Lista de unidades de procesamiento gráfico de Nvidia

Esta lista contiene información general sobre las unidades de procesamiento gráfico (GPU) y las tarjetas de video de Nvidia , según las especificaciones oficiales. Además, algunas placas base de Nvidia vienen con GPU integradas. No se incluyen las ediciones limitadas, especiales o de coleccionista ni las versiones AIB.

Explicaciones de campo

Los campos de la tabla que aparece a continuación describen lo siguiente:

  • Modelo : El nombre comercial del procesador, asignado por Nvidia.
  • Lanzamiento – Fecha de lanzamiento del procesador.
  • Nombre en código : el nombre en código de ingeniería interna para el procesador (normalmente designado por un nombre NVXY y más tarde GXY, donde X es el número de serie e Y es el cronograma del proyecto para esa generación).
  • Fab – Proceso de fabricación. Tamaño medio de las características de los componentes del procesador.
  • Interfaz de bus : bus mediante el cual el procesador gráfico se conecta al sistema (normalmente una ranura de expansión, como PCI, AGP o PCI-Express).
  • Memoria : la cantidad de memoria gráfica disponible para el procesador.
  • SM Count – Número de multiprocesadores de streaming. [1]
  • Reloj central : la frecuencia del reloj central de fábrica; si bien algunos fabricantes ajustan los relojes hacia abajo o hacia arriba, este número siempre será el reloj de referencia utilizado por Nvidia.
  • Frecuencia de reloj de memoria : frecuencia de reloj de memoria efectiva de fábrica (aunque algunos fabricantes ajustan las frecuencias de reloj más bajas o más altas, este número siempre será el de referencia utilizado por Nvidia). Todas las memorias DDR/GDDR funcionan a la mitad de esta frecuencia, excepto la GDDR5, que funciona a un cuarto de esta frecuencia.
  • Configuración del núcleo : el diseño del flujo de trabajo de gráficos, en términos de unidades funcionales. Con el tiempo, la cantidad, el tipo y la variedad de unidades funcionales en el núcleo de la GPU han cambiado significativamente; antes de cada sección de la lista hay una explicación de qué unidades funcionales están presentes en cada generación de procesadores. En los modelos posteriores, los sombreadores se integran en una arquitectura de sombreadores unificada, donde cualquier sombreador puede realizar cualquiera de las funciones enumeradas.
  • Fillrate (tasa de relleno ): tasa de relleno teórica máxima en píxeles texturizados por segundo. Este número se utiliza generalmente como un número de rendimiento máximo para la GPU y, por lo general, una tasa de relleno más alta corresponde a una GPU más potente (y más rápida).
  • Subsección de memoria
    • Ancho de banda : ancho de banda teórico máximo para el procesador con el reloj de fábrica y el ancho de bus de fábrica. GHz = 10 9 Hz.
    • Tipo de bus : tipo de bus o buses de memoria utilizados.
    • Ancho de bus : ancho máximo de bits del bus o buses de memoria utilizados. Siempre será un ancho de bus de fábrica.
  • Sección de soporte de API
    • Direct3D – Versión máxima de Direct3D totalmente compatible.
    • OpenGL – Versión máxima de OpenGL totalmente compatible.
    • OpenCL – Versión máxima de OpenCL totalmente compatible.
    • Vulkan – Versión máxima de Vulkan totalmente compatible.
  • Características : se agregaron características que no son estándar como parte de las dos bibliotecas de gráficos.

GPU de escritorio

Antes de GeForce

ModeloLanzamiento
Fab ( nm ) [2]
Transistores (millones)
Tamaño de la matriz (mm 2 )
Reloj central ( MHz )
Reloj de memoria ( MHz )
Configuración del núcleo [a]
Tasa de llenadoMemoria
TDP (vatios)
Última compatibilidad con API
MOperaciones/es
MPíxeles/s
Mtex/s
MVertices/s
Tamaño ( MiB )
Ancho de banda ( GB/s )
Tipo de autobús
Ancho de bus ( bit )
STG-200022 de mayo de 1995NV1SGS
500 nm
1 [3]90PCI12
75
50
60
1:1:112121201
2
4
0,4
0,48
Memoria RAM
virtual EDO de FPM
64?1.0n / A
Riva 12825 de agosto de 1997NV3SGS 350 nm4 [4]90AGP 1x, [5] PCI10010010010010041.6DEG128?5.01.0
Riva 128 ZX23 de febrero de 1998SGS/ TSMC 350 nmAGP 2x, PCI8?
Riva TNT15 de junio de 1998NV4TSMC 350 nm7 [6]90901102:2:21801801808
16
1,76?6.01.2
Ventaja22 de marzo de 1999NV6TSMC 250 nmAGP 4x, PCI1001252002002008
16
1.064?
Vanta LTMarzo de 2000AGP 2x801001601601608
16
0,8?
Riva TNT2 M64Octubre de 1999AGP 4x, PCI1251502502502508
16
32
1.2?
Riva TNT215 de marzo de 1999NV515 [7]9016
32
2.4128?
Riva TNT2 Pro12 de octubre de 1999TSMC 220 nm14316628628628616
32
2.656?
Riva TNT2 Ultra15 de marzo de 1999TSMC 250 nm15018330030030016
32
2.928?

Serie GeForce 256

  • Todos los modelos se fabrican mediante el proceso de fabricación de 220 nm de TSMC.
  • Todos los modelos son compatibles con Direct3D 7.0 y OpenGL 1.2
  • Todos los modelos admiten hardware Transform and Lighting (T&L) y Cube Environment Mapping
ModeloLanzamiento
Transistores (millones)
Tamaño de la matriz (mm 2 )
Reloj central ( MHz )
Reloj de memoria ( MHz )
Configuración del núcleo [a]
Tasa de llenadoMemoria
Rendimiento ( MFLOPS
FP32 )
TDP (vatios)
MOperaciones/es
MPíxeles/s
Mtex/s
MVertices/s
Tamaño ( MiB )
Ancho de banda ( GB/s )
Tipo de autobús
Ancho de bus ( bit )
GeForce 256 SDR [8]11 de octubre de 1999NV1017139AGP 4x , PCI1201664:4:4480480480032
64
2.656DEG12896013
GeForce 256 DDR [9]13 de diciembre de 19991504.800RDA12

Serie GeForce2

  • Todos los modelos son compatibles con Direct3D 7 y OpenGL 1.2
  • Todos los modelos son compatibles con la arquitectura de doble pantalla TwinView, transformación e iluminación de segunda generación (T&L), Nvidia Shading Rasterizer (NSR) y procesador de video de alta definición (HDVP).
  • Los modelos GeForce2 MX son compatibles con el control de vibración digital (DVC)
ModeloLanzamientoFab ( nm ) [2]
Transistores (millones)
Tamaño de la matriz (mm 2 )
Reloj central ( MHz )
Reloj de memoria ( MHz )
Configuración del núcleo [a]
Tasa de llenadoMemoria
Rendimiento ( GFLOPS
FP32 )
TDP (vatios)
MOperaciones/es
MPíxeles/s
Mtex/s
MVertices/s
Tamaño ( MiB )
Ancho de banda ( GB/s )
Tipo de autobús
Ancho de bus ( bit )
GeForce2 MX IGP + nForce 220/4204 de junio de 2001NV1A (IGP) / NV11 (MX)TSMC
180 nm
20 [10]64Servicio Federal de Seguridad1751332:4:23503507000Hasta 32 RAM del sistema2.128
4.256
RDA64
128
0,7003
GeForce2 MX2003 de marzo de 2001AGP 4x , PCI16632
64
1.328DEG641
GeForce2MX28 de junio de 20002.6561284
GeForce2 MX4003 de marzo de 2001200166.200 (DEG)
166 (DDR)
4004008001.328 3.200 2.656DEG
DDR
64/128 (DEG)
64 (DDR)
0.8005
GeForce2 GTS26 de abril de 2000NV1525 [11]88AGP 4x1664:8:48008001.6005.312RDA1281.6006
GeForce2 Pro5 de diciembre de 20002006.4?
GeForce2 Ti1 de octubre de 2001TSMC
150 nm
2501.0001.0002.0002.000?
GeForce2 Ultra14 de agosto de 2000TSMC
180 nm
230647.36?

Serie GeForce3

  • Todos los modelos se fabrican mediante el proceso de fabricación de 150 nm de TSMC.
  • Todos los modelos son compatibles con Direct3D 8.0 y OpenGL 1.3
  • Todos los modelos admiten texturas 3D, arquitectura de memoria Lightspeed (LMA), motor nFiniteFX y búferes de sombras.
ModeloLanzamiento
Transistores (millones)
Tamaño de la matriz (mm 2 )
Reloj central ( MHz )
Reloj de memoria ( MHz )
Configuración del núcleo [a]
Tasa de llenadoMemoria
Rendimiento ( GFLOPS
FP32 )
TDP (vatios)
MOperaciones/es
MPíxeles/s
Mtex/s
MVertices/s
Tamaño ( MiB )
Ancho de banda ( GB/s )
Tipo de autobús
Ancho de bus ( bit )
GeForce3 Ti2001 de octubre de 2001NV2057128AGP 4x , PCI1752004:1:8:4700700140043,7564
128
6.4RDA1288.750?
GeForce327 de febrero de 2001200230800800160050647.3610.00?
GeForce3 Ti5001 de octubre de 200124025096096019206064
128
8.012.0029

Serie GeForce4

  • Todos los modelos se fabrican mediante el proceso de fabricación TSMC de 150 nm.
  • Todos los modelos admiten Accuview Antialiasing (AA), Lightspeed Memory Architecture II (LMA II), nView
ModeloLanzamiento
Transistores (millones)
Tamaño de la matriz (mm 2 )
Reloj central ( MHz )
Reloj de memoria ( MHz )
Configuración del núcleo [a]
Tasa de llenadoMemoria
Rendimiento ( GFLOPS
FP32 )
Versión API compatible
TDP (vatios)
MOperaciones/es
MPíxeles/s
Mtex/s
MVertices/s
Tamaño ( MiB )
Ancho de banda ( GB/s )
Tipo de autobús
Ancho de bus ( bit )
GeForce4 MX IGP + nForce21 de octubre de 2002NV1F??Servicio Federal de Seguridad250133
200
2:0:4:25005001.000125Hasta 128 RAM del sistema2.128
6.4
RDA64
128
1.0007.01.2?
GeForce4 MX4206 de febrero de 2002NV1729 [12]65
PCI AGP 4x
166642.656DEG
DDR
128 (DEG)
64 (DDR)
14
GeForce4 MX440 SE2002133
166 [13]
500 [13]

1000

64
128
2.128 5.312 [13]RDA64 128 [13]13
GeForce MX400014 de diciembre de 2003NV18B2965
PCI AGP 8x
16610002.6566414
GeForce PCX430019 de febrero de 2004PCIe x1612816
GeForce4 MX4406 de febrero de 2002NV172965
PCI AGP 4x
2752005505501.100137,564
128
6.41281.10018
GeForce4 MX440 8x25 de septiembre de 2002NV1829 [14]65
PCI AGP 8x
166
250
2.656 [15]
8.0
64
128
19
GeForce4 MX4606 de febrero de 2002NV172965
PCI AGP 4x
3002756006001.2001508.81281.20022
GeForce4 Ti420016 de abril de 2002NV2563 [16]142AGP 4x250222 (128 MiB)
250 (64 MiB)
4:2:8:41.0001.0002.0001257.104 (128 MiB)
8.0 (64 MiB)
15.008.0a1.333
GeForce4 Ti4200 8x25 de septiembre de 2002NV2863 [17]142AGP 8x2508.034
GeForce4 Ti44006 de febrero de 2002NV2563142AGP 4x2752751.1001.1002.200137,51288.816,5037
GeForce4 Ti4400 8x
(Ti4800SE [b] )
20 de enero de 2003NV2863101AGP 8x38
GeForce4 Ti46006 de febrero de 2002NV2563142AGP 4x3003251.2001.2002.40015010.418.00?
GeForce4 Ti4600 8x
(Ti4800 [c] )
20 de enero de 2003NV2863101AGP 8x43
  1. ^ Sombreadores de píxeles : sombreadores de vértices : unidades de mapeo de texturas : unidades de salida de renderizado
  2. ^ GeForce4 Ti4400 8x: los fabricantes de tarjetas que utilizan este chip etiquetan la tarjeta como Ti4800SE. La superficie del chip tiene impreso "Ti-8x".
  3. ^ GeForce4 Ti4600 8x: los fabricantes de tarjetas que utilizan este chip etiquetan la tarjeta como Ti4600 y, en algunos casos, como Ti4800. La superficie del chip tiene impreso "Ti-8x" y "4800" en la parte inferior.
ModeloCaracterísticas
Motor nFiniteFX IIMotor de procesamiento de vídeo (VPE)
GeForce4 MX420No
GeForce4 MX440 SENo
GeForce4 MX4000No
GeForce4 PCX4300No
GeForce4 MX440No
GeForce4 MX440 8XNo
GeForce4 MX460No
GeForce4 Ti4200No
GeForce4 Ti4200 8xNo
GeForce4 Ti4400No
GeForce4 Ti4400 8xNo
GeForce4 Ti4600No
GeForce4 Ti4600 8xNo

Serie GeForce FX (5xxx)

  • Todos los modelos son compatibles con Direct3D 9.0a y OpenGL 1.5 (2.1 (software) con los controladores más recientes)
  • La serie GeForce FX ejecuta sombreadores de vértices en una matriz
ModeloLanzamientoNombre en claveFab ( nm ) [2]Transistores (millones)Tamaño de la matriz (mm 2 ) Interfaz de busReloj central ( MHz )Reloj de memoria ( MHz )Configuración del núcleo [a]Tasa de llenadoMemoriaRendimiento ( GFLOPS
FP32 )
TDP (vatios)
MOperaciones/esMPíxeles/sMtex/sMVertices/sTamaño ( MiB )Ancho de banda ( GB/s )Tipo de autobúsAncho de bus ( bit )
GeForce FX 5100Marzo de 2003NV34TSMC 150 nm45 [18]124AGP 8x2001664:2:4:4800800800100.064
128
2.6RDA6412.0?
GeForce FX 5200 LE2501.0001.0001.000125.064
128
256
2.6
5.3
64
128
15.0?
GeForce FX 5200
PCI AGP 8x
2003.2
6.4
64
128
21
GeForce FX 5200 Ultra6 de marzo de 2003AGP 8x3253251.3001.3001.300162,510.412819.532
GeForce PCX 530017 de marzo de 2004PCIe x162501661.0001.0001.000125.0128
256
2.66415.021
GeForce FX 5500Marzo de 2004NV34B45 [19]91Tarjeta de video AGP 8x Tarjeta de video
AGP 4x
270166
200
1.0801.0801.080135.064
128
256
5.3
6.4
12816.2?
GeForce FX 5600 XTOctubre de 2003NV31TSMC 130 nm80 [20]121AGP 8x235200940940940117,564
128
3.2
6.4
64
128
14.1?
GeForce FX 5600Marzo de 2003
PCI AGP 8x
3252751.3001.3001.300162,564
128
256 [21]
8.812819.525
GeForce FX 5600 Ultra6 de marzo de 2003AGP 8x3503501.4001.4001.400175.064
128
11.221.027
GeForce FX 5600 Ultra Rev.24004001.6001.6001.600200.012.824.031
GeForce FX 5700 VESeptiembre de 2004NV3682 [22]1332502004:3:4:4100010001000187,5128
256
3.2
6.4
64
128
17.520
GeForce FX 5700 LEMarzo de 2004
PCI AGP 8x
21
GeForce FX 57002003AGP 8x4252501.7001.7001.700318,78.012829.720
GeForce PCX 575017 de marzo de 2004PCIe x1612825
GeForce FX 5700 Ultra23 de octubre de 2003AGP 8x4754531.9001.9001.900356.2128
256
14.4Memoria GDDR233.243
GeForce FX 5700 Ultra GDDR315 de marzo de 200447515.2Memoria GDDR338
GeForce FX 580027 de enero de 2003NV30125 [23]1994004004:2:8:41.6001.6003.200300.012812.8Memoria GDDR224.055
GeForce FX 5800 Ultra5005002.0002.0004.000375.016.030.066
GeForce FX 5900 ZT15 de diciembre de 2003NV35135 [24]2073253504:3:8:41.3001.3002.600243,722.4RDA25622.7?
GeForce FX 5900 XT15 de diciembre de 2003 [25]3901.6001.6003.200300.027.348
GeForce FX 5900Mayo de 200340042527.228.055
GeForce FX 5900 Ultra12 de mayo de 20034501.8001.8003.600337,5128
256
31.565
GeForce PCX 590017 de marzo de 2004PCIe x163502751.4001.4002.800262,517.624.549
GeForce FX 5950 Ultra23 de octubre de 2003NV38135 [26]207AGP 8x4754751.9001.9003.800356.225630.433.283
GeForce PCX 595017 de febrero de 2004PCIe x1642527.2Memoria GDDR383
LanzamientoNombre en claveFab ( nm ) [2]Transistores (millones)Tamaño de la matriz (mm 2 ) Interfaz de busReloj central ( MHz )Reloj de memoria ( MHz )Configuración del núcleo [a]Tasa de llenadoMemoriaRendimiento ( GFLOPS
FP32 )
TDP (vatios)
MOperaciones/esMPíxeles/sMtex/sMVertices/sTamaño ( MiB )Ancho de banda ( GB/s )Tipo de autobúsAncho de bus ( bit )

Serie GeForce 6 (6xxx)

  • Todos los modelos son compatibles con Direct3D 9.0c y OpenGL 2.1
  • Todos los modelos admiten Transparencia AA (a partir de la versión 91.47 de los controladores ForceWare) y PureVideo
ModeloLanzamientoNombre en claveFab ( nm ) [2]Transistores (millones)
Tamaño de matriz ( mm2 )
Interfaz de busReloj central ( MHz )Reloj de memoria ( MHz )Configuración del núcleo [a]Tasa de llenadoMemoriaRendimiento (GFLOPS)TDP (vatios)
MOperaciones/esMPíxeles/sMtex/sMVertices/sTamaño ( MiB )Ancho de banda ( GB/s )Tipo de autobúsAncho de bus ( bit )
GeForce 6100 + nForce 41020 de octubre de 2005MCP51TSMC de 90 nmHipertransporte425100–200 (DDR)
200–533 (DDR2)
2:1:2:1850425850106.25Hasta 256 RAM del sistema1,6–6,4 (DDR)
3,2–17,056 (DDR2)
Memoria DDR
DDR2
64
128
??
GeForce 6150 SE + nForce 430Junio ​​de 2006MCP61200
400 [ cita requerida ]
3.2
16.0 [ cita requerida ]
DDR2??
GeForce 6150 LE + nForce 430MCP61100–200 (DDR)
200–533 (DDR2)
1,6–6,4 (DDR)
3,2–17,056 (DDR2)
Memoria DDR
DDR2
??
GeForce 6150 + nForce 43020 de octubre de 2005MCP51475950475950118,751,6–6,4 (DDR)
3,2–17,056 (DDR2)
??
GeForce 6200 LE4 de abril de 2005NV44TSMC 110 nm75
110 [27]
AGP 8x
PCIe x16
35026670070070087,5128
256
4.256RDA64??
GeForce 6200A4 de abril de 2005NV44A75
110 [28]
AGP 8x

PCI

300

350 [29]

250 (DDR)
250-333 (DDR2) [29]
4:3:4:21.400 [29]700 [29]1400 [29]175
225 [30]
128
256 [29]
512 [29]
4
4-5.34 (DDR2) [31]
DDR
DDR2 [30]
64 [30]??
GeForce 620012 de octubre de 2004 (PCIe)
17 de enero de 2005 (AGP)
NV43146
154 [32]
PCI AGP 8x
PCIe
x16
3002754:3:4:41.2001.2001.200225128
256
8.8RDA1281.220
Turbocaché GeForce 620015 de diciembre de 2004NV4475
110 [27]
PCIe x16350200
275
350
4:3:4:21.4007001.400262,5128–256 RAM del sistema, incluidas 16/32–64/128 integradas3.2
4.4
5.6
RDA641.425
GeForce 65001 de octubre de 20054003331.6008001.600300128
256
5.328??
GeForce 6600 LE2005NV43146
154 [32]
AGP 8x
PCIe x16
3002004:3:4:41.2001.2001.2002256.41281.3?
GeForce 660012 de agosto de 2004275
400
8:3:8:42.4002.4008.8
12.8
Memoria DDR
DDR2
2.426
GeForce 6600 GT12 de agosto de 2004 (PCIe)
14 de noviembre de 2004 (AGP)
500475 (AGP)
500 (PCIe)
4.0002.0004.00037515.2 (AGP) [33]
16 (PCIe)
Memoria GDDR34.047
GeForce 6800 LE22 de julio de 2004 (AGP)
16 de enero de 2005 (PCIe)
NV40 (AGP)
NV41, NV42 (PCIe)
IBM 130 nm222
287 (NV40) [34]
222
225 (NV41) [35]
198
222 (NV42) [36]
320 (AGP)
325 (PCIe)
3508:4:8:82.560 (AGP)
2.600 (PCIe)
2.560 (AGP)
2.600 (PCIe)
2.560 (AGP)
2.600 (PCIe)
320 (AGP)
325 (PCIe)
12822.4RDA2562.6?
GeForce 6800 XT30 de septiembre de 2005300 (64 bits)
325
266 (64 bits)
350
500 (GDDR3)
2.400
2.600
2.400
2.600
2.400
2.600
300
325
2564.256
11.2
22.4
32 (GDDR3)
Memoria DDR
DDR2
GDDR3
64 [37]
128 [38]
256
2.636
GeForce 680014 de abril de 2004 (AGP)
8 de noviembre de 2004 (PCIe)
32535012:5:12:123.9003.9003.900406,25128
256
22.4RDA2563.940
GeForce 6800 GTO14 de abril de 2004NV45222
287 (NV45) [39]
PCIe x164504.2004.2004.200437,525628.8Memoria GDDR3??
GeForce 6800 GS8 de diciembre de 2005 (AGP)
7 de noviembre de 2005 (PCIe)
NV40 (AGP)
NV42 (PCIe)
TSMC 110 nm222
287 (NV40) [34]
198
222 (NV42) [36]
AGP 8x
PCIe x16
350 (AGP)
425 (PCIe)
5005.1005.1005.100531,25128
256
324.2
5.1
59
GeForce 6800 GT4 de mayo de 2004 (AGP)
28 de junio de 2004 (PCIe)
NV40 (AGP)
NV45 (PCIe)
IBM 130 nm222
287 (NV40) [34]
222
287 (NV45) [39]
AGP 8x
PCIe x16
35016:6:16:165.6005.6005.6005255.667
GeForce 6800 Ultra4 de mayo de 2004 (AGP)
28 de junio de 2004 (PCIe)
14 de marzo de 2005 (512 MiB)
400525 (512 MiB)
550 (256 MiB)
6.4006.4006.400600256
512
33,6 (512 MB)
35,2 (256 MB)
6.4105
Edición Ultra Extreme de la GeForce 68004 de mayo de 2004NV40222
287 (NV40) [34]
AGP 8x4506007.2007.2007.20067525635.2??
ModeloLanzamientoNombre en claveFab ( nm ) [2]Transistores (millones)
Tamaño de matriz ( mm2 )
Interfaz de busReloj central ( MHz )Reloj de memoria ( MHz )Configuración del núcleo [a]Tasa de llenadoMemoriaRendimiento (GFLOPS)TDP (vatios)
MOperaciones/esMPíxeles/sMtex/sMVertices/sTamaño ( MiB )Ancho de banda ( GB/s )Tipo de autobúsAncho de bus ( bit )

Características

ModeloCaracterísticas
OpenEXR HDRInterfaz de enlace escalable (SLI)TurboCacheDecodificación de PureVideo WMV9
GeForce 6100NoNoNoLimitado
GeForce 6150 SENoNoSolo lado del conductorLimitado
GeForce 6150NoNoNo
GeForce 6150 LENoNoSolo lado del conductor
GeForce 6200NoNoSí (sólo PCIe)
GeForce 6500No
GeForce 6600 LESí (sin conector SLI)No
GeForce 6600Sí (conector SLI o interfaz PCIe)No
GeForce 6600 DDR2Sí (conector SLI o interfaz PCIe)No
GeForce 6600 GTNo
GeForce 6800 LENoNoNo
GeForce 6800 XTSí (sólo PCIe)NoSí (solo NV42)
GeForce 6800Sí (sólo PCIe)NoSí (solo NV41, NV42)
GeForce 6800 GTONoNo
GeForce 6800 GSSí (sólo PCIe)NoSí (solo NV42)
GeForce 6800 GTSí (sólo PCIe)NoNo
GeForce 6800 UltraSí (sólo PCIe)NoNo

Serie GeForce 7 (7xxx)

  • Todos los modelos son compatibles con Direct3D 9.0c y OpenGL 2.1
  • Todos los modelos admiten Transparencia AA (a partir de la versión 91.47 de los controladores ForceWare)
ModeloLanzamientoNombre en claveFab ( nm ) [2]Transistores (millones)Tamaño de la matriz (mm 2 ) Interfaz de busReloj central ( MHz )Reloj de memoria ( MHz )Configuración del núcleo [a]Tasa de llenadoMemoriaRendimiento (GFLOPS)TDP (vatios)
MOperaciones/esMPíxeles/sMtex/sMVertices/sTamaño ( MiB )Ancho de banda ( GB/s )Tipo de autobúsAncho de bus ( bit )
GeForce 7025 + nForce 630aJulio de 2007MCP68STSMC 110 nmHipertransporte425200 (DDR)
400 (DDR2)
933 (DDR3)
2:1:2:2850850850106.25Hasta 256 RAM del sistema6,4
12,8
34
DDR
DDR2
DDR3
64
128
??
GeForce 7050PV + nForce 630aMCP67QV??
GeForce 7050 + nForce 610i/630iMCP73TSMC de 90 nmHipertransporte/ FSB5003331.0001.0001.0001255.336DDR264??
GeForce 7100 + nForce 630iMCP76Servicio Federal de Seguridad6004001.2001.2001.2001506.4??
GeForce 7150 + nForce 630i6301.2601.2601.260157,5??
GeForce 7100 GS8 de agosto de 2006NV44TSMC 110 nm75 [27]110PCIe x16350266
333
4:3:4:21.4007001.400262,5128
256
2.4
4.8
DDR232
64
??
GeForce 7200 GS18 de enero de 2006G72TSMC de 90 nm112 [40]814504002:2:4:21.8009001.800337,53.2
6.4
DDR20.911
GeForce 7300 SE22 de marzo de 20063503334:3:4:21282.656
5.328
??
GeForce 7300 LE1.413
GeForce 7300 GS18 de enero de 20065504002.2001.1002.200412.5128
256
6.4642.210
GeForce 7300 GT15 de mayo de 2006G73177 [41]125AGP 8x
PCIe x16
350325 (DDR2)
700 (GDDR3)
8:5:8:42.8001.4002.800437,510,4
22,4
Memoria DDR2-
GDDR3
1282.824
GeForce 7500 LE2006G72112 [40]81PCIe x16475
550
405
324
4:3:4:22.2001.1002.200593.864
128
256
6.480
5.2
DDR264?10
GeForce 7600 GS22 de marzo de 2006 (PCIe)
1 de julio de 2006 (AGP)
G73177 [41]125AGP 8x
PCIe x16
400400 (DDR2)
700 (GDDR3)
12:5:12:84.8003.2004.80050025612,8
22,4
Memoria DDR2-
GDDR3
1284.830
GeForce 7600 GT9 de marzo de 2006 (PCIe)
15 de julio de 2006 (AGP)
5606.7204.4806.7207006.7?
GeForce 7600 GT de 80 nm8 de enero de 2007G73-B1TSMC de 80 nm?48
GeForce 7650 GS22 de marzo de 2006G73PCIe x164504005.4003.6005.400562,512.7DDR2??
GeForce 7800 GS2 de febrero de 2006G70TSMC 110 nm302 [42]333AGP 8x37560016:8:16:86.0003.0006.00075038.4Memoria GDDR3256670
GeForce 7800 GT11 de agosto de 2005PCIe x1640050020:7:20:168.0006.4008.00070032859
GeForce 7800 GTX22 de junio de 2005 (256 MiB)
14 de noviembre de 2005 (512 MiB)
430 (256 MiB)
550 (512 MiB)
600 (256 MiB)
850 (512 MiB)
24:8:24:1610.320 (256 MiB)
13.200 (512 MiB)
6.880 (256 MB)
8.800 (512 MB)
10.320 (256 MiB)
13.200 (512 MiB)
860 (256 MiB)
1100 (512 MiB)
256
512
38,4 (256 MB)
54,4 (512 MB)
10.3
13.2
100 (256 MiB)
116 (512 MiB)
GeForce 7900 GSMayo de 2006 (PCIe)
2 de abril de 2007 (AGP)
G71TSMC de 90 nm278 [43]196AGP 8x
PCIe x16
45066020:7:20:169.0007.2009.000787,525642.24950
GeForce 7900 GT9 de marzo de 2006PCIe x1624:8:24:1610.80010.80090010.865
GeForce 7900 GTO1 de octubre de 200665015.60010.40015.6001.30051215.6?
GeForce 7900 GTX9 de marzo de 200680051.215.6105
GeForce 7900 GX22x G715006002x24:8:24:1624.00016.00024.0002.0002x5122x38,4??
GeForce 7950 GT6 de septiembre de 2006 (PCIe)
2 de abril de 2007 (AGP)
G71AGP 8x
PCIe x16
55070024:8:24:1613.2008.80013.2001.10051244.813.290
GeForce 7950 GX25 de junio de 20062x G71PCIe x165006002x24:8:24:1624.00016.00024.00020002x5122x38,424136
ModeloLanzamientoNombre en claveFab ( nm ) [2]Transistores (millones)Tamaño de la matriz (mm 2 ) Interfaz de busReloj central ( MHz )Reloj de memoria ( MHz )Configuración del núcleo [a]MOperaciones/esMPíxeles/sMtex/sMVertices/sTamaño ( MiB )Ancho de banda ( GB/s )Tipo de autobúsAncho de bus ( bit )Rendimiento (GFLOPS)TDP (vatios)
Tasa de llenadoMemoria

Características

ModeloCaracterísticas
Antialiasing con corrección gammaHDR OpenEXR de 64 bitsInterfaz de enlace escalable (SLI)TurboCacheDVI de doble enlace
GeForce 7100 GSNoNoSí (solo PCIe, sin puente SLI)No
GeForce 7200 GSNoNo
GeForce 7300 SENoNo
GeForce 7300 LENoNo
GeForce 7300 GSSí (sólo PCIe)No
GeForce 7300 GTSí (solo PCIe, sin puente SLI)NoUn puerto
GeForce 7600 GSSí (sólo PCIe)NoUn puerto
GeForce 7600 GTSí (sólo PCIe)NoUn puerto
GeForce 7600 GT (80 nm)NoUn puerto
GeForce 7650 GS (80 nm)Sí (dependiendo del diseño del OEM)NoUn puerto
GeForce 7800 GSNoNoUn puerto
GeForce 7800 GTNoUn puerto
GeForce 7800 GTXNoUn puerto
GeForce 7800 GTX 512NoUn puerto
GeForce 7900 GSSí (sólo PCIe)NoDos puertos
GeForce 7900 GTNoDos puertos
GeForce 7900 GTONoDos puertos
GeForce 7900 GTXNoDos puertos
GeForce 7900 GX2 (GTX Duo)NoDos puertos
GeForce 7950 GTSí (sólo PCIe)NoDos puertos
GeForce 7950 GX2NoDos puertos

Serie GeForce 8 (8xxx)

  • Todos los modelos admiten anti-aliasing de muestra de cobertura, filtrado anisotrópico independiente del ángulo y OpenEXR HDR de 128 bits.
ModeloLanzamientoNombre en claveFab ( nm ) [2]Transistores (millones)Tamaño de la matriz (mm 2 ) Interfaz de busFrecuencia de relojConfiguración del núcleo [a]Tasa de llenadoMemoriaVersión API compatiblePotencia de procesamiento ( GFLOPS ) [b]TDP (vatios)Comentarios
Núcleo ( MHz )Sombreador ( MHz )Memoria ( MHz )Píxel ( GP /s)Textura ( GT /s)Tamaño ( MiB )Ancho de banda ( GB/s )Tipo de autobúsAncho de bus ( bit )Direct3DOpenGLPrecisión simple
Tarjeta gráfica GeForce 8100 [44]2008MCP78TSMC de 80 nmDesconocidoDesconocidoPCIe 2.0 x165001200400
(memoria del sistema)
8:8:424Hasta 512 desde la memoria del sistema6.4
12.8
DDR264
128
10.03.328.8DesconocidoEl bloque de decodificación de vídeo HD PureVideo HD está desconectado
Tarjeta gráfica GeForce 8200 [44]DesconocidoDesconocidogtDesconocidoPureVideo 3 con VP3
Tarjeta gráfica GeForce 8300 [44]DesconocidoDesconocido1500Hasta 512 desde la memoria del sistema36Desconocido
GeForce 8300 GS [45]Julio de 2007G86210127PCIe 1.0 x164509004001.83.6128
512
6.46414.440Solo OEM
GeForce 8400 GS15 de junio de 2007PCIe 1.0 x16
PCI
16:8:4128
256
512
28.8
GeForce 8400 GS rev.210 de diciembre de 2007G98TSMC de 65 nm86PCIe 2.0 x16
PCIe x1
PCI
56714008:8:42.2684.53622.425
GeForce 8400 GS rev.312 de julio de 2010GT218TSMC 40 nm26057PCIe 2.0 x16520
589
1230400 (DDR2)
600 (DDR3)
8:4:42.08
2.356
2.08
2.356
512
1024
4.8
6.4
9.6
Memoria DDR2
DDR3
32
64
10.119.7
GeForce 8500 GT17 de abril de 2007G86TSMC de 80 nm210127PCIe 1.0 x16
PCI
45090040016:8:41.83.6256
512
1024
12.8DDR212810.028.845
GeForce 8600 GSAbril de 2007G84289169PCIe 1.0 x16540118016:8:84.324.32256
512
75,547Solo OEM
GeForce 8600 GT17 de abril de 2007PCIe 1.0 x16
PCI
1188400
700
32:16:88.64256
512
1024
12,8
22,4
Memoria DDR2-
GDDR3
76
GeForce 8600 GTSPCIe 1.0 x16675145010005.410.8256
512
32Memoria GDDR392.871
GeForce 8800 GSEnero de 2008G92TSMC de 65 nm754324PCIe 2.0 x16550137580096:48:126.626.4384
768
38.4192264105
GeForce 8800 GTS (G80)12 de febrero de 2007 (320)
8 de noviembre de 2006 (640)
G80TSMC de 90 nm681484PCIe 1.0 x16513118896:24:2010.312.3320
640
64320228146
GeForce 8800 GTS 112 (G80)19 de noviembre de 20075001200112:28: [c] 201014640268,8150Sólo modelos XFX, EVGA y BFG, de muy corta duración [48]
GeForce 8800 GT29 de octubre de 2007 (512)
11 de diciembre de 2007 (256, 1024)
G92TSMC de 65 nm754324PCIe 2.0 x166001500700 (256)
900 (512, 1024)
112:56:169.633.6256
512
1024
57.6256336125
GeForce 8800 GTS (G92)11 de diciembre de 20076501625970128:64:1610.441.651262.1416135
GeForce 8800 GTX8 de noviembre de 2006G80TSMC de 90 nm681484PCIe 1.0 x165751350900128:32: [c] 2413.818.476886.4384345.6145
GeForce 8800 Ultra2 de mayo de 20076121500108014.719.6103.7384175
ModeloLanzamientoNombre en claveFab ( nm ) [2]Transistores (millones)Tamaño de la matriz (mm 2 ) Interfaz de busNúcleo ( MHz )Sombreador ( MHz )Memoria ( MHz )Configuración del núcleo [a]Píxel ( GP /s)Textura ( GT /s)Tamaño ( MiB )Ancho de banda ( GB/s )Tipo de autobúsAncho de bus ( bit )Direct3DOpenGLPrecisión simpleTDP (vatios)Comentarios
Frecuencia de relojTasa de llenadoMemoriaVersión API compatiblePotencia de procesamiento ( GFLOPS ) [b]
  1. ^ ab Sombreadores unificados : unidades de mapeo de texturas : unidades de salida de renderizado
  2. ^ ab Para calcular la potencia de procesamiento, consulte Rendimiento .
  3. ^ ab Full G80 contiene 32 unidades de dirección de textura y 64 unidades de filtrado de textura a diferencia de G92 que contiene 64 unidades de dirección de textura y 64 unidades de filtrado de textura [46] [47]

Características

  • Capacidad de cómputo 1.1: tiene soporte para funciones atómicas, que se utilizan para escribir programas seguros para subprocesos.
  • Capacidad de cómputo 1.2: para obtener más detalles, consulte CUDA
ModeloCaracterísticas
Interfaz
de enlace escalable (SLI)


SLI de 3 vías
PureVideo HD
con VP1
PureVideo 2 con VP2,
motor BSP y motor AES128
PureVideo 3 con VP3,
motor BSP y motor AES128
PureVideo 4 con VP4
Capacidad de cálculo
GeForce 8300 GS (G86)NoNoNoNoNo1.1
GeForce 8400 GS Rev. 2 (G98)NoNoNoNoNo1.1
GeForce 8400 GS Rev. 3 (GT218)NoNoNoNoNo1.2
GeForce 8500 GTNoNoNoNo1.1
GeForce 8600 GTNoNoNoNo1.1
GeForce 8600 GTSNoNoNoNo1.1
GeForce 8800 GS (G92)NoNoNoNo1.1
GeForce 8800 GTS (G80)NoNoNoNo1.0
GeForce 8800 GTS Rev. 2 (G80)NoNoNoNo1.0
GeForce 8800 GT (G92)NoNoNoNo1.1
GeForce 8800 GTS (G92)NoNoNoNo1.1
GeForce 8800 GTXNoNoNo1.0
GeForce 8800 UltraNoNoNo1.0

Serie GeForce 9 (9xxx)

  • Todos los modelos admiten suavizado de muestras de cobertura, filtrado anisotrópico independiente del ángulo y HDR OpenEXR de 128 bits.
ModeloLanzamientoNombre en claveFab ( nm ) [2]Transistores (millones)Tamaño de la matriz (mm 2 ) Interfaz de busFrecuencia de relojConfiguración del núcleo [a]Tasa de llenadoMemoriaPotencia de procesamiento ( GFLOPS ) [b]Versión API compatibleTDP (vatios)Comentarios
Núcleo ( MHz )Sombreador ( MHz )Memoria ( MHz )Píxel ( GP /s)Textura ( GT /s)Tamaño ( MiB )Ancho de banda ( GB/s )Tipo de autobúsAncho de bus ( bit )Precisión simpleDirect3DOpenGL
Tarjeta gráfica GeForce 9300Octubre de 2008MCP7A-S65 nm282162PCIe 2.0 x164501200400
666
16:8:41.83.6Hasta 512 desde la memoria del sistema6,4/12,8
10,664/21,328
Memoria DDR2
DDR3
64
128
57.610.03.3Desconocidobasado en 8400 GS
Tarjeta gráfica GeForce 9400MCP7A-U58014002.324.6467.212
GeForce 9300 GE [49]Junio ​​de 2008G98TSMC de 65 nm2108654013005008:8:42.164.322566.4 [50]DDR26420.825
GeForce 9300 GS [49]56714002.2684.53622.4
GeForce 9400 GT27 de agosto de 2008G96-200-c1
G96a
G96b
TSMC de 55 nm314144PCIe 2.0 x16
PCI
550400
800
16:8:42.24.4256
512
1024
12,8
25,6
Memoria DDR2-
GDDR3
12844.850
GeForce 9500 GS50024:12:416.0DDR260Fabricante de equipos originales (OEM)
GeForce 9500 GT29 de julio de 2008G96-300-C1UMC65 nm500
800
32:16:84.48.816.0
25.6
Memoria DDR2-
GDDR3
89.6
GeForce 9600 GSG94aTSMC de 65 nm505240PCIe 2.0 x16500125050048:24:1261276824.0DDR2192120DesconocidoFabricante de equipos originales (OEM)
GeForce 9600 GSOMayo de 2008G92-150-A2754324550137580096:48:126.626.4384
768
1536
38.4Memoria GDDR326484
GeForce 9600 GSO 512Octubre de 2008G94a
G94b
TSMC de 65 nm
TSMC de 55 nm
505240
196? [ cita requerida ]
650162590048:24:1610.415.651257.625615690
GeForce 9600 GT Edición Verde2009G94bTSMC de 55 nm196? [ cita requerida ]600
625
1500
1625
700/900
900 [ cita requerida ]
64:32:169.6
10.0
19.2
20.0
512
1024
44,8/57,6
57,6 [ cita requerida ]
192
208
59Voltaje del núcleo = 1,00 V
GeForce 9600 GT21 de febrero de 2008G94-300-A1TSMC de 65 nm240650162590010.420.857.620895
GeForce 9800 GT Edición Verde2009G92a2
G92b
TSMC/UMC de 65 nm
TSMC/UMC de 55 nm
754324
260
5501375700
800
900
112:56:168.830.844,8
51,2
57,6
30875Voltaje del núcleo = 1,00 V
GeForce 9800 GTJulio de 2008G92a
G92b
65 nm
UMC55 nm
60015009009.633.657.6336125
105
GeForce 9800 GTX1 de abril de 2008G92-420-A2TSMC de 65 nm32467516881100128:64:1610.843.251270.4432140
GeForce 9800 GTX+16 de julio de 2008G92bTSMC de 55 nm2607381836110011.80847.232512
1024
470141
GeForce 9800 GX218 de marzo de 20082x G92TSMC/UMC de 65 nm2x7542x324600150010002x128:64:162x9,62x38,42x5122x64.02x2562x384197
ModeloLanzamientoNombre en claveFab ( nm ) [2]Transistores (millones)Tamaño de la matriz (mm 2 ) Interfaz de busNúcleo ( MHz )Sombreador ( MHz )Memoria ( MHz )Configuración del núcleo [a]Píxel ( GP /s)Textura ( GT /s)Tamaño ( MiB )Ancho de banda ( GB/s )Tipo de autobúsAncho de bus ( bit )Precisión simpleDirect3DOpenGLTDP (vatios)Comentarios
Frecuencia de relojTasa de llenadoMemoriaPotencia de procesamiento ( GFLOPS ) [b]Versión API compatible

Características

  • Capacidad de cómputo: 1.1 tiene soporte para funciones atómicas, que se utilizan para escribir programas seguros para subprocesos.
ModeloCaracterísticas
Interfaz de enlace escalable (SLI)PureVideo 2 con VP2,
motor BSP y motor AES128
PureVideo 3 con VP3,
motor BSP y motor AES128
GeForce 9300 GE (G98)No
GeForce 9300 GS (G98)
GeForce 9400 GTNo
GeForce 9500 GT
GeForce 9600 GSO
GeForce 9600 GT
GeForce 9800 GT
GeForce 9800 GTX
3 vías
GeForce 9800 GTX+
GeForce 9800 GX2

Serie GeForce 100

ModeloLanzamientoNombre en claveFab ( nm )Transistores (millones)Tamaño de la matriz (mm 2 ) Interfaz de busFrecuencia de relojConfiguración del núcleo [a]Tasa de llenadoConfiguración de memoriaPotencia de procesamiento ( GFLOPS ) [b]Versión API compatibleTDP (vatios)Comentarios
Núcleo ( MHz )Sombreador ( MHz )Memoria ( MHz )Píxel ( GP /s)Textura ( GT /s)Tamaño ( MiB )Ancho de banda ( GB/s )Tipo de DRAMAncho de bus ( bit )Precisión simpleDirect3DOpenGL
GeForce G 10010 de marzo de 2009G98TSMC de 65 nm21086PCIe 2.0 x1656714005008:8:42.154.35128.0DDR26422.410.03.335Productos OEM
GeForce GT 120G96bTSMC de 55 nm31412150080032:16:84.48.816.012889.650
GeForce GT 130G94b505196125050048:24:12612153624.019212075
GeForce GT 1406501625180064:32:1610.420.8512 102457.6Memoria GDDR3256208105
GeForce GTS 150G92b75426073818361000128:64:1611.80847.232102464.0470141

Serie GeForce 200

  • Todos los modelos admiten suavizado de muestras de cobertura, filtrado anisotrópico independiente del ángulo y HDR OpenEXR de 240 bits.
ModeloLanzamientoNombre en claveFab ( nm )Transistores (millones)Tamaño de la matriz (mm 2 ) Interfaz de busFrecuencia de relojConfiguración del núcleo [a]Tasa de llenadoConfiguración de memoriaPotencia de procesamiento ( GFLOPS ) [b]Versión API compatibleTDP (vatios)ComentariosPrecio de lanzamiento (USD)
Núcleo ( MHz )Sombreador ( MHz )Memoria ( MT/s )Píxel ( GP /s)Textura ( GT /s)Tamaño ( MiB )Ancho de banda ( GB/s )Tipo de DRAMAncho de bus ( bit )Precisión simpleDirect3DOpenGL
GeForce 20526 de noviembre de 2009GT218TSMC 40 nm26057PCIe 2.0 x16589140210008:4:42.3562.3565128DDR26422.410.13.330.5Solo OEM
GeForce 21012 de octubre de 2009GT218-325-B1PCIe 2.0 x16
PCIe x1
PCI
520
589
1230
1402
800
1000–1600
16:8:42.3564.712512
1024
4.0
8.0
12.8
Memoria DDR2
DDR3
32
64
36,4
44,9
30.5
GeForce GT 220GT216-300-A2TSMC 40 nm486100PCIe 2.0 x16615(OEM)
625
1335 (OEM)
1360
1000
1580
48:16:8510512
1024
16.0
25.3
Memoria DDR2
DDR3
64
128
128,2 (fabricante de equipos originales)
130,6
58
GeForce GT 23012 de octubre de 2009 [51]G94bTSMC/ UMC 55 nm505196?6501625180048:24:1610.415.6512
1024
57.6Memoria GDDR32561561075Solo OEM
27 de abril de 2009 [52]G92b7542605001242100096:48:12624153624DDR2192238,5
GeForce GT 24017 de noviembre de 2009GT215-450-A2TSMC 40 nm72713955013401800
2000
3400 (GDDR5)
96:32:84.417.6512
1024
28,8 (OEM)
32
54,4 (GDDR5)
DDR3
GDDR3
GDDR5
128257.310.169
GeForce GTS 2401 de julio de 2009 [53]G92a
G92b
TSMC de 65 nm
TSMC/UMC de 55 nm
754324
260
67516202200112:56:1610.837.8102470.4Memoria GDDR3256362,910.0120Solo OEM
GeForce GTS 2502009G92bTSMC/ UMC 55 nm26070215122000128:64:1611.244.9512
1024
64.0387130
3 de marzo de 2009G92-428-B1TSMC de 65 nm
TSMC/UMC de 55 nm
73818362000
2200
11.80847.232512
1024
64,0
70,4
470150Algunas tarjetas se renombran GeForce 9800 GTX+$150
($130 512 MB)
GeForce GTX 26016 de junio de 2008GT200-100-A265 nm140057657612421998192:64:2816.12836.864896111.9448477182Reemplazado por GTX 260 Core 216$400 (bajó a $270 después de 3 meses [54] )
16 de septiembre de 2008
27 de noviembre de 2008 (55 nm)
GT200-103-A2
G200-103-B2
65 nm
55 nm
576
470
5761242
1350
1998216:72:2816.12841.472896 (1792)111.9536,5
583,2
182
171
La versión de 55 nm tiene menos TDP$300
GeForce GTX 2759 de abril de 2009GT200-105-B3TSMC/UMC de 55 nm47063314042268240:80:2817.72450.6896 (1792)127.0674219Prácticamente la mitad de la GTX 295$250
GeForce GTX 28017 de junio de 2008GT200-300-A265 nm57660212962214240:80:3219.26448,161024141,7512622236Reemplazado por GTX 285$650 (bajó a $430 después de 3 meses [54] )
GeForce GTX 28515 de enero de 2009GT200-350-B3TSMC/UMC de 55 nm4706481476248420.73651,841024 (2048)159.0512708,48204EVGA GTX285 Classified admite SLI de 4 vías$400
GeForce GTX 2958 de enero de 20092x GT200-400-B32x14002x470576124219982x240:80:282x16.1282x46,082x8962x111,92x4481192.3289Los modelos de PCB dual se reemplazaron por un modelo de PCB único con 2 GPU$500
ModeloLanzamientoNombre en claveFab ( nm )Transistores (millones)Tamaño de la matriz (mm 2 ) Interfaz de busNúcleo ( MHz )Sombreador ( MHz )Memoria ( MHz )Configuración del núcleo [a]Píxel ( GP /s)Textura ( GT /s)Tamaño ( MiB )Ancho de banda ( GB/s )Tipo de DRAMAncho de bus ( bit )Precisión simpleDirect3DOpenGLTDP (vatios)ComentariosPrecio de lanzamiento (USD)
Frecuencia de relojTasa de llenadoConfiguración de memoriaPotencia de procesamiento ( GFLOPS ) [b]Versión API compatible

Características

ModeloCaracterísticas
Interfaz de enlace escalable (SLI)PureVideo 2 con
motor VP2: (BSP y 240 AES)
PureVideo 4 con motor VP4
GeForce 210NoNo
GeForce GT 220
GeForce GT 240
GeForce GTS 250
3 vías (4 vías para EVGA 285 Classified)
No
GeForce GTX 260
GeForce GTX 260 núcleos 216
GeForce GTX 260 núcleo 216 (55 nm)
GeForce GTX 275
GeForce GTX 280
GeForce GTX 285
GeForce GTX 295

Serie GeForce 300

ModeloLanzamientoNombre en claveFab ( nm )Transistores (millones)Tamaño de la matriz (mm 2 ) Interfaz de busFrecuencia de relojConfiguración del núcleo [a]Tasa de llenadoConfiguración de memoriaPotencia de procesamiento ( GFLOPS ) [b]TDP (vatios)Comentarios
Núcleo ( MHz )Sombreador ( MHz )Memoria ( MHz )Píxel ( GP /s)Textura ( GT /s)Tamaño ( MiB )Ancho de banda ( GB/s )Tipo de DRAMAncho de bus ( bit )Precisión simple
GeForce 31027 de noviembre de 2009GT218TSMC de 40 nm26057PCIe 2.0 x165891402100016:8:42.3564.7125128DDR26444.830.5Tarjeta OEM, similar a la Geforce 210
GeForce 315Febrero de 2010GT2164861004751100158048:16:43.87.651212.6DDR3105.633Tarjeta OEM, similar a Geforce GT220
GeForce GT 320GT215727144540130272:24:84.3212,96102425.3Memoria GDDR3128187,543Tarjeta OEM
GeForce GT 330 [55]GT215-301-A3 [56]550135096:32:84.4017.6051232.00128257.375Las especificaciones varían según el OEM, similar a GT230 v2.
G92 [57]50012504.00024.0025651.20256240.0
G92B [58]96:32:168.000102416.32DDR2128
GeForce GT 340GT2155501340340096:32:8512
1024
54.4GDDR5 [59]128257.369Tarjeta OEM, similar a la GT240

Serie GeForce 400

  • Todas las tarjetas tienen una interfaz de bus PCIe 2.0 x16 .
  • El requisito base para Vulkan 1.0 en términos de características de hardware era OpenGL ES 3.1, que es un subconjunto de OpenGL 4.3, que es compatible con todas las tarjetas Fermi y más nuevas.
  • Los anchos de banda de memoria indicados en la siguiente tabla se refieren a los diseños de referencia de Nvidia. El ancho de banda real puede ser mayor o menor según el fabricante de la tarjeta gráfica.
ModeloLanzamientoNombre en claveFab ( nm )Transistores (millones)Tamaño de la matriz (mm 2 )Frecuencia de relojConteo de SMConfiguración del núcleo [a] [b]Tasa de llenadoConfiguración de memoriaPotencia de procesamiento ( GFLOPS ) [c]Versión API compatibleTDP (vatios) [d]Precio de lanzamiento (USD)
Núcleo ( MHz )Sombreador ( MHz )Memoria ( MHz )Píxel ( GP /s)Textura ( GT /s)Tamaño ( GiB )Ancho de banda ( GB/s )Tipo de DRAMAncho de bus ( bit )Precisión simpleDoble precisiónVulcanoDirect3DOpenGLOpenCL [e]CUDA
GeForce 405 [f]16 de septiembre de 2011GT216
GT218
40 nm486
260
100
57
475
589
1100
1402
800
790
148:16:8
16:8:4
3.8
2.36
7.6
4.71
0,5
1
12.6DDR364105,6
44,86
Desconocidon/a [63]10.13.31.11.230.5Fabricante de equipos originales (OEM)
GeForce GT 4203 de septiembre de 2010GF108TSMC de 40 nm5851167001400180048:4:42.82.80,528.8Memoria GDDR3128134.4Desconocido12 FL 11_14.62.150
GeForce GT 43011 de octubre de 2010GF108
GF108-300-A1
1600
1800
296:16:411.20,525,6
28,8
268,8Desconocido1.260
18000,5
1
2
28.8128268,8Desconocido1.149$79
130010.464
GeForce GT 4401 de febrero de 2011GF10881016201800
3200
3.212.90,5
1
28,8
51,2
Memoria GDDR3 y
GDDR5
128311.04Desconocido65$100
11 de octubre de 2010GF106117023859411891600
1800
3144:24:244.8619.441.5
3
43.2DDR3192342,43Desconocido56Fabricante de equipos originales (OEM)
GeForce GTS 450790158040004.718.91.596.0Memoria GDDR5455.04Desconocido106
13 de septiembre de 2010
15 de marzo de 2011
GF106-250
GF116-200
78315661200-1600 (GDDR3)
3608 (GDDR5)
4192:32:166.225.00,5
1
57,7128601.34Desconocido106$129
GeForce GTX 460 SE15 de noviembre de 2010GF104-225-A11950332650130034006288:48:327.831.21108.8256748,8Desconocido150$160
GeForce GTX 46011 de octubre de 2010GF1047336:56:329.136.41108.8873.6DesconocidoFabricante de equipos originales (OEM)
12 de julio de 2010GF104-300-KB-A167513503600336:56:249.437.80,7586.4192907.2Desconocido$199
336:56:321
2
115.2256160$229
24 de septiembre de 2011GF11477915574008336:56:2410.943.6196.21921045.6Desconocido$199
GeForce GTX 46531 de mayo de 2010GF100-030-A33000 [64]5296081215320611352:44:3213.326.71102.7256855.36106,921.22.0200 [día]$279
GeForce GTX 47026 de marzo de 2010GF100-275-A3334814448:56:4017.034.01.25133,93201088.64136.08215 [d]$349
GeForce GTX 48026 de marzo de 2010GF100-375-A37011401369615480:60:4821.042.01.5177,43841344,96168.12250 [día]$499
ModeloLanzamientoNombre en claveFab ( nm )Transistores (millones)Tamaño de la matriz (mm 2 )Frecuencia de relojConteo de SMConfiguración del núcleo [a] [b]Tasa de llenadoConfiguración de memoriaPotencia de procesamiento ( GFLOPS ) [c]Versión API compatibleTDP (vatios) [d]Precio de lanzamiento (USD)
Núcleo ( MHz )Sombreador ( MHz )Memoria ( MHz )Píxel ( GP /s)Textura ( GT /s)Tamaño ( GiB )Ancho de banda ( GB/s )Tipo de DRAMAncho de bus ( bit )Precisión simpleDoble precisiónVulcanoDirect3DOpenGLOpenCL [e]CUDA
  1. ^ ab Sombreadores unificados : unidades de mapeo de texturas : unidades de salida de renderizado
  2. ^ ab Cada SM en el GF100 contiene 4 unidades de filtrado de textura por cada unidad de dirección de textura. El chip GF100 completo contiene 64 unidades de dirección de textura y 256 unidades de filtrado de textura. [60] Cada SM en la arquitectura GF104/106/108 contiene 8 unidades de filtrado de textura por cada unidad de dirección de textura, pero ha duplicado tanto las unidades de direccionamiento como las de filtrado. El chip GF104 completo también contiene 64 unidades de dirección de textura y 512 unidades de filtrado de textura a pesar de la mitad del recuento de SM, el chip GF106 completo contiene 32 unidades de dirección de textura y 256 unidades de filtrado de textura y el chip GF108 completo contiene 16 unidades de dirección de textura y 128 unidades de filtrado de textura. [61]
  3. ^ ab Para calcular la potencia de procesamiento, consulte Fermi (microarquitectura)#Rendimiento .
  4. ^ abcde Tenga en cuenta que si bien el TDP de la GTX 460 es comparable al de la serie HD5000 de AMD, las tarjetas basadas en GF100 (GTX 480/470/465) tienen una clasificación mucho más baja pero consumen significativamente más energía, por ejemplo, la GTX 480 con un TDP de 250 W consume más energía que una HD 5970 con un TDP de 297 W. [62]
  5. ^ ab La serie 400 es la única familia no OEM, desde la serie GeForce 9 hasta la 700, que no incluye un sistema oficial de doble GPU. Sin embargo, el 18 de marzo de 2011, EVGA lanzó la primera tarjeta de una sola placa con dos GPU 460 integradas. La tarjeta venía con 2048 MiB de memoria a 3600 MHz y 672 procesadores shader a 1400 MHz y se ofrecía a un precio de venta sugerido de 429 dólares.
  6. ^ La tarjeta GeForce 405 es una GeForce 310 renombrada, que a su vez es una GeForce 210 renombrada.

Serie GeForce 500

ModeloLanzamientoNombre en claveFab ( nm )Transistores (millones)Tamaño de la matriz (mm 2 ) Interfaz de busFrecuencia de relojConteo de SMConfiguración del núcleo [a] [b]Tasa de llenadoConfiguración de memoriaPotencia de procesamiento ( GFLOPS ) [c]Versión API compatibleTDP (vatios) [d]Precio de lanzamiento (USD)
Núcleo ( MHz )Sombreador ( MHz )Memoria ( MHz )Píxel ( GP /s)Textura ( GT /s)Tamaño ( GiB )Ancho de banda ( GB/s )Tipo de DRAMAncho de bus ( bit )Precisión simpleDoble precisiónVulcanoDirect3DOpenGLOpenCL 8CUDA
GeForce 51029 de septiembre de 2011GF119TSMC 40 nm29279PCIe 2.0 x1652310461800148:8:42.14.51
2
14.4DDR364100.4Desconocidon/a [63]12 FL 11_14.61.12.125Fabricante de equipos originales (OEM)
GeForce GT 52012 de abril de 2011PCIe 2.0 x16
PCIe 2.0 x1
PCI
81016203.256.514.4155,5Desconocido29$59
GeForce GT 530 [67]14 de mayo de 2011GF108-220585116PCIe 2.0 x167001400296:16:42.811.228.8128268,822.4050Fabricante de equipos originales (OEM)
GeForce GT 545GF116~1170~23872014403144:24:1611.5217.281.5
3
43192415.07Desconocido70$149
8701740399613,9220,88164Memoria GDDR5128501.12Desconocido105Fabricante de equipos originales (OEM)
GeForce GTX 550 Ti15 de marzo de 2011GF116-400900180041044192:32:2421.628.80,75+0,25
1,5
65,7+32,8
98,5
128+64 [e]
192
691.2Desconocido116$149
GeForce GTX 55514 de mayo de 2011GF1141950332736147238286288:48:2417.635.3191.9128+64 [e]847,9Desconocido150Fabricante de equipos originales (OEM)
GeForce GTX 560 SE20 de febrero de 2012 [68]GF114-200-KB-A1 [f]Desconocido
GeForce GTX 56017 de mayo de 2011GF114-325-A1 [f]810162040087336:56:3225,9245.361 2128.12561088.6Desconocido$199
GeForce GTX 560 Ti25 de enero de 2011GF114-400-A1 [f]82216458384:64:3226.352,61128,261263.4110170$249
30 de mayo de 2011GF110 [g]3000 [70]520 [70]7321464380011352:44:4029.2832.211,25
2,5
1523201030.7128,83210 [d]Fabricante de equipos originales (OEM)
GeForce GTX 560 Ti 448 núcleos29 de noviembre de 2011GF110-270-A1 [g]14448:56:4040,991.251311.7163,97$289
GeForce GTX 5707 de diciembre de 2010GF110-275-A1 [g]15480:60:4043,921,25 2,51405.4175,682.0219 [d]$349
GeForce GTX 5809 de noviembre de 2010GF110-375-A1 [g]7721544400816512:64:4837.0549,411,5
3 [h]
192.3843841581.1197,63244 [d] [72]$499
GeForce GTX 59024 de marzo de 20112xGF110-351-A12x30002x520607121534142x162 veces 512:64:482x29,142x38,852x1,52x163,872x3842488.3311.04365$699
ModeloLanzamientoNombre en claveFab ( nm )Transistores (millones)Tamaño de la matriz (mm 2 ) Interfaz de busFrecuencia de relojConteo de SMConfiguración del núcleo [a] [b]Tasa de llenadoConfiguración de memoriaPotencia de procesamiento ( GFLOPS ) [c]Versión API compatibleTDP (vatios) [d]Precio de lanzamiento (USD)
Núcleo ( MHz )Sombreador ( MHz )Memoria ( MHz )Píxel ( GP /s)Textura ( GT /s)Tamaño ( GiB )Ancho de banda ( GB/s )Tipo de DRAMAncho de bus ( bit )Precisión simpleDoble precisiónVulcanoDirect3DOpenGLOpenCL 8CUDA
  1. ^ ab Sombreadores unificados : unidades de mapeo de texturas : unidades de salida de renderizado
  2. ^ ab Cada SM en el GF110 contiene 4 unidades de filtrado de textura por cada unidad de dirección de textura. El chip GF110 completo contiene 64 unidades de dirección de textura y 256 unidades de filtrado de textura. [65] Cada SM en la arquitectura GF114/116/118 contiene 8 unidades de filtrado de textura por cada unidad de dirección de textura, pero ha duplicado tanto las unidades de direccionamiento como las de filtrado.
  3. ^ ab Para calcular la potencia de procesamiento, consulte Fermi (microarquitectura)#Rendimiento .
  4. ^ abcde De manera similar a la generación anterior, la GTX 580 y probablemente la futura GTX 570 [ necesita actualización ] , si bien reflejan su mejora con respecto a la GF100, aún tienen un TDP nominal más bajo y un mayor consumo de energía, por ejemplo, la GTX580 (TDP de 243 W) consume un poco menos de energía que la GTX 480 (TDP de 250 W). Esto se gestiona mediante la limitación del reloj a través de los controladores cuando se identifica una aplicación dedicada que consume mucha energía que podría infringir el TDP de la tarjeta. El cambio de nombre de la aplicación deshabilitará la limitación y habilitará el consumo de energía total, que en algunos casos podría ser cercano al de la GTX480. [66]
  5. ^ ab 1024 MiB de RAM en un bus de 192 bits ensamblado con 4 x (128 MiB) + 2 x (256 MiB).
  6. ^ abc Internamente se le conoce como GF104B [69]
  7. ^ abcd Internamente se le denomina GF100B [69]
  8. ^ Algunas compañías han anunciado que ofrecerán la GTX580 con 3 GB de RAM. [71]

Serie GeForce 600

  • Añadir NVENC en tarjetas GTX
  • Varias tarjetas de la serie 600 se renombran como tarjetas de la serie 400 o 500.
ModeloLanzamientoNombre en claveFab ( nm )Transistores (millones)Tamaño de la matriz (mm 2 ) Interfaz de busFrecuencia de relojConteo de SMConfiguración del núcleo [a]Tasa de llenadoConfiguración de memoriaPotencia de procesamiento ( GFLOPS ) [b]Versión API compatibleTDP (vatios)Precio de lanzamiento (USD)
Núcleo ( MHz )Aumento promedio ( MHz )Impulso máximo ( MHz )Sombreador ( MHz )Memoria ( MHz )Píxel ( GP /s)Textura ( GT /s)Tamaño ( GiB )Ancho de banda ( GB/s )Tipo de DRAMAncho de bus ( bit )Precisión simpleDoble precisiónVulcano [c]Direct3DOpenGLOpenCL
GeForce 605 [d]3 de abril de 2012GF119TSMC 40 nm29279PCIe 2.0 x165231046898
(1796)
148:8:42.094.20,5 114.4DDR364100.4Desconocido124.61.225Fabricante de equipos originales (OEM)
GeForce GT 610 [e]15 de mayo de 2012GF119-300-A1PCIe 2.0 x16, PCIe x1, PCI81016201000
1800
48:8:43.246.50,5
1
2
8
14.4
155,5Desconocido29Minorista
GeForce GT 620 [f]3 de abril de 2012GF119PCIe 2.0 x16898
(1796)
48:8:46.50,5
1
14.4155,5Desconocido30Fabricante de equipos originales (OEM)
15 de mayo de 2012GF108-100-KB-A158511670014001000–1800296:16:42.811.21
2
8–14,4268,8Desconocido49Minorista
GeForce GT 62519 de febrero de 2013GF119292798101620898
(1796)
148:8:43.246.50,5 114.4155,5Desconocido30Fabricante de equipos originales (OEM)
GeForce GT 630 [g] [h]24 de abril de 2012GK107TSMC de 28 nm1300118PCIe 3.0 x16875875891
(1782)
192:16:1614141
2
28.5128336141.250
15 de mayo de 2012GF108-400-A1TSMC 40 nm585116PCIe 2.0 x1670016201600–1800296:16:42.811.21
2
4
25,6–28,8311Desconocido49Minorista
GF1088101620800
(3200)
96:16:43.213151.2Memoria GDDR5311Desconocido65
29 de mayo de 2013GK208-301-A1TSMC de 28 nm102079PCIe 2.0 x8902902900
(1800)
1384:16:87.2214.441
2
14.4DDR364692.7Desconocido1.225
GeForce GT 63519 de febrero de 2013GK208PCIe 3.0 x89679671001
(2002)
384:16:87,7415.516742,7Desconocido35Fabricante de equipos originales (OEM)
GeForce GT 640 [i]24 de abril de 2012GF116TSMC 40 nm1170238PCIe 2.0 x167201440891
(1782)
3144:24:2417.317.31.5
3
42.8192414.7Desconocido75
GK107TSMC de 28 nm1300118PCIe 3.0 x16797797891
(1782)
2384:32:1612.825.51
2
28.5128612.125,501.250
5 de junio de 2012900900891
(1782)
14.428.82
4
28.5691.228.865$100
24 de abril de 20129509501250
(5000)
15.230.41
2
80Memoria GDDR5729.630.4075Fabricante de equipos originales (OEM)
29 de mayo de 2013GK208-400-A1TSMC de 28 nm102079PCIe 2.0 x8104610461252
(5008)
384:16:88.3716.7140.164803.3Desconocido49
GeForce GT 645 [j]24 de abril de 2012GF114-400-A1TSMC 40 nm1950332PCIe 2.0 x16776155219146288:48:2418.637.391.9192894Desconocido140Fabricante de equipos originales (OEM)
GeForce GTX 64522 de abril de 2013GK106TSMC de 28 nm2540221PCIe 3.0 x16823.5888.58231000
(4000)
3576:48:1614.1639,564128948.139,531.264
GeForce GTX 65013 de septiembre de 2012GK107-450-A21300118105810581250
(5000)
2384:32:1616.933.81
2
80812,5433,86$110
27 de noviembre de 2013 [73]GK-106-400-A1254022165?
GeForce GTX 650 Ti9 de octubre de 2012GK106-220-A19289281350
(5400)
4768:64:1614.859.486.41425.4159,39110$150 (130)
Mejora de la GeForce GTX 650 Ti26 de marzo de 2013GK106-240-A198010329801502
(6008)
768:64:2423.562,7144.21921505.2862,72134$170 (150)
GeForce GTX 66013 de septiembre de 2012GK106-400-A110841502
(6008)
5960:80:2423.578.41,5+0,5
3
96,1+48,1
144,2
128+64
192
1881.678,40140$230 (180)
22 de agosto de 2012GK104-200-KD-A23540294823.5888.58998231450
(5800)
61152:96:24
1152:96:32
19.8791,5
2
3
139
186
192
256
2108.679.06130Fabricante de equipos originales (OEM)
GeForce GTX 660 Ti16 de agosto de 2012GK104-300-KD-A291598010589151502
(6008)
71344:112:2422.0102.5296,1+48,1
144,2
128+64
192
2459,52102,48150$300
GeForce GTX 67010 de mayo de 2012GK104-325-A210841502
(6008)
1344:112:3229.3102.52
4
192.2562562459,52102,48170$400
GeForce GTX 68022 de marzo de 2012GK104-400-A21006 [74]1058111010061502
(6008)
81536:128:3232.2128,8192.2563090.43128,77195$500
GeForce GTX 69029 de abril de 20122x GK104-355-A22x35402x294915101910589151502
(6008)
2x82 veces 1536:128:322x29,282x117,122x22x192.2562x2562x2810,882x117,12300$1000
ModeloLanzamientoNombre en claveFab ( nm )Transistores (millones)Tamaño de la matriz (mm 2 ) Interfaz de busFrecuencia de relojConteo de SMConfiguración del núcleo [a]Tasa de llenadoConfiguración de memoriaPotencia de procesamiento ( GFLOPS ) [b]Versión API compatibleTDP (vatios)Precio de lanzamiento (USD)
Núcleo ( MHz )Aumento promedio ( MHz )Impulso máximo ( MHz )Sombreador ( MHz )Memoria ( MHz )Píxel ( GP /s)Textura ( GT /s)Tamaño ( GiB )Ancho de banda ( GB/s )Tipo de DRAMAncho de bus ( bit )Precisión simpleDoble precisiónVulcano [c]Direct3DOpenGLOpenCL
  1. ^ ab Sombreadores unificados : unidades de mapeo de texturas : unidades de salida de renderizado
  2. ^ ab Para calcular la potencia de procesamiento, consulte Kepler (microarquitectura)#Rendimiento o Fermi (microarquitectura)#Rendimiento .
  3. ^ ab Vulkan 1.2 sólo es compatible con tarjetas Kepler. [63]
  4. ^ La tarjeta GeForce 605 (OEM) es una GeForce 510 renombrada.
  5. ^ La tarjeta GeForce GT 610 es una GeForce GT 520 renombrada.
  6. ^ La tarjeta GeForce GT 620 (OEM) es una GeForce GT 520 renombrada.
  7. ^ La tarjeta GeForce GT 630 (DDR3, 128 bits, venta minorista) es una GeForce GT 430 (DDR3, 128 bits) renombrada.
  8. ^ La tarjeta GeForce GT 630 (GDDR5) es una GeForce GT 440 (GDDR5) renombrada.
  9. ^ La tarjeta GeForce GT 640 (OEM) GF116 es una GeForce GT 545 (DDR3) renombrada.
  10. ^ La tarjeta GeForce GT 645 (OEM) es una GeForce GTX 560 SE renombrada.

Serie GeForce 700

La serie GeForce 700 para computadoras de escritorio. Los chips GM107 están basados ​​en Maxwell , los GF1xx están basados ​​en Fermi y los chips GKxxx están basados ​​en Kepler .

ModeloLanzamientoNombre en claveFab ( nm )Transistores (millones)Tamaño de la matriz (mm 2 ) Interfaz de busFrecuencia de relojRecuento de SMXConfiguración del núcleo [a]Tasa de llenadoConfiguración de memoriaPotencia de procesamiento ( GFLOPS ) [b]Versión API compatibleTDP (vatios)Precio de lanzamiento (USD)
Base ( MHz )Aumento promedio ( MHz )Impulso máximo [c] ( MHz )Memoria ( MHz )Píxel ( GP /s)Textura ( GT /s)Tamaño ( GiB )Ancho de banda ( GB/s )Tipo de DRAMAncho de bus ( bit )Precisión simpleDoble precisiónVulcano [d]Direct3D [es]OpenGLOpenCL
GeForce GT 705 [77] [f]27 de marzo de 2014GF119-300-A1TSMC de 40 nm29279PCIe 2.0 x16810898
(1796)
148:8:43.246.50,5
1
14.4DDR364155,519.4n / A124.61.129Fabricante de equipos originales (OEM)
GeForce GT 710 [78]GK208-301-A1TSMC de 28 nm102079PCIe 2.0 x8823900 (1800)192:16:86.613.20,564316.013.21.21.2
26 de enero de 2016GK208-203-B1PCIe 2.0 x8, PCIe x1954900 (1800)
1253 (5010)
192:16:87.615.31
2
14,4
40,0
Memoria DDR3
GDDR5
36615.31935–45 dólares
GeForce GT 720 [79]27 de marzo de 2014GK208-201-B1PCIe 2.0 x8797900 (1800)
1253 (5010)
192:16:86.412.81
2
14,4
40,0
30612.849–59 dólares
GeForce GT 730
[80] [g] [h]
18 de junio de 2014GK208-301-A1902900
(1800)
2384:16:87.2214.441 [81]
2
4
14.4DDR3692.728.92369–79 dólares
GK208-400-A19021250
(5000)
384:16:87.2214.441
2 [82]
40.0Memoria GDDR525
GF108TSMC 40 nm585116PCIe 2.0 x16700900
(1800)
96:16:42.811.01
2
4
28.8DDR3128268,833.6n / A1.149
GeForce GT 740 [i]29 de mayo de 2014GK107-425-A2Motor TSMC
de 28 CV
1270118PCIe 3.0 x16993891
(1782)
384:32:1615.931.828.5128762.631.81.21.264$89–99
9931252
(5008)
384:32:1615.931.880.1Memoria GDDR5
GeForce GTX 74518 de febrero de 2014GM107-220-A218701481033DesconocidoDesconocido900
(1800)
3384:24:1616.524.81
4
28.8DDR3793.324.81.355Fabricante de equipos originales (OEM)
GeForce GTX 750GM107-300-A21020108511631250
(5000)
4512:32:1616.332.61
2
4 [83]
80Memoria GDDR51044.532.6$119
GeForce GTX 750 TiGM107-400-A21020108512001350
(5400)
5640:40:1616.340.81
2
4
86.41305.640.860$149
GeForce GTX 760 de 192 bits17 de octubre de 2013GK104-200-KD-A235402948248888891450
(5800)
61152:96:2419.879.11.5
3
139.21921896.279.01.2130Fabricante de equipos originales (OEM)
GeForce GTX 76025 de junio de 2013GK104-225-A2980103311241502
(6008)
1152:96:3231.4 [j]942
4
192.32562257.994.1170$249 ($219)
GeForce GTX 760 Ti [k]27 de septiembre de 2013 [84]GK10491598010841502
(6008)
71344:112:3229.3102.52192.32459.5102.5Fabricante de equipos originales (OEM)
GeForce GTX 77030 de mayo de 2013GK104-425-A21046108511301752.5
(7010)
81536:128:3233.51342 42243213.3133,9230$399 ($329)
GeForce GTX 78023 de mayo de 2013GK110-300-A1708056186390010021502
(6008)
122304:192:4841.4 [j]160,53 6 [85]288.43843976.7165,7$649 ($499)
GeForce GTX 780 Ti [86] [87] [88]7 de noviembre de 2013GK110-425-B187692810191752.5
(7010)
152880:240:4842.0 [j]210.23336,55045.7210.2$699
GeForce GTX TITAN [89] [90] [91]21 de febrero de 2013GK110-400-A18378769931502
(6008)
142688:224:4840.2187,56288.44499.71300 [92] -1499.9$999
GeForce GTX TITAN Negra18 de febrero de 2014GK110-430-B188998010581752.5
(7010)
152880:240:4842.7213.4336,55120.61706.9
GeForce GTX TITAN Z28 de mayo de 20142x GK110-350-B1 [93]2x70802x561705876Desconocido1752.5
(7010)
2x152x2880:240:482x33,82x1692x62x336,52x3845046x21682x2 [94]4.5375$2999
ModeloLanzamientoNombre en claveFab ( nm )Transistores (millones)Tamaño de la matriz (mm 2 ) Interfaz de busFrecuencia de relojRecuento de SMXConfiguración del núcleo [a]Tasa de llenadoConfiguración de memoriaPotencia de procesamiento ( GFLOPS ) [b]Versión API compatibleTDP (vatios)Precio de lanzamiento (USD)
Base ( MHz )Aumento promedio ( MHz )Impulso máximo [c] ( MHz )Memoria ( MHz )Píxel ( GP /s)Textura ( GT /s)Tamaño ( GiB )Ancho de banda ( GB/s )Tipo de DRAMAncho de bus ( bit )Precisión simpleDoble precisiónVulcano [d]Direct3D [es]OpenGLOpenCL
  1. ^ ab Sombreadores unificados : unidades de mapeo de texturas : unidades de salida de renderizado
  2. ^ ab Para calcular la potencia de procesamiento, consulte Maxwell (microarquitectura)#Rendimiento o Kepler (microarquitectura)#Rendimiento .
  3. ^ ab Max Boost depende de la calidad ASIC. Por ejemplo, algunas GTX TITAN con una calidad ASIC superior al 80 % pueden alcanzar 1019 MHz de forma predeterminada; una calidad ASIC inferior será de 1006 MHz o 993 MHz.
  4. ^ ab Maxwell admite la versión 1.3 de Vulkan, mientras que Kepler solo admite la versión 1.2 de Vulkan, Fermi no admite la API de Vulkan en absoluto. [63]
  5. ^ ab Kepler admite algunas funciones opcionales de la versión 11.1 en el nivel de funciones 11_0 a través de la API Direct3D 11.1, sin embargo, Nvidia no habilitó cuatro funciones no relacionadas con juegos para calificar a Kepler para el nivel 11_1. [75] [76]
  6. ^ La GeForce GT 705 (OEM) es una GeForce GT 610 renombrada, que a su vez es una GeForce GT 520 renombrada.
  7. ^ La GeForce GT 730 (DDR3, 64 bits) es una GeForce GT 630 (Rev. 2) renombrada.
  8. ^ La GeForce GT 730 (DDR3, 128 bits) es una GeForce GT 630 (128 bits) renombrada.
  9. ^ La GeForce GT 740 (OEM) es una GeForce GTX 650 renombrada.
  10. ^ abc Como una GPC Kepler puede rasterizar 8 píxeles por ciclo de reloj, las GPU GK110 completamente habilitadas (780 Ti/TITAN Black) solo pueden generar 40 píxeles por ciclo de reloj (5 GPC), a pesar de que hay 48 ROP y todas las unidades SMX presentes físicamente. Para GTX 780 y GTX 760, son posibles múltiples configuraciones de GPC con diferentes tasas de relleno de píxeles, según qué SMX se hayan deshabilitado en el chip: 5/4 GPC o 4/3 GPC, respectivamente.
  11. ^ La GeForce GTX 760 Ti (OEM) es una GeForce GTX 670 renombrada.

Serie GeForce 900

  • Todos los modelos admiten las siguientes API : Direct3D 12_1, OpenGL 4.6, OpenCL 3.0 y Vulkan 1.3 [63] y CUDA 5.2
  • Mejorar NVENC (YUV4:4:4, codificación predictiva sin pérdida).
  • Añadir compatibilidad con hardware H265 en GM20x
  • GM108 no tiene soporte para codificador de hardware NVENC .
ModeloLanzamientoNombre en claveProcesoTransistores (miles de millones)Tamaño de la matriz (mm 2 ) Interfaz de busVelocidades de relojCaché L2
( MiB )
Configuración del núcleo [a]MemoriaTasa de llenado [b]Potencia de procesamiento ( GFLOPS ) [b] [c]TDP (vatios)Compatibilidad con SLIPrecio de lanzamiento (USD)
Base ( MHz )Impulso ( MHz )Memoria ( MT/s )Tamaño ( GiB )Ancho de banda ( GB/s )Tipo de autobúsAncho de bus ( bit )Píxel ( GP /s) [d]Textura ( GT /s) [e]Precisión simpleDoble precisiónPrecio de venta sugerido por el fabricante
GeForce GT 945A [95] [96] [97]Febrero de 2016GM108Motor TSMC
de 28 CV
DesconocidoDesconocidoPCIe 3.0 x8107211761800?512:24:8 (4)1 / 214.4DDR3 / GDDR5648.5
9.4
25,7
28,2
1.097,7
1.204,2
34,3
37,6
33NoFabricante de equipos originales (OEM)
GeForce GTX 950 [98]20 de agosto de 2015GM206-2502,94227PCIe 3.0 x161024118866001768:48:32 (6)2105.7Memoria GDDR512832,7
38,0
49,1
57,0
1.572,8
1.824,7
49,1
57,0
90 (75 [f] )SLI de dos vías$159
GeForce GTX 950 (OEM) [100]DesconocidoGM206935Desconocido50001024:64:32 (8)80.029.9
 
59,8
 
1.914,9
,
59,8
 
DesconocidoFabricante de equipos originales (OEM)
GeForce GTX 960 [101]22 de enero de 2015GM206-3001127117870002
4
112.136,0
37,6
72,1
75,3
2.308,0
2.412,5
72,1
75,3
120$199
GeForce GTX 960 (OEM) [102]DesconocidoGM2045.2398924Desconocido50001280:80:48 (10)3120.019244.3
 
73.9
 
2.365,4
,
73.9
 
DesconocidoFabricante de equipos originales (OEM)
GeForce GTX 970 [103]18 de septiembre de 2014GM204-2001050117870001,751664:104:56 (13)3,5 +
0,5 [g]
196,3 +
28,0 [g]
224 +
32 [g]
58,8
65,9
109,2
122,5
3.494,4
3.920,3
109,2
122,5
145SLI de 4 vías$329
GeForce GTX 980 [105]18 de septiembre de 2014GM204-4001126121622048:128:64 (16)4224.325672,0
77,8
144,1
155,6
4.612,0
4.980,7
144,1
155,6
165$549
GeForce GTX 980 Ti [106]1 de junio de 2015GM200-31086011000107532816:176:96 (22)6336,538496,0
103,2
176,0
189,2
5.632,0
6.054,4
176,0
189,2
250$649
GeForce GTX TITAN X [107]17 de marzo de 2015GM200-4003072:192:96 (24)12192,0
206,4
6,144.0
6,604.8
192,0
206,4
$999
  1. ^ Procesadores de sombreado principales  : unidades de mapeo de texturas  : unidades de salida de renderizado (multiprocesadores de transmisión)
  2. ^ ab Reloj base, Reloj de refuerzo
  3. ^ Para calcular la potencia de procesamiento, consulte Maxwell (microarquitectura)#Rendimiento .
  4. ^ La tasa de relleno de píxeles se calcula como la cantidad de ROP multiplicada por la velocidad del reloj del núcleo respectivo.
  5. ^ La tasa de relleno de textura se calcula como la cantidad de TMU multiplicada por la velocidad del reloj del núcleo respectivo.
  6. ^ Algunas tarjetas GTX950 se lanzaron sin conector de alimentación, alimentado únicamente por ranura PCIe. Estas tenían un consumo de energía y una TPD limitados a 75 W. [99]
  7. ^ abc Para acceder a su memoria, la GTX 970 distribuye los datos en 7 de sus 8 líneas de memoria física de 32 bits, a 196 GB/s. El último 1/8 de su memoria (0,5 GiB en una tarjeta de 4 GiB) se accede en una conexión solitaria de 32 bits no intercalada a 28 GB/s, una séptima parte de la velocidad del resto del espacio de memoria. Debido a que este grupo de memoria más pequeño utiliza la misma conexión que el séptimo carril al grupo principal más grande, compite con los accesos al bloque más grande que reducen el ancho de banda de memoria efectivo en lugar de agregarlo como lo haría una conexión independiente. [104]

Serie GeForce 10

ModeloLanzamientoNombre en claveProcesoTransistores (miles de millones)Tamaño de la matriz (mm 2 ) Interfaz de busVelocidades de relojCaché L2
( MiB )
Configuración del núcleo [b]MemoriaTasa de llenado [c]Potencia de procesamiento ( GFLOPS ) [c] [d]TDP (vatios)Compatibilidad con SLIPrecio de lanzamiento (USD)
Núcleo base ( MHz )Núcleo de refuerzo ( MHz )Memoria ( MT/s )Tamaño ( GiB )Ancho de banda ( GB/s )Tipo de autobúsAncho de bus ( bit )Píxel ( GP /s) [e] [f]Textura ( GT /s) [g]Precisión mediaPrecisión simpleDoble precisiónPrecio de venta sugerido por el fabricanteEdición Fundadores
GeForce GT 1010 [111] [112]13 de enero de 2021GP108-200-A1Samsung
14LPP
1.874PCIe 3.0 x41228146850000,25256:16:16
(2) (1)
240.1Memoria GDDR5649.8
11.8
19,7
23,5
?628,7
751,6
26,2
31,3
30NoFabricante de equipos originales (OEM)
11521380210016.8DDR49.2
11.0
18,4
22,0
?590,0
706,6
24,6
29,4
20
GeForce GT 1030 [113] [114] [115] [116]12 de marzo de 2018GP108-310-A113790,5384:24:16
(3) (1)
18,4
22,0
27,6
33,0
13,8
16,5
884,7
1.059,0
27,6
33,0
$79
17 de mayo de 2017GP108-300-A112271468600048.0Memoria GDDR519,6
23,4
29,4
35,2
14,7
17,6
942,3
1.127,4
29,4
35,2
30$69
GeForce GTX 1050 [117]25 de octubre de 2016GP107-300-A13.3132PCIe 3.0 x161354145570001640:40:32
(5) (2)
112.012843,3
46,6
54,1
58,8
27.0
29.1
1.733,1
1.862,4
54,1
58,2
75$109
21 de mayo de 2018GP107-301-A1139215180,75768:48:24
(6) (2)
384.09633,4
36,4
66,8
72,9
33,4
36,4
2.138,1
2.331,6
66,8
72,9
GeForce GTX 1050 Ti [117]25 de octubre de 2016GP107-400-A1129013921768:48:32
(6) (2)
4112.012841,2
44,5
61,9
66,8
30,9
33,4
1.981,4
2.138,1
61,9
66,8
$139
GeForce GTX 1060
[118] [119] [120] [121]
25 de diciembre de 2016GP104-140-A1TSMC-
16FF
7.23141506170880001.51152:72:48
(9) (2)
3192.019272,2
81,9
108,4
122,9
54,2
61,4
3.469,8
3.935,2
108,4
122,9
120$199
18 de agosto de 2016GP106-300-A14.4200
26 de diciembre de 2017GP106-350-K3-A11.251280:80:48
(10) (2)
5160.016060,2
68,3
120,4
136,7
60,2
68,3
3.855,3
4.375,0
120,4
136,7
Fabricante de equipos originales (OEM)
8 de marzo de 2018GP104-150-A17.23141.56192.019272,2
82,0
$299
18 de octubre de 2018GP104-150-KA-A1Memoria GDDR5X
19 de julio de 2016GP106-400-A14.4200Memoria GDDR5$249$299
20 de abril de 2017GP106-410-A19000216.0$299
GeForce GTX 1070 [122] [123]10 de junio de 2016 / 4 de diciembre de 2018GP104-200-A17.23141683800021920:120:64
(15) (3)
8256.0Memoria GDDR5
GDDR5X
25696,3
107,7
180,7
201,9
90,3
100,9
5.783,0
6.462,7
180,7
201,9
150SLI de 4 vías
o SLI
de 2 vías HB [124]
$379$449
GeForce GTX 1070 Ti [122]2 de noviembre de 2017GP104-300-A116072432:152:64
(19) (4)
Memoria GDDR5102,8
107,7
244
256
122,1
127,9
7.816,4
8.186,1
244,2
255,8
180$449
GeForce GTX 1080 [125] [126]27 de mayo de 2016GP104-400-A11733100002560:160:64
(20) (4)
320.0Memoria GDDR5X102,8
110,9
257,1
277,2
128,5
138,6
8.227,8
8.872,9
257,1
277,2
$599$699
20 de abril de 2017GP104-410-A111000352.0
GeForce GTX 1080 Ti [127]5 de marzo de 2017GP102-350-K1-A112471148015822,753584:224:88
(28) (6)
11484.0352130,2
139,2
331,5
354,3
165,7
177,1
10.608,6
11.339,7
331,5
354,3
250$699
TITAN X Pascal [128]2 de agosto de 2016GP102-400-A1141715311000033584:224:96
(28) (6)
12480.0384136,0
146,9
317,4
342,9
158,7
171,4
10,157.0
10,974.2
317,4
342,9
$1199
TITAN XP [129]6 de abril de 2017GP102-450-A114051582114003840:240:96
(30) (6)
547,7134,8
142,0
337,2
355,2
168,6
177,6
10.790,4
12.149,7
337,2
355,2
ModeloLanzamientoNombre en claveProcesoTransistores (miles de millones)Tamaño de la matriz (mm 2 ) Interfaz de busNúcleo base ( MHz )Núcleo de refuerzo ( MHz )Memoria ( MT/s )Caché L2
( MiB )
Configuración del núcleo [b]Tamaño ( GiB )Ancho de banda ( GB/s )Tipo de autobúsAncho de bus ( bit )Píxel ( GP /s) [e] [h]Textura ( GT /s) [g]Precisión mediaPrecisión simpleDoble precisiónTDP (vatios)Compatibilidad con SLIPrecio de venta sugerido por el fabricanteEdición Fundadores
Velocidades de relojMemoriaTasa de llenado [c]Potencia de procesamiento ( GFLOPS ) [c] [d]Precio de lanzamiento (USD)
  1. ^ La NVIDIA TITAN Xp y la Founders Edition GTX 1080 Ti no tienen un puerto DVI de doble enlace, pero se incluye en la caja un adaptador de DisplayPort a DVI de enlace único.
  2. ^ ab Procesadores de sombreado principales  : unidades de mapeo de texturas  : unidades de salida de renderizado (multiprocesadores de transmisión) (grupos de procesamiento de gráficos)
  3. ^ abcd Reloj base, Reloj de refuerzo
  4. ^ ab Para calcular la potencia de procesamiento, consulte Pascal (microarquitectura)#Rendimiento .
  5. ^ La tasa de relleno de píxeles se calcula como el menor de tres números: la cantidad de ROP multiplicada por la velocidad del reloj del núcleo base, la cantidad de rasterizadores multiplicada por la cantidad de fragmentos que pueden generar por rasterizador multiplicada por la velocidad del reloj del núcleo base y la cantidad de multiprocesadores de transmisión multiplicada por la cantidad de fragmentos por reloj que pueden generar multiplicado por la frecuencia del reloj base.
  6. ^ Como la GTX 1070 tiene una de las cuatro GPC GP104 deshabilitadas en el chip, su interfaz solo puede rasterizar 48 píxeles por reloj. [109] Análogamente, la GTX 1060 tiene solo dos GPC en su chip GP106, lo que significa que su interfaz solo puede rasterizar 32 píxeles por reloj. Los ROP restantes del backend aún se pueden usar para tareas como MSAA. [110]
  7. ^ La tasa de relleno de textura se calcula como la cantidad de TMU multiplicada por la velocidad del reloj del núcleo base.
  8. ^ Como la GTX 1070 tiene una de las cuatro GPC GP104 deshabilitadas en el chip, su interfaz solo puede rasterizar 48 píxeles por reloj. [109] Análogamente, la GTX 1060 tiene solo dos GPC en su chip GP106, lo que significa que su interfaz solo puede rasterizar 32 píxeles por reloj. Los ROP restantes del backend aún se pueden usar para tareas como MSAA. [110]

Serie Volta

ModeloLanzamientoNombre en claveProcesoTransistores (miles de millones)Tamaño de la matriz (mm 2 ) Interfaz de busVelocidades de relojCaché L2
( MiB )
Configuración del núcleo [a]MemoriaTasa de llenado [b]Potencia de procesamiento ( GFLOPS ) [b]TDP (vatios)Soporte de NVLinkPrecio de lanzamiento (USD)
Reloj del núcleo base ( MHz )Aumentar el reloj del núcleo ( MHz )Memoria ( MT/s )Tamaño ( GiB )Ancho de banda ( GB/s )Tipo de autobúsAncho de bus ( bit )Píxel ( GP /s) [c]Textura ( GT /s) [d]Precisión mediaPrecisión simpleDoble precisiónCálculo de tensores + Precisión simplePrecio de venta sugerido por el fabricanteEdición Fundadores
Nvidia TITAN V [130]7 de diciembre de 2017GV100-400-A1Número de serie 12FFN de TSMC
21.1815PCIe 3.0 x161200145517004.55120:320:96:640
(80) (6)
12652,8HBM23072153,6
186,2
384,0
465,6
24.576,0
29.798,4
12.288,0
14.899,2
6,144.0
7,449.6
110.592,0
134.092,8
250No$2999

Edición CEO de Nvidia TITAN V [131] [132]
21 de junio de 2018GV-100-???-A165120:320:128:640
(80) (6)
32870.44096No
  1. ^ Procesadores de sombreado principales  : unidades de mapeo de texturas  : unidades de salida de renderizado  : núcleos tensoriales (multiprocesadores de transmisión) (grupos de procesamiento de gráficos)
  2. ^ ab Reloj base, Reloj de refuerzo
  3. ^ La tasa de relleno de píxeles se calcula como el menor de tres números: la cantidad de ROP multiplicada por la velocidad del reloj del núcleo base, la cantidad de rasterizadores multiplicada por la cantidad de fragmentos que pueden generar por rasterizador multiplicada por la velocidad del reloj del núcleo base y la cantidad de multiprocesadores de transmisión multiplicada por la cantidad de fragmentos por reloj que pueden generar multiplicado por la frecuencia del reloj base.
  4. ^ La tasa de relleno de textura se calcula como la cantidad de TMU multiplicada por la velocidad del reloj del núcleo base.

Serie GeForce 16

ModeloLanzamientoNombre en claveProcesoTransistores (miles de millones)Tamaño de la matriz (mm 2 ) Interfaz de busVelocidades de relojCaché L2 ( MiB )Configuración del núcleo [a]MemoriaTasa de llenado [b]Potencia de procesamiento (G FLOPS ) [b]TDP (vatios)Compatibilidad con NVLinkPrecio de lanzamiento (USD)
Reloj del núcleo base ( MHz )Aumentar el reloj del núcleo ( MHz )Memoria ( GT/s )Tamaño ( GiB )Ancho de banda ( GB/s )Tipo de autobúsAncho de bus ( bit )Píxel ( GP /s) [c]Textura ( GT /s) [d]Precisión mediaPrecisión simpleDoble precisión
GeForce GTX 163028 de junio de 2022 [133]TU117-150-A1Número de serie 12FFN de TSMC
4.7200PCIe 3.0 x1617401785121512:32:16:1024:0
(8) (?)
496Memoria GDDR66427,84
28,56
55,68
57,12
3.563,52
3.655,68
1.781,76
1.827,84
55,68
57,12
75No?
GeForce GTX 1650 [134]23 de abril de 2019TU117-300-A1148516658896:56:32:1792:0
(14) (2)
128Memoria GDDR512847,52
53,28
83,16
93,24
5,322.00
5,967.00
2,661.00
2,984.00
83,16
93,24
$149
3 de abril de 2020 [135]1410159012192Memoria GDDR645,12
50,88
78,96
89,04
5.053,44
5.698,56
2.526,72
2.849,28
78,96
89,04
18 de junio de 2020 [136]TU106-125-A110.844590
GeForce GTX 1650 Super [137]22 de noviembre de 2019 [138]TU116-250-KA-A1 [139]6.6284153017251.51280:80:32:2560:0
(20) (3)
48,96
55,20
122,40
138,0
7,833.60
8,832.00
3.916,80
4.416,00
122,40
138,00
100$159
GeForce GTX 1660 [140]14 de marzo de 2019TU116-300-A1178581408:88:48:2816:0
(22) (3)
6Memoria GDDR519273,44
85,68
134,64
157,1
8,616.00
10,053.00
4,308.00
5,027.00
134,64
157,08
120$219
GeForce GTX 1660 Super [141]29 de octubre de 2019TU116-300-A114336Memoria GDDR6125$229
GeForce GTX 1660 Ti [142]21 de febrero de 2019TU116-400-A115001770121536:96:48:3072:0
(24) (3)
28872.0
84.96
144,0
169,9
9,216.00
10,874.88
4.608,00
5.437,44
144,00
169,92
120$279

Serie RTX 20

  • API compatibles : Direct3D 12 Ultimate (12_2), OpenGL 4.6, OpenCL 3.0, Vulkan 1.3 [63] y CUDA 7.5
  • A diferencia de las generaciones anteriores, las tarjetas RTX Non-Super (RTX 2070, RTX 2080, RTX 2080 Ti) Founders Edition ya no tienen relojes de referencia, sino que son "Factory-OC". Sin embargo, las RTX Supers (RTX 2060 Super, RTX 2070 Super y RTX 2080 Super) Founders Edition sí tienen relojes de referencia.
  • NVENC 6ta generación ( B-frame , etc.)
ModeloLanzamientoNombre en claveProcesoTransistores (miles de millones)Tamaño de la matriz (mm 2 ) Interfaz de busVelocidades de relojCaché L2
( MiB )
Configuración del núcleo [a]MemoriaTasa de llenado [b]Potencia de procesamiento ( GFLOPS ) [b]Rendimiento del trazado de rayosTDP (vatios)Compatibilidad con NVLinkPrecio de lanzamiento (USD)
Reloj del núcleo base ( MHz )Aumentar el reloj del núcleo ( MHz )Memoria ( GT/s )Tamaño ( GiB )Ancho de banda ( GB/s )Tipo de autobúsAncho de bus ( bit )Píxel ( GP /s) [c]Textura ( GT /s) [d]Precisión mediaPrecisión simpleDoble precisiónCálculo de tensores (FP16)Rayos/s (miles de millones)RTX OPS/s (billones)Precio de venta sugerido por el fabricanteEdición Fundadores
GeForce RTX 2060 [143]15 de enero de 2019TU106-200-KA-A1Número de serie 12FFN de TSMC
10.8445PCIe 3.0 x16136516801431920:120:48:240:30
(30) (3)
6336.0Memoria GDDR619265,52
80,64
163,80
201,60
10 483,20
12 902,40
5 241,60
6.451,20
163,80
201,60
41 932,80
51 609,60
537160No$349
10 de enero de 2020TU104-150-KC-A1 [144]13.6545$299
7 de diciembre de 2021 [145]TU106-300-KA-A110.8445147016502176:136:64:272:34
(34) (3)
12
79,20
199,92
224,40
12 800,00
14 360,00
6 400,00
7 180,00
199,92
224,40
185
GeForce RTX 2060 Super [146] [147]9 de julio de 2019TU106-410-A148448.025694,08
105,60
51,200.00
57,440.00
641175$399
GeForce RTX 2070 [148] [149]17 de octubre de 2018TU106-400-A1141016202304:144:64:288:36
(36) (3)
90,24
103,68
203,04
233,28
12.994,56
14.929,92
6.497,28
7.464,96
203,04
233,28
51.978,24
59.719,68
42$499$599
GeForce RTX 2070 Super [146] [150]9 de julio de 2019TU104-410-A113.6545160517702560:160:64:320:40
(40) (5)
102,70
113,28
256,80
283,20
16,440.00
18,120.00
8,220.00
9,060.00
256,80
283,20
65,760.00
72,480.00
752215Enlace NV de dos vías$499
GeForce RTX 2080 [151] [152]20 de septiembre de 2018TU104-400-A1151517102944:184:64:368:46
(46) (6)
96,96
109,44
278,76
314,64
17.840,64
20.136,96
8.920,32
10.068,48
278,76
314,64
71.362,56
80.547,84
857$699$799
GeForce RTX 2080 Super [146] [153]23 de julio de 2019TU104-450-A11650181515.53072:192:64:384:48
(48) (6)
496.0105,60
116,16
316,80
348,48
20,280.00
22,300.00
10,140.00
11,150.00
316,80
348,50
81,120.00
89,200.00
63250$699
GeForce RTX 2080 Ti [154]27 de septiembre de 2018TU102-300-K1-A118.675413501545145.54352:272:88:544:68
(68) (6)
11616.0352118,80
135,96
367,20
420,24
23.500,80
26.895,36
11.750,40
13.447,68
367,20
420,24
94.003,20
107.581,44
1076$999$1,199
Nvidia TITAN RTX [155]18 de diciembre de 2018TU102-400-A11770 [e]64608:288:96:576:72
(72) (6)
24672.0384129,60
169,92
388,80
509,76
24 883,20
32 624,64
12 441,60
16 312,32
388,80
509,76
99 532,80
130 498,56
1184280$2,499
  1. ^ ab Procesadores de sombreado principales  : unidades de mapeo de texturas  : unidades de salida de renderizado  : núcleos tensoriales (o núcleos FP16 en la serie GeForce 16): núcleos de trazado de rayos (multiprocesadores de transmisión) (grupos de procesamiento de gráficos)
  2. ^ abcd Reloj base, Reloj de refuerzo
  3. ^ La tasa de relleno de píxeles se calcula como el menor de tres números: la cantidad de ROP multiplicada por la velocidad del reloj del núcleo base, la cantidad de rasterizadores multiplicada por la cantidad de fragmentos que pueden generar por rasterizador multiplicada por la velocidad del reloj del núcleo base y la cantidad de multiprocesadores de transmisión multiplicada por la cantidad de fragmentos por reloj que pueden generar multiplicado por la frecuencia del reloj base.
  4. ^ La tasa de relleno de textura se calcula como la cantidad de TMU multiplicada por la velocidad del reloj del núcleo base.
  5. ^ Boost de las Ediciones Fundadores, ya que no existe una versión de referencia de esta carta.

Serie RTX 30

ModeloLanzamientoNombre en claveProcesoTransistores (miles de millones)Tamaño de la matriz (mm 2 ) Interfaz de busVelocidades de relojCaché L2
( MiB )
Configuración del núcleo [a]MemoriaTasa de llenadoPotencia de procesamiento (T FLOPS )Rendimiento del trazado de rayos ( TFLOPS )TDP (vatios)Compatibilidad con NVLinkPrecio de lanzamiento (USD)
Reloj del núcleo base ( MHz )Aumentar el reloj del núcleo ( MHz )Memoria ( MT/s )Tamaño ( GiB )Ancho de banda ( GB/s )Tipo de autobúsAncho de bus ( bit )Píxel ( GP /s)Textura ( GT /s)Precisión mediaPrecisión simpleDoble precisiónCálculo de tensor (FP16) (disperso 2:1)Precio de venta sugerido por el fabricanteEdición Fundadores
GeForce RTX 3050 [156]2 de febrero de 2024GA107-325Samsung
8LPP
8.7200PCIe 4.0
x8
104214701400022304:72:32:72:18
(18) (2)
6168.0Memoria GDDR69633,34
47,04
75,02
105,8
4.802
6.774
4.802
6.774
0,075
0,105
30,1
60,2
70No$169
16 de diciembre de 2022GA107-150-A1155217772560:80:32:80:20
(20) (2)
8224.012849,6
59,86
124,2
142,2
7,95
9,01
7,95
9,01
0,124
0,142
63,6
72,8
18.2115$249
18 de julio de 2022GA106-15013.25276151517552304:72:32:72:18
(18) (2)
48,48
56,16
109,1
126,4
6.981
8.087
6.981
8.087
0,109
0,126
130Fabricante de equipos originales [157]
27 de enero de 2022 [158]GA106-150-A1155217772560:80:32:80:20
(20) (2)
49,6
59,86
124,2
142,2
7,95
9,01
7,95
9,01
0,124
0,142
63,6
72,8
18.2$249
GeForce RTX 3060 [159]27 de octubre de 2022 [160]GA106-302PCIe 4.0
x16
132017771500033584:112:48:112:28
(28) (3)
240.063,4
85,3
147,8
199,0
9,46
12,74
9,46
12,74
0,148
0,199
75,7
101,9
25170$329
Mayo de 202112360.0192
25 de febrero de 2021GA106-300-A1
1 de septiembre de 2021GA104-150-A1 [161]17.4392,5
GeForce RTX 3060 Ti [162]2 de diciembre de 2020GA104-200-A1141016651400044864:152:80:152:38
(38) (5)
8448.0256112,8
133,2
214,3
253,1
13,70
16,20
13,72
16,20
0,214
0,253
109,7
129,6
32.4200$399
27 de octubre de 2022 [160]GA104-20219000608.0Memoria GDDR6X
GeForce RTX 3070 [163] [164]29 de octubre de 2020 [165]GA104-300-A115001725140005888:184:96:184:46
(46) (6)
448.0Memoria GDDR6144,0
165,6
276,0
317,4
17,66
20,31
17,66
20,31
0,276
0,318
141,31
162,98
40.6220$499
GeForce RTX 3070 Ti [166]10 de junio de 2021GA104-400-A115751770190006144:192:96:192:48
(48) (6)
608.3Memoria GDDR6X151,18
169,9
302,36
339,8
19,35
21,75
19,35
21,75
0,302
0,340
154,8
174,0
43.5290$599
GeForce RTX 3080 [167] [164]17 de septiembre de 2020GA102-200-A128.3628.41440171058704:272:96:272:68
(68) (6)
10760.0320138,2
164,2
391,68
465,12
25,06
29,76
25.07
29.77
0,392
0,465
200,54
238,14
59,5320$699
27 de enero de 2022GA102-220-A11260171068960:280:96:280:70
(70) (6)
12912.0384131,0
177,8
352,8
478,8
22,6
30,6
22,6
30,6
0,353
0,479
180,6
245,1
61.3350$799
GeForce RTX 3080 Ti [168]3 de junio de 2021GA102-225-A11365166510240:320:112:320:80
(80) (7)
153,5
186,5
438,5
532,8
28.06
34.10
28,57
34,1
0,438
0,533
228,6
272,8
68.2$1199
GeForce RTX 3090 [169] [164]24 de septiembre de 2020GA102-300-A1139516951950010496:328:112:328:82
(82) (7)
24935.8156,2
189,8
457,6
555,96
29,38
35,68
29,28
35,58
0,459
0,558
235,08
285,48
71.1Enlace NV de dos vías$1499
GeForce RTX 3090 Ti [170] [171]29 de marzo de 2022GA102-350-A1156018602100010752:336:112:336:84
(84) (7)
1008.3174,7
208,3
524,2
625
33,5
40
33,5
40
0,524
0,625
269,1
320,9
79,9450$1999
  1. ^ Procesadores de sombreado principales  : unidad de mapeo de texturas  : unidades de salida de renderizado  : núcleos tensoriales  : núcleos de trazado de rayos (multiprocesadores de transmisión) (grupos de procesamiento de gráficos)

Serie RTX 40

  • API compatibles : Direct3D 12 Ultimate (12_2), OpenGL 4.6, OpenCL 3.0, Vulkan 1.3 y CUDA 8.9 [172]
  • Conexiones de pantalla compatibles: HDMI 2.1, DisplayPort 1.4a
  • Núcleo tensor de cuarta generación
  • Núcleo RT de tercera generación
  • NVIDIA DLSS 3
  • NVIDIA DLSS 3.5
  • Reordenamiento de la ejecución de sombreadores
  • Codificación de hardware de función fija AV1 de doble NVENC con resolución 8K, 10 bits y 60 FPS [173] [174]
  • Micromapas de opacidad (OMM)
  • Micromallas de desplazamiento (DMM)
  • Sin soporte NVLink, Multi-GPU sobre PCIe 5.0 [175] [176]
ModeloLanzamientoNombre en claveProcesoTransistores (miles de millones)Tamaño de la matriz (mm 2 ) Interfaz de busVelocidades de relojCaché L2 ( MiB )Configuración del núcleo [a]MemoriaTasa de llenadoPotencia de procesamiento ( TFLOPS )Rendimiento del trazado de rayos ( TFLOPS )TDP (vatios)Precio de lanzamiento (USD)
Reloj del núcleo base ( MHz )Aumentar el reloj del núcleo ( MHz )Memoria ( MT/s )Tamaño ( GiB )Ancho de banda ( GB/s )Tipo de autobúsAncho de bus ( bit )Píxel ( GP /s)Textura ( GT /s)Precisión mediaPrecisión simpleDoble precisiónCálculo de tensor (FP16) (disperso 2:1)Precio de venta sugerido por el fabricanteEdición Fundadores
GeForce RTX 4060 [177]29 de junio de 2023107-400 d. C.TSMC4N [178]18.9158,7PCIe 4.0 x81830246017000243072:96:48:96:24
(24)(3)
8272Memoria GDDR6128118.1236.211.2
15.1
11.2
15.1
0,176
0,236
60 (121)35115$299
GeForce RTX 4060 Ti [177]24 de mayo de 2023106-350 d. C.22.9187,82310254018000324352:136:48:136:34
(34)(3)
288121.9345.420.1
22.1
20.1
22.1
0,314
0,345
88 (177)51160$399
18 de julio de 2023106-351 d. C.16$499
GeForce RTX 4070 [179]13 de abril de 2023104-250 d. C.35.8294.5PCIe 4.0 x161920247521000365888:184:64:184:46
(46)(4)
12504Memoria GDDR6X192158,4455,422,6
29,1
22,6
29,1
0,353
0,455
117 (233)67200$599
GeForce RTX 4070 Super [180] [181]17 de enero de 2024104-350 d. C.19802475487168:224:80:224:56

(56)(5)

198.0554.428.39

35,48

28.39

35,48

0,444

0,554

114 (227)

142 (284)

82220
GeForce RTX 4070 Ti [182]5 de enero de 2023104-400 d. C.231026107680:240:80:240:60
(60)(5)
208.8626.435,5
40,1
35,5
40,1
0,554
0,627
142 (284)
160 (321)
92,7285$799
GeForce RTX 4070 Ti Super [181] [183]24 de enero de 2024103-275 d. C.45.9378.623402610210008448:264:112:264:66

(66)(6)

16672256292.3689.039,54

44.10

39,54

44.10

0,618

0,689

158 (316)

176 (353)

102
GeForce RTX 4080 [184]Sin lanzar [185] [186]104-400 d. C.35.8294.523102610210007680:240:80:240:60
(60)(5)
12504192208.8626.435.5

40.1

35.5

40.1

0,554

0,627

142 (284)
160 (321)
92,7$899
16 de noviembre de 2022103-300 d. C.45.9378.62210250522400649728:304:112:304:76
(76)(7)
16717256280.6761,543,0
48,8
43,0
48,7
0,672
0,761
172 (344)
195 (390)
112.7320$1199
GeForce RTX 4080 Super [187] [188]31 de enero de 2024103-400 d. C.229525502300010240:320:112:320:80

(80)(7)

736285.6816.047.0

52.22

47.0

52.22

0,734

0,816

188 (376)

209 (418)

121$999
GeForce RTX 4090 D [189] [190]28 de diciembre de 2023Año 102-25076.3608.522802520210007214592:456:176:456:114
(114)(11)
241008384443,51149.166,5
73,5
66,5
73,5
1.040
1.149
266 (532)
294 (588)
170425¥ 12,999
GeForce RTX 4090 [191] [192]12 de octubre de 2022102-300 d. C.223516384:512:176:512:128
(128)(11)
1290.273,1
82,6
73,1
82,6
1.142
1.291
292 (585)
330 (661)
191450$1599
  1. ^ Procesadores de sombreado principales  : unidad de mapeo de texturas  : unidades de salida de renderizado  : núcleos tensoriales  : núcleos de trazado de rayos (multiprocesadores de transmisión) (grupos de procesamiento de gráficos)

GPU móviles

Las GPU móviles están soldadas a la placa base o a algún módulo PCI Express móvil (MXM).

Serie GeForce2 Go

ModeloLanzamientoNombre en clave Interfaz de busReloj central ( MHz )Reloj de memoria ( MHz )Configuración del núcleo [a]Tasa de llenadoMemoria
MOperaciones/esMPíxeles/sMtex/sMVertices/sTamaño ( MiB )Ancho de banda ( GB/s )Tipo de autobúsAncho de bus ( bit )
GeForce2 Go 1006 de febrero de 2001NV11MAGP 4x1253322:0:4:225025050008, 161.328RDA32
GeForce2 Go11 de noviembre de 2000143166
332
28628657216, 322.656DEG
DDR
128
64
GeForce2 Go 2006 de febrero de 2001332RDA64

Serie GeForce4 Go

  • Todos los modelos se fabrican mediante un proceso de fabricación de 150 nm.
ModeloLanzamientoNombre en clave Interfaz de busReloj central ( MHz )Reloj de memoria ( MHz )Configuración del núcleo [a]Tasa de llenadoMemoriaSoporte de API
MOperaciones/esMPíxeles/sMtex/sMVertices/sTamaño ( MiB )Ancho de banda ( GB/s )Tipo de autobúsAncho de bus ( bit )Direct3DOpenGL
GeForce4 Go 4106 de febrero de 2002NV17MAGP 8x2002002:0:4:24004008000161.6DEG648.0a1.3
GeForce4 Go 420400323.2RDA
GeForce4 Go 440220440440440880647.04128
GeForce4 Go 46014 de octubre de 200225050050050010008
GeForce4 Go 488NV18M30055060060012008.8
GeForce4 Go 420014 de noviembre de 2002NV28M2004004:2:8:480080016001006.4

Serie GeForce FX Go 5 (Go 5xxx)

La serie GeForce FX Go 5 para arquitectura de portátiles.

ModeloLanzamientoNombre en claveFab ( nm ) Interfaz de busReloj central ( MHz )Reloj de memoria ( MHz )Configuración básica 1Tasa de llenadoMemoriaVersión API compatibleTDP (vatios)
Píxel ( GP /s)Textura ( GT /s)Tamaño ( MiB )Ancho de banda ( GB/s )Tipo de autobúsAncho de bus ( bit )Direct3DOpenGL
HardwareControladores (software)
GeForce FX Go 5100 *Marzo de 2003NV34M150AGP 8x2004004:2:4:40,80,8643.2RDA649.01.52.1**Desconocido
GeForce FX Go 5500 *3006001.21.232
64
9.6128Desconocido
GeForce FX Go 5600 *NV31M1303501.41.432Desconocido
GeForce FX Go 5650 *350Desconocido
GeForce FX Go 5700 *1 de febrero de 2005NV36M4505504:3:4:41.81.88.8Desconocido

Serie GeForce Go 6 (Go 6xxx)

ModeloLanzamientoNombre en claveFab ( nm ) Interfaz de busReloj central ( MHz )Reloj de memoria ( MHz )Configuración básica 1Tasa de llenadoMemoria
MOperaciones/esMPíxeles/sMtex/sMVertices/sTamaño ( MiB )Ancho de banda ( GB/s )Tipo de autobúsAncho de bus ( bit )
GeForce Go 6100 + nForce Go 430DesconocidoC51M110Hipertransporte425Memoria del sistema2:1:2:1850425850106.25Sistema de hasta 128 MiBMemoria del sistemaDDR264/128
GeForce Go 6150 + nForce Go 4301 de febrero de 2006
GeForce Go 62001 de febrero de 2006NV44MPCIe x163006004:3:4:212006001200225162.4RDA32
GeForce Go 64001 de febrero de 2006400700160080016002505.664
GeForce Go 660029 de septiembre de 2005NV43M3008:3:8:4300015003000281.2512811.2128
GeForce Go 68008 de noviembre de 2004NV41M130700
1100
12:5:12:1237522,4
35,2
DDR, DDR2
DDR3
256
GeForce Go 6800 Ultra24 de febrero de 2005450540036005400562,5256

Serie GeForce Go 7 (Go 7xxx)

La serie GeForce Go 7 para arquitectura de portátiles.

ModeloLanzamientoNombre en claveFab ( nm ) Interfaz de busReloj central ( MHz )Reloj de memoria ( MHz )Configuración básica 1Tasa de llenadoMemoriaVersión API compatibleTDP (vatios)Características
Píxel ( GP /s)Textura ( GT /s)Tamaño ( MiB )Ancho de banda ( GB/s )Tipo de autobúsAncho de bus ( bit )Direct3DOpenGL
GeForce 7000M1 de febrero de 2006MCP67MV90Hipertransporte350Memoria del sistema1:2:2:20,70,7Hasta 256 desde la memoria del sistemaMemoria del sistemaDDR264/1289.0c2.1Desconocido
GeForce 7150MMCP67M4250,850,85Desconocido
GeForce Go 7200 2Enero de 2006G72MPCIe x164507003:4:4:10,451.8642.8Memoria GDDR332DesconocidoAnti-aliasing de transparencia
GeForce Go 7300 23503:4:4:20,71.4128, 256, 5125.6064Desconocido
GeForce Go 7400 24509000.91.864, 2567.20Desconocido
GeForce Go 7600Marzo de 2006G73M10005:8:8:83.63.6256, 51216128DesconocidoInterfaz de enlace escalable (SLI), suavizado de transparencias
GeForce Go 7600 GT200650012005:12:12:84625619.2Desconocido
GeForce Go 7700G73-N-B18045010003.65.451216Desconocido
GeForce Go 78003 de marzo de 2006G70M11040011006:16:16:83.26.425635.225635
GeForce Go 7800 GTXOctubre de 20058:24:24:166.49.665
GeForce Go 7900 GSAbril de 2006G71M9037510007:20:20:1667.532.020
GeForce Go 7900 GTX50012008:24:24:16812256 51238.445
GeForce Go 7950 GTXOctubre de 200657514009.213.851244.8

Serie GeForce 8M (8xxxM)

La serie GeForce 8M para portátiles con arquitectura Tesla .

ModeloLanzamientoNombre en claveFab ( nm ) Interfaz de busVelocidad del relojConfiguración básica 1Tasa de llenadoMemoriaPotencia de procesamiento ( GFLOPS )Versión API compatibleTDP (vatios)Notas
Núcleo ( MHz )Sombreador ( MHz )Memoria ( MHz )Píxel ( GP /s)Textura ( GT /s)Tamaño ( MiB )Ancho de banda ( GB/s )Tipo de autobúsAncho de bus ( bit )Direct3DOpenGL
GeForce 8200M G [193]Junio ​​de 2008MCP77MV, MCP79MVL80Integrado (PCIe 2.0 x16)400800800
1066
(memoria del sistema)
8:8:41.63.2Hasta 256 desde la memoria del sistema12.8
17.056
Memoria DDR2
DDR3
12819.210.03.3DesconocidoPureVideo HD con VP3, decodificación HW completa H.264 / VC-1 / MPEG-2
GeForce 8400M GMayo de 2007NB8M(G86)PCIe x16800128 / 2566.4DDR2 / GDDR36410PureVideo HD con VP2, motor BSP y motor AES128
GeForce 8400M GS16:8:438.411
GeForce 8400M GT45090012001.83.6256 / 51219.212843.214
GeForce 8600M GSNB8P(G84)600120014002.44.822.457.620
GeForce 8600M GT475950800 / 140032:16:83.87.612,8 / 22,491.2
GeForce 8700M GTJunio ​​de 20076251250160051025.6Memoria GDDR312029Interfaz de enlace escalable , PureVideo HD con VP2, motor BSP y motor AES128
GeForce 8800M GTSNoviembre de 2007NB8P(G92)65PCIe 2.0 x1650064:32:1681651251.225624050
GeForce 8800M GTX96:48:162436065

Serie GeForce 9M (9xxxM)

La arquitectura de la serie GeForce 9M para portátiles. Tesla (microarquitectura)

ModeloLanzamientoNombre en claveFab ( nm ) Interfaz de busVelocidad del relojConfiguración básica 1Tasa de llenadoMemoriaPotencia de procesamiento ( GFLOPS )Versión API compatibleTDP (vatios)Notas
Núcleo ( MHz )Sombreador ( MHz )Memoria ( MHz )Píxel ( GP /s)Textura ( GT /s)Tamaño ( MiB )Ancho de banda ( GB/s )Tipo de autobúsAncho de bus ( bit )Direct3DOpenGL

Tarjeta gráfica GeForce 9100M G
2008MCP77MH, MCP79MH65Integrado
(PCIe 2.0 x16)
45011001066
(memoria del sistema)
8:8:41.83.6Hasta 256 desde la memoria del sistema17.056DDR312826.410.03.312Similar a 8400M G
GeForce 9200M GSNB9M-GE(G98)PCIe 2.0 x16550130014002.24.425611.2DDR2/GDDR36431.213
GeForce 9300M GNB9M-GE(G86)80400800120016:8:41.63.2256/5129.638.4
GeForce 9300M GSNB9M-GE(G98)65550140014008:8:42.24.411.233.6
GeForce 9400M G15 de octubre de 2008MCP79MXIntegrado (PCIe 2.0 x16)4501100800
1066
(memoria del sistema)
16:8:41.83.6Hasta 256 desde la memoria del sistema12.8
17.056
Memoria DDR2
DDR3
1285412PureVideo HD con VP3. Conocida como GeForce 9400M en los sistemas Apple [194] y en los sistemas basados ​​en Nvidia ION
GeForce 9500M G2008NB9P(G96)PCIe 2.0 x165001250160016:8:84451225.6DDR2 / GDDR36020
GeForce 9500M GSNB9P-GV(G96)80PCIe x16475950140032:16:83.87.622.491.28600M GT renombrado
GeForce 9600M GSNB9P-GE2(G96)65PCIe 2.0 x164301075800
1600
3.446.88102412,8
25,6
103.2
GeForce 9600M GTNB9P-GS(G96)5001250160048512/102425.612023
GeForce 9650M GSNB9P-GS1(G84)80625510512Memoria GDDR3298700M GT renombrado
GeForce 9650M GTNB9P-GT(G96)65/5555013254.48.81024127.223
GeForce 9700M GT29 de julio de 2008NB9E-GE(G96)65PCIe x166251550510512148,845
GeForce 9700M GTSNB9E-GS(G94)PCIe 2.0 x16530132548:24:168.4812.751.2256190.860
GeForce 9800M GS2008NB9E-GT(G94)64:32:168.4816,96254GTS 9800M con reloj desactivado mediante firmware
GeForce 9800M GTS29 de julio de 200865/55600150064:32:169.619.2512 / 102428875
GeForce 9800M GTNB9E-GT2(G92)500125096:48:1682451236065La nueva 8800M GTX
GeForce 9800M GTXNB9E-GTX(G92)65112:56:1628102442075
ModeloLanzamientoNombre en claveFab ( nm ) Interfaz de busNúcleo ( MHz )Sombreador ( MHz )Memoria ( MHz )Configuración básica 1Píxel ( GP /s)Textura ( GT /s)Tamaño ( MiB )Ancho de banda ( GB/s )Tipo de autobúsAncho de bus ( bit )Potencia de procesamiento ( GFLOPS )Direct3DOpenGLTDP (vatios)Notas
Velocidad del relojTasa de llenadoMemoriaVersión API compatible

Serie GeForce 100M (1xxM)

La serie GeForce 100M para la arquitectura de portátiles. Tesla (microarquitectura) (103M, 105M, 110M, 130M son GPU con una nueva marca, es decir, utilizan los mismos núcleos de GPU de la generación anterior, 9M, con la optimización prometida en otras funciones)

ModeloLanzamientoNombre en claveFab ( nm ) Interfaz de busVelocidad del relojConfiguración básica 1Tasa de llenadoMemoriaPotencia de procesamiento ( GFLOPS )Versión API compatibleTDP (vatios)Notas
Núcleo ( MHz )Sombreador ( MHz )Memoria ( MHz )Píxel ( GP /s)Textura ( GT /s)Tamaño ( MiB )Ancho de banda ( GB/s )Tipo de autobúsAncho de bus ( bit )Direct3DOpenGL
GeForce G 102M8 de enero de 2009MCP79XT65Integrado
(PCIe 1.0 x16)
450?1000800
(memoria del sistema)
16:8:41.83.6Hasta 512 desde la memoria del sistema6.4DDR2644810.03.314PureVideo HD, CUDA, Hybrid SLI, basado en GeForce 9400M G
GeForce G 103M1 de enero de 2009N10M-GE2(G98)PCIe 2.0 x16640160010008:8:42.565.12512838PureVideo HD, CUDA, Hybrid SLI, comparable a la GeForce 9300M GS
GeForce G 105M8 de enero de 2009N10M-GE1(G98)1000
1400
8
11
Memoria GDDR2 y
GDDR3
38
GeForce G 110MN10M-GE1(G96b)5540010001000
1400
16:8:41.63.210248
11
Memoria DDR2-
GDDR3
48PureVideo HD, CUDA, SLI híbrido
GeForce GT 120M11 de febrero de 2009N10P-GV1(G96b)5001250100032:16:84816DDR212811023PureVideo HD, CUDA, Hybrid SLI, comparable con 9500M GT y 9600M GT DDR2 (500/1250/400)
GeForce GT 130M8 de enero de 2009N10P-GE1(G96b)60015001000
1600
4.89.616
25,6
Memoria DDR2-
GDDR3
144PureVideo HD, CUDA, Hybrid SLI, comparable al 9650M GT
GeForce GTS 150M3 de marzo de 2009N10E-GE1(G94b)4001000160064:32:166.412.851.2Memoria GDDR3256192DesconocidoPureVideo HD, CUDA, SLI híbrido
GeForce GTS 160MN10E-GS1(G94b)60015009.619.228860

Serie GeForce 200M (2xxM)

La serie GeForce 200M es una arquitectura de procesador gráfico para portátiles, Tesla (microarquitectura)

ModeloLanzamientoNombre en claveFab ( nm ) Interfaz de busVelocidad del relojConfiguración básica 1Tasa de llenadoMemoriaPotencia de procesamiento ( GFLOPS )Versión API compatibleTDP (vatios)Notas
Núcleo ( MHz )Sombreador ( MHz )Memoria ( MHz )Píxel ( GP /s)Textura ( GT /s)Tamaño ( MiB )Ancho de banda ( GB/s )Tipo de autobúsAncho de bus ( bit )Direct3DOpenGL
GeForce G210M15 de junio de 2009GT21840PCIe 2.0 x166251500160016:8:42.5551212.8Memoria GDDR3647210.13.314Las versiones con menor frecuencia de reloj del núcleo GT218 también se conocen como Nvidia ION 2
GeForce GT 220M2009G96b5550012501000
1600
32:16:848102416
25,6
Memoria DDR2-
GDDR3
128120Reducción de nodo de 55 nm con el nuevo modelo 9600M GT
GeForce GT 230M15 de junio de 2009GT216401100160048:16:825.6Memoria GDDR315823
GeForce GT 240M55012104.48.8174
GeForce GTS 250MGT2155001250320096:32:841651.2Memoria GDDR536028
GeForce GTS 260MGT215550137536004.417.657.639638
GeForce GTX 260M3 de marzo de 2009G92b551900112:56:168.830.860.8Memoria GDDR325646265
GeForce GTX 280M5851463128:64:169.3637,4456275
GeForce GTX 285MFebrero de 2010600150020009.638.464.0576Versión de GTX280M con mayor velocidad de reloj y nueva memoria

Serie GeForce 300M (3xxM)

La serie GeForce 300M para portátiles, arquitectura Tesla (microarquitectura)

ModeloLanzamientoNombre en claveFab ( nm ) Interfaz de busVelocidad del relojConfiguración básica 1Tasa de llenadoMemoriaPotencia de procesamiento ( GFLOPS ) 2Versión API compatibleTDP (vatios)
Núcleo ( MHz )Sombreador ( MHz )Memoria ( MHz )Píxel ( GP /s)Textura ( GT /s)Tamaño ( MiB )Ancho de banda ( GB/s )Tipo de autobúsAncho de bus ( bit )Direct3DOpenGL
GeForce 305M10 de enero de 2010GT21840PCIe 2.0 x165251150140016:8:42.14.251211.2Memoria DDR3-
GDDR3
645510.13.314
GeForce 310M625153016002.5512.873
GeForce 315M5 de enero de 201160612122.424.8558,18
GeForce 320M1 de abril de 2010MCP89450950106648:16:83.67.2256 (compartido con la memoria del sistema)
[195]
17.056DDR3128136,820
GeForce GT 320M21 de enero de 2010GT2165001100158024:8:844102425.3Memoria DDR3-
GDDR3
9014
GeForce GT 325M10 de enero de 2010450990160048:16:83.67.225.614223
GeForce GT 330M57512654.69.2182
GeForce GT 335M7 de enero de 2010GT215450108072:24:83.610.823328?
GeForce GTS 350M5001249320096:32:841651.2DDR3
GDDR3
GDDR5
36028
GeForce GTS 360M143636004.417.657.641338

Serie GeForce 400M (4xxM)

La arquitectura de la serie GeForce 400M para portátiles, Fermi (microarquitectura)

  • 1 Sombreadores unificados : unidades de mapeo de texturas : unidades de salida de renderizado
  • 2 Para calcular la potencia de procesamiento, consulte Fermi (microarquitectura)#Rendimiento .
  • 3 Cada SM en el GF100 también contiene 4 unidades de dirección de textura y 16 unidades de filtrado de textura. En total, para el GF100 completo, 64 unidades de dirección de textura y 256 unidades de filtrado de textura. [60] Cada SM en la arquitectura GF104/106/108 contiene 8 unidades de filtrado de textura por cada unidad de dirección de textura. El chip GF104 completo contiene 64 unidades de dirección de textura y 512 unidades de filtrado de textura, el chip GF106 completo contiene 32 unidades de dirección de textura y 256 unidades de filtrado de textura y el chip GF108 completo contiene 16 unidades de dirección de textura y 128 unidades de filtrado de textura.
ModeloLanzamientoNombre en claveFab ( nm ) Interfaz de busVelocidad del relojConfiguración básica 1Tasa de llenadoMemoriaPotencia de procesamiento ( GFLOPS ) 2Versión API compatibleTDP (vatios)Notas
Núcleo ( MHz )Sombreador ( MHz )Memoria ( MHz )Píxel ( GP /s)Textura ( GT /s)Tamaño ( GiB )Ancho de banda ( GB/s )Tipo de autobúsAncho de bus ( bit )Direct3DOpenGL
GeForce 410M5 de enero de 2011GF11940PCIe 2.0 x165751150160048:83 : 42.34.60,5 y 112.8DDR364110.4124.512Similar a la GT420 OEM de escritorio
GeForce GT 415M3 de septiembre de 2010GF10850010002425.612896<12 (solo GPU) [196]
GeForce GT 420M96:16 3 :4819210–23 (solo GPU) [196]Similar a Desktop GT430
GeForce GT 425M56011202.248,961215.0420–23 (solo GPU) [196]
GeForce GT 435M65013002.610.42249,632–35 (solo GPU) [196]Similar a Desktop GT430/440
GeForce GT 445MGF10659011801600
2500
144:24 3 :16
144:24 3 :24
9.44
14.16
14.161
1.5
25,6
60
Memoria DDR3
GDDR5
128
192
339,8430–35 (solo GPU) [196]Similar al modelo GTS450 OEM de escritorio)
GeForce GTX 460M67513502500192: 32 3:2416.221.61.560Memoria GDDR5192518.445–50 (solo GPU) [196]Similar a la GTX550 Ti de escritorio
GeForce GTX 470MGF1045501100288: 48 3:2413.226.4633.6Similar a la GTX 460/560SE de escritorio
GeForce GTX 480M25 de mayo de 2010GF1004258502400352:443 : 3213.618.7276.8256598.4100 (módulo MXM)Similar a la GTX465 de escritorio
GeForce GTX 485M5 de enero de 2011GF10457511503000384: 64 3:3218.436.896.0883.2Similar a la GTX560 Ti de escritorio

Serie GeForce 500M (5xxM)

La serie GeForce 500M para arquitectura de portátiles.

ModeloLanzamientoNombre en claveFab ( nm ) Interfaz de busVelocidad del relojConfiguración básica 1Tasa de llenadoMemoriaPotencia de procesamiento ( GFLOPS ) 2Versión API compatibleTDP (vatios)Notas
Núcleo ( MHz )Sombreador ( MHz )Memoria ( MHz )Píxel ( GP /s)Textura ( GT /s)Tamaño ( GiB )Ancho de banda ( GB/s )Tipo de autobúsAncho de bus ( bit )Direct3DOpenGL
GeForce GT 520M5 de enero de 2011GF11940PCIe 2.0 x167401480160048:8:42,965,92112.8DDR364142.08124.612Similar a Desktop 510/520
GeForce GT 520MGF108515103096:16:42.068.24197,7620Observado en portátiles Lenovo , similares a Desktop 530/430/440
GeForce GT 520MX30 de mayo de 2011GF1199001800180048:8:43.67.214.4172,8Similares a Desktop 510 y GT520
GeForce GT 525M5 de enero de 2011GF108600120096:16:42.49.628.8128230.420–23Similares a Desktop GT 530/430/440
GeForce GT 540M67213442.68810.7522
1
258.04832–35Similar to Desktop GT 530/440
GeForce GT 550MGF108
GF1062
740
475
1480
950
1800
1800
96:16:4
144:24:162
2.9611.841284.16
312.6
GeForce GT 555MGF106

GF108
590
650
753
1180
1300
1506
1800
1800
3138
144:24:24
144:24:16
96:16:4
14.6
10.4
3
14.6
15.6
12
1.5
2
1
43.2
28.8
50.2
DDR3
DDR3
GDDR5
192
128
128
339.84
374.4
289.15
30–35Similar to Desktop GT545
GeForce GTX 560MMay 30, 2011GF11677515502500192:32:16
192:32:24
18.624.82
1.5, 3
40.0
60.0
GDDR5128
192
595.275Similar to Desktop GTX 550Ti
GeForce GTX 570M[197]June 28, 2011GF11457511503000336:56:2413.832.21.572.0192772.8Similar to Desktop GTX 560
GeForce GTX 580M6201240384:64:3219.839.7296.0256952.3100Similar to Desktop GTX 560 Ti

GeForce 600M (6xxM) series

The GeForce 600M series for notebooks architecture. The processing power is obtained by multiplying shader clock speed, the number of cores, and how many instructions the cores can perform per cycle.

ModelLaunchCode nameFab (nm)Bus interfaceClock speedCore config1FillrateMemoryProcessing power (GFLOPS)2Supported API versionTDP (Watts)Notes
Core (MHz)Shader (MHz)Memory (MT/s)Pixel (GP/s)Texture (GT/s)Size (GiB)Bandwidth (GB/s)Bus typeBus width (bit)VulkanDirect3DOpenGL
GeForce 610M[198]December 2011GF119 (N13M-GE)40PCIe 2.0 x169001800180048:8:43.67.21
2
14.4DDR364142.08n/a124.512OEM. Rebadged GT 520MX
GeForce GT 620M[199]April 2012GF117 (N13M-GS)286251250180096:16:42.51014.4
28.8
64
128
24015OEM. Die-Shrink GF108
GeForce GT 625MOctober 201214.464
GeForce GT 630M[199][200][201]April 2012GF108 (N13P-GL)
GF117
40
28
660
800
1320
1600
1800
4000
2.6
3.2
10.7
12.8
28.8
32.0
DDR3
GDDR5
128
64
258.0
307.2
33GF108: OEM. Rebadged GT 540M
GF117: OEM Die-Shrink GF108
GeForce GT 635M[199][202][203]GF106 (N12E-GE2)
GF116
4067513501800144:24:2416.216.22
1.5
28.8
43.2
DDR3128
192
289.2
388.8
35GF106: OEM. Rebadged GT 555M
GF116: 94% of desktop GT640[original research?]
GeForce GT 640M LE[199]March 22, 2012GF108
GK107 (N13P-LP)
40
28
PCIe 2.0 x16
PCIe 3.0 x16
762
500
1524
500
3130
1800
96:16:4

384:32:16
(2 SMX)
3
8
12.2
16
1
2
50.2
28.8
DDR3

GDDR5

128292.6
384
1.232
20
GF108: 94% of desktop GT630[original research?]
GK107: 47% of desktop GTX650[original research?]
GeForce GT 640M[199][204]GK107 (N13P-GS)28PCIe 3.0 x166256251800
4000
384:32:16
(2 SMX)
102028.8
64.0
4803259% of desktop GTX650[original research?]
GeForce GT 645MOctober 20127107101800
4000
11.3622.7254567% of desktop GTX650[original research?]
GeForce GT 650M[199][205][206]March 22, 2012GK107 (N13P-GT)745
835
900*
835
950
900*
1800
4000
5000*
11.9
13.4
14.4*
23.8
26.7
28.8*
0.5
1
2
28.8
64.0
80.0*
729.6
641.3
691.2*
4579% of desktop GTX650[original research?]
GeForce GTX 660M[199][206][207][208]GK107 (N13E-GE)835950500015.230.4280.0GDDR5729.65079% of desktop GTX650[original research?]
GeForce GTX 670M[199]April 2012GF114 (N13E-GS1-LP)40PCIe 2.0 x1662012403000336:56:2414.3533.51.5
3
72.0192833n/a7573% of desktop GTX 560[original research?]
GeForce GTX 670MXOctober 2012GK104 (N13E-GR)28PCIe 3.0 x166156152800960:80:24
(5 SMX)
14.448.067.211811.261% of desktop GTX 660[original research?]
GeForce GTX 675M[199]April 2012GF114 (N13E-GS1)40PCIe 2.0 x1663212653000384:64:3219.839.7296.0256972n/a10075% of desktop GTX 560Ti[original research?]
GeForce GTX 675MXOctober 2012GK104 (N13E-GSR)28PCIe 3.0 x166676673600960:80:32
(5 SMX)
19.248.04115.212811.261% of desktop GTX 660[original research?]
GeForce GTX 680MJune 4, 2012GK104 (N13E-GTX)7197191344:112:32
(7 SMX)
2380.6193378% of desktop GTX 670[original research?]
GeForce GTX 680MXOctober 23, 2012GK10450001536:128:32
(8 SMX)
92.2160220912272% of desktop GTX 680[original research?]
ModelLaunchCode nameFab (nm)Bus interfaceClock speedCore config1FillrateMemoryProcessing power (GFLOPS)2Supported API versionTDP (Watts)Notes
Core (MHz)Shader (MHz)Memory (MT/s)Pixel (GP/s)Texture (GT/s)Size (GiB)Bandwidth (GB/s)Bus typeBus width (bit)VulkanDirect3DOpenGL

GeForce 700M (7xxM) series

The GeForce 700M series for notebooks architecture. The processing power is obtained by multiplying shader clock speed, the number of cores, and how many instructions the cores can perform per cycle.

ModelLaunchCode nameFab (nm)Bus interfaceClock speedCore config1FillrateMemoryProcessing power (GFLOPS)2Supported API versionTDP (Watts)Notes
Core (MHz)Shader (MHz)Memory (MT/s)Pixel (GP/s)Texture (GT/s)Size (GiB)Bandwidth (GB/s)Bus typeBus width (bit)VulkanDirect3DOpenGLCUDA
GeForce 710MJanuary 2013GF11728PCIe 2.0 x168001600180096:16:43.212.81
2
14.4DDR364307.2n/a124.52.1 [209]12OEM. About 115% of Mobile 620 & Desktop 530[original research?]
GeForce 710MJuly 24, 2013GK208PCIe 3.0 x8719?192:16:85.75211.51276.11.23.5 [210]15Kepler, similar to 730M with half of the cores disabled
GeForce GT 720MApril 1, 2013GF117PCIe 2.0 x169381876200096:16:43.815.0216.0360.19n/a2.1 [209]?OEM. About 130% of Mobile 625/630 & Desktop 620[original research?]
GeForce GT 720MDecember 25, 2013GK208PCIe 2.0 x8719192:16:83.03212.1312.82911.23.5 [210]22Kepler, similar to 730M with half of the cores disabled
GeForce GT 730MJanuary 2013GK208PCIe 3.0 x8719384:32:8
(2 SMX)
5.823.016.0128552.233Kepler, similar to Desktop GT640
GeForce GT 735MApril 1, 20138897.1128.464682.8?Kepler, similar to Desktop GT640
GeForce GT 740M98018007.8431.414.4752.6Kepler, similar to Desktop GT640.
GeForce GT 740MGK107PCIe 3.0 x16810[211]1800
5000
384:32:16
(2 SMX)
12.9625.922[211]28.8
80
DDR3
GDDR5[211]
128622.13.0 [209]45about 76% of Desktop GTX650[original research?]
GeForce GT 745M8372000
5000
13.426.8232
80
DDR3
GDDR5
642.8about 79% of Desktop GTX650[original research?]
GeForce GT 750M96715.530.9742.750about 91% of Desktop GTX650[original research?]
GeForce GT 755M[212]?1020540015.731.486.4GDDR5783about 93% of Desktop GTX650[original research?]
GeForce GTX 760MMay 2013GK1067194000768:64:16
(4 SMX)
10.542.164110455about 71% of Desktop GTX 650Ti[original research?]
GeForce GTX 765M86313.654.4132665about 92% of Desktop GTX 650Ti[original research?]
GeForce GTX 770M797960:80:24
(5 SMX)
19.564.9396192153075about 83% of Desktop GTX660[original research?]
GeForce GTX 780MGK10450001536:128:32
(8 SMX)
26.3105.341602562448122about 78% of Desktop GTX770[original research?]
ModelLaunchCode nameFab (nm)Bus interfaceClock speedCore config1FillrateMemoryProcessing power (GFLOPS)2Supported API versionTDP (Watts)Notes
Core (MHz)Shader (MHz)Memory (MT/s)Pixel (GP/s)Texture (GT/s)Size (GiB)Bandwidth (GB/s)Bus typeBus width (bit)VulkanDirect3DOpenGLCUDA

GeForce 800M (8xxM) series

The GeForce 800M series for notebooks architecture. The processing power is obtained by multiplying shader clock speed, the number of cores, and how many instructions the cores can perform per cycle.

ModelLaunchCode nameFab (nm)Bus interfaceClock speedCore config1FillrateMemoryProcessing power (GFLOPS)2Supported API versionTDP (Watts)Notes (original research)
Core (MHz)Shader (MHz)Memory (MT/s)Pixel (GP/s)Texture (GT/s)Size (GiB)Bandwidth (GB/s)Bus typeBus width (bit)VulkanDirect3DOpenGLCUDA Compute Capability
GeForce 810MFebruary 2014GF11728PCIe 2.0 x16738–8881476–1776180048:8:42.95–3.555.9–7.1114.4DDR364141.7–170.5n/a124.52.1 [209]15
GeForce 820M[213]719–9541438–1908200096:16:42.9–3.811.5–15.3216276.1–366.315[214]115% of 620 (Fermi)
GeForce 825M[215]January 27, 2014GK208PCIe 3.0 x88501800384:16:8
(2 SMX)
6.813.614.4652.81.23.5 [210]3394% of 630 (Kepler)
GeForce 830M[216]March 12, 2014GM108PCIe 3.0 x161029256:16:8
(2 SMM)
8.216.514.4526.81.35.0[209]~2550% of 750 (Maxwell)
GeForce 840M[217]2000384:24:8
(3 SMM)
8.224.72–416790.33050–80% of 745 (Maxwell)
GeForce 845M[218][219]February 7, 2015[220]1071-11505000384:32:16
(3 SMM)
18.837.6240GDDR5903.233
August 16, 2015[221]GM1078632000512:32:16
(4 SMM)
13.827.616DDR3883.745
GeForce GTX 850M[222]March 12, 2014876+Boost5000640:40:16
(5 SMM)
14.035.02-480.2GDDR51281121.34080% of 750Ti
936+Boost200015.037.432DDR31198.185% of 750Ti
GeForce GTX 860M[223]1029–10855000640:40:16
(5 SMM)
16.541.2280GDDR5138940–45equal to 750Ti
GK104797–9151152:96:16
(6 SMX)
12.876.5421081.23.0[209]75similar to 660 OEM.
GeForce GTX 870M[224]941–9671344:112:24
(7 SMX)
22.6105.43, 61201922599110105% of 660Ti
GeForce GTX 880M[225]954–9931536:128:32
(8 SMX)
30.5122.14, 8160256310413090% of 770
ModelLaunchCode nameFab (nm)Bus interfaceClock speedCore config1FillrateMemoryProcessing power (GFLOPS)2Supported API versionTDP (Watts)Notes (original research)
Core (MHz)Shader (MHz)Memory (MT/s)Pixel (GP/s)Texture (GT/s)Size (GiB)Bandwidth (GB/s)Bus typeBus width (bit)VulkanDirect3DOpenGLCUDA Compute Capability

GeForce 900M (9xxM) series

The GeForce 900M series for notebooks architecture. The processing power is obtained by multiplying shader clock speed, the number of cores, and how many instructions the cores can perform per cycle.

ModelLaunchCode nameFab (nm)Bus interfaceClock speedCore config1FillrateMemoryProcessing power (GFLOPS)2Supported API versionTDP (Watts)Notes
Min (MHz)Average (MHz)Memory (MT/s)Pixel (GP/s)Texture (GT/s)Size (GiB)Bandwidth (GB/s)Bus typeBus width (bit)VulkanDirect3DOpenGLOpenCL
GeForce 910MMarch 13,

2015

GK208B28PCIe 3.0 x8641384:32:8

(2 SMX)

5.12820.51216.02DDR364492.31.212 (11_0)4.61.233
GeForce 920MMarch 12, 2015GK20828PCIe 3.0 x16954Un­known1800384:32:8
(2 SMX)
7.630.5214.4DDR3647331.212 (11_0)4.61.233
GeForce 930MGM108928941384:24:8
(3 SMM)
7.422.37131.329[226]
GeForce 940M1072117620008.625.71682336[227]
GeForce 940MXJanuary, 2016[228]100412429.929.895423
June 28, 2016[229]GM1077958615000512:32:8
(4 SMM)
6.927.640GDDR5882
GeForce GTX 950MMarch 12, 2015914Un­known640:40:16
(5 SMM)
14.636.62, 4801281170Un­knownSimilar core config to GTX 750 Ti (GM107-400-A2)
200032DDR355[230]
GeForce GTX 960M10971176500017.543.880GDDR5140365[231]
GeForce GTX 965M[232]January 5, 2015GM204944Un­known1024:64:32
(8 SMM)
30.260.4193312 (12_1)60[233]Similar core config to GTX 960 (GM206-300)
GeForce GTX 970M[234]October 7, 20149931280:80:48
(10 SMM)
44.473.93, 6120192236575Similar core config to GTX 960 OEM (GM204)
GeForce GTX 980M[235]103811271536:96:64
(12 SMM)
66.499.64, 81602563189100Similar core config to GTX 970 (GM204-200) with one SMM disabled
GeForce GTX 980[236]September 22, 20151064Un­known70102048:128:64
(16 SMM)
68.1136.282244358165, oc to 200Similar to Desktop GTX 980
ModelLaunchCode nameFab (nm)Bus interfaceClock speedCore config1FillrateMemoryProcessing power (GFLOPS)2Supported API versionTDP (Watts)Notes
Min (MHz)Average (MHz)Memory (MT/s)Pixel (GP/s)Texture (GT/s)Size (GiB)Bandwidth (GB/s)Bus typeBus width (bit)VulkanDirect3DOpenGLOpenCL

GeForce 10 series

ModelLaunchCode nameFab (nm)Transistors (billion)Die size (mm2)Bus interfaceClock speedsCore configFillrateMemoryProcessing power (GFLOPS)Supported API versionTDP (Watts)SLI support
Base core clock (MHz)Boost core clock (MHz)Memory (MT/s)Pixel (GP/s)Texture (GT/s)Size (GiB)Bandwidth (GB/s)Bus typeBus width (bit)Half precisionSingle precision (Boost)Double precisionDirectXOpenGLVulkanOpenCL
GeForce GTX 1050 (Notebook)[237][238]January 3, 2017GP107(N17P-G0-A1)14 nm3.3135PCIe 3.0 x16135414937000640:40:1621.754.24112GDDR5128141733 (1911)2712 (12_1)4.51.31.253No
GeForce GTX 1050 Ti (Notebook)[237]GP107(N17P-G1-A1)14931620768:48:3247.871.7182293 (2488)3664
GeForce GTX 1060 (Notebook)[237]August 16, 2016GP106164.42001404167080001280:80:4867.41126192192563594 (4275)11280
GeForce GTX 1060 Max-QMay 20171063148071.04118.459.203789118.4
GP106B1265
GeForce GTX 1070 (Notebook)[237]August 16, 2016GP104/GP104B[239]7.2314144216452048:128:6492.31858256256925906 (6738)185115Yes
GeForce GTX 1070 Max-QMay 20171101137988.26176.588.265648176.5?No
GeForce GTX 1080 (Notebook)[237]August 16, 201615561733100002560:160:6499.6249320GDDR5X1247967 (8873)249150Yes
GeForce GTX 1080 Max-QMay 20171101146893.95234.9117.47516234.9?No

GeForce 16 series

ModelLaunchCode nameProcessTransistors (billion)Die size (mm2)Bus interfaceClock speedsL2

Cache(MiB)

Core configMemory (MT/s)FillrateMemoryProcessing power (GFLOPS)TDP (Watts)
Base core clock (MHz)Boost core clock (MHz)Pixel (GP/s)Texture (GT/s)Size (GiB)Bandwidth (GB/s)Bus typeBus width (bit)Half precisionSingle precisionDouble precision
Geforce GTX 1630Jun 28, 2022TU117TSMC 12FFN4.7200PCIe 3.0

x16

174017851.0512:32:161200028.5657.12496GDDR6643.656182857.1275
GeForce GTX 1650 (Laptop)April 23, 2019139515601024:64:32800049.9299.844128GDDR51286390319599.84[240]50
GeForce GTX 1650 Max-QTU117(N18P-G0-MP-A1)1020124539.8479.681125100255079.68[241]30
GeForce GTX 1650 Ti Max-QApril 2, 2020TU117103512001200038.476.84192GDDR64915245876.835
GeForce GTX 1650 TiTU117(N18P-G62-A1)1350148547.5295.046083304195.0455
GeForce GTX 1660 (Laptop)?TU1166.6284145515991.51408:88:481600076.32127.2638419281414070127.2[242]?
GeForce GTX 1660 Ti Max-QApril 23, 2019114013351536:96:461200064.08128.228882024101128.2[243]60
GeForce GTX 1660 Ti (Laptop)[244]145515901536:96:4676.32152.628897694884152.6[245]80

GeForce 20 series

ModelLaunchCode nameProcessTransistors (billion)Die size (mm2)Bus interfaceClock speedsL2

Cache(MiB)

Core config[a]MemoryFillrate[b]Processing power (GFLOPS)[b]Ray-tracing PerformanceTDP (Watts)
Base core clock (MHz)Boost core clock (MHz)Memory (MT/s)Size (GiB)Bandwidth (GB/s)Bus typeBus width (bit)Pixel (GP/s)[c]Texture (GT/s)[d]Half precisionSingle precisionDouble precisionTensor compute (FP16)Rays/s (Billions)RTX OPS/s (Trillions)
GeForce RTX 2050[247][248]2022GA107Samsung 8N8.7200PCIe 3.0 x8115514771400022048:64:32:64:32 (16) (3)4112.0GDDR66430-45
GeForce RTX 2060[249]January 29, 2019TU106TSMC
12FFN
10.8445PCIe 3.0 x16960120031920:120:48:240:30 (30) (3)6336.019257.614492164608144.080
GeForce RTX 2060 Max-Q[250]975117511000264.056.88142.291014550142.265
GeForce RTX 2070[251]121514401400042304:144:64:288:36 (36) (3)8448.025692.16207.4132706636207.4115
GeForce RTX 2070 Max-Q[252]88511851200075.84170.6109205460170.680
GeForce RTX 2070 Super[253]April 2, 2020TU10413.654511401380140002560:160:64:320:40 (40) (5)88.3220.8141307066220.8115
GeForce RTX 2070 Super Max-Q[254]93011551200069.1172.8110605530172.880
GeForce RTX 2080[255]January 29, 201913801590140002944:184:64:368:46 (46) (6)384.0101.8292.6187209362292.6150
GeForce RTX 2080 Max-Q[256]73510951200070.08201.5128906447201.580
GeForce RTX 2080 Super[257]April 2, 202013651560140003072:192:64:384:48 (48) (6)448.099.8299.5191709585299.5150
GeForce RTX 2080 Super Max-Q[258]735108011000352.069.1207.4132706636207.480
  1. ^ Main Shader Processors : Texture Mapping Units : Render Output Units : Tensor Cores (or FP16 Cores in GeForce 16 series) : Ray-tracing Cores (Streaming Multiprocessors) (Graphics Processing Clusters)
  2. ^ a b Base clock, Boost clock
  3. ^ Pixel fillrate is calculated as the lowest of three numbers: number of ROPs multiplied by the base core clock speed, number of rasterizers multiplied by the number of fragments they can generate per rasterizer multiplied by the base core clock speed, and the number of streaming multiprocessors multiplied by the number of fragments per clock that they can output multiplied by the base clock rate.
  4. ^ Texture fillrate is calculated as the number of TMUs multiplied by the base core clock speed.

GeForce 30 series

ModelLaunchCode nameProcess
Transistors (billion)
Die size (mm2)Bus interfaceClock speeds [a]L2 Cache (MiB)Core config
[b]
MemoryFillrate[c]Processing power (TFLOPS)[c]Ray-tracing PerformanceTDP (Watts)
Base core (MHz)Boost core (MHz)Memory (MHz)
(Gb/s)
(MT/s)
Size (GiB)Bandwidth (GB/s)Bus typeBus width (bit)Pixel (GP/s)[d]Texture (GT/s)[e]Half precisionSingle precisionDouble precisionTensor compute (FP16)[clarification needed]Tensor TOPS 
(INT8)[clarification needed]
Rays/s (Billions)RTX OPS/s (Trillions)

GeForce RTX 3050
Mobile/[259]
Laptop[260]
May 11, 2021GA107Samsung 8N8.7200PCIe 4.0 x8712-1530
622-1237
1057-1740
990-1492
1375-1500
11-12
11000-12000
1375-1750
11-14
11000-14000
22048:64:32:64:16
(16) (3)
2560:80:32:80:20
(20) (?)
4
6
176.0-192.0
132.0-224.0
GDDR6128
96
22.7-48.9
33.8-55.6
45.6-97.9
67.7-111.4
2.92-6.27
4.33-7.13
2.92-6.27
4.33-7.13
0.046-0.098
0.068-0.111
35-80
GeForce[261]
RTX 3050 
Ti Mobile/
Laptop[262]
735-14621035-1695120002560:80:48:80:20
(20) (3)
419212835.3-70.2
49.7-81.4
58.8-117.0
82.8-135.6
3.76-7.49
5.30-8.68
3.76-7.49
5.30-8.68
0.059-0.117
0.083-0.136
GeForce RTX 3060 Mobile/[263]
Laptop[264]
January 12, 2021GA10612.0276PCIe 4.0 x16817-13871282-170212000
14000
33840:120:48:120:30
(30) (3)
6288
336
19239.2-66.6
61.54-81.7
98.0-166.4
153.8-204.2
6.27-10.65
9.85-13.07
6.27-10.65
9.85-13.07
0.108-0.166
0.154-0.204
60-115
GeForce[265]
RTX 3070 Mobile/[266]
Laptop[267]
GA104-770-A117.4392780-12151290-172045120:160:80:160:40
(40) (6)
8384
448
25662.4-97.2
103.2-129.6
124.8-194.4
206.4-259.2
7.99-12.44
13.21-16.59
7.99-12.44
13.21-16.59
0.125-0.194
0.206-0.259
80-125
GeForce RTX 3070
Ti Mobile/
Laptop[268]
January 4, 2022GA104510-10351035-14855888:184:96:184:46 (46) (6)46.9-95.2
95.2-136.6
93.8-190.4
190.4-273.2
6.01-12.19
12.19-17.49
6.01-12.19
12.19-17.49
0.094-0.190
0.190-0.273
16.6
GeForce RTX 3080 Mobile/[269]
Laptop[270]
January 12, 2021GA104-775-A1780-13501245-18106144:192:96:192:48
(48) (6)
8-1674.9-129.6
119.5-164.2
149.8-259.2
239.0-328.3
9.59-16.59
15.30-22.2
9.59-16.59
15.30-22.2
0.150-0.259
0.239-0.328
80-150
GeForce RTX 3080
Ti Mobile/
Laptop[271]
January 25, 2022GA10322496585-12301125-159012000
16000
7424:232:116:232:58 (58) (6)16384
512
67.9-142.7
 130.5-184.4 
135.7-285.4
 261.0-368.9 
8.68-18.26
  16.7-23.60  
8.68-18.26
  16.7-23.60  
0.136-0.285
  0.261-0.369  
18.71
  1. ^ Which base and boost core clockspeeds the GPU has depends on the TDP configuration set by the system builder
  2. ^ Main Shader Processors : Texture Mapping Units : Render Output Units : Tensor Cores (or FP16 Cores in GeForce 16 series) : Ray-tracing Cores (Streaming Multiprocessors) (Graphics Processing Clusters)
  3. ^ a b Base clock, Boost clock.
  4. ^ Pixel fillrate is calculated as the lowest of three numbers: number of ROPs multiplied by the base core clock speed, number of rasterizers multiplied by the number of fragments they can generate per rasterizer multiplied by the base core clock speed, and the number of streaming multiprocessors multiplied by the number of fragments per clock that they can output multiplied by the base clock rate.
  5. ^ Texture fillrate is calculated as the number of TMUs multiplied by the base core clock speed.

GeForce 40 series

ModelLaunchCode nameProcess
Transistors (billion)
Die size (mm2)Bus interfaceClock speeds [a]L2 Cache (MiB)Core config
[b]
MemoryFillrate[c]Processing power (TFLOPS)[c]Ray-tracing PerformanceTDP (Watts)
Base core (MHz)Boost core (MHz)Memory (MHz)
(Gb/s)
(MT/s)
Size (GiB)Bandwidth (GB/s)Bus typeBus width (bit)Pixel (GP/s)[d]Texture (GT/s)[e]Half precisionSingle precisionDouble precisionTensor compute (FP16)[clarification needed]Tensor TOPS 
(INT8)[clarification needed]
Rays/s (Billions)RTX OPS/s (Trillions)

GeForce RTX 4050 Mobile/
Laptop[274]
February 22, 2023AD107
GN21-X2
TSMC 4N18.9146PCIe 4.0 x81140-23701605-23702000
16
14000 (Max-Q)
16000
122560:80:
32:80:20
(20) (2)
6168.0
192.0
GDDR6
[275]
9636.4-75.8
51.3-75.8
91.2-189.6
128.4-189.6
5.83-12.1
8.21-12.1
5.83-12.1
8.21-12.1
0.09-0.18
0.12-0.18
46.6-97.0
65.7-97.0
93.3-194.1
131.5-194.1
35-115
GeForce RTX 4060 Mobile/
Laptop[274]
AD107
GN21-X4
1140-22951470-2370323072:96:
32:96:24
(24) (2)
8224.0
256.0
12836.4-73.4
47.0-75.8
109.4-220.3
141.1-227.5
7.00-14.1
9.03-14.5
7.00-14.1
9.03-14.5
0.10-0.22
0.14-0.23
56.0-112.8
72.2-116.4
112.0-225.6
144.5-232.9
GeForce RTX 4070 Mobile/
Laptop[274]
AD106
GN21-X6
22.9190735-20701230-21754608:144:
48:144:36
(36) (3)
35.2-99.3
59.0-104.4
105.8-298.0
177.1-313.2
6.77-19.0
11.3-20.0
6.77-19.0
11.3-20.0
0.10-0.29
0.17-0.31
54.1-152.6
90.6-160.3
108.3-305.2
181.3-320.7
GeForce RTX 4080 Mobile/
Laptop[274]
February 8, 2023AD104
GN21-X9
35.8295PCIe 4.0 x16795-18601350-22802250
18
14000 (Max-Q)
18000
487424:232:
80:232:58
(58) (5)
12336.0
432.0
19263.6-148.8 108.0-182.4184.4-431.5 313.2-528.911.8-27.6 20.0-33.811.8-27.6 20.0-33.80.18-0.43 0.31-0.5294.4-220.9
160.3-270.8
188.8-441.8
320.7-541.6
60-150
GeForce RTX 4090 Mobile/
Laptop[274]
AD103
GN21-X11
45.9379930-16201455-2580649728:304:
112:304:76
(76) (7)
16448.0
576.0
256104.1-181.4
162.9-288.9
282.7-492.4
442.3-784.3
18.0-31.5
28.3-50.1
18.0-31.5
28.3-50.1
0.28-0.49
0.44-0.78
144.8-252.1
226.4-401.5
289.5-504.2
452.9-803.1
80-150
  1. ^ Which base and boost core clockspeeds the GPU has depends on the TDP configuration set by the system builder
  2. ^ Main Shader Processors : Texture Mapping Units : Render Output Units : Tensor Cores : Ray-tracing Cores (Streaming Multiprocessors) (Graphics Processing Clusters)
  3. ^ a b Base clock, Boost clock.
  4. ^ Pixel fillrate is calculated as the lowest of three numbers: number of ROPs multiplied by the base core clock speed, number of rasterizers multiplied by the number of fragments they can generate per rasterizer multiplied by the base core clock speed, and the number of streaming multiprocessors multiplied by the number of fragments per clock that they can output multiplied by the clock rate.
  5. ^ Texture fillrate is calculated as the number of TMUs multiplied by the core clock speed.

GeForce MX series

Model
(Architecture)
LaunchCode name(s)ProcessTransistors
(billion)
Die size
(mm2)
Bus
interface
Clock speedsL2 Cache
(MiB)
Core config[a]MemoryFillrate[b]Processing power (GFLOPS)[b]Ray tracing PerformanceTDP
(Watts)
Base
core
clock
(MHz)
Boost
core
clock
(MHz)
Memory
(MT/s)
Size
(GiB)
Bandwidth
(GB/s)
TypeBus
width
(bit)
Pixel
(GP/s)[c]
Texture
(GT/s)[d]
Half
precision
Single
precision
Double
precision
Tensor
compute
(FP16)
Rays/s
(Billions)
RTX OPS
(Trillions)
GeForce MX110
(Maxwell)[276][277]
Nov 17, 2017GM108
(N16V-GMR1-A1)
TSMC
28 nm
??PCIe 3.0
×4
9659931800
(DDR3)
5000
(GDDR5)
1256:16:8:3214.4
(DDR3)
40.1
(GDDR5)
DDR3
GDDR5
64
(7.944)

(15.89)

(508.4)

(15.89)
30
GeForce MX130
(Maxwell)[276][278][279]
GM108
(N16S-GTR-A1)
112212421384:24:8:3
(9.936)

(29.81)
861.7
(953.9)
26.93
(29.81)
GeForce MX150
(Pascal)[280][281][282]
May 17, 2017GP108
(N17S-LG-A1)
Samsung
14 nm
1.874937103850000.5384:24:16:32
4
40GDDR5
(14.99)

(22.49)
11.24
(12.45)
719.6
(797.2)
22.49
(24.91)
10
GP108-650-A1
(N17S-G1-A1)
1468153260000.548
(23.49)

(35.23)
17.62
(18.38)
1127
(1177)
35.23
(36.77)
25
GeForce MX230
(Pascal)[283]
Feb 20, 2019GP108
(N17S-G0-A1)
1519153170000.5256:16:16:22
4
56
(25.31)

(25.31)

(12.66)

(810.0)

(25.31)
10
GeForce MX250
(Pascal)[284][285]
GP108
(N17S-LG-A1)
9371038384:24:16:348
(16.61)

(24.91)

(12.46)

(797.2)

(24.91)
10
GP108
(N17S-G2-A1)
1518158256
(24.3)

(36.4)

(18.98)

(1166)

(37.97)
25
GeForce MX330
(Pascal)[286]
Feb 12, 2020GP108-655-A1
(N17S-LP-A1)
(N17S-G3-A1)
746(LP)
1531
936(LP)
1594

(25.50)

(38.26)

(19.13)

(1224)

(38.26)
10-30
GeForce MX350
(Pascal)[287]
GP107-670-A1
(N17S-LP-A1)
(N17S-G5-A1)
3.3132747(LP)
1354
937(LP)
1468
640:32:16:5
(23.49)

(46.98)

(29.36)

(1879)

(58.72)
15-25
GeForce MX450
(Turing)[288][289]
Aug 1, 2020TU117
(N18S-LP-A1)
(N18S-G5-A1)
TSMC
12FFN
4.7200PCIe 4.0
×4
720(LP)
1395
930(LP)
1575
70001896:56:32:14223.04
(50.40)
40.32
(88.20)
2581
(5645)
1290
(2822)
40.32
(88.20)
10-30
1000080GDDR6
GeForce MX550
(Turing)[290][291][292][293]
Mar 2022TU117-670-A1
(GN18-S5-A1)
106513201200021024:32:16:82
4
96
(21.12)

(42.24)

(2703)

(2703)

(42.24)
15-30
GeForce MX570
(Ampere)[290][294][292][295]
Mar 2022GA107
(GN20-S5-A1)
Samsung
8N
8.72001087115522048
64:40:16:16:64
2
4
96
(46.20)

(73.92)

(4731)

(4731)

(73.92)
15-45
  1. ^ Shader Processors : Texture mapping units : Render output units : Streaming Multiprocessors : Ray tracing cores : Tensor Cores
  2. ^ a b Base clock, Boost clock
  3. ^ Pixel fillrate is calculated as the lowest of three numbers: number of ROPs multiplied by the base core clock speed, number of rasterizers multiplied by the number of fragments they can generate per rasterizer multiplied by the base core clock speed, and the number of streaming multiprocessors multiplied by the number of fragments per clock that they can output multiplied by the base clock rate.
  4. ^ Texture fillrate is calculated as the number of TMUs multiplied by the base core clock speed.

Workstation GPUs

Quadro

ModelCode nameFab (nm)Bus interfaceCore clock (MHz)Memory clock (MHz)Core config1FillrateMemorySupported API versionTDP (Watts)Notes
Pixel (GP/s)Texture (GT/s)Size (MiB)Bandwidth (GB/s)Bus typeBus width (bit)Direct3DOpenGL
QuadroNV10GL220AGP 4x1351660:4:4:40.540.54642.66SDR12871.2
Quadro DDR1353335.312DDR
Quadro2 MXRNV11GL1802001830:2:4:20.40.42.93SDR
Quadro2 EX1751660.350.352.7
Quadro2 PRONV15GL1502504000:4:8:4126.4DDR
Quadro DCCNV20GL1802004601:4:8:40.81.61287.481.4
Quadro4 380XGLNV18GL150AGP 8x2755130:2:4:20.551.18.27
Quadro4 500XGLNV17GLAGP 4x2501660.512.7SDR
Quadro4 550XGL2704000.591.08646.4DDR
Quadro4 580XGLNV18GLAGP 8x3000.61.2
Quadro4 700XGLNV25AGP 4x2755502:4:8:41.12.28.88
Quadro4 750XGL1281.5Stereo display
Quadro4 900XGL3006501.22.410.41.4
Quadro4 980XGLNV28GLAGP 8x
ModelCode nameFab (nm)Bus interfaceCore clock (MHz)Memory clock (MHz)Core config1Pixel (GP/s)Texture (GT/s)Size (MiB)Bandwidth (GB/s)Bus typeBus width (bit)Direct3DOpenGLTDP (Watts)Features
FillrateMemorySupported API version

Quadro FX series

ModelCode nameFab (nm)Bus interfaceCore clock (MHz)Memory clock (MHz)Core config1*FillrateMemorySupported API versionTDP (Watts)Notes
Pixel (GP/s)Texture (GT/s)Size (MiB)Bandwidth (GB/s)Bus typeBus width (bit)Direct3DOpenGL
Quadro FX 500NV34GL150AGP 8x2704802:4:4:41.081.081287.68DDR1289.02.0Stereo display
Quadro FX 600NV34GLPCI3504801.41.41287.68
Quadro FX 700NV35GLAGP 8x2755503:4:8:41.12.21288.8
Quadro FX 1000NV30GL1303006002:4:8:41.22.49.6GDDR2
Quadro FX 1100NV36GL4256503:4:4:41.71.710.4DDR2
Quadro FX 2000NV30GL4008002:4:8:41.63.212.8GDDR2
Quadro FX 3000NV35GL8503:4:8:425627.2DDR256
Quadro FX 3000G27.2Stereo display, Genlock
Quadro FX 4000NV40GL37510006:12:12:124.54.532.0GDDR39.0c2.1142Stereo display
Quadro FX 4000 SDIStereo display, Genlock

Quadro FX (x300) series

ModelCode nameFab (nm)Bus interfaceCore clock (MHz)Memory clock (MHz)Core config1FillrateMemorySupported API versionTDP (Watts)
Pixel (GP/s)Texture (GT/s)Size (MiB)Bandwidth (GB/s)Bus typeBus width (bit)Direct3DOpenGL
Quadro FX 330NV37GL150PCIe x162504002:4:4:411643.2DDR1289.02.021
Quadro FX 1300NV381303505503:4:8:41.42.812817.62562.155

Quadro FX (x400) series

ModelCode nameFab (nm)Bus interfaceCore clock (MHz)Memory clock (MHz)Core config1FillrateMemorySupported API versionTDP (Watts)Notes
Pixel (GP/s)Texture (GT/s)Size (MiB)Bandwidth (GB/s)Bus typeBus width (bit)Direct3DOpenGL
Quadro FX 540NV43GL90PCIe x163005504:8:8:82.42.41288.8GDDR31289.0c2.135
Quadro FX 1400NV411303506005:8:8:82.82.819.2DDR25675Stereo display, SLI
Quadro FX 3400NV45GL/ NV409005:12:12:124.24.225628.8GDDR3101
Quadro FX 3450NV4111042510005.15.132.083
Quadro FX 4400NV45GL A3/ NV4013040010506:16:16:166.46.451233.7110

Quadro FX (x500) series

ModelCode nameFab (nm)Bus interfaceCore clock (MHz)Memory clock (MHz)Core config1FillrateMemorySupported API versionTDP (Watts)Notes
Pixel (GP/s)Texture (GT/s)Size (MiB)Bandwidth (GB/s)Bus typeBus width (bit)Direct3DOpenGL
Quadro FX 350G7290PCIe x165504003:4:4:21.12.21286.4DDR2649.0c2.121
Quadro FX 550NV431103604:8:8:82.882.8812.8GDDR312830
Quadro FX 1500G71903256256:16:16:165.25.225640.025665
Quadro FX 35004506607:20:20:167.2942.280Stereo display, SLI
Quadro FX 4500G701104305258:24:24:166.8810.351233.6109
Quadro FX 4500 SDI116Stereo display, Genlock
Quadro FX 4500X2G71905006052x 8:24:24:162x

8

2x

12

2x

512

2x

38.7

2x

256

145Stereo display, SLI, Genlock
Quadro FX 4500

rev. A2

6508008:24:24:1610.415.651251.2256105
Quadro FX 5500505102432.3DDR296
Quadro FX 5500 SDI104

Quadro FX (x600) series

ModelLaunchCode nameFab (nm)Bus interfaceCore clock (MHz)Shader clock (MHz)Memory clock (MHz)Core config12FillrateMemoryProcessing power (GFLOPS)[296][297]Supported API versionTDP (Watts)Notes
Pixel (GP/s)Texture (GT/s)Size (MiB)Bandwidth (GB/s)Bus typeBus width (bit)Single precisionDouble precisionDirect3DOpenGL
Quadro FX 560Apr 20, 2006G73GL90PCIe x1635035012005:12:12:82.84.212819.2GDDR31289.0c2.130
Quadro FX 46002Mar 5, 2007G80-850-A2 + NVIO-1-A35001200140096:24:24122476867.2384345-10.03.3134Stereo display, SLI, Genlock
Quadro FX 4600 SDI2Mar 5, 200796:24:24345154
Quadro FX 56002Mar 5, 2007G80-875-A2 + NVIO-1-A3PCIe 2.0 x1660013501600128:32:2414.438.4153676.8518.4171

Quadro FX (x700) series

ModelLaunchCode nameFab (nm)Bus interfaceCore clock (MHz)Shader clock (MHz)Memory clock (MHz)Core config1FillrateMemoryProcessing power (GFLOPS)[296][297]Supported API versionTDP (Watts)Notes
Pixel (GP/s)Texture (GT/s)Size (MiB)Bandwidth (GB/s)Bus typeBus width (bit)Single precisionDouble precisionDirect3DOpenGL
Quadro FX 370Sep 12, 2007G84-825-A280PCIe x1636072080016:8:41.442.882566.4DDR26434.56-10.03.335
Quadro FX 370 LPNov 6, 2008G98540130010008:8:42.164.32825.9225DMS-59 for two Single Link DVI
Quadro FX 470Sep 12, 2007MCP7A-U65PCIe 2.0 x16
(Integrated)
5801400800
(system memory)
16:8:42.324.64Up to 256 MiB from system memory.12.812867.230based on GeForce 9400 mGPU
Quadro FX 570Sep 12, 2007G84-850-A280PCIe x1646092080016:8:83.683.6825644.138
Quadro FX 1700Sep 12, 2007G84-875-A232:16:87.3651288.3242
Quadro FX 3700Jan 8, 2008G92-875-A265PCIe 2.0 x1650012501600112:56:1682851.2GDDR325642078Stereo display, SLI
Quadro FX 4700X2Apr 18, 20082x G92-880-A260015002x 128:64:162x 9.62x 38.42x 10242x 51.22x 2562x 576226SLI
Quadro VX 200Jan 8, 2008G92-851-A2450112596:48:167.221.651251.2256324752x Dual-link DVI, S-Video, optimised for Autodesk AutoCAD

Quadro FX (x800) series

ModelLaunchCode nameFab (nm)Bus interfaceCore clock (MHz)Shader clock (MHz)Memory clock (MHz)Core config1FillrateMemoryProcessing power (GFLOPS)[296][297]Supported API versionTDP (Watts)Notes
Pixel (GP/s)Texture (GT/s)Size (MiB)Bandwidth (GB/s)Bus typeBus width (bit)Single precisionDouble precisionDirect3DOpenGL
Quadro FX 380Mar 30, 2009G96-850-C165PCIe 2.0 x164501100140016:8:83.63.625622.4GDDR312852.8-10.03.334Two Dual Link DVI, no DisplayPort
Quadro FX 380 LPDec 1, 2009GT218GL405891402160016:8:42.3564.71251212.86467.29628DisplayPort, Dual Link DVI
Quadro FX 580Apr 9, 2009G96-875-C165450112532:16:83.67.225.612810840Dual DisplayPort, Dual Link DVI
Quadro FX 1800Mar 30, 2009G94-876-B1550137564:32:126.617.676838.419226459Stereo DP Dual Link DVI, Dual DisplayPort, SLI
Quadro FX 3800Mar 30, 2009G200-835-B3 + NVIO2-A2556001204192:64:169.63238.528102451.2256691.286.4108
Quadro FX 4800Nov 11, 2008G200-850-B3 + NVIO2-A2602192:64:2414.44838.528153676.8384693.50486.688150
Quadro FX 5800Nov 11, 2008G200-875-B2 + NVIO2-A26101296240:80:3220.73651.8404096102.4512878.4109.8189
Quadro CX[298]Nov 11, 2008GT200GL + NVIO26021204192:64:2414.44838.528153676.8384693.50486.688150Display Port and dual-link DVI Output, optimised for Adobe Creative Suite 4

Quadro x000 series

ModelLaunchCode nameFab (nm)Bus interfaceCore clock (MHz)Shader clock (MHz)Memory clock (MHz)Core config1FillrateMemoryProcessing power (GFLOPS)[296][297]Supported API versionTDP (Watts)Notes
Pixel (GP/s)Texture (GT/s)Size (GiB)Bandwidth (GB/s)Bus typeBus width (bit)Single precisionDouble precisionDirect3DOpenGL
Quadro 400Apr 5, 2011GT216GL40PCIe 2.0 x164501125154048:16:41.87.20.512.3DDR364108-10.14.532DisplayPort, Dual Link DVI
Quadro 600Dec 13, 2010GF108GL6401280160096:164:42.5610.24125.6128245.761511.04.640
Quadro 2000Dec 24, 2010GF106GL (GF106-875)62512502600192:324:16102041.6GDDR54803062Stereo DP Dual Link DVI, Dual DisplayPort
Quadro 4000Nov 2, 2010GF1004759502800256:324:3215.215.2289.6256486.4243142
Quadro 5000Feb 23, 201151310263000352:444:4020.5322.5722.5120320722.304359152
Quadro 6000Dec 10, 20105741148448:564:4827.55232.14461443841028.608515204
Quadro 7000May 2, 2012GF11065113013696512:644:4831.24841.761771332667
Quadro Plex 7000[299]July 25, 20112x GF100574114830002x 512:644:482x 18.372x 36.742x 62x 1442x 3842x 11762x 588600

Quadro Kxxx series

ModelLaunchCode nameFab (nm)Bus interfaceCore clock (MHz)Shader clock (MHz)Memory clock (MHz)Core config1FillrateMemoryProcessing power (GFLOPS)[296][297]Supported API versionTDP (Watts)Notes
Pixel (GP/s)Texture (GT/s)Size (GiB)Bandwidth (GB/s)Bus typeBus width (bit)Single precisionDouble precisionDirect3DOpenGLVulkanCUDA
Quadro 410Aug 7, 2012GK10728PCIe 2.0 x167067061800192:16:8
(1 SMX)
5.6511.30.514.4DDR3[300]64271.1011.04.61.23.038
Quadro K600Mar 1, 2013876876891
(1782)
192:16:16
(1 SMX)
14.014.0128.5DDR3128336.38416.3" Card
Quadro K2000Mar 1, 20139549541000
(4000)
384:32:16
(2 SMX)
15.230.5264GDDR5732.67517.97" Card
Quadro K2000DMar 1, 2013384:32:16
(2 SMX)
2
Quadro K4000Mar 1, 2013GK106810.5810.51404
(5616)
768:64:24
(4 SMX)
19.451.93134.81921244.93809.5" Card
Quadro K5000Aug 17, 2012GK1047067061350
(5400)
1536:128:32
(8 SMX)
22.690.44172.82562168.8390.412210.5" Card
Quadro K6000Jul 23, 2013GK110PCIe 3.0 x16901.5901.51502
(6008)
2880:240:48
(15 SMX)
54.121612288384519617323.5225
ModelLaunchCode nameFab (nm)Bus interfaceCore clock (MHz)Shader clock (MHz)Memory clock (MHz)Core config1FillrateMemoryProcessing power (GFLOPS)[296][297]Supported API versionTDP (Watts)Notes
Pixel (GP/s)Texture (GT/s)Size (GiB)Bandwidth (GB/s)Bus typeBus width (bit)Single precisionDouble precisionDirect3DOpenGLVulkanCUDA
Quadro K420Jul 22, 2014GK10728PCIe 2.0 x167807801800192:16:16
(1 SMX)
12.4812.481 2[301]29DDR3128299.5212.4811.04.61.23.041
Quadro K620Jul 22, 2014GM107-85010001000900
(1800)
384:24:16
(3 SMM)
16.024.0228.8768.024.012.01.35.0456.3" Card
Quadro K1200Jan 28, 2015GM107-8609541253512:32:16
(4 SMM)
15.330.5480.2GDDR510837.97" Card
Quadro K2200Jul 22, 2014GM107-875-A2[302]104610461253
(5012)
640:40:16
(5 SMM)
16.741.880.21338.941.868
Quadro K4200Jul 22, 2014GK1047807801350
(5400)
1344:112:32
(7 SMX)
24.9687.36172.82562096.6487.3611.01.23.01059.5" Card
Quadro K5200Jul 22, 2014GK110BPCIe 3.0 x166506501500
(6000)
2304:192:32
(12 SMX)
20.8124.881922995.2124.83.515010.5" Card

Quadro Mxxx series

ModelLaunchCode nameFab

(nm)

Bus interfaceCore clock

(MHz)

Shader clock

(MHz)

Memory clock

(MHz)

Core config1FillrateMemoryProcessing power (GFLOPS)[296][297]Supported API versionTDP (Watts)Notes
Pixel

(GP/s)

Texture

(GT/s)

Size

(GiB)

Bandwidth

(GB/s)

Bus typeBus width

(bit)

Single precisionDouble precisionDirect3DOpenGLVulkanOpenCLCUDA
Quadro M2000Apr 8, 2016GM206-875-A1[303]28PCIe 3.0 x1679611631653
(6612)
768:48:32:637.856.64105.8GDDR51281812.556.612.14.61.31.25.275Four DisplayPort 1.2a
Quadro M4000Jun 29, 2015GM204-850-A1[304]7737731503
(6012)
1664:104:64:1351.283.28192.42562662.483.2120
Quadro M5000Jun 29, 2015GM204-875-A1[304]86110381653
(6612)
2048:128:64:1667.2134.4211.64300.8134.4150Four DisplayPort 1.2a, One DVI-I
Quadro M6000Mar 21, 2015GM200GL
GM200-880-A1[303]
98811141653
(6612)
3072:192:96:2494.8189.712
24
3173846070190250[305]

Quadro Pxxx series

ModelLaunchCode name[239]Fab

(nm)

Bus interfaceCore clock

(MHz)

Boost clock

(MHz)

Memory clock

(MHz)

Core config1Fillrate[306]MemoryProcessing power (GFLOPS)[296][297]Supported API versionTDP (Watts)Notes
Pixel

(GP/s)

Texture

(GT/s)

Size

(GiB)

Bandwidth

(GB/s)

Bus typeBus width

(bit)

Single precisionDouble precisionDirect3DOpenGLVulkanOpenCLCUDA
Quadro P400Feb 7, 2017GP107-82514PCIe 3.0 x16122812521003
(4012)
256:16:16:217.117.1232GDDR56464120.012.14.61.31.26.130Three Mini-DisplayPort 1.4
Quadro P600Feb 7, 2017GP107-850132915571003
(4012)
384:24:16:321.732.564128119537.340Four Mini-DisplayPort 1.4
Quadro P620Feb 1, 2018GP107-855126613541003
(4012)
512:32:16:423.346.6149046.6
Quadro P1000Feb 7, 2017GP107-86014811752
(7008)
640:40:32:543.354.2482189459.247
Quadro P2000Feb 6, 2017GP106-87516107614802002
(8008)
1024:64:40:854.887.75140160301093.875Four DisplayPort 1.4
Quadro P2200Jun 10, 2019GP106-880-K1-A1[307]100014931251

(10008)

1280:80:40:959.7119.45200GDDR5X3822121.3
Quadro P4000Feb 6, 2017GP104-850-A1120214801901
(7604)
1792:112:64:1478.5137.48243GDDR52565300165.6105
Quadro P5000Oct 1, 2016GP104-875-A1160717331126
(9008)
2560:160:64:20102.8257.116288GDDR5X8873277.3180Four DisplayPort 1.4, One DVI-D
Quadro P6000Oct 1, 2016GP102-875-A1150616451126
(9008)
3840:240:96:30136.0340.02443238410882 (11758)~340250
Quadro GP100Oct 1, 2016GP100-876-A113041442703 (1406)3584:224:128:56184.732316720HBM240961033651686235NVLINK support

Quadro GVxxx series

ModelLaunchCode name[239]Fab

(nm)

Bus interfaceCore clock

(MHz)

Boost clock

(MHz)

Memory clock

(MHz)

Core config1Fillrate[306]MemoryProcessing power (TFLOPS)Supported API versionTDP (Watts)Notes
Pixel

(GP/s)

Texture

(GT/s)

Size

(GiB)

Bandwidth

(GB/s)

Bus typeBus width

(bit)

Single precisionDouble precisionDirect3DOpenGLVulkanOpenCLCUDA
Quadro GV100[308]Mar 27, 2018GV100-875-A112PCIe 3.0 x1611321627848 (1696)5120:320:128:80:640208.452132870HBM2409614.87.412.14.61.33.07.02504x DisplayPort, NVLINK support

Quadro Tx00/Tx000 series

ModelLaunchCode name[239]Fab

(nm)

Bus interfaceCore clock

(MHz)

Boost clock

(MHz)

Memory clock

(MT)

Core config1Fillrate[306]MemoryProcessing power (TFLOPS)[306]Supported API versionTDP

(Watts)

Notes
Pixel

(GP/s)

Texture

(GT/s)

Size

(GiB)

Bandwidth

(GB/s)

Bus typeBus width

(bit)

Single precisionDouble precisionDirect3DOpenGLVulkanOpenCLCUDA
NVIDIA T400 [309][310][311]May 6, 2021TU117TSMC
12FFN
PCIe 3.0 x16420142510000384:24:16:622.834.22
4
80GDDR6641.090.034112.14.61.33.07.5303x Mini-DisplayPort
NVIDIA T600 [309][312][313]Apr 12, 2021TU117-850-A17351335640:40:32:1042.753.441601281.70.0531404x Mini-DisplayPort
NVIDIA T1000 [309][314][315]May 6, 2021TU11710651395896:56:32:1444.678.14
8
2.50.078150

Quadro RTX x000 series

ModelLaunchCode name[239]Fab

(nm)

Bus interfaceCore clock

(MHz)

Boost clock

(MHz)

Memory clock

(MHz)

Core config1Fillrate[306]MemoryProcessing power (TFLOPS)[306]Supported API versionTDP

(Watts)

Notes
Pixel

(GP/s)

Texture

(GT/s)

Size

(GiB)

Bandwidth

(GB/s)

Bus typeBus width

(bit)

Single precisionDouble precisionDirect3DOpenGLVulkanOpenCLCUDA
Quadro RTX 4000Nov 13, 2018TU104-850-A112PCIe 3.0 x16100515451625
(13000)
2304:144:64:36:28898.9222.58416GDDR62567.1190.222512.24.61.33.07.5100-1253x DisplayPort

1x USB Type-C

Quadro RTX 5000Aug 13, 2018TU104-875-A1162018151750
(14000)
3072:192:64:48:384116.2348.51644811.1510.3485125-230
Quadro RTX 6000Aug 13, 2018TU102-875-A1144017704608:288:96:72:576169.9509.82467238416.3120.5098100-260
Quadro RTX 8000Aug 13, 2018139548

RTX Ax000 series

ModelLaunchCode name[239]Fab

(nm)

Bus interfaceCore clock

(MHz)

Boost clock

(MHz)

Memory clock

(MHz)

Core config1Fillrate[306]MemoryProcessing power (TFLOPS)[306]Supported API versionTDP

(Watts)

Notes
Pixel

(GP/s)

Texture

(GT/s)

Size

(GiB)

Bandwidth

(GB/s)

Bus typeBus width

(bit)

Half precisionSingle precisionDouble precisionTensor compute (FP16) (sparse)Direct3DOpenGLVulkanOpenCLCUDA
RTX A400[316]Apr 16th, 2024GA1078PCIe 4.0 x872717621500
(12000)
768:24:16:6:2428.1942.29496GDDR6642.7062.7060.0422921.712.24.61.33.08.6504x mini DisplayPort
RTX A1000 [317]Apr 16th, 2024GA107PCIe 4.0 x872714621500
(12000)
2304:72:32:18:7246.78105.38192GDDR61286.7376.7370.105353.8504x mini DisplayPort
RTX A2000 [318][319][320][321]Aug 10, 2021GA106-850-A1PCIe 4.0 x1656212001500
(12000)
3328:104:48:26:10457.6124.86288GDDR61927.9877.9870.124863.9704x mini DisplayPort
12
RTX A4000 [322][323][324]Apr 12, 2021GA104-875-A1PCIe 4.0 x1673515601750
(14000)
6144:192:96:48:192149.769299.516448GDDR625619.1719.170.2995153.41404x DisplayPort
RTX A4500 [325]Nov 23, 2021GA102-825-KD-A1PCIe 4.0 x16105016502000
(16000)
7168:224:80:56:224132.008369.62320640GDDR632023.6623.660.3696189.22004x DisplayPort
RTX A5000 [326][327][328]Apr 12, 2021GA102-850-A1PCIe 4.0 x16117016952000
(16000)
8192:256:96:64:256162.730433.94724768GDDR638427.7727.770.4339222.22304x DisplayPort
RTX A5500 [321]Mar 22, 2022GA102-860-A1PCIe 4.0 x16108016652000
(16000)
10240:320:112:80:320186.491532.83424768GDDR638434.1034.100.5328272.82304x DisplayPort
RTX A6000 [329][330][331]Oct 5, 2020GA102-875-A1PCIe 4.0 x16141018002000
(16000)
10752:336:112:84:336201.612604.83848768GDDR638438.7138.710.6048309.73004x DisplayPort

RTX Ada Generation

ModelLaunchCode name[239]Fab

(nm)

Bus interfaceCore clock

(MHz)

Boost clock

(MHz)

Memory clock

(MHz)

Core config1Fillrate[306]MemoryProcessing power (TFLOPS)[306]Supported API versionTDP

(Watts)

NotesSize
Pixel

(GP/s)

Texture

(GT/s)

Size

(GiB)

Bandwidth

(GB/s)

Bus typeBus width

(bit)

Half precisionSingle precisionDouble precisionTensor compute (FP16) (sparse)Direct3DOpenGLVulkanOpenCLCUDAProfileSlots
RTX 2000 Ada Generation[332][333]Feb 12th, 2024AD107-875-A1TSMC 4NPCIe 4.0 x81620213020002816:88:48:22:88102.2187.416224GDDR612812120.1874191.912.24.61.33.08.9704x mini DisplayPortDouble
RTX 4000 SFF Ada Generation[334]Mar 21, 2023AD104PCIe 4.0 x1672015601750
(14000)
6144:192:80:48:192125.2300.520280GDDR616019.2319.230.3704x mini DisplayPortHHHLDouble
RTX 4000 Ada Generation[335]Aug 9, 2023AD104PCIe 4.0 x16150021751750
(14000)
6144:192:80:48:192174417.620360GDDR616026.7326.730.4171304x DisplayPortFHFLSingle
RTX 4500 Ada Generation[336]Aug 9, 2023AD104-875-A1PCIe 4.0 x16207025802250

(18000)

7680:240:80:60:24020662024432GDDR619239.6339.630.6192104x DisplayPortFHFLDouble
RTX 5000 Ada Generation[337]Aug 9, 2023AD102-850-KAB-A1PCIe 4.0 x16115525502250 (18000)12800:400:160:100:400408.01,02032576GDDR625665.2865.281.022504x DisplayPortFHFLDouble
RTX 5880 Ada Generation[338]Jan 5, 2024AD102PCIe 4.0 x1624602500
(20000)
14080:440:176:110:440433.01,08248960GDDR638469.27269.2721.0822854x DisplayPortFHFLDouble
RTX 6000 Ada Generation[339]Dec 3, 2022AD102-870-A1PCIe 4.0 x1691525052500
(20000)
18176:568:192:142:568481.01,42348960GDDR638491.0691.061.4233004x DisplayPortFHFLDouble

Quadro NVS

ModelLaunchCode nameFab (nm)Bus interfaceCore clock (MHz)Shader clock (MHz)Memory clock (MHz)Core config12*FillrateMemoryProcessing power (GFLOPS)Supported API versionTDP (Watts)Notes
Pixel (GP/s)Texture (GT/s)Size (MiB)Bandwidth (GB/s)Bus typeBus width (bit)Single precisionDirect3DOpenGLVulkan
NVS 50May 31, 2005NV18150AGP 4x/PCI2502502000:2:4:20.51.0641.6DDR3271.2n/aDVI-I, S-Video
NVS 100Dec 22, 2003NV172003330:2:4:2642.664642x DVI-I, VGA, S-Video
NVS 200Dec 22, 20032502502500:2:4:20.51.0648.0128LFH-60
NVS 210SDec 22, 2003MCP5190Integrated4251:2:2:10.4250.850Up to 256 from system memory9.0cDVI + VGA
NVS 280Oct 28, 2003NV34GL150PCIe x16/AGP 8x / PCI2752752500:2:4:2/
1:2:2:2 *:4:4:4
0.551.1648.09.01.513DMS-59
NVS 285Jun 6, 2006NV44110PCIe x1/x162753:4:4:21288.82.118DMS-59
NVS 290Oct 4, 2007G86-827-A28046092080016:8:41.843.682566.4DDR26444.16103.321DMS-59
NVS 295May 7, 2009G9865550130014008:8:42.24.411.2GDDR331.2232x DisplayPort or 2x DVI-D
NVS 300Jan 8, 2011GT218405891402158016:8:42.3564.71251212.64DDR367.310.117.5DMS-59
NVS 310Jun 26, 2012GF119PCIe x165231046175048:8:42.0924.18414100.411.04.119.52x DisplayPort
NVS 315Mar 10, 20131024DMS-59 Idle Power Consumption 7 W
NVS 400Jul 16, 20042x NV17150PCI2202203322x 0:2:4:22x 0.442x 0.882x 642x 11.0DDR2x 1282x 5.32871.2182x LFH-60
NVS 420Jan 20, 20092xG98-850-U265PCIe x1/x16550130014002x 8:8:42x 2.22x 4.42x 2562x 11.2GDDR32x 642x 31.2103.340through VHDCI to (4x DisplayPort or 4x DVI-D)
NVS 440Feb 14, 20062xNV431102505002x 4:8:8:82x 2.0002x 2.0002x 1282x 8.000DDR2x 1289.02.1312x DMS-59[340]
NVS 450Nov 11, 20082xG9865550130014002x 8:8:42x 2.22x 4.42x 2562x 11.2GDDR32x 642x 31.2103.3354x DisplayPort
NVS 510Oct 23, 2012GK10728PCIe 2.0 x167971782192:16:8
(1 SMX)
3.18812.75204828.5DDR3128306.011.04.61.24x miniDisplayPort
NVS 810Nov 4, 20152x GM107PCIe 3.0 x16103318002x 512:32:1616.5333.062x 20482x 14.42x 6410581.3688x miniDisplayPort

Mobile Workstation GPUs

Quadro Go (GL) & Quadro FX Go series

Early mobile Quadro chips based on the GeForce2 Go up to GeForce Go 6800. Precise specifications on these old mobile workstation chips are very hard to find, and conflicting between Nvidia press releases and product lineups in GPU databases like TechPowerUp's GPUDB.

ModelLaunchCode nameFab (nm)Bus interfaceCore clock (MHz)Memory clock (MHz)Core config12FillrateMemorySupported API versionTDP (Watts)Notes
Pixel (GP/s)Texture (GT/s)Size (MiB)Bandwidth (GB/s)Bus typeBus width (bit)Direct3DOpenGL
Quadro2 Go[341]August 14, 2001[342][343]NV11 GLM180AGP 4x143130
360
2:0:4:20.2860.59232
64
2.9
5.8
SDR
DDR
1287.01.2First mobile Quadro based on the GeForce2 Go, Dynamic core clock 100–143 MHz, dynamic voltage 1.575V, graphics core listed as 64-bit and 128-bit for DDR and SDR SDRAM types respectively according to Nvidia[344][345]
Quadro4 500 Go GL[346][347]April 23, 2002[348]NV17 GLM150AGP 4x,8x2202202:0:4:20.440.88647.0DDR7.01.3Based on the GeForce4 Go, dynamic core clock 66–220 MHz, core voltage 1.35 V, uses DDR SDRAM according to Nvidia brochures[345]
Quadro4 700 Go GL[346][349][350]February 5, 2003[351][352]NV28 GLM1501762004:2:4:40.7040.7047.4?128?8.1Based on GeForce4 Go 4200, uses DDR according to Nvidia brochures
Quadro FX Go 700[353]June 2003?[354]NV31 GLM130AGP 8x2955904:2:4:41.181.181289.44?1289.02.1?Slightly underclocked Geforce FX 5600 Go
Quadro FX Go 1000[355]February 2004?NV36 GLM130?5704:3:4:49.12?Based on TSMC 130 nm process with one extra pixel shader?
Quadro FX Go 1400[355]February 25, 2005[356]NV41 GLM130PCIe27559012:5:12:12?2.202.225618.9?256Last chip designated as a Quadro FX Go, uses PCIe instead of AGP 8x. Core config has been mentioned as either 8:5:8:8 or 12:5:12:12 - the latter is likely since chip is derived from GeForce Go 6800.

Quadro FX (x500M) series

GeForce 7-Series based.

ModelLaunchCode nameFab (nm)Bus interfaceCore clock (MHz)Memory clock (MHz)Core config1FillrateMemorySupported API versionTDP (Watts)
Pixel (GP/s)Texture (GT/s)Size (MiB)Bandwidth (GB/s)Bus typeBus width (bit)Direct3DOpenGL
Quadro FX 350MMar 13, 2006G72GLM90PCIe 1.0 x164509003:4:4:20.91.825614.4GDDR31289.0c2.115
Quadro FX 1500MApr 18, 2006G71GLM37510008:24:24:166951232256
Quadro FX 2500MSep 29, 2005500120081238.4
Quadro FX 3500MMar 1, 20075759.213.8

Quadro FX (x600M) series

GeForce 8-Series (except FX 560M and FX 3600M) based. First Quadro Mobile line to support DirectX 10.

ModelLaunchCode nameFab (nm)Bus interfaceCore clock (MHz)Shader clock (MHz)Memory clock (MHz)Core config1FillrateMemoryProcessing power (GFLOPS)Supported API versionTDP (Watts)Notes
Pixel (GP/s)Texture (GT/s)Size (MiB)Bandwidth (GB/s)Bus typeBus width (bit)Single precisionDirect3DOpenGL
Quadro FX 360MMay 9, 2007G86M80PCIe 1.0 x16400800120016:8:41.63.22569.6DDR26438.410.03.317Based on the GeForce 8400M GS
Quadro FX 560MApr 20, 2006G73GLM905005005:12:12:84651219.2GDDR31289.0c2.135?7600GS based?
Quadro FX 1600MJun 1, 2007G84M806251250160032:16:851025.612010.03.350?
Quadro FX 3600MFeb 23, 2008G92M6550064:32:16
96:48:16
8
8
16
24
51.2256240
360
70Based on the GeForce 8800M GTX. Dell Precision M6300 uses 64 shader version of the FX 3600M

Quadro FX (x700M) series

ModelLaunchCode nameFab (nm)Bus interfaceCore clock (MHz)Shader clock (MHz)Memory clock (MHz)Core config1FillrateMemoryProcessing power (GFLOPS)Supported API versionTDP (Watts)
Pixel (GP/s)Texture (GT/s)Size (MiB)Bandwidth (GB/s)Bus typeBus width (bit)Single precisionDirect3DOpenGL
Quadro FX 370MAug 15, 2008G98M65PCIe 1.0 x16550140012008:4:42.22.22569.6GDDR36433.610.03.320
Quadro FX 570MJun 1, 2007G84M80475950140032:16:83.87.651222.412891.245
Quadro FX 770MAug 14, 2008G96M65500125016004825.6119.035
Quadro FX 1700MOct 1, 20086251550510148.850
Quadro FX 2700MAug 14, 2008G94M530132548:24:168.4812.7251.2256190.865
Quadro FX 3700MAug 14, 2008G92M1375128:64:168.835.2102452875

Quadro FX (x800M) series

The last DirectX 10 based Quadro mobile cards.

ModelLaunchCode nameFab (nm)Bus interfaceCore clock (MHz)Shader clock (MHz)Memory clock (MHz)Core config1FillrateMemoryProcessing power (GFLOPS)Supported API versionTDP (Watts)
Pixel (GP/s)Texture (GT/s)Size (MiB)Bandwidth (GB/s)Bus typeBus width (bit)Single precisionDirect3DOpenGL
Quadro FX 380MJan 7, 2010GT218M40PCIe 2.0 x166251530160016:8:42.5551212.8GDDR36473.4410.13.325
Quadro FX 880MJan 7, 2010GT216M550121048:16:84.48.8102425.6128174.2435
Quadro FX 1800MJun 15, 2009GT215M45010801600
2200
72:24:83.610.825.6
35.2
GDDR3
GDDR5
233.2845
Quadro FX 2800MDec 1, 2009G92M555001250200096:48:1681664GDDR325636010.075
Quadro FX 3800MAug 14, 20086751688128:64:1610.843.2648.192100

Quadro (xxxxM) series

ModelLaunchCode nameFab (nm)Bus interfaceCore clock (MHz)Shader clock (MHz)Memory clock (MHz)Core config12FillrateMemoryProcessing power (GFLOPS)Supported API versionTDP (Watts)Notes
Pixel (GP/s)Texture (GT/s)Size (GiB)Bandwidth (GB/s)Bus typeBus width (bit)Single precisionDirect3DOpenGL
Quadro 500MFeb 22, 2011GF10840PCIe 2.0 x167001400180096:16:42.811.2128.8DDR3128268.811.04.535
Quadro 1000MJan 13, 2011245Dell Precision M4600
Quadro 2000MJan 13, 2011GF1065501100192:32:168.817.6422.455Dell Precision M4600
Quadro 3000MFeb 22, 2011GF1044509002500240:40:3214.41880GDDR525643275Dell Precision M6600
Quadro 4000MFeb 22, 2011475950336:56:3215.226.6638.4100Dell Precision M6600
Quadro 5000MJul 27, 2010GF1004058102400320:40:3212.9616.276.8518.4Dell Precision M6500
Quadro 5010MFeb 22, 2011GF1104509002600384:48:3214.421.6483.2691.2Dell Precision M6600

Quadro (Kx000M) series

ModelLaunchCode nameFab (nm)Bus interfaceCore clock (MHz)Shader clock (MHz)Memory clock (MHz)Core config1FillrateMemoryProcessing power (GFLOPS)Supported API versionNvidia Optimus
technology
TDP (Watts)Notes
Pixel (GP/s)Texture (GT/s)Size (GiB)Bandwidth (GB/s)Bus typeBus width (bit)Single precisionDirect3DOpenGL
Quadro K500MJun 1, 2012GK10728PCIe 3.0 x168508501600192:16:86.813.6112.8DDR364326.411.04.5Yes35
Quadro K1000MJun 1, 20121800192:16:1613.6228.8128326.445Dell Precision M4700
Quadro K2000MJun 1, 2012745745384:32:1611.9223.84572.1655Dell Precision M4700
Quadro K3000MJun 1, 2012GK1046546542800576:48:3220.9331.3989.6GDDR5256753.4175Dell Precision M6700
Quadro K4000MJun 1, 2012600600960:80:3219.24841152100Dell Precision M6700
Quadro K5000MAug 7, 201270670630001344:112:3222.5979.07961897.73Dell Precision M6700

Quadro (Kx100M) series

ModelLaunchCode nameFab (nm)Bus interfaceCore clock (MHz)Shader clock (MHz)Memory clock (MHz)Core config1FillrateMemoryProcessing power (GFLOPS)Supported API versionNvidia Optimus
technology
TDP (Watts)Notes
Pixel (GP/s)Texture (GT/s)Size (GiB)Bandwidth (GB/s)Bus typeBus width (bit)Single precisionDirect3DOpenGL
Quadro K510MJul 23, 2013GK20828PCIe 3.0 x88508501200
(2400)
192:16:8
(1 SMX)
6.813.6119.2GDDR564326.411.04.5Yes30
Quadro K610MJul 23, 2013PCIe 3.0 x169809801300
(2600)
192:16:8
(1 SMX)
7.8415.6820.8376.32
Quadro K1100MJul 23, 2013GK1077167161400
(2800)
384:32:16
(2 SMX)
11.4522.91244.8128549.8945Dell Precision M3800 and M4800
Quadro K2100MJul 23, 2013GK1066546541500
(3000)
576:48:16
(3 SMX)
10.4631.3948.0753.4155Dell Precision M4800
Quadro K3100MJul 23, 2013GK104680680800
(3200)
768:64:32
(4 SMX)
21.7643.524102.42561044.4875Dell Precision M6800
Quadro K4100MJul 23, 20137067061152:96:32
(6 SMX)
22.5967.771626.624100Dell Precision M6800
Quadro K5100MJul 23, 2013771771900
(3600)
1536:128:32
(8 SMX)
24.6798.688115.22368.51Dell Precision M6800

Quadro (Kx200M) series

ModelLaunchCode nameFab (nm)Bus interfaceCore clock (MHz)Boost

clock

(MHz)

Memory clock (MHz)Core config1FillrateMemoryProcessing power (GFLOPS)Supported API versionNvidia Optimus
technology
TDP (Watts)
Pixel (GP/s)Texture (GT/s)Size (GiB)Bandwidth (GB/s)Bus typeBus width (bit)Single precisionDouble

precision

Direct3DOpenGL
Quadro K2200MJul 19, 2014GM10728PCIe 3.0 x16115011501253
(5012)
640:40:16
(5 SMM)
18.446280.2GDDR512814724612.14.5Yes65

Quadro (Mx000M) series

ModelLaunchCode nameFab (nm)Bus interfaceCore clock (MHz)Boost

clock

(MHz)

Memory clock (MHz)Core config1FillrateMemoryProcessing power (GFLOPS)Supported API versionNvidia Optimus
technology
TDP (Watts)
Pixel (GP/s)Texture (GT/s)Size (GiB)Bandwidth (GB/s)Bus typeBus width (bit)Single precisionDouble

precision

Direct3DOpenGLVulkan
Quadro M500MApr 27, 2016GM10828PCIe 3.0 x1610291124900 (1800)384:24:8
(3 SMM)
8.99217.98214.40DDR364863.226.9812.14.51.0Yes25
Quadro M600MAug 18, 2015GM1078378761253
(5012)
384:24:16
(3 SMM)
7.00814.0280.2GDDR5128672.821.0230
Quadro M1000MAug 18, 2015993512:32:16
(4 SMM)
15.8931.78101731.7840
Quadro M2000MDec 3, 201510291098640:40:16
(5 SMM)
17.5743.924140543.9255
Quadro M3000MAug 18, 2015GM20410501024:64:32
(8 SMM)
33.6067.20160.4256215067.2075
Quadro M4000MAug 18, 20159751280:80:48
(10 SMM)
62.4078.00249678.00100
Quadro M5000MAug 18, 20159621536:96:64
(12 SMM)
62.4093.6082955.393.60

Quadro (Mx200) series

Mobile version of the Quadro (Mx200) series.

ModelLaunchCode nameFab (nm)Bus interfaceCore clock (MHz)Boost clock (MHz)Memory clock (MHz)L2

Cache (MiB)

Core config1FillrateMemoryProcessing power (GFLOPS)Supported API versionNvidia Optimus
technology
TDP (Watts)
Pixel (GP/s)Texture (GT/s)Size (GiB)Bandwidth (GB/s)Bus typeBus width (bit)Single precisionDirect3DOpenGLCUDA
Quadro M520 MobileJan 11, 2017GM10828PCIe 3.0 x16965117650001384:24:8
(3 SMM)
9.418.8140GDDR56484012.14.55.0Yes25
Quadro M620 MobileJan 11, 2017GM107756101850122512:32:16
(4 SMM)
16.332.6280.2128100030
Quadro M1200 MobileJan 11, 201799111482640:40:16
(5 SMM)
18.445.94140045
Quadro M2200 MobileJan 11, 2017GM2066951037550811024:64:32
(8 SMM)
33.266.388.121005.255

Quadro (Mx500) series

Mobile version of the Quadro (Mx500) series.

ModelLaunchCode nameFab (nm)Bus interfaceCore clock (MHz)Boost clock (MHz)Memory clock (MHz)L2

Cache (MiB)

Core config1FillrateMemoryProcessing power (GFLOPS)Supported API versionNvidia Optimus
technology
TDP (Watts)
Pixel (GP/s)Texture (GT/s)Size (GiB)Bandwidth (GB/s)Bus typeBus width (bit)Single precisionDirect3DOpenGLCUDA
Quadro M5500 MobileApr 8, 2016GM20428PCIe 3.0 x168611140660622048:128:64
(16 SMM)
73145.98211.4GDDR5256466912.14.55.2Yes150

Quadro (Px000) series

Mobile version of the Quadro (Px000) series series.

ModelLaunchCode nameFab (nm)Bus interfaceCore clock (MHz)Boost clock (MHz)Memory clock (MHz)L2

Cache (MiB)

Core config1FillrateMemoryProcessing power (GFLOPS)Supported API versionNvidia Optimus
technology
TDP (Watts)
Pixel (GP/s)Texture (GT/s)Size (GiB)Bandwidth (GB/s)Bus typeBus width (bit)Single precisionDirect3DOpenGLCUDA
Quadro P500 MobileJan 5, 2018GP10814PCIe 3.0 x161455151912530.5256:16:16:224.324.3240GDDR56475012.14.56.1Yes18
Quadro P600 MobileFeb 7, 2017GP1071430162012521384:24:16:325.9238.88280128120025
Quadro P1000 MobileFeb 7, 2017GP107(N18P-Q1-A1)149315191502512:32:16:424.348.61496160040
Quadro P2000 MobileFeb 6, 2017GP107(N18P-Q3-A1)155716071502768:64:32:651.4277.14240050
Quadro P3000 MobileJan 11, 2017GP106161088121517521.51280:80:48:1058.3297.26168192309875
Quadro P4000 MobileJan 11, 2017GP10412021228150021792:112:64:1478.59137.581922564398100
Quadro P4000

Max-Q

Jan 11, 20171114150280
Quadro P5000 MobileJan 11, 20171164150615002048:128:64:1696.38192.8166197100

Quadro (Px200) series

ModelLaunchCode nameFab (nm)Bus interfaceCore clock (MHz)Boost clock (MHz)Memory clock (MHz)L2

Cache (MiB)

Core config1MemoryFillrateProcessing power (GFLOPS)Supported API versionNvidia Optimus
technology
TDP (Watts)
Size (GiB)Bandwidth (GB/s)Bus typeBus width (bit)Pixel (GP/s)Texture (GT/s)Single precisionDirect3DOpenGLCUDA
Quadro P3200 MobileFeb 21, 2018GP10416PCIe 3.0 x161328154317521.51792:112:64:146168.2GDDR519298.75172.8553012.14.56.1Yes75
Quadro P4200 MobileFeb 21, 201814181594175322304:144:64:188224.4256102.0229.57345100
Quadro P4200 Max-QFeb 21, 20181215148094.72213.16820100
Quadro P5200 MobileFeb 21, 20181582175918042560:160:64:2016230.9112.6281.49006100
Quadro P5200 Max-QFeb 21, 20181240148094.72236.87578100

Quadro RTX / T x000 series

Mobile version of the Quadro RTX / T x000 series.

ModelLaunchCode name[239]Fab

(nm)

Bus interfaceCore clock

(MHz)

Boost clock

(MHz)

L2

Cache (MiB)

Core config1FillrateMemoryProcessing power (TFLOPS)Supported API versionTDP

(Watts)

Notes
Pixel

(GP/s)

Texture

(GT/s)

Size

(GiB)

Bandwidth

(GB/s)

Memory clock

(MHz)

Bus typeBus width

(bit)

Half precisionSingle precisionDouble precisionDirect3DOpenGLVulkanOpenCLCUDA
Quadro T500 Mobile[321]Dec 2, 2020TU117(N19P-Q1-A1)12PCIe 3.0136516951896:56:32:14:5654.2494.922801250GDDR5645.5912.7960.0873612.14.61.23.07.525
49.9287.3646.0753.0370.0949218
Quadro T550 Mobile[321]May 2022TU117106516651024:64:32:26:6453.28106.61121500646.823.410.106623
Quadro T600 Mobile[321]Apr 12, 2021TU1177801410896:56:32:14:5645.1278.9619215001285.0532.5270.0789640
Quadro T1000 Mobile[357]May 27, 2019TU117(N19P-Q1-A1)13951455768:48:32:12:153646.5669.8412820001285.2152.6070.0814840-50
Quadro T1200 Mobile[321]Apr 12, 2021TU117151517851024:64:32:16:6457.12114.222415001287.3113.6560.114218
Quadro T2000 Mobile[357]May 27, 2019TU117(N19P-Q3-A1)157517851024:64:32:16:204857.1114.212820011287.3113.6560.114260
Quadro T2000 Max-Q[358]May 27, 2019TU1171035139544.6489.2812505.7142.8570.0892840
Quadro RTX 3000 Mobile[357]May 27, 2019TU106(N19E-Q1-KA-K1)945138042304:144:48:36:28888.32198.764481750GDDR625612.726.3590.198760-80
Quadro RTX 3000 Max-Q[359]May 27, 2019TU106600121577.76175.0416162511.25.5990.17560
Quadro RTX 4000 Mobile[357]May 27, 2019TU104(N19E-Q3-A1)111015602560:160:64:40:32099.84249.68448175015.977.9870.2496110
Quadro RTX 4000 Max-Q[360]May 27, 2019TU104780138088.32220.8416162514.137.0660.220880
Quadro RTX 5000 Mobile[357]May 27, 2019TU104(N19E-Q5-A1)103515303072:192:64:48:38498.88296.616448175018.989.4920.2966110
Quadro RTX 5000 Max-Q[361]May 27, 2019TU104600135086.40259.215.978.2940.259280

RTX Ax000 series

Mobile version of the RTX Ax000 series.

ModelLaunchCode name[239]Fab

(nm)

Bus interfaceCore clock

(MHz)

Boost clock

(MHz)

L2

Cache (MiB)

Core config1FillrateMemoryProcessing power (TFLOPS)Supported API versionTDP

(Watts)

Notes
Pixel

(GP/s)

Texture

(GT/s)

Size

(GiB)

Bandwidth

(GB/s)

Memory clock

(MHz)

Bus typeBus width

(bit)

Half precisionSingle precisionDouble precisionDirect3DOpenGLVulkanOpenCLCUDA
RTX A500 Mobile[321][362]Mar 22, 2022GA107SSamsung 8NPCIe 4.0832153722048:64:32:16:6449.1898.3741121500GDDR6646.2966.2960.0983712.24.61.33.08.660
RTX A1000 Mobile[321][363]Mar 30, 2022GA107630114022048:64:32:16:6436.4872.96422413751284.6694.6690.07296
RTX A1000 Mobile 6 GB[364]Mar 30, 2022GA1076522560:80:32:20:8036.4891.206168965.8375.8370.091295
RTX A2000 Mobile[365]Apr 12, 2021GA1061215168722560:80:48:20:8080.98135.0419215001288.6378.6370.135
RTX A3000 Mobile[366]Apr 12, 2021GA104-A1600123044096:128:64:32:12878.72157.46264137519210.0810.080.157470
RTX A3000 Mobile 12 GB[321][367]Mar 22, 2022GA104-A1855144092.16184.312336175011.811.80.1843115
RTX A4000 Mobile[368]Apr 12, 2021GA104-A11140168045120:160:80:40:160134.4268.88384150025617.217.20.2688140
RTX A4500 Mobile[321][369]Mar 22, 2022GA104-A1930150045888:184:96:46:184144.0276.016512200017.6617.660.276
RTX A5000 Mobile[321][370]Apr 12, 2021GA104-A1900157546144:192:96:48:192151.2302.4448175019.3519.350.3024150
RTX A5500 Mobile[371][321][372]Mar 22, 2022GA103-A1975150047424:232:96:58:232159.85386.30512200022.2722.270.384165

RTX Ada Generation

Mobile version of the RTX Ada Generation

  • 1 CUDA cores: RT cores: Tensor cores
ModelLaunchCode name[239]Fab

(nm)

Bus interfaceCore clock

(MHz)

Boost clock

(MHz)

L2

Cache (MiB)

Core config1FillrateMemoryProcessing power (TFLOPS)Supported API versionTDP

(Watts)

Notes
Pixel

(GP/s)

Texture

(GT/s)

Size

(GiB)

Bandwidth

(GB/s)

Memory clock

(MHz)

Bus typeBus width

(bit)

Half precisionSingle precisionDouble precisionTensorDirect3DOpenGLVulkanOpenCLCUDA
RTX 500 Mobile Ada Generation[373][374]Feb, 2024AD107TSMC 4NPCIe 4.014852025122048:16:6464.8129.641282000GDDR6648.2948.2940.1296147.412.24.61.33.08.935 - 60
RTX 1000 Mobile Ada Generation[373][375]AD10714852025122560:20:8097.2162.061929610.3710.370.162193.035 - 140
RTX 2000 Mobile Ada Generation[376][377]Mar, 2023AD10716352115243072:24:96101.5203.0825612812.9912.990.203231.635 - 140
RTX 3000 Mobile Ada Generation[376][378]AD10613951695324608:36:14481.36244.18 (ECC)25612815.6215.620.2441318.635 - 140
RTX 3500 Mobile Ada Generation[376][379]AD10411101545485120:40:16098.88247.212 (ECC)432225019215.8215.820.2472368.660 - 140
RTX 4000 Mobile Ada Generation[376][380]AD10412901665487424:58:232133.2386.312 (ECC)43219224.7224.720.3863538.060 - 175
RTX 5000 Mobile Ada Generation[376][381]AD10314252115649728:76:304236.9643.016 (ECC)57625641.1541.150.643681.860 - 175

Mobility Quadro NVS series

ModelLaunchCode nameFab (nm)Bus interfaceCore clock (MHz)Shader clock (MHz)Memory clock (MHz)Core config12FillrateMemoryProcessing power (GFLOPS)Supported API versionTDP (Watts)Notes
Pixel (GP/s)Texture (GT/s)Size (MiB)Bandwidth (GB/s)Bus typeBus width (bit)Single precisionDirect3DOpenGL
Quadro NVS 110MJun 1, 2006G72M90PCIe 1.0 x163003006003:4:4:20.61.2Up to 5124.8DDR649.0c2.110
Quadro NVS 120MJun 1, 2006G72GLM4504507000.91.85.6DDR29.0c2.1
Quadro NVS 130MMay 9, 2007G86M80PCIe 2.0 x16400?800?8:4:41.6?1.6?Up to 2566.4?19.210.03.3
Quadro NVS 135MMay 9, 2007400800118816:8:41.63.29.504GDDR338.4
Quadro NVS 140MMay 9, 2007120016:8:4Up to 5129.638.4
Quadro NVS 150MAug 15, 2008G98M65530130014008:4:42.122.12Up to 25611.231.2
Quadro NVS 160MAug 15, 200858014508:8:44.2425634.812
Quadro NVS 300MMay 24, 2006G72GLM90PCIe 1.0 x1645045010003:4:4:20.91.8Up to 5128DDR29.0c2.116
Quadro NVS 320MJun 9, 2007G84M65PCIe 2.0 x165751150140032:16:84.69.222.4GDDR3128110.410.03.320
Quadro NVS 510MAug 21, 2006G72GLM90PCIe 1.0 x1650050012008:24:24:16812Up to 102438.42569.0c2.145?based on Go 7900 GTX

Mobility NVS series

ModelLaunchCode nameFab (nm)Bus interfaceCore clock (MHz)Shader clock (MHz)Memory clock (MHz)Core config1FillrateMemoryProcessing power (GFLOPS)Supported API versionTDP (Watts)Notes
Pixel (GP/s)Texture (GT/s)Size (MiB)Bandwidth (GB/s)Bus typeBus width (bit)Single precisionDirect3DOpenGL
NVS 2100MJan 7, 2010GT218M40PCIe 2.0 x165351230160016:8:42.144.28Up to 51212.8GDDR36459.0410.13.314
NVS 3100MJan 7, 201060014702.44.870.56based on G210M/310M
NVS 4200MJan 7, 2010GF119810162048:8:43.246.48Up to 1024155.52114.5based on GT 520M
NVS 5100MFeb 22, 2011GT216M550121048:16:84.48.825.6128174.2410.13.335
NVS 5200MJun 1, 2012GF108

GF117[382]

40/286251250180096:16:42.51014.464240114.5
NVS 5400MJun 1, 201266013202.6410.5628.8128253.44

Tegra GPU

Data Center GPUs

GRID

ModelArchi-
tecture
ChipsThread processors
(total)
Bus interfaceMemoryTDP (Watts)
Bus typeSize (GiB)
GRID K1[383]Kepler4x GK1074x 192PCIe 3.0 x16DDR34x 4 GiB130
GRID K2[384]2x GK104-8952x 1536GDDR52x 4 GiB225
GRID K3404x GK1074x 3844x 1 GiB
GRID K5202x GK1042x 15362x 4 GiB
  • Data from GRID GPUS[385]

Tesla

Model Micro-
architecture
LaunchCoreCore clock
(MHz)
ShadersMemoryProcessing power (TFLOPS)[a]CUDA
compute
capability[b]
TDP
(W)
Notes, form factor
CUDA cores
(total)
Base clock (MHz)Max boost
clock (MHz)[c]
Bus typeBus width
(bit)
Size
(GB)
Clock
(MT/s)
Bandwidth
(GB/s)
Half precision
Tensor Core FP32 Accumulate
Single precision
(MAD or FMA)
Double precision
(FMA)
C870 GPU Computing Module[d]TeslaMay 2, 20071× G806001281,350GDDR33841.51,60076.8No0.3456No1.0170.9Internal PCIe GPU (full-height, dual-slot)
D870 Deskside Computer[d]May 2, 20072× G806002561,350GDDR32× 3842× 1.51,6002× 76.8No0.6912No1.0520Deskside or 3U rack-mount external GPUs
S870 GPU Computing Server[d]May 2, 20074× G806005121,350GDDR34× 3844× 1.51,6004× 76.8No1.3824No1.01U rack-mount external GPUs, connect via 2× PCIe (×16)
C1060 GPU Computing Module[e]April 9, 20091× GT2006022401,296[387]GDDR351241,600102.4No0.622080.077761.3187.8Internal PCIe GPU (full-height, dual-slot)
S1070 GPU Computing Server "400 configuration"[e]June 1, 20084× GT2006029601296GDDR34× 5124× 41,538.44× 98.5No2.48830.3111.38001U rack-mount external GPUs, connect via 2× PCIe (×8 or ×16)
S1070 GPU Computing Server "500 configuration"[e]June 1, 20081,440No2,.76480.3456
S1075 GPU Computing Server[e][388]June 1, 20084× GT2006029601,440GDDR34× 5124× 41,538.44× 98.5No2.76480.34561.31U rack-mount external GPUs, connect via 1× PCIe (×8 or ×16)
Quadro Plex 2200 D2 Visual Computing System[f]July 25, 20082× GT200GL6484801,296GDDR32× 5122× 41,6002× 102.4No1.24420.15551.3Deskside or 3U rack-mount external GPUs with 4 dual-link DVI outputs
Quadro Plex 2200 S4 Visual Computing System[f]July 25, 20084× GT200GL6489601,296GDDR34× 5124× 41,6004× 102.4No2.48830.3111.31,2001U rack-mount external GPUs, connect via 2× PCIe (×8 or ×16)
C2050 GPU Computing Module[389]FermiJuly 25, 20111× GF1005754481,150GDDR53843[g]3000144No1.03040.51522.0247Internal PCIe GPU (full-height, dual-slot)
M2050 GPU Computing Module[390]July 25, 20113,092148.4No225
C2070 GPU Computing Module[389]July 25, 20111× GF1005754481,150GDDR53846[g]3,000144No1.03040.51522.0247Internal PCIe GPU (full-height, dual-slot)
C2075 GPU Computing Module[391]July 25, 20113,000144No225
M2070/M2070Q GPU Computing Module[392]July 25, 20113,132150.336No225
M2090 GPU Computing Module[393]July 25, 20111× GF1106505121,300GDDR53846[g]3700177.6No1.33120.66562.0225Internal PCIe GPU (full-height, dual-slot)
S2050 GPU Computing ServerJuly 25, 20114× GF10057517921150GDDR54× 3844× 3[g]34× 148.4No4.12162.06082.09001U rack-mount external GPUs, connect via 2× PCIe (×8 or ×16)
S2070 GPU Computing ServerJuly 25, 20114× 6[g]No
K10 GPU accelerator[394]KeplerMay 1, 20122× GK1043,072745?GDDR52× 2562× 45,0002× 160No4.5770.19073.0225Internal PCIe GPU (full-height, dual-slot)
K20 GPU accelerator[395][396]November 12, 20121× GK1102,496706758GDDR532055,200208No3.5241.1753.5225Internal PCIe GPU (full-height, dual-slot)
K20X GPU accelerator[397]November 12, 20121× GK1102,688732?GDDR538465,200250No3.9351.3123.5235Internal PCIe GPU (full-height, dual-slot)
K40 GPU accelerator[398]October 8, 20131× GK110B2,880745875GDDR538412[g]6,000288No4.291–5.0401.430–1.6803.5235Internal PCIe GPU (full-height, dual-slot)
K80 GPU accelerator[399]November 17, 20142× GK2104,992560875GDDR52× 3842× 125,0002× 240No5.591–8.7361.864–2.9123.7300Internal PCIe GPU (full-height, dual-slot)
M4 GPU accelerator[400][401]MaxwellNovember 10, 20151× GM2061,0248721,072GDDR512845,50088No1.786–2.1950.05581–0.068615.250–75Internal PCIe GPU (half-height, single-slot)
M6 GPU accelerator[402]August 30, 20151× GM204-995-A115367221,051GDDR525684,600147.2No2.218–3.2290.0693–0.10095.275–100Internal MXM GPU
M10 GPU accelerator[403]May 18th, 20164× GM1072,5601,033?GDDR54× 1284× 85,1884× 83No5.2890.16535.2225Internal PCIe GPU (full-height, dual-slot)
M40 GPU accelerator[401][404]November 10, 20151× GM2003,0729481,114GDDR538412 or 246,000288No5.825–6.8440.182–0.21395.2250Internal PCIe GPU (full-height, dual-slot)
M60 GPU accelerator[405]August 30, 20152× GM204-895-A14,0968991,178GDDR52× 2562× 85,0002× 160No7.365–9.6500.2301–0.30165.2225–300Internal PCIe GPU (full-height, dual-slot)
P4 GPU accelerator[406]PascalSeptember 13, 20161× GP1042,5608101,063GDDR525686,000192.0No4.147–5.4430.1296–0.17016.150-75PCIe card
P6 GPU accelerator[407][408]March 24, 20171× GP104-995-A12,0481,0121,506GDDR5256163,003192.2No6.1690.19286.190MXM card
P40 GPU accelerator[406]September 13, 20161× GP1023,8401,3031,531GDDR5384247,200345.6No10.007–11.7580.3127–0.36746.1250PCIe card
P100 GPU accelerator (mezzanine)[409][410]April 5, 20161× GP100-890-A13,5841,3281,480HBM24,096161,430732No9.519–10.6094.760–5.3046.0300SXM card
P100 GPU accelerator (16 GB card)[411]June 20, 20161× GP10011261303No8,071‒9,3404,036‒4,670250PCIe card
P100 GPU accelerator (12 GB card)[411]June 20, 20163,07212549No8.071‒9.3404.036‒4.670
V100 GPU accelerator (mezzanine)[412][413][414]VoltaMay 10, 20171× GV100-895-A15120Un­known1,455HBM24,09616 or 321,750900119.19214.8997.4507.0300SXM card
V100 GPU accelerator (PCIe card)[412][413][414]June 21, 20171× GV100Un­known1,370112.22414.0287.014250PCIe card
V100 GPU accelerator (PCIe FHHL card)March 27, 20181× GV1009371,290161,620829.44105.6813.216.605250PCIe FHHL card
T4 GPU accelerator (PCIe card)[415][416]TuringSeptember 12, 20181× TU104-895-A12,5605851,590GDDR6256165,00032064.88.1Un­known7.570PCIe card
A2 GPU accelerator (PCIe card)[417]AmpereNovember 10, 20211× GA1071,2801,4401,770GDDR6128166,25220018.1244.5310.148.640-60PCIe card (half height, single-slot)
A10 GPU accelerator (PCIe card)[418]April 12, 20211× GA102-890-A19,2168851,695GDDR6384246,252600124.9631.240.9768.6150PCIe card (single-slot)
A16 GPU accelerator (PCIe card)[419]April 12, 20214× GA1074× 1,2808851,695GDDR64× 1284× 167,2424× 2004x 18.4324× 4.6081.08488.6250PCIe card (dual-slot)
A30 GPU accelerator (PCIe card)[420]April 12, 20211× GA1003,5849301,440HBM23,072241,215933.1165.1210.325.1618.0165PCIe card (dual-slot)
A40 GPU accelerator (PCIe card)[421]October 5, 20201× GA10210,7521,3051,740GDDR6384487,248695.8149.6837.421.1688.6300PCIe card (dual-slot)
A100 GPU accelerator (PCIe card)[422][423]May 14, 2020[424]1× GA100-883AA-A16,9127651410HBM25,12040 or 801,2151,555312.019.59.78.0250PCIe card (dual-slot)
H100 GPU accelerator (PCIe card)[425]HopperMarch 22, 2022[426]1× GH100[427]14,5921,0651,755 CUDA 1620 TCHBM2E5120801,0002,039756.44951.225.69.0350PCIe card (dual-slot)
H100 GPU accelerator (SXM card)16,8961,0651,980 CUDA 1,830 TCHBM35,120801,5003,352989.4366.933.59.0700SXM card
L40 GPU accelerator[428]Ada LovelaceOctober 13, 20221× AD102[429]18,1767352,490GDDR6384482,250864362.06690.5161.4148.9300PCIe card (dual-slot)
L4 GPU accelerator[430][431]March 21, 2023[432]1x AD104[433]7,4247952,040GDDR6192241,563300121.030.30.498.972HHHL single slot PCIe card

Notes

  1. ^ To calculate the processing power see Tesla (microarchitecture)#Performance, Fermi (microarchitecture)#Performance, Kepler (microarchitecture)#Performance, Maxwell (microarchitecture)#Performance, or Pascal (microarchitecture)#Performance. A number range specifies the minimum and maximum processing power at, respectively, the base clock and maximum boost clock.
  2. ^ Core architecture version according to the CUDA programming guide.
  3. ^ GPU Boost is a default feature that increases the core clock rate while remaining under the card's predetermined power budget. Multiple boost clocks are available, but this table lists the highest clock supported by each card.[386]
  4. ^ a b c Specifications not specified by Nvidia assumed to be based on the GeForce 8800 GTX
  5. ^ a b c d Specifications not specified by Nvidia assumed to be based on the GeForce GTX 280
  6. ^ a b Specifications not specified by Nvidia assumed to be based on the Quadro FX 5800
  7. ^ a b c d e f With ECC on, a portion of the dedicated memory is used for ECC bits, so the available user memory is reduced by 12.5%. (e.g. 4 GB total memory yields 3.5 GB of user available memory.)

Console/Handheld GPUs

ModelLaunchCode nameFab (nm)Bus interfaceCore clock (MHz)Memory clock (MHz)Core config1,2,3FillrateMemoryProcessing power (GFLOPS)3Deep LearningLatest supported API version
MOperations/sMTexels/sMPixels/sMTri/sSize (MiB)Bandwidth (GB/s)Bus typeBus width (bit)Half precisionSingle precisionRay Tracing PerformanceTOPS

(INT8)

Direct3DOpenGLVulkanOther
XGPU (Xbox)
[434][435]
November 15, 2001NV2ATSMC 150 nmIntegrated2332004:2:8:415,8001,864932116.5646.4DDR128-13.9N/AN/A8.11.4N/AN/A
RSX
(PS3)
[436][437]
[438]
November 11, 2006G70Toshiba 90/65/40 nm/28 nmFlexIO550 (Pixel Shaders), 500 (Vertex Shaders)65024:8:24:8113,20012,0004,400275256
256
15 (write)
20 (read)
20.8
XDR
GDDR3
-325.6 (w/Cell SPUs)N/AN/AN/AES 1.1 w/Cg
NX-SoC (Nintendo Switch)
[439][440]
March 3, 2017GM20BTSMC 20 nmIntegrated76.8
307.2
384.0
460.8 (Undocked)
768.0
921.6
1267.2 (Docked)
1333 (Undocked)
1600 (Docked)
256:16:16239,321
157,286
196,608
235,929
393,216
471,859
648,806
1,228
4,915
6,144
7,372
12,288
14,745
20,275
1,228
4,915
6,144
7,372
12,288
14,745
20,275
probably ~500/1000409621.3 (Undocked) 25.6
(Docked)
LPDDR46478.6
314.5
393.2
471.8
786.4
943.7
1297.6
39.3
157.2
196.6
235.9
393.2
471.8
648.8
N/AN/A4.6[441]
ES 3.2[442]
1.2[443]Nvidia NVN

[444]

August 30, 2019TSMC 16 nmLPDDR4XN/AN/A

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  • OpenGL 2.0 support on Nvidia GPUs (PDF document)
  • Release Notes for Nvidia OpenGL Shading Language Support (PDF document)
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