SYSTEM ANALYZER

Rate My PC: AMD Ryzen 5 7500F + Intel Arc A750

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

89 / 100
HIGH-END

Power Build

Top 11% of systems. Excellent for 1440p Ultra or 4K High gaming.

1440p Ultra4K High

System Balance Analysis

CPU vs GPU performance ratio
Well Balanced
CPU
86%
VS
GPU
91%
PROCESSOR

AMD Ryzen 5 7500F

24,964 Benchmark Score
Top 14% 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

Strong Performance

Excellent for 1440p gaming. Most games will run at high/ultra settings smoothly.

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 5 7500F + Intel Arc A750 — Desktop Build Analysis

This pairing combines AMD's 6-core Zen 4 desktop processor with Intel's Arc A750 graphics card, creating a desktop system that sits at the 72nd percentile against all CPU+GPU combinations in the benchmark database. The CPU alone ranks at the 77th percentile among all processors, while the GPU holds the 66th percentile position among all graphics cards. No measured FPS data exists for this exact combination, so all gaming performance figures in this analysis are estimates derived from the individual component benchmark scores.

Usage Scenarios

High-refresh gaming: The Ryzen 5 7500F delivers a single-thread score of 974 in 3DMark and 3,218 in Cinebench R23 single-core, which places it in a strong position for frame generation in CPU-bound scenarios. Combined with the Arc A750's 12,534 Passmark G3D score, this system can reasonably target 1080p high-refresh gaming, though the GPU's 66th percentile ranking suggests 144Hz+ at maximum settings may require quality adjustments in demanding titles.

Streaming: The 6-core/12-thread configuration with a 3DMark max-threads score of 6,379 provides adequate headroom for simultaneous gaming and encoding workloads. The CPU's Passmark multithread score of 26,825 indicates that software encoding on the CPU is feasible without completely starving the game of processing resources, while the GPU's 5,368 Passmark compute score offers an alternative hardware encoding path.

Video editing: The processor's Cinebench R23 multicore score of 22,799 and Geekbench multicore score of 12,362 demonstrate strong multi-threaded capabilities for timeline rendering and export tasks. The Arc A750's 98,554 Geekbench OpenCL score and 85,631 Vulkan score provide substantial GPU acceleration for effects processing and preview rendering, making this a balanced editing workstation.

3D rendering: The CPU's Passmark floating-point math score of 47,176 and integer math score of 79,108 indicate solid performance for physics simulations and geometry processing. The GPU's 17.20 TFLOPS FP32 throughput and 34.41 TFLOPS FP16 (2:1) performance make it a capable renderer for GPU-accelerated engines, though the 8 GB VRAM may limit scene complexity in memory-intensive productions.

Software development: The CPU's 3DMark single-thread score of 974 and Passmark single-thread score of 3,841 ensure responsive compilation of individual translation units. The 32 MB shared L3 cache and 83.2 GB/s memory bandwidth support rapid code iteration, while the 12 threads handle parallel build processes efficiently, as reflected in the 3DMark 8-thread score of 5,372.

Student and office work: The processor's 65W TDP keeps power requirements modest for everyday workloads, and the 3DMark 2-thread score of 1,902 demonstrates snappy performance for document editing and web browsing. The GPU's 732 Passmark G2D score handles 2D desktop composition without strain, making this an overqualified but smooth experience for productivity applications.

Benchmark Performance

The CPU's average benchmark score of 24,964 places it at the 77th percentile among all processors, with the nearest rival being the Intel Core i7-11850H at 24,935 (0.1% slower), followed by the AMD Ryzen 5 8400F at 25,005 (0.2% faster), the Intel Core i7-13620H at 24,911 (0.2% slower), and the Intel Core 5 210H at 24,872 (0.4% slower). This tight clustering means the 7500F sits within a 0.5% performance band of its direct competitors, making benchmark differences effectively negligible in real-world usage.

The GPU's average benchmark score of 20,582 places it at the 66th percentile among all graphics cards, with the Intel Arc B570 at 20,556 (0.1% slower) and the NVIDIA GeForce RTX 3070 Mobile at 20,534 (0.2% slower) as the closest rivals. The AMD Radeon R9 M390X at 20,662 (0.4% faster) and NVIDIA Quadro M4000M at 20,480 (0.5% slower) round out the comparison group, again showing the A750 in a very competitive performance envelope.

The combined percentile of 72 reflects a system where the CPU is notably stronger than the GPU — a 77th percentile processor paired with a 66th percentile graphics card. This imbalance suggests the CPU has headroom to drive a more powerful GPU in future upgrades, but in the current configuration, the GPU will be the limiting factor in graphics-intensive workloads. The CPU's 3DMark results show strong scaling from 1,902 at 2 threads to 6,379 at max threads, indicating efficient multi-threading that pairs well with the GPU's compute capabilities.

Upgrade Path and Platform

The Ryzen 5 7500F uses AMD Socket AM5, which provides a modern platform foundation with DDR5 memory support and dual-channel architecture delivering 83.2 GB/s of bandwidth. The CPU's PCIe Gen 5 support with 24 lanes (CPU only) ensures the platform is not a bottleneck for current or near-future expansion cards, and the GPU's PCIe 4.0 x16 interface is fully compatible with this configuration.

The 7500F has a 65W TDP, and the Arc A750 has a 225W TDP, resulting in a combined processor-plus-graphics power envelope of approximately 290W. The suggested PSU for the GPU is 550W, which provides roughly 260W of headroom beyond the combined component TDP for drives, cooling, and motherboard power draw. This leaves room for modest overclocking of the CPU, which has an unlocked multiplier, without requiring a PSU upgrade.

The most sensible next upgrade for this system would be a stronger graphics card, since the CPU's 77th percentile ranking indicates it can feed a higher-tier GPU without becoming the limiting factor. The platform's AM5 socket and DDR5 support also allow future CPU upgrades within the same generation, and the 7500F's 65W TDP means a higher-TDP processor could be installed with the existing cooling and power infrastructure. The GPU's end-of-life production status and PCIe 4.0 interface mean users should plan for a GPU replacement before considering a platform change.

Balance and Bottleneck

The benchmark data reveals a clear performance hierarchy: the CPU outperforms the GPU by 11 percentile points (77th versus 66th), meaning the GPU will be the primary constraint in graphics-heavy workloads. In gaming scenarios that are GPU-bound — typically at higher resolutions and maximum settings — the Arc A750 will cap frame rates below what the CPU is capable of driving, as evidenced by the GPU's Passmark G3D score of 12,534 against the CPU's Passmark single-thread score of 3,841.

Conversely, in CPU-bound workloads such as physics simulation, data compression, and single-threaded tasks, the Ryzen 5 7500F will be the limiting factor while the GPU's compute resources remain underutilized. The CPU's Passmark physics score of 1,788 and data compression score of 305,925 indicate strong performance in these areas, but the GPU's 5,368 compute score shows it can offload some of these tasks when properly leveraged.

The FPS scaling picture, estimated from the benchmark scores, suggests that at 1080p with lower graphics settings, the CPU will frequently be the bottleneck, with the GPU having headroom to render at higher settings without significant frame rate changes. At 1440p and above, the GPU becomes the limiting factor, and frame rates will scale more predictably with graphics quality adjustments. This behavior is typical of a system where the CPU ranks in the top quarter and the GPU ranks in the upper-middle tier.

Who Should Build It

1080p gamers seeking a balanced system that can handle medium-to-high settings in modern titles will find this pairing suitable, based on the CPU's strong single-thread performance and the GPU's 66th percentile ranking. Competitive esports players who prioritize frame rates over visual fidelity can leverage the CPU's 974 single-thread 3DMark score to drive high refresh rates at lower graphics settings.

Content creators working with video editing and photo processing will benefit from the CPU's 12,362 Geekbench multicore score and the GPU's OpenCL acceleration for effects and renders. The 8 GB GDDR6 VRAM with 512.0 GB/s bandwidth provides adequate capacity for 1080p and moderate 1440p editing timelines, though 4K projects with heavy effects may require lowering preview quality.

Software developers compiling large codebases will appreciate the 6-core/12-thread configuration and the 32 MB L3 cache, which supports rapid parallel builds. The 83.2 GB/s memory bandwidth ensures data-intensive compilation steps are not starved, and the unlocked multiplier allows performance tuning for build server workloads.

Students and small business users building a workstation for mixed productivity, light 3D modeling, and occasional gaming will find this system more capable than needed for typical office tasks while still offering headroom for creative software. The 65W CPU TDP keeps cooling requirements modest, and the platform's longevity through AM5 support protects the investment.

Gaming Performance

Since no measured FPS data exists for this exact CPU+GPU combination, all gaming figures presented here are estimates derived from the individual benchmark scores and should be treated as approximations rather than verified results. The CPU's 77th percentile ranking and the GPU's 66th percentile ranking provide the basis for these projections.

At 1080p with ultra settings, this system is estimated to deliver playable frame rates in most titles, with the GPU likely being the constraint in graphically intensive games. The Arc A750's 17.20 TFLOPS FP32 performance and 512.0 GB/s memory bandwidth suggest it can handle modern game engines at this resolution, though the 8 GB VRAM may require texture quality reductions in VRAM-hungry titles.

At 1440p ultra, the GPU's 66th percentile position suggests that frame rates will drop below ideal for high-refresh monitors in demanding AAA games. The CPU's strong single-thread performance (974 in 3DMark single-thread) means it will not be the bottleneck at this resolution, so users should expect GPU-bound performance with frame rates scaling primarily with graphics settings.

For esports and competitive titles at 1080p with competitive settings, the CPU's high single-thread scores should allow the GPU to achieve its maximum frame rate potential, and this combination is likely to support 144Hz+ displays in less demanding games. Ray tracing performance will be limited by the 28 RT cores and the GPU's overall compute throughput, suggesting that RT effects should be used sparingly or disabled for smoother gameplay.

FAQ

Q: What is the combined performance ranking of this CPU+GPU system?

A: The system sits at the 72nd combined percentile among all CPU+GPU pairs in the benchmark database.

Q: How does the Ryzen 5 7500F compare to its closest CPU rivals?

A: It scores 24,964 average, which is 0.1% ahead of the Intel Core i7-11850H (24,935), 0.2% behind the AMD Ryzen 5 8400F (25,005), 0.2% ahead of the Intel Core i7-13620H (24,911), and 0.4% ahead of the Intel Core 5 210H (24,872).

Q: What is the GPU's closest competitor in benchmark performance?

A: The Intel Arc A750 averages 20,582, placing it 0.1% ahead of the Intel Arc B570 (20,556) and 0.2% ahead of the NVIDIA GeForce RTX 3070 Mobile (20,534), while sitting 0.4% behind the AMD Radeon R9 M390X (20,662).

Q: Does this system support DDR5 memory and PCIe Gen 5?

A: Yes, the CPU supports DDR5 memory with dual-channel architecture delivering 83.2 GB/s bandwidth, and provides PCIe Gen 5 with 24 lanes (CPU only). The GPU uses PCIe 4.0 x16.

Q: What power supply is recommended for this build?

A: The GPU's suggested PSU is 550W, and with the CPU's 65W TDP and GPU's 225W TDP, this provides adequate headroom for the full system.

Q: Is the CPU overclockable?

A: Yes, the Ryzen 5 7500F has an unlocked multiplier, allowing performance tuning within the 65W TDP envelope.

Q: What is the GPU's production status and architecture?

A: The Intel Arc A750 is end-of-life, based on the Xe-HPG architecture (Alchemist generation), built on a 6nm process by TSMC.

Build Overview

This is a desktop-class build combining the AMD Ryzen 5 7500F processor with the Intel Arc A750 graphics card. The CPU is a 6-core/12-thread Zen 4 part from the 7000 series, released in July 2023, while the GPU is an Alchemist-generation Arc 7 part released in October 2022. The system achieves a 72nd combined percentile ranking, indicating it performs better than roughly 72% of all recorded CPU+GPU pairings.

The pairing represents a modern CPU with an established GPU, creating a system where the processor has significant headroom over the graphics card. The CPU's 77th percentile ranking versus the GPU's 66th percentile means the overall system tier is constrained by graphics performance, but the platform provides strong upgrade potential. The 5nm CPU and 6nm GPU both come from TSMC, and the total component TDP of approximately 290W keeps the system within reasonable power and cooling requirements.

CPU Analysis

The AMD Ryzen 5 7500F is a 6-core, 12-thread desktop processor based on the Zen 4 architecture with the Raphael codename, built on a 5nm process at TSMC. It operates with a base clock of 3.70 GHz and a boost clock of 5.00 GHz, with a 65W TDP. The chip contains 6,570 million transistors on a 71 mm² die and is manufactured for Socket AM5.

The cache hierarchy includes 64 KB L1 per core, 1 MB L2 per core, and 32 MB shared L3, providing a total of 32 MB of L3 cache. Memory support includes DDR5 with dual-channel architecture, delivering 83.2 GB/s bandwidth, and ECC memory is supported. The CPU provides PCIe Gen 5 with 24 lanes (CPU only) and has an unlocked multiplier for overclocking. Its launch MSRP was $179.

Benchmark results show strong single-thread performance with a 3DMark single-thread score of 974 and Cinebench R23 single-core score of 3,218, indicating excellent responsiveness for gaming and latency-sensitive applications. Multi-threaded performance scales well, with Cinebench R23 multicore reaching 22,799 and Geekbench multicore scoring 12,362. The Passmark suite shows particular strength in integer math (79,108), floating-point math (47,176), and data compression (305,925), making this CPU well-suited for productivity and content creation workloads alongside gaming.

GPU Analysis

The Intel Arc A750 is a desktop graphics card based on the Xe-HPG architecture, specifically the Alchemist generation (Arc 7) with the DG2-512 chip, built on a 6nm process at TSMC. It features 8 GB of GDDR6 memory on a 256-bit bus, delivering 512.0 GB/s of bandwidth. The GPU has a base clock of 2050 MHz and a boost clock of 2400 MHz, with memory running at 2000 MHz (16 Gbps effective). Its launch MSRP was 289 USD.

The GPU contains 3,584 shading units, 224 texture mapping units, and 112 raster operation pipelines, along with 28 ray tracing cores. The compute capabilities include 17.20 TFLOPS FP32 and 34.41 TFLOPS FP16 (2:1), with pixel rate of 268.8 GPixel/s and texture rate of 537.6 GTexel/s. The card has a 225W TDP, requires 1x 6-pin and 1x 8-pin power connectors, and has a suggested PSU of 550W. Display outputs include 1x HDMI 2.1 and 3x DisplayPort 2.0.

Benchmark results place the GPU at the 66th percentile with an average score of 20,582. The Passmark G3D score of 12,534 indicates solid DirectX performance, while the Geekbench OpenCL score of 98,554 and Vulkan score of 85,631 show strong compute capabilities for GPU-accelerated workloads. The 3DMark Steel Nomad DX12 score of 2,612 reflects modern API performance, and the DirectX 9 score of 181 in Passmark suggests legacy API performance is relatively weaker. The GPU's 28 RT cores provide ray tracing support, though the overall 66th percentile ranking indicates mid-tier positioning for graphics-intensive tasks.