SYSTEM ANALYZER

Rate My PC: AMD Ryzen 9 7900 + Intel Arc A750

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
91%
PROCESSOR

AMD Ryzen 9 7900

49,228 Benchmark Score
Top 6% Market Ranking
View Full Specs →
GRAPHICS CARD

Intel Arc A750

20,582 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 9 7900 and Intel Arc A750 form a desktop pairing that combines a high-core-count Zen 4 processor with a mid-range Alchemist graphics card. The FACT PACK contains no measured FPS rows for this exact combination, so all frame rate discussions in this analysis are estimates derived from the benchmark scores and percentile positions of the individual components.

Gaming Performance — measured FPS by game and resolution

The FACT PACK contains no measured FPS data for this CPU+GPU combination; the `measuredFpsUltraByGame` field is empty and `dataIsMeasured` is false. Consequently, all gaming performance figures presented here are qualitative estimates based on the benchmark scores of the Intel Arc A750 and the AMD Ryzen 9 7900, not direct measurements.

The GPU’s PassMark G3D score of 12534 places it in the 66th percentile among all GPUs, indicating it is positioned above the median but not at the top tier. With 8 GB of GDDR6 memory on a 256-bit bus delivering 512.0 GB/s of bandwidth, the Arc A750 is capable of handling modern titles at 1080p with high detail settings, likely producing smooth frame rates in most esports and older AAA games. At 1440p, the same bandwidth and 17.20 TFLOPS of FP32 compute should sustain playable performance, though frame rates will drop noticeably from 1080p as pixel count increases.

The Ryzen 9 7900’s single-thread score of 1069 in 3DMark and 1966 in Cinebench R23 suggest that the CPU will not bottleneck the GPU in most gaming scenarios, providing strong per-core performance that keeps frame pacing consistent. Given the GPU’s 66th percentile rank, a reasonable expectation is that the pairing handles 1080p ultra settings in most titles at frame rates exceeding 60 FPS, while 1440p ultra would be more demanding and likely require settings adjustments for consistently high refresh rates. The absence of measured data means these are estimates, and actual performance will vary by title, driver maturity, and system configuration.

Benchmark Performance

The CPU’s average benchmark score is 49228, placing it in the 90th percentile of all CPUs, while the GPU’s average score is 20582, putting it in the 66th percentile of all GPUs. The combined percentile for this desktop build is 78, reflecting a system where the processor is significantly stronger relative to its peers than the graphics card is relative to its own class.

In multi-threaded workloads, the Ryzen 9 7900 demonstrates clear strength: a Cinebench R23 multicore score of 24776 and a Geekbench multicore score of 17726. Its 3DMark max-threads score of 10953 and PassMark multithread score of 48347 reinforce this pattern. The CPU’s nearest rivals show a tight cluster: the AMD Ryzen 7 PRO 5755G sits at 49196 (0.1% behind), the Intel Core i5-14600KF at 49394 (0.3% ahead), the Intel Core Ultra 5 245 at 48995 (0.5% behind), and the Intel Xeon Gold 5318H at 48698 (1.1% behind). This indicates the 7900 is effectively tied with those competitors, within a single percentage point either way.

The GPU’s benchmark picture is more modest. Its 3DMark Steel Nomad DX12 score is 2612, Geekbench OpenCL is 98554, and Vulkan is 85631. PassMark G3D at 12534 and GPU Compute at 5368 show the card’s compute capabilities. The nearest GPU rivals include the Intel Arc B570 at 20556 (0.1% behind), NVIDIA GeForce RTX 3070 Mobile at 20534 (0.2% behind), AMD Radeon R9 M390X at 20662 (0.4% ahead), and NVIDIA Quadro M4000M at 20480 (0.5% ahead). The Arc A750 is therefore statistically indistinguishable from these cards in aggregate benchmark score, though its actual gaming performance will depend heavily on driver optimization and API support.

The combined picture is a system with excellent CPU headroom and adequate but not exceptional GPU power. The 90th percentile CPU will excel in threaded productivity tasks, while the 66th percentile GPU anchors gaming performance at mid-range levels.

FAQ

Q: Is the AMD Ryzen 9 7900 a good match for the Intel Arc A750?

A: The CPU’s 90th percentile rank versus the GPU’s 66th percentile rank suggests a significant performance imbalance. The processor is far stronger than the graphics card, meaning the GPU will be the limiting factor in gaming, while the CPU provides ample headroom for multitasking and productivity.

Q: How much VRAM does the Intel Arc A750 have and does it matter?

A: The card has 8 GB of GDDR6 memory on a 256-bit bus. This capacity is adequate for 1080p and 1440p gaming in most current titles, but texture-heavy games at higher resolutions may exceed it, leading to reduced performance.

Q: What is the CPU’s single-thread performance compared to its multi-thread performance?

A: The Ryzen 9 7900 scores 1069 in 3DMark single-thread and 1966 in Cinebench R23 single-core, while its multi-thread scores are 10953 in 3DMark max-threads and 24776 in Cinebench R23 multicore. The multi-thread advantage is substantial, showing a 12-core processor that scales well with threaded workloads.

Q: Does the Arc A750 support modern graphics APIs?

A: Yes, it supports DirectX 12 Ultimate (12_2), Vulkan 1.4, and OpenGL 4.6. This means it is compatible with current and upcoming games that utilize these APIs, though driver maturity can affect real-world results.

Q: What is the combined performance percentile of this build?

A: The combined percentile is 78, which places this desktop system above the majority of configurations but below top-tier gaming or workstation machines, reflecting the strong CPU and mid-range GPU.

Q: How does the CPU compare to its nearest rival, the Intel Core i5-14600KF?

A: The Ryzen 9 7900 has an average benchmark score of 49228, which is 0.3% lower than the Intel Core i5-14600KF’s 49394. This difference is negligible, indicating near-identical aggregate performance.

Q: Is the GPU production status a concern for long-term use?

A: The Intel Arc A750 is marked as end-of-life, with the successor being Battlemage. This means new supply may be limited, but the card remains functional and supported by drivers.

Who Should Build It

This desktop pairing targets users who need substantial CPU horsepower for multi-threaded workloads but do not require top-tier GPU performance. Gamers at 1080p will find the Arc A750’s 66th percentile position suitable for high-detail play, though those aiming for 1440p or high refresh rates at 4K would need a stronger card. Content creators working with video editing or 3D rendering will benefit from the Ryzen 9 7900’s 12 cores and 24 threads, evidenced by the Cinebench R23 multicore score of 24776, which handles encoding and rendering tasks efficiently.

Software developers compiling large codebases or running virtual machines will appreciate the CPU’s PassMark multithread score of 48347 and its data encryption score of 34708, indicating strong parallel throughput. Students and small business users building a workstation for office applications, spreadsheets, and light media editing will find the CPU overkill for basic tasks but valuable for occasional heavy workloads. The combination is less suitable for enthusiasts seeking maximum gaming frame rates or professionals requiring GPU compute at scale, as the Arc A750’s PassMark GPU compute score of 5368 limits its utility in machine learning or CUDA-accelerated applications.

Balance and Bottleneck

The data clearly shows the GPU is the limiting component in this pairing. The Ryzen 9 7900 sits in the 90th percentile of all CPUs, while the Arc A750 rests in the 66th percentile of GPUs. In gaming, this means the graphics card will cap frame rates well before the processor becomes a constraint, particularly at higher resolutions where pixel throughput dominates. The GPU’s FP32 performance of 17.20 TFLOPS and pixel rate of 268.8 GPixel/s define the ceiling for graphical output, and the CPU’s single-thread score of 1069 in 3DMark is more than sufficient to feed the card in most scenarios.

In productivity workloads, the balance shifts. The CPU’s Cinebench R23 multicore score of 24776 and PassMark integer math score of 164075 indicate that threaded tasks scale well with the 12 cores, and the GPU’s compute capabilities become secondary. For tasks like video encoding or 3D rendering that use both components, the GPU’s 17.20 TFLOPS FP32 and 34.41 TFLOPS FP16 provide acceleration, but its 66th percentile rank means it will not keep pace with the CPU’s 90th percentile throughput. The result is a system where the CPU excels at compute-heavy work, while the GPU defines the gaming experience and accelerates specific rendering tasks without matching the processor’s relative strength.

GPU Analysis

The Intel Arc A750 is built on the Xe-HPG architecture with the DG2-512 chip, manufactured on a 6nm process at TSMC. It packs 21,700 million transistors across a 406 mm² die, with 3584 shading units, 224 texture mapping units, and 112 raster output pipelines. The card operates at a base clock of 2050 MHz and a boost clock of 2400 MHz, with memory running at 2000 MHz (16 Gbps effective) on an 8 GB GDDR6 interface. The 256-bit bus delivers 512.0 GB/s of bandwidth, which is substantial for the card’s class and supports its pixel rate of 268.8 GPixel/s and texture rate of 537.6 GTexel/s.

Ray tracing is handled by 28 dedicated RT cores, and the card supports DirectX 12 Ultimate, Vulkan 1.4, and OpenGL 4.6. The 3DMark Steel Nomad DX12 score of 2612 and PassMark G3D score of 12534 indicate mid-range rasterization performance, while Geekbench OpenCL at 98554 and Vulkan at 85631 show respectable compute throughput. The FP32 performance of 17.20 TFLOPS and FP16 of 34.41 TFLOPS (2:1 ratio) are competitive for rendering tasks that leverage these capabilities. However, the card’s 66th percentile rank and nearest rivals, including the Intel Arc B570 and NVIDIA GeForce RTX 3070 Mobile with delta percentages under 0.5%, show it is firmly in the middle of the GPU performance spectrum. The 225W TDP and suggested 550W PSU indicate moderate power requirements, and the dual-slot design with 1x HDMI 2.1 and 3x DisplayPort 2.0 outputs supports multi-monitor setups.

CPU Analysis

The AMD Ryzen 9 7900 is a 12-core, 24-thread desktop processor from the 7000 series, built on the Zen 4 architecture codenamed Raphael. It uses a 5nm process at TSMC, with 13,140 million transistors across a 2x 71 mm² die. The base clock is 3.70 GHz with a boost clock of 5.40 GHz, and the 65W TDP reflects efficient power management for a high-core-count chip. The cache hierarchy includes 64 KB L1 per core, 1 MB L2 per core, and 64 MB of shared L3 cache, totaling a substantial pool for data-intensive workloads.

The CPU’s benchmark scores highlight its multi-threaded strength: a PassMark multithread score of 48347, Cinebench R23 multicore of 24776, and Geekbench multicore of 17726. Single-thread performance is also solid, with PassMark single-thread at 4130, Cinebench R23 single-core at 1966, and 3DMark single-thread at 1069. Extended instructions score 42253 in PassMark, and data compression hits 577847, showing proficiency in specialized tasks. The 90th percentile rank places it above the vast majority of CPUs, and its nearest rivals are within 1.1% in aggregate score, confirming its competitive position. Memory support includes DDR5 with dual-channel bandwidth of 83.2 GB/s and ECC capability, which is valuable for workstation stability. The CPU connects via PCIe Gen 5 with 24 lanes, and integrated Radeon Graphics provides a fallback display output. The unlocked multiplier allows overclocking, and the launch MSRP is $429.

Build Overview

This desktop build pairs the AMD Ryzen 9 7900, a 12-core Zen 4 processor, with the Intel Arc A750, a mid-range Xe-HPG graphics card. The CPU’s 90th percentile and GPU’s 66th percentile produce a combined percentile of 78, indicating a system that outperforms most configurations but does not reach the highest tier. The processor is a high-end part for its generation, while the GPU is positioned in the middle of the market, creating a workstation-leaning balance where CPU-bound tasks dominate.

The build class is desktop, and the components are compatible through the AM5 socket and PCIe 4.0 x16 interface. The CPU is active in production, while the GPU is end-of-life, which may affect availability. Overall, this is a system for users who prioritize multi-threaded compute performance over raw gaming graphics, offering strong CPU throughput with adequate GPU support for mainstream gaming and light rendering.

Upgrade Path and Platform

The AMD Ryzen 9 7900 uses the AMD Socket AM5 platform, which supports DDR5 memory in dual-channel configuration with ECC capability. The CPU provides PCIe Gen 5 with 24 lanes, while the GPU uses PCIe 4.0 x16, ensuring compatibility with current motherboards and leaving bandwidth headroom for future components. The 65W TDP of the CPU is modest, while the GPU’s 225W TDP and suggested 550W PSU indicate the system requires a capable power supply but not an extreme one.

A sensible next upgrade would be a more powerful GPU, as the Arc A750’s 66th percentile is the primary bottleneck in gaming workloads. Moving to a higher-tier graphics card would better utilize the CPU’s 90th percentile performance, especially at 1440p or 4K resolutions. Alternatively, adding more DDR5 memory or a PCIe Gen 5 NVMe drive could enhance system responsiveness, but the CPU’s strong scores suggest it will not be the limiting factor in most scenarios. The AM5 socket offers a clear upgrade path to newer Ryzen processors, though the 7900’s high percentile means significant gains would require a top-tier part.

Usage Scenarios

High-refresh gaming: At 1080p, the Arc A750’s 66th percentile and 512.0 GB/s bandwidth should support frame rates above 60 FPS in most titles, while the CPU’s single-thread score of 1069 in 3DMark avoids bottlenecks. At 1440p, frame rates will drop, and achieving 144 Hz would require lower settings.

Streaming: The CPU’s 12 cores and 24 threads, evidenced by the Cinebench R23 multicore score of 24776, can handle encoding workloads alongside gaming, while the GPU’s 17.20 TFLOPS FP32 provides additional acceleration. The PassMark data compression score of 577847 supports efficient stream encoding.

Video editing: The Ryzen 9 7900 excels in rendering timelines, with its PassMark multithread score of 48347 and Geekbench multicore of 17726 speeding up exports. The GPU’s FP16 performance of 34.41 TFLOPS aids in effects processing, though its 66th percentile limits real-time preview at high resolutions.

3D rendering: Multi-threaded renderers will leverage the CPU’s 24776 Cinebench R23 multicore score effectively. The GPU’s 28 RT cores and 3DMark Steel Nomad score of 2612 support ray-traced rendering, but the card is not a professional-grade solution.

Software development: Compilation tasks benefit from the CPU’s 164075 PassMark integer math score and 24 threads. The 64 MB L3 cache reduces memory latency for large codebases, and ECC memory support enhances stability for long builds.

Student and office work: The CPU is far more powerful than needed for word processing or spreadsheets, but its efficiency at 65W TDP ensures low power draw. The integrated Radeon Graphics provides a backup display, and the GPU’s 8 GB VRAM handles basic graphical tasks without issue.