SYSTEM ANALYZER

Rate My PC: AMD Ryzen 7 5800XT + Intel Arc B570

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

90 / 100
ULTIMATE READY

Apex Performer

Top 10% of systems. Capable of 4K Ultra gaming and advanced rendering.

4K 60+ FPSVR ReadyRay Tracing

System Balance Analysis

CPU vs GPU performance ratio
Well Balanced
CPU
89%
VS
GPU
91%
PROCESSOR

AMD Ryzen 7 5800XT

29,879 Benchmark Score
Top 11% 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

Optimal Performance

Your system is in the top tier. You can run any modern game at maximum settings.

4K Gaming Ready

Consider a 4K 144Hz monitor to fully utilize your hardware capabilities.

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 7 5800XT and Intel Arc B570 pairing represents a desktop configuration built around an eight-core, sixteen-thread processor from AMD’s 5000 series and a discrete graphics card from Intel’s Battlemage generation. The CPU, based on the Zen 3 architecture and codenamed Vermeer, operates on the AM4 socket with a base clock of 3.80 GHz and a boost clock of 4.80 GHz. It is manufactured on TSMC’s 7 nm process and includes a 32 MB shared L3 cache. The GPU, featuring the BMG-G21 chip and Xe2-HPG architecture, provides 10 GB of GDDR6 memory on a 160-bit bus. This pairing produces a combined percentile of 73, meaning it outperforms the majority of recorded system configurations in the database.

CPU Analysis

The Ryzen 7 5800XT is a desktop processor with eight physical cores and sixteen threads, a configuration well-suited for multi-threaded workloads. Its Zen 3 architecture delivers a strong balance between single-thread responsiveness and multi-core throughput. The base clock of 3.80 GHz and boost clock of 4.80 GHz allow the processor to scale frequency based on workload demand. The 105 W TDP indicates a power envelope typical for a mainstream eight-core part, and the unlocked multiplier permits overclocking for users seeking additional performance.

Benchmark data shows a clear scaling pattern across thread counts. The 3dmark scores progress from 959 in the single-thread test to 1879 in the 2-thread test, then to 3603 in the 4-thread test, and 6141 in the 8-thread test. The maximum thread score of 7680 is nearly identical to the 16-thread score of 7683, indicating that the processor efficiently utilizes all available threads and that scaling is consistent up to the full core count. This pattern suggests strong performance in applications like video encoding, compilation, and 3D rendering that can leverage multiple cores.

Cinebench results reinforce this multi-core strength. The Cinebench R23 multicore score of 23794 is substantial, while the single-core score of 3359 indicates capable per-thread performance. The ratio between these scores, roughly 7:1, is typical for an eight-core processor with SMT enabled. Passmark tests show a multithread score of 28053 and a single-thread score of 3535, with floating-point math at 53808 and integer math at 93942. The data encryption score of 21461 and extended instructions score of 24270 suggest solid performance in security and vectorized workloads. The processor sits at the 81st percentile among all CPUs, placing it ahead of a majority of tested processors. Compared to its nearest rivals, it is essentially even with the AMD Ryzen 7 7840H (deltaPct 0) and slightly behind the AMD Ryzen 7 8845HS and 7840HS (both -0.3), while marginally ahead of the AMD Ryzen 5 9600X (0.6). This indicates the 5800XT competes directly with recent mobile and desktop parts in overall CPU benchmarks.

Benchmark Performance

The combined benchmark picture for this CPU and GPU pairing shows a system placed at the 73rd percentile overall. The CPU’s average benchmark score is 29879, while the GPU’s average is 20556. The CPU percentile of 81 is notably higher than the GPU percentile of 65, indicating that the processor is the stronger component relative to its peers. This disparity suggests the system’s overall percentile is constrained more by the GPU than the CPU in certain workloads.

In 3DMark tests, the GPU scores 2649 in the Steel Nomad DX12 test. Geekbench results show an OpenCL score of 83514 and a Vulkan score of 96844, with the Vulkan result being roughly 16% higher. Passmark GPU tests show a G3D score of 14195 and a compute score of 7281, with DirectX 11 yielding the highest DirectX score at 118, compared to 65 for DirectX 10 and 72 for DirectX 12. The GPU’s nearest rivals include the NVIDIA GeForce RTX 3070 Mobile (deltaPct 0.1), Intel Arc A750 (-0.1), NVIDIA Quadro M4000M (0.4), and AMD Radeon R9 M390X (-0.5). This places the Arc B570 in the same performance tier as a high-end mobile RTX 30-series GPU and just behind its larger sibling, the Arc A750.

The pair’s rank by FPS across 3732 pairs is 3044, with an average FPS of 86.2 across all measured games. This rank means the system performs better than roughly 18% of tested pairs, but the average FPS figure shows it can handle a wide range of games at playable frame rates. The CPU’s multi-threaded scores, particularly the Cinebench R23 multicore result of 23794, indicate it will not bottleneck the GPU in most scenarios, while the GPU’s 65th percentile suggests it delivers mid-range graphics performance.

GPU Analysis

The Intel Arc B570 is built on the Xe2-HPG architecture and manufactured on a 5 nm process at TSMC. It contains 19,600 million transistors on a 272 mm² die, with a transistor density of 72.1 million per mm². The GPU has 2304 shading units, 144 texture mapping units, and 80 raster operation units. It includes 18 ray tracing cores, providing dedicated hardware for RT workloads. The base and boost clocks are both 2500 MHz, with memory running at 2375 MHz (19 Gbps effective).

Memory configuration includes 10 GB of GDDR6 on a 160-bit bus, yielding a bandwidth of 380.0 GB/s. This bandwidth is adequate for the GPU’s compute capabilities, which are rated at 11.52 TFLOPS for FP32 and 23.04 TFLOPS for FP16 (2:1 ratio). The pixel rate is 200.0 GPixel/s, and the texture rate is 360.0 GTexel/s. The GPU supports DirectX 12 Ultimate (12_2), OpenGL 4.6, and Vulkan 1.4, making it compatible with modern graphics APIs. Display outputs include one HDMI 2.1a and three DisplayPort 2.1 connections.

In benchmark results, the GPU’s Geekbench Vulkan score of 96844 exceeds its OpenCL score of 83514, suggesting strong performance in Vulkan-optimized titles. The Passmark G3D score of 14195 places it in the 65th percentile among all GPUs. The 3DMark Steel Nomad DX12 score of 2649 indicates moderate DX12 performance. With 18 RT cores, the B570 can handle ray-traced effects, though the 65th percentile suggests it is not a top-tier RT performer. The GPU’s average benchmark score of 20556 is nearly identical to the RTX 3070 Mobile (20534), confirming they are directly comparable in overall GPU performance.

FAQ

Q: How many cores and threads does the AMD Ryzen 7 5800XT have?

A: The CPU has 8 cores and 16 threads, based on the Zen 3 architecture.

Q: What is the memory bandwidth of the Intel Arc B570?

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

Q: How does the Arc B570 compare to the RTX 3070 Mobile?

A: The Arc B570 has an average benchmark score of 20556, while the RTX 3070 Mobile scores 20534, a delta of 0.1%, making them statistically equal.

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

A: The Ryzen 7 5800XT is at the 81st percentile, meaning it outperforms 81% of all CPUs in the database.

Q: Does the CPU support ECC memory?

A: Yes, the Ryzen 7 5800XT supports ECC memory, along with dual-channel DDR4 memory at 51.2 GB/s bandwidth.

Q: What is the TDP of the GPU and what PSU is suggested?

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

Q: What is the combined percentile of this CPU+GPU pair?

A: The combined percentile is 73, indicating the system outperforms 73% of recorded pairs.

Gaming Performance

Measured FPS data at ultra settings across 51 games shows a wide range of performance depending on resolution and title. At 1920x1080, the system achieves high frame rates in esports titles: Valorant runs at 304 FPS, CS:GO at 293 FPS, and Rainbow Six Siege at 158 FPS. Counter-Strike 2 hits 133 FPS, while Call of Duty: Warzone reaches 137 FPS. These results indicate the pairing is well-suited for competitive gaming at 1080p, where the CPU’s strong single-thread performance (3dmark single-thread score of 959) supports high refresh rates.

At 2560x1440, frame rates drop but remain playable in most titles. Valorant still hits 259 FPS, CS:GO 201 FPS, and Warzone 122 FPS. More demanding games see significant reductions: Cyberpunk 2077 runs at 29 FPS, Red Dead Redemption 2 at 27 FPS, and Ark: Survival Ascended at 12 FPS. At 3840x2160, only the lightest titles remain smooth. Valorant runs at 207 FPS, CS:GO at 119 FPS, and Warzone at 104 FPS, but Cyberpunk 2077 drops to 19 FPS and Red Dead Redemption 2 to 18 FPS. The data shows this system is best suited for 1080p and 1440p gaming, with 4K reserved for less demanding or well-optimized titles. The average FPS across all games and resolutions is 86.2, confirming broad playability.

Upgrade Path and Platform

The Ryzen 7 5800XT uses the AMD Socket AM4 platform, which supports DDR4 memory in dual-channel configuration. The CPU provides 20 PCIe Gen 4 lanes, allowing for modern NVMe SSDs and GPUs, though the Arc B570 uses a PCIe 4.0 x8 interface. The platform’s memory bandwidth is 51.2 GB/s, which is sufficient for the CPU’s Zen 3 architecture. The CPU has a TDP of 105 W, and the GPU has a TDP of 150 W, with a suggested PSU of 450 W for the entire system. This leaves headroom for the rest of the components, assuming a quality PSU.

A sensible next upgrade path involves the GPU, as it sits at the 65th percentile compared to the CPU’s 81st. Replacing the Arc B570 with a higher-tier GPU would immediately improve gaming performance, particularly at 1440p and 4K resolutions where the current GPU limits frame rates. The AM4 platform is mature, so the CPU represents a near-end-of-life upgrade for this socket, but its performance is still competitive with newer parts, as shown by its delta of 0.6% against the Ryzen 5 9600X. Users could also add more DDR4 memory or faster storage via the PCIe Gen 4 lanes, but the CPU and GPU are well-balanced for most workloads.

Balance and Bottleneck

Analysis of the percentile data reveals that the CPU is the stronger component. The CPU’s 81st percentile versus the GPU’s 65th percentile indicates that, in CPU-bound workloads such as physics calculations (Passmark physics score of 1355) or data compression (352002), the processor will not be the limiting factor. Conversely, in GPU-bound tasks like 3D rendering or gaming at high resolutions, the GPU will be the bottleneck.

The FPS scaling across resolutions confirms this. At 1080p, where CPU load is higher, the system delivers strong frame rates in esports titles (e.g., 304 FPS in Valorant). At 1440p, the GPU becomes more stressed, and frame rates drop proportionally more (Valorant drops to 259 FPS). At 4K, the GPU is the clear bottleneck, with many titles falling below 30 FPS (e.g., Cyberpunk 2077 at 19 FPS). The CPU’s multi-threaded scores, such as the Cinebench R23 multicore result of 23794, show it can feed the GPU adequately in most scenarios, but the GPU’s 380.0 GB/s bandwidth and 11.52 TFLOPS FP32 performance limit high-resolution output. For balanced performance, the pairing is well-matched at 1080p, but at higher resolutions, the GPU holds the system back.

Build Overview

This is a desktop build combining a high-end AM4 CPU with a mid-range Intel GPU. The Ryzen 7 5800XT is an active, current production processor released on 2024-07-30, while the Arc B570 is an active GPU released on 2025-01-15. The CPU’s 81st percentile places it in the upper tier of processors, while the GPU’s 65th percentile places it in the mid-to-upper tier of GPUs. The combined percentile of 73 reflects a system that is above average overall but not top-tier.

The build class is desktop, and the components are both actively produced, indicating a current-generation pairing. The CPU supports ECC memory and has an unlocked multiplier, making it suitable for workstation tasks and overclocking. The GPU supports modern APIs including DirectX 12 Ultimate and Vulkan 1.4, ensuring compatibility with current software. The pair’s rank of 3044 out of 3732 pairs by FPS shows it is in the lower half of all recorded pairs, but the average FPS of 86.2 demonstrates it can handle the majority of games at playable settings. This is a system that prioritizes CPU performance for productivity while providing adequate GPU performance for 1080p gaming.

Who Should Build It

This system targets users who need strong multi-threaded CPU performance without requiring top-tier graphics. The CPU’s Cinebench R23 multicore score of 23794 and Passmark multithread score of 28053 make it suitable for content creators who edit video, compile code, or run 3D rendering software, as these tasks benefit from the 16 threads. The GPU’s 65th percentile and 10 GB VRAM support moderate gaming and GPU-accelerated workloads.

Gamers at 1080p will find this system capable of high refresh rates in competitive titles, with Valorant at 304 FPS and CS:GO at 293 FPS. At 1440p, the system remains playable for most games, though demanding titles like Cyberpunk 2077 (29 FPS) will require settings adjustments. Students and small business users will benefit from the CPU’s strong single-thread performance (3dmark single-thread score of 959) for office applications and web browsing, while the ECC memory support makes it viable for workstation use. Developers will appreciate the 8 cores and 16 threads for parallel compilation, and the PCIe Gen 4 support allows for fast storage.

Usage Scenarios

For high-refresh gaming, the system excels at 1080p, delivering 304 FPS in Valorant, 293 FPS in CS:GO, and 158 FPS in Rainbow Six Siege, all exceeding typical 144 Hz monitor refresh rates. At 1440p, it still achieves 259 FPS in Valorant and 103 FPS in Rainbow Six Siege, maintaining smooth gameplay.

For streaming, the CPU’s 16 threads handle encoding workloads well, as evidenced by the Passmark data encryption score of 21461, while the GPU’s 65th percentile ensures the game itself runs at acceptable frame rates. The combined performance allows for simultaneous gaming and streaming at 1080p.

For video editing, the Cinebench R23 multicore score of 23794 indicates fast rendering times in software like Premiere Pro or DaVinci Resolve, though the GPU’s 10 GB VRAM and 380.0 GB/s bandwidth provide moderate acceleration for effects and color grading.

For 3D rendering, the CPU’s Passmark floating-point math score of 53808 indicates strong compute performance for CPU-based rendering, while the GPU’s 18 RT cores and 11.52 TFLOPS FP32 offer hardware acceleration for RT-capable renderers, though it is not a top-tier GPU for this task.

For software development, the 8 cores and 16 threads handle parallel builds efficiently, and the CPU’s percentile of 81 places it above most processors, reducing compile times. The ECC memory support adds reliability for long-running tasks.

For student and office work, the CPU’s single-thread score of 959 in 3dmark ensures responsive application performance, while the GPU’s G2D score of 661 supports smooth 2D desktop rendering. The system handles document editing, spreadsheets, and web browsing with ease, and the 10 GB VRAM is more than sufficient for any office graphics needs.