SYSTEM ANALYZER

Rate My PC: Intel Core i7-14700F + Intel Arc B770

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

85 / 100
HIGH-END

Power Build

Top 15% of systems. Excellent for 1440p Ultra or 4K High gaming.

1440p Ultra4K High

System Balance Analysis

CPU vs GPU performance ratio
GPU Bottleneck
CPU
95%
VS
GPU
74%

Your GPU is limiting system performance. Consider upgrading to a more powerful graphics card to better utilize your CPU.

PROCESSOR

Intel Core i7-14700F

53,620 Benchmark Score
Top 5% 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.

Bottleneck Detected

GPU Bottleneck - Upgrading the weaker component will improve overall performance.

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 paired with the Intel Arc B770 represents a high-performance desktop combination built around a 20-core Raptor Lake processor and Intel’s newest Battlemage GPU architecture. The CPU is a top-tier performer, scoring in the 91st percentile among all processors, while the GPU sits at the 50th percentile, indicating a significant imbalance where the processor vastly outclasses the graphics card in raw compute capability. Because no measured FPS data exists for this exact pairing, all gaming performance figures discussed in this analysis are estimates derived from the CPU’s and GPU’s synthetic benchmark scores and architectural specifications, not from direct game testing.

Gaming Performance

The absence of measured FPS rows for the Intel Core i7-14700F and Intel Arc B770 combination means that specific frame rates at 1080p, 1440p, or 4K cannot be cited. Benchmark results, however, allow for informed estimates. The CPU’s PassMark single-thread score of 4257 and Cinebench R23 single-core score of 4958 indicate excellent per-core performance, placing it in the 91st percentile overall. This ensures that the processor will not bottleneck modern game engines, which typically rely heavily on single-threaded performance for physics, AI, and draw calls. The Arc B770, with its 4096 shading units and 128 ROPs, provides a raw pixel throughput of 307.2 GPixel/s and a texture rate of 614.4 GTexel/s, suggesting it is capable of handling high-resolution textures and post-processing effects.

At 1080p, the Arc B770’s 19.66 TFLOPS of FP32 compute should deliver high frame rates in esports titles, where CPU overhead is minimal, and the i7-14700F’s 5.40 GHz boost clock will push frame rates well beyond monitor refresh rates. For AAA titles at 1440p, the GPU’s 512.0 GB/s memory bandwidth and 16 GB of GDDR6 VRAM provide ample headroom for high-detail textures, though the 50th percentile GPU score suggests performance will be moderate rather than exceptional. At 4K, the pixel rate of 307.2 GPixel/s becomes a limiting factor, and frame rates will likely drop below the 60 FPS threshold in demanding titles, even with the CPU’s superior processing power. Since these are estimates, actual performance may vary, but the data indicates a system best suited for high-refresh 1080p and solid 1440p gaming rather than 4K ultra settings.

Upgrade Path and Platform

The Intel Core i7-14700F uses the Intel Socket 1700 platform, which is shared with previous generations, offering a clear upgrade path for users coming from older 12th or 13th gen processors. The platform supports both DDR4 and DDR5 memory, giving builders flexibility in choosing between cost-effective DDR4 modules or higher-bandwidth DDR5 kits. The memory bus is dual-channel, and while the factory pack does not specify maximum memory bandwidth, the support for ECC memory is a notable feature for workstation users who require data integrity in compute-heavy tasks.

The CPU’s PCIe Gen 5 interface provides 16 lanes directly from the processor, making it compatible with the fastest current storage devices and graphics cards, though the Arc B770 itself uses a PCIe 4.0 x16 interface. The 65W TDP of the i7-14700F is remarkably low for a 20-core processor, which means a capable air cooler will suffice, and users upgrading from older, higher-TDP chips may not need to change their cooling solutions. The GPU has a 225W TDP and requires a suggested 550W power supply, which is modest for this class of hardware. A sensible next upgrade for this platform would be moving to a higher-core-count Raptor Lake refresh processor if more CPU throughput is needed, or pairing the existing CPU with a more powerful GPU in the future, as the PCIe Gen 5 slot ensures compatibility with next-generation graphics cards without bottlenecking.

GPU Analysis

The Intel Arc B770 is built on the Xe2-HPG architecture, codenamed Battlemage, and manufactured on TSMC’s 5 nm process with a die size of 368 mm². It features 16 GB of GDDR6 memory on a 256-bit bus, delivering a bandwidth of 512.0 GB/s. This memory configuration is generous for the GPU’s 50th percentile performance ranking, indicating that memory capacity is not a limiting factor for most workloads. The GPU’s base clock is 2100 MHz, with a boost clock of 2400 MHz, and its memory runs at 2000 MHz with 16 Gbps effective speed.

The shading units number 4096, paired with 256 texture mapping units and 128 render output units. The GPU also includes 32 ray tracing cores, making it capable of hardware-accelerated ray tracing, though its performance in this area is not benchmarked in the provided data. The absence of tensor core specifications means AI acceleration features are undetermined from this pack. The FP32 performance is 19.66 TFLOPS, while FP16 performance doubles to 39.32 TFLOPS with a 2:1 ratio, which is valuable for workloads that can utilize mixed-precision computing. For rendering tasks, the 19.66 TFLOPS is competent for real-time graphics, but professional 3D rendering software often relies on CUDA cores or specific vendor optimizations that may favor competing architectures. The GPU supports DirectX 12 Ultimate (12_2), OpenGL 4.6, and Vulkan 1.4, ensuring compatibility with modern APIs, and its display outputs include 1x HDMI 2.1a and 3x DisplayPort 2.1, supporting high refresh rate monitors.

Balance and Bottleneck

The data reveals a stark imbalance between the CPU and GPU in this pairing. The i7-14700F ranks in the 91st percentile among all CPUs, with an average benchmark score of 53620, while the Arc B770 ranks in the 50th percentile among all GPUs, with an average benchmark score of zero (due to missing data). This indicates that the CPU is capable of far more work than the GPU can feed it, making the GPU the definitive bottleneck in most workloads. In gaming, this means that at lower resolutions like 1080p, the CPU’s strong single-thread performance will be wasted, as the GPU will limit frame rates. At higher resolutions like 4K, the GPU’s workload increases, but its mid-range performance ranking means it will still be the limiting factor.

The PassMark multithread score of 41317 and Cinebench R23 multicore score of 35122 confirm the CPU’s exceptional parallel processing capabilities, which are underutilized in gaming scenarios that rely more on the GPU. However, in productivity tasks such as video editing or 3D rendering, the balance shifts: the CPU handles encoding and physics simulation, while the GPU accelerates effects and final renders. Here, the CPU’s dominance means that tasks with heavy CPU workloads will complete quickly, but GPU-accelerated tasks will be constrained by the Arc B770’s mid-pack performance. The FPS scaling from 1080p to 4K would show a steep decline due to the GPU’s pixel throughput limits, while CPU-bound tasks would show minimal performance degradation, highlighting that users upgrading to this system should consider a stronger GPU to match the CPU’s potential.

CPU Analysis

The Intel Core i7-14700F is a 20-core, 28-thread processor based on the Raptor Lake architecture, specifically the Raptor Lake-R refresh, and manufactured on Intel’s 10 nm process. It has a base clock of 2.10 GHz and a boost clock of 5.40 GHz, with a 65W TDP that is impressively efficient for its core count. The CPU’s cache hierarchy includes 80 KB of L1 per core, 2 MB of L2 per core, and 33 MB of shared L3 cache, which is substantial for gaming and productivity workloads.

Benchmark results show this is a powerhouse. The Cinebench R23 multicore score of 35122 places it in the 91st percentile, and its nearest rivals include the AMD Ryzen 9 7900X, which scores 53288 with a deltaPct of 0.6, meaning the i7-14700F is slightly ahead. The Geekbench multicore score of 19620 and single-core score of 2429 reinforce its strong all-around performance. PassMark tests reveal specialized strengths: data compression score of 505885 and integer math score of 155808 are excellent, indicating strong performance in database and financial workloads. Floating point math at 107005 and extended instructions at 28564 suggest solid scientific computing capabilities, while the find prime numbers score of 176 is a weaker area, likely due to the specific algorithm’s sensitivity to cache latency.

For real workloads, this CPU excels in multi-threaded applications like video encoding, software compilation, and 3D rendering, where its 28 threads can be fully utilized. The single-core performance, evidenced by the Cinebench R23 single-core score of 4958, ensures snappy responsiveness in everyday tasks and strong gaming performance in CPU-light titles. The 65W TDP is a significant advantage for system builders, allowing for compact cooling solutions and lower power bills without sacrificing performance, making it a versatile choice for both enthusiast gaming rigs and professional workstations.

Who Should Build It

This combination targets users who prioritize CPU-intensive workloads but are willing to compromise on GPU performance. Gamers at 1080p resolution will find the i7-14700F’s strong single-core performance and the Arc B770’s 16 GB VRAM sufficient for high refresh rate gaming, though the GPU’s 50th percentile ranking means they should stick to medium-high settings in the latest titles. Content creators, particularly video editors and 3D modelers, will benefit from the CPU’s 35122 Cinebench R23 multicore score, which handles timeline scrubbing and preview rendering efficiently, while the GPU’s 19.66 TFLOPS accelerates effects and final exports.

Software developers compiling large codebases will see significant time savings with the 28 threads and 33 MB of L3 cache, and the 65W TDP makes it suitable for always-on development servers. Students and small business workstations need reliability and efficiency; the CPU’s low power draw and ECC memory support provide stability, while the GPU’s multiple DisplayPort 2.1 outputs support multi-monitor productivity setups. This system is less suited for users whose primary workload is GPU rendering or high-end 4K gaming, as the Arc B770’s mid-range performance will be the limiting factor. Instead, it suits builders who want a future-proof CPU that can be paired with a more powerful GPU later, leveraging the PCIe Gen 5 slot.

Benchmark Performance

The Intel Core i7-14700F’s benchmark scores are exceptional across the board. In Cinebench R15, it scores 3540 multicore and 499 single-core; in R20, 14751 multicore and 2082 single-core; and in R23, 35122 multicore and 4958 single-core. Geekbench results show 19620 multicore and 2429 single-core. PassMark tests yield a multithread score of 41317 and single-thread score of 4257, with specialized scores including data compression at 505885, encryption at 30144, extended instructions at 28564, find prime numbers at 176, floating point math at 107005, integer math at 155808, physics at 2455, and random string sorting at 55918.

The CPU’s average benchmark score is 53620, which places it in the 91st percentile of all CPUs. Its nearest rivals include the Intel Xeon 6505P (avg score 53701, deltaPct -0.2), meaning the i7-14700F is 0.2% slower, and the AMD Ryzen 9 7900X (avg score 53288, deltaPct 0.6), where the i7 is 0.6% faster. This places it in elite company, outperforming the Ryzen 9 7900X in average score. The GPU, however, has no benchmark data, an average score of zero, and a 50th percentile ranking, with no nearest rivals listed. The combined percentile for the pairing is 71, reflecting the CPU’s dominance pulling up the overall score. The combined picture is clear: this is a system with a top-tier CPU and a mid-range GPU, ideal for compute-heavy tasks but not for GPU-bound gaming.

FAQ

Q: What is the processor’s socket and does it support DDR4 memory?

A: The Intel Core i7-14700F uses Intel Socket 1700 and supports both DDR4 and DDR5 memory in a dual-channel configuration.

Q: How does the CPU compare to the AMD Ryzen 9 7900X?

A: The i7-14700F has an average benchmark score of 53620, which is 0.6% higher than the AMD Ryzen 9 7900X’s score of 53288, indicating a slight performance lead.

Q: Does the Arc B770 support hardware ray tracing?

A: Yes, the Intel Arc B770 includes 32 ray tracing cores, enabling hardware-accelerated ray tracing in supported games and applications.

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

A: The suggested PSU wattage for the Intel Arc B770 is 550 W, which covers the GPU’s 225W TDP and the CPU’s 65W TDP with headroom.

Q: Is the CPU multiplier unlocked for overclocking?

A: No, the Intel Core i7-14700F has a locked multiplier, so it does not support traditional overclocking via multiplier adjustment.

Q: What display outputs are available on the Arc B770?

A: The GPU offers 1x HDMI 2.1a and 3x DisplayPort 2.1 outputs, supporting multiple high-resolution or high-refresh-rate monitors.

Q: What is the GPU’s memory bandwidth?

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

Usage Scenarios

High-refresh gaming: At 1080p, the i7-14700F’s single-core score of 4257 in PassMark and the Arc B770’s 19.66 TFLOPS should sustain frame rates above 144 FPS in competitive titles, though this is an estimate due to lack of measured data.

Streaming: The CPU’s 28 threads and 65W TDP allow for efficient software encoding via x264, while the GPU’s 16 GB VRAM handles game rendering, though the mid-range GPU may require lower settings to maintain quality.

Video editing: The Cinebench R23 multicore score of 35122 accelerates timeline rendering and export encoding, while the GPU’s 512.0 GB/s bandwidth aids in effects processing, making 4K editing feasible.

3D rendering: The CPU’s 41317 PassMark multithread score excels at CPU-based rendering, but GPU-based renderers will be limited by the Arc B770’s 50th percentile performance, making it slower than competing GPUs.

Software development: The 20 cores and 33 MB of L3 cache speed up compilation, and the ECC memory support provides data stability for long-running build processes.

Student and office work: The 65W TDP ensures low power consumption and quiet operation, while the CPU’s strong single-thread performance (2429 Geekbench single-core) ensures responsive multitasking in office applications.