Tom Clancy's Rainbow Six Siege X

Tom Clancy's Rainbow Six Siege X

AVERAGE FPS
95
good

This combination provides smooth gameplay with an average of 95 FPS, suitable for most gaming scenarios.

Performance Analysis

When running Tom Clancy's Rainbow Six Siege X, the Intel Core i5-12400 alongside AMD Radeon RX 580 provides competent performance in Tom Clancy's Rainbow Six Siege X. 4K gaming is possible at 51 FPS, though lowering some settings may improve fluidity. 1440p performance is excellent at 94 FPS, ideal for high-refresh gaming. 1080p gaming excels with 141 FPS, perfect for competitive play. The Intel Core i5-12400 brings 6 cores, 12 threads, 4.4 GHz boost to handle game logic and physics. Meanwhile, the AMD Radeon RX 580 with 8 GB VRAM, 1340 MHz boost clock handles rendering duties. Ultra settings are fully playable, delivering 66 FPS without compromise.

4K Ultra HD 51 FPS
1440p QHD 94 FPS
1080p Full HD 141 FPS

Hardware Specifications

Intel Core i5-12400

Cores / Threads 6 / 12
Base Clock 2500 MHz
Boost Clock 4400 MHz
TDP 65W
Socket Intel Socket 1700
View Full CPU Details →

AMD Radeon RX 580

VRAM 8 GB GDDR5
Base Clock
Boost Clock 1340 MHz MHz
TDP 185 WW
View Full GPU Details →

FPS Benchmarks by Resolution & Settings

Performance data for Intel Core i5-12400 + AMD Radeon RX 580 in Tom Clancy's Rainbow Six Siege X

Resolution Settings Avg FPS
3840x2160 Low 67.9
3840x2160 Medium 56.0
3840x2160 High 45.2
3840x2160 Ultra 34.9
2560x1440 Low 121.9
2560x1440 Medium 100.9
2560x1440 High 88.6
2560x1440 Ultra 64.8
1920x1080 Low 181.2
1920x1080 Medium 155.1
1920x1080 High 130.2
1920x1080 Ultra 98.0

Tom Clancy's Rainbow Six Siege X with ii5-12400 + Other GPUs

See how Tom Clancy's Rainbow Six Siege X performs with the same CPU but different graphics cards.

Tom Clancy's Rainbow Six Siege X with RX 580 + Other CPUs

See how Tom Clancy's Rainbow Six Siege X performs with the same GPU but different processors.

Other Games with ii5-12400 + RX 580

Explore FPS benchmarks for other games using this same hardware combination.