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Radeon vega vad är det

Radeon RX Vega series

Series of GPUs bygd AMD

This article fryst vatten about the GPU architecture bygd AMD. For the GPU architecture bygd Vivante, see Vivante Corporation.

The Radeon RX Vega series fryst vatten a series of graphics processors developed bygd AMD. These GPUs use the Graphics Core Next (GCN) 5th generation architecture, codenamed Vega, and are manufactured on 14 nmFinFET technology, developed bygd Samsung Electronics and licensed to GlobalFoundries.[5] The series consists of desktop graphics kort and APUs aimed at desktops, mobile devices, and embedded applications.

The lineup was released on 14 August 2017. It included the RX Vega 56 and the RX Vega 64, priced at $399 and $499 respectively.[6] These were followed bygd two mobile APUs, the Ryzen 2500U and Ryzen 2700U, in October 2017.[7] February 2018 saw the release of two desktop APUs, the Ryzen 3 2200G and the Ryzen 5 2400G, and the Ryzen Embedded V1000 line of APUs.[8][9] In September 2018 AMD announced several Vega APUs in their Athlon line of products.[10] Later in January 2019, the Radeon VII was announced based on the 7nm FinFET node manufactured bygd TSMC.[11][12]

History

[edit]

The Vega microarchitecture was AMD's high-end graphics kort line,[13] and fryst vatten the successor to the R9 300 series enthusiast Fury products. Partial specifications of the architecture and Vega 10 GPU were announced with the Radeon Instinct MI25 in månad 2016.[14] AMD later released the details of the Vega architecture.

Announcement

[edit]

Vega was originally announced at AMD's CES 2017 föredrag on 5 January 2017,[15] alongside the Zen line of CPUs.[16]

New features

[edit]

Main article: Graphics Core Next § fifth

Vega targets increased instructions per clock, higher clock speeds, and support for HBM2.[17][18][19]

AMD's Vega has new memory hierarchy with high-bandwidth cache and its controller.[citation needed]

Support for HBM2 featuring double the bandwidth-per-pin over previous generation HBM. HBM2 allows for higher capacities with less than half the footprint of GDDR5 memory. Vega architecture fryst vatten optimized for streaming very large datasets and can work with a variety of memory types with up to 512TB of virtual address space.[citation needed]

Primitive shader for improved geometry processing. Replaces vertex and geometry shaders in geometry processing pipelines with a more programmable single scen. The primitive shader scen fryst vatten more efficient, introduces smart eller klok load balancing technologies and higher throughput.[20]

NCU: The Vega GPU introduces the Next-Gen Compute enhet. Versatile architecture featuring flexible compute units that can natively process 8-bit, 16-bit, 32-bit or 64-bit operations in each clock cycle. And run at higher frequencies. Vega brings support for Rapid packad Math, processing two half-precision (16-bit) in the same time as a single 32-bit floating-point operation. Up to 128 32-bit, 256 16-bit or 512 8-bit ops per clock are possible with the Vega architecture.[20]

Draw Stream Binning Rasterizer designed for higher performance and power efficiency. It allows for "fetch once, shade once" of pixels through the use of a smart on-chip insekter som pollinerar cache and early culling of pixels invisible in a sista scene.[citation needed]

Vega bumps Direct3D feature level support from 12_0 to 12_1.[citation needed]

Vega's rasteriser brings hardware-acceleration support for Rasterizer Ordered Views and Conservative Rasterisation Tier 3.[21]

Products

[edit]

RX Vega branded discrete graphics

[edit]

Model
(Code name)
Release Date
& Price
Architecture
& fab
Transistors
& die storlek
Core Fillrate[a][b][c]Processing power[a][d]
(GFLOPS)
Memory TBPBus
interface
Config[e]Clock[a]
(MHz)
Texture
(GT/s)
Pixel
(GP/s)
HalfSingleDoubleSize
(GB)
Bandwidth
(GB/s)
Bus type
& width
Clock
(MT/s)
Radeon RX Vega 56
(Vega 10)[22][23][24]
Aug 28, 2017
$399 USD
GCN 5
GloFo
14LPP[f][25][26]
12.5×109
486 mm2
3584:224:64
56 CU
1156
1471
258.9
329.5
73.98
94.14
16,572
21,088
8,286
10,544
517.9
659.0
8 409.6 HBM2
2048-bit
1600 210 W PCIe 3.0
×16
Radeon RX Vega 64
(Vega 10)[27][23][24]
Aug 14, 2017
$499 USD
4096:256:64
64 CU
1247
1546
319.2
395.8
79.81
98.94
20,431
25,330
10,215
12,665
638.5
791.6
483.8 1890 295 W
Radeon RX Vega 64 Liquid
(Vega 10)[27][23][24]
Aug 14, 2017
$699 USD
1406
1677
359.9
429.3
89.98
107.3
23,036
27,476
11,518
13,738
719.9
858.6
345 W

Radeon VII branded discrete graphics

[edit]

  1. ^ abcBoost values (if available) are stated below the base value in italic.
  2. ^Texture fillrate fryst vatten calculated as the number of Texture Mapping Units multiplied bygd the base (or boost) core clock speed.
  3. ^Pixel fillrate fryst vatten calculated as the number of Render Output Units multiplied bygd the base (or boost) core clock speed.
  4. ^Precision performance fryst vatten calculated from the base (or boost) core clock speed based on a FMA operation.
  5. ^Unified shaders : Texture mapping units : Render output units and Compute units (CU)

Workstation GPUs

[edit]

  1. ^ abcBoost values (if available) are stated below the base value in italic.
  2. ^Texture fillrate fryst vatten calculated as the number of Texture Mapping Units multiplied bygd the base (or boost) core clock speed.
  3. ^Pixel fillrate fryst vatten calculated as the number of Render Output Units multiplied bygd the base (or boost) core clock speed.
  4. ^Precision performance fryst vatten calculated from the base (or boost) core clock speed based on a FMA operation.
  5. ^Unified shaders : Texture mapping units : Render output units and Compute units (CU)
  1. ^ abcBoost values (if available) are stated below the base value in italic.
  2. ^Texture fillrate fryst vatten calculated as the number of Texture Mapping Units multiplied bygd the base (or boost) core clock speed.
  3. ^Pixel fillrate fryst vatten calculated as the number of Render Output Units multiplied bygd the base (or boost) core clock speed.
  4. ^Precision performance fryst vatten calculated from the base (or boost) core clock speed based on a FMA operation.
  5. ^Unified shaders : Texture mapping units : Render output units and Compute units (CU)

Mobile en arbetsstationofta relaterad till datorer eller kontor GPUs

[edit]

Model
(Code name)
Release
date
Architecture
& fab
Transistors
& die storlek
Core Fillrate[a][b][c]Processing power[a][d]
(GFLOPS)
Memory TDPBus
interface
Config[e]Clock[a]
(MHz)
Texture
(GT/s)
Pixel
(GP/s)
HalfSingleDoubleSize
(GB)
Bandwidth
(GB/s)
Bus type
& width
Clock
(MT/s)
Radeon Pro Vega 16
(Vega 12)[43][44][45]
Nov 14, 2018GCN 5
GloFo 14 nm
? 1024:64:32
16 CU
815
1190
52.16
76.16
26.08
38.08
3,338
4,874
1,669
2,437
104.3
152.3
4 307.2 HBM2
1024-bit
2400 50 W PCIe 3.0
×16
Radeon Pro Vega 20
(Vega 12)[43][44][46]
1280:80:32
20 CU
815
1283
65.20
102.6
26.08
41.06
4,173
6,569
2,086
3,285
130.4
205.3
189.4 1480 50 W
Radeon Pro Vega 48
(Vega 10)[47][48]
Mar 19, 201912.5×109
495 mm2
3072:192:64
48 CU

1200

230.4

76.80

14,746

7,373

460.8
8 402.4 HBM2
2048-bit
1572 ?
Radeon Pro Vega 56
(Vega 10)[49][50][51]
Aug 17, 20173584:224:64
56 CU
1138
1250
254.9
280.0
72.83
80.00
16,314
17,920
8,157
8,960
509.8
560.0
120 W
Radeon Pro Vega 64
(Vega 10)[49][50][52]
Jun 17, 20174096:256:64
64 CU
1250
1350
320.0
345.6
80.00
86.40
20,480
22,118
10,240
11,059
640.0
691.2
16 ?
Radeon Pro Vega 64X
(Vega 10)[49][53]
Mar 19, 20194096:256:64
64 CU
1250
1468
320.0
375.8
80.00
93.95
20,480
24,051
10,240
12,026
640.0
751.6
512.0 2000
  1. ^ abcBoost values (if available) are stated below the base value in italic.
  2. ^Texture fillrate fryst vatten calculated as the number of Texture Mapping Units multiplied bygd the base (or boost) core clock speed.
  3. ^Pixel fillrate fryst vatten calculated as the number of Render Output Units multiplied bygd the base (or boost) core clock speed.
  4. ^Precision performance fryst vatten calculated from the base (or boost) core clock speed based on a FMA operation.
  5. ^Unified shaders : Texture mapping units : Render output units and Compute units (CU)

Desktop APUs

[edit]

Raven Ridge (2018)

[edit]

Common features of Zen based Raven Ridge desktop APUs:

Model CPU GPU TDPRelease
date
Release
price
Cores
(threads)
Clock rate (GHz) L3 cache
(total)
Model Config[i]Clock
(MHz)
Processing
power
(GFLOPS)[ii]
Athlon 200GE2 (4) 3.2 4 MB Vega 3 192:12:4
3 CU
1000 384 35 W Sep 6, 2018US $55[54]
Athlon Pro 200GEOEM
Athlon 220GE3.4 Dec 21, 2018US $65[55]
Athlon 240GE3.5 US $75[55]
Athlon 300GE3.4 1100 424.4 Jul 7, 2019OEM
Athlon Pro 300GESep 30, 2019
Athlon 320GE3.5 Jul 7, 2019
Athlon 3000GNov 19, 2019US $49[56]
Athlon Silver 3050GE3.4 Jul 21, 2020OEM
Ryzen 3 Pro 2100GE[57]3.2 1000 384 2019
Ryzen 3 2200GE4 (4) 3.6 Vega 8 512:32:16
8 CU
1100 1126 Apr 19, 2018
Ryzen 3 Pro 2200GEMay 10, 2018
Ryzen 3 2200G3.5 3.7 65 W Feb 12, 2018US $99[58]
Ryzen 3 Pro 2200GMay 10, 2018OEM
Ryzen 5 2400GE4 (8) 3.2 3.8 RX Vega 11 704:44:16
11 CU
1250 1760 35 W Apr 19, 2018
Ryzen 5 Pro 2400GEVega 11 May 10, 2018
Ryzen 5 2400G3.6 3.9 RX Vega 11 65 W Feb 12, 2018US $169[58]
Ryzen 5 Pro 2400GVega 11 May 10, 2018OEM

Picasso (2019)

[edit]

Common features of Zen+ based desktop APUs:

  • Socket: AM4.
  • All the CPUs support DDR4-2933 in dual-channel mode, while Athlon Pro 300GE and Athlon Silver Pro 3125GE support only DDR4-2666.
  • L1 cache: 96 KB (32 KB information + 64 KB instruction) per core.
  • L2 cache: 512 KB per core.
  • All the CPUs support 16 PCIe 3.0 lanes.
  • Includes integrated GCN 5th generation GPU.
  • Fabrication process: GlobalFoundries12LP.
Model CPUGPUTDPRelease
date
Release
price
Cores
(threads)
Clock rate (GHz) L3 cache
(total)
Model[i]Config[ii]Clock
(MHz)
Processing
power
(GFLOPS)[iii]
Athlon Pro 300GE2 (4) 3.4 4 MB Vega 3 192:12:4
3 CU
1100 424.4 35 W Sep 30, 2019OEM
Athlon Silver Pro 3125GERadeon
Graphics
Jul 21, 2020
Athlon Gold 3150GE4 (4) 3.3 3.8
Athlon Gold Pro 3150GE
Athlon Gold 3150G3.5 3.9 65 W
Athlon Gold Pro 3150G
Ryzen 3 3200GE3.3 3.8 Vega 8 512:32:16
8 CU
1200 1228.8 35 W Jul 7, 2019
Ryzen 3 Pro 3200GESep 30, 2019
Ryzen 3 3200G3.6 4.0 1250 1280 65 W Jul 7, 2019US $99[62]
Ryzen 3 Pro 3200GSep 30, 2019OEM
Ryzen 5 Pro 3350GE3.3 3.9 Radeon
Graphics
640:40:16
10 CU
1200 1536 35 W Jul 21, 2020
Ryzen 5 Pro 3350G4 (8) 3.6 4.0 1300 1830.4 65 W
Ryzen 5 3400GE3.3 Vega 11 704:44:16
11 CU
35 W Jul 7, 2019
Ryzen 5 Pro 3400GESep 30, 2019
Ryzen 5 3400G3.7 4.2 RX Vega 11 1400 1971.2 65 W Jul 7, 2019US $149[62]
Ryzen 5 Pro 3400GVega 11 Sep 30, 2019OEM

Renoir (2020)

[edit]

Common features of Ryzen 4000 desktop APUs:

  • Socket: AM4.
  • All the CPUs support DDR4-3200 in dual-channel mode.
  • L1 cache: 64 KB (32 KB information + 32 KB instruction) per core.
  • L2 cache: 512 KB per core.
  • All the CPUs support 24 PCIe 3.0 lanes. 4 of the lanes are reserved as link to the chipset.
  • Includes integrated GCN 5th generation GPU.
  • Fabrication process: TSMC7FF.

Cezanne (2021)

[edit]

Common features of Ryzen 5000 desktop APUs:

  • Socket: AM4.
  • All the CPUs support DDR4-3200 in dual-channel mode.
  • L1 cache: 64 KB (32 KB information + 32 KB instruction) per core.
  • L2 cache: 512 KB per core.
  • All the CPUs support 24 PCIe 3.0 lanes. 4 of the lanes are reserved as link to the chipset.
  • Includes integrated GCN 5th generation GPU.
  • Fabrication process: TSMC7FF.
Branding and model CPUGPU[a]Thermal
solution
TDPRelease
date
MSRP
Cores
(threads)
Clock rate (GHz) L3 cache
(total)
Core
config[i]
Clock
(MHz)
Config[ii]Processing
power[iii]
(GFLOPS)
Ryzen 7 5700G[b]8 (16) 3.8 4.6 16 MB 1 × 8 2000 512:32:8
8 CU
2048 Wraith Stealth65 W Apr 13, 2021 (OEM),
Aug 5, 2021 (retail)
US $359
5700GE[b]3.2 35 W Apr 13, 2021 OEM
Ryzen 5 5600GT6 (12) 3.6 1 × 6 1900 448:28:8
7 CU
1702.4 65 W Jan 31, 2024[71]US $140
5600G[b]3.9 4.4 Apr 13, 2021 (OEM),
Aug 5, 2021 (retail)
US $259
5600GE[b]3.4 35 W Apr 13, 2021 OEM
5500GT3.6 65 W Jan 31, 2024[71]US $125
Ryzen 3 5300G[b]4 (8) 4.0 4.2 8 MB 1 × 4 1700 384:24:8
6 CU
1305.6 OEM Apr 13, 2021 OEM
5300GE[b]3.6 35 W

Mobile APUs

[edit]

Raven Ridge (2017)

[edit]

Model Release
date
FabCPU GPU SocketPCIe
lanes
Memory
support
TDP
Cores
(threads)
Clock rate (GHz) CacheModel Config[i]Clock
(MHz)
Processing
power
(GFLOPS)[ii]
L1L2L3
Athlon Pro 200U2019 GloFo
14LP
2 (4) 2.3 3.2 64 KB inst.
32 KB data
per core
512 KB
per core
4 MB Radeon Vega 3 192:12:4
3 CU
1000 384 FP5 12 (8+4) DDR4-2400
dual-channel
12–25 W
Athlon 300UJan 6, 2019 2.4 3.3
Ryzen 3 2200UJan 8, 2018 2.5 3.4 1100 422.4
Ryzen 3 3200UJan 6, 2019 2.6 3.5 1200 460.8
Ryzen 3 2300UJan 8, 2018 4 (4) 2.0 3.4 Radeon Vega 6 384:24:8
6 CU
1100 844.8
Ryzen 3 Pro 2300UMay 15, 2018
Ryzen 5 2500UOct 26, 2017 4 (8) 3.6 Radeon Vega 8 512:32:16
8 CU
1126.4
Ryzen 5 Pro 2500UMay 15, 2018
Ryzen 5 2600HSep 10, 2018 3.2 DDR4-3200
dual-channel
35–54 W
Ryzen 7 2700UOct 26, 2017 2.2 3.8 Radeon RX Vega 10 640:40:16
10 CU
1300 1664 DDR4-2400
dual-channel
12–25 W
Ryzen 7 Pro 2700UMay 15, 2018 Radeon Vega 10
Ryzen 7 2800HSep 10, 2018 3.3 Radeon RX Vega 11 704:44:16
11 CU
1830.4 DDR4-3200
dual-channel
35–54 W

Picasso (2019)

[edit]

Common features of Ryzen 3000 notebook APUs:

Dalí (2020)

[edit]

Renoir (2020)

[edit]

Common features of Ryzen 4000 notebook APUs:

  • Socket: FP6.
  • All the CPUs support DDR4-3200 or LPDDR4-4266 in dual-channel mode.
  • L1 cache: 64 KB (32 KB information + 32 KB instruction) per core.
  • L2 cache: 512 KB per core.
  • All the CPUs support 16 PCIe 3.0 lanes.
  • Includes integrated GCN 5th generation GPU.
  • Fabrication process: TSMC7FF.

Lucienne (2021)

[edit]

Common features of Ryzen 5000 notebook APUs:

  • Socket: FP6.
  • All the CPUs support DDR4-3200 or LPDDR4-4266 in dual-channel mode.
  • L1 cache: 64 KB (32 KB uppgifter + 32 KB instruction) per core.
  • L2 cache: 512 KB per core.
  • All the CPUs support 16 PCIe 3.0 lanes.
  • Includes integrated GCN 5th generation GPU.
  • Fabrication process: TSMC7FF.