Home GPU Comparison NVIDIA GRID K500 vs NVIDIA Quadro RTX 4000

NVIDIA GRID K500 vs NVIDIA Quadro RTX 4000

We compared two Professional market GPUs: 4GB VRAM GRID K500 and 8GB VRAM Quadro RTX 4000 to see which GPU has better performance in key specifications, benchmark tests, power consumption, etc.

Main Differences

NVIDIA Quadro RTX 4000 's Advantages
Released 4 years and 4 months late
Boost Clock1545MHz
More VRAM (8GB vs 4GB)
Larger VRAM bandwidth (416.0GB/s vs 160.0GB/s)
768 additional rendering cores
Lower TDP (160W vs 225W)

Score

Benchmark

FP32 (float)
GRID K500
2.289 TFLOPS
Quadro RTX 4000 +211%
7.119 TFLOPS
VS

Graphics Card

Jul 2014
Release Date
Nov 2018
GRID
Generation
Quadro
Professional
Type
Professional
PCIe 3.0 x16
Bus Interface
PCIe 3.0 x16

Clock Speeds

-
Base Clock
1005 MHz
-
Boost Clock
1545 MHz
1250 MHz
Memory Clock
1625 MHz

Memory

4GB
Memory Size
8GB
GDDR5
Memory Type
GDDR6
256bit
Memory Bus
256bit
160.0GB/s
Bandwidth
416.0GB/s

Render Config

-
SM Count
36
-
Compute Units
-
1536
Shading Units
2304
128
TMUs
144
32
ROPs
64
-
Tensor Cores
288
-
RT Cores
36
16 KB (per SMX)
L1 Cache
64 KB (per SM)
512 KB
L2 Cache
4 MB

Theoretical Performance

23.84 GPixel/s
Pixel Rate
98.88 GPixel/s
95.36 GTexel/s
Texture Rate
222.5 GTexel/s
-
FP16 (half)
14.24 TFLOPS
2.289 TFLOPS
FP32 (float)
7.119 TFLOPS
95.36 GFLOPS
FP64 (double)
222.5 GFLOPS

Graphics Processor

GK104
GPU Name
TU104
-
GPU Variant
TU104-850-A1
Kepler
Architecture
Turing
TSMC
Foundry
TSMC
28 nm
Process Size
12 nm
3.54 billion
Transistors
13.6 billion
294 mm²
Die Size
545 mm²

Board Design

225W
TDP
160W
550 W
Suggested PSU
450 W
No outputs
Outputs
3x DisplayPort 1.4a 1x USB Type-C
-
Power Connectors
1x 8-pin

Graphics Features

12 (11_0)
DirectX
12 Ultimate (12_2)
4.6
OpenGL
4.6
3.0
OpenCL
3.0
1.1
Vulkan
1.3
3.0
CUDA
7.5
5.1
Shader Model
6.6

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