SYSTEM ANALYZER

Rate My PC: AMD Ryzen 5 7500F + Intel Arc B570

Get a comprehensive performance analysis of your gaming rig with detailed benchmarks, bottleneck detection, and upgrade recommendations

89 / 100
HIGH-END

Power Build

Top 11% of systems. Excellent for 1440p Ultra or 4K High gaming.

1440p Ultra4K High

System Balance Analysis

CPU vs GPU performance ratio
Well Balanced
CPU
86%
VS
GPU
91%
PROCESSOR

AMD Ryzen 5 7500F

24,964 Benchmark Score
Top 14% Market Ranking
View Full Specs →
GRAPHICS CARD

Intel Arc B570

20,556 Benchmark Score
Top 9% Market Ranking
View Full Specs →

Market Position

How your build compares to others
Budget
0-30
Mid-Range
30-60
High-End
60-85
Enthusiast
85-100
Your Build

Game Performance Benchmarks

Real-world 4K FPS in popular titles
View All Games →

Performance Insights

Tips to maximize your system

Strong Performance

Excellent for 1440p gaming. Most games will run at high/ultra settings smoothly.

Compatible Games See what you can play Compare CPUs Find upgrades Compare GPUs Find upgrades

Performance Tiers Explained

90-100

Ultimate

4K Ultra gaming, VR ready, ray tracing enabled, professional workloads

4K 60+ FPS VR Ready
70-89

High-End

1440p Ultra or 4K High settings, excellent for modern AAA titles

1440p Ultra 4K High
50-69

Mid-Range

1080p Ultra or 1440p Medium, great value for most gamers

1080p Ultra 1440p Med
30-49

Entry Level

1080p Medium settings, suitable for eSports and older titles

1080p Med eSports
0-29

Legacy

Basic gaming, older titles, consider upgrading for modern games

720p-1080p Low Older Games

The AMD Ryzen 5 7500F and Intel Arc B570 form a desktop pairing built around a 6-core, 12-thread Zen 4 processor and a 10 GB Battlemage graphics card. The CPU, a TSMC 5 nm Raphael part with a 65 W TDP, posts a Cinebench R23 multi-core score of 22799 and a single-core score of 3218, while the GPU delivers a PassMark G3D score of 14195 and a 3DMark Steel Nomad DX12 result of 2649. Together, they hold a combined percentile of 71, with the CPU ranking at the 77th percentile among all processors and the GPU at the 65th percentile among all graphics cards. This is a mid-range desktop configuration aimed at 1080p and 1440p gaming, with the measured frame rate data showing an average of 86.4 FPS across the tested game library.

CPU Analysis

The AMD Ryzen 5 7500F is a 6-core, 12-thread processor built on the Zen 4 architecture, codenamed Raphael, and manufactured on TSMC's 5 nm process with 6,570 million transistors on a 71 mm² die. Its base clock is 3.70 GHz with a boost clock of 5.00 GHz, and it features a 32 MB shared L3 cache alongside 64 KB of L1 and 1 MB of L2 cache per core. The processor supports DDR5 memory in a dual-channel configuration with a theoretical bandwidth of 83.2 GB/s, and it includes ECC memory support for workstation-oriented stability. The CPU is unlocked for overclocking, and its 65 W TDP classifies it as a power-efficient part for its performance tier.

Benchmark results show a processor that scales predictably with thread count. The 3DMark suite shows a progression from 974 in single-thread to 1902 in 2-thread, 3621 in 4-thread, 5372 in 8-thread, and 6376 in 16-thread tests, with the max-thread score of 6379 nearly identical to the 16-thread result. This indicates that the 12 threads are fully utilized without significant diminishing returns beyond that point. In Cinebench, the R23 multi-core score of 22799 is roughly 7.1 times the single-core score of 3218, suggesting strong multi-threaded scaling for a 6-core part. The Geekbench multi-core score of 12362 versus a single-core score of 2374 reinforces this pattern, showing a 5.2x multiplier that reflects the efficiency of the Zen 4 architecture under parallel workloads.

PassMark results provide additional context for real-world tasks. The integer math score of 79108 and floating point math score of 47176 indicate robust general-purpose computation, while the data encryption score of 17510 and compression score of 305925 show that the CPU handles these specific workloads with headroom. The extended instructions score of 22776 highlights the AVX-512 and related capabilities of Zen 4, which benefit scientific and encoding applications. The single-thread PassMark score of 3841 places it competitively for everyday responsiveness, while the multithread score of 26825 confirms its capability in multi-tasking scenarios.

Relative to its nearest rivals, the Ryzen 5 7500F sits in a tight cluster. Its average benchmark score of 24964 is 0.1% above the Intel Core i7-11850H (24935), 0.2% above the Intel Core i7-13620H (24911), and 0.4% above the Intel Core 5 210H (24872). It trails the AMD Ryzen 5 8400F by a negligible 0.2% (25005). These sub-0.5% deltas mean that for most workloads, the 7500F is functionally equivalent to these rivals, with differences well within run-to-run variance. The 77th percentile ranking among all CPUs confirms that this is a solidly above-average processor, though not a top-tier one; it competes with mobile i7-class parts and entry-level desktop chips from both AMD and Intel.

Balance and Bottleneck

The balance between the Ryzen 5 7500F and the Arc B570 depends heavily on resolution and workload type. The CPU's percentile rank of 77 versus the GPU's 65 suggests that the processor is slightly stronger relative to its respective market than the graphics card is. This creates a configuration where the GPU is more likely to be the limiting factor in graphically intensive scenarios, particularly at higher resolutions where the pixel throughput demands increase.

The measured FPS data across games supports this assessment. At 1920x1080, the average frame rate across all tested games is 86.4 FPS, but this figure masks significant variation. Esports titles like Valorant hit 304 FPS, and Counter-Strike: Global Offensive reaches 293 FPS, while demanding titles like Cyberpunk 2077 drop to 39 FPS and Red Dead Redemption 2 to 36 FPS. The GPU's PassMark G3D score of 14195 versus its compute score of 7281 indicates that the card is stronger in rasterization than in compute-heavy tasks, which aligns with these gaming results where pure rendering performance outpaces general compute.

At 2560x1440, the frame rates scale down consistently. Valorant drops from 304 to 259 FPS, and Cyberpunk 2077 falls from 39 to 29 FPS, representing a roughly 25-30% reduction across the board. This scaling pattern is consistent with GPU-bound scenarios where the pixel count increases by approximately 78% (from 2.07 million to 3.69 million pixels), but the frame rate drops by less than that, suggesting that the GPU is not fully saturated at 1080p in less demanding titles. At 3840x2160, the frame rates drop further, with Cyberpunk 2077 hitting 19 FPS and Valorant falling to 207 FPS, indicating that the 10 GB VRAM and 160-bit memory bus become limiting factors at 4K.

The CPU's role as a bottleneck is most evident in titles with high thread counts or physics simulations. The PassMark physics score of 1788 is notably lower than the multithread score of 26825, which suggests that the 6-core, 12-thread configuration may struggle with games that heavily utilize physics engines. However, for most modern titles, the GPU will be the primary constraint, as evidenced by the fact that the CPU's single-thread score of 974 in 3DMark is sufficient to feed the GPU at 1080p in all but the most demanding scenarios.

Benchmark Performance

The combined benchmark picture shows a CPU that outperforms its GPU relative to their respective markets. The Ryzen 5 7500F's average benchmark score of 24964 places it at the 77th percentile, while the Arc B570's average score of 20556 places it at the 65th percentile. The combined percentile for the pair is 71, which reflects the slightly stronger CPU component pulling the overall configuration upward.

In detail, the CPU's Cinebench R23 multi-core score of 22799 is a strong result for a 65 W part, outperforming the R15 multi-core score of 2298 by a factor of nearly 10 when accounting for the different test methodologies. The Geekbench multi-core score of 12362 provides a more standardized comparison point, and the PassMark multithread score of 26825 confirms the CPU's capability in heavily threaded workloads. The single-thread performance, with a PassMark score of 3841 and a Cinebench R23 single-core score of 3218, is competitive for gaming and everyday use.

The GPU's benchmark results show a card that is strongest in DirectX 11 and older APIs. The PassMark DirectX 11 score of 118 is nearly double the DirectX 10 score of 65 and significantly higher than the DirectX 12 score of 72. The DirectX 9 score of 164 is the highest of the legacy API tests, indicating strong compatibility with older titles. The Geekbench OpenCL score of 83514 and Vulkan score of 96844 show that the card performs well in compute workloads when using modern APIs, with Vulkan outperforming OpenCL by approximately 16%.

The 3DMark Steel Nomad DX12 score of 2649 is the most representative of modern gaming performance, and it aligns with the measured FPS in demanding titles. The PassMark G2D score of 661 is modest, reflecting the card's focus on 3D rendering rather than 2D acceleration. The nearest GPU rivals are the NVIDIA GeForce RTX 3070 Mobile (20534, 0.1% above), the Intel Arc A750 (20582, 0.1% below), the NVIDIA Quadro M4000M (20480, 0.4% above), and the AMD Radeon R9 M390X (20662, 0.5% below). These sub-1% deltas indicate that the Arc B570 is performance-equivalent to these cards in aggregate benchmarks, though the specific strengths and weaknesses vary by workload.

Upgrade Path and Platform

The Ryzen 5 7500F is built on the AMD Socket AM5 platform, which provides a clear upgrade path within the same socket. The CPU supports DDR5 memory in a dual-channel configuration with a memory bandwidth of 83.2 GB/s, and it includes ECC memory support for data-integrity-sensitive applications. The PCIe Gen 5 interface with 24 lanes from the CPU ensures that storage and GPU upgrades will not be bandwidth-limited for several generations.

The platform's 65 W TDP means that the CPU is relatively easy to cool, but the GPU's 150 W TDP adds to the overall system power requirement. The suggested PSU for the Arc B570 is 450 W, which provides sufficient headroom for this CPU-GPU pairing when combined with a modest system configuration. The GPU uses a single 8-pin power connector, which is standard for mid-range cards and compatible with most power supplies.

For a sensible next upgrade, the data suggests that the GPU would benefit from an upgrade before the CPU. The CPU's 77th percentile ranking indicates that it can handle more powerful graphics cards without becoming a significant bottleneck, particularly at 1440p and above where the GPU is the limiting factor. The AM5 socket supports future Ryzen processors, so a CPU upgrade is also possible within the same platform without a motherboard change. The 83.2 GB/s memory bandwidth is adequate for the current CPU, but upgrading to faster DDR5 modules could provide marginal gains in memory-sensitive workloads.

The GPU's PCIe 4.0 x8 interface is half the lane width of the CPU's PCIe Gen 5 capability, but this is not a practical limitation for gaming performance. The 10 GB GDDR6 memory with a 160-bit bus and 380.0 GB/s bandwidth is sufficient for 1080p and 1440p gaming, but 4K gaming exceeds the card's comfortable envelope, as shown by sub-30 FPS results in several demanding titles at that resolution.

GPU Analysis

The Intel Arc B570 is built on the Xe2-HPG architecture, codenamed Battlemage, and manufactured on TSMC's 5 nm process with 19,600 million transistors on a 272 mm² die. It features 2304 shading units, 144 texture mapping units, and 80 raster operations units, along with 18 ray tracing cores. The card has a base clock of 2500 MHz and a boost clock of 2500 MHz, with memory running at 2375 MHz (19 Gbps effective) across a 160-bit bus, yielding a bandwidth of 380.0 GB/s.

The compute capabilities are defined by the FP32 throughput of 11.52 TFLOPS and FP16 throughput of 23.04 TFLOPS (2:1 ratio). The pixel rate is 200.0 GPixel/s and the texture rate is 360.0 GTexel/s, which are strong figures for a mid-range card. The 18 ray tracing cores provide hardware-accelerated ray tracing, though the measured performance in ray-traced titles is not separately benchmarked; the 3DMark Steel Nomad score of 2649 suggests moderate ray tracing capability.

The 10 GB VRAM capacity is a notable advantage over some competitors with 8 GB, and the 380.0 GB/s bandwidth is sufficient for the card's compute throughput. However, the 160-bit bus width is narrower than some rivals, which can limit performance in memory-bandwidth-intensive scenarios. The card's PassMark G3D score of 14195 and average benchmark score of 20556 place it at the 65th percentile among all GPUs, indicating a solidly mid-range position.

The GPU supports DirectX 12 Ultimate (12_2), OpenGL 4.6, and Vulkan 1.4, making it compatible with modern APIs and future titles. The display outputs include 1x HDMI 2.1a and 3x DisplayPort 2.1, which support high refresh rates and high resolutions. The card's dual-slot design with a 272 mm length and 115 mm height is compatible with most mid-tower cases, and the single 8-pin power connector simplifies installation. The 150 W TDP and suggested 450 W PSU indicate efficient power delivery, and the card's predecessor, Alchemist, was the previous generation's architecture, with this Battlemage part representing a significant step forward.

Gaming Performance

The measured FPS data across 50 games at ultra settings provides a comprehensive picture of the Arc B570's gaming capabilities when paired with the Ryzen 5 7500F. At 1920x1080, the pair averages 86.4 FPS across all tested games, with a wide range from 19 FPS in Ark: Survival Ascended to 304 FPS in Valorant. The data shows that esports titles are exceptionally well-served: Valorant hits 304 FPS, Counter-Strike: Global Offensive reaches 293 FPS, and Tom Clancy's Rainbow Six Siege achieves 158 FPS. Roblox (171 FPS) and To The Core (133 FPS) also perform strongly.

For AAA titles at 1080p, the results are more varied. Call of Duty: Warzone hits 149 FPS, which is excellent, while Counter-Strike 2 reaches 133 FPS and Assetto Corsa hits 78 FPS. However, demanding titles show the GPU's limits: Cyberpunk 2077 runs at 39 FPS, Red Dead Redemption 2 at 36 FPS, and Ark: Survival Ascended at 19 FPS. The Medium drops to 28 FPS, indicating that the 10 GB VRAM is a constraint in the most demanding games.

At 2560x1440, the frame rates scale down by an average of approximately 30-35%. Valorant drops to 259 FPS, Call of Duty: Warzone to 132 FPS, and Counter-Strike 2 to 88 FPS. Cyberpunk 2077 falls to 29 FPS, Red Dead Redemption 2 to 27 FPS, and Ark: Survival Ascended to 12 FPS. This resolution is playable for most titles, but demanding games require settings adjustments to maintain smooth frame rates.

At 3840x2160, the configuration struggles. Valorant still hits 207 FPS, and Call of Duty: Warzone manages 112 FPS, but most games fall below 30 FPS. Cyberpunk 2077 runs at 19 FPS, Red Dead Redemption 2 at 18 FPS, and Ark: Survival Ascended at 6 FPS. The 4K results indicate that this pairing is not suitable for 4K gaming in demanding titles, though less intensive games like Valorant and Call of Duty: Warzone remain playable.

The pair ranks 3036th out of 3732 pairs by average FPS, putting it in the 18th percentile of all tested CPU-GPU combinations. This low ranking reflects the GPU's mid-range positioning rather than any CPU limitation, as the CPU's 77th percentile ranking is significantly higher.

FAQ

Q: Does the Ryzen 5 7500F support DDR4 memory?

A: No. The CPU supports DDR5 memory in a dual-channel configuration with a bandwidth of 83.2 GB/s, and it also supports ECC memory.

Q: What is the maximum boost clock of the Ryzen 5 7500F?

A: The boost clock is 5.00 GHz, with a base clock of 3.70 GHz.

Q: How much VRAM does the Intel Arc B570 have?

A: The card has 10 GB of GDDR6 memory on a 160-bit bus, providing 380.0 GB/s of bandwidth.

Q: Is the Intel Arc B570 suitable for 4K gaming?

A: At 3840x2160, demanding titles like Cyberpunk 2077 run at 19 FPS and Red Dead Redemption 2 at 18 FPS. Esports titles like Valorant hit 207 FPS, but 4K is not viable for most AAA games.

Q: What is the TDP of the CPU and the GPU?

A: The CPU has a TDP of 65 W, and the GPU has a TDP of 150 W. The suggested PSU for the GPU is 450 W.

Q: What socket does the Ryzen 5 7500F use?

A: The CPU uses AMD Socket AM5, which supports DDR5 memory and PCIe Gen 5 with 24 lanes from the CPU.

Q: How does the Arc B570 compare to the Intel Arc A750?

A: The Arc B570 has an average benchmark score of 20556, which is 0.1% below the Arc A750's score of 20582. The two cards are effectively performance-equivalent in aggregate benchmarks.

Build Overview

This build pairs the AMD Ryzen 5 7500F with the Intel Arc B570 in a desktop configuration. The CPU, a 6-core Zen 4 part with a 65 W TDP, holds the 77th percentile among all CPUs, while the GPU, a 150 W Xe2-HPG part with 10 GB VRAM, holds the 65th percentile among all GPUs. The combined percentile is 71, placing this configuration in the upper-mid range of desktop systems.

The pair ranks 3036th out of 3732 in average FPS across games, which places it in the lower half of tested configurations, but this ranking is heavily influenced by the GPU's mid-range positioning. The CPU is the stronger component relative to its market segment, and the GPU is the limiting factor in most gaming scenarios. The 86.4 FPS average across all games at 1080p indicates that this is a solid 1080p gaming system, with 1440p being playable in less demanding titles.

The platform's AM5 socket and DDR5 memory support provide a modern foundation, and the 65 W CPU TDP keeps power requirements manageable. The 450 W suggested PSU for the GPU provides adequate headroom for this configuration. The Arc B570's 10 GB VRAM is sufficient for 1080p and 1440p gaming, and its 380.0 GB/s bandwidth supports the card's compute throughput.

Who Should Build It

The primary audience for this build is gamers targeting 1080p and 1440p resolution. The measured FPS data shows that esports titles like Valorant (304 FPS at 1080p) and Counter-Strike: Global Offensive (293 FPS) are exceptionally well-served, while AAA titles like Cyberpunk 2077 (39 FPS) and Red Dead Redemption 2 (36 FPS) require settings adjustments for smooth play. Gamers at 1440p will find that most titles run at acceptable frame rates, though demanding games may require medium or high settings rather than ultra.

Content creators and developers will benefit from the CPU's strong multi-threaded performance, with Cinebench R23 multi-core score of 22799 and Geekbench multi-core score of 12362. The PassMark data compression score of 305925 and integer math score of 79108 indicate solid performance for encoding and compilation tasks. The GPU's compute capabilities, with an OpenCL score of 83514 and Vulkan score of 96844, support GPU-accelerated workloads in creative applications.

Students and small business users will find this configuration suitable for general productivity, web browsing, and office applications, given the CPU's single-thread score of 3841 in PassMark and the overall 77th percentile CPU ranking. The ECC memory support adds reliability for data-sensitive workloads, and the 65 W CPU TDP makes the system efficient for long-running tasks. The 10 GB VRAM and 380.0 GB/s bandwidth on the GPU provide adequate headroom for CAD and 3D modeling applications that leverage GPU acceleration, though the 65th percentile GPU ranking suggests that more demanding professional workloads would benefit from a higher-tier card.