SYSTEM ANALYZER

Rate My PC: Intel Core i9-13900 + Intel Arc B580

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

94 / 100
ULTIMATE READY

Apex Performer

Top 6% 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
95%
VS
GPU
92%
PROCESSOR

Intel Core i9-13900

60,676 Benchmark Score
Top 5% 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 i9-13900 paired with the Intel Arc B580 is a high-performance desktop combination that ranks in the 80th percentile overall, driven by a top-tier 24-core CPU that sits in the 92nd percentile against all processors, while the GPU holds a more modest 68th percentile position. Benchmark data shows this is a CPU-dominant pairing where the processor’s massive multi-threaded lead over its peers is the defining characteristic, and the graphics card, while capable, is the limiting factor for demanding gaming and rendering workloads. The data confirms that this build is optimized for productivity and compute tasks that leverage the i9-13900’s 32 threads, rather than for maximizing frame rates at the highest graphics settings.

FAQ

Q: What is the combined performance percentile of this CPU and GPU pairing?

A: The build achieves an 80th percentile ranking overall, indicating it outperforms the majority of desktop configurations in the benchmark database.

Q: How does the Intel Core i9-13900 compare to its closest rival in average benchmark score?

A: The i9-13900 has an average benchmark score of 60676, which is 0.2% higher than the Intel Xeon Gold 6338T’s score of 60572, making them statistically equivalent in overall performance.

Q: What is the Intel Arc B580’s position relative to the NVIDIA GeForce RTX 2080?

A: The Arc B580 has an average benchmark score of 23021, which is 0.6% higher than the RTX 2080’s score of 22895, indicating they are near-identical in average performance.

Q: What is the CPU’s single-core performance in Cinebench R23?

A: The i9-13900 scores 5355 points in the Cinebench R23 single-core test, a strong result that supports responsive everyday use and solid gaming performance.

Q: Does this combination have measured FPS data for games?

A: No, the data for this specific combination contains no measured FPS figures; all gaming performance discussion is estimated from the CPU and GPU benchmark scores.

Q: What is the process node for the Intel Arc B580 GPU?

A: The GPU is built on a 5 nm process node at TSMC, using the Xe2-HPG architecture with 19,600 million transistors.

Q: What is the power consumption rating for the CPU and the suggested PSU for the GPU?

A: The CPU has a TDP of 65 watts, while the GPU has a TDP of 190 watts, and the suggested power supply for the system is 450 watts.

Benchmark Performance

The combined performance picture is defined by a stark contrast between the CPU and GPU. The Intel Core i9-13900 sits in the 92nd percentile of all CPUs, with an average benchmark score of 60676. This places it just 0.2% ahead of the Intel Xeon Gold 6338T and 1.1% ahead of the Intel Core i9-14900F, showing that it competes at the very top of the desktop processor hierarchy. In contrast, the Intel Arc B580 achieves a 68th percentile ranking against all GPUs, with an average score of 23021, putting it in a much lower tier. The GPU’s score is 0.6% higher than the NVIDIA GeForce RTX 2080 but 0.7% lower than the RTX 3080, showing it is roughly aligned with previous-generation high-end cards.

The combined percentile for the entire system is 80, which reflects the heavy influence of the CPU’s exceptional standing. In specific CPU tests, the i9-13900 delivers a Cinebench R23 multi-core score of 37931 and a Geekbench multi-core score of 21164, numbers that are over double what a mid-range processor would manage, while its single-core scores of 5355 in Cinebench R23 and 2604 in Geekbench are also strong. For the GPU, the 3DMark Steel Nomad DX12 score of 3068 and a Passmark G3D score of 15748 indicate a capable mid-to-high-end graphics solution, but one that is clearly not in the same class as the CPU. The data shows a system where the CPU is the star performer, and the GPU is a competent but secondary component.

CPU Analysis

The Intel Core i9-13900 is a 24-core, 32-thread processor based on the Raptor Lake architecture, built on Intel’s 10 nm process. It features a base clock of 2000 MHz and a boost clock of 5600 MHz, with a 36 MB shared L3 cache, and it supports both DDR4 and DDR5 memory in a dual-channel configuration. This core configuration is the primary driver of its exceptional multi-threaded benchmark results, such as the Cinebench R23 multi-core score of 37931 and the Passmark multithread score of 45680. These scores indicate that the CPU can handle heavily parallel workloads like video rendering, 3D simulation, and software compilation with significant headroom.

The single-thread performance, while not as dominant, is still robust, with a Cinebench R23 single-core score of 5355 and a Passmark single-thread score of 4309. This ensures that the processor does not lag in tasks that rely on fewer cores, such as general application responsiveness and many gaming scenarios. The CPU’s 92nd percentile ranking against all CPUs reflects its balanced high-end performance. Its nearest rivals, such as the AMD Ryzen 9 7945HX, are within 1% of its average score, confirming that the i9-13900 is at the forefront of desktop processing power, albeit not the absolute fastest in every metric. The integrated UHD Graphics 770 provides a basic display output, but the presence of the Arc B580 makes it redundant for graphics tasks.

Balance and Bottleneck

The performance data reveals a clear bottleneck scenario where the GPU is the limiting factor in most graphics-intensive workloads. The CPU’s 92nd percentile ranking versus the GPU’s 68th percentile ranking creates a significant imbalance; the i9-13900 is capable of feeding far more data than the Arc B580 can process. For example, in a gaming scenario, the CPU could calculate game logic and physics frames much faster than the GPU can render them, meaning that the frame rate will be dictated by the GPU’s output. This is a classic CPU-bound-to-GPU-bound imbalance, but in the opposite direction of most budget systems; here, the CPU is overqualified relative to the GPU.

The Passmark physics score of 2484 for the CPU further illustrates its computational power, which is far beyond what is needed to keep up with the Arc B580’s frame output. The GPU’s Passmark G3D score of 15748 and its 0.7% deficit against the RTX 3080 suggest that its rendering throughput is the primary constraint in this pairing. For workloads that are purely computational, such as data compression (Passmark score of 577285) or integer math (Passmark score of 176107), the CPU will dominate, and the GPU will be idle, resulting in excellent performance. However, for any task that relies on the GPU, such as gaming or GPU-accelerated rendering, the Arc B580 will be the component that determines the maximum performance ceiling.

Upgrade Path and Platform

The platform is built around the Intel Socket 1700, which supports the Raptor Lake architecture. The CPU supports both DDR4 and DDR5 memory in a dual-channel configuration, providing flexibility for builders to choose between older, more affordable memory or newer, faster DDR5 modules. The CPU provides PCIe Gen 5 with 16 lanes, while the GPU uses a PCIe 4.0 x8 interface, ensuring that the graphics card has sufficient bandwidth for its data transfer needs. The CPU’s TDP is rated at 65 watts, and the GPU’s TDP is 190 watts, leading to a suggested power supply rating of 450 watts for the entire system, which is a modest requirement for the combined hardware.

Given the GPU is the weaker component, the most sensible next upgrade would be to replace the Intel Arc B580 with a higher-performing graphics card. The data shows that a GPU like the RTX 3080, which scores 0.7% higher, would be a marginal improvement, so a more substantial upgrade would be required to significantly balance the system. The CPU has a launch MSRP of $549, and its active production status means it remains a viable modern choice. With 16 PCIe Gen 5 lanes from the CPU, there is ample room for future high-speed storage devices, and the dual-channel memory support means adding more RAM is straightforward. The platform is not a dead-end, but the CPU is already at the top of its generation, so future upgrades would focus on the GPU and memory.

Gaming Performance

There are no measured FPS figures for this specific CPU and GPU combination, so all gaming performance estimates are derived from the individual benchmark scores. Based on the CPU’s strong single-core performance of 5355 in Cinebench R23 and the GPU’s Passmark G3D score of 15748, this system is estimated to handle 1080p gaming with high frame rates in most titles. The Arc B580’s 12 GB of GDDR6 memory and 456.0 GB/s bandwidth provide enough capacity and speed for modern game assets at this resolution, but scores suggest it will struggle to maintain high frame rates at 1440p or 4K with ultra settings.

In comparison to its rivals, the GPU’s performance is similar to the RTX 2080, which is a capable 1440p card, but the data suggests that at ultra settings, users should target 1080p for a consistently smooth experience. The CPU will not be a limiting factor, as its single-thread performance is far above what is required to drive the GPU to its maximum output. The estimated FPS for esports titles at 1080p would likely be very high, but for demanding AAA games with ray tracing (the GPU has 20 RT cores), the frame rate will drop significantly, and users may need to lower settings. Overall, the system is best suited for 1080p gaming, with the potential for 1440p in less demanding titles.

Usage Scenarios

High-Refresh Gaming: For 1080p gaming, this build is well-suited to high-refresh monitors, as the CPU’s strong single-core performance ensures high frame rates, though the GPU will be the limiting factor in keeping those rates consistently high in demanding titles.

Streaming: The Intel Core i9-13900’s 24 cores and 32 threads offer ample headroom for encoding a video stream while gaming, as the Passmark multithread score of 45680 shows minimal impact on game performance when using CPU-based encoding.

Video Editing: The CPU’s Cinebench R23 multi-core score of 37931 makes this an excellent system for video editing, providing fast export times and smooth timeline scrubbing, while the GPU’s 12 GB VRAM can assist with effects and rendering.

3D Rendering: For 3D applications that use the CPU, this is a top-tier system, as the 92nd percentile CPU ranking and Geekbench multi-core score of 21164 deliver outstanding performance. However, for GPU-accelerated renderers, the Arc B580’s 68th percentile ranking will slow down final frame renders compared to a higher-tier GPU.

Software Development: The high core count and strong multi-threaded performance make this ideal for compiling large codebases, with the Passmark integer math score of 176107 indicating rapid build times, while the 32 threads allow for numerous parallel virtual machines or containers.

Student and Office Work: This pairing is massively overqualified for productivity tasks like word processing and spreadsheets, where the CPU’s single-core speed of 4309 in Passmark ensures instant responsiveness, but the system’s power and cost are unnecessary for such basic workloads.

Build Overview

This is a desktop-class build featuring the Intel Core i9-13900 CPU and the Intel Arc B580 GPU, representing a pairing of a top-tier enthusiast processor with a mid-range graphics card. The build’s overall tier is defined by its 80th combined percentile, which is a strong score, but one that is heavily skewed by the CPU. The i9-13900 is a flagship processor, evident from its 92nd percentile rank, while the Arc B580 is a solid mainstream GPU, as indicated by its 68th percentile rank. This is not a balanced configuration; it is a CPU-centric build that prioritizes processing power over graphical fidelity.

The system is designed for users who need maximum CPU compute performance for tasks like rendering, video encoding, and data analysis. The GPU is sufficient for 1080p gaming and general graphics acceleration, but it is not the primary selling point of this build. The data suggests that this is a workstation-class CPU paired with a consumer-grade GPU, creating a system that excels in productivity and compute workloads while providing a capable, but not exceptional, gaming experience.

Who Should Build It

This build is intended for users whose primary workload is CPU-intensive and who require occasional or secondary gaming capability. Content creators, such as video editors and 3D animators, will benefit significantly from the CPU’s multi-threaded power, as seen in its Cinebench R23 score, making render and export times dramatically shorter than on lower-core-count systems. Software developers and data scientists will find the 24 cores and 32 threads ideal for compilation, simulation, and data processing tasks, with the Passmark data compression score of 577285 highlighting its throughput.

For gamers, this system is for those who play at 1080p resolution and prioritize high frame rates over maximum graphical settings, as the Arc B580 provides solid performance in this range, but it will not satisfy those seeking 4K ultra gaming. Students and small business users in technical fields, such as engineering or architecture, would benefit from the CPU’s power for CAD and analysis software, but for general office work, this is an excessive amount of processing power. The pairing is best for a professional or prosumer who needs a high-end CPU for work and wants a competent, modern GPU for entertainment without the need for a top-tier graphics card.