NVIDIA logo
Buy on Amazon logo
$999
New
VS
AMD logo

Aggregate performance score

We've compared GeForce RTX 3080 Ti and Radeon Pro 5700, covering specs and all relevant benchmarks.

GeForce RTX 3080 Ti +135%
45
12GB , 350W
Radeon Pro 5700
19
8GB , 130W

GeForce RTX 3080 Ti outperforms Radeon Pro 5700 by a significant 135% based on our aggregate benchmark results.

Summary

We compared two graphics cards: the GeForce RTX 3080 Ti with 12GB VRAM (Ampere architecture), against the Radeon Pro 5700 with 8GB VRAM (RDNA 3 architecture). Both graphics cards offer competitive value for their respective price points. The Radeon Pro 5700 is more power-efficient, consuming 130W compared to 350W. On this page, you will find detailed benchmark comparisons, technical specifications, value score analysis, and key differences to help you choose the right graphics card for your needs and budget.

Key Differences

An overview of the main advantages of each graphics card

Reasons to consider the GeForce RTX 3080 Ti

135% higher 3DMark score (19,592 versus 8,330)
50% more VRAM: 12GB versus 8GB
DLSS support with broader game compatibility and better performance scaling

Reasons to consider the Radeon Pro 5700

63% lower power consumption (130W versus 350W)

Benchmarks

Performance comparison across 1 common benchmarks

3DMark synthetic

GeForce RTX 3080 Ti
+135%
19,592
Radeon Pro 5700
8,330

Technical Specifications

Side-by-side hardware comparison

Specification GeForce RTX 3080 Ti Radeon Pro 5700
Architecture Ampere RDNA 3
VRAM Size 12 GB 8 GB
TDP 350W 130W
Current Price $999
New • Amazon
N/A

Conclusion

But if raw gaming performance and future-proofing are more important – go for the GeForce RTX 3080 Ti. For energy efficiency and lower power consumption, the Radeon Pro 5700 is the better choice. If you plan to game at higher resolutions or use VRAM-intensive applications, the GeForce RTX 3080 Ti with 12GB VRAM provides more headroom. Both graphics cards have their strengths, so choose based on your specific gaming needs, budget constraints, and performance requirements.