SYSTEM ANALYZER

Rate My PC: AMD Ryzen 5 7640HS + Intel Arc A570M

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
89%
VS
GPU
97%
PROCESSOR

AMD Ryzen 5 7640HS

30,390 Benchmark Score
Top 11% Market Ranking
View Full Specs →
GRAPHICS CARD

Intel Arc A570M

58,239 Benchmark Score
Top 3% 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 5 7640HS and Intel Arc A570M form a laptop-class pairing that ranks in the 85th percentile of combined performance. Because no measured frame-rate data exists for this exact combination, all gaming discussion here is estimated from the CPU and GPU benchmark scores, not from direct FPS measurements.

CPU Analysis

The Ryzen 5 7640HS is a 6-core, 12-thread mobile processor built on AMD's Zen 4 architecture, codenamed Phoenix, and fabricated on TSMC's 4 nm process. It carries 25,000 million transistors on a 178 mm² die, with a base clock of 4.30 GHz and a boost clock of 5.00 GHz. The cache hierarchy includes 64 KB of L1 per core, 1 MB of L2 per core, and 16 MB of shared L3. The chip supports DDR5 memory over a dual-channel bus, delivering 89.6 GB/s of bandwidth, and it includes ECC support. The integrated Radeon 760M GPU is present but not used in this build. The CPU is not multiplier-unlocked, and it connects via PCIe Gen 4 with 20 CPU lanes.

Benchmark results place this CPU in the 81st percentile of all CPUs, with an average benchmark score of 30,390. In Cinebench R23, it scores 12,554 in multi-core and 1,715.5 in single-core. The multi-core result indicates strong performance for threaded workloads, while the single-core figure is competitive for gaming and responsiveness. Geekbench multi-core score is 10,389, with a single-core score of 2,093. PassMark scores further break down its strengths: integer math scores 73,284, floating-point math 45,220, and multithreading 22,979. Data compression scores 269,524, while encryption hits 15,867. These numbers suggest the CPU handles compression and encryption tasks well, making it suitable for data-heavy applications.

Against its nearest rivals, the Ryzen 5 7640HS is essentially neck-and-neck with the AMD Ryzen 7 7736U, with a delta of +0.1% in average score. It is 0.1% behind the Intel Core i9-11980HK, 0.3% behind the Intel Core Ultra 5 225T, and 0.4% ahead of the AMD Ryzen 5 PRO 8640U. These tiny deltas mean the CPU's performance is well within a rounding error of several high-end parts from both Intel and AMD.

The 35 W TDP is a key indicator of its mobile focus, balancing performance with power draw. For real workloads, the 12 threads handle video encoding and compilation well, while the single-thread score of 1,715.5 in Cinebench R23 suggests strong day-to-day app responsiveness.

FAQ

Q: How many cores and threads does the Ryzen 5 7640HS have?

A: It has 6 cores and 12 threads.

Q: What is the boost clock of the CPU?

A: The boost clock is 5.00 GHz, with a base clock of 4.30 GHz.

Q: What memory types does the CPU support?

A: It supports DDR5 memory in a dual-channel configuration, with a memory bandwidth of 89.6 GB/s.

Q: Does the CPU support ECC memory?

A: Yes, ECC memory is supported.

Q: What is the size of the L3 cache?

A: The L3 cache is 16 MB shared.

Q: Is the CPU overclockable?

A: No, the multiplier is not unlocked.

Q: What is the GPU's VRAM capacity?

A: The Intel Arc A570M has 8 GB of GDDR6 memory.

Benchmark Performance

The CPU's average benchmark score is 30,390, placing it in the 81st percentile of all CPUs. The GPU's average benchmark score, based on the Geekbench OpenCL test, is 58,239, which puts it in the 88th percentile of all GPUs. Combined, the pairing sits in the 85th percentile of all CPU+GPU combinations.

The CPU's nearest rival comparisons show how tight the competition is: the Ryzen 7 7736HS scores 30,364 (0.1% higher), the Intel Core i9-11980HK scores 30,422 (0.1% lower), the Intel Core Ultra 5 225T scores 30,468 (0.3% lower), and the Ryzen 5 PRO 8640U scores 30,254 (0.4% higher). The GPU's nearest rivals include the AMD Radeon RX 6950 XT, which scores 58,392 (0.3% higher), and the AMD Radeon RX 5600 OEM, which scores 58,085 (0.3% lower). The NVIDIA P102-100 scores 58,528 (0.5% higher), and the AMD Radeon PRO V710 scores 58,657 (0.7% higher).

These deltas are small, meaning the CPU and GPU each sit at the top of their respective performance tiers. The combined percentile of 85 confirms that this pairing is strong overall, with the GPU being the slightly more dominant component.

Balance and Bottleneck

The CPU is in the 81st percentile, while the GPU is in the 88th percentile. This suggests that the GPU is relatively more capable than the CPU in a pure performance comparison. However, the actual bottleneck depends on the workload.

In CPU-heavy tasks such as video encoding, data compression, and 3D scene setup, the CPU is the limiting factor. Its 12 threads and PassMark multithread score of 22,979 provide solid throughput, but it will not keep pace with the GPU in tasks that demand massive parallel processing. For example, in a 3D rendering scenario, the CPU's multi-core Cinebench R23 score of 12,554 will be the primary constraint when preparing geometry, while the GPU handles the rasterization.

In GPU-heavy workloads like gaming at high resolutions, the GPU's 88th-percentile standing will dominate. The GPU's 8 GB VRAM and 224 GB/s bandwidth are sufficient for most modern titles at 1080p and 1440p, and its high shading unit count (2048) and 128 TMUs allow for high texture throughput. The CPU's single-thread performance, while not at the top, is adequate to avoid becoming a significant bottleneck in most games, especially when combined with the GPU's high frame throughput.

The 85th combined percentile indicates that neither component severely drags down the other. The CPU's 89.6 GB/s memory bandwidth and the GPU's 224 GB/s memory bandwidth are both adequate for their respective roles. In practice, the GPU will be the limiting factor in heavy graphics tasks, while the CPU will be the limiting factor in highly threaded CPU-only workloads.

Gaming Performance

No measured FPS data exists for this exact combination. The FACT PACK contains no measuredFpsUltraByGame entries, so all frame-rate statements are estimates based on the benchmark scores.

The CPU's single-thread Cinebench R23 score of 1,715.5 and the GPU's 88th-percentile ranking suggest strong gaming potential. The GPU's Geekbench OpenCL score of 58,239 is on par with high-end desktop cards like the Radeon RX 6950 XT, which typically delivers high frame rates at 1080p and 1440p. The CPU's single-thread performance is also sufficient to drive those frames without major stutters.

At 1080p, this pairing should handle most modern games at ultra settings with frame rates well above 60 FPS, likely exceeding 100 FPS in esports titles. At 1440p, the GPU will be the primary limit, but the 8 GB VRAM and 224 GB/s bandwidth should still deliver playable frame rates in most games, though not at the highest refresh rates for the most demanding titles. At 4K, the GPU's memory bandwidth and shading throughput will struggle to maintain high frame rates in recent releases, but older or lighter games may still be playable.

Given the lack of measured data, these are estimates, but the high percentiles suggest a system capable of a high-refresh 1080p or 1440p gaming experience.

Who Should Build It

This laptop pairing targets users who need a balanced machine for both CPU-heavy work and GPU-accelerated graphics. It is well-suited for gamers at 1080p and 1440p who want high frame rates without sacrificing portability. The CPU's 6 cores and 12 threads, combined with a strong single-thread score, make it a good fit for streamers who game and encode simultaneously—the PassMark data encryption score of 15,867 and integer math score of 73,284 indicate solid CPU overhead for background tasks.

Content creators who edit video in 1080p or 1440p will benefit from the CPU's multi-threaded performance and the GPU's 8 GB VRAM for timeline effects and color grading. Software developers will find the CPU's 12 threads and high integer math score useful for compilation and running virtual machines, while the GPU's DirectX 12 Ultimate support allows for GPU-accelerated compute in development environments.

Students and small business users who need a laptop for productivity, web browsing, and occasional gaming will find this pairing more than sufficient. The CPU's single-thread score of 1,715.5 ensures snappy response in office suites, and the GPU can handle light video rendering or graphics design without issue.

Usage Scenarios

High-refresh gaming: The CPU's single-thread Cinebench R23 score of 1,715.5 and the GPU's 88th percentile place it well for high-refresh 1080p gaming. The GPU's 2048 shading units and 128 TMUs deliver high pixel throughput (83.20 GPixel/s) and texture rate (166.4 GTexel/s), enabling frame rates that exceed 120 fps in less demanding titles.

Streaming: The CPU's 12 threads and strong data compression score (269,524) allow it to encode video without significant impact on game performance. The GPU's high percentile and 8GB VRAM handle the game rendering while the CPU manages the stream, making this a viable single-PC streaming setup.

Video editing: The CPU's multi-core Cinebench R23 score of 12,554 and the GPU's high compute capacity (5.325 TFLOPS FP32) support timeline scrubbing and effects rendering. The 89.6 GB/s CPU memory bandwidth and 224 GB/s GPU memory bandwidth provide adequate data flow for 1080p and 1440p timelines.

3D rendering: The CPU's 12 threads will handle the CPU-side geometry and animation, while the GPU's 2048 shading units and 16 RT cores (for ray tracing) accelerate the final render. The GPU's 8 GB VRAM is a constraint for very large scenes, but moderate scenes will render efficiently.

Software development: The CPU's integer math score of 73,284 and data encryption score of 15,867 indicate fast compilation and secure processing. The GPU's DirectX 12 Ultimate support allows for GPU-accelerated compute in machine learning and rendering workflows.

Student and office work: The CPU's single-thread performance (2,093 Geekbench single-core) provides snappy web browsing, document editing, and spreadsheet work. The GPU is more than enough for occasional light gaming or media consumption, and the 35W TDP keeps the laptop cool and quiet for long study sessions.

Build Overview

The AMD Ryzen 5 7640HS and Intel Arc A570M is a laptop-class pairing, with the build class listed as "laptop". The CPU is a mobile Zen 4 chip from AMD's 7000 series, and the GPU is an Intel Arc A570M based on the Xe-HPG architecture, part of the Alchemist generation. The combined percentile of 85 places this system in the top 15% of all CPU+GPU pairs, indicating a high-performance laptop suitable for gaming and content creation.

The CPU's 81st percentile and the GPU's 88th percentile combine to a system that outperforms the majority of laptops on the market. It is not a top-tier flagship, but it sits comfortably in the upper echelon, offering a strong balance of CPU and GPU power.

GPU Analysis

The Intel Arc A570M is a mobile GPU built on the Xe-HPG architecture, codenamed Alchemist, fabricated on TSMC's 6 nm process. It contains 11,500 million transistors on a 269 mm² die, with a transistor density of 42.8 million per mm². The GPU runs at a base clock of 900 MHz and a boost clock of 1300 MHz, with memory clocked at 1750 MHz (14 Gbps effective). It has 8 GB of GDDR6 memory on a 128-bit bus, providing a bandwidth of 224 GB/s.

The GPU has 2048 shading units, 128 texture mapping units, and 64 raster output units. It also includes 16 ray tracing cores, though it lacks dedicated tensor cores. The pixel rate is 83.20 GPixel/s, and the texture rate is 166.4 GTexel/s. It delivers 5.325 TFLOPS of FP32 performance and 10.65 TFLOPS of FP16 performance (2:1 ratio). The TDP is 75 W, and it uses PCIe 4.0 x8 interface. It supports DirectX 12 Ultimate (12_2), OpenGL 4.6, and Vulkan 1.4.

The GPU's Geekbench OpenCL score is 58,239, placing it in the 88th percentile of all GPUs. Its average benchmark score is 58,239. Compared to its nearest rivals, the AMD Radeon RX 6950 XT scores 58,392 (0.3% higher), the AMD Radeon RX 5600 OEM scores 58,085 (0.3% lower), the NVIDIA P102-100 scores 58,528 (0.5% higher), and the AMD Radeon PRO V710 scores 58,657 (0.7% higher).

For rendering, the high shading unit count and texture rate indicate strong fill rate for 1080p and 1440p gaming. The ray tracing cores support hardware-accelerated ray tracing, and the 8 GB VRAM is sufficient for current titles at high settings. The GPU's FP32 throughput of 5.325 TFLOPS is respectable for compute workloads, while its memory bandwidth of 224 GB/s is adequate for the 128-bit bus. Overall, the Arc A570M is a capable mid-range GPU that excels in DirectX 12 and Vulkan titles, with solid performance for both gaming and rendering tasks.