SYSTEM ANALYZER

Rate My PC: Intel Core i7-14700F + Intel Arc B580

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
95%
VS
GPU
92%
PROCESSOR

Intel Core i7-14700F

53,620 Benchmark Score
Top 5% Market Ranking
View Full Specs →
GRAPHICS CARD

Intel Arc B580

23,021 Benchmark Score
Top 8% 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 Intel Core i7-14700F and Intel Arc B580 form a desktop pairing that targets a specific performance sweet spot. The CPU, with its 20 cores and 28 threads, delivers top-tier multi-threaded performance, while the GPU offers solid 1080p and 1440p gaming capabilities. The combined benchmark data positions this build at the 80th percentile overall, indicating a well-balanced system for a wide range of tasks. The following analysis breaks down the strengths and limitations of this configuration based exclusively on the provided benchmark data.

Usage Scenarios

High-Refresh Gaming: At 1920x1080, this system is exceptionally capable of driving high-refresh-rate monitors in competitive titles. Measured FPS at Ultra settings shows Counter-Strike 2 at 151 FPS, Valorant at 344 FPS, and Call of Duty: Warzone at 165.7 FPS. These numbers comfortably exceed the 144Hz threshold, and even reach into 240Hz territory for esports-focused games, making this a strong choice for fast-paced multiplayer gaming.

Streaming: The CPU's substantial core count is well-suited for the demands of simultaneous gaming and encoding. The Intel Core i7-14700F's 28 threads provide ample headroom for handling game logic while a software encoder manages the stream, a task that would strain lower-core-count processors. The data shows a 91st percentile ranking for the CPU, suggesting it will not be a limiting factor in this workload, though the GPU's 68th percentile ranking should be considered for the gaming portion of the equation.

Video Editing: The Core i7-14700F's performance in multi-threaded benchmarks is a strong indicator of its video editing prowess. A Cinebench R23 multicore score of 35122 and a Geekbench multicore score of 19620 place it in the top tier of desktop processors. This level of performance translates to faster render times and smoother timeline scrubbing in non-linear editing applications, which are heavily reliant on CPU multi-core performance.

3D Rendering: For CPU-based rendering, the system is exceptionally strong. The Cinebench R20 multicore score of 14751 and the Passmark multithread score of 41317 demonstrate the CPU's ability to handle complex scenes and ray-tracing workloads that scale well with core counts. While the GPU is less of a powerhouse in this area, its 13.67 TFLOPS of FP32 performance indicates it can still contribute to GPU-accelerated rendering tasks, though it will be the slower component in this workload.

Software Development: Compilation tasks are notoriously parallel, and this CPU is well-equipped to handle them. The Passmark integer math score of 155808 and data compression score of 505885 are particularly relevant here, as they reflect the raw computational power needed for building large codebases. The high core count reduces build times, while the single-thread performance, as evidenced by a Geekbench single-core score of 2429, ensures responsive IDE interaction.

Student and Office Work: This configuration is overkill for basic productivity tasks, but it excels in scenarios where students might dabble in content creation or data analysis. The CPU's single-thread performance (Cinebench R23 single-core score of 4958) ensures snappy application loading and smooth multitasking in office suites. The Passmark data encryption score of 30144 also indicates that tasks like file encryption and secure communications will be handled with ease.

Balance and Bottleneck

The benchmark data reveals a system where the CPU is clearly the dominant component. The Intel Core i7-14700F sits at the 91st percentile among all CPUs, while the Intel Arc B580 is at the 68th percentile among all GPUs. This imbalance suggests that in CPU-intensive tasks like 3D rendering, video encoding, and software compilation, the processor will be the primary driver of performance, with the GPU playing a secondary role.

In gaming, the bottleneck shifts to the GPU. The measured FPS data across various titles and resolutions demonstrates this clearly. For instance, in a demanding title like Cyberpunk 2077, the system achieves 44.8 FPS at 1080p, but this drops to 32.2 FPS at 1440p and 20.2 FPS at 4K. This scaling pattern indicates that the GPU's rendering limits are being reached as resolution increases, while the CPU is capable of feeding it more frames at lower resolutions.

The pair's FPS ranking provides further context. With a rank of 2752 out of 3732 pairs and an average FPS of 100 across all games, the system is solidly in the mid-to-upper tier for gaming. The data suggests that at 1080p, the CPU is rarely a limiting factor, but at 1440p and especially 4K, the GPU's performance ceiling defines the gaming experience. This is a classic case of a high-end CPU paired with a mid-range GPU, where the CPU provides a massive performance buffer for future GPU upgrades.

Benchmark Performance

The Intel Core i7-14700F delivers outstanding benchmark scores. Its Cinebench R23 multicore score of 35122 and Geekbench multicore score of 19620 are indicative of a high-end desktop processor. The CPU's average benchmark score is 53620, which places it at the 91st percentile. Its nearest rivals include the Intel Xeon 6505P (deltaPct of -0.2), the Intel Xeon Phi 7290 (deltaPct of 0.3), the AMD Ryzen 9 7900X (deltaPct of 0.6), and the AMD EPYC 7313P (deltaPct of 0.8). This shows it is performing in the same league as some formidable server and high-end desktop parts, with performance deltas of less than 1%.

The Intel Arc B580 shows more modest performance. Its 3DMark Steel Nomad DX12 score is 3068, and its Geekbench OpenCL and Vulkan scores are 92821 and 109672, respectively. The GPU's average benchmark score is 23021, placing it at the 68th percentile. Its nearest rivals are the AMD Radeon RX 580 2048SP (deltaPct of -0.2), the NVIDIA GeForce RTX 2080 (deltaPct of 0.6), the NVIDIA GeForce RTX 3080 (deltaPct of -0.7), and the NVIDIA P106-100 (deltaPct of -1). This indicates the B580 is positioned between the RTX 2080 and RTX 3080 in terms of raw benchmark scores, a significant range.

Combined, the picture is clear: a top-tier CPU providing exceptional computational power, paired with a mid-to-high-tier GPU that provides competent but not class-leading graphics performance. The combined percentile of 80 reflects this, showing a system that is more capable than the vast majority of builds, but where the CPU is the clear star.

Who Should Build It

This build is a compelling option for a specific type of user: one who prioritizes CPU-heavy workloads but also wants a competent gaming machine. Content creators who edit video, render 3D scenes, or work with large datasets will find the CPU's performance transformative, cutting down render and export times significantly compared to lower-core-count systems.

Software developers will benefit from faster compilation times and the ability to run multiple virtual machines or containers without slowdown, thanks to the 28 threads. The high single-thread performance also ensures that the development environment remains responsive.

For gamers, this system is best suited for those playing at 1080p or 1440p. At these resolutions, the GPU can deliver high frame rates in most titles, as shown by the FPS data. Gamers with 4K displays or those who demand maximum settings in the most demanding AAA titles may find the GPU to be the limiting factor.

Students and small business professionals in technical fields will find this system to be a powerful workstation. It can handle complex simulations, data analysis, and heavy multitasking without breaking a sweat. However, for those whose primary use is office productivity and web browsing, this configuration is significantly more powerful than necessary, though it offers excellent future-proofing. This pairing is not for the casual user, but for those who need serious computational muscle.

FAQ

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

A: The combined percentile for this build is 80, indicating it performs better than 80% of all tested CPU and GPU pairings.

Q: How does the Intel Core i7-14700F compare to its nearest rival, the AMD Ryzen 9 7900X?

A: The average benchmark score for the Intel Core i7-14700F is 53620, which is 0.6% higher than the AMD Ryzen 9 7900X's average score of 53288.

Q: What are the GPU's benchmark scores and how do they compare to an NVIDIA GeForce RTX 2080?

A: The Intel Arc B580 has a 3DMark Steel Nomad DX12 score of 3068 and a Passmark G3D score of 15748. Its average benchmark score is 23021, which is 0.6% higher than the NVIDIA GeForce RTX 2080's average score of 22895.

Q: What is the average FPS across all games tested for this pair?

A: The pair has an average FPS of 100 across all games in the measured dataset.

Q: What is the CPU's boost clock speed and how many cores does it have?

A: The Intel Core i7-14700F has a boost clock of 5.40 GHz and features 20 cores and 28 threads.

Q: What is the memory bus width and bandwidth of the Intel Arc B580?

A: The Intel Arc B580 has a 192-bit memory bus and a memory bandwidth of 456.0 GB/s.

Q: What is the suggested PSU wattage for this GPU?

A: The suggested PSU for the Intel Arc B580 is 450 W.

Gaming Performance

The measured FPS data for this system reveals a clear pattern of strong 1080p performance with diminishing returns at higher resolutions. In esports titles, the system is exceptional. Valorant runs at 344 FPS at 1080p, 293 FPS at 1440p, and still manages 235 FPS at 4K. Counter-Strike: Global Offensive is similarly impressive with 328.3 FPS at 1080p. These numbers indicate the CPU and GPU work well together to eliminate any potential bottleneck at lower resolutions.

For AAA titles, performance is solid at 1080p but requires settings adjustments at higher resolutions. Call of Duty: Warzone runs at 165.7 FPS at 1080p, 145.5 FPS at 1440p, and 127.7 FPS at 4K. Tom Clancy's Rainbow Six Siege achieves 178 FPS at 1080p and 117 FPS at 1440p. However, more demanding games like Cyberpunk 2077 (44.8 FPS at 1080p), Red Dead Redemption 2 (39.5 FPS at 1080p), and Microsoft Flight Simulator (54.4 FPS at 1080p) show that the GPU is the limiting factor. At 4K, these titles drop to 20.2 FPS, 20.2 FPS, and 31.1 FPS respectively, which is below the threshold for a smooth experience.

The data indicates that this build is best suited for 1080p high-refresh gaming and 1440p gaming for most titles. The GPU's performance at 4K is only suitable for less demanding or older games, as seen with titles like Barony (44.4 FPS) and Inside (57.7 FPS). This is a gaming system designed for speed and fluidity at mainstream resolutions, not for maxing out 4K monitors in the latest AAA releases.

CPU Analysis

The Intel Core i7-14700F is a Raptor Lake-R architecture processor built on Intel's 10 nm process node. It features a substantial 20 cores and 28 threads, a configuration designed to handle heavily parallelized workloads. The base clock is 2.10 GHz, which can boost up to 5.40 GHz for demanding single-threaded tasks. This combination of high core count and high boost clock is what allows it to achieve a 91st percentile ranking.

The benchmark scores paint a clear picture of its capabilities. The Cinebench R23 multicore score of 35122 demonstrates exceptional multi-threaded performance, placing it in the same performance tier as server-class Xeon processors, as evidenced by its nearest rivals. Its single-core performance is also strong, with a Cinebench R23 score of 4958 and a Geekbench single-core score of 2429, ensuring snappy responsiveness in everyday tasks and applications that rely on single-thread speed.

For real-world workloads, this translates to a CPU that can handle almost anything thrown at it. The Passmark scores for specific tasks are particularly telling. A data compression score of 505885 and an integer math score of 155808 show its prowess in data processing. The floating-point math score of 107005 is also very high, which is beneficial for scientific computing and certain types of rendering. This is a CPU that is not just fast; it is a workstation-grade component that excels in productivity and content creation.

Upgrade Path and Platform

The Intel Core i7-14700F uses the Intel Socket 1700 platform. It supports both DDR4 and DDR5 memory in a dual-channel configuration, offering flexibility in choosing memory based on budget and performance needs. The CPU provides 16 PCIe Gen 5 lanes, which is a high-bandwidth interface for connecting the fastest available SSDs and other expansion cards.

The GPU, the Intel Arc B580, is a dual-slot card that requires a single 8-pin power connector. It has a TDP of 190 W, and the suggested PSU for the system is 450 W. This leaves some headroom for additional components, but a higher wattage PSU would be a sensible investment if future upgrades are planned.

The upgrade path is a key consideration. The LGA 1700 socket is a mature platform, and the Core i7-14700F is near the top of the range for this socket. A future upgrade would likely involve a new motherboard and CPU. However, the GPU is a more straightforward upgrade path. The B580 uses a PCIe 4.0 x8 interface, so any modern motherboard will support it. Upgrading to a more powerful GPU would be the most impactful change for gaming performance, as the CPU has significant headroom to support faster graphics cards.

Build Overview

This is a desktop build that pairs a top-tier 14th Gen Intel Core i7 processor with a mid-to-high-range Intel Arc Battlemage GPU. The Intel Core i7-14700F is a 20-core, 28-thread processor from the Core 14th Gen series, based on the Raptor Lake architecture. The Intel Arc B580 is based on the Xe2-HPG architecture and is from the Battlemage (Arc 5) generation.

The overall tier of this build is defined by its combined percentile of 80. This places it in the upper quintile of all tested systems. The CPU is the clear performance leader, sitting at the 91st percentile, while the GPU is at the 68th percentile. This positioning makes it a powerful productivity and content creation machine that is also quite capable for gaming, particularly at 1080p and 1440p. It is a well-balanced system for a power user who values CPU performance above all else, while still requiring solid graphics capabilities.

GPU Analysis

The Intel Arc B580 is built on the Xe2-HPG architecture and is manufactured by TSMC on a 5 nm process. It features 12 GB of GDDR6 memory on a 192-bit bus, providing a memory bandwidth of 456.0 GB/s. The GPU has 2560 shading units, 160 TMUs, and 80 ROPs, along with 20 dedicated RT cores. Its base and boost clocks are both set at 2670 MHz.

The GPU's benchmark scores show it to be a competent mid-range performer. Its 3DMark Steel Nomad DX12 score of 3068 and Passmark G3D score of 15748 are respectable. The Geekbench OpenCL score of 92821 and Vulkan score of 109672 indicate solid compute and graphics API performance. The FP32 performance is rated at 13.67 TFLOPS, which is a measure of its raw computational power for graphics and compute tasks.

In terms of its position in the market, the B580's average benchmark score of 23021 places it at the 68th percentile. Its nearest rivals include the NVIDIA GeForce RTX 2080 (deltaPct of 0.6) and the NVIDIA GeForce RTX 3080 (deltaPct of -0.7). This suggests that in raw benchmark performance, it sits between these two older NVIDIA cards. For rendering tasks, the 12 GB of VRAM is a significant asset, allowing for larger textures and scenes to be loaded into memory. The 20 RT cores provide hardware acceleration for ray-traced effects, though the overall RT performance will be in line with its mid-range positioning. The GPU also supports modern APIs including DirectX 12 Ultimate (12_2), Vulkan 1.4, and OpenGL 4.6, ensuring broad game compatibility.