SYSTEM ANALYZER

Rate My PC: Intel Core i7-13700KF + Intel Arc A770

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

96 / 100
ULTIMATE READY

Apex Performer

Top 4% 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
97%
PROCESSOR

Intel Core i7-13700KF

47,330 Benchmark Score
Top 6% Market Ranking
View Full Specs →
GRAPHICS CARD

Intel Arc A770

68,809 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

Intel Core i7-13700KF pairs with the Intel Arc A770 to form a desktop configuration that sits at the 90th percentile among all benchmarked systems. The CPU holds an 89th percentile rank against all processors, while the GPU achieves a 90th percentile rank against all graphics cards. No measured frame-rate data exists for this exact combination, so all gaming performance discussion is estimated from the individual component benchmark scores. The CPU’s average benchmark score is 47330, and the GPU’s average benchmark score is 68809, placing both components in the upper tier of their respective categories.

CPU Analysis

The Intel Core i7-13700KF is a 16-core, 24-thread desktop processor built on the Raptor Lake architecture and fabricated on Intel’s 10 nm process. It features a base clock of 3.40 GHz and a boost clock of 5.40 GHz, with a 125 W TDP. The chip supports dual-channel DDR4 and DDR5 memory and connects via PCIe Gen 5 with 20 CPU lanes on the Intel Socket 1700 platform. The cache hierarchy includes 80 KB of L1 per core, 2 MB of L2 per core, and 30 MB of shared L3 cache. The processor has an unlocked multiplier, enabling overclocking, and the die size is 257 mm².

Benchmark results show strong scaling across thread counts. The 3DMark score at 2 threads is 2263, rising to 4474 at 4 threads, 8230 at 8 threads, 10749 at 16 threads, and peaking at 12462 at max threads. Single-thread performance in 3DMark is 1137. Cinebench R23 multi-core score is 38704, with a single-core score of 5464. Cinebench R20 results are 16255 multi-core and 2294 single-core, while Cinebench R15 yields 3901 multi-core and 550 single-core. Geekbench reports 18258 multi-core and 2435 single-core. PassMark multi-thread score is 45817, single-thread score is 4336, and specific workloads include integer math at 154507, floating-point math at 114997, data compression at 596493, data encryption at 33314, extended instructions at 36700, find prime numbers at 186, random string sorting at 62726, and physics at 2650.

The average benchmark score of 47330 places the i7-13700KF within 0.3% of the Intel Core i9-12900F (47176) and 0.7% ahead of the AMD Ryzen AI 9 HX PRO 375 (47022). It trails the Intel Core Ultra X9 378H (47468) by 0.3% and the AMD Ryzen 9 PRO 5945 (47527) by 0.4%. These deltas are negligible, meaning the i7-13700KF sits in a tightly contested performance band where no single rival holds a meaningful advantage in average score. The 89th percentile rank indicates the chip outperforms the vast majority of all CPUs in the database. For real workloads, the 16-core/24-thread configuration with a 5.40 GHz boost clock delivers strong multi-threaded throughput for rendering and compilation tasks, while the single-core score of 5464 in Cinebench R23 ensures responsive performance in lightly threaded applications.

GPU Analysis

The Intel Arc A770 is a desktop graphics card based on the Xe-HPG architecture and the DG2-512 chip, fabricated by TSMC on a 6 nm process. The die contains 21,700 million transistors across a 406 mm² area, yielding a transistor density of 53.4 million per mm². The GPU has 4096 shading units, 256 texture mapping units, and 128 raster output pipelines, along with 32 ray tracing cores. Base clock is 2100 MHz with a boost clock of 2400 MHz, and memory runs at 2000 MHz with 16 Gbps effective speed. The card is equipped with 16 GB of GDDR6 memory on a 256-bit bus, providing 512.0 GB/s of bandwidth. Pixel rate is 307.2 GPixel/s, texture rate is 614.4 GTexel/s, and FP32 compute is 19.66 TFLOPS, with FP16 at 39.32 TFLOPS (2:1). The TDP is 225 W with a suggested power supply of 550 W, requiring one 6-pin and one 8-pin power connector. Display outputs include one HDMI 2.1 and three DisplayPort 2.0 ports, with a PCIe 4.0 x16 bus interface. API support includes DirectX 12 Ultimate (12_2), OpenGL 4.6, and Vulkan 1.4.

Benchmark results for the Arc A770 include a 3DMark Steel Nomad DX12 score of 2969, Geekbench OpenCL score of 109175, and Geekbench Vulkan score of 94284. The average benchmark score is 68809, placing the card at the 90th percentile among all GPUs. Its nearest rival, the NVIDIA CMP 90HX, scores 69000, a delta of -0.3%, meaning the Arc A770 is essentially tied with it. The AMD Radeon Instinct MI25 scores 68562, which the Arc A770 beats by 0.4%. The AMD Radeon Pro WX 8200 scores 69870, putting it 1.5% ahead of the Arc A770, and the NVIDIA Quadro P6000 scores 69986, 1.7% ahead. These rival deltas show the Arc A770 performing within a narrow margin of professional and mining-oriented cards, though its gaming-relevant features, such as 32 ray tracing cores and 16 GB of VRAM, are substantial. The 512.0 GB/s bandwidth and 16 GB capacity support high-resolution textures and complex scenes, while the 2400 MHz boost clock sustains compute throughput. For rendering workloads, the 19.66 TFLOPS FP32 rate and 614.4 GTexel/s texture rate indicate solid rasterization capability, and the 32 RT cores provide dedicated hardware for ray-traced effects.

Benchmark Performance

The combined picture from the CPU and GPU benchmark scores places this build at the 90th percentile overall. The CPU’s average benchmark score of 47330 and the GPU’s average benchmark score of 68809 are both in the upper decile of their respective categories. The CPU’s 3DMark max-thread score of 12462 and the GPU’s 3DMark Steel Nomad DX12 score of 2969 together suggest a system capable of handling both compute-heavy and graphics-intensive tasks. Cinebench R23 multi-core score of 38704 indicates the CPU can sustain high all-core loads, which is relevant for CPU-bound rendering and encoding. The GPU’s Geekbench Vulkan score of 94284 and OpenCL score of 109175 reflect strong parallel compute performance, useful for GPU-accelerated workloads.

The percentile positions are consistent: the CPU at 89th percentile and GPU at 90th percentile, with the combined system at 90th percentile. This alignment means neither component significantly drags the other down in overall ranking. The CPU’s nearest rival, the Intel Core Ultra X9 378H, is only 0.3% ahead in average score, while the GPU’s nearest rival, the NVIDIA CMP 90HX, is 0.3% behind. These margins are within noise, so the i7-13700KF and Arc A770 perform at parity with their closest competitors. The combined picture is a system that excels in multi-threaded CPU tasks and GPU compute, with the 16 GB VRAM providing headroom for large datasets or high-resolution assets. The absence of measured FPS data means gaming performance must be inferred from these scores, but the component-level benchmarks indicate a capable pairing.

Balance and Bottleneck

The balance between the i7-13700KF and the Arc A770 is well matched, as evidenced by their near-identical percentile ranks of 89 and 90, respectively. The CPU’s multi-threaded throughput, reflected in a Cinebench R23 multi-core score of 38704, is unlikely to bottleneck the GPU in most scenarios. The GPU’s 19.66 TFLOPS FP32 compute and 512.0 GB/s bandwidth are substantial, but the CPU’s 5.40 GHz boost clock and 24 threads ensure it can feed the GPU with data. The CPU’s PassMark physics score of 2650 is a measure of physics simulation performance, which is relevant in games that rely on CPU-side physics; this score is moderate, so CPU-bound physics-heavy titles may see limitations. The GPU’s pixel rate of 307.2 GPixel/s and texture rate of 614.4 GTexel/s are high, suggesting the GPU can handle fill-rate-intensive scenes, but the CPU’s single-thread score of 1137 in 3DMark indicates that frame pacing in single-threaded game logic could be a limiting factor.

The CPU’s 3DMark 2-thread score of 2263 is relatively low compared to its 16-thread score of 10749, which suggests that workloads using only two threads will not fully utilize the CPU. In gaming, where many titles scale to 4 to 8 threads, the 3DMark 4-thread score of 4474 and 8-thread score of 8230 show strong scaling, so most modern games will see adequate CPU performance. The GPU’s 16 GB VRAM is unlikely to be a bottleneck at typical resolutions, and the 512.0 GB/s bandwidth supports high texture loads. The TDP figures of 125 W for the CPU and 225 W for the GPU, with a suggested PSU of 550 W, indicate the system has modest power headroom. The bottleneck analysis shows that for CPU-bound workloads, the i7-13700KF’s multi-threaded scores are sufficient, while for GPU-bound workloads, the Arc A770’s compute and memory bandwidth are the primary drivers. The FPS scaling, which is estimated due to lack of measured data, would likely follow the GPU’s performance in graphics-heavy scenes and the CPU’s performance in simulation-heavy scenes.

Usage Scenarios

For high-refresh gaming, the Arc A770’s 90th percentile GPU rank and 16 GB VRAM support high-resolution textures, while the i7-13700KF’s 8-thread 3DMark score of 8230 ensures the CPU can keep up with frame generation. The estimated FPS at 1080p and 1440p would be driven by the GPU’s 19.66 TFLOPS compute, though the lack of measured FPS data means exact numbers cannot be stated. For streaming, the CPU’s 16 cores and 24 threads provide ample headroom for encoding alongside gaming, with Cinebench R23 multi-core score of 38704 indicating strong multi-tasking capability. The GPU’s Vulkan score of 94284 also supports hardware-accelerated encoding workloads.

For video editing, the CPU’s PassMark data compression score of 596493 and integer math score of 154507 indicate fast processing of codec operations, while the GPU’s OpenCL score of 109175 accelerates effects and color grading. The 16 GB VRAM is sufficient for large timelines and high-resolution previews. For 3D rendering, the CPU’s Cinebench R20 multi-core score of 16255 and the GPU’s FP32 19.66 TFLOPS provide a dual-path rendering solution, with the CPU handling geometry and the GPU handling rasterization and ray tracing via its 32 RT cores. For software development, the CPU’s 24 threads and PassMark extended instructions score of 36700 support parallel compilation, while the GPU’s compute capabilities assist in testing GPU-accelerated code. For student and office work, the CPU’s single-thread score of 4336 in PassMark ensures responsive application use, and the GPU’s 16 GB VRAM is overkill for typical office tasks but provides future-proofing for more demanding academic projects.

Upgrade Path and Platform

The Intel Core i7-13700KF uses the Intel Socket 1700 platform, which supports both DDR4 and DDR5 memory, giving builders flexibility in memory choice. The CPU provides PCIe Gen 5 with 20 lanes, so a future GPU upgrade to a PCIe Gen 5 card would be fully supported. The GPU, Intel Arc A770, uses a PCIe 4.0 x16 interface, which is backward compatible with the CPU’s PCIe Gen 5 slots. The suggested PSU of 550 W, combined with the CPU’s 125 W TDP and GPU’s 225 W TDP, leaves headroom for additional drives or peripherals. A sensible next upgrade would be a higher-tier GPU, as the CPU’s 89th percentile rank is strong enough to support a more powerful graphics card without bottlenecking. The platform also supports ECC memory, which is beneficial for workstation use. The GPU is marked as end-of-life, with its successor being Battlemage, so users may consider that as a future replacement, but the current Arc A770’s 90th percentile rank remains competitive. The CPU has an unlocked multiplier, allowing overclocking to extend its lifespan, and the 257 mm² die size suggests adequate thermal headroom for cooling solutions.

Who Should Build It

This configuration targets gamers seeking high-refresh 1440p or 4K experiences, given the GPU’s 16 GB VRAM and 90th percentile rank, though FPS figures are estimated. Content creators working with video editing and 3D rendering will benefit from the CPU’s Cinebench R23 multi-core score of 38704 and the GPU’s 19.66 TFLOPS compute. Developers compiling large codebases will leverage the 24 threads and PassMark integer math score of 154507. Students in engineering or computer science fields will find the dual-channel DDR5 support and 16 cores sufficient for simulations and virtual machines. Small business workstations requiring ECC memory support and multi-threaded performance for data analysis will find the i7-13700KF’s PassMark data encryption score of 33314 useful for secure transactions. The combined 90th percentile rank means this build outperforms most systems, making it suitable for users who demand high performance across both CPU and GPU workloads.

FAQ

Q: What is the CPU’s average benchmark score and percentile rank?

A: The Intel Core i7-13700KF has an average benchmark score of 47330 and ranks at the 89th percentile among all CPUs.

Q: How much VRAM does the Intel Arc A770 have and what is its bandwidth?

A: The Arc A770 has 16 GB of GDDR6 memory on a 256-bit bus, providing 512.0 GB/s of bandwidth.

Q: What is the GPU’s average benchmark score and how does it compare to its nearest rival?

A: The Arc A770’s average benchmark score is 68809, which is 0.3% behind the NVIDIA CMP 90HX (69000) and 0.4% ahead of the AMD Radeon Instinct MI25 (68562).

Q: Does the CPU support ECC memory?

A: Yes, the Intel Core i7-13700KF supports ECC memory.

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

A: The Intel Arc A770 has a suggested PSU of 550 W.

Q: What is the CPU’s Cinebench R23 multi-core score?

A: The Cinebench R23 multi-core score is 38704.

Q: Is there measured FPS data for this CPU and GPU combination?

A: No, there is no measured FPS data for this exact combination, so all FPS discussion is estimated from the benchmark scores.

Gaming Performance

No measured FPS rows exist for the Intel Core i7-13700KF and Intel Arc A770 combination, so all gaming performance figures are estimates based on the benchmark scores. The GPU’s 90th percentile rank and 19.66 TFLOPS FP32 compute suggest strong performance at 1080p and 1440p, with the 16 GB VRAM supporting high texture quality. The CPU’s 8-thread 3DMark score of 8230 indicates it can handle modern game engines that scale to eight threads. The 3DMark Steel Nomad DX12 score of 2969 for the GPU provides a DirectX 12 workload reference, while the Vulkan score of 94284 suggests good API utilization. The CPU’s single-thread score of 1137 in 3DMark may limit frame rates in games with heavy single-threaded logic, but the 4-thread score of 4474 and 8-thread score of 8230 show adequate scaling for most titles. The GPU’s pixel rate of 307.2 GPixel/s and texture rate of 614.4 GTexel/s support high-resolution rendering, and the 512.0 GB/s bandwidth prevents memory bottlenecks at high settings. For competitive esports titles, the CPU’s 5.40 GHz boost clock and PassMark single-thread score of 4336 should deliver high frame rates, while for AAA games, the GPU’s 32 ray tracing cores enable ray-traced effects, though at a performance cost. The estimated FPS at 1440p ultra settings would be in the range of 60 to 100 FPS for most titles, based on the GPU’s compute and memory capabilities, but these are estimates and actual results may vary.

Build Overview

This desktop build combines the Intel Core i7-13700KF with the Intel Arc A770 to create a system at the 90th combined percentile. The CPU, a Raptor Lake-S part with 16 cores and 24 threads, delivers an average benchmark score of 47330, while the GPU, based on the Xe-HPG architecture with 16 GB of GDDR6 memory, achieves an average score of 68809. The pairing is balanced, with the CPU at the 89th percentile and GPU at the 90th percentile, indicating no significant bottleneck from either component. The build class is desktop, and the overall tier from the percentiles is upper-decile performance. The CPU’s Cinebench R23 multi-core score of 38704 and the GPU’s 3DMark Steel Nomad score of 2969 together define a system capable of handling both productivity and gaming workloads. The Arc A770’s 16 GB VRAM and 512.0 GB/s bandwidth are notable for a GPU in this tier, and the i7-13700KF’s 5.40 GHz boost clock ensures responsive single-threaded performance. This pairing is a strong choice for users seeking high performance in both CPU-bound and GPU-bound applications, with the caveat that gaming FPS figures are estimated due to the lack of measured data for this specific combination.