SYSTEM ANALYZER

Rate My PC: AMD Ryzen 5 7400 + Intel Arc B580

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

92 / 100
ULTIMATE READY

Apex Performer

Top 8% 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
93%
VS
GPU
92%
PROCESSOR

AMD Ryzen 5 7400

42,055 Benchmark Score
Top 7% Market Ranking
View Full Specs →
GRAPHICS CARD

Intel Arc B580

23,021 Benchmark Score
Top 8% 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

# CPU Analysis

The AMD Ryzen 5 7400 is a 6-core, 12-thread desktop processor built on the Zen 4 architecture (codenamed Raphael) and manufactured on TSMC's 5 nm process. It belongs to AMD's 7000 series and uses the AMD Socket AM5 platform. The chip operates with a base clock of 3.30 GHz and a boost clock of 4.30 GHz, with a 65 W TDP. The processor integrates 6,570 million transistors on a 71 mm² die, and its cache hierarchy includes 64 KB of L1 per core, 1 MB of L2 per core, and a shared 16 MB L3 cache.

The CPU supports DDR5 memory through a dual-channel memory bus, delivering 83.2 GB/s of memory bandwidth. ECC memory support is included, which is relevant for workstation and small business environments where data integrity matters. The processor provides PCIe Gen 5 with 24 lanes from the CPU, ensuring high-bandwidth connectivity for modern GPUs and NVMe storage. It also includes integrated Radeon Graphics, and the multiplier is unlocked for overclocking. The part number is 100-000001900, and production status is listed as Active.

Benchmark results for the Ryzen 5 7400 show a PassMark multithread score of 21,712, a single-thread score of 3,248, and an average benchmark score of 42,055. The CPU percentile versus all CPUs is 88, meaning it outperforms 88% of processors in the database. Looking at specific workloads, integer math scores 64,733, floating-point math scores 40,784, and extended instructions (SIMD) score 19,924. Data compression scores 261,749, data encryption scores 14,865, and random string sorting scores 31,110. Physics simulation scores 1,150, and prime number finding scores 79.

The nearest rivals in the benchmark database provide context for these scores. The AMD Ryzen 9 PRO 8945HS has an average score of 41,963, which is 0.2% lower than the Ryzen 5 7400. The Intel Core i7-14700T scores 41,914, 0.3% lower. The Intel Core i7-12850HX scores 41,779, 0.7% lower. On the higher side, the Intel Core i9-12900K scores 42,335, which is 0.7% higher. This places the Ryzen 5 7400 in a tight performance band where it essentially trades blows with these established processors, despite having fewer cores than some rivals. The efficiency of the Zen 4 architecture is evident here — the 6-core design keeps pace with chips that have more cores or higher power envelopes.

For real workloads, the multithread score of 21,712 indicates strong capability for multi-tasking and threaded applications like video encoding, compilation, and rendering. The single-thread score of 3,248 is competitive for everyday responsiveness and lightly-threaded software. The data compression score of 261,749 suggests the chip handles archive operations and file compression tasks briskly. Encryption performance at 14,865 covers VPN, disk encryption, and secure communication workloads adequately. The integer math score of 64,733 and floating-point score of 40,784 show balanced performance across general computing and scientific/engineering tasks.

# Gaming Performance

The FACT PACK contains no measured FPS rows for this exact CPU+GPU combination. Therefore, all FPS figures discussed here are estimates derived from the benchmark scores and the relative performance of the components, not from direct frame rate measurements. Treat the following as informed projections rather than empirical results.

The Intel Arc B580 GPU delivers a PassMark G3D score of 15,748 and a PassMark GPU Compute score of 7,729. Its percentile versus all GPUs is 68, which places it above most graphics cards in the database. The GPU's nearest rivals include the AMD Radeon RX 580 2048SP (average score 23,061, 0.2% higher), the NVIDIA GeForce RTX 2080 (average score 22,895, 0.6% lower), the NVIDIA GeForce RTX 3080 (average score 23,172, 0.7% higher), and the NVIDIA P106-100 (average score 23,249, 1% higher). This puts the Arc B580 in the same performance class as the RTX 2080 and RTX 3080 in aggregate benchmark terms, which is remarkable for a card in its position.

In 3DMark Steel Nomad DX12, the Arc B580 scores 3,068, reflecting modern API performance. Geekbench OpenCL and Vulkan scores are 92,821 and 109,672 respectively, showing strong compute throughput. The DirectX 11 PassMark score of 128 and DirectX 12 score of 76 indicate that the card's performance scales with API generation — DirectX 12 titles should see better relative performance than older DirectX 11 games.

Given the CPU's 88th percentile standing and the GPU's 68th percentile, the pairing suggests balanced 1080p and 1440p gaming. At 1080p with ultra settings, this combination should handle most titles at high frame rates, though exact numbers cannot be provided. At 1440p, the GPU becomes the more significant factor, and the Arc B580's 12 GB of GDDR6 memory on a 192-bit bus with 456.0 GB/s bandwidth provides sufficient capacity and throughput for modern textures. At 4K, the user would need to temper expectations — the GPU's pixel rate of 213.6 GPixel/s and FP32 throughput of 13.67 TFLOPS suggest playable but not high-refresh performance at that resolution.

# Balance and Bottleneck

The data indicates a well-balanced pairing for mainstream gaming and productivity. The CPU's 88th percentile versus all CPUs and the GPU's 68th percentile versus all GPUs create a configuration where neither component dramatically overshadows the other. The combined percentile is 78, reflecting the overall tier of this build.

In CPU-bound scenarios, such as physics simulation (score 1,150) and single-threaded tasks (score 3,248), the Ryzen 5 7400 provides a solid foundation. The CPU's multithread score of 21,712 ensures that even if the GPU is waiting on CPU data, the processor can keep up with game logic, AI, and physics calculations. The data compression score of 261,749 and integer math score of 64,733 suggest the CPU handles background tasks without stealing resources from the game thread.

In GPU-bound scenarios, particularly at higher resolutions, the Arc B580 becomes the limiting factor. The GPU's PassMark G3D score of 15,748, while respectable, is below the top-tier cards in the database. The DirectX 12 score of 76 and DirectX 11 score of 128 indicate that the card's performance varies by API, with older APIs potentially causing more significant bottlenecks. The 12 GB VRAM is generous for 1080p and 1440p, but at 4K, the memory bus width of 192-bit and bandwidth of 456.0 GB/s may constrain texture streaming.

The FPS scaling evidence, while not measured, can be inferred from the component scores. At 1080p, the CPU's strong single-thread performance (3,248) and the GPU's solid G3D score should allow high frame rates. As resolution increases, the GPU's pixel rate of 213.6 GPixel/s and texture rate of 427.2 GTexel/s become more critical. The CPU's memory bandwidth of 83.2 GB/s is adequate for feeding the GPU, and PCIe Gen 5 with 24 lanes ensures no data transfer bottleneck between CPU and GPU.

# Upgrade Path and Platform

The Ryzen 5 7400 uses AMD Socket AM5, which is the current mainstream desktop platform from AMD. This socket supports DDR5 memory, and the CPU's dual-channel memory bus with 83.2 GB/s bandwidth means users should install memory in pairs to maximize throughput. ECC memory support is a notable feature for professional workloads.

The platform provides PCIe Gen 5 with 24 lanes from the CPU. This is future-proof for storage devices and GPUs, though the Arc B580 itself uses PCIe 4.0 x8. The CPU's integrated Radeon Graphics provides a fallback display output if the discrete GPU is removed or fails, which is a practical redundancy.

The GPU requires a 450 W suggested PSU, and the CPU has a 65 W TDP. This combined power draw is modest, meaning most quality power supplies in the 500-600 W range should suffice, though the 450 W suggestion should be treated as a minimum. The Arc B580 uses a single 8-pin power connector and is a dual-slot card measuring 272 mm in length, 115 mm in height, and 45 mm in width. These dimensions should fit in most mid-tower cases.

A sensible next upgrade path would be a higher-tier GPU if gaming at 4K or high refresh rates becomes a priority — the CPU has headroom with its 88th percentile score to support a more powerful graphics card without becoming the bottleneck. On the CPU side, the AM5 socket supports the broader Ryzen 7000 series, and the unlocked multiplier on the 7400 allows overclocking to extract additional performance. The 65 W TDP means cooling requirements are modest, leaving thermal headroom for a future CPU upgrade within the same socket.

# Benchmark Performance

The CPU's average benchmark score is 42,055, with a percentile of 88 versus all CPUs. The GPU's average benchmark score is 23,021, with a percentile of 68 versus all GPUs. The combined percentile for this pairing is 78, indicating a system that sits comfortably in the upper quartile of all builds in the database.

Drilling into CPU benchmarks: PassMark multithread scores 21,712, single-thread scores 3,248, data compression scores 261,749, data encryption scores 14,865, extended instructions score 19,924, find prime numbers scores 79, floating-point math scores 40,784, integer math scores 64,733, physics scores 1,150, and random string sorting scores 31,110. The average benchmark score of 42,055 puts it within a 1% band of its nearest rivals — the Ryzen 9 PRO 8945HS (41,963, 0.2% higher), Core i7-14700T (41,914, 0.3% higher), Core i7-12850HX (41,779, 0.7% higher), and Core i9-12900K (42,335, 0.7% lower).

GPU benchmarks: 3DMark Steel Nomad DX12 scores 3,068, Geekbench OpenCL scores 92,821, Geekbench Vulkan scores 109,672, PassMark DirectX 10 scores 76, DirectX 11 scores 128, DirectX 12 scores 76, DirectX 9 scores 183, G2D scores 709, G3D scores 15,748, and GPU Compute scores 7,729. The nearest GPU rivals show the Arc B580 in a tight cluster: RX 580 2048SP (23,061, 0.2% higher), RTX 2080 (22,895, 0.6% lower), RTX 3080 (23,172, 0.7% higher), and P106-100 (23,249, 1% higher).

The combined picture is a system where the CPU is the stronger component relative to its peers — the 88th percentile CPU paired with a 68th percentile GPU. This means the CPU is unlikely to be the limiting factor in most workloads, and the GPU will define the ceiling for gaming and graphics-intensive tasks. For productivity and CPU-bound applications, this build punches above its weight class.

# FAQ

Q: What is the CPU's core and thread count?

A: The AMD Ryzen 5 7400 has 6 cores and 12 threads.

Q: What memory type does this platform support?

A: The CPU supports DDR5 memory via a dual-channel memory bus with 83.2 GB/s bandwidth, and ECC memory is supported.

Q: Does the GPU have enough VRAM for modern games?

A: The Intel Arc B580 has 12 GB of GDDR6 memory on a 192-bit bus with 456.0 GB/s bandwidth, which is sufficient for 1080p and 1440p gaming with high textures.

Q: What is the GPU's performance relative to its nearest rivals?

A: The Arc B580's average benchmark score of 23,021 is within 1% of the Radeon RX 580 2048SP (23,061), GeForce RTX 2080 (22,895), GeForce RTX 3080 (23,172), and P106-100 (23,249).

Q: What is the CPU's percentile ranking?

A: The Ryzen 5 7400 ranks in the 88th percentile versus all CPUs, with an average benchmark score of 42,055.

Q: What power supply is recommended for this GPU?

A: The suggested PSU for the Intel Arc B580 is 450 W, and it uses a single 8-pin power connector.

Q: What PCIe interface does the GPU use?

A: The Arc B580 uses a PCIe 4.0 x8 bus interface, while the CPU provides PCIe Gen 5 with 24 lanes.

# Who Should Build It

This build targets gamers who primarily play at 1080p and 1440p resolutions. The CPU's strong single-thread score of 3,248 and the GPU's solid G3D score of 15,748 indicate the combination can handle high frame rates at these resolutions with modern game engines. The 12 GB VRAM on the GPU provides headroom for texture-heavy titles.

Content creators and developers will find the CPU's multithread score of 21,712 and integer math score of 64,733 useful for compilation, scripting, and build automation. The data compression score of 261,749 accelerates asset packaging and version control operations. The floating-point math score of 40,784 supports scientific computing and data analysis tasks.

Students and small business workstations benefit from the CPU's ECC memory support and the platform's reliability features. The integrated Radeon Graphics provides a backup display output. The modest TDP of 65 W for the CPU and 190 W for the GPU means the system runs cool and quiet, suitable for office environments.

# Build Overview

This is a desktop build pairing the AMD Ryzen 5 7400 with the Intel Arc B580. The CPU is a 6-core, 12-thread Zen 4 processor on the AM5 socket, and the GPU is a Battlemage-generation card on the Xe2-HPG architecture with 12 GB of GDDR6 memory. The combined percentile of 78 places this build in the upper tier of the database, with the CPU at the 88th percentile and the GPU at the 68th percentile.

The build class is desktop, and the components are both currently in active production. The CPU launched in September 2025, and the GPU launched in December 2024. The GPU has a launch MSRP of 249 USD. This is a mainstream-to-upper-midrange configuration that balances CPU and GPU capabilities for a wide range of workloads.

# Usage Scenarios

High-refresh gaming: At 1080p, the CPU's single-thread score of 3,248 and the GPU's G3D score of 15,748 should support high frame rates in competitive titles. At 1440p, the GPU's 12 GB VRAM and 456.0 GB/s bandwidth handle modern textures, though the 68th percentile GPU ranking means frame rates will be more moderate.

Streaming: The CPU's multithread score of 21,712 provides enough headroom for encoding while gaming, and the GPU's compute score of 7,729 can offload encoding tasks. The data compression score of 261,749 helps with stream packaging and upload.

Video editing: The CPU's integer math score of 64,733 and floating-point math score of 40,784 accelerate timeline scrubbing, effects processing, and export encoding. The GPU's OpenCL score of 92,821 supports GPU-accelerated effects and rendering in compatible editors.

3D rendering: The CPU's multithread score of 21,712 handles CPU-based renderers, while the GPU's compute score of 7,729 and FP32 throughput of 13.67 TFLOPS support GPU-accelerated renderers. The 12 GB VRAM is adequate for moderate scene complexity.

Software development: The CPU's 6 cores and 12 threads, combined with a multithread score of 21,712, handle parallel builds efficiently. The data encryption score of 14,865 covers secure communication and code signing tasks. The PCIe Gen 5 lanes provide fast storage access for large codebases.

Student and office work: The CPU's single-thread score of 3,248 ensures responsive everyday computing, and the ECC memory support protects against data corruption in long-running documents and spreadsheets. The integrated Radeon Graphics provides a fallback if the discrete GPU is not required, reducing power draw for basic tasks.