Fivem

Fivem

AVERAGE FPS
75
good

This combination provides smooth gameplay with an average of 75 FPS, suitable for most gaming scenarios.

Average FPS: resolution vs quality settings

UltraHighMediumLow
4K Ultra HD 26 36 46 57
1440p QHD 50 63 80 99
1080p Full HD 72 98 123 151

Cell color: green is 120+ FPS, teal is 60+, amber is 30+, red is below 30.

Every measured configuration

3840x2160 Low 57
3840x2160 Medium 46
3840x2160 High 36
3840x2160 Ultra 26
2560x1440 Low 99
2560x1440 Medium 80
2560x1440 High 63
2560x1440 Ultra 50
1920x1080 Low 151
1920x1080 Medium 123
1920x1080 High 98
1920x1080 Ultra 72

Fivem with AMD Ryzen 5 7600 + Intel Arc B580, In-Depth Analysis

# FAQ

Q: What is the combo rank of the AMD Ryzen 5 7600 with the Intel Arc B580 in Fivem?

A: This combination ranks 1385th out of 1792 tested combos in the database for Fivem, placing it in the lower-middle portion of the field.

Q: What is the best average FPS achieved at 1080p with this combo?

A: The highest average FPS at 1920x1080 is 151.4 fps, achieved with Low settings. Medium settings deliver 123 fps, High settings produce 98 fps, and Ultra settings yield 72.2 fps.

Q: How does the Intel Arc B580's average benchmark score compare to its nearest rival?

A: The Arc B580 has an average benchmark score of 23021, which is 0.7% lower than the NVIDIA GeForce RTX 4060's score of 23181. It sits 0.1% above the AMD Radeon 760M and 1.3% above the RTX 4060 Mobile.

Q: What is the CPU's percentile ranking among all processors?

A: The AMD Ryzen 5 7600 ranks in the 83rd percentile of all CPUs, with an average benchmark score of 26617. Its closest rival, the Ryzen 7 5800X3D, scores 26574 (0.2% lower).

Q: How much VRAM does the Intel Arc B580 have and what is its memory bandwidth?

A: The GPU features 12 GB of GDDR6 memory on a 192-bit bus, providing 456.0 GB/s of memory bandwidth. Its memory clock runs at 2375 MHz (19 Gbps effective).

Q: What is the difference in FPS between 1080p Low and 4K Ultra settings?

A: At 1920x1080 Low, the combo achieves 151.4 fps average, while at 3840x2160 Ultra it drops to 25.6 fps — a decrease of 125.8 fps, representing roughly 83% lower performance.

# GPU Role

The Intel Arc B580, built on the Xe2-HPG architecture (Battlemage generation), brings 12 GB of GDDR6 memory to Fivem. This capacity is substantial for a multiplayer title that often runs extended sessions with many assets loaded. The memory operates at 2375 MHz with 19 Gbps effective speed, delivering 456.0 GB/s bandwidth across a 192-bit bus — a configuration that prevents memory bottlenecks in most scenarios.

The GPU's clock behavior is notable: both base and boost clocks are locked at 2670 MHz, which simplifies performance prediction. With 2560 shading units, 160 TMUs, and 80 ROPs, the card's raw throughput is 13.67 TFLOPS FP32 and a pixel rate of 213.6 GPixel/s. These specifications suggest the card should handle Fivem's DirectX 12 workloads competently, though the measured results tell a more nuanced story.

In Fivem specifically, the GPU's role shifts dramatically with resolution. At 1080p Low, the Arc B580 achieves 151.4 fps, indicating it is not the limiting factor at lower settings. However, at 4K Ultra, performance collapses to 25.6 fps — a figure that suggests the GPU's 80 ROPs and 13.67 TFLOPS are insufficient for the pixel throughput demanded at that resolution with maximum settings. The 12 GB VRAM is likely not the constraint here; rather, the rendering workload overwhelms the compute units.

The GPU's benchmark context shows it sits in the 66th percentile of all GPUs, with an average score of 23021. Its nearest rival, the RTX 4060, scores only 0.7% higher — statistically a tie. Yet in Fivem, the Arc B580's performance at 4K High (35.9 fps) versus 1080p High (98 fps) reveals a scaling pattern that indicates the GPU becomes the primary bottleneck beyond 1440p.

# How This Combo Ranks

With a rank of 1385 out of 1792 tested combinations, this pairing sits in the 22.7th percentile of all tested combos for Fivem. This is a surprisingly low position given the individual component rankings: the CPU is in the 83rd percentile of all processors, and the GPU is in the 66th percentile of all GPUs.

The discrepancy between component-level rankings and the in-game combo ranking suggests Fivem's multiplayer nature introduces factors beyond raw hardware capability. The game's 2017 release date and its heavy reliance on server-side simulation may create CPU-bound scenarios that the Ryzen 5 7600 handles well, yet the overall combo still underperforms relative to its components' standalone scores.

The data indicates this combo is best suited for 1080p gaming, where it achieves playable framerates across all settings. At 1440p, the combo becomes marginal for Ultra settings (49.6 fps) but remains comfortable at Medium (80 fps). The 4K results are generally below the 60 fps threshold, making this resolution impractical for smooth multiplayer gameplay.

Compared to the nearest rival combos in the database, this pairing's 1385th rank places it well behind top-tier configurations. However, the measured data shows the combo is perfectly capable of delivering smooth 1080p multiplayer experiences, which is the target resolution for most Fivem players.

# Measured FPS Breakdown

The measured FPS data reveals a clear performance hierarchy across resolutions and settings.

1920x1080: Low settings produce 151.4 fps average, which is the highest recorded figure for this combo. Medium settings deliver 123 fps, High settings yield 98 fps, and Ultra settings drop to 72.2 fps. All four settings exceed the 60 fps threshold, making 1080p fully playable at any quality level.

2560x1440: Low settings achieve 99.4 fps, Medium settings produce 80 fps, High settings reach 62.9 fps, and Ultra settings fall to 49.6 fps. The step from High to Ultra represents a 13.3 fps drop (21%), which is the largest relative decrease between adjacent settings at this resolution.

3840x2160: Low settings deliver 56.6 fps, Medium settings produce 46.2 fps, High settings yield 35.9 fps, and Ultra settings drop to 25.6 fps. Only Low settings approach the 60 fps target, and the gap between Low and Ultra is 31 fps — a 55% reduction in performance.

The scaling from 1080p Low to 4K Low shows a 94.8 fps drop (from 151.4 to 56.6 fps), while the same settings comparison at Ultra shows a 46.6 fps drop (from 72.2 to 25.6 fps). This non-linear scaling indicates that the GPU becomes progressively more saturated as resolution increases, with diminishing returns from lower settings at higher resolutions.

# Settings Recommendations

For players targeting 60 fps as the minimum acceptable framerate, the data clearly points to 1080p as the optimal resolution. At 1080p, even Ultra settings (72.2 fps) exceed the 60 fps target, while Medium settings (123 fps) provide a substantial headroom for multiplayer framerate fluctuations.

At 1440p, the recommendation becomes more nuanced. Medium settings (80 fps) offer the best balance of visual quality and performance, while High settings (62.9 fps) barely clear the 60 fps threshold. Ultra settings at 49.6 fps risk dropping below 60 fps during intense multiplayer moments, making Medium the safest choice for consistent gameplay.

For 4K, the data suggests this combo is not suitable for smooth multiplayer play. Low settings (56.6 fps) barely miss the 60 fps target, and any settings increase pushes framerates into the 25-46 fps range, which is problematic for a fast-paced multiplayer environment. Players with 4K displays should consider lowering resolution to 1440p for a better experience.

The best overall experience per the measured rows is 1080p Medium (123 fps), which provides high framerates with moderate visual quality — a combination well-suited for the competitive aspects of Fivem. For players prioritizing visuals, 1080p Ultra (72.2 fps) remains viable while offering the full graphics feature set.

# CPU Role

The AMD Ryzen 5 7600 brings 6 cores and 12 threads based on the Zen 4 architecture, running at a base clock of 3.80 GHz and boosting to 5.10 GHz. This represents the Raphael codename design on AMD Socket AM5, manufactured on TSMC's 5 nm process with 6,570 million transistors on a 71 mm² die.

The CPU's benchmark results show strong single-thread performance (3dmark_single_thread score of 999) and respectable multi-thread capabilities (cinebench_r23_multicore score of 22992). The 32 MB shared L3 cache and 83.2 GB/s memory bandwidth provide solid data throughput for gaming workloads.

In Fivem, the CPU's role is likely significant given the game's multiplayer nature. With many players interacting in a shared world, the CPU must process network data, entity states, and physics calculations. The Ryzen 5 7600's 12 threads provide adequate parallelism for these tasks, and its high boost clock of 5.10 GHz ensures responsive single-threaded performance.

The CPU's percentile ranking (83rd) and its near-tie with the Ryzen 7 5800X3D (0.2% higher score) suggest it is a capable gaming processor. However, the combo rank of 1385th indicates that in Fivem specifically, the CPU may not be the primary performance driver — the GPU appears to dominate the performance envelope, especially at higher resolutions.

# Resolution Scaling

The FPS scaling from 1080p to 4K reveals important insights about the limiting component in this system.

Low Settings: 1080p (151.4 fps) → 1440p (99.4 fps) → 4K (56.6 fps). The drop from 1080p to 1440p is 34.3%, while the drop from 1440p to 4K is 43.1%. This progressive degradation suggests the GPU is increasingly the bottleneck as resolution rises.

Medium Settings: 1080p (123 fps) → 1440p (80 fps) → 4K (46.2 fps). The reduction from 1080p to 1440p is 35%, and from 1440p to 4K is 42.3%. The consistency of these percentages across settings indicates resolution scaling is independent of quality level.

High Settings: 1080p (98 fps) → 1440p (62.9 fps) → 4K (35.9 fps). Here, the 1080p to 1440p drop is 35.8%, and the 1440p to 4K drop is 42.9%. The pattern holds.

Ultra Settings: 1080p (72.2 fps) → 1440p (49.6 fps) → 4K (25.6 fps). The 1080p to 1440p drop is 31.3%, while the 1440p to 4K drop is 48.4% — the steepest decline observed.

The consistent ~35% drop from 1080p to 1440p across all settings suggests the CPU can keep up with the increased pixel count, but the GPU becomes progressively more saturated. The steeper drop from 1440p to 4K (43-48%) indicates the GPU's pixel throughput and memory bandwidth (456.0 GB/s) become the limiting factors at 4K.

This scaling pattern strongly implies the Arc B580 is the primary bottleneck at resolutions above 1080p. The CPU's 83rd percentile ranking and strong single-thread performance suggest it could support higher framerates if paired with a more powerful GPU. Conversely, at 1080p with Low settings, the 151.4 fps result may approach the CPU's practical limit for Fivem's multiplayer workload, indicating a balanced configuration at that resolution.

Hardware Specifications

AMD Ryzen 5 7600

Cores / Threads 6 / 12
Base Clock 3800 MHz
Boost Clock 5100 MHz
TDP 65W
Socket AMD Socket AM5
View Full CPU Details →

Intel Arc B580

VRAM 12 GB GDDR6
Base Clock
Boost Clock 2670 MHz MHz
TDP 190 WW
View Full GPU Details →

FPS Benchmarks by Resolution & Settings

Performance data for AMD Ryzen 5 7600 + Intel Arc B580 in Fivem

Resolution Settings Avg FPS
3840x2160 Low 56.6
3840x2160 Medium 46.2
3840x2160 High 35.9
3840x2160 Ultra 25.6
2560x1440 Low 99.4
2560x1440 Medium 80.0
2560x1440 High 62.9
2560x1440 Ultra 49.6
1920x1080 Low 151.4
1920x1080 Medium 123.0
1920x1080 High 98.0
1920x1080 Ultra 72.2

Fivem with Ryzen 5 7600 + Other GPUs

See how Fivem performs with the same CPU but different graphics cards.

Fivem with Arc B580 + Other CPUs

See how Fivem performs with the same GPU but different processors.

Other Games with Ryzen 5 7600 + Arc B580

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