NVIDIA Quadro RTX 5000 Laptop vs Radeon Pro Vega 56

NVIDIA Quadro RTX 5000 Laptop
Radeon Pro Vega 56
3072 Shaders
16GB GDDR6
1380MHz
3584 Shaders
8GB HBM2
1250MHz
Peak AI Performance
271.32 TOPS
INT4 Tensor
Peak AI Performance
17.92 TFLOPS
FP16
FP32
8.48 TFLOPS
FP32
8.96 TFLOPS
FP16
16.96 TFLOPS
FP16
17.92 TFLOPS
Form Factor
Soldered
Form Factor
Soldered
TDP
110W
TDP
120W

Peak AI Performance

  • 15.14x faster vs Radeon Pro Vega 56
  • 93% slower vs Quadro RTX 5000 Laptop
Quadro RTX 5000 Laptop - 271.32 TOPS INT4 Tensor
x15.14
Radeon Pro Vega 56 - 17.92 TFLOPS FP16
x1

FP32

  • 5% slower vs Radeon Pro Vega 56
  • 6% faster vs Quadro RTX 5000 Laptop
Quadro RTX 5000 Laptop - 8.48 TFLOPS FP32
x1
Radeon Pro Vega 56 - 8.96 TFLOPS FP32
x1.06

FP16

  • 5% slower vs Radeon Pro Vega 56
  • 6% faster vs Quadro RTX 5000 Laptop
Quadro RTX 5000 Laptop - 16.96 TFLOPS FP16
x1
Radeon Pro Vega 56 - 17.92 TFLOPS FP16
x1.06
  • 11% faster vs Radeon Pro Vega 56
  • 10% slower vs Quadro RTX 5000 Laptop
Quadro RTX 5000 Laptop - 448GB/s
x1.11
Radeon Pro Vega 56 - 402.4GB/s
x1
  • 8% lower vs Radeon Pro Vega 56
  • 9% higher vs Quadro RTX 5000 Laptop
Quadro RTX 5000 Laptop - 110W
x1
Radeon Pro Vega 56 - 120W
x1.09
GB6 OpenCL N/A
0%
GB6 Metal N/A
0%
Manufacturer
NVIDIA
Manufacturer
Apple
Chip Designer
NVIDIA
Chip Designer
AMD
Architecture
Turing
Architecture
GCN 5
Family
Quadro RTX
Family
Radeon Pro Vega
Codename
NV164
TU104
Variant
N19E-Q5-A1
Codename
Greenland
Vega 10
Variant
Vega 10 XLA
Market Segment
Laptop
Market Segment
Laptop
Release Date
5/27/2019
Release Date
8/17/2017
Foundry
TSMC
Foundry
GlobalFoundries
Fabrication Node
12FFN
Fabrication Node
14LPP
Die Size
545 mm²
Die Size
486 mm²
Transistor Count
13.6 Billion
Transistor Count
12.5 Billion
Transistor Density
24.95M/mm²
Transistor Density
25.72M/mm²
Form
Soldered
Form
Soldered
Shading Units
3072 Shaders
Shading Units
3584 Shaders
Texture Mapping Units
192 TMUs
Texture Mapping Units
224 TMUs
Render Output Units
64 ROPs
Render Output Units
64 ROPs
Tensor Cores
384 T-Cores
-
-
Ray-Tracing Cores
48 RT-Cores
-
-
Streaming Multiprocessors
48 SMs
-
-
-
-
Compute Units
56 CUs
780MHz Base
1380MHz
1138MHz Base
1250MHz
Peak AI Performance
271.32 TOPS
INT4 Tensor
Peak AI Performance
17.92 TFLOPS
FP16
FP16
16.96 TFLOPS
67.83 TFLOPS Tensor (FP16 Accumulate)
67.83 TFLOPS Tensor (FP32 Accumulate)
FP16
17.92 TFLOPS
-
-
FP32
8.48 TFLOPS
FP32
8.96 TFLOPS
FP64
270 GFLOPS
FP64
560 GFLOPS
INT4
271.32 TOPS Tensor
-
-
INT8
135.66 TOPS Tensor
-
-
Ray Tracing
25.6 TOPS
-
-
Pixel Fillrate
88.32 GPixel/s
Pixel Fillrate
80 GPixel/s
Texture Fillrate
264.96 GTexel/s
Texture Fillrate
280 GTexel/s
L1
32KB/SM Tex
64KB/SM
-
L1
-
-
16KB/CU
L2
4MB Shared
L2
4MB Shared
16GB
GDDR6
8GB
HBM2
Bus Width
256Bit
Bus Width
2048Bit
Clock
1750MHz
Transfer Rate
14GT/s
Bandwidth
448GB/s
Clock
786MHz
Transfer Rate
1.6GT/s
Bandwidth
402.4GB/s
TDP
110W
TDP
120W
Max Resolution
7680x4320
Max Resolution
7680x4320
Max Resolution Refresh Rate
120Hz
Max Resolution Refresh Rate
60Hz
Variable Refresh Rate
G-Sync
FreeSync
Variable Refresh Rate
-
FreeSync
Display Stream Compression (DSC)
Supported
Display Stream Compression (DSC)
Not Supported
Multi Monitor Support
4
Multi Monitor Support
3
Content Protection
HDCP 2.2
Content Protection
HDCP 2.2
Model
NVENC 7
Model
VCE 4.0
Codec
AVC (H.264)
HEVC (H.265)
Codec
AVC (H.264)
HEVC (H.265)
Model
NVDEC 4
Model
UVD 7.0
Codec
MPEG-1
MPEG-2
MPEG-4
-
VC-1
VP8
VP9
AVC (H.264)
HEVC (H.265)
Codec
MPEG-1
MPEG-2
MPEG-4
JPEG
VC-1
-
-
AVC (H.264)
HEVC (H.265)
Direct X
12
Direct 3D
12_2
Direct X
12
Direct 3D
12_1
OpenGL
4.6
OpenCL
3.0
Vulkan
1.2
OpenGL
4.6
OpenCL
2.1
Vulkan
1.3
Shader Model
6.6
CUDA
7.5
-
-
PureVideo HD
VP10
VDPAU
Feature Set J
Shader Model
6.7
-
-
GFX
9
-
-
-
-
Not a Card
Not a Card
PCIe Version
3.0
PCIe Lanes
16
PCIe Version
3.0
PCIe Lanes
16
Change Comparison