SYSTEM ANALYZER

Rate My PC: AMD Ryzen 9 7900X + Intel Arc A310E

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

85 / 100
HIGH-END

Power Build

Top 15% of systems. Excellent for 1440p Ultra or 4K High gaming.

1440p Ultra4K High

System Balance Analysis

CPU vs GPU performance ratio
GPU Bottleneck
CPU
95%
VS
GPU
74%

Your GPU is limiting system performance. Consider upgrading to a more powerful graphics card to better utilize your CPU.

PROCESSOR

AMD Ryzen 9 7900X

53,288 Benchmark Score
Top 5% Market Ranking
View Full Specs →
GRAPHICS CARD

Intel Arc A310E

0 Benchmark Score
Top 26% 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.

Bottleneck Detected

GPU Bottleneck - Upgrading the weaker component will improve overall performance.

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

# AMD Ryzen 9 7900X + Intel Arc A310E: A Desktop Pairing Analysis

This pairing combines a 12-core, 24-thread desktop flagship CPU with a low-profile, entry-level Intel Arc GPU. The AMD Ryzen 9 7900X sits at the 91st percentile among all CPUs, while the Intel Arc A310E lands at the 50th percentile among GPUs. The combined build percentile is 71, placing this system in the upper-midrange tier for desktop configurations. No measured FPS data exists for this exact combination; all frame rate discussions below are estimated from the benchmark scores.

Usage Scenarios

High-refresh gaming: This CPU is not the limiting factor for high-refresh gaming, but the GPU is. The Ryzen 9 7900X scores 1093 in the single-thread 3DMark test and 2137 in the 2-thread test, indicating strong per-core performance that can feed frames quickly. However, the Arc A310E's 50th percentile GPU standing, combined with its 3.072 TFLOPS FP32 throughput and 4 GB GDDR6 memory on a 64-bit bus, suggests that 1080p high-refresh gaming at maximum settings is likely out of reach. Estimated frame rates at 1080p ultra would likely fall below 60 FPS in most modern titles.

Streaming: The 12-core, 24-thread CPU with a Cinebench R23 multicore score of 29300 provides ample headroom for simultaneous game capture, encoding, and broadcast. The Arc A310E includes 6 ray tracing cores and supports DirectX 12 Ultimate, but its modest GPU horsepower means that streaming at high quality settings would require careful in-game graphics tuning. The CPU's Passmark multithread score of 51406 and data encryption score of 37263 indicate strong parallel processing for encoding workloads.

Video editing: This is a strong scenario for this pairing. The CPU's Geekbench multicore score of 19267 and Cinebench R15 multicore score of 4820.5 demonstrate serious multi-threaded rendering capability. The GPU's 768 shading units and 16 ROPs can assist with effects and compositing, though the 4 GB VRAM capacity may limit complex timelines with high-resolution footage. The CPU's 64 MB shared L3 cache and 83.2 GB/s memory bandwidth help sustain large file operations.

3D rendering: The CPU dominates here. With a Cinebench R23 multicore score of 29300 and a Passmark floating point math score of 103952, the Ryzen 9 7900X handles CPU-based rendering exceptionally well. The Arc A310E's 3.072 TFLOPS FP32 and 6.144 TFLOPS FP16 (2:1) performance provides some GPU-accelerated rendering capability, but its 50th percentile GPU position means it will not compete with midrange or high-end discrete GPUs for GPU rendering tasks.

Software development: Compilation workloads benefit significantly from the CPU's 12 cores and 24 threads. The Passmark integer math score of 169273 and random string sorting score of 74658 indicate strong performance for code compilation and data processing. The CPU supports ECC memory, which is valuable for development servers or workstations where data integrity is critical. The 4 GB GPU memory may limit certain GPU-accelerated development tasks like machine learning model training.

Student and office work: This pairing is substantially overprovisioned for typical office workloads. The CPU's Passmark single-thread score of 4238 and 3DMark single-thread score of 1093 ensure snappy application responsiveness. The Arc A310E's single-slot, low-profile design with no power connectors makes it easy to install in standard office chassis, and its 75 W TDP keeps cooling requirements minimal. The 4x mini-DisplayPort 2.0 outputs support multi-monitor productivity setups.

Benchmark Performance

The Ryzen 9 7900X delivers exceptional CPU benchmark results. Its average benchmark score of 53288 places it at the 91st percentile of all CPUs, with nearest rivals including the AMD EPYC 7313P (0.2% higher), Intel Xeon Phi 7290 (0.3% lower), Intel Xeon 634 (0.6% higher), and Intel Core i7-14700F (0.6% lower). The CPU's Cinebench R23 multicore score of 29300 and single-core score of 2016.5 demonstrate balanced performance across both heavily threaded and lightly threaded workloads. Geekbench results show 19267 multicore and 2617 single-core, while 3DMark tests scale from 1093 single-thread to 12536 max-threads.

The Intel Arc A310E has no benchmark entries in the data, but its percentile versus all GPUs is 50, placing it exactly at the median. The GPU's architectural specifications include 768 shading units, 32 TMUs, 16 ROPs, and 6 ray tracing cores. Memory performance shows 124.0 GB/s bandwidth from 4 GB of GDDR6 on a 64-bit bus. The GPU runs at a fixed 2000 MHz clock for both base and boost, with memory at 1937 MHz (15.5 Gbps effective). Its FP32 throughput of 3.072 TFLOPS places it in entry-level discrete GPU territory.

The combined build percentile of 71 reflects a system where the CPU is far stronger than the GPU. The 20-percentage-point gap between CPU (91st percentile) and GPU (50th percentile) creates a fundamentally unbalanced configuration for graphics-intensive workloads. For CPU-bound tasks like rendering, compilation, and data processing, this system performs at near-flagship levels. For GPU-bound tasks like gaming at high resolutions or GPU-accelerated rendering, the system performs at entry-level mainstream levels.

Balance and Bottleneck

The performance asymmetry in this pairing is pronounced. The Ryzen 9 7900X at the 91st CPU percentile paired with the Arc A310E at the 50th GPU percentile creates a system where the GPU is the clear limiting factor for any graphics-intensive workload. The CPU's 3DMark max-threads score of 12536 indicates it can process game logic, physics, and AI calculations far faster than the GPU can render frames.

In gaming scenarios, the bottleneck will almost always be the GPU. The Arc A310E's 3.072 TFLOPS FP32 throughput and 124.0 GB/s memory bandwidth are typical of entry-level GPUs, while the CPU's Passmark physics score of 3060 and floating point math score of 103952 suggest it can handle complex game simulations without breaking a sweat. At 1080p resolution, the CPU could likely push frame rates well above 100 FPS in many titles, but the GPU would cap output at significantly lower levels.

For productivity workloads, the balance shifts. CPU-heavy tasks like video encoding, 3D rendering, and software compilation will be limited by the CPU, which performs admirably. GPU-accelerated tasks like effects rendering, GPU-based encoding, or machine learning inference will be limited by the Arc A310E's modest compute resources and 4 GB memory capacity. The GPU's 64-bit memory bus and 124.0 GB/s bandwidth may cause performance drops when working with large textures or datasets that exceed the 4 GB VRAM.

The FPS scaling picture, estimated from benchmark scores rather than measured data, suggests that lowering resolution from 1440p to 1080p would yield modest gains because the GPU is already the bottleneck at both resolutions. Similarly, reducing graphics settings from ultra to medium would provide some improvement but would not unlock the CPU's full potential. The system's overall performance ceiling in gaming is defined by the GPU's 50th percentile standing, not the CPU's 91st percentile position.

Upgrade Path and Platform

The AMD Ryzen 9 7900X uses the AMD Socket AM5 platform, which supports DDR5 memory in a dual-channel configuration with 83.2 GB/s bandwidth. The CPU provides 24 PCIe Gen 5 lanes, offering substantial bandwidth for future expansion. The platform supports ECC memory, which is unusual for consumer desktop CPUs and valuable for workstation builds. The CPU's unlocked multiplier allows overclocking, though the 170 W TDP requires adequate cooling.

The Intel Arc A310E connects via PCIe 4.0 x8 and has a 75 W TDP with no power connectors required. The suggested PSU of 250 W indicates that power supply requirements are minimal for the GPU alone. However, the CPU's 170 W TDP plus the GPU's 75 W TDP, along with other system components, would realistically require a larger power supply than the GPU's individual 250 W suggestion. The GPU is single-slot and measures 168 mm in length, 69 mm in height, and 20 mm in width.

A sensible next upgrade for this system would be replacing the Arc A310E with a more powerful GPU. The CPU's 91st percentile performance and PCIe Gen 5 support ensure that it would not bottleneck a significantly faster graphics card. The platform's DDR5 memory support and dual-channel configuration provide adequate bandwidth for high-end GPUs. The 24 PCIe Gen 5 lanes from the CPU offer future-proofing for storage and expansion cards.

The GPU's production status is end-of-life, with its successor being Battlemage. This means the Arc A310E is at the end of its product cycle, making a GPU upgrade increasingly compelling over time. The CPU remains in active production, so the AM5 platform has ongoing support. The system's 170 W CPU TDP and 75 W GPU TDP combine for a total of 245 W of component power draw, leaving headroom in most desktop power supplies.

Gaming Performance

No measured FPS data exists for this exact CPU+GPU combination. All frame rate figures in this section are estimates derived from the benchmark scores and architectural specifications. The CPU's single-thread performance of 1093 in 3DMark and 4238 in Passmark single-thread indicates it can support high frame rates in CPU-bound scenarios. However, the GPU's 50th percentile standing and 3.072 TFLOPS FP32 throughput suggest entry-level gaming performance.

At 1080p ultra settings, estimated frame rates in modern AAA titles would likely range from 30-50 FPS depending on the game's optimization. The Arc A310E's 4 GB GDDR6 memory on a 64-bit bus with 124.0 GB/s bandwidth may cause texture streaming issues in games that require more than 4 GB of VRAM at ultra settings. Competitive esports titles like CS:GO or Valorant, which are less GPU-intensive, might achieve 60-100 FPS at 1080p with reduced settings.

At 1440p, estimated frame rates would drop significantly. The GPU's 16 ROPs and 32 TMUs limit pixel and texture throughput, resulting in likely sub-30 FPS performance in demanding titles at high settings. The 4 GB VRAM capacity becomes a more significant limitation at 1440p, where textures often exceed this capacity. The GPU's 64.00 GTexel/s texture rate and 32.00 GPixel/s pixel rate are typical of entry-level cards.

Ray tracing performance, enabled by the 6 ray tracing cores and DirectX 12 Ultimate support, would be minimal. The GPU's modest compute resources mean ray-traced effects would likely reduce frame rates to unplayable levels in most games. The 50th percentile GPU ranking places this card at the midpoint of all GPUs, indicating it performs better than integrated graphics but well below dedicated gaming GPUs.

FAQ

Q: What is the CPU's single-thread performance relative to its multi-thread performance?

A: The Ryzen 9 7900X scores 1093 in 3DMark single-thread and 2016.5 in Cinebench R23 single-core, while achieving 12536 in 3DMark max-threads and 29300 in Cinebench R23 multicore. This indicates strong scaling from single to multi-threaded workloads, with the multicore scores being approximately 11.5 times higher in 3DMark and 14.5 times higher in Cinebench R23.

Q: What memory type does this system support?

A: The Ryzen 9 7900X supports DDR5 memory in a dual-channel configuration with 83.2 GB/s bandwidth. It also supports ECC memory, which is beneficial for workstation and data integrity-sensitive applications. The memory bus is dual-channel, providing balanced read and write performance.

Q: Is the Intel Arc A310E still in production?

A: No, the Arc A310E has a production status of end-of-life. Its release date was March 31, 2024, and its successor is Battlemage. The GPU's predecessor was Xe Graphics. The GPU is described as a single-slot, low-profile card measuring 168 mm in length with no power connectors required.

Q: What is the CPU's 91st percentile ranking compared to its nearest rivals?

A: The Ryzen 9 7900X has an average benchmark score of 53288, placing it at the 91st percentile of all CPUs. Its nearest rivals include the AMD EPYC 7313P (0.2% higher), Intel Xeon Phi 7290 (0.3% lower), Intel Xeon 634 (0.6% higher), and Intel Core i7-14700F (0.6% lower). These deltas are all within 1%, indicating very close performance.

Q: What is the GPU's memory configuration and bandwidth?

A: The Intel Arc A310E features 4 GB of GDDR6 memory on a 64-bit bus with 124.0 GB/s bandwidth. The memory clock runs at 1937 MHz with 15.5 Gbps effective speed. This configuration is typical for entry-level GPUs and may limit performance in memory-intensive applications.

Q: What are the system's power requirements?

A: The CPU has a TDP of 170 W, and the GPU has a TDP of 75 W. The suggested PSU for the GPU is 250 W. The GPU requires no power connectors and is single-slot. The combined TDP of CPU and GPU is 245 W, leaving headroom for other components within a standard desktop power supply.

Q: What is the CPU's cache configuration?

A: The Ryzen 9 7900X has 64 KB of L1 cache per core, 1 MB of L2 cache per core, and 64 MB of shared L3 cache. The CPU is based on the Zen 4 architecture with a 5 nm process node from TSMC, featuring 13,140 million transistors across a die size of 2x 71 mm².

CPU Analysis

The AMD Ryzen 9 7900X is a 12-core, 24-thread desktop processor from the 7000 series, built on the Zen 4 architecture with the codename Raphael. It runs on the AMD Socket AM5 platform and is manufactured on a 5 nm process at TSMC with 13,140 million transistors across a dual-chiplet design of 2x 71 mm². The CPU has a base clock of 4.70 GHz and a boost clock of 5.60 GHz, with a TDP of 170 W. It was released on September 26, 2022, with a launch MSRP of $549.

The cache hierarchy consists of 64 KB of L1 cache per core, 1 MB of L2 cache per core, and 64 MB of shared L3 cache. Memory support includes DDR5 in a dual-channel configuration with 83.2 GB/s bandwidth, plus ECC memory support. The CPU provides 24 PCIe Gen 5 lanes and includes integrated Radeon Graphics. The multiplier is unlocked, allowing overclocking, and the part number is 100-000000589.

Benchmark performance places this CPU at the 91st percentile of all CPUs with an average score of 53288. The 3DMark scores scale from 1093 single-thread to 12536 max-threads, showing strong multi-threading efficiency. Cinebench R23 results show 29300 multicore and 2016.5 single-core, while Geekbench shows 19267 multicore and 2617 single-core. Passmark tests reveal specific strengths: integer math at 169273, floating point math at 103952, data compression at 632505, and data encryption at 37263. The extended instructions score of 47619 indicates robust SIMD and vector processing capability.

The CPU's nearest rivals include the AMD EPYC 7313P (0.2% faster), Intel Xeon Phi 7290 (0.3% slower), Intel Xeon 634 (0.6% faster), and Intel Core i7-14700F (0.6% slower). These small deltas indicate that the Ryzen 9 7900X sits in a tightly contested performance band. The 64 MB shared L3 cache provides substantial data reuse benefits for workloads with large working sets, while the dual-channel DDR5 memory with 83.2 GB/s bandwidth delivers adequate memory throughput for most applications.

Build Overview

This build pairs the AMD Ryzen 9 7900X desktop CPU with the Intel Arc A310E desktop GPU. The build class is desktop, and the combined percentile is 71, placing this system in the upper-midrange tier overall. The CPU's 91st percentile ranking is the dominant contributor to this combined score, while the GPU's 50th percentile ranking pulls the overall position down from what a CPU-only evaluation would suggest.

The CPU is a 12-core, 24-thread processor with 170 W TDP, based on the Zen 4 architecture. The GPU is an entry-level discrete card with 4 GB GDDR6 memory, 768 shading units, and a 75 W TDP. The system requires an AM5 motherboard with DDR5 memory support. The GPU connects via PCIe 4.0 x8 and requires no power connectors, while the CPU's 24 PCIe Gen 5 lanes provide substantial expansion capability.

This pairing is unusual in that it combines a flagship-tier CPU with an entry-level GPU. The CPU's 91st percentile performance suggests it belongs in a high-end build, while the GPU's 50th percentile ranking suggests a mainstream or budget-oriented configuration. The resulting system excels at CPU-intensive workloads like rendering, compilation, and data processing, but delivers only entry-level gaming performance. The combined percentile of 71 reflects this mixed positioning.

The Arc A310E is a single-slot GPU measuring 168 mm in length, 69 mm in height, and 20 mm in width. It features 4x mini-DisplayPort 2.0 outputs and supports DirectX 12 Ultimate (12_2), OpenGL 4.6, and Vulkan 1.4. The GPU has 6 ray tracing cores and 16 ROPs, with a pixel rate of 32.00 GPixel/s and texture rate of 64.00 GTexel/s. Its 3.072 TFLOPS FP32 and 6.144 TFLOPS FP16 (2:1) performance place it in the entry-level segment.

Who Should Build It

1080p gamers on a budget: The Arc A310E's 50th percentile GPU ranking and 3.072 TFLOPS FP32 throughput can handle lighter esports titles at 1080p with reduced settings. The CPU's 91st percentile performance ensures no CPU-based frame rate limits. However, gamers seeking ultra settings or high refresh rates should consider a more powerful GPU.

Content creators prioritizing CPU workloads: Video editors and 3D artists who rely primarily on CPU-based rendering will benefit from the Ryzen 9 7900X's Cinebench R23 multicore score of 29300 and Geekbench multicore score of 19267. The GPU can assist with effects and display output but is not the primary compute engine. The 64 MB L3 cache and 83.2 GB/s memory bandwidth support large project files.

Software developers: The Passmark integer math score of 169273 and data compression score of 632505 indicate strong compilation and data processing performance. The 12 cores and 24 threads handle parallel build systems effectively. ECC memory support adds data integrity for development workstations.

Students and office workers needing multi-monitor setups: The GPU's 4x mini-DisplayPort 2.0 outputs support up to four displays, while the CPU's single-thread performance of 4238 in Passmark ensures responsive application usage. The single-slot GPU with no power connectors simplifies installation in standard office chassis.

Small business workstations: The CPU's 91st percentile ranking and active production status make this a reliable choice for demanding business applications. The GPU's end-of-life status may be a concern for long-term support, but its 75 W TDP and passive cooling requirements (implied by no power connectors) suit office environments. The system's combined 71st percentile places it above the majority of desktop configurations.

Users planning a future GPU upgrade: The CPU's 24 PCIe Gen 5 lanes and 91st percentile performance ensure that upgrading the Arc A310E to a more powerful GPU will unlock significantly better gaming and GPU-accelerated performance. The AM5 platform and DDR5 memory support provide a solid foundation for future expansion. The launch MSRP of $549 for the CPU reflects its position near the top of the desktop processor hierarchy.