Intel logo
Buy on Amazon logo
$330
New
VS
AMD logo
Buy on Amazon logo
$136
New

Aggregate performance score

We've compared Arc A770 and Radeon R9 390X, covering specs and all relevant benchmarks.

Arc A770 +218%
31
16GB , 225W
Radeon R9 390X
10
8GB , 275W

Arc A770 outperforms Radeon R9 390X by a significant 218% based on our aggregate benchmark results.

Summary

We compared two graphics cards: the Arc A770 with 16GB VRAM (Xe-HPG architecture), against the Radeon R9 390X with 8GB VRAM. The Arc A770 offers significantly better value for money with a 31% higher value score. The Arc A770 is more power-efficient, consuming 225W compared to 275W. 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 Arc A770

31% better value score (41 versus 31)
218% higher 3DMark score (13,563 versus 4,260)
100% more VRAM: 16GB versus 8GB
18% lower power consumption (225W versus 275W)

Reasons to consider the Radeon R9 390X

$194 lower current price ($136 versus $330)

Value Score Comparison

Price-to-performance value analysis

Arc A770
+31% better value
41
Radeon R9 390X
31

Benchmarks

Performance comparison across 1 common benchmarks

3DMark synthetic

Arc A770
+218%
13,563
Radeon R9 390X
4,260

Technical Specifications

Side-by-side hardware comparison

Specification Arc A770 Radeon R9 390X
Architecture Xe-HPG N/A
VRAM Size 16 GB 8 GB
TDP 225W 275W
Current Price $330
New • Amazon
$136
New • Amazon

Conclusion

But if raw gaming performance and future-proofing are more important – go for the Arc A770. If you plan to game at higher resolutions or use VRAM-intensive applications, the Arc A770 with 16GB VRAM provides more headroom. Budget-conscious buyers will appreciate the Radeon R9 390X's lower 136 price point. Both graphics cards have their strengths, so choose based on your specific gaming needs, budget constraints, and performance requirements.