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GPU Comparison
NVIDIA Quadro RTX 5000 Max Q vs NVIDIA GRID K180Q
NVIDIA Quadro RTX 5000 Max Q vs NVIDIA GRID K180Q
VS
NVIDIA Quadro RTX 5000 Max Q
NVIDIA GRID K180Q
We compared two Professional market GPUs: 16GB VRAM Quadro RTX 5000 Max Q and 1024MB VRAM GRID K180Q to see which GPU has better performance in key specifications, benchmark tests, power consumption, etc.
Main Differences
NVIDIA Quadro RTX 5000 Max Q 's Advantages
Released 5 years and 11 months late
Boost Clock1350MHz
More VRAM (16GB vs 1024GB)
Larger VRAM bandwidth (384.0GB/s vs 28.51GB/s)
2880 additional rendering cores
Lower TDP (80W vs 130W)
Score
Benchmark
FP32 (float)
Quadro RTX 5000 Max Q
+2444%
8.294 TFLOPS
GRID K180Q
0.326 TFLOPS
Quadro RTX 5000 Max Q
VS
GRID K180Q
Graphics Card
May 2019
Release Date
Jun 2013
Quadro Mobile
Generation
GRID
Professional
Type
Professional
PCIe 3.0 x16
Bus Interface
PCIe 3.0 x16
Clock Speeds
600 MHz
Base Clock
-
1350 MHz
Boost Clock
-
1500 MHz
Memory Clock
891 MHz
Memory
16GB
Memory Size
1024MB
GDDR6
Memory Type
DDR3
256bit
Memory Bus
128bit
384.0GB/s
Bandwidth
28.51GB/s
Render Config
-
-
-
48
SM Count
-
3072
Shading Units
192
192
TMUs
16
64
ROPs
16
384
Tensor Cores
-
48
RT Cores
-
64 KB (per SM)
L1 Cache
16 KB (per SMX)
4 MB
L2 Cache
256 KB
-
-
-
Theoretical Performance
86.40 GPixel/s
Pixel Rate
3.400 GPixel/s
259.2 GTexel/s
Texture Rate
13.60 GTexel/s
16.59 TFLOPS
FP16 (half)
-
8.294 TFLOPS
FP32 (float)
326.4 GFLOPS
259.2 GFLOPS
FP64 (double)
13.60 GFLOPS
Board Design
80W
TDP
130W
-
Suggested PSU
300 W
No outputs
Outputs
No outputs
None
Power Connectors
-
Graphics Processor
TU104
GPU Name
GK107
-
-
-
Turing
Architecture
Kepler
TSMC
Foundry
TSMC
12 nm
Process Size
28 nm
13.6 billion
Transistors
1.27 billion
545 mm²
Die Size
118 mm²
Graphics Features
12 Ultimate (12_2)
DirectX
12 (11_0)
4.6
OpenGL
4.6
3.0
OpenCL
3.0
1.3
Vulkan
1.1
7.5
CUDA
3.0
6.6
Shader Model
5.1
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