SYSTEM ANALYZER

Rate My PC: Intel Core i7-13700KF + Intel Arc B770

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

84 / 100
HIGH-END

Power Build

Top 16% of systems. Excellent for 1440p Ultra or 4K High gaming.

1440p Ultra4K High

System Balance Analysis

CPU vs GPU performance ratio
Well Balanced
CPU
94%
VS
GPU
74%
PROCESSOR

Intel Core i7-13700KF

47,330 Benchmark Score
Top 6% 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 Intel Core i7-13700KF and Intel Arc B770 pairing represents a high-end desktop configuration centered on a 16-core Raptor Lake processor. The data indicates a strong CPU with an 89th percentile ranking, paired with a mid-range GPU that sits at the 50th percentile, creating a system with significant computational headroom.

CPU Analysis

The Intel Core i7-13700KF is a 16-core, 24-thread processor built on the Raptor Lake architecture, manufactured 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 TDP of 125 W. The chip uses Intel Socket 1700 and supports both DDR4 and DDR5 memory in a dual-channel configuration, along with PCIe Gen 5 connectivity with 20 lanes from the CPU. The cache hierarchy includes 80 KB of L1 per core, 2 MB of L2 per core, and 30 MB of shared L3 cache. Notably, the multiplier is unlocked, allowing for overclocking, and the processor supports ECC memory.

Benchmark results show a processor that scales effectively across thread counts. The 3DMark scores progress from 1137 in single-thread to 2263 in 2-thread, 4474 in 4-thread, 8230 in 8-thread, 10749 in 16-thread, and 12462 in max-thread tests. This scaling pattern indicates robust multi-threading efficiency, with the 16-thread score representing 86% of the max-thread result, suggesting that the processor's hybrid architecture delivers near-linear gains up to its full core count.

In Cinebench tests, the processor achieves 3901 in R15 multicore and 550 in R15 single-core, 16255 in R20 multicore and 2294 in R20 single-core, and 38704 in R23 multicore with 5464 in R23 single-core. The R23 multicore score of 38704 places it in a competitive position for demanding rendering workloads. Geekbench results show 18258 multicore and 2435 single-core scores, reinforcing the balanced performance profile.

The PassMark suite reveals specialized strengths: data compression at 596493, data encryption at 33314, extended instructions at 36700, floating point math at 114997, integer math at 154507, multithread at 45817, physics at 2650, random string sorting at 62726, and single-thread at 4336. The high integer and floating-point math scores indicate strong general compute capability, while the encryption and compression numbers suggest solid performance in data-intensive tasks.

The CPU's average benchmark score is 47330, with a percentile ranking of 89 among all CPUs. Compared to its nearest rivals, it is 0.3% behind the Intel Core Ultra X9 378H (47468 score), 0.3% ahead of the Intel Core i9-12900F (47176 score), 0.4% behind the AMD Ryzen 9 PRO 5945 (47527 score), and 0.7% ahead of the AMD Ryzen AI 9 HX PRO 375 (47022 score). This places it in a tightly contested performance band where differences are marginal, making the 13700KF a competitive choice in its segment.

Benchmark Performance

The CPU benchmarks establish a clear performance tier: with an 89th percentile ranking, the Core i7-13700KF outperforms the vast majority of processors in the database. Its average benchmark score of 47330 places it in the upper echelon, with the nearest rivals all within 0.7% of its score, indicating a highly competitive field at this performance level.

The GPU, the Intel Arc B770, presents a different picture. It has no benchmark scores listed, resulting in an average benchmark score of 0 and a 50th percentile ranking among all GPUs. This mid-tier position means it sits at the median of the GPU performance distribution, offering mainstream capabilities rather than top-tier performance.

The combined percentile for this CPU+GPU pairing is 70, reflecting a system where the processor's strong performance is moderated by the GPU's mid-range positioning. The overall build sits in the upper-middle tier of desktop configurations, with the CPU providing substantial headroom for compute-heavy tasks while the GPU handles graphics workloads at a mainstream level.

Data availability is limited for this exact combination: no measured FPS data exists for the Intel Core i7-13700KF with the Intel Arc B770. All frame rate discussions are therefore estimates derived from the individual component benchmark scores rather than direct measurements.

Balance and Bottleneck

The performance asymmetry between the CPU and GPU creates a clear bottleneck profile. The CPU's 89th percentile ranking versus the GPU's 50th percentile indicates that the processor substantially outperforms the graphics card in relative terms. In gaming scenarios, the GPU will typically be the limiting factor for frame rates, particularly at higher resolutions where graphics load increases.

The CPU's strong multi-threaded scores, such as the Cinebench R23 multicore result of 38704 and PassMark multithread score of 45817, suggest it can handle heavy compute workloads without becoming a constraint. In contrast, the GPU's mid-tier percentile means it will likely cap performance in graphics-intensive applications. The 16-thread 3DMark score of 10749 versus the max-thread score of 12462 shows the CPU maintains high throughput even under partial load, which helps avoid CPU-induced frame drops in gaming.

For productivity tasks, the balance shifts. Applications that leverage the CPU's 16 cores and 24 threads, such as rendering or compilation, will see the processor working near its full potential. The GPU's role in these workloads is secondary, so the bottleneck is less pronounced. The PassMark data compression score of 596493 and integer math score of 154507 indicate strong CPU performance in data-heavy tasks, where the GPU's mid-tier status has minimal impact.

Who Should Build It

This configuration targets users who prioritize CPU-intensive workloads while maintaining competent graphics capability. Gamers at 1080p or 1440p resolutions will benefit from the CPU's strong single-thread performance, evidenced by the 3DMark single-thread score of 1137 and PassMark single-thread score of 4336, which help maintain high frame rates in CPU-bound scenarios. However, the GPU's 50th percentile ranking suggests it will be the limiting factor at higher settings.

Content creators working with video editing or 3D rendering will find the CPU's 16 cores and 24 threads advantageous. The Cinebench R23 multicore score of 38704 and PassMark multithread score of 45817 demonstrate substantial parallel processing capability for rendering tasks. Software developers compiling large codebases will benefit from the high integer math score of 154507 and data encryption score of 33314, which accelerate build processes and cryptographic operations.

Students and small business users running multi-threaded productivity applications will experience responsive performance from the CPU, though the GPU's mid-tier status is sufficient for standard office workloads. The processor's ECC memory support adds reliability for data-sensitive workstations, and the unlocked multiplier offers flexibility for users seeking additional performance through overclocking.

Usage Scenarios

High-refresh gaming at 1080p or 1440p is feasible with this pairing, though the GPU's 50th percentile means it will constrain frame rates in demanding titles. The CPU's strong single-thread performance, reflected in the Cinebench R23 single-core score of 5464, helps maintain high frame rates in CPU-bound scenarios, but the GPU's mid-tier positioning limits ultra-settings performance.

Streaming while gaming benefits from the CPU's 24 threads, which can handle encoding overhead alongside game logic. The PassMark multithread score of 45817 indicates sufficient headroom for simultaneous workloads, while the GPU's capabilities handle the graphics rendering.

Video editing workflows will leverage the CPU's multi-core strength. The Cinebench R20 multicore score of 16255 and Geekbench multicore score of 18258 support smooth timeline scrubbing and faster exports, with the GPU providing hardware acceleration for effects and encoding where supported.

3D rendering performance is CPU-dominated, and the 13700KF delivers strong results. The Cinebench R15 multicore score of 3901 and R23 multicore score of 38704 demonstrate the processor's ability to handle complex scenes, making this a capable workstation for render workloads.

Software development benefits from the CPU's integer and floating-point throughput. The PassMark integer math score of 154507 and floating-point math score of 114997 accelerate compilation and testing cycles, while the 16 cores handle parallel build systems efficiently.

Student and office work sees minimal demands on either component. The CPU's single-thread performance handles everyday applications with ease, and the GPU's capabilities exceed the requirements of document editing, web browsing, and spreadsheet tasks.

Gaming Performance

No measured FPS data exists for the Intel Core i7-13700KF with the Intel Arc B770 combination. The database contains no measuredFps rows for this exact pairing, so all frame rate figures presented here are estimates based on the individual component benchmark scores rather than direct testing results.

Based on the CPU's 89th percentile ranking and the GPU's 50th percentile, gaming performance will be primarily GPU-limited. The processor's strong single-thread performance, evidenced by the 3DMark single-thread score of 1137 and PassMark single-thread score of 4336, ensures it can feed frames quickly, but the GPU's mid-tier position caps overall output. At 1080p with ultra settings, the system should achieve playable frame rates in most titles, though competitive esports games may exceed 60 FPS while AAA titles may fall below that threshold. At 1440p, the GPU's bandwidth of 512.0 GB/s and 16 GB of VRAM provide sufficient resources, but the 50th percentile ranking suggests moderate performance levels.

These estimates assume the GPU's architecture performs consistently with its percentile placement. The actual frame rates depend on specific game optimizations, driver maturity, and the balance between CPU and GPU utilization in each title.

GPU Analysis

The Intel Arc B770 is based on the Xe2-HPG architecture, built on TSMC's 5 nm process with a die size of 368 mm². The chip, designated BMG-G31, belongs to the Battlemage generation and is part of the Arc 7 series. It features 4096 shading units, 256 texture mapping units, 128 render output units, and 32 ray tracing cores. The GPU operates at a base clock of 2100 MHz with a boost clock of 2400 MHz, and memory runs at 2000 MHz with 16 Gbps effective speed.

The memory subsystem consists of 16 GB of GDDR6 on a 256-bit bus, providing a bandwidth of 512.0 GB/s. This configuration offers substantial memory capacity for modern games and creative applications, with bandwidth sufficient for 1440p gaming and moderate 4K workloads. The pixel rate is 307.2 GPixel/s, and the texture rate is 614.4 GTexel/s, indicating solid fill rates for its class.

Compute performance is rated at 19.66 TFLOPS for FP32 and 39.32 TFLOPS for FP16 with a 2:1 ratio. These figures place the GPU in a mid-range position, consistent with its 50th percentile ranking. The GPU supports DirectX 12 Ultimate (12_2), OpenGL 4.6, and Vulkan 1.4, ensuring compatibility with modern graphics APIs. The 32 ray tracing cores provide hardware acceleration for ray-traced effects, though performance will be limited by the GPU's overall compute throughput.

The card has a TDP of 225 W, requires a 550 W suggested power supply, and uses a dual-slot cooler with a 1x 6-pin plus 1x 8-pin power connector configuration. Display outputs include 1x HDMI 2.1a and 3x DisplayPort 2.1, supporting modern high-refresh and high-resolution monitors. The PCIe 4.0 x16 interface provides adequate bandwidth for this performance class. The predecessor to this architecture is Alchemist, indicating a progression in Intel's discrete GPU development.

Build Overview

This is a desktop build combining the Intel Core i7-13700KF processor with the Intel Arc B770 graphics card. The CPU is a 16-core, 24-thread Raptor Lake chip with an 89th percentile ranking, while the GPU is a Battlemage-generation card with a 50th percentile ranking. The combined percentile for this pairing is 70, placing the overall system in the upper-middle tier of desktop configurations.

The CPU's average benchmark score of 47330 places it alongside competitors like the Intel Core Ultra X9 378H (47468, 0.3% higher) and the AMD Ryzen 9 PRO 5945 (47527, 0.4% higher), while edging out the Intel Core i9-12900F (47176, 0.3% lower) and the AMD Ryzen AI 9 HX PRO 375 (47022, 0.7% lower). This indicates a processor that is competitive with leading alternatives in its class.

The GPU, with no benchmark scores and a 50th percentile, represents a mid-range graphics solution that pairs with a high-end processor. This creates a system where the CPU provides substantial computational headroom, but the GPU moderates overall graphics performance. The build is suited for users who need strong multi-threaded processing for productivity tasks while maintaining competent gaming capability at mainstream settings.

FAQ

Q: How does the Intel Core i7-13700KF compare to its nearest rivals?

A: The CPU has an average benchmark score of 47330, placing it 0.3% behind the Intel Core Ultra X9 378H (47468), 0.3% ahead of the Intel Core i9-12900F (47176), 0.4% behind the AMD Ryzen 9 PRO 5945 (47527), and 0.7% ahead of the AMD Ryzen AI 9 HX PRO 375 (47022).

Q: What is the GPU's performance percentile and what does it mean?

A: The Intel Arc B770 has a 50th percentile ranking among all GPUs, meaning it performs at the median level of the GPU distribution. It has no benchmark scores listed, so its average score is 0.

Q: What is the combined performance percentile of this CPU+GPU pairing?

A: The combined percentile is 70, placing the system in the upper-middle tier of desktop configurations, reflecting the CPU's strong 89th percentile and the GPU's mid-range 50th percentile.

Q: What memory and bandwidth does the Intel Arc B770 have?

A: The GPU features 16 GB of GDDR6 memory on a 256-bit bus, providing 512.0 GB/s of bandwidth. Memory clocks run at 2000 MHz with 16 Gbps effective speed.

Q: What are the CPU's core and thread counts, and what does this mean for workloads?

A: The Core i7-13700KF has 16 cores and 24 threads, which supports heavy multi-threaded workloads. This is reflected in its Cinebench R23 multicore score of 38704 and PassMark multithread score of 45817.

Q: Is there measured FPS data for this specific combination?

A: No, the database contains no measured FPS data for the Intel Core i7-13700KF paired with the Intel Arc B770. All frame rate discussions are estimates based on the individual component benchmark scores.

Q: What power supply is suggested for this GPU?

A: The Intel Arc B770 has a TDP of 225 W and a suggested power supply of 550 W. It requires a 1x 6-pin plus 1x 8-pin power connector configuration.