SYSTEM ANALYZER

Rate My PC: Intel Core i5-14600KF + Intel Arc B580

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

93 / 100
ULTIMATE READY

Apex Performer

Top 7% 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
94%
VS
GPU
92%
PROCESSOR

Intel Core i5-14600KF

49,394 Benchmark Score
Top 6% 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

The Intel Core i5-14600KF and Intel Arc B580 pairing represents a modern desktop configuration centered on Intel’s Raptor Lake architecture and the Xe2-HPG graphics generation. The CPU, a 14-core processor with a 125W TDP, and the GPU, a 12GB card requiring a 450W suggested power supply, form a combination that targets high-refresh 1080p gaming and competent 1440p performance. This analysis examines the platform fundamentals, measured benchmark scores, and workload-specific behavior to define the pairing's position in the current hardware landscape.

Upgrade Path and Platform

The Intel Core i5-14600KF utilizes the Intel Socket 1700 platform, which anchors the build to the Core 14th Gen series. The processor supports both DDR4 and DDR5 memory through a dual-channel memory bus, offering flexibility in platform cost and performance tuning. While the CPU itself does not include integrated graphics, its multiplier is unlocked, allowing for overclocking headroom on compatible motherboards. The platform provides PCIe Gen 5 with 16 lanes from the CPU, ensuring modern storage and GPU connectivity options.

The GPU connects via a PCIe 4.0 x8 interface, which is sufficient for the Arc B580’s bandwidth requirements. The system’s power delivery needs are modest: the CPU has a 125W TDP, and the GPU carries a 190W TDP with a single 8-pin power connector. Intel’s suggested PSU for the graphics card is 450W, which indicates that a typical mid-range power supply will provide adequate headroom for this pairing without excessive capacity. The GPU itself is a dual-slot design measuring 272 mm in length, fitting into most standard ATX cases.

For a sensible next upgrade, the data suggests that the CPU has significant longevity. Its benchmark scores place it in the 90th percentile among all CPUs, and it trades blows with the AMD Ryzen 9 7900 (0.3% delta) and the AMD Ryzen AI Max+ 388 (-0.8% delta). This implies that the processor is not the limiting factor in most scenarios, and a future GPU upgrade would be the logical step to improve graphics-bound workloads. Conversely, the Arc B580 sits in the 68th percentile for GPUs, making it the component likely to be replaced first when seeking higher frame rates at 4K or in more demanding titles.

Benchmark Performance

The CPU’s performance profile is robust across synthetic workloads. In Cinebench R23, the i5-14600KF scores 32544 points in multi-core and 4594 points in single-core tests. The single-core score is particularly strong, representing a 39% advantage over the multi-core score when normalized, indicating excellent per-thread performance for lightly-threaded tasks. The Geekbench results corroborate this, with a single-core score of 2445 and a multi-core score of 17085, the latter being roughly seven times the former, which aligns with the 14-core/20-thread configuration.

The GPU’s synthetic scores paint a picture of a mid-range performer. The 3DMark Steel Nomad DX12 score is 3068, which is a modern benchmark result. In Geekbench, the Arc B580 achieves 92821 in OpenCL and 109672 in Vulkan, showing a strong preference for the Vulkan API. The Passmark G3D score of 15748 places it near the NVIDIA GeForce RTX 2080, which has an average score of 22895 (0.6% delta), and the AMD Radeon RX 580 2048SP, which scores 23061 (-0.2% delta). The combined percentile for this CPU+GPU pairing is 79, with an average FPS across games of 100.1 at 1080p ultra settings, ranking 2750 out of 3732 pairs.

The combined picture shows a system that is heavily CPU-favored in benchmark terms. The CPU scores far above the 90th percentile, while the GPU sits in the 68th percentile. This suggests that for tasks like physics simulation, where the CPU scores 2449 in Passmark, the system will excel, while GPU compute tasks, where the GPU scores 7729 in Passmark, will be more modest.

FAQ

Q: What is the socket type for the Intel Core i5-14600KF?

A: The processor uses the Intel Socket 1700, which is compatible with Core 14th Gen motherboards.

Q: Does the Intel Arc B580 support modern graphics APIs?

A: Yes, the GPU supports DirectX 12 Ultimate (12_2), OpenGL 4.6, and Vulkan 1.4, making it fully compatible with current gaming software.

Q: How does the CPU compare to the AMD Ryzen 9 7900 in average benchmark scores?

A: The i5-14600KF has an average benchmark score of 49394, which is 0.3% higher than the AMD Ryzen 9 7900’s score of 49228.

Q: What is the memory configuration of the Intel Arc B580?

A: The GPU features 12 GB of GDDR6 memory on a 192-bit bus, providing a bandwidth of 456.0 GB/s.

Q: Is the CPU overclockable?

A: Yes, the multiplier is unlocked, allowing for overclocking on supported motherboards.

Q: What is the suggested power supply wattage for the GPU?

A: The suggested PSU for the Intel Arc B580 is 450W, which accounts for the GPU’s 190W TDP.

Q: How much L3 cache does the CPU have?

A: The i5-14600KF has 24 MB of shared L3 cache, with 2 MB of L2 cache per core.

Who Should Build It

This pairing is suitable for gamers targeting high refresh rates at 1920x1080 resolution, where the average FPS across games is 100.1. The system excels in esports titles; for example, Valorant runs at 338.6 FPS and Counter-Strike: Global Offensive at 327.6 FPS at 1080p, making it ideal for competitive players. For content creators, the CPU’s multi-core Cinebench R23 score of 32544 provides strong rendering capabilities, while the GPU’s 12GB VRAM supports moderate video editing workloads.

Software developers will benefit from the CPU’s high single-core performance, as seen in the Geekbench single-core score of 2445, which accelerates compilation tasks. Students and office workers will find the system more than adequate for productivity, though the discrete GPU is overkill for basic tasks. Small business workstations requiring ECC memory support, which the CPU offers, could leverage this build for data integrity in critical applications. However, the GPU’s 68th percentile ranking suggests that users targeting 4K gaming or heavy 3D rendering should look elsewhere, as evidenced by Cyberpunk 2077 running at only 20.4 FPS at 3840x2160.

CPU Analysis

The Intel Core i5-14600KF features 14 cores and 20 threads, built on Intel’s 10nm process node. The architecture is Raptor Lake-R, with a die size of 257 mm². Clock speeds range from a base of 3.50 GHz to a boost of 5.30 GHz, with a TDP of 125W. The cache hierarchy includes 80 KB of L1 per core, 2 MB of L2 per core, and 24 MB of shared L3 cache. The processor supports dual-channel DDR4 and DDR5 memory, with ECC support for error correction.

Benchmark results indicate a strong all-rounder. The Cinebench R20 multi-core score of 13668 and single-core score of 1929 demonstrate balanced performance. The Passmark tests show particular strength in integer math (125982) and floating-point math (93048), while data compression scores a massive 485140. These numbers suggest excellent performance in encryption, compression, and scientific computing tasks. The data encryption score of 27608 further supports this, indicating robust security-related workloads.

The CPU’s 90th percentile ranking among all CPUs is corroborated by its rivalry with the AMD Ryzen 9 7900, where it leads by a 0.3% margin. This places the i5-14600KF in the upper echelon of desktop processors, making it suitable for demanding multi-threaded applications like video rendering and software compilation. The single-core performance, with a Cinebench R23 score of 4594, ensures snappy responsiveness in everyday tasks and gaming.

Gaming Performance

The measured FPS data for this pairing shows a clear 1080p focus. At 1920x1080 ultra settings, the system achieves playable frame rates in most titles. Call of Duty: Warzone runs at 164.8 FPS, and Tom Clancy's Rainbow Six Siege hits 178 FPS, showcasing excellent performance in fast-paced shooters. Counter-Strike 2 runs at 151.9 FPS, while Fortnite achieves 69.2 FPS. The data confirms that this is a high-refresh 1080p gaming machine.

At 2560x1440, performance drops but remains playable in many titles. Warzone still manages 147.7 FPS, and Valorant runs at 287.8 FPS. However, more demanding games like Cyberpunk 2077 drop to 33 FPS, and Red Dead Redemption 2 falls to 30 FPS. At 3840x2160, the system struggles with AAA titles; Cyberpunk 2077 runs at 20.4 FPS, and Red Dead Redemption 2 at 20 FPS, making 4K gaming impractical for modern games.

Esports and older titles perform exceptionally well, with Valorant reaching 338.6 FPS at 1080p and Roblox at 194 FPS. The data indicates that for competitive gaming at 1080p, this pairing is excellent, but for 1440p and above, users must lower settings or accept lower frame rates in demanding titles. The average FPS across all games at 1080p is 100.1, which is a strong indicator of general gaming capability.

Balance and Bottleneck

The benchmark data reveals a clear CPU-favored balance. The CPU’s 90th percentile ranking versus the GPU’s 68th percentile suggests that the Arc B580 is the primary bottleneck in graphics-intensive workloads. This is evident in 4K gaming, where the GPU’s limits are exposed; for instance, Ark: Survival Ascended runs at only 6.6 FPS at 3840x2160, indicating a severe GPU limitation.

In CPU-bound scenarios, such as high-FPS esports titles, the system performs admirably. The CPU’s strong single-core performance, with a Geekbench score of 2445, ensures that games like Valorant (338.6 FPS) and Counter-Strike: Global Offensive (327.6 FPS) are not held back by the processor. The FPS scaling from 1080p to 1440p to 4K in these titles shows a gradual decline, consistent with GPU limitations rather than CPU bottlenecks.

The Passmark physics score of 2449 indicates strong CPU performance in physics simulations, which can benefit games with complex interactions. However, the GPU’s compute score of 7729 is modest, suggesting that tasks like ray tracing or AI-accelerated features will be limited. The pair rank by FPS, at 2750 out of 3732 pairs, confirms that this is an upper-mid-tier combination, with the CPU providing headroom for future GPU upgrades without becoming a bottleneck itself.

Build Overview

This is a desktop build combining the Intel Core i5-14600KF processor with the Intel Arc B580 graphics card. The CPU, part of the Core 14th Gen series, provides 14 cores and 20 threads with a boost clock of 5.30 GHz. The GPU, based on the Xe2-HPG architecture, features 2560 shading units and 12 GB of GDDR6 memory. The combined percentile ranking for this pairing is 79, placing it above most configurations.

The overall tier is solidly mid-range to upper-mid-range. The CPU’s performance is exceptional, ranking in the 90th percentile, while the GPU’s 68th percentile ranking is respectable but not top-tier. The average FPS across games at 1080p ultra settings is 100.1, which is a strong result for a system in this class. The build is well-suited for high-refresh 1080p gaming and productive workloads, but it is not designed for 4K gaming or extreme graphics rendering.

The class is explicitly desktop, with a dual-slot GPU that has a 190W TDP and a CPU with a 125W TDP. The system’s power requirements are manageable with a 450W PSU, making it an accessible build for most users. The pairing represents a balanced approach for users who prioritize CPU performance but still require capable graphics for modern games.

Usage Scenarios

For high-refresh gaming at 1080p, this system excels. The measured FPS in Valorant (338.6) and Counter-Strike 2 (151.9) demonstrates the ability to drive 144Hz or 240Hz monitors in competitive titles. Users can expect smooth gameplay in esports and lighter titles without compromising visual settings.

Streaming benefits from the CPU’s multi-core strength. The Cinebench R23 multi-core score of 32544 ensures that encoding and gaming can run concurrently without significant performance drops. The GPU’s 12GB VRAM provides ample memory for stream buffer and game assets.

Video editing is a viable workload for this build. The strong multi-threaded performance accelerates rendering in applications that utilize CPU power, while the GPU’s Vulkan score of 109672 suggests decent acceleration in compatible software. The 24 MB of L3 cache aids in handling large project files.

3D rendering in applications like Blender or Maya will see mixed results. The CPU’s Passmark integer math score of 125982 supports CPU-based rendering, but the GPU’s 13.67 TFLOPS FP32 performance is modest, making GPU-accelerated rendering slower than higher-tier cards. Users should expect acceptable but not stellar performance in this arena.

Software development is a strong suit for this CPU. The high single-core score of 4594 in Cinebench R23 speeds up compilation and code analysis. The 20 threads handle parallel builds efficiently, and the ECC memory support adds stability for critical development environments.

Student and office work is more than adequately served. The system’s performance is overkill for document editing and web browsing, but the fast single-core speeds ensure responsive application usage. The GPU is unnecessary for these tasks, but it does not detract from the experience.

GPU Analysis

The Intel Arc B580 is built on the Xe2-HPG architecture and manufactured on a 5nm process by TSMC. The chip, designated BMG-G21, contains 19,600 million transistors on a 272 mm² die. The GPU has 2560 shading units, 160 texture mapping units, and 80 raster output units. It also includes 20 ray tracing cores, providing hardware support for real-time ray tracing effects.

Memory configuration consists of 12 GB of GDDR6 on a 192-bit bus, yielding a bandwidth of 456.0 GB/s. The memory clock runs at 2375 MHz, with an effective speed of 19 Gbps. The GPU’s base and boost clocks are both 2670 MHz, which is a modest clock speed for this architecture. The pixel rate is 213.6 GPixel/s, and the texture rate is 427.2 GTexel/s.

In terms of compute, the GPU delivers 13.67 TFLOPS of FP32 performance and 27.34 TFLOPS of FP16 performance with a 2:1 ratio. These numbers indicate a mid-range card that is competitive with older high-end models. The benchmark scores support this, with the Passmark G3D score of 15748 placing it near the NVIDIA RTX 2080, which has an average score of 22895 (0.6% delta). The GPU’s percentile ranking is 68, indicating it outperforms the majority of graphics cards but does not reach the top tier.

For rendering tasks, the GPU’s performance is adequate for 1080p gaming and light 1440p work. The 3DMark Steel Nomad score of 3068 suggests it can handle modern DX12 titles at medium settings. The Geekbench OpenCL score of 92821 and Vulkan score of 109672 indicate that the card performs better in Vulkan-based applications, which is a consideration for developers targeting that API. The 12GB VRAM is a positive feature, as it provides headroom for high-resolution textures in games and moderate GPU compute workloads.