SYSTEM ANALYZER

Rate My PC: AMD Ryzen 5 7600 + Intel Arc B570

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
87%
VS
GPU
91%
PROCESSOR

AMD Ryzen 5 7600

26,324 Benchmark Score
Top 13% Market Ranking
View Full Specs →
GRAPHICS CARD

Intel Arc B570

20,556 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

The AMD Ryzen 5 7600 and Intel Arc B570 pairing represents a modern, mid-range desktop configuration built around AMD’s latest mainstream socket and Intel’s new Battlemage graphics architecture. The CPU, a 6-core/12-thread Zen 4 part, and the GPU, a 10 GB Xe2-HPG card, combine to deliver a balanced 1080p and 1440p gaming experience. Benchmark data shows the build sits at the 72nd percentile overall, with the CPU at the 78th percentile and the GPU at the 65th percentile, indicating a system that leans on processor strength but remains capable across a wide range of titles.

Upgrade Path and Platform

The AMD Ryzen 5 7600 uses the AMD Socket AM5, which is the foundation for the company’s 7000 series and later processors. This platform is notable for its longevity, as it supports DDR5 memory exclusively through a dual-channel interface, offering a memory bandwidth of 83.2 GB/s. The CPU provides PCIe Gen 5 with 24 lanes from the processor itself, ensuring high-speed connectivity for the latest NVMe SSDs and graphics cards. The chip also supports ECC memory, a feature that can appeal to users running workstation-style tasks where data integrity is paramount.

For power, the CPU has a 65 W TDP, which is modest for a desktop part, while the Intel Arc B570 has a 150 W TDP. The suggested PSU for the entire system is 450 W, indicating that a mid-range power supply is sufficient. This headroom is important for upgrades; users could potentially move to a higher-TDP CPU on the same AM5 platform without needing to overhaul their power delivery, as long as the total system draw stays within the PSU’s capability.

A sensible next upgrade path would involve increasing the GPU tier first, as the CPU’s 78th percentile ranking suggests it has more headroom than the GPU’s 65th percentile. The AM5 socket supports newer Ryzen generations, so a future CPU swap is possible, but the current processor is unlikely to be the primary bottleneck in most gaming scenarios. Memory upgrades are also straightforward, with support for faster DDR5 kits, though the current 83.2 GB/s bandwidth is already robust for the platform’s class.

FAQ

Q: What socket does the AMD Ryzen 5 7600 use?

A: The processor uses AMD Socket AM5, which is the platform for the Ryzen 7000 series and is designed to support DDR5 memory.

Q: How much memory bandwidth does the CPU support?

A: The Ryzen 5 7600 supports dual-channel DDR5 memory with a theoretical bandwidth of 83.2 GB/s.

Q: What is the TDP of the Intel Arc B570 and what PSU is recommended?

A: The Intel Arc B570 has a TDP of 150 W, and the suggested power supply for the system is 450 W.

Q: Does the CPU include integrated graphics?

A: Yes, the Ryzen 5 7600 includes Radeon Graphics as its integrated GPU, which can be useful for troubleshooting or basic display output without a discrete card.

Q: What is the PCIe version supported by the CPU?

A: The CPU supports PCIe Gen 5 with 24 lanes available from the processor itself.

Q: Is the memory overclocking multiplier unlocked on this CPU?

A: Yes, the multiplier is unlocked, allowing for manual overclocking of the processor if the user’s motherboard and cooling permit.

Q: What is the process node for both the CPU and GPU?

A: Both the AMD Ryzen 5 7600 and the Intel Arc B570 are manufactured on a 5 nm process by TSMC.

Benchmark Performance

The CPU’s benchmark results show a strong single-core and multi-core balance. In Cinebench R23, it scores 1852 points single-core and 12735 points multi-core, while in Geekbench it achieves 2521 single-core and 13413 multi-core. The 3DMark multi-threaded tests reveal scaling from 1938 points at 2 threads to 6503 at max threads, indicating efficient use of its 12 threads. PassMark tests reinforce this with a single-thread score of 3910 and a multithread score of 27058. The CPU’s average benchmark score is 26324, placing it at the 78th percentile of all CPUs. Its nearest rival is the AMD Ryzen 7 7435HS, which scores 26402, a difference of -0.3%, meaning the 7600 is slightly behind that mobile chip but within a negligible margin. It also edges out the Intel Core i9-11900KF by 0.4% and the AMD Ryzen 9 6900HX by 0.2%.

The GPU’s scores are more modest. In PassMark G3D, it scores 14195, and in Geekbench Vulkan it reaches 96844. The 3DMark Steel Nomad DX12 test yields a score of 2649. The GPU’s average benchmark score is 20556, placing it at the 65th percentile of all GPUs. Its closest rival is the Intel Arc A750, which scores 20582, a delta of -0.1%, showing they are nearly identical in synthetic performance. The NVIDIA GeForce RTX 3070 Mobile is 0.1% ahead, while the AMD Radeon R9 M390X is 0.5% behind.

The combined picture is a system where the CPU outperforms the GPU in percentile terms by 13 points. This suggests that for CPU-bound tasks, the system will feel very responsive, while GPU-bound workloads will be the limiting factor in achieving higher frame rates at higher resolutions.

Balance and Bottleneck

The data indicates a clear imbalance favoring the CPU. With the CPU at the 78th percentile and the GPU at the 65th percentile, the processor is considerably stronger relative to its peers than the graphics card. In gaming scenarios, this means the Intel Arc B570 is likely to be the primary bottleneck when trying to achieve high frame rates, especially at lower resolutions where the CPU’s speed is less of a factor.

For example, in esports titles like Valorant, the system achieves 304 FPS at 1080p, but this drops to 207 FPS at 4K, showing how the GPU becomes more stressed at higher resolutions. Conversely, in a CPU-intensive game like Counter-Strike 2, the frame rate drops from 133 FPS at 1080p to 49 FPS at 4K, indicating that while the CPU is strong, the GPU cannot maintain high output at 4K. The pair’s average FPS across all tested games is 86.5, and it ranks 3035 out of 3732 pairs, which is in the lower half of tested configurations. This rank suggests that while the system is capable, it is not optimized for maximum FPS output, and the GPU is the limiting factor in many titles.

Gaming Performance

Measured FPS data at ultra settings shows a wide range of performance across different titles. At 1080p, the system excels in lighter esports games: Valorant hits 304 FPS, CS:GO reaches 293 FPS, and Roblox achieves 171 FPS. More demanding titles see lower numbers, with Cyberpunk 2077 at 39 FPS and Red Dead Redemption 2 at 36 FPS. Call of Duty: Warzone performs well at 152 FPS, and Rainbow Six Siege reaches 158 FPS, indicating good optimization for competitive shooters.

At 1440p, frame rates drop significantly. Valorant remains playable at 259 FPS, but Cyberpunk 2077 falls to 29 FPS, and Ark: Survival Ascended drops to just 12 FPS. At 4K, most AAA titles become unplayable at ultra settings, with Cyberpunk 2077 at 19 FPS and Red Dead Redemption 2 at 18 FPS. However, lighter games like Valorant still manage 207 FPS, and CS:GO hits 119 FPS. The data shows that this system is best suited for 1080p ultra or 1440p medium-to-high settings, as 4K ultra is only viable for less demanding or older titles.

Who Should Build It

This build targets gamers who prioritize high refresh rates at 1080p or smooth performance at 1440p in competitive titles. The CPU’s strong single-thread score of 1852 in Cinebench R23 ensures that games relying on fast single-core performance, like Valorant or CS:GO, will run exceptionally well, with measured FPS above 200 at 1080p. Content creators who work with lighter workloads, such as video editing in 1080p or photo processing, will benefit from the CPU’s 12735 multi-core score in Cinebench R23, though heavy 3D rendering may be limited by the GPU’s 65th percentile ranking.

Software developers and students will find the CPU’s 78th percentile rank and 12 threads useful for compiling code and running virtual machines, while the ECC memory support adds reliability for long-running tasks. Small business workstations could leverage the system for office productivity, where the 65 W CPU TDP keeps power costs low, and the integrated graphics provide a fallback if the discrete GPU fails. However, this is not a system for 4K gaming or professional 3D rendering, as the GPU’s performance at 4K is consistently below 30 FPS in most demanding titles.

GPU Analysis

The Intel Arc B570 features 10 GB of GDDR6 memory on a 160-bit bus, providing a bandwidth of 380.0 GB/s. It has 2304 shading units, 144 TMUs, and 80 ROPs, with 18 ray tracing cores. The GPU operates at a base and boost clock of 2500 MHz, with memory at 2375 MHz (19 Gbps effective). It supports PCIe 4.0 x8 and outputs via 1x HDMI 2.1a and 3x DisplayPort 2.1.

In terms of compute, the GPU delivers 11.52 TFLOPS of FP32 performance and 23.04 TFLOPS of FP16 (2:1). Its pixel rate is 200.0 GPixel/s and texture rate is 360.0 GTexel/s. The GPU’s PassMark G3D score of 14195 places it at the 65th percentile, and its average score of 20556 is nearly identical to the Intel Arc A750, which scores 20582. This suggests the B570 is a solid mid-range card that competes with the previous generation’s flagship. For rendering, the 10 GB VRAM is sufficient for 1080p and 1440p texture loads, but the 160-bit bus may limit performance in memory-heavy scenes. The ray tracing cores are present, but performance in RT-heavy games like Cyberpunk 2077 (39 FPS at 1080p) suggests they are not powerful enough for high RT settings.

Build Overview

This is a desktop-class build combining the AMD Ryzen 5 7600 CPU with the Intel Arc B570 GPU. The system’s combined percentile is 72, indicating it outperforms the majority of tested configurations. The CPU’s 78th percentile and GPU’s 65th percentile show a CPU-heavy balance, which is typical for a mid-range gaming PC. The build is designed for 1080p high-refresh gaming and 1440p medium settings, with the CPU providing a strong foundation for future GPU upgrades. The average FPS across all games is 86.5, which is respectable for the hardware class, but the pair’s rank of 3035 out of 3732 indicates that many other configurations achieve higher frame rates, likely due to more balanced CPU-GPU pairings or higher-tier GPUs.

CPU Analysis

The AMD Ryzen 5 7600 is a 6-core, 12-thread processor based on the Zen 4 architecture, codenamed Raphael. It has a base clock of 3.80 GHz and a boost clock of 5.10 GHz, with a 65 W TDP. The CPU features 64 KB of L1 cache per core, 1 MB of L2 cache per core, and 32 MB of shared L3 cache. It is built on a 5 nm process by TSMC with 6,570 million transistors on a 71 mm² die. The processor supports DDR5 memory with a dual-channel bus and has 24 PCIe Gen 5 lanes.

Benchmark results show a strong all-around performer. The single-thread score of 1852 in Cinebench R23 and 2521 in Geekbench indicate excellent responsiveness for daily tasks and gaming. The multi-core score of 12735 in Cinebench R23 and 13413 in Geekbench demonstrate solid throughput for productivity. In PassMark, the CPU scores 3910 in single-thread and 27058 in multithread, with high scores in integer math (80581) and floating-point math (48107). Data compression (304942) and encryption (17704) scores show good performance for archival tasks. The CPU’s average benchmark score of 26324 places it at the 78th percentile, making it a top-tier mainstream processor. Its nearest rival, the Ryzen 7 7435HS, is only 0.3% faster, while it is 0.4% faster than the Intel Core i9-11900KF, showing that this CPU competes with older high-end parts.

Usage Scenarios

High-Refresh Gaming: At 1080p, the system excels in esports titles, with Valorant at 304 FPS and CS:GO at 293 FPS. The CPU’s high single-thread score ensures minimal bottleneck in these games, making it ideal for 144Hz or 240Hz monitors.

Streaming: The CPU’s 12 threads and strong multi-core score of 12735 in Cinebench R23 provide enough headroom for game capture and encoding while maintaining playable frame rates, though the GPU’s 65th percentile may limit the quality of encoder-assisted streaming.

Video Editing: For 1080p editing, the CPU’s PassMark multithread score of 27058 and data compression score of 304942 handle timeline scrubbing and export efficiently. However, 4K editing may be slow due to the GPU’s limited VRAM and compute.

3D Rendering: The CPU can handle CPU-based rendering, with a Cinebench R23 multi-core score of 12735, but GPU-accelerated rendering is limited by the Arc B570’s 11.52 TFLOPS FP32 performance, which is modest compared to higher-tier cards.

Software Development: The 12 threads and 78th percentile ranking make compilation tasks faster than typical mid-range systems. The ECC memory support adds stability for long compilation sessions, and the 5 nm process keeps power draw low.

Student and Office Work: The 65 W TDP makes this an energy-efficient system for daily tasks. The integrated Radeon Graphics provide a backup display output, and the CPU’s single-thread score of 1852 in Cinebench R23 ensures snappy application launches and multitasking.