SYSTEM ANALYZER

Rate My PC: AMD Ryzen 7 5800XT + Intel Arc B770

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

82 / 100
HIGH-END

Power Build

Top 18% of systems. Excellent for 1440p Ultra or 4K High gaming.

1440p Ultra4K High

System Balance Analysis

CPU vs GPU performance ratio
Well Balanced
CPU
89%
VS
GPU
74%
PROCESSOR

AMD Ryzen 7 5800XT

29,879 Benchmark Score
Top 11% Market Ranking
View Full Specs →
GRAPHICS CARD

Intel Arc B770

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.

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 7 5800XT and Intel Arc B770 pairing represents a desktop build centered on a high-core-count CPU and a modern GPU with substantial memory resources. The data shows a combined performance percentile of 66, positioning the system above the median of all tracked builds, with the CPU carrying the bulk of the performance weight at the 81st percentile.

FAQ

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

A: The pairing has a combined percentile of 66, indicating the system outperforms roughly two-thirds of all tracked CPU-GPU combinations in the database.

Q: How does the CPU compare to its nearest rivals?

A: The Ryzen 7 5800XT has an average benchmark score of 29879, placing it within 0.6% of the AMD Ryzen 5 9600X (29713) and statistically tied with the AMD Ryzen 7 7840H (29868). It trails the AMD Ryzen 7 8845HS and Ryzen 7 7840HS by 0.3% each.

Q: What memory type does this platform support?

A: The CPU supports DDR4 memory in a dual-channel configuration, with a memory bandwidth of 51.2 GB/s and optional ECC support.

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

A: The Intel Arc B770 features 16 GB of GDDR6 memory on a 256-bit bus, providing a bandwidth of 512.0 GB/s.

Q: What PCIe generation does the GPU use?

A: The GPU interfaces via PCIe 4.0 x16, while the CPU provides Gen 4 with 20 lanes.

Q: Does the CPU have integrated graphics?

A: No, the Ryzen 7 5800XT has no integrated graphics, meaning a dedicated GPU is required for display output.

Q: What is the recommended power supply wattage for this GPU?

A: The suggested PSU for the Intel Arc B770 is 550 W.

Balance and Bottleneck

The data indicates an asymmetric performance profile where the CPU operates at a significantly higher percentile than the GPU. The Ryzen 7 5800XT sits at the 81st percentile against all CPUs, while the Intel Arc B770 sits at the 50th percentile against all GPUs. This 31-point gap suggests the GPU is more likely to be the limiting factor in graphics-intensive workloads, particularly at higher resolutions where GPU throughput dominates.

The CPU's multithreaded capability is substantial, with a 3dmark_max_threads score of 7680 and a cinebench_r23_multicore score of 23794. The 8-thread score of 6141 and 16-thread score of 7683 show scaling efficiency, with the max-thread score nearly matching the 16-thread result, indicating the processor is fully utilized across its 16 threads. This means CPU-bound scenarios like physics calculations or data compression will rarely stall the system, as the passmark_physics score of 1355 and data compression score of 352002 demonstrate strong throughput.

Conversely, the GPU's 50th percentile ranking places it at the median of all GPUs, which creates a bottleneck dynamic where frame rates in GPU-bound titles will be constrained by the Arc B770's compute capacity. The CPU's headroom in this pairing means that lowering graphical settings or resolution will not reveal a CPU limitation; instead, the GPU will continue to be the primary constraint. For workloads that mix CPU and GPU tasks — such as streaming while gaming — the CPU can handle the encoding overhead without significantly compromising game performance, as its 8 cores and 16 threads provide ample parallel resources.

Upgrade Path and Platform

The platform is anchored by the AMD Socket AM4, which supports the Zen 3 architecture on a 7 nm process from TSMC. The processor uses 4,150 million transistors on a 74 mm² die, and the socket accepts the 105 W TDP CPU. The platform is DDR4-based with dual-channel memory support and a memory bandwidth of 51.2 GB/s. ECC memory is supported, which broadens the system's applicability to error-sensitive workloads.

For storage and expansion, the CPU provides PCIe Gen 4 with 20 lanes, and the GPU uses a PCIe 4.0 x16 interface. This generation of PCIe offers adequate bandwidth for the Arc B770's 16 GB memory buffer. The GPU requires a 550 W PSU according to the suggested power supply rating, and its TDP is 225 W. The CPU's 105 W TDP means the total system draw is well within the 550 W recommendation, leaving headroom for additional drives or peripherals.

A sensible next upgrade would focus on the GPU, since the CPU has a 31-point percentile advantage over the current GPU. The CPU could effectively drive a higher-performing GPU without becoming a bottleneck, given its 81st percentile standing. The AM4 socket is a mature platform, and the 5800XT represents a late-stage release for this socket, so future CPU upgrades would require a platform change. However, the current CPU's performance headroom means such a change is not immediately necessary. The GPU's 16 GB VRAM and 512.0 GB/s bandwidth are substantial, but its 50th percentile rank suggests a GPU upgrade would provide the most noticeable system-wide performance gain.

Who Should Build It

The Ryzen 7 5800XT's 8 cores and 16 threads, combined with its 81st percentile CPU ranking, make this build suitable for users who run multi-threaded applications. The cinebench_r23_multicore score of 23794 indicates strong rendering capability, which benefits 3D modelers and video editors who rely on CPU-based rendering. The passmark_multithread score of 28053 and floating point math score of 53808 reinforce this profile.

The GPU's 16 GB VRAM and 512.0 GB/s bandwidth are notable for users working with large datasets or high-resolution textures. Content creators who edit 4K video or work with complex 3D scenes will find the memory capacity useful, even if the GPU's raw compute (19.66 TFLOPS) is mid-range. The build is also viable for software developers, as the CPU's data encryption score of 21461 and extended instructions score of 24270 aid in compilation and cryptographic workloads.

For students and small business workstations, the CPU's single-thread performance (passmark_singlethread score of 3535) ensures responsive everyday use, while the 8 cores provide headroom for virtual machines or database operations. The absence of integrated graphics means a dedicated GPU is mandatory, which this build includes. The ECC memory support adds reliability for workstation use cases, though the DDR4 platform limits memory bandwidth compared to newer standards.

CPU Analysis

The AMD Ryzen 7 5800XT is a 5000-series desktop processor built on the Zen 3 architecture, codenamed Vermeer. It has 8 cores and 16 threads, with a base clock of 3.80 GHz and a boost clock of 4.80 GHz. The processor is manufactured on TSMC's 7 nm process, containing 4,150 million transistors on a 74 mm² die. The cache hierarchy includes 64 KB L1 per core, 512 KB L2 per core, and 32 MB shared L3.

The benchmark results show a balanced scaling pattern. The 3dmark_single_thread score of 959 is modest, but the 2-thread score of 1879 and 4-thread score of 3603 demonstrate linear scaling. The 8-thread score of 6141 and 16-thread score of 7683 show diminishing returns as thread count approaches the physical core limit, with the max-thread score of 7680 nearly identical to the 16-thread result, confirming no hyperthreading penalty. The cinebench r23 multicore score of 23794 is the strongest indicator of multi-threaded performance, while the single-core score of 3359 shows competitive per-thread performance.

The passmark results provide workload-specific insights. The integer math score of 93942 and floating point math score of 53808 indicate strong arithmetic throughput. The data compression score of 352002 is exceptionally high, making this CPU well-suited for archiving or file-server workloads. The find prime numbers score of 119 is low, but this is a specialized test. The CPU's 105 W TDP, combined with the 74 mm² die size, suggests efficient power delivery for the performance level.

GPU Analysis

The Intel Arc B770 is based on the Xe2-HPG architecture, generation Battlemage (Arc 7), using the BMG-G31 chip. It is manufactured on a 5 nm process from TSMC, with a die size of 368 mm². The GPU has 4096 shading units, 256 texture mapping units, and 128 render output units. It also includes 32 ray tracing cores. The base clock is 2100 MHz with a boost clock of 2400 MHz, and the memory operates at 2000 MHz with 16 Gbps effective speed.

The memory subsystem is a defining feature: 16 GB of GDDR6 on a 256-bit bus yields 512.0 GB/s of bandwidth. This is complemented by pixel rate of 307.2 GPixel/s and texture rate of 614.4 GTexel/s. The FP32 compute is 19.66 TFLOPS, with FP16 at 39.32 TFLOPS at a 2:1 ratio. The GPU supports DirectX 12 Ultimate, OpenGL 4.6, and Vulkan 1.4, covering modern rendering APIs.

The GPU's 50th percentile ranking places it at the median of all GPUs, meaning half of all GPUs outperform it and half underperform it. The 512.0 GB/s bandwidth is substantial, but the 19.66 TFLOPS FP32 throughput limits raw compute in heavy rendering tasks. The 32 ray tracing cores provide hardware acceleration for RT workloads, though the overall RT performance will be constrained by the GPU's mid-range compute. The GPU has no benchmark scores listed in the data, so the 50th percentile is the primary performance indicator.

Benchmark Performance

The CPU's average benchmark score is 29879, placing it at the 81st percentile of all CPUs. This is a strong result, with the nearest rival being the AMD Ryzen 7 7840H at 29868, a delta of 0%. The AMD Ryzen 7 8845HS and 7840HS both score 29955, 0.3% ahead, while the AMD Ryzen 5 9600X scores 29713, 0.6% behind. The CPU's multi-threaded scores are consistent across tests, with cinebench r23 multicore at 23794 and passmark_multithread at 28053.

The GPU has no benchmark scores in the data, but its 50th percentile ranking against all GPUs indicates median performance. The combined percentile for this CPU-GPU pairing is 66, reflecting the CPU's high performance offsetting the GPU's mid-range standing. The combined picture is a system that excels in CPU-bound tasks — such as compilation, data processing, and physics simulation — while providing acceptable but not exceptional GPU-bound performance.

The CPU's 3dmark scores show scaling from 959 single-thread to 7680 max-thread, a roughly 8x improvement, which is expected for an 8-core processor. The cinebench r20 scores of 1410 single-core and 9993 multi-core follow a similar pattern. The passmark single-thread score of 3535 and multithread score of 28053 provide a ratio of approximately 8x, confirming good scaling across the 8 physical cores.

Build Overview

This is a desktop build combining the AMD Ryzen 7 5800XT CPU with the Intel Arc B770 GPU. The CPU is an 8-core, 16-thread processor on the AM4 socket with a 105 W TDP, while the GPU is a dual-slot card with a 225 W TDP and requires a 550 W PSU. The system's combined percentile of 66 places it in the upper third of tracked builds, but the performance is heavily skewed toward the CPU.

The CPU's 81st percentile ranking is a clear strength, indicating high multi-threaded performance for its class. The GPU's 50th percentile ranking is middling, meaning the build is CPU-dominant. The 16 GB VRAM on the GPU is generous, but the compute power is average. This is a build where the CPU will not be the limiting factor in most tasks, but the GPU will constrain gaming and rendering performance at higher settings.

The build class is desktop, and the overall tier is mid-to-upper, driven by the CPU's strong showing. The Ryzen 7 5800XT is a mature AM4 processor with a launch MSRP of $249, released in 2024. The GPU is a newer release from late 2025. This pairing represents a CPU that has headroom to drive a more powerful GPU, making it a foundation for future GPU upgrades.

Usage Scenarios

High-refresh gaming: The CPU's single-thread score of 3535 and 8 cores can drive high frame rates in CPU-bound titles, but the GPU's 50th percentile ranking will cap performance in graphics-heavy games. At 1080p with lower settings, frame rates will be GPU-limited, but the CPU will not hold back the GPU. Expect playable but not top-tier performance in demanding titles.

Streaming: The 8-core CPU with a passmark_multithread score of 28053 can handle encoding and gaming simultaneously without significant frame drops. The CPU's headroom over the GPU means streaming overhead will not create a CPU bottleneck. The 16 GB VRAM on the GPU also helps when capturing high-resolution gameplay.

Video editing: The cinebench r23 multicore score of 23794 and data compression score of 352002 indicate strong performance for video encoding and timeline processing. The GPU's 16 GB VRAM and 512.0 GB/s bandwidth aid in effects processing and preview rendering. The CPU will handle most of the heavy lifting, with the GPU providing acceleration for compatible effects.

3D rendering: The CPU's multithreaded performance is strong, with a 3dmark_max_threads score of 7680, making it suitable for CPU-based renderers. The GPU's 19.66 TFLOPS FP32 and 32 ray tracing cores provide moderate GPU-accelerated rendering capability. Scenes that rely on CPU rendering will perform well, while GPU-based renderers will see mid-range results.

Software development: The CPU's integer math score of 93942 and extended instructions score of 24270 support fast compilation and cryptographic operations. The 8 cores allow for parallel builds, and the 32 MB L3 cache reduces memory latency. The GPU is less relevant for development, but the 16 GB VRAM can support GPU compute tasks.

Student and office work: The CPU's single-thread score of 3535 ensures responsive everyday use, and the 8 cores handle multitasking well. The passmark_data_encryption score of 21461 aids in secure file handling. The absence of integrated graphics means the GPU is always active, but its 225 W TDP is acceptable for a desktop workstation.

Gaming Performance

The data contains no measured FPS rows for this exact combination, as the FACT PACK has no measuredFps data. All frame rate figures below are estimates derived from the benchmark scores and should be treated as approximations.

Based on the CPU's 81st percentile ranking and the GPU's 50th percentile ranking, gaming performance will be primarily GPU-limited in most scenarios. The CPU's single-thread score of 3535 is sufficient to feed the GPU in most titles, meaning the Arc B770 will determine the achievable frame rates. At 1080p ultra settings, the GPU's 19.66 TFLOPS FP32 and 512.0 GB/s bandwidth should deliver playable frame rates in most games, but not high-refresh rates (144+ FPS) in demanding titles. At 1440p ultra, the GPU will struggle to maintain 60 FPS in the most demanding games, given its median ranking. At 4K, the 16 GB VRAM is sufficient, but the compute power will likely limit frame rates to below 30 FPS in AAA titles.

The CPU's headroom means that lowering resolution or graphical settings will yield higher frame rates, as the GPU bottleneck is removed. However, the GPU's 50th percentile ranking means it will cap performance regardless of CPU capability. For esports titles, which are typically CPU-bound, the 5800XT's strong single-thread performance will enable high frame rates, and the GPU can handle these lighter loads with ease. For AAA titles, expect medium-to-high settings for smooth gameplay, with the GPU being the limiting factor.