1 PCIe 2 0 x16 PCI 1024 2048 1 48 8 4 810 n d n d 1620 1800 3 24 6 5 14 4 DDR3 64 4 5 155 5 29 5 36 RetailGeForce GT 620 4 3 aprelya 2012 GF119 40 292 79 1 PCIe 2 0 x16 PCI 512 1024 1 48 8 4 810 n d n d 1620 1798 3 24 6 5 14 4 DDR3 64 155 5 30 5 18 OEMGeForce GT 6205 15 maya 2012 GF108 40 585 116 1 PCIe 2 0 x16 PCI 1024 2 96 16 4 700 n d n d 1400 1800 2 8 11 2 14 4 DDR3 64 268 8 49 5 49 RetailGeForce GT 630 24 aprelya 2012 GK107 28 1300 118 1 PCIe 3 0 x16 1024 2048 1 192 16 16 875 n d n d 875 1782 7 14 28 5 DDR3 128 4 6 1 2 336 50 6 72 OEMGeForce GT 630 DDR3 6 15 maya 2012 GF108 40 585 116 1 PCIe 2 0 x16 PCI 1024 2 96 16 4 810 n d n d 1620 1800 3 2 13 28 8 DDR3 128 4 5 1 1 311 65 4 79 RetailGeForce GT 630 GDDR5 7 15 maya 2012 GF108 40 585 116 1 PCIe 2 0 x16 PCI 1024 2 96 16 4 810 n d n d 1620 3200 3 2 13 51 2 GDDR5 128 311 65 4 79 RetailGeForce GT 6408 24 aprelya 2012 GF116 40 1170 238 1 PCIe 2 0 x16 1536 3072 3 144 24 24 720 n d n d 1440 1782 17 3 17 3 42 8 DDR3 192 4 6 1 1 73 414 7 75 5 53 OEMGeForce GT 640 DDR3 24 aprelya 2012 GK107 28 1300 118 1 PCIe 3 0 x16 1024 2048 2 384 32 16 797 n d n d 797 1782 12 8 25 5 28 5 DDR3 128 4 6 1 2 612 1 50 12 24 OEMGeForce GT 640 DDR3 5 iyunya 2012 GK107 28 1300 118 1 PCIe 3 0 x16 2048 2 384 32 16 900 n d n d 900 1782 14 4 28 8 28 5 DDR3 128 691 2 65 10 63 99GeForce GT 640 GDDR5 24 aprelya 2012 GK107 28 1300 118 1 PCIe 3 0 x16 1024 2048 2 384 32 16 950 n d n d 950 5000 15 2 30 4 80 GDDR5 128 729 6 75 9 73 OEMGeForce GT 6459 24 aprelya 2012 GF114 40 1950 332 1 PCIe 2 0 x16 1024 6 288 48 24 776 n d n d 1552 1914 18 6 37 3 91 9 GDDR5 192 894 140 6 39 OEMGeForce GTX 650 13 sentyabrya 2012 GK107 28 1300 118 1 PCIe 3 0 x16 1024 2048 2 384 32 16 1058 n d n d 1058 5000 16 9 33 8 80 GDDR5 128 812 5 64 12 7 109GeForce GTX 650 Ti 9 oktyabrya 2012 GK106 28 2540 221 1 PCIe 3 0 x16 1024 2048 4 768 64 16 925 n d n d 925 5400 14 8 59 2 86 4 GDDR5 128 1420 8 110 12 92 149GeForce GTX 660 13 sentyabrya 2012 GK106 28 2540 221 1 PCIe 3 0 x16 1024 2048 5 960 80 24 980 1032 Neizvestno 980 6008 23 5 78 5 144 2 GDDR5 192 1881 6 140 13 44 229GeForce GTX 660 OEM 22 avgusta 2012 GK104 28 3540 294 1 PCIe 3 0 x16 1536 3072 6 1152 96 24 823 888 Neizvestno 823 5800 19 8 79 134 GDDR5 192 2108 6 130 16 22 OEMGeForce GTX 660 Ti 16 avgusta 2012 GK104 28 3540 294 1 PCIe 3 0 x16 2048 3072 7 1344 112 24 915 980 1058 915 6008 22 0 102 5 144 2 GDDR5 192 2460 150 16 40 299GeForce GTX 670 10 maya 2012 GK104 28 3540 294 1 PCIe 3 0 x16 2048 4096 7 1344 112 32 915 980 1084 915 6008 29 3 102 5 192 256 GDDR5 256 2460 170 14 47 399GeForce GTX 680 22 marta 2012 GK104 28 3540 294 1 PCIe 3 0 x16 2048 4096 8 1536 128 32 1006 1058 1110 1006 6008 32 2 128 8 192 256 GDDR5 256 3090 4 195 15 85 499GeForce GTX 690 29 aprelya 2012 2 GK104 28 2 3540 2 294 2 PCIe 3 0 x16 2 2048 2 8 2 1536 128 32 915 1019 1058 915 6008 2 29 28 2 117 12 2 192 256 GDDR5 2 256 2 2810 88 300 18 74 999GeForce 700 Series 1Unificirovannyh shejdernyh processorov Teksturnyh blokov Blokov rasterizacii 2 Skorost zapolneniya pikselej rasschityvaetsya umnozheniem kolichestva blokov rasterizacii angl Raster Operations Pipeline ROP na bazovuyu taktovuyu chastotu yadra 3 Skorost zapolneniya tekstur rasschityvaetsya umnozheniem kolichestva teksturnyh blokov angl Texture Mapping Unit TMU na bazovuyu taktovuyu chastotu yadra 4 Proizvoditelnost v FLOPS odinarnoj tochnosti 32 bita ravna proizvedeniyu kolichestva shejdernyh processorov i dvuh umnozhennomu na bazovuyu chastotu yadra FP32 USPs 2 GPU Clock speed 5 Proizvoditelnost GTX Titan v operaciyah nad 64 bitnymi chislami sostavlyaet 1 3 ot ego proizvoditelnosti pri rabote nad 32 bitnymi togda kak dlya prochih chipov na baze Kepler eto sootnoshenie ravno 1 24 Model Data Kodovoe imya Teh process nm Interfejs Vvoda vyvoda Obyom videopamyati Mb Konfiguraciya yadra1 Chastoty Pikovaya skorost zapolneniya Pamyat Podderzhivaemyj API versiya Teoreticheskaya proizvoditelnost FMA Gigaflops Gigaflops Vt TDP Vt Rekomendovannaya cena USD yadro MHz maksimalnaya chastota MHz pamyat MHz giga pikselej s 2 giga tekselej s 3 Propusknaya sposobnost Gb s Tip Shina bit DirectX OpenGL OpenCL Vulkan FP324 FP645GeForce GT 710 GDDR5 32 64 Bit N D GK208 28 PCI E 2 0 x16 1024 2048 192 16 8 954 954 5000 7 6 15 3 20 40 GDDR5 32 64 12 4 6 1 2 1 1 73 366 15 3 19 2 19GeForce GT 710 DDR3 64Bit 29 Yanvarya 2016 GK208 28 PCI E 2 0 x16 1024 2048 192 16 8 954 954 1600 1800 7 6 15 3 12 8 14 4 DDR3 64 12 4 6 1 2 366 15 3 19 2 19GeForce GT 720 27 Marta 2014 GK208 28 PCIe 2 0 x8 1024 2048 192 16 8 797 797 1800 5000 6 4 12 7 14 4 40 DDR3 GDDR5 64 12 4 6 1 2 306 12 8 13 3 23GeForce GT 730 DDR3 128 bit 18 Maya 2014 GF108 40 PCIe 2 0 x16 1024 2048 96 16 4 700 700 1800 2 8 11 2 28 8 DDR3 128 12 4 6 1 2 134 5 6 2 7 49GeForce GT 730 DDR3 64 bit 18 Maya 2014 GK208 28 PCIe 2 0 x8 2048 384 32 8 902 902 1800 7 2 28 9 14 4 DDR3 64 12 4 6 1 2 693 28 9 30 1 23GeForce GT 730 GDDR5 18 Maya 2014 GK208 PCIe 2 0 x8 1024 384 32 8 902 1006 5000 7 2 28 9 40 GDDR5 64 12 4 6 1 2 693 28 8 18 2 38GeForce GT 740 29 Aprelya 2014 GK107 PCIe 3 0 x16 1024 2048 384 32 16 993 1058 1782 5000 15 9 31 8 28 8 80 DDR3 GDDR5 128 12 4 6 1 2 763 31 7 11 9 64GeForce GTX 745 Neizvestno GM107 1024 4096 384 24 16 1033 1033 1800 16 5 24 8 28 8 DDR3 128 12 4 6 1 2 793 24 8 14 4 55 OEMGeForce GTX 750 28 Fevralya 2014 GM107 300 GM206 150 1024 512 32 16 1020 1085 1150 5012 16 3 17 3 32 6 34 7 80 GDDR5 128 12 4 6 1 2 1044 32 6 19 55GeForce GTX 750 Ti 18 Fevralya 2014 GM107 GM206 2048 4096 640 40 16 1020 1085 1215 5400 16 3 17 3 40 8 43 4 86 4 128 12 4 6 1 2 1305 40 8 21 8 60GeForce GTX 760 192 bit 25 Iyunya 2013 GK104 1536 3072 1152 96 24 823 888 5808 19 8 79 134 192 12 4 6 1 2 1896 79 14 6 130 OEMGeForce GTX 760 25 iyunya 2013 GK104 225 A2 2048 4096 1152 96 32 980 1033 6008 31 4 94 1 192 256 12 4 6 1 2 2258 94 1 13 3 170 249GeForce GTX 760 Ti Neizvestno GK104 2048 1344 112 32 915 980 6008 29 3 103 192 256 12 4 6 1 2 2460 103 14 5 170 OEMGeForce GTX 770 30 maya 2013 GK104 2048 4096 1536 128 32 1046 1085 7008 33 5 134 224 256 12 4 6 1 2 3213 134 14 0 230 399GeForce GTX 780 23 maya 2013 GK110 3072 2304 192 48 863 900 6008 41 4 166 288 384 12 4 6 1 2 3977 166 15 9 250 649GeForce GTX 780 Ti 7 noyabrya 2013 GK110 3072 2880 240 48 876 928 7000 42 0 210 336 384 12 4 6 1 2 5046 210 20 2 250 699GeForce GTX Titan 19 fevralya 2013 GK110 6144 2688 224 48 837 876 6008 40 2 188 288 384 12 4 6 1 2 4500 1500 18 0 250 999GeForce GTX Titan Black 1 marta 2014 GK110 6144 2880 240 48 889 980 7000 42 7 213 336 384 12 4 6 1 2 5121 1707 20 5 250 1100GeForce GTX Titan Z 8 maya 2014 2 GK110 2 6144 2 2880 240 48 705 876 7000 67 7 338 672 2 384 12 4 6 1 2 8122 2707 21 7 375 3000GeForce 900 Series Maxwell 2 0 1Unificirovannyh shejdernyh processorov Teksturnyh blokov Blokov rasterizacii 2 Skorost zapolneniya pikselej rasschityvaetsya umnozheniem kolichestva blokov rasterizacii angl Raster Operations Pipeline ROP na maksimalnuyu taktovuyu chastotu yadra 3 Skorost zapolneniya tekstur rasschityvaetsya umnozheniem kolichestva teksturnyh blokov angl Texture Mapping Unit TMU na maksimalnuyu taktovuyu chastotu yadra 4 Proizvoditelnost v FLOPS odinarnoj tochnosti 32 bita ravna proizvedeniyu kolichestva shejdernyh processorov i dvuh umnozhennomu na maksimalnuyu chastotu yadra FP32 USPs 2 GPU Clock speed 5 Proizvoditelnost v operaciyah nad 64 bitnymi chislami dlya chipov na baze Maxwell sostavlyaet 1 32 ot ego proizvoditelnosti pri rabote nad 32 bitnymi 6 SLI podderzhivaet podklyuchenie do 4 graficheskih processorov odinakovyh kart dlya konfiguracii 4 Way SLI To est 4 way SLI vklyuchaet podderzhku 3 way SLI i 2 way SLI odnako dvuhchipovye karty uzhe skonfigurirovany v 2 way SLI poetomu oni podderzhivayut 4 way SLI s odinakovymi dvuhchipovymi kartami no ne podderzhivaet 3 way SLI 7 V svyazi s otklyucheniem odnogo ili bolee bloka kesha L2 ROP blokov bez otklyucheniya kontrollerov pamyati iznachalno podklyuchennyh k otklyuchennym blokam pamyat byla segmentirovana Dlya dostizheniya pikovoj skorosti iz odnogo bloka dolzhno proizvoditsya chtenie v drugoj zapis 8 Videokarty serii GTX 950 980 TI Titan X vseh dochernih proizvoditelej Asus Gigabyte Zotac KFA Palit ne yavlyayutsya sredstvom shifrovaniya i kriptografii Ne mogut uchastvovat v postroenii stancij shifrovaniya 9 Yavlyaetsya innovacionnoj funkciej masshtabirovaniya obshaya grafika v kompyutere bolee moshnye tehnologii to NVIDIA SLI poluchit vygodu ot uvelicheniya propusknoj sposobnosti shiny arhitektury PCI ekspress resheniya oborudovanie i programmnoe obespechenie Intellektualnoe programmnoe obespechenie kotoroe pozvolyaet mnozhestvennye graficheskie processory NVIDIAModel Data Kodovoe imya Teh process nm Tranzis torov mln Ploshad yadra mm2 Kol vo GPU Interfejs Vvoda vyvoda Obyom video pamyati MB 7 Konfiguraciya yadra1 Chastoty Pikovaya skorost zapolneniya Pamyat Podderzhivaemyj API versiya Teoreticheskaya proizvo ditelnost FMA Gigaflops Giga flops Vt TDP Vt SLI6 Rekomen dovannaya cena USD yadro MHz maksi malnaya MHz pamyat Pikselej GP s 2 Tekstur GT s 3 Propu sknaya sposo bnost GB s 7 Tip Shina bit 7 DirectX OpenGL OpenCL Vulkan CUDA Shejder naya model FP324 FP645GeForce GTX 950 20 Avgusta 2015 GM206 250 A1 28 2940 228 1 PCIe 3 0 x16 2048 4096 768 48 32 1024 1188 6610 38 57 106 GDDR5 128 12 1 4 6 1 2 1 3 5 2 6 1 1825 57 20 2 90 2 way 159GeForce GTX 960 22 Yanvarya 2015 GM206 300 A1 2940 227 2048 4096 1024 64 32 1127 1178 7010 37 7 75 4 112 128 2413 75 4 20 1 120 2 way 199GeForce GTX 970 18 Sentyabrya 2014 GM204 200 A1 5200 398 3584 512 1664 104 56 1050 1178 7010 66 122 5 196 28 224 32 3920 122 5 27 145 3 way 329GeForce GTX 980 18 Sentyabrya 2014 GM204 400 A1 5200 398 4096 2048 128 64 1126 1216 7010 77 8 155 6 224 256 4981 155 6 30 2 165 4 way 549GeForce GTX 980 Ti 1 Iyunya 2015 GM200 310 A1 8000 601 6144 2816 176 96 1000 1076 7010 94 7 189 3 336 384 6060 189 4 24 2 250 4 way 649GeForce Titan X 27 Marta 2015 GM200 400 A1 8000 601 12288 3072 192 96 1000 1075 7010 103 2 206 4 336 384 6604 206 4 26 4 250 4 way 999GeForce 10 Series Pascal 1Unificirovannyh shejdernyh processorov Teksturnyh blokov Blokov rasterizacii 2 Skorost zapolneniya pikselej rasschityvaetsya umnozheniem kolichestva blokov rasterizacii angl Raster Operations Pipeline ROP na taktovuyu chastotu yadra V realnyh usloviyah taktovaya chastota yadra derzhitsya na maksimalnoj chastote no u 1000 Series videokart NVIDIA chastota yadra bez razgona mozhet prevyshat dazhe pasportnuyu maksimalnuyu chastotu maksimalnaya taktovaya chastota kol vo blokov rasterizacii 3 Skorost zapolneniya tekstur rasschityvaetsya umnozheniem kolichestva teksturnyh blokov angl Texture Mapping Unit TMU na taktovuyu chastotu yadra V realnyh usloviyah taktovaya chastota yadra derzhitsya na maksimalnoj chastote maksimalnaya taktovaya chastota kol vo blokov teksturnyh blokov 4 Proizvoditelnost v FLOPS odinarnoj tochnosti 32 bita ravna proizvedeniyu kolichestva shejdernyh processorov i dvuh umnozhennomu na maksimalnuyu chastotu yadra FP32 USPs 2 GPU Clock speed 5 Proizvoditelnost v FLOPS dvojnoj tochnosti 64 bit ravna 1 XXFP32 U xxxx V drugih videokartah na etoj arhitekture proizvoditelnost FP64 mozhet byt drugoj Model Data Kodovoe imya Teh process nm Tranzi storov mlrd Ploshad yadra mm2 Kol vo GPU Interfejs Vvoda vyvoda Obyom video pamyati MB 7 Konfigu raciya yadra1 Chastoty Pikovaya skorost zapolneniya Pamyat Podderzhivaemyj API versiya Teoreticheskaya proizvo ditelnost FMA Gigaflops Giga flops Vt TDP Vt SLI6 Rekomendo vannaya cena USD yadro MHz maksi malnaya MHz pamyat Pikselej giga GP s 2 Tekstur giga GT s 3 Propu sknaya sposob nost GB s 7 Tip Shina bit 7 DirectX OpenGL OpenCL Vulkan CUDA Shejdernaya model FP324 FP645GeForce GT 1030 DDR4 64bit 12 Marta 2018 GP108 310 A1 14 1 8 71 1 PCIe 3 0 x4 2048 384 24 16 1151 1379 2100 22 33 1 16 8 DDR4 64 12 1 4 6 1 2 1 3 6 1 6 1 1059 33 1 53 20 Ne podder zhivaetsya 79GeForce GT 1030 GDDR5 64bit 17 maya 2017 GP108 300 A1 1 8 71 2048 384 24 16 1227 1468 6000 23 4 35 2 48 GDDR5 64 1127 35 2 37 6 30 79GeForce GTX 1050 26 Oktyabrya 2016 GP107 300 A1 3 3 132 PCIe 3 0 x16 2048 640 40 32 1354 1455 7000 46 5 58 2 112 128 1862 58 2 24 8 75 109GeForce GTX 1050 3GB 21 Maya 2018 GP107 301 A1 3 3 132 3072 768 48 24 1392 1518 7000 36 4 73 84 96 2331 72 8 31 1 75GeForce GTX 1050 Ti 18 Oktyabrya 2016 GP107 400 A1 3 3 132 4096 768 48 32 1290 1392 7000 44 5 66 8 112 128 2138 66 8 28 5 75 139GeForce GTX 1060 19 Iyulya 2016 GP106 300 A1 GP106 400 A1 16 4 4 200 3072 6144 1152 72 48 1280 80 48 1506 1708 8000 9000 82 123 136 192 192 3935 4372 123 136 6 32 8 36 5 120 199 3GB 249 MSRP 299 FE GeForce GTX 1070 10 Iyunya 2016 GP104 200 A1 7 2 314 8192 1920 120 64 1506 1683 8000 107 202 256 256 6462 201 43 150 2 way HB 4 way obychnyj 379 MSRP 449 FE Posle anonsa 1080 Ti cena byla snizhena do 349 MSRP GeForce GTX 1070 Ti 2 noyabrya 2017 GP104 300 A1 7 2 314 8192 2432 152 64 1607 1683 8000 107 256 256 256 8186 256 45 5 180 449 MSRP i FE GeForce GTX 1080 27 Maya 2016 GP104 400 A1 7 2 314 8192 2560 160 64 1607 1733 10000 11000 111 277 320 352 GDDR5X 256 8873 277 3 49 3 180 599 MSRP 699 FE Posle anonsa 1080 Ti cena byla snizhena do 499 MSRP 599 FE GeForce GTX 1080 Ti 1 marta 2017 GP102 350 K1 A1 12 471 11264 3584 224 88 1480 1582 11008 139 354 484 352 11340 354 45 5 250 650 MSRP 700 FE Titan X 2 avgusta 2016 GP102 400 A1 12 471 12288 3584 224 96 1417 1531 10008 147 343 480 384 10974 343 44 250 1199 FE Titan Xp 6 aprelya 2017 GP102 450 A1 12 471 3840 240 96 1480 1582 11408 152 380 548 384 12150 380 48 6 250 1199 FE GeForce 16 Series Turing Model Data vyhoda Kodovoe imya Tranzis torov mlrd Ploshad yadra mm2 Teh process nm Interfejs shiny Obyom video pamyati MB Konfiguraciya yadra1 Taktovaya chastota Pikovaya skorost zapolneniya Pamyat Podderzhivaemyj API versiya Proiz voditel nost FMA GFLOPS Proiz vodi telnost FP32 Vt TDP Vatt SLI NVLink Cena USD yadra MGc Maksi malnaya MGc Pamyati MGc Pikselej2 GP s Tekstur3 GT s Propus knaya sposo bnost4 GB s Tip pamyati Razryad nost shiny bit DirectX OpenGL OpenCL Vulkan CUDA Shejd ernaya model FP325 FP646GeForce GTX 1650 23 aprelya 2019 TU117 4 7 200 12 PCIe 3 0 x16 4096 896 56 32 1485 1665 8000 53 3 93 2 128 GDDR5 GDDR6 128 12 1 4 6 1 2 1 3 7 5 6 5 2984 93 24 39 8 75 Net 150GeForce GTX 1650 Super 22 noyabrya 2019 TU116 6 6 284 4096 1280 80 32 1530 1785 12000 55 2 138 192 GDDR6 128 4416 138 0 44 1 100 159GeForce GTX 1660 14 marta 2019 TU116 6 6 284 6144 1408 88 48 1530 1785 8000 85 7 157 1 192 GDDR5 192 5027 157 1 41 9 120 220GeForce GTX 1660 Super 29 oktyabrya 2019 TU116 6 6 284 6144 1408 88 48 1530 1785 14000 85 68 157 1 336 GDDR6 192 5027 157 1 40 2 125 230GeForce GTX 1660 Ti 22 fevralya 2019 TU116 6 6 284 6144 1536 96 48 1500 1770 12000 85 0 169 9 288 GDDR6 192 5437 169 9 45 3 120 2801Unificirovannyh shejdernyh processorov Teksturnyh blokov Blokov rasterizacii 2 Skorost zapolneniya pikselej rasschityvaetsya umnozheniem kolichestva blokov rasterizacii angl Raster Operations Pipeline ROP na taktovuyu chastotu yadra V realnyh usloviyah taktovaya chastota yadra derzhitsya na maksimalnyh znacheniyah Boost maksimalnaya taktovaya chastota kol vo blokov rasterizacii 3 Skorost zapolneniya tekstur rasschityvaetsya umnozheniem kolichestva teksturnyh blokov angl Texture Mapping Unit TMU na taktovuyu chastotu yadra V realnyh usloviyah taktovaya chastota yadra derzhitsya na maksimalnyh znacheniyah Boost maksimalnaya taktovaya chastota kol vo teksturnyh blokov 4 Propusknaya sposobnost pamyati psp rasschityvaetsya po formule Chastota pamyati razryadnost shiny 8 8 perevodnoj koefficient iz bit v Bajty 5 Proizvoditelnost v FLOPS odinarnoj tochnosti 32 bita ravna proizvedeniyu kolichestva shejdernyh processorov i dvuh umnozhennomu na maksimalnuyu chastotu shejdera Esli ne ukazana maksimalnaya chastota shejdera umnozhajte na maksimalnuyu chastotu yadra FP32 USPs 2 GPU Clock speed 6 Proizvoditelnost v FLOPS dvojnoj tochnosti 64 bit ravna 1 XXFP32 U xxxx V drugih videokartah na etoj arhitekture proizvoditelnost FP64 mozhet byt drugoj GeForce 20 Series Turing Model Data vyhoda Kodovoe imya Tranzis torov mlrd Ploshad yadra mm2 Teh process nm Interfejs shiny Obyom video pamyati MB Konfiguraciya yadra1 Yadra Tensor Taktovaya chastota Pikovaya skorost zapolneniya Pamyat Podderzhivaemyj API versiya proiz voditel nost FMA GFLOPS proiz vodi telnost FP32 Vt TDP Vatt SLI NVLink Primechaniya Cena USD yadra MGc Maksi malnaya MGc Pamyati MGc Pikselej2 GP s Tekstur3 GT s Propus knaya sposo bnost4 GB s Tip pamyati Razryad nost shiny bit DirectX OpenGL OpenCL Vulkan CUDA Shejdernaya model FP325 FP646GeForce RTX 2060 15 Yanvarya 2019 TU106 200A KA A1 10 8 445 12 PCIe 3 0 x16 6144 1920 120 48 240 1365 1680 14000 65 5 163 8 336 GDDR6 192 12 1 4 6 3 0 1 3 7 5 6 7 5242 201 6 32 8 160 Ne podderzhivaetsya 349GeForce RTX 2060 12GB 7 Dekabrya 2021 TU106 300 KA A1 10 8 445 12288 2176 136 48 272 1470 1650 79 2 224 4 336 192 7181 224 4 38 8 185GeForce RTX 2060 Super 09 Iyulya 2019 TU106 410 A1 10 8 445 8192 2176 136 64 272 1470 1650 105 6 224 4 448 256 7181 224 4 41 175 399GeForce RTX 2070 17 Oktyabrya 2018 TU106 400 A1 TU106 400A A1 Founders edition 10 8 445 8192 2304 144 64 288 1410 1620 90 2 203 448 256 7465 233 3 37 1 185 499GeForce RTX 2070 Super 9 Iyulya 2019 TU104 410 A1 13 6 545 8192 2560 160 64 320 1610 1770 113 3 283 2 448 256 9062 283 2 42 1 215 Podderzhivaetsya NVLink 499GeForce RTX 2080 20 Sentyabrya 2018 TU104 400A A1 13 6 545 8192 2944 184 64 368 1515 1710 109 4 314 6 448 256 10068 314 6 46 8 215 699GeForce RTX 2080 Super 23 Iyulya 2019 TU104 450 A1 13 6 545 8192 3072 192 64 384 1650 1820 15496 116 2 348 5 495 9 256 11150 348 5 44 6 250 699GeForce RTX 2080 Ti 20 Sentyabrya 2018 TU102 300A K1 A1 18 6 754 11264 4352 272 88 544 1350 1545 14000 118 8 367 2 616 352 13448 420 2 53 8 250 999Titan RTX 18 Dekabrya 2018 TU102 18 6 754 24576 4608 288 96 576 1350 1770 14000 129 6 388 8 672 384 12442 509 8 44 4 280 24991Unificirovannyh shejdernyh processorov Teksturnyh blokov Blokov rasterizacii 2 Skorost zapolneniya pikselej rasschityvaetsya umnozheniem kolichestva blokov rasterizacii angl Raster Operations Pipeline ROP na taktovuyu chastotu yadra V realnyh usloviyah taktovaya chastota yadra derzhitsya na maksimalnyh znacheniyah Boost maksimalnaya taktovaya chastota kol vo blokov rasterizacii 3 Skorost zapolneniya tekstur rasschityvaetsya umnozheniem kolichestva teksturnyh blokov angl Texture Mapping Unit TMU na taktovuyu chastotu yadra V realnyh usloviyah taktovaya chastota yadra derzhitsya na maksimalnyh znacheniyah Boost maksimalnaya taktovaya chastota kol vo teksturnyh blokov 4 Propusknaya sposobnost pamyati psp rasschityvaetsya po formule Chastota pamyati razryadnost shiny 8 8 perevodnoj koefficient iz bit v Bajty 5 Proizvoditelnost v FLOPS odinarnoj tochnosti 32 bita ravna proizvedeniyu kolichestva shejdernyh processorov i dvuh umnozhennomu na maksimalnuyu chastotu shejdera Esli ne ukazana maksimalnaya chastota shejdera umnozhajte na maksimalnuyu chastotu yadra FP32 USPs 2 GPU Clock speed 6 Proizvoditelnost v FLOPS dvojnoj tochnosti 64 bit ravna 1 XXFP32 U xxxx V drugih videokartah na etoj arhitekture proizvoditelnost FP64 mozhet byt drugoj GeForce 30 Series Ampere Model Data vyhoda Kodovoe imya Tranzis torov mlrd Ploshad yadra mm2 Teh process nm Interfejs shiny Obyom video pamyati MB Konfiguraciya yadra1 Yadra Tensor Taktovaya chastota Pikovaya skorost zapolneniya Pamyat Podderzhivaemyj API versiya proiz voditel nost FMA GFLOPS proiz vodi telnost FP32 Vt TDP Vatt SLI NVLink Primechaniya Cena USD yadra MGc Maksi malnaya MGc Pamyati MGc Pikselej2 GP s Tekstur3 GT s Propus knaya sposo bnost4 GB s Tip pamyati Razryad nost shiny bit DirectX OpenGL OpenCL Vulkan CUDA Shejdernaya model FP325 FP646GeForce RTX 3050 4GB 27 Yanvarya 2022 GA107 140 A1 8 7 200 8 PCIe 4 0 x8 4096 2304 72 32 72 1510 1760 14000 55 68 125 3 224 GDDR6 128 12 1 4 6 3 0 1 3 8 6 6 7 8018 125 3 61 7 130 Ne podderzhivaetsya 199GeForce RTX 3050 8GB 27 Yanvarya 2022 GA106 150 KA A1 12 276 8192 2560 80 32 80 1550 1780 14000 56 86 142 2 224 GDDR6 128 9098 142 2 70 130 249GeForce RTX 3060 12 Yanvarya 2021 GA106 302 A1 12 276 PCIe 4 0 x16 8192 12288 3584 112 48 112 1320 1780 15000 85 3 199 240 360 GDDR6 128 192 12740 199 75 170 329GeForce RTX 3060 Ti 1 Dekabrya 2020 GA104 200 A1 17 4 392 8192 4864 152 80 152 1410 1670 14000 19000 133 2 253 1 448 608 3 GDDR6 GDDR6X 256 16200 253 1 81 220 399GeForce RTX 3070 15 Oktyabrya 2020 GA104 300 A1 17 4 392 8192 5888 184 96 184 1500 1730 14000 165 6 317 4 448 GDDR6 256 20310 317 4 92 3 220 499GeForce RTX 3070 Ti 31 Maya 2021 GA104 400 A1 17 4 392 8192 6144 192 96 192 1580 1770 19000 169 9 339 8 608 3 GDDR6X 256 21750 339 8 75 290 599GeForce RTX 3080 10GB 17 Sentyabrya 2020 GA102 200 KD A1 28 3 628 10240 8704 272 96 272 1440 1710 19000 164 2 465 1 760 3 GDDR6X 320 29770 465 1 93 320 699GeForce RTX 3080 12GB 8 Yanvarya 2022 GA102 220 A1 28 3 628 12288 8960 280 96 280 1260 1710 19000 164 2 478 8 912 4 GDDR6X 384 30640 478 8 87 5 350 799GeForce RTX 3080 Ti 31 Maya 2021 GA102 225 A1 28 3 628 12288 10240 320 112 320 1370 1670 19000 186 5 532 8 912 4 GDDR6X 384 34100 532 8 97 4 350 1199GeForce RTX 3090 24 Sentyabrya 2020 GA102 300 A1 28 3 628 24576 10496 328 112 328 1400 1700 19500 189 8 556 936 2 GDDR6X 384 35580 556 101 6 350 Podderzhivaetsya NVLink 1499GeForce RTX 3090 Ti 29 Marta 2022 GA102 350 A1 28 3 628 24576 10752 336 112 336 1560 1860 21000 208 3 625 1008 GDDR6X 384 40000 625 88 9 450 19991Unificirovannyh shejdernyh processorov Teksturnyh blokov Blokov rasterizacii 2 Skorost zapolneniya pikselej rasschityvaetsya umnozheniem kolichestva blokov rasterizacii angl Raster Operations Pipeline ROP na taktovuyu chastotu yadra V realnyh usloviyah taktovaya chastota yadra derzhitsya na maksimalnyh znacheniyah Boost maksimalnaya taktovaya chastota kol vo blokov rasterizacii 3 Skorost zapolneniya tekstur rasschityvaetsya umnozheniem kolichestva teksturnyh blokov angl Texture Mapping Unit TMU na taktovuyu chastotu yadra V realnyh usloviyah taktovaya chastota yadra derzhitsya na maksimalnyh znacheniyah Boost maksimalnaya taktovaya chastota kol vo teksturnyh blokov 4 Propusknaya sposobnost pamyati psp rasschityvaetsya po formule Chastota pamyati razryadnost shiny 8 8 perevodnoj koefficient iz bit v Bajty 5 Proizvoditelnost v FLOPS odinarnoj tochnosti 32 bita ravna proizvedeniyu kolichestva shejdernyh processorov i dvuh umnozhennomu na maksimalnuyu chastotu shejdera Esli ne ukazana maksimalnaya chastota shejdera umnozhajte na maksimalnuyu chastotu yadra FP32 USPs 2 GPU Clock speed 6 Proizvoditelnost v FLOPS dvojnoj tochnosti 64 bit ravna 1 XXFP32 U xxxx V drugih videokartah na etoj arhitekture proizvoditelnost FP64 mozhet byt drugoj GeForce 40 Series Ada Lovelace Model Data vyhoda Kodovoe imya Tranzis torov mlrd Ploshad yadra mm2 Teh process nm Interfejs shiny Obyom video pamyati MB Konfiguraciya yadra1 Yadra Tensor Taktovaya chastota Pikovaya skorost zapolneniya Pamyat Podderzhivaemyj API versiya proiz voditel nost FMA GFLOPS proiz vodi telnost FP32 Vt TDP Vatt SLI NVLink Primechaniya Cena USD yadra MGc Maksi malnaya MGc Pamyati MGc Pikselej2 GP s Tekstur3 GT s Propus knaya sposo bnost4 GB s Tip pamyati Razryad nost shiny bit DirectX OpenGL OpenCL Vulkan CUDA Shejdernaya model FP325 FP646GeForce RTX 4060 29 Iyunya 2023 AD107 400 A1 18 9 159 5 PCIe 4 0 x8 8192 3072 96 48 96 1830 2460 17000 118 1 236 2 272 GDDR6 128 12 1 4 6 3 0 1 3 8 9 6 7 15110 236 2 131 4 115 Ne podderzhivaetsya 299GeForce RTX 4060 Ti 24 Maya 2023 AD106 350 A1 8GB AD106 351 A1 16GB 22 9 188 8192 16384 4352 136 48 136 2310 2540 18000 121 7 344 8 288 GDDR6 128 22060 344 8 137 9 133 7 160 165 399 499GeForce RTX 4070 13 Aprelya 2023 AD104 250 A1 35 8 294 PCIe 4 0 x16 12288 5888 184 64 184 1920 2480 21000 158 4 455 4 504 2 GDDR6X 192 29150 455 4 145 7 200 599GeForce RTX 4070 Ti 5 Yanvarya 2023 AD104 400 A1 35 8 294 12288 7680 240 80 240 2310 2610 21000 208 8 626 4 504 2 GDDR6X 192 40090 626 4 140 6 285 799GeForce RTX 4080 16 Noyabrya 2022 AD103 300 A1 45 9 379 16384 9728 304 112 304 2210 2510 22400 280 6 761 5 716 8 GDDR6X 256 48740 761 5 152 3 320 1199GeForce RTX 4090 12 Oktyabrya 2022 AD102 300 A1 76 3 609 24576 16384 512 176 512 2230 2520 21000 443 5 1290 1008 GDDR6X 384 82580 1290 183 5 450 1599Unificirovannyh shejdernyh processorov Teksturnyh blokov Blokov rasterizacii 2 Skorost zapolneniya pikselej rasschityvaetsya umnozheniem kolichestva blokov rasterizacii angl Raster Operations Pipeline ROP na taktovuyu chastotu yadra V realnyh usloviyah taktovaya chastota yadra derzhitsya na maksimalnyh znacheniyah Boost maksimalnaya taktovaya chastota kol vo blokov rasterizacii 3 Skorost zapolneniya tekstur rasschityvaetsya umnozheniem kolichestva teksturnyh blokov angl Texture Mapping Unit TMU na taktovuyu chastotu yadra V realnyh usloviyah taktovaya chastota yadra derzhitsya na maksimalnyh znacheniyah Boost maksimalnaya taktovaya chastota kol vo teksturnyh blokov 4 Propusknaya sposobnost pamyati psp rasschityvaetsya po formule Chastota pamyati razryadnost shiny 8 8 perevodnoj koefficient iz bit v Bajty 5 Proizvoditelnost v FLOPS odinarnoj tochnosti 32 bita ravna proizvedeniyu kolichestva shejdernyh processorov i dvuh umnozhennomu na maksimalnuyu chastotu shejdera Esli ne ukazana maksimalnaya chastota shejdera umnozhajte na maksimalnuyu chastotu yadra FP32 USPs 2 GPU Clock speed 6 Proizvoditelnost v FLOPS dvojnoj tochnosti 64 bit ravna 1 XXFP32 U xxxx V drugih videokartah na etoj arhitekture proizvoditelnost FP64 mozhet byt drugoj Tablica vychislitelnyh vozmozhnostej compute capability Compute capability version GPUs1 0 G801 1 G86 G84 G98 G96 G96b G94 G94b G92 G92b1 2 GT218 GT216 GT2151 3 GT200 GT200b2 0 GF100 GF1102 1 GF108 GF106 GF104 GF114 GF1163 0 GK107 GK106 GK1043 5 GK110 GK2085 0 GM108 GM1075 2 GM200 GM204 GM2065 3 GM20B6 0 GP1006 1 GP102 GP104 GP106 GP107 GP1086 2 GP10B7 0 GV1007 2 GV10B7 5 TU102 TU104 TU1068 0 GA1008 6 GA102 GA104 GA106 GA1078 9 AD102 AD103 AD104 AD106 AD107 Podrobnee na stranice CUDA Sravnitelnaya tablica mobilnye graficheskie processoryGeForce 2 Go series GeForce 2 Go series dlya noutbukov 1Vershinnyh shejderov Pikselnyh shejderov Teksturnyh blokov Blokov rasterizaciiModel Data Kodovoe imya Teh process nm Interfejs Vvoda vyvoda Obyom videopamyati MB yadro MHz pamyat MHz Konfiguraciya yadra 1 Pikovaya skorost zapolneniya Pamyat Podderzhivaemyj API versiya TDP Vt Zametki giga pikselej s giga tekselej s Propusknaya sposobnost GB s Tip Shina bit DirectX OpenGLGeForce 2 Go 100 2001 NV11M 180 AGP x4 16 125 333 0 2 4 2 0 5 0 25 1 332 SDR DDR 32 7 1 2GeForce 2 Go 200 2001 NV11M 180 AGP x4 32 143 333 0 2 4 2 0 572 0 286 2 664 SDR DDR 64 7 1 2GeForce 2 Go 2001 NV11M 180 AGP x4 64 143 333 0 2 4 2 0 572 0 286 2 664 DDR SDR 64 128 7 1 2 2 8GeForce 4 Go series GeForce 4 Go series dlya noutbukov 1Vershinnyh shejderov Pikselnyh shejderov Teksturnyh blokov Blokov rasterizaciiModel Data Kodovoe imya Teh process nm Interfejs Vvoda vyvoda Obyom videopamyati MB yadro MHz pamyat MHz Konfiguraciya yadra 1 Pikovaya skorost zapolneniya Pamyat Podderzhivaemyj API versiya TDP Vt Zametki giga pikselej s giga tekselej s Propusknaya sposobnost GB s Tip Shina bit DirectX OpenGLGeForce 4 420 Go 2002 NV18M 150 AGP x8 32 190 400 0 2 4 2 0 76 0 38 3 2 DDR 64 7 1 2GeForce 4 440 Go 2002 NV18M 150 AGP x8 64 220 400 0 2 4 2 0 88 0 44 6 4 DDR 128 7 1 2GeForce 4 460 Go 2002 NV18M 150 AGP x8 64 250 500 0 2 4 2 1 0 5 8 DDR 128 7 1 2GeForce 4 4200 Go 2002 NV28M 150 AGP x8 64 200 400 2 4 8 4 1 6 0 8 6 4 DDR 128 8 1 1 5GeForce FX Go 5 Go 5xxx series GeForce FX Go 5 series dlya noutbukov 1Vershinnyh shejderov Pikselnyh shejderov Teksturnyh blokov Blokov rasterizacii NV31 NV34 i NV36 ispolzuyut 2x2 konvejernyj dizajn vypolnyaya verteksnyj shejder v ostalnyh sluchayah ispolzuyut 4x1 konvejernyj dizajn GeForce FX series imeyut ogranichennuyu podderzhku OpenGL 2 1 s poslednim drajverom Windows XP vypushennym dlya etogo 175 19 Model Data Kodovoe imya Teh process nm Interfejs Vvoda vyvoda Obyom videopamyati MB yadro MHz pamyat MHz Konfiguraciya yadra 1 Pikovaya skorost zapolneniya Pamyat Podderzhivaemyj API versiya TDP Vt Zametki giga pikselej s giga tekselej s Propusknaya sposobnost GB s Tip Shina bit DirectX OpenGLapparatno drajverom programmno GeForce FX Go 5100 Mart 2003 NV34M 150 AGP x8 64 300 600 1 2 2 2 4 4 4 1 2 1 2 4 8 DDR 128 9 0 1 5 2 1 GeForce FX Go 5200 Mart 2003 NV34M 150 AGP x8 128 300 600 1 2 2 2 4 4 4 1 2 1 2 9 6 DDR 128 9 0 1 5 2 1 GeForce FX Go 5600 Mart 2003 NV31M 130 AGP x8 128 350 600 1 2 2 2 4 4 4 1 4 1 4 9 6 DDR 128 9 0 1 5 2 1 GeForce FX Go 5650 Mart 2003 NV31M 130 AGP x8 128 350 600 1 2 2 2 4 4 4 1 4 1 4 9 6 DDR 128 9 0 1 5 2 1 GeForce FX Go 5700 1 fevralya 2005 NV36M 130 AGP x8 32 450 550 3 2 2 2 4 4 4 1 8 1 8 8 8 DDR 128 9 0 1 5 2 1 GeForce Go 6 Go 6xxx series GeForce Go 6 series dlya noutbukov 1Vershinnyh shejderov Pikselnyh shejderov Teksturnyh blokov Blokov rasterizacii 2 Dlya graficheskoj karty podderzhivayushej TurboCache v razmer pamyati vhodit polnaya pamyat VRAM System RAM inache vhodit tolko VRAMModel Data Kodovoe imya Teh process nm Interfejs Vvoda vyvoda Obyom videopamyati MB yadro MHz pamyat MHz Konfiguraciya yadra 1 Pikovaya skorost zapolneniya Pamyat Podderzhivaemyj API versiya TDP Vt Zametki giga pikselej s giga tekselej s Propusknaya sposobnost GB s Tip Shina bit DirectX OpenGLGeForce Go 6100 nForce Go 4302 1 fevralya 2005 MCP51M 90 Hyper Transport Do 128 iz sistemnoj pamyati 425 Sistemnaya pamyat 1 2 2 1 0 425 0 85 Sistemnaya pamyat do propusknoj sposobnosti HT sistemnaya pamyat 64 128 9 0c 2 1GeForce Go 6150 nForce Go 4302 1 fevralya 2005 MCP51MV 90 Hyper Transport Do 128 iz sistemnoj pamyati 425 Sistemnaya pamyat 1 2 2 1 0 425 0 85 Sistemnaya pamyat do propusknoj sposobnosti HT sistemnaya pamyat 64 128 9 0c 2 1GeForce Go 62002 1 fevralya 2005 NV44MV 110 PCIe x16 32 300 600 3 4 4 4 1 2 1 2 4 8 DDR 64 9 0c 2 1 10GeForce Go 62502 1 fevralya 2005 NV44M1 110 PCIe x16 32 400 700 3 4 4 4 1 6 1 6 5 6 DDR 64 9 0c 2 1 10GeForce Go 64002 1 fevralya 2005 NV44M1 110 PCIe x16 64 400 700 3 4 4 4 1 6 1 6 5 6 DDR 64 9 0c 2 1GeForce Go 66002 29 sentyabrya 2005 NV43M 110 PCIe x16 256 375 100 4 8 8 8 3 3 11 2 GDDR2 128 9 0c 2 1GeForce Go 6800 25 fevralya 2005 NV42M 130 PCIe x16 256 300 700 1100 5 12 12 12 3 6 3 6 22 4 35 2 DDR2 GDDR3 256 9 0c 2 1GeForce Go 6800 Ultra 25 fevralya 2005 NV41M 130 PCIe x16 256 450 700 1100 5 12 12 12 5 4 5 4 22 4 35 2 DDR2 GDDR3 256 9 0c 2 1 89GeForce Go 7 Go 7xxx series GeForce Go 7 series dlya noutbukov 1Vershinnyh shejderov Pikselnyh shejderov Teksturnyh blokov Blokov rasterizacii 2 Dlya graficheskoj karty podderzhivayushej TurboCache v razmer pamyati vhodit polnaya pamyat VRAM System RAM inache vhodit tolko VRAMModel Data Kodovoe imya Teh process nm Interfejs Vvoda vyvoda Obyom videopamyati MB yadro MHz pamyat MHz Konfiguraciya yadra 1 Pikovaya skorost zapolneniya Pamyat Podderzhivaemyj API versiya TDP Vt Zametki giga pikselej s giga tekselej s Propusknaya sposobnost GB s Tip Shina bit DirectX OpenGLGeForce 7000M 1 fevralya 2006 MCP67MV 90 Hyper Transport Do 256 iz sistemnoj pamyati 350 sistemnaya pamyat 1 2 2 2 0 7 0 7 sistemnaya pamyat DDR2 64 128 9 0c 2 1GeForce 7150M 1 fevralya 2006 MCP67M 90 Hyper Transport Do 256 iz sistemnoj pamyati 425 sistemnaya pamyat 1 2 2 2 0 85 0 85 sistemnaya pamyat DDR2 64 128 9 0c 2 1GeForce Go 72002 Yanvar 2006 G72M 90 PCIe x16 64 450 700 3 4 4 1 0 45 1 8 2 8 GDDR3 32 9 0c 2 1GeForce Go 73002 Yanvar 2006 G72M 90 PCIe x16 128 256 512 350 700 3 4 4 2 0 7 1 4 5 60 GDDR3 64 9 0c 2 1GeForce Go 74002 Yanvar 2006 G72M 90 PCIe x16 64 256 450 900 3 4 4 2 0 9 1 8 7 20 GDDR3 64 9 0c 2 1GeForce Go 7600 Mart 2006 G73M 90 PCIe x16 256 512 450 1000 5 8 8 8 3 6 3 6 16 GDDR3 128 9 0c 2 1GeForce Go 7600 GT 2006 G73M 90 PCIe x16 256 500 1200 5 12 12 8 4 6 19 2 GDDR3 128 9 0c 2 1GeForce Go 7700 2006 G73 N B1 80 PCIe x16 512 450 1000 5 12 12 8 3 6 5 4 16 GDDR3 128 9 0c 2 1GeForce Go 7800 3 marta 2006 G70M 110 PCIe x16 256 400 1100 6 16 16 8 3 2 6 4 35 2 GDDR3 256 9 0c 2 1GeForce Go 7800 GTX Oktyabr 2005 G70M 110 PCIe x16 256 400 1100 8 24 24 16 6 4 9 6 35 2 GDDR3 256 9 0c 2 1 65GeForce Go 7900 GS Aprel 2006 G71M 90 PCIe x16 256 375 1000 7 20 20 16 6 7 5 32 0 GDDR3 256 9 0c 2 1 20GeForce Go 7900 GTX Aprel 2006 G71M 90 PCIe x16 256 512 500 1200 8 24 24 16 8 12 38 4 GDDR3 256 9 0c 2 1 45GeForce Go 7950 GTX Oktyabr 2006 G71M 90 PCIe x16 512 575 1400 8 24 24 16 9 2 13 8 44 8 GDDR3 256 9 0c 2 1 45GeForce 8M 8xxxM series GeForce 8M series dlya noutbukov 1Unificirovannyh shejdernyh processorov Teksturnyh blokov Blokov rasterizaciiModel Data Kodovoe imya Teh process nm Interfejs Vvoda vyvoda Obyom videopamyati MB Konfiguraciya yadra 1 chastoty Pikovaya skorost zapolneniya Pamyat Podderzhivaemyj API versiya Teoreticheskaya proizvoditelnost Gigaflops TDP Vt Zametkiyadro MHz shejdernyj blok MHz pamyat MHz giga pikselej s giga tekselej s Propusknaya sposobnost GB s Tip Shina bit DirectX OpenGLGeForce 8200M G Iyun 2008 MCP77MV MCP79MVL 80 Integrated PCIe 2 0 x16 Up to 256 from system memory 8 8 4 400 800 800 1066 system memory 1 6 3 2 12 8 17 056 DDR DDR2 64 10 0 3 2 19 2GeForce 8400M G Maj 2007 NB8M G86 80 PCIe x16 128 256 8 8 4 400 800 1200 1 6 3 2 6 4 DDR2 GDDR3 64 10 0 3 2 19 2 10GeForce 8400M GS Maj 2007 NB8M G86 80 PCIe x16 128 256 16 8 4 400 800 1200 1 6 3 2 6 4 DDR2 GDDR3 64 10 0 3 2 38 4 11GeForce 8400M GT Maj 2007 NB8M G86 80 PCIe x16 256 512 16 8 4 450 900 1200 1 8 3 6 19 2 DDR2 GDDR3 128 10 0 3 2 43 2 14GeForce 8600M GS Maj 2007 NB8P G86 80 PCIe x16 256 512 16 8 4 600 1200 1400 2 4 4 8 22 4 DDR2 GDDR3 128 10 0 3 2 57 6 20GeForce 8600M GT Maj 2007 NB8P G84 80 PCIe x16 256 512 32 16 8 475 950 800 1400 3 8 7 6 12 8 22 4 DDR2 GDDR3 128 10 0 3 2 91 2 20GeForce 8700M GT 12 iyun 2007 NB8P G84 80 PCIe x16 256 512 32 16 8 625 1250 1600 5 10 25 6 GDDR3 128 10 0 3 2 120 29GeForce 8800M GTS Noyabr 2007 NB8P G92 65 PCIe 2 0 x16 512 64 32 16 500 1250 1600 8 16 51 2 GDDR3 256 10 0 3 2 240 50GeForce 8800M GTX Noyabr 2007 NB8P G92 65 PCIe 2 0 x16 512 96 48 16 500 1250 1600 8 24 51 2 GDDR3 256 10 0 3 2 360 65GeForce 9M 9xxxM series GeForce 9M series dlya noutbukov 1Unificirovannyh shejdernyh processorov Teksturnyh blokov Blokov rasterizaciiModel Data Kodovoe imya Teh process nm Interfejs Vvoda vyvoda Obyom videopamyati MB Konfiguraciya yadra 1 chastoty Pikovaya skorost zapolneniya Pamyat Podderzhivaemyj API versiya Teoreticheskaya proizvoditelnost Gigaflops TDP Vt Zametkiyadro MHz shejdernyj blok MHz pamyat MHz giga pikselej s giga tekselej s Propusknaya sposobnost GB s Tip Shina bit DirectX OpenGLGeForce 9100M G mGPU 2008 MCP77MH MCP79MH 65 Integrated PCIe 2 0 x16 Do 256 iz sistemnoj pamyati 8 8 4 450 1100 1066 sistemnaya pamyat 1 8 3 6 17 056 DDR3 128 10 0 3 2 26 4 12 Sravnima s 8400M GGeForce 9200M GS 2008 NB9M GE G98 65 PCIe 2 0 x16 256 8 8 4 550 1300 1400 2 2 4 4 11 2 DDR2 GDDR3 64 10 0 3 2 31 2 13GeForce 9300M G 2008 NB9M GE G86 80 PCIe 2 0 x16 256 512 16 8 4 400 800 1200 1 6 3 2 9 6 DDR2 GDDR3 64 10 0 3 2 38 4 13GeForce 9300M GS 2008 NB9M GE G98 65 PCIe 2 0 x16 256 512 8 4 4 550 1400 1400 2 2 2 2 11 2 DDR2 GDDR3 64 10 0 3 2 33 6 13GeForce 9400M G 15 oktyabrya 2008 MCP79MX 65 Integrated PCIe 2 0 x16 Do 256 iz sistemnoj pamyati 16 8 4 450 1100 800 1066 sistemnaya pamyat 1 8 3 6 12 8 17 056 DDR2 DDR3 128 10 0 3 2 54 12 PureVideo HD s VP3 GeForce 9400M ispolzuetsya v sistemah Apple i Nvidia IONGeForce 9500M G 2008 NB9P G96 65 PCIe 2 0 x16 512 16 8 8 500 1250 1600 4 4 25 6 DDR2 GDDR3 128 10 0 3 2 60 20GeForce 9500M GS 2008 NB9P GV G96 80 PCIe x16 512 32 16 8 475 950 1400 3 8 7 6 22 4 DDR2 GDDR3 128 10 0 3 2 91 2 20 Rebranded 8600M GTGeForce 9600M GS 2008 NB9P GE2 G96 65 PCIe 2 0 x16 1024 32 16 8 430 1075 800 1600 3 44 6 88 12 8 25 6 DDR2 GDDR3 128 10 0 3 2 103 2 20GeForce 9600M GT 2008 NB9P GS G96 65 PCIe 2 0 x16 512 1024 32 16 8 500 1250 1600 4 8 25 6 DDR2 GDDR3 128 10 0 3 2 120 23GeForce 9650M GS 2008 NB9P GS1 G84 80 PCIe 2 0 x16 512 32 16 8 625 1250 1600 5 10 25 6 GDDR3 128 10 0 3 2 120 29 Pereimenovannaya 8700M GTGeForce 9650M GT 2008 NB9P GT G96 65 55 PCIe 2 0 x16 1024 32 16 8 550 1325 1600 4 4 8 8 25 6 GDDR3 128 10 0 3 2 127 2 23GeForce 9700M GT 29 iyulya 2008 NB9E GE G96 65 PCIe x16 512 32 16 8 625 1550 1600 5 10 25 6 GDDR3 128 10 0 3 2 148 8 45GeForce 9700M GTS 29 iyulya 2008 NB9E GS G94 65 PCIe 2 0 x16 512 48 24 16 530 1325 1600 8 48 12 7 51 2 GDDR3 256 10 0 3 2 190 8 60GeForce 9800M GS 1 dekabrya 2008 NB9E GT G94 65 PCIe 2 0 x16 512 64 32 16 530 1325 1600 8 48 16 96 51 2 GDDR3 256 10 0 3 2 254 60 otnositelno 9800M GTS snizheny chastotyGeForce 9800M GTS 29 iyulya 2008 NB9E GT 1 65 55 PCIe 2 0 x16 512 1024 64 32 16 600 1500 1600 9 6 19 2 51 2 GDDR3 256 10 0 3 2 288 75GeForce 9800M GT 29 iyulya 2008 NB9E GT2 G92 65 55 PCIe 2 0 x16 512 96 48 16 500 1250 1600 8 24 51 2 GDDR3 256 10 0 3 2 360 65 Pereimenovannaya 8800M GTXGeForce 9800M GTX 29 iyulya 2008 NB9E GTX G92 65 PCIe 2 0 x16 1024 112 56 16 500 1250 1600 8 28 51 2 GDDR3 256 10 0 3 2 420 75GeForce 100M 1xxM series GeForce 100M series dlya noutbukov 1Unificirovannyh shejdernyh processorov Teksturnyh blokov Blokov rasterizacii 2 103M 105M 110M 130M pereimenovannye GPU to est ispolzuyutsya te zhe samye yadra GPU predydushego pokoleniya 9M s obeshannoj optimizaciej na drugih osobennostyahModel Data Kodovoe imya Teh process nm Interfejs Vvoda vyvoda Obyom videopamyati MB Konfiguraciya yadra 1 chastoty Pikovaya skorost zapolneniya Pamyat Podderzhivaemyj API versiya Teoreticheskaya proizvoditelnost Gigaflops TDP Vt Zametkiyadro MHz shejdernyj blok MHz pamyat MHz giga pikselej s giga tekselej s Propusknaya sposobnost GB s Tip Shina bit DirectX OpenGLGeForce G 102M 8 yanvarya 2009 MCP79XT 65 integrirovannyj PCIe 1 0 x16 512 16 8 4 450 1000 800 sistemnaya pamyat 1 8 3 6 6 4 DDR2 64 10 0 2 1 48 14 osnovyvaetsya na 9400M GGeForce G 103M 1 yanvarya 2009 N10M GE1 G98 65 PCIe 2 0 x16 512 8 8 4 640 1600 1000 2 56 5 12 8 DDR2 64 10 0 2 1 38 14 pereimenovannaya GeForce G 105MGeForce G 105M 8 yanvarya 2009 N10M GE1 G98 65 PCIe 2 0 x16 512 8 8 4 640 1600 1000 1400 2 56 5 12 8 11 GDDR2 GDDR3 64 10 0 2 1 38 14 sravnima s GeForce 9300M GSGeForce G 110M 8 yanvarya 2009 N10M GE1 G96b 65 PCIe 2 0 x16 1024 16 8 4 400 1000 1000 1400 1 6 3 2 8 11 DDR2 GDDR3 64 10 0 3 2 48 14GeForce GT 120M 11 fevralya 2009 N10P GV1 G96b 55 PCIe 2 0 x16 1024 32 16 8 500 1250 1000 4 8 16 DDR2 128 10 0 3 2 110 23 sopostavima s 9500M GT and 9600M GT DDR2 500 1250 800 GeForce GT 130M 8 yanvarya 2009 N10P GE1 G96b 55 PCIe 2 0 x16 1024 32 16 8 600 1500 1000 1600 4 8 9 6 16 25 6 DDR2 GDDR3 128 10 0 3 2 144 23 sopostavima s 9650M GTGeForce GTS 150M 3 marta 2009 N10E GE1 G94b 55 PCIe 2 0 x16 1024 64 32 16 400 1000 1600 6 4 12 8 51 2 GDDR3 256 10 0 3 2 192GeForce GTS 160M 3 marta 2009 N10E GS1 G94b 55 PCIe 2 0 x16 1024 64 32 16 600 1500 1600 9 6 19 2 51 2 GDDR3 256 10 0 3 2 288 60GeForce 200M 2xxM series GeForce 200M series dlya noutbukov 1Unificirovannyh shejdernyh processorov Teksturnyh blokov Blokov rasterizaciiModel Data Kodovoe imya Teh process nm Interfejs Vvoda vyvoda Obyom videopamyati MB Konfiguraciya yadra 1 chastoty Pikovaya skorost zapolneniya Pamyat Podderzhivaemyj API versiya Teoreticheskaya proizvoditelnost Gigaflops TDP Vt Zametkiyadro MHz shejdernyj blok MHz pamyat MHz giga pikselej s giga tekselej s Propusknaya sposobnost GB s Tip Shina bit DirectX OpenGLGeForce G210M 15 iyunya 2009 GT218 40 PCIe 2 0 x16 512 16 8 4 625 1500 1600 2 5 5 12 8 GDDR3 64 10 1 3 2 72 14GeForce GT 220M 16 avgusta 2009 G96b 55 PCIe 2 0 x16 1024 32 16 8 500 1250 1000 1600 4 8 16 25 6 DDR2 GDDR3 128 10 0 3 2 120 14GeForce GT 230M 15 iyunya 2009 GT216 40 PCIe 2 0 x16 1024 48 16 8 500 1100 1600 4 8 25 6 GDDR3 128 10 1 3 2 158 23GeForce GT 240M 15 iyunya 2009 GT216 40 PCIe 2 0 x16 1024 48 16 8 550 1210 1600 4 4 8 8 25 6 GDDR3 128 10 1 3 2 174 23GeForce GTS 250M 15 iyunya 2009 GT215 40 PCIe 2 0 x16 1024 96 32 8 500 1250 3200 4 16 51 2 GDDR5 128 10 1 3 2 360 28GeForce GTS 260M 15 iyunya 2009 GT215 40 PCIe 2 0 x16 1024 96 32 8 550 1375 3600 4 4 17 6 57 6 GDDR5 128 10 1 3 2 396 38GeForce GTX 260M 3 marta 2009 G92b 55 PCIe 2 0 x16 1024 112 56 16 550 1375 1900 8 8 30 8 60 8 GDDR3 256 10 0 3 2 462 65GeForce GTX 280M 3 marta 2009 G92b 55 PCIe 2 0 x16 1024 128 64 16 585 1463 1900 9 36 37 44 60 8 GDDR3 256 10 0 3 2 562 75GeForce GTX 285M Fevral 2009 G92b 55 PCIe 2 0 x16 1024 128 64 16 600 1500 2040 9 6 38 4 65 28 GDDR3 256 10 0 3 2 576 75GeForce 300M 3xxM series GeForce 300M series dlya noutbukov 1Unificirovannyh shejdernyh processorov Teksturnyh blokov Blokov rasterizacii 2 Kazhdyj potokovyj multiprocessor SM v GPU arhitektury G80 GT200 soderzhit 8 shejdernyh processorov SP i 2 bloka specializirovannyh funkcij SFU Kazhdyj SP mozhet vypolnyat do dvuh operacij MAD ADD MUL odinarnoj tochnosti za takt a kazhdyj SFU do chetyryoh operacij za takt eti bloki takzhe mogut obrabatyvat odno umnozhenie odinarnoj tochnosti s plavayushej zapyatoj za takt Pikovoe sootnoshenie operacij vypolnyaemymi SP k operaciyam vypolnyaemymi SFU 2 1 Teoreticheskaya summarnaya proizvoditelnost FLOPSsp sfu GFLOPS blokov SP i SFU rasschityvaetsya po formule FLOPSsp sfu f n 3 gde n kolichestvo SP f GHz ih chastota Analogichnaya formula FLOPSsp sfu f m 8 SPs 2 MAD 4 2 SFUs gde m kolichestvo SM Model Data Kodovoe imya Teh process nm Interfejs Vvoda vyvoda Obyom videopamyati MB Konfiguraciya yadra 1 chastoty Pikovaya skorost zapolneniya Pamyat Podderzhivaemyj API versiya Teoreticheskaya proizvoditelnost2 Gigaflops TDP Vt Zametkiyadro MHz shejdernyj blok MHz pamyat MHz giga pikselej s giga tekselej s Propusknaya sposobnost GB s Tip Shina bit DirectX OpenGLGeForce 305M 10 yanvarya 2010 GT218 40 PCIe 2 0 x16 512 16 8 4 525 1150 1400 2 1 4 2 11 2 DDR3 GDDR3 64 10 1 3 2 55 14GeForce 310M 10 yanvarya 2010 GT218 40 PCIe 2 0 x16 512 16 8 4 625 1530 1600 2 5 5 12 8 DDR3 GDDR3 64 10 1 3 2 73 14GeForce 315M 5 yanvarya 2011 GT218 40 PCIe 2 0 x16 512 16 8 4 606 1212 1600 2 42 4 85 12 8 DDR3 GDDR3 64 10 1 3 3 58 18 14GeForce 320M 1 aprelya 2010 MCP89 40 Integrated PCIe 2 0 x16 vydelennaya pamyat 256 iz sistemnoj pamyati 1595 48 16 8 450 950 1066 3 6 7 2 17 056 DDR3 128 10 1 3 2 136 8 20GeForce GT 320M 21 yanvarya 2010 GT216 40 PCIe 2 0 x16 1024 24 8 8 500 1100 790 4 4 25 3 DDR3 GDDR3 128 10 1 3 2 90 14GeForce GT 325M 10 yanvarya 2010 GT216 40 PCIe 2 0 x16 1024 48 16 8 450 990 1600 3 6 7 2 25 6 DDR3 GDDR3 128 10 1 3 2 142 23GeForce GT 330M 10 yanvarya 2010 GT216 40 PCIe 2 0 x16 1024 48 16 8 575 1265 1600 4 6 9 2 25 6 DDR3 GDDR3 128 10 1 3 2 182 23GeForce GT 335M 7 yanvarya 2010 GT215 40 PCIe 2 0 x16 1024 72 24 8 450 1080 1600 3 6 10 8 25 6 DDR3 GDDR3 128 10 1 3 2 233 28 GeForce GTS 350M 7 yanvarya 2010 GT215 40 PCIe 2 0 x16 1024 96 32 8 500 1249 3200 4 16 51 2 DDR3 GDDR3 GDDR5 128 10 1 3 2 360 28GeForce GTS 360M 7 yanvarya 2010 GT215 40 PCIe 2 0 x16 1024 96 32 8 550 1436 3600 4 4 17 6 57 6 DDR3 GDDR3 GDDR5 128 10 1 3 2 413 38GeForce 400M 4xxM series GeForce 400M series dlya noutbukov 1Unificirovannyh shejdernyh processorov Teksturnyh blokov Blokov rasterizacii 2 Kazhdyj potokovyj multiprocessor SM v GPU arhitektury GF100 soderzhit 32 shejdernyh processora SP i 4 bloka specializirovannyh funkcij SFU Kazhdyj potokovyj multiprocessor SM v GPU arhitektury GF104 GF106 GF108 soderzhit 48 shejdernyh processorov SP i 8 blokov specializirovannyh funkcij SFU Kazhdyj SP mozhet vypolnyat do dvuh operacij FMA Fused ADD MUL odinarnoj tochnosti za takt a kazhdyj SFU do chetyryoh operacij za takt Pikovoe sootnoshenie operacij vypolnyaemymi SP k operaciyam vypolnyaemymi SFU dlya GF100 SFU 4 1 dlya GF104 106 108 3 1 Teoreticheskaya proizvoditelnost FLOPSsp sfu GFLOPS blokov SP rasschityvaetsya po formule FLOPSsp f n 2 gde n kolichestvo SP f GHz ih chastota Analogichnaya formula dlya GF100 FLOPSsp f m 32 SPs 2 FMA dlya GF104 106 108 FLOPSsp f m 48 SPs 2 FMA gde m kolichestvo SM Polnuyu proizvoditelnost GPU mozhno rasschitat po formule dlya GF100 FLOPSsp f m 32 SPs 2 FMA 4 4 SFUs dlya GF104 106 108 FLOPSsp f m 48 SPs 2 FMA 4 8 SFUs ili dlya GF100 FLOPSsp f n 2 5 dlya GF104 106 108 FLOPSsp f n 8 3 3 Kazhdyj SM v GF100 takzhe soderzhit 4 bloka adresacii tekstur i 16 blokov filtracii tekstur Vsego dlya GF100 c 16 SM poluchaem 64 bloka adresacii tekstur i 256 blokov filtracii tekstur Kazhdyj SM v GF104 GF106 108 takzhe soderzhit 8 blokov adresacii tekstur i 32 bloka filtracii tekstur Kazhdyj SM v GF104 GF106 108 takzhe soderzhit na odin blok adresacii tekstur i 8 blokov filtracii tekstur Vsego dlya GF104 c 8 SM poluchaem 64 bloka adresacii tekstur i 512 blokov filtracii tekstur Vsego dlya GF106 c 4 SM poluchaem 32 bloka adresacii tekstur i 256 blokov filtracii tekstur Vsego dlya GF108 c 2 SM poluchaem 16 blokov adresacii tekstur i 128 blokov filtracii tekstur Model Data Kodovoe imya Teh process nm Interfejs Vvoda vyvoda Obyom videopamyati MB Konfiguraciya yadra 1 chastoty Pikovaya skorost zapolneniya Pamyat Podderzhivaemyj API versiya Teoreticheskaya proizvoditelnost2 Gigaflops TDP Vt Zametkiyadro MHz shejdernyj blok MHz pamyat MHz giga pikselej s giga tekselej s Propusknaya sposobnost GB s Tip Shina bit DirectX OpenGLGeForce GT 410M 5 yanvarya 2011 GF119 40 PCIe 2 0 x16 512 48 83 4 575 1150 1600 2 3 4 6 12 8 DDR3 64 11 0 4 1 110 4 12GeForce GT 415M 3 sentyabrya 2010 GF108 40 PCIe 2 0 x16 512 48 83 4 500 1000 1600 2 4 25 6 DDR3 128 11 0 4 1 96 lt 12GeForce GT 420M 3 sentyabrya 2010 GF108 40 PCIe 2 0 x16 1024 96 163 4 500 1000 1600 2 8 25 6 DDR3 128 11 0 4 1 192 10 23GeForce GT 425M 3 sentyabrya 2010 GF108 40 PCIe 2 0 x16 1024 96 163 4 560 1120 1600 2 24 8 96 25 6 DDR3 128 11 0 4 1 215 04 20 23GeForce GT 435M 3 sentyabrya 2010 GF108 40 PCIe 2 0 x16 1024 96 163 4 650 1300 1600 2 6 10 4 25 6 DDR3 128 11 0 4 1 249 6 32 35GeForce GT 445M 3 sentyabrya 2010 GF106 40 PCIe 2 0 x16 1024 1536 144 243 16 144 243 24 590 1180 1600 2500 9 44 14 16 14 16 25 6 60 DDR3 GDDR5 128 192 11 0 4 1 339 84 30 35GeForce GTX 460M 3 sentyabrya 2010 GF106 40 PCIe 2 0 x16 1536 192 323 24 675 1350 2500 16 2 21 6 60 GDDR5 192 11 0 4 1 518 4 45 50GeForce GTX 470M 3 sentyabrya 2010 GF104 40 PCIe 2 0 x16 1536 288 483 24 550 1100 2500 13 2 26 4 60 GDDR5 192 11 0 4 1 633 6 45 50GeForce GTX 480M 25 maya 2010 GF100 40 PCIe 2 0 x16 2048 352 443 32 425 850 2400 13 6 18 7 76 8 GDDR5 256 11 0 4 1 598 4 100GeForce GTX 485M 5 yanvarya 2011 GF104 40 PCIe 2 0 x16 2048 384 643 32 575 1150 3000 18 4 36 8 96 0 GDDR5 256 11 0 4 1 883 2 100GeForce 500M 5xxM series GeForce 500M series dlya noutbukov 1Unificirovannyh shejdernyh processorov Teksturnyh blokov Blokov rasterizaciiModel Data Kodovoe imya Teh process nm Interfejs Vvoda vyvoda Obyom videopamyati MB Konfiguraciya yadra 1 chastoty Pikovaya skorost zapolneniya Pamyat Podderzhivaemyj API versiya Teoreticheskaya proizvoditelnost2 Gigaflops TDP Vt Zametkiyadro MHz shejdernyj blok MHz pamyat MHz giga pikselej s giga tekselej s Propusknaya sposobnost GB s Tip Shina bit DirectX OpenGLGeForce GT 520M 5 yanvarya 2011 GF119 40 PCIe 2 0 x16 1024 48 8 4 740 1480 1600 2 96 5 92 12 8 DDR3 64 11 0 4 1 142 08 12GeForce GT 520MX 30 maya 2011 GF119 40 PCIe 2 0 x16 1024 48 8 4 900 1800 1800 3 6 7 2 14 4 DDR3 64 11 0 4 1 172 8 20GeForce GT 525M 5 yanvarya 2011 GF108 40 PCIe 2 0 x16 1024 96 16 4 600 1200 1800 2 4 9 6 28 8 DDR3 128 11 0 4 1 230 4 20 23GeForce GT 540M 5 yanvarya 2011 GF108 40 PCIe 2 0 x16 1024 96 16 4 672 1344 1800 2 688 10 752 28 8 DDR3 128 11 0 4 1 258 048 32 35GeForce GT 550M 5 yanvarya 2011 GF108 40 PCIe 2 0 x16 1024 96 16 4 740 1480 1800 2 96 11 84 28 8 DDR3 128 11 0 4 1 284 16 32 35GeForce GT 555M 5 yanvarya 2011 GF106 GF116 GF108 40 PCIe 2 0 x16 1536 2048 1024 144 24 16 144 24 16 96 16 4 590 650 753 1180 1300 1506 1800 1800 3138 14 6 10 4 3 14 6 15 6 12 43 2 28 8 50 2 DDR3 DDR3 GDDR5 192 128 128 11 0 4 2 339 84 374 4 289 15 30 35GeForce GTX 560M 30 maya 2011 GF116 40 PCIe 2 0 x16 1536 192 32 24 775 1550 2500 18 6 24 8 60 0 GDDR5 192 11 0 4 1 595 2 50GeForce GTX 570M 28 iyunya 2011 GF114 40 PCIe 2 0 x16 1536 336 56 24 575 1150 3000 13 8 32 2 72 0 GDDR5 192 11 0 4 1 772 8 75 100GeForce GTX 580M 28 iyunya 2011 GF114 40 PCIe 2 0 x16 2048 384 64 32 620 1240 3000 19 8 39 7 96 0 GDDR5 256 11 0 4 1 952 3 100GeForce 600M 6xxM series GeForce 600M series dlya noutbukov 1Unificirovannyh shejdernyh processorov Teksturnyh blokov Blokov rasterizacii 1 Model Data Kodovoe imya Tehprocess nm Interfejs Vvoda vyvoda Obyom videopamyati MB Konfiguraciya yadra1 Chastoty Pikovaya skorost zapolneniya Fillrate Pamyat Podderzhivaemyj API versiya Teoreticheskaya proizvoditelnost2 Gigaflops TDP Vatt Primechaniyayadro MHz shejdernyj blok MHz pamyat MHz Gigapikselej GP s Gigatekselej TP s propusknaya sposobnost GB s tip shina bit DirectX OpenGLGeForce 610M Dekabr 2011 GF119 N13M GE 40 PCIe 2 0 x16 1024 2048 48 8 4 900 1800 1800 3 6 7 2 14 4 DDR3 64 11 0 4 4 142 08 12 OEM Rebadged GT 520MXGeForce GT 620M Aprel 2012 GF117 N13M GS 28 PCIe 2 0 x16 1024 2048 96 16 4 625 1250 1800 2 5 10 14 4 28 8 DDR3 64 128 11 0 4 4 240 15 OEM Die Shrink GF108GeForce GT 625M Oktyabr 2012 GF117 N13M GS 28 PCIe 2 0 x16 1024 2048 96 16 4 625 1250 1800 2 5 10 14 4 DDR3 64 11 0 4 4 240 15 OEM Die Shrink GF108GeForce GT 630M Aprel 2012 GF108 N13P GL GF117 40 28 PCIe 2 0 x16 1024 2048 96 16 4 660 800 1320 1600 1800 4000 2 6 3 2 10 7 12 8 28 8 32 0 DDR3 GDDR5 128 64 11 0 4 4 258 0 307 2 33 GF108 OEM Rebadged GT 540M GF117 OEM Die Shrink GF108GeForce GT 635M Aprel 2012 GF106 N12E GE2 GF116 40 PCIe 2 0 x16 2048 1536 144 24 24 675 1350 1800 16 2 16 2 28 8 43 2 DDR3 128 192 11 0 4 4 289 2 388 8 35 GF106 OEM Rebadged GT 555M GF116 144 Unified ShadersGeForce GT 640M LE Mart 22 2012 GF108 GK107 N13P LP 40 28 PCIe 2 0 x16 PCIe 3 0 x16 1024 2048 96 16 4 384 32 16 762 500 1524 500 3130 1800 3 8 12 2 16 50 2 28 8 GDDR5 DDR3 128 11 0 4 4 292 6 384 32 20 GF108 Fermi GK107 Kepler Similar to Desktop GTX650GeForce GT 640M Mart 22 2012 GK107 N13P GS 28 PCIe 3 0 x16 1024 2048 384 32 16 625 625 1800 4000 10 20 28 8 64 0 DDR3 GDDR5 128 11 0 4 4 480 32 Kepler Similar to Desktop GTX650GeForce GT 645M Oktyabr 2012 GK107 N13P GS 28 PCIe 3 0 x16 1024 2048 384 32 16 710 710 1800 4000 11 36 22 72 28 8 64 0 DDR3 GDDR5 128 11 0 4 4 545 32 Kepler Similar to Desktop GTX650GeForce GT 650M Mart 22 2012 GK107 N13P GT 28 PCIe 3 0 x16 1024 2048 384 32 16 835 745 900 835 745 900 1800 4000 5000 13 4 11 9 14 4 26 7 23 8 28 8 28 8 64 0 80 0 DDR3 GDDR5 128 11 0 4 4 641 3 572 2 691 2 45 Kepler Similar to Desktop GTX650 GeForce GTX 660M Mart 22 2012 GK107 N13E GE 28 PCIe 3 0 x16 2048 384 32 16 835 835 5000 13 4 26 7 80 0 GDDR5 128 11 0 4 4 641 3 50 Kepler Similar to Desktop GTX650GeForce GTX 670M Aprel 2012 GF114 N13E GS1 LP 40 PCIe 2 0 x16 1536 3072 336 56 24 598 1196 3000 14 35 33 5 72 0 GDDR5 192 11 0 4 4 803 6 75 Rebadged GTX 570M Similar to Desktop GTX 560GeForce GTX 670MX Oktyabr 2012 GK104 N13E GR 28 PCIe 3 0 x16 1536 3072 960 80 24 600 600 2800 14 4 48 0 67 2 GDDR5 192 11 0 4 4 1152 75 Kepler architecture Similar to Desktop GTX 660GeForce GTX 675M Aprel2012 GF114 N13E GS1 40 PCIe 2 0 x16 2048 384 64 32 620 1240 3000 19 8 39 7 96 0 GDDR5 256 11 0 4 4 952 3 100 Rebadged GTX 580M Similar to Desktop GTX 560TiGeForce GTX 675MX Oktyabr 2012 GK104 N13E GSR 28 PCIe 3 0 x16 4096 960 80 32 600 600 3600 19 2 48 0 115 2 GDDR5 256 11 0 4 4 1152 100 Kepler architecture Similar to Desktop GTX 660GeForce GTX 680M Iyun 4 2012 GK104 N13E GTX 28 PCIe 3 0 x16 4096 1344 112 32 720 720 3600 23 80 6 115 2 GDDR5 256 11 0 4 4 1935 4 100 Kepler architecture Similar to Desktop GTX 670GeForce GTX 680MX Oktyabr 23 2012 GK104 28 PCIe 3 0 x16 4096 1536 128 32 720 720 5000 23 92 2 160 GDDR5 256 11 0 4 4 2234 3 100 Kepler architecture Similar to Desktop GTX 680GeForce 700M 7xxM series GeForce 700M series dlya noutbukov 1Unificirovannyh shejdernyh processorov Teksturnyh blokov Blokov rasterizacii 2 Pokazatel vychislitelnoj moshnosti poluchaetsya putyom umnozheniya taktovoj chastoty shejderov na kolichestvo yader i kolichestvo instrukcij kotoroe yadro sposobno vypolnyat za odin cikl Model Data vyhoda Kodovoe imya Teh process nm Interfejs shiny Obyom videopamyati MB Konfi guraciya yadra 1 Taktovaya chastota Pikovaya skorost zapolneniya Pamyat API podderzhka versiya Mosh nost 2 GFLOPS TDP Vatt Primech yadra MGc shej derov MGc Pamyati MGc Pikse lami GP s Teks turami GT s Propus knaya sposo bnost GB s Tip pamyati Razryad nost shiny bit DirectX OpenGLGeForce 710M Jan 2013 GF117 28 PCIe 2 0 x16 1024 2048 96 16 4 800 1600 1800 3 2 12 8 14 4 DDR3 64 11 0 4 4 307 2 12 OEM Podoben 530 i mobilnomu 620GeForce GT 720M April 1 2013 GF117 28 PCIe 2 0 x16 2048 96 16 4 938 1876 2000 3 8 15 0 16 0 DDR3 64 11 0 4 4 360 19 OEM Podoben 620 i mobilnym 625 630GeForce GT 730M Jan 2013 GK208 28 PCIe 3 0 x8 2048 384 32 8 719 719 2000 5 8 23 0 16 0 DDR3 128 11 0 4 4 552 2 Kepler podoben GT640GeForce GT 735M April 1 2013 GK208 28 PCIe 3 0 x8 2048 384 32 8 889 889 2000 7 11 28 4 16 0 DDR3 64 11 0 4 4 682 8 Kepler podoben GT640GeForce GT 740M April 1 2013 GK208 28 PCIe 3 0 x8 2048 384 32 8 980 980 1800 7 84 31 4 14 4 DDR3 64 11 0 4 4 752 6 Kepler podoben GT640GeForce GT 740M April 1 2013 GK107 28 PCIe 3 0 x16 2048 384 32 16 810 810 1800 5000 12 96 25 92 28 8 80 DDR3 GDDR5 128 11 0 4 4 622 1 45 Kepler podoben GTX650GeForce GT 745M April 1 2013 GK107 28 PCIe 3 0 x16 2048 384 32 16 837 837 2000 5000 13 4 26 8 32 80 DDR3 GDDR5 128 11 0 4 4 642 8 45 Kepler podoben GTX650GeForce GT 750M April 1 2013 GK107 28 PCIe 3 0 x16 2048 384 32 16 967 967 2000 5000 15 5 30 9 32 80 DDR3 GDDR5 128 11 0 4 4 742 7 50 Kepler podoben GTX650GeForce GT 755M GK107 28 PCIe 3 0 x16 2048 384 32 16 980 980 5400 15 7 31 4 86 4 GDDR5 128 11 0 4 4 Kepler podoben GTX650GeForce GTX 760M May 2013 GK106 28 PCIe 3 0 x16 2048 768 64 16 657 657 4000 10 5 42 1 64 GDDR5 128 11 0 4 4 1009 2 55 Kepler podoben GTX 650TiGeForce GTX 765M May 2013 GK106 28 PCIe 3 0 x16 2048 768 64 16 850 850 4000 13 6 54 4 64 GDDR5 128 11 0 4 4 1305 6 65 Kepler podoben GTX 650TiGeForce GTX 770M May 2013 GK106 28 PCIe 3 0 x16 3072 960 80 24 811 811 4000 19 5 64 9 96 GDDR5 192 11 0 4 4 1557 1 75 Kepler podoben GTX660GeForce GTX 775M Sep 2013 GK104 28 PCIe 3 0 x16 4096 1344 112 32 719 719 3600 23 0 92 0 115 2 GDDR5 256 11 0 4 4 1932 7 100 Kepler podoben GTX670GeForce GTX 780M May 2013 GK104 28 PCIe 3 0 x16 4096 1536 128 32 823 823 5000 26 3 105 3 160 GDDR5 256 11 0 4 4 2528 3 100 Kepler podoben GTX770GeForce 800M 8xxM series GeForce 800M series dlya noutbukov Model Data vyhoda Kodovoe imya Tehp rocess nm Interfejs shiny Pamyat MB Konfi guraciya yadra 1 Taktovaya chastota Pikovaya skorost zapolneniya Obyom video pamyati Podderzhivaemyj API versiya Mosh nost 2 GFLOPS TDP Vatt Primech yadra MGc Boost MGc shejdernogo bloka MGc Pamyati MGc Pikselya mi GP s Teks turami GT s Propus knaya sposo bnost Gb s Tip pamyati Razryad nost shiny bit DirectX OpenGL OpenCL VulkanGeForce 810M 64 Bit Mart 2014 GF117 28 PCIe 2 0 x16 1024 48 8 8 736 NET 1476 1800 5 9 5 9 14 4 DDR3 64 12 4 6 1 1 n d 70 8 15GeForce 810M 128 Bit Mart 2015 GK107 28 PCIe 3 0 x16 1024 2048 384 32 16 810 810 1800 13 26 28 8 128 1 2 1 1 73 622 45GeForce 820M 64 Bit Noyabr 2013 GF117 28 PCIe 2 0 x16 1024 2048 96 16 8 775 1550 1800 6 2 12 4 14 4 64 1 1 n d 297 15GeForce 820M 128 Bit Mart 2015 GK107 28 PCIe 3 0 x16 1024 2048 384 32 16 810 810 1800 13 26 28 8 128 1 2 1 1 73 622 45GeForce 830M Mart 2014 GM108 28 PCIe 3 0 x8 2048 256 16 8 1082 1150 1082 1150 1800 8 6 17 3 14 4 64 554 33GeForce 840M Mart 2014 GM108 28 PCIe 3 0 x8 2048 384 16 8 1029 1124 1029 1124 2000 8 2 16 5 16 64 790 33GeForce 845M Mart 2014 GM108 28 PCIe 3 0 x8 2048 384 16 8 1029 1124 1029 1124 2000 8 2 16 5 16 64 790 33GeForce GTX 850M Mart 2014 GM107 28 PCIe 3 0 x16 2048 4096 640 40 16 902 NET 902 2000 14 4 36 1 32 128 1154 45GeForce GTX 860M 4Gb Yanvar 2013 GM107 28 MXM B 3 0 4096 640 40 16 1020 1085 1020 1085 5010 16 3 41 80 1 GDDR5 128 1305 75GeForce GTX 860M 2Gb Mart 2014 GK104 28 PCIe 3 0 x16 2048 1152 96 16 797 915 797 915 5000 13 76 5 80 128 1836 75GeForce GTX 870M Mart 2014 GK104 28 MXM B 3 0 3072 1344 112 24 941 967 941 967 5000 22 5 105 120 192 2530 100GeForce GTX 880M Mart 2014 GK104 28 MXM B 3 0 8192 1536 128 32 954 993 954 993 5000 30 5 122 160 256 2930 122GeForce 900M 9xxM series GeForce 900M series dlya noutbukov 1Unificirovannyh shejdernyh processorov Teksturnyh blokov Blokov rasterizacii 2 Skorost zapolneniya pikselej rasschityvaetsya umnozheniem kolichestva blokov rasterizacii angl Raster Operations Pipeline ROP na taktovuyu chastotu yadra V realnyh usloviyah taktovaya chastota yadra derzhitsya na maksimalnyh znacheniyah Boost maksimalnaya taktovaya chastota kol vo blokov rasterizacii V eto pravilo ne vhodyat GeForce GT 920M Fermi 2 0 i GeForce GT 920M Kepler 2 0 Pochemu 3 Skorost zapolneniya tekstur rasschityvaetsya umnozheniem kolichestva teksturnyh blokov angl Texture Mapping Unit TMU na taktovuyu chastotu yadra V realnyh usloviyah taktovaya chastota yadra derzhitsya na maksimalnyh znacheniyah Boost maksimalnaya taktovaya chastota kol vo teksturnyh blokov 4 Propusknaya sposobnost pamyati psp nahoditsya po formule chastota pamyati bitnost shiny 8 8 perevodnoj koefficient iz bit v Bajty 5 Proizvoditelnost v FLOPS odinarnoj tochnosti 32 bita ravna proizvedeniyu kolichestva shejdernyh processorov i dvuh umnozhennomu na maksimalnuyu chastotu shejdera Esli ne ukazana maksimalnaya chastota shejdera umnozhajte na maksimalnuyu chastotu yadra FP32 USPs 2 GPU Clock speed 6 Proizvoditelnost v FLOPS dvojnoj tochnosti 64 bit ravna 1 32FP32 U Maxwell Maxwell2 0 1 12FP u Fermi2 0 1 3 u Kepler2 0 V drugih videokartah na etih arhitekturah proizvoditelnost FP64 mozhet byt drugoj Naprimer gtx 590 Fermi2 0 FP64 1 8FP32Model Data vyhoda Kodovoe imya Teh process nm Interfejs shiny Pamyat MB Konfi guraciya yadra 1 Taktovaya chastota Pikovaya skorost zapolneniya Obyom video pamyati Podderzhivaemyj API versiya proiz oditel nost FMA GFLOPS TDP Vatt Primech yadra MGc Boost MGc Shejdernogo bloka MGc Pamyati MGc Pikselej2 GP s Teks tur3 GT s Propus knaya sposo bnost4 GB s Tip pamyati Razryad nost shiny bit DirectX OpenGL OpenCL Vulkan FP325 FP646GeForce GT 920M Fermi 2 0 Mart 2015 GF117 28 PCIe 2 0 x16 1024 96 16 8 775 NET 1550 1800 3 1 12 4 14 4 DDR3 64 12 4 6 1 1 n d 297 24 8 33GeForce GT 920M Kepler 2 0 Mart 2015 GK208B PCIe 3 0 x8 2048 384 32 16 954 NET 954 7 6 30 5 1 2 1 1 73 732 244 33GeForce GT 920MX Maxwell Mart 2016 GM108 2048 256 24 8 965 993 965 993 8 23 8 508 15 9 16GeForce GT 930M Maxwell Mart 2015 GM108 2048 384 24 8 928 941 928 941 7 5 22 5 723 22 5 33GeForce GT 930MX Maxwell Mart 2016 GM108 2048 384 24 8 952 1020 952 1020 8 1 24 5 784 24 5 17GeForce GT 940M Maxwell Mart 2015 GM108 2048 384 24 8 1072 1176 1072 1176 9 4 28 2 903 29 2 33GeForce GT 940M Maxwell 128Bit Mart 2015 GM107 MXM B 3 0 2048 512 32 16 1029 1085 1029 1085 17 3 34 7 28 8 128 1111 34 7 75GeForce GT 940MX Maxwell Yanvar 2016 GM108 PCIe 3 0 x8 2048 1024 384 24 8 954 1242 954 1242 2000 5012 9 9 29 8 16 40 1 DDR3 GDDR5 64 954 29 8 23GeForce GT 940MX Maxwell Iyun 2016 GM107 2048 512 32 8 797 861 797 861 5012 6 9 27 5 40 1 GDDR5 64 882 27 5 23GeForce GTX 950M Maxwell Mart 2015 GM107 4096 640 40 16 993 1124 993 1124 1800 18 45 28 8 DDR3 128 1438 45 75GeForce GTX 960M Maxwell Mart 2015 GM107 MXM B 3 0 2048 640 40 16 1097 1176 1097 1176 5012 18 8 47 80 2 GDDR5 128 1505 47 75GeForce GTX 970M Maxwell 2 0 Oktyabr 2014 GM204 3072 6144 1280 80 48 924 1038 924 1038 49 8 83 120 192 12 1 2657 83 81GeForce GTX 980M Maxwell 2 0 Oktyabr 2014 GM204 8192 1536 96 36 1038 1127 1038 1127 40 5 108 2 160 4 256 12 1 3462 108 2 100GeForce 10 Series Notebooks GeForce 10 Series dlya noutbukov 1Unificirovannyh shejdernyh processorov Teksturnyh blokov Blokov rasterizacii 2 Skorost zapolneniya pikselej rasschityvaetsya umnozheniem kolichestva blokov rasterizacii angl Raster Operations Pipeline ROP na taktovuyu chastotu yadra V realnyh usloviyah taktovaya chastota yadra derzhitsya na maksimalnyh znacheniyah Boost maksimalnaya taktovaya chastota kol vo blokov rasterizacii 3 Skorost zapolneniya tekstur rasschityvaetsya umnozheniem kolichestva teksturnyh blokov angl Texture Mapping Unit TMU na taktovuyu chastotu yadra V realnyh usloviyah taktovaya chastota yadra derzhitsya na maksimalnyh znacheniyah Boost maksimalnaya taktovaya chastota kol vo teksturnyh blokov 4 Propusknaya sposobnost pamyati psp rasschityvaetsya po formule Chastota pamyati razryadnost shiny 8 8 perevodnoj koefficient iz bit v Bajty 5 Proizvoditelnost v FLOPS odinarnoj tochnosti 32 bita ravna proizvedeniyu kolichestva shejdernyh processorov i dvuh umnozhennomu na maksimalnuyu chastotu shejdera Esli ne ukazana maksimalnaya chastota shejdera umnozhajte na maksimalnuyu chastotu yadra FP32 USPs 2 GPU Clock speed 6 Proizvoditelnost v FLOPS dvojnoj tochnosti 64 bit ravna 1 32FP32 U Pascal V drugih videokartah na etoj arhitekture proizvoditelnost FP64 mozhet byt drugoj Model Data vyhoda Kodovoe imya Tranzis torov mlrd Ploshad yadra mm2 Teh process nm Interfejs shiny Pamyat MB Konfiguraciya yadra1 Taktovaya chastota Pikovaya skorost zapolneniya Obyom video pamyati Podderzhivaemyj API versiya proiz voditel nost FMA GFLOPS proiz vodi telnost FP32 Vt TDP Vatt Primech yadra MGc Boost MGc Shejdernogo bloka MGc Pamyati MGc Pikselej2 GP s Tekstur3 GT s Propus knaya sposo bnost4 GB s Tip pamyati Razryad nost shiny bit DirectX OpenGL OpenCL Vulkan CUDA Shejdernaya model FP325 FP646GeForce GTX 1050 Mobile Pascal Yanvar 2017 GP107 N17P G0 A1 3 3 132 14 PCIe 3 0 x16 2048 4096 640 40 16 1354 1493 1354 1493 7008 23 9 59 7 112 1 GDDR5 128 12 1 4 6 1 2 1 1 73 6 1 6 1 1911 59 7 25 5 75GeForce GTX 1050Ti Mobile Pascal Yanvar 2017 GP107 N17P G1 A1 3 3 132 14 4096 768 48 32 1493 1620 1493 1620 7008 51 8 77 7 112 1 GDDR5 128 2488 77 7 33 1 75GeForce GTX 1060 Max Q Pascal Iyun 2017 GP106 N17E G1 A1 4 4 200 16 3072 6144 1280 80 48 1265 1480 1265 1480 8008 71 118 4 192 2 GDDR5 192 3789 118 4 47 3 80GeForce GTX 1060 Mobile Pascal Avgust 2016 GP106 N17E G1 A1 4 4 200 16 3072 6144 1280 80 48 1404 1670 1404 1670 8008 80 1 133 6 192 2 GDDR5 192 4275 133 6 53 4 80GeForce GTX 1070 Max Q Pascal Iyun 2017 GP104 N17E G2 A1 7 2 314 16 8192 2048 128 64 1215 1379 1215 1379 8008 88 2 176 5 256 2 GDDR5 256 5648 176 5 49 1 115GeForce GTX 1070 Mobile Pascal Avgust 2016 GP104 N17E G2 A1 7 2 314 16 8192 2048 128 64 1442 1645 1442 1645 8008 105 3 210 5 256 2 GDDR5 256 6738 210 5 56 1 120GeForce GTX 1080 Max Q Pascal Iyun 2017 GP104 N17E G3 A1 7 2 314 16 8192 2560 160 64 1290 1468 1290 1468 10008 93 9 234 9 320 2 GDDR5X 256 7516 234 9 50 1 150GeForce GTX 1080 Mobile Pascal Avgust 2016 GP104 N17E G3 A1 7 2 314 16 8192 2560 160 64 1556 1771 1556 1771 10008 113 3 283 3 320 2 GDDR5X 256 9067 283 3 60 150GeForce MX100 MX1xx series GeForce MX100 MX1xx series dlya noutbukov 1Unificirovannyh shejdernyh processorov Teksturnyh blokov Blokov rasterizacii 2 Skorost zapolneniya pikselej rasschityvaetsya umnozheniem kolichestva blokov rasterizacii angl Raster Operations Pipeline ROP na taktovuyu chastotu yadra V realnyh usloviyah taktovaya chastota yadra derzhitsya na maksimalnyh znacheniyah Boost maksimalnaya taktovaya chastota kol vo blokov rasterizacii 3 Skorost zapolneniya tekstur rasschityvaetsya umnozheniem kolichestva teksturnyh blokov angl Texture Mapping Unit TMU na taktovuyu chastotu yadra V realnyh usloviyah taktovaya chastota yadra derzhitsya na maksimalnyh znacheniyah Boost maksimalnaya taktovaya chastota kol vo teksturnyh blokov 4 Propusknaya sposobnost pamyati psp rasschityvaetsya po formule Chastota pamyati razryadnost shiny 8 8 perevodnoj koefficient iz bit v Bajty 5 Proizvoditelnost v FLOPS odinarnoj tochnosti 32 bita ravna proizvedeniyu kolichestva shejdernyh processorov i dvuh umnozhennomu na maksimalnuyu chastotu shejdera Esli ne ukazana maksimalnaya chastota shejdera umnozhajte na maksimalnuyu chastotu yadra FP32 USPs 2 GPU Clock speed 6 Proizvoditelnost v FLOPS dvojnoj tochnosti 64 bit ravna 1 32FP32 U Maxwell i Pascal V drugih videokartah na etih arhitekturah proizvoditelnost FP64 mozhet byt drugoj Model Data vypuska Kodovoe imya Tranzis torov mlrd Ploshad yadra mm2 Teh process nm Interfejs shiny Pamyat MB Konfiguraciya yadra1 Taktovaya chastota Pikovaya skorost zapolneniya Obyom video pamyati Podderzhivaemyj API versiya proiz voditel nost FMA GFLOPS proiz vodi telnost FP32 Vt TDP Vatt Primech yadra MGc Boost MGc Shejdernogo bloka MGc Pamyati MGc Pikselej2 GP s Tekstur3 GT s Propus knaya sposo bnost4 GB s Tip pamyati Razryad nost shiny bit DirectX OpenGL OpenCL Vulkan CUDA Shejdernaya model FP325 FP646GeForce MX110 Maxwell Noyabr 2017 GM108 N16V GMR1 A1 n d n d 28 PCIe 3 0 x16 2048 384 24 8 256 963 993 963 993 1800 5000 8 23 8 14 4 40 DDR3 GDDR5 64 12 4 6 1 2 1 1 73 5 0 5 1 763 512 23 8 16 25 5 17 30GeForce MX130 Maxwell Noyabr 2017 GM108 N16S GTR A1 n d n d 28 2048 384 24 8 1122 1242 1122 1242 1800 5012 10 29 8 14 4 40 1 DDR3 GDDR5 64 12 5 0 5 1 954 29 8 31 8 30GeForce MX150 Pascal Maj 2017 GP108 N17S G1 A1 1 8 74 14 2048 384 32 16 1227 1468 1227 1468 6008 23 5 46 9 48 GDDR5 64 12 1 6 1 6 1 1127 35 2 45 1 25Quadro 1 Verteksnyj shejder Pikselnyj shejder Teksturnyj blok Blok rasterizacii 2 Unificirovannyj shejder Verteksnyj shejder Geometricheskij shejder Pikselnyj shejder Teksturnyj blok Blok rasterizaciiModel Kodovoe imya Teh process nm Interfejs Vvoda vyvoda Obyom videopamyati MB Chastota yadra MGc Chastota shejdernogo domena MGc Chastota pamyati effektivnaya MGc Konfiguraciya yadra 123 Pikovaya skorost zapolneniya Pamyat Teoreticheskaya proizvoditelnost Gigaflops podderzhivaemyj API versiya TDP Vt Zamechaniya giga pikselej s giga tekselej s Propusknaya sposobnost GB s Tip Shina bit Odinarnaya tochnost DirectX OpenGLQuadro FX 350M G72GLM 90 PCIe 1 0 x16 256 450 450 900 3 4 4 2 0 9 1 8 14 4 GDDR3 128 9 0c 2 1 15Quadro FX 360M G86M 80 PCIe 1 0 x16 256 400 800 1200 16 8 4 1 6 3 2 9 6 DDR2 64 38 4 10 0 3 3 17Quadro FX 370M G98M 65 PCIe 1 0 x16 256 550 1400 1200 8 4 4 2 2 2 2 9 6 GDDR3 64 33 6 10 0 3 3 20Quadro FX 380M GT218M 40 PCIe 2 0 x16 512 625 1530 1600 16 8 4 2 5 5 12 8 GDDR3 64 73 44 10 1 3 3 25Quadro FX 560M G73GLM 90 PCIe 1 0 x16 512 500 500 1200 5 12 12 8 4 6 19 2 GDDR3 128 9 0c 2 1 35 Quadro FX 570M G84M 80 PCIe 1 0 x16 512 475 950 1400 32 16 8 3 8 7 6 22 4 GDDR3 128 91 2 10 0 3 3 45Quadro FX 770M G96M 65 PCIe 1 0 x16 512 500 1250 1600 32 16 8 4 8 25 6 GDDR3 128 25 6 10 0 3 3 35Quadro FX 880M GT216M 40 PCIe 2 0 x16 1024 550 1210 1600 48 16 8 4 4 8 8 25 6 GDDR3 128 174 24 10 1 3 3 35Quadro FX 1500M G71GLM 90 PCIe 1 0 x16 512 375 375 1000 8 24 24 16 6 9 32 GDDR3 256 9 0c 2 1 45Quadro FX 1600M G84M 80 PCIe 1 0 x16 512 625 1250 1600 32 16 8 5 10 25 6 GDDR3 128 120 10 0 3 3 50 Quadro FX 1700M G96M 65 PCIe 1 0 x16 512 625 1550 1600 32 16 8 5 10 25 6 GDDR3 128 148 8 10 0 3 3 50Quadro FX 1800M GT215M 40 PCIe 2 0 x16 1024 450 1080 1600 2200 72 24 8 3 6 10 8 25 6 35 2 GDDR3 GDDR5 128 233 28 10 1 3 3 45Quadro FX 2500M G71GLM 90 PCIe 1 0 x16 512 500 500 1200 8 24 24 16 8 12 38 4 GDDR3 256 9 0c 2 1 45Quadro FX 2700M G94M 65 PCIe 1 0 x16 512 530 1325 1600 48 24 16 8 48 12 72 51 2 GDDR3 256 190 8 10 0 3 3 65Quadro FX 2800M G92M 55 PCIe 2 0 x16 1024 500 1250 2000 96 48 16 8 16 64 GDDR3 256 360 10 0 3 3 75Quadro FX 3500M G71GLM 90 PCIe 1 0 x16 512 575 575 1200 8 24 24 16 9 2 13 8 38 4 GDDR3 256 9 0c 2 1 45Quadro FX 3600M G92M 65 PCIe 1 0 x16 512 500 1250 1600 64 32 16 96 48 16 8 8 16 24 51 2 GDDR3 256 240 360 10 0 3 3 70 based on 8800M GTS 8800M GTXQuadro FX 3700M G92M 65 PCIe 1 0 x16 1024 550 1375 1600 128 64 16 8 8 35 2 51 2 GDDR3 256 528 10 0 3 3 75Quadro FX 3800M G92M 55 PCIe 2 0 x16 1024 675 1688 2000 128 64 16 10 8 43 2 64 GDDR3 256 648 192 10 0 3 3 100Quadro 1000M GF108 40 PCIe 2 0 x16 2048 700 1400 1800 96 16 4 2 8 11 2 28 8 DDR3 128 268 8 11 4 1 45Quadro 2000M GF106 40 PCIe 2 0 x16 2048 550 1100 1800 192 32 16 8 8 17 6 28 8 DDR3 128 422 4 11 4 1 55Quadro 3000M GF104 40 PCIe 2 0 x16 2048 450 900 2500 240 40 32 14 4 18 80 GDDR5 256 432 11 4 1 75Quadro 4000M GF104 40 PCIe 2 0 x16 2048 475 950 2400 336 56 32 15 2 26 6 76 8 GDDR5 256 638 4 11 4 1 100Quadro 5000M GF100 40 PCIe 2 0 x16 2048 405 810 2400 320 403 32 12 96 16 2 76 8 GDDR5 256 518 4 11 4 1 100Quadro 5010M GF110GLM 40 PCIe 2 0 x16 4096 450 900 2600 384 48 32 14 4 21 6 83 2 GDDR5 256 691 2 11 4 1 100Model Kodovoe imya Teh process nm Interfejs Vvoda vyvoda Obyom videopamyati MB Chastota yadra MGc Chastota shejdernogo domena MGc Chastota pamyati effektivnaya MGc Konfiguraciya yadra 123 giga pikselej s giga tekselej s Propusknaya sposobnost GB s Tip Shina bit Odinarnaya tochnost DirectX OpenGL TDP Vt ZamechaniyaPikovaya skorost zapolneniya Pamyat Teoreticheskaya proizvoditelnost Gigaflops podderzhivaemyj API versiya Quadro NVS 1 Verteksnyj shejder Pikselnyj shejder Teksturnyj blok Blok rasterizacii 2 Unificirovannyj shejder Verteksnyj shejder Geometricheskij shejder Pikselnyj shejder Teksturnyj blok Blok rasterizaciiModel Kodovoe imya Teh process nm Interfejs Vvoda vyvoda Obyom videopamyati MB Chastota yadra MGc Chastota shejdernogo domena MGc Chastota pamyati effektivnaya MGc Konfiguraciya yadra 12 Pikovaya skorost zapolneniya Pamyat Teoreticheskaya proizvoditelnost Gigaflops podderzhivaemyj API versiya TDP Vt Zamechaniya giga pikselej s giga tekselej s Propusknaya sposobnost GB s Tip Shina bit Odinarnaya tochnost DirectX OpenGLQuadro NVS 110M G72M 90 PCIe 1 0 x16 do 512 300 300 600 3 4 4 2 0 6 1 2 4 8 DDR 64 9 0c 2 1 10Quadro NVS 120M G72GLM 90 PCIe 1 0 x16 do 512 450 450 700 3 4 4 2 0 9 1 8 5 6 DDR2 64 9 0c 2 1 10Quadro NVS 130M G86M 80 PCIe 2 0 x16 do 256 400 800 700 8 4 4 1 6 1 6 6 4 DDR2 64 19 2 10 0 3 3 10Quadro NVS 135M G86M 80 PCIe 2 0 x16 do 256 400 800 1188 16 8 4 1 6 3 2 9 504 GDDR3 64 38 4 10 0 3 3 10Quadro NVS 140M G86M 80 PCIe 2 0 x16 do 512 400 800 1200 16 8 4 1 6 3 2 9 6 GDDR3 64 38 4 10 0 3 3 10Quadro NVS 150M G98M 65 PCIe 2 0 x16 do 256 530 1300 1400 8 4 4 2 12 2 12 11 2 GDDR3 64 31 2 10 0 3 3 10Quadro NVS 160M G98M 65 PCIe 2 0 x16 256 580 1450 1400 8 8 4 2 12 4 24 11 2 GDDR3 64 34 8 10 0 3 3 12Quadro NVS 300M G72GLM 90 PCIe 1 0 x16 do 512 450 450 1000 3 4 4 2 0 9 1 8 8 DDR2 64 9 0c 2 1 16Quadro NVS 320M G84M 65 PCIe 2 0 x16 do 512 575 1150 1400 32 16 8 4 6 9 2 22 4 GDDR3 128 110 4 10 0 3 3 20Quadro NVS 510M G70GLM 90 PCIe 1 0 x16 do 1024 500 500 1200 8 24 24 16 8 12 38 4 GDDR3 256 9 0c 2 1 45 based on Go 7900 GTXQuadro NVS 2100M GT218M 40 PCIe 2 0 x16 do 512 535 1230 1600 16 8 4 2 14 4 28 12 8 GDDR3 64 59 04 10 1 3 3 14Quadro NVS 3100M GT218M 40 PCIe 2 0 x16 do 512 600 1470 1600 16 8 4 2 4 4 8 12 8 GDDR3 64 70 56 10 1 3 3 14Quadro NVS 4200M GF108 40 PCIe 2 0 x16 do 1024 810 1620 1600 48 8 4 3 24 6 48 12 8 GDDR3 64 155 52 11 4 1Quadro NVS 5100M GT216M 40 PCIe 2 0 x16 do 1024 550 1210 1600 48 16 8 4 4 8 8 25 6 GDDR3 128 174 24 10 1 3 3 35Sravnitelnaya tablica graficheskie processory dlya rabochih stancijQuadro 1 Verteksnyj shejder Pikselnyj shejder Teksturnyj blok Blok rasterizacii 2 Unificirovannyj shejder Verteksnyj shejder Geometricheskij shejder Pikselnyj shejder Teksturnyj blok Blok rasterizacii NV31 NV34 i NV36 ispolzuyut 2x2 konvejernyj dizajn vypolnyaya verteksnyj shejder v ostalnyh sluchayah ispolzuyut 4x1 konvejernyj dizajn Model Kodovoe imya Teh process nm Interfejs Vvoda vyvoda Obyom videopamyati MB Chastota yadra MGc Chastota shejdernogo domena MGc Chastota pamyati effektivnaya MGc Konfiguraciya yadra 123 Pikovaya skorost zapolneniya Pamyat Teoreticheskaya proizvoditelnost Gigaflops podderzhivaemyj API versiya TDP Vt Zamechaniya giga pikselej s giga tekselej s Propusknaya sposobnost GB s Tip Shina bit Odinarnaya tochnost DirectX OpenGLQuadro NV10GL 220 AGP 4x 64 135 135 166 0 4 4 4 0 54 0 54 2 66 SDR 128 7 1 2Quadro2 MXR NV11GL 180 AGP 4x 64 175 175 183 0 2 4 4 0 7 0 7 2 93 SDR 128 7 1 2Quadro2 EX NV11GL 180 AGP 4x 64 175 175 166 0 2 4 4 0 7 0 7 2 7 SDR 128 7 1 2Quadro2 PRO NV15GL 150 AGP 4x 64 250 250 400 0 4 8 8 2 2 6 4 DDR 128 7 1 2Quadro DCC NV20GL 180 AGP 4x 128 200 200 460 1 4 8 8 1 6 1 6 7 4 DDR 128 8 1 4Quadro4 380XGL NV18GL 150 AGP 8x 128 275 275 513 0 2 4 4 1 1 1 1 8 2 DDR 128 7 1 4Quadro4 500XGL NV17GL 150 AGP 4x 128 250 250 166 0 2 4 4 1 1 2 7 SDR 128 7 1 4Quadro4 550XGL NV17GL 150 AGP 4x 64 270 270 400 0 2 4 4 1 08 1 08 6 4 DDR 128 7 1 4Quadro4 580XGL NV18GL 150 AGP 8x 64 300 300 400 0 2 4 4 1 2 1 2 6 4 DDR 128 7 1 4Quadro4 700XGL NV25 150 AGP 4x 64 275 275 550 2 4 8 8 2 2 2 2 8 8 DDR 128 8 1 4Quadro4 750XGL NV25 150 AGP 4x 128 275 275 550 2 4 8 8 2 2 2 2 8 8 DDR 128 8 1 5 Stereo DisplayQuadro4 900XGL NV25 150 AGP 4x 128 300 300 650 2 4 8 8 2 4 2 4 10 4 DDR 128 8 1 4 Stereo DisplayQuadro4 980XGL NV28GL 150 AGP 8x 128 300 300 650 2 4 8 8 2 4 2 4 10 4 DDR 128 8 1 4 Stereo DisplayQuadro FX 500 NV34GL 150 AGP 8x 128 270 270 480 1 2 2 2 4 4 4 1 08 1 08 7 687 DDR 128 9 0 2 0 Stereo DisplayQuadro FX 600 NV34GL 150 PCI 256 350 350 800 1 2 2 2 4 4 4 1 1 7 8 DDR 128 9 0 2 0 Stereo DisplayQuadro FX 700 NV35GL 150 AGP 8x 128 275 275 275 1 2 2 2 4 4 4 1 1 1 1 4 4 DDR 128 9 0 2 0 Stereo DisplayQuadro FX 1000 NV30GL 130 AGP 8x 128 300 300 300 2 4 8 8 2 4 2 4 9 6 DDR2 128 9 0 2 0 Stereo DisplayFX 1100 NV36GL 130 AGP 8x 256 425 425 325 3 2 2 2 4 4 4 1 7 1 7 5 2 DDR2 128 9 0 2 0 Stereo DisplayQuadro FX 2000 NV30GL 130 AGP 8x 128 400 400 800 2 4 8 8 3 2 3 2 12 8 DDR2 128 9 0 2 0 Stereo DisplayQuadro FX 3000 NV35GL 130 AGP 8x 256 400 400 850 3 4 8 8 3 2 3 2 27 2 DDR 256 9 0 2 0 Stereo DisplayQuadro FX 3000G NV35GL 130 AGP 8x 256 400 400 850 3 4 8 8 3 2 3 2 27 2 DDR 256 9 0 2 0 Stereo Display Quadro FX 4000 NV40GL 130 AGP 8x 256 375 375 1000 5 12 12 8 3 4 5 32 0 GDDR3 256 9 0c 2 1 Stereo DisplayQuadro FX 4000 SDI NV40GL 130 AGP 8x 256 375 375 1000 5 12 12 8 3 4 5 32 0 GDDR3 256 9 0c 2 1 Stereo Display GenlockQuadro FX 330 NV37GL 150 PCIe x16 64 250 250 400 2 4 4 2 1 1 3 2 DDR 128 9 0 2 0 21Quadro FX 330 G72GL 90 PCIe x16 128 550 550 810 3 4 4 2 1 1 1 1 6 48 DDR2 128 9 0c 2 1 21Quadro FX 370 G86 80 PCIe x16 256 360 720 1000 16 8 4 1 44 2 88 6 4 DDR2 64 34 56 10 0 3 3 35Quadro FX 370LP G86 80 PCIe x16 256 540 1080 1000 8 8 4 2 16 4 32 8 DDR2 64 25 92 10 0 3 3 25 DMS 59 for two Single Link DVIQuadro FX 380 G96 65 PCIe 2 0 x16 256 450 1100 1400 16 8 8 3 6 3 6 22 4 GDDR3 128 52 8 10 0 3 3 34 Two Dual Link DVI no DisplayPortQuadro FX 380LP GT218GL 40 PCIe 2 0 x16 512 589 1402 1600 16 8 4 2 356 4 712 12 8 GDDR3 64 67 296 10 1 3 3 28 DisplayPort Dual Link DVIQuadro FX 470 MCP7A U 65 PCIe 2 0 x16 Integrated Up to 256MB from system memory 580 1400 800 system memory 16 8 4 2 32 4 64 12 8 DDR2 128 67 2 10 0 3 3 30 based on GeForce 9400 mGPUQuadro FX 540 NV43GL 90 PCIe x16 128 300 300 550 4 8 8 8 2 4 2 4 8 8 GDDR3 128 9 0c 2 1 35Quadro FX 550 NV43GL 90 PCIe x16 128 360 360 800 4 8 8 8 2 88 2 88 12 8 GDDR3 128 9 0c 2 1 25Quadro FX 560 G73GL 90 PCIe x16 128 350 350 1200 5 12 12 8 2 8 4 2 19 2 GDDR3 128 9 0c 2 1 30Quadro FX 570 G84GL 80 PCIe x16 256 460 920 800 16 8 8 3 68 3 68 12 8 DDR2 128 44 1 10 0 3 3 38Quadro FX 580 G96 65 PCIe 2 0 x16 512 450 1125 1600 32 16 8 3 6 7 2 25 6 GDDR3 128 108 10 0 3 3 40 Dual DisplayPort Dual Link DVIQuadro FX 1300 NV41 130 PCIe x16 128 350 350 550 3 8 8 8 2 8 2 8 8 8 DDR 256 9 0c 2 1 55Quadro FX 1400 NV41 130 PCIe x16 128 350 350 600 5 12 12 8 2 8 4 2 19 2 DDR 256 9 0c 2 1 70 Stereo Display SLIQuadro FX 1500 G71 90 PCIe x16 256 375 375 800 7 20 20 16 6 7 5 40 0 GDDR3 256 9 0c 2 1 65Quadro FX 1700 G84GL 80 PCIe x16 512 460 920 800 32 16 8 3 68 7 36 12 8 DDR2 128 88 32 10 0 3 3 42Quadro FX 1800 G100GL U G94 65 PCIe 2 0 x16 768 550 1375 1600 64 32 12 6 6 17 6 38 4 GDDR3 192 264 10 0 3 3 59 Stereo DP Dual Link DVI Dual DisplayPort SLIQuadro FX 3400 NV45GL 130 PCIe x16 256 350 350 900 6 16 16 16 5 6 5 6 28 8 GDDR3 256 9 0c 2 1 101 Stereo display SLIQuadro FX 3450 NV41 130 PCIe x16 256 425 425 1000 5 12 12 8 3 4 5 1 32 0 GDDR3 256 9 0c 2 1 83 Stereo display SLIQuadro FX 3500 G71GL 90 PCIe x16 256 470 470 1320 7 20 20 16 7 52 9 4 42 2 GDDR3 256 9 0c 2 1 80 Stereo display SLIQuadro VX 200 G92 65 PCIe 2 0 x16 512 500 1250 1600 112 56 16 8 28 51 2 GDDR3 256 420 10 3 3 75 2 Dual link DVI optimised for Autodesk AutoCADQuadro FX 3700 G92 65 PCIe 2 0 x16 512 500 1250 1600 112 56 16 8 28 51 2 GDDR3 256 420 10 0 3 3 78 Stereo display SLIQuadro FX 3800 GT200GL 55 PCIe 2 0 x16 1024 602 1204 1600 192 64 16 9 632 38 528 51 2 GDDR3 256 693 504 10 0 3 3 108 Stereo DP Dual Link DVI Dual DisplayPort SLIQuadro FX 4500 G70 110 PCIe x16 512 470 470 1050 8 24 24 16 7 52 11 28 33 6 GDDR3 256 9 0c 2 1 109 Stereo display SLI GenlockQuadro FX 4500X2 G70 110 PCIe x16 1024 470 470 1050 16 48 48 32 15 04 22 56 33 6 GDDR3 256 9 0c 2 1 145 Stereo display GenlockQuadro FX 4500 SDI G70 110 PCIe x16 512 470 470 1050 8 24 24 16 7 52 11 28 33 6 GDDR3 256 9 0c 2 1 116 Stereo display GenlockQuadro FX 46002 G80 90 PCIe x16 768 500 1200 1400 96 24 24 12 24 67 2 GDDR3 384 345 10 0 3 3 134 Stereo display SLI GenlockQuadro FX 4600 SDI2 G80 90 PCIe x16 768 500 1200 1400 96 24 24 12 24 67 2 GDDR3 384 345 10 0 3 3 154 Stereo display SLI GenlockQuadro FX 4700X2 2xG92 65 PCIe 2 0 x16 2x1024 500 1250 1600 2x 128 64 16 2x8 2x32 2x51 2 GDDR3 2x256 2x480 10 0 3 3 226Quadro CX GT200GL 55 PCIe 2 0 x16 1536 602 1204 1600 192 64 24 14 448 38 528 76 8 GDDR3 384 693 504 10 0 3 3 150 Display Port and dual link DVI Output optimised forQuadro FX 4800 GT200GL 55 PCIe 2 0 x16 1536 602 1204 1600 192 64 24 14 448 38 528 76 8 GDDR3 384 693 504 10 0 3 3 150 Stereo DP Dual Link DVI Dual DisplayPort SLIQuadro FX 5500 G71 90 PCIe x16 1024 700 700 1050 8 24 24 16 11 2 16 8 33 6 GDDR3 256 9 0c 2 1 96 Stereo display SLI GenlockQuadro FX 5500 SDI G71 90 PCIe x16 1024 700 700 1050 8 24 24 16 11 2 16 8 33 6 GDDR3 256 9 0c 2 1 104 Stereo display SLI GenlockQuadro FX 56002 G80 90 PCIe 2 0 x16 1536 600 1350 1600 128 32 24 14 4 38 4 76 8 GDDR3 384 518 4 10 0 3 3 171 Stereo display SLI GenlockQuadro FX 5800 GT200GL 55 PCIe 2 0 x16 4096 648 1296 1600 240 80 32 20 736 51 840 102 4 GDDR3 512 933 12 10 0 3 3 189 Stereo DP two Dual Link DVI DisplayPort SLIQuadro 400 GT216GL 40 PCIe 2 0 x16 512 1600 48 16 8 12 8 GDDR3 64 10 1 3 3 32 DisplayPort Dual Link DVIQuadro 600 GF108GL 40 PCIe 2 0 x16 1024 640 1280 1600 96 164 4 2 56 10 24 25 6 GDDR3 128 245 76 11 4 1 40 DisplayPort Dual Link DVIQuadro 2000 GF106GL 40 PCIe 2 0 x16 1024 625 1250 2600 192 324 16 10 20 41 6 GDDR5 128 480 11 4 1 62 Stereo DP Dual Link DVI Dual DisplayPortQuadro 4000 GF100 40 PCIe 2 0 x16 2048 475 950 2800 256 324 32 15 2 15 2 89 6 GDDR5 256 486 4 11 4 1 142Quadro 5000 GF100 40 PCIe 2 0 x16 2560 513 1026 3000 352 444 40 20 53 22 572 120 GDDR5 320 722 304 11 4 1 152Quadro 6000 GF100 40 PCIe 2 0 x16 6144 574 1148 3000 448 564 48 27 552 32 144 144 GDDR5 384 1028 608 11 4 1 225Model Kodovoe imya Teh process nm Interfejs Vvoda vyvoda Obyom videopamyati MB Chastota yadra MGc Chastota shejdernogo domena MGc Chastota pamyati effektivnaya MGc Konfiguraciya yadra 123 giga pikselej s giga tekselej s Propusknaya sposobnost GB s Tip Shina bit Odinarnaya tochnost DirectX OpenGL TDP Vt ZamechaniyaPikovaya skorost zapolneniya Pamyat Teoreticheskaya proizvoditelnost Gigaflops podderzhivaemyj API versiya Tesla 1Specifikacii ne opredelyonnye NVIDIA kak predpolagaetsya osnovany na GeForce 8800GTX 2Specifikacii ne opredelyonnye NVIDIA kak predpolagaetsya osnovany na GeForce GTX280 3Specifikacii ne opredelyonnye NVIDIA kak predpolagaetsya osnovany na GeForce 400 Series 4S aktivirovannym ECC dostupnaya dlya polzovatelya pamyat sostavit 2 625 Gbajta na GPU dlya C2050 S2050 i 5 25 Gbajt na GPU dlya C2070 S2070 5 GF100 vypolnyaet novuyu soedinennuyu instrukciyu umnozheniya slozheniya FMA dlya oboih 32 bitnyh chisel odinarnoj tochnosti s plavayushej zapyatoj i 64 bitnyh chisel dvojnoj tochnosti s plavayushej zapyatoj GT200 podderzhivaet instrukciyu FMA tolko dlya chisel dvojnoj tochnosti Raznica muzhdu instrukciyami FMA i MAD pri vypolnenii operacii vida A B C zaklyuchaetsya v tom chto FMA ne okruglyaet rezultat proizvedeniya pered summirovaniem chto dayot bolee tochnyj rezultat FMA Fused Multiply Add MAD Multiply Add Opisanie Model kolichestvo GPU Chastota yadra MGc Shejdernyj processory Pamyat Teoreticheskaya proizvoditelnost Gigaflops Vychislitelnaya sovmestimost vozmozhnost TDP Vt Zametki FormfaktorKolichestvo Chastota MGc Propusknaya sposobnost GB s Standart videopamyati Shina videopamyati bit Obyom videopamyati MB Chastota effektivnaya MGc Odinarnaya tochnost vsego MUL ADD SF Odinarnaya tochnost MAD MUL ADD Dvojnaya tochnost FMAGPU vychislitelnyj processor1 C870 1 600 128 1350 76 8 GDDR3 384 1536 1600 518 4 345 6 0 1 0 170 9 ATH videokartaVneshnij modul dlya raspredelennyh vychislenij nastolnyj montiruemyj v stojku 1 D870 2 600 2 x 128 256 1350 153 6 GDDR3 384 3072 1600 1036 8 691 2 0 1 0 iliGPU Vychislitelnyj server1 S870 4 600 4 x 128 512 1350 307 2 GDDR3 384 6144 1600 2073 6 1382 4 0 1 02 pokolenie Tesla processor2 C1060 1 602 240 1300 102 4 GDDR3 512 4096 1600 933 12 622 08 77 76 1 3 187 8 ATX videokarta IEEE 754r dvojnaya tochnost2 pokolenie GPU Vychislitelnyj server S1070 4 602 4 x 240 960 1440 409 6 GDDR3 512 16384 1600 4147 2 2764 8 345 6 1 3 IEEE 754r dvojnaya tochnost2 pokolenie GPU Vychislitelnyj server S1070 4 602 4 x 240 960 1440 409 6 GDDR3 512 16384 1600 4147 2 2764 8 345 6 1 3 IEEE 754r dvojnaya tochnost3 pokolenie Tesla processor3 C2050 1 575 448 1150 144 GDDR5 384 30724 3000 1288 1030 45 515 2 2 0 238 Full height video card IEEE 754 2008 capabilities3 pokolenie Tesla processor3 C2070 1 575 448 1150 144 GDDR5 384 61444 3000 1288 1030 45 515 2 2 0 247 Full height video card IEEE 754 2008 capabilities3 pokolenie Tesla Vychislitelnyj modul3 M2050 1 575 448 1150 148 4 GDDR5 384 30724 3092 1288 1030 45 515 2 2 0 225 Vychislitelnyj modul IEEE 754 2008 capabilities3 pokolenie Tesla Vychislitelnyj modul3 M2070 M2070Q 1 575 448 1150 150 336 GDDR5 384 61444 3132 1288 1030 45 515 2 2 0 225 Vychislitelnyj modul IEEE 754 2008 capabilities3 pokolenie Tesla Vychislitelnyj modul3 M2090 1 650 512 1300 177 4 GDDR5 384 61444 3700 1664 1331 26 665 6 2 0 Vychislitelnyj modul IEEE 754 2008 capabilities3 pokolenie GPU Vychislitelnyj server S2050 4 575 4 x 448 1792 1150 593 6 GDDR5 384 122884 3092 5152 4121 65 2060 8 2 0 900 IEEE 754 2008 capabilities3 pokolenie GPU Vychislitelnyj server S2070 4 575 4 x 448 1792 1150 593 6 GDDR5 384 245764 3092 5152 4121 65 2060 8 2 0 900 IEEE 754 2008 capabilitiesSm takzheSpisok graficheskih processorov AMD Spisok graficheskih processorov IntelPrimechaniyaAstle Dave 2003 04 01 Moving Beyond OpenGL 1 1 for Windows gamedev net 23 noyabrya 2007 Data obrasheniya 15 noyabrya 2007 http www opengl org documentation specs version2 1 glspec21 pdf ot 19 aprelya 2009 na Wayback Machine OpenGL 2 1 specification retrieved Jule 18 2008 http www opengl org registry doc glspec30 20080811 pdf ot 8 sentyabrya 2008 na Wayback Machine OpenGL 3 0 specification retrieved August 12 2008 http www opengl org registry doc glspec31 20090528 pdf ot 5 yanvarya 2011 na Wayback Machine OpenGL 3 1 specification retrieved October 1 2009 http www opengl org registry doc glspec32 core 20090803 pdf ot 4 marta 2011 na Wayback Machine OpenGL 3 2 specification retrieved October 1 2009 Zwei neue GeForce 8800 GTS bis Dezember 04 11 2007 ComputerBase neopr Data obrasheniya 11 dekabrya 2010 18 iyulya 2011 goda Nvidia Corporation NVIDIA CUDA Page 101 neopr NVIDIA 26 avgusta 2009 Data obrasheniya 27 aprelya 2010 Arhivirovano 18 fevralya 2012 goda siliconmadness com Nvidia Announces Tesla 20 Series neopr 2010 Data obrasheniya 26 aprelya 2010 Arhivirovano iz originala 18 fevralya 2012 goda NVIDIA Fermi Compute Architecture Whitepaper pdf PDF 855KiB stranica 11 Killian Zak 2017 07 03 Nvidia finally lets Fermi GPU owners enjoy DirectX 12 Tech Report 4 iyulya 2017 Data obrasheniya 4 iyulya 2017 GeForce GTX 660 OEM neopr GeForce com Data obrasheniya 13 sentyabrya 2012 Arhivirovano 19 noyabrya 2012 goda NVIDIA GeForce GTX 680 Whitepaper pdf PDF 1405KB page 6 of 29 AnandTech NVIDIA GeForce GTX 690 Review Ultra Expensive Ultra Rare Ultra Fast neopr Data obrasheniya 24 oktyabrya 2012 22 fevralya 2014 goda GK110 The True Tank Nvidia GeForce GTX Titan 6 GB GK110 On A Gaming Card Nvidia GeForce GTX 780 Ti Review GK110 Fully Unlocked GK110 Unleashed The Wonders Of Tight Binning DX 12 NVIDIA Developer angl 2013 08 19 14 iyulya 2018 Data obrasheniya 17 iyulya 2018 NVIDIA GeForce GT 710 TechPowerUp angl Data obrasheniya 17 iyulya 2018 OpenGL Driver Support NVIDIA Developer angl 2013 08 19 2 fevralya 2020 Data obrasheniya 17 iyulya 2018 Pirzada Usman 2015 11 30 Nvidia Geforce GTX 750 Getting The Maxwell 2 0 Treatment Will Be Upgraded to GM206 150 A1 Silicon Wccftech angl 4 noyabrya 2018 Data obrasheniya 3 noyabrya 2018 GeForce GTX 760 192 bit Specifications GeForce neopr Data obrasheniya 17 yanvarya 2014 31 yanvarya 2014 goda GeForce GTX 760 Specifications GeForce neopr Data obrasheniya 17 yanvarya 2014 31 yanvarya 2014 goda GeForce GTX 760 Ti Specifications GeForce neopr Data obrasheniya 17 yanvarya 2014 30 yanvarya 2014 goda GeForce GTX 770 Specifications GeForce neopr Data obrasheniya 17 yanvarya 2014 28 yanvarya 2014 goda GeForce GTX 780 Specifications GeForce neopr Data obrasheniya 17 yanvarya 2014 12 dekabrya 2013 goda GeForce GTX 780 Ti Specifications GeForce neopr Data obrasheniya 17 yanvarya 2014 22 yanvarya 2014 goda NVIDIA GeForce GTX 780 Ti techPowerUp GPU Database neopr Data obrasheniya 17 yanvarya 2014 24 oktyabrya 2013 goda GeForce GTX TITAN Specifications GeForce neopr Data obrasheniya 17 yanvarya 2014 31 yanvarya 2014 goda NVIDIA GeForce GTX TITAN techPowerUp GPU Database neopr Data obrasheniya 17 yanvarya 2014 28 fevralya 2014 goda GeForce GTX TITAN Black Specifications GeForce neopr Data obrasheniya 17 yanvarya 2014 31 yanvarya 2014 goda NVIDIA GeForce GTX TITAN Black techPowerUp GPU Database neopr Data obrasheniya 17 yanvarya 2014 28 fevralya 2014 goda GeForce GTX TITAN Z Specifications GeForce neopr Data obrasheniya 17 yanvarya 2014 31 yanvarya 2014 goda NVIDIA GeForce GTX TITAN Z techPowerUp GPU Database neopr Data obrasheniya 17 yanvarya 2014 28 fevralya 2014 goda Smith Ryan 2014 09 18 The NVIDIA GeForce GTX 980 Review Maxwell Mark 2 AnandTech p 1 26 fevralya 2015 Data obrasheniya 19 sentyabrya 2014 AnandTech The NVIDIA GeForce GTX Titan X Review neopr Data obrasheniya 23 maya 2015 19 marta 2015 goda NVIDIA Responds to GTX 970 3 5GB Memory Issue PC Perspective neopr Data obrasheniya 23 maya 2015 3 maya 2015 goda GeForce GTX 970 Correcting The Specs amp Exploring Memory Allocation neopr Data obrasheniya 23 maya 2015 25 fevralya 2015 goda Practical Performance Possibilities amp Closing Thoughts GeForce GTX 970 Correcting The Specs amp Exploring Memory Allocation neopr Data obrasheniya 23 maya 2015 3 iyunya 2015 goda u Geforce GTX 980 Ti net i problem analogichnyh modeli GTX 970 u kotoroj urezany ROP i L2 kesh a vmeste s nimi i polosa propuskaniya dlya odnogo iz segmentov videopamyati 0 5 GB iz imeyushihsya 4 GB v etoj modeli otlichayutsya krajne medlennym dostupom Nvidia ne dopustila podobnoj situacii eshyo raz i skorost chteniya iz vseh 6 GB pamyati tut odinakovo vysokaya neopr Data obrasheniya 20 noyabrya 2018 20 noyabrya 2018 goda Hands On With The NVIDIA GeForce GTX TITAN X 12GB Video Card Legit Reviews neopr Data obrasheniya 23 maya 2015 2 iyunya 2015 goda Stali izvestny daty anonsa videokart GeForce GTX 1050 i GeForce GTX 1050 Ti 10 yanvarya 2018 Data obrasheniya 12 iyunya 2017 The New GeForce GTX 1060 graphics card neopr www geforce com Data obrasheniya 2 avgusta 2016 16 avgusta 2016 goda The New GeForce GTX 1070 Graphics Card neopr www geforce com Data obrasheniya 25 iyunya 2016 6 iyulya 2016 goda GeForce GTX 1080 Graphics Card neopr www geforce com Data obrasheniya 25 iyunya 2016 7 maya 2016 goda Webmaster Anons NVIDIA GeForce GTX 1080 Ti samaya bystraya videokarta GeForce GTX THG RU neopr www thg ru Data obrasheniya 13 iyunya 2017 11 iyunya 2017 goda NVIDIA TITAN X Graphics Card with Pascal Architecture neopr www geforce com Data obrasheniya 2 avgusta 2016 22 iyulya 2016 goda NVIDIA predstavila flagmanskuyu videokartu Titan Xp na baze Pascal 7 aprelya
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