SYSTEM ANALYZER

Rate My PC: Intel Core i5-14400 + Intel Arc A770

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

94 / 100
ULTIMATE READY

Apex Performer

Top 6% 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
90%
VS
GPU
97%
PROCESSOR

Intel Core i5-14400

32,115 Benchmark Score
Top 10% 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
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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 i5-14400 + Intel Arc A770: Platform Analysis

This pairing combines Intel's 14th-generation mainstream desktop processor with the company's flagship Alchemist discrete GPU, creating a fully Intel-powered desktop build. The Core i5-14400 holds the 82nd percentile among all CPUs, while the Arc A770 sits higher at the 90th percentile among all GPUs, placing the combined system at the 86th percentile overall. Benchmark data for this exact combination is limited, with no measured FPS rows available, so all gaming frame rate discussions below are estimates derived from the component benchmark scores rather than direct testing.

Upgrade Path and Platform

The Intel Core i5-14400 uses the Intel Socket 1700 platform, which places it within the LGA1700 ecosystem that supports both DDR4 and DDR5 memory through a dual-channel memory bus. The processor supports ECC memory, a feature often reserved for workstation-class hardware, making this platform suitable for users who prioritize data integrity in compute-heavy workloads. The CPU provides 16 PCIe Gen 5 lanes from the processor itself, delivering modern bandwidth for fast storage devices and expansion cards, while the GPU connects via PCIe 4.0 x16.

The system's power requirements are modest at the platform level. The CPU has a 65-watt TDP, indicating efficient operation under typical loads, while the GPU carries a 225-watt TDP. The suggested power supply rating for this configuration is 550 watts, which provides reasonable headroom for the combined draw of both components plus system peripherals. The GPU requires one 6-pin and one 8-pin power connector, so builders must verify their power supply includes these connections. The CPU is not multiplier-unlocked, meaning overclocking flexibility is limited, but the boost clock of 4.70 GHz already delivers strong single-threaded performance out of the box.

For users considering future upgrades, the platform offers several paths. The GPU is listed as end-of-life with a successor named Battlemage, so users seeking maximum graphics performance may eventually swap the Arc A770 for newer hardware. The CPU's socket compatibility with other 14th-generation parts allows for processor upgrades without changing the motherboard, though the locked multiplier restricts tuning options. Memory upgrades are straightforward given support for both DDR4 and DDR5, allowing users to choose their preferred memory generation based on cost and availability. The integrated UHD Graphics 730 provides a basic display output fallback, which is useful for troubleshooting or power-saving scenarios where the discrete GPU is not needed.

Balance and Bottleneck

The performance relationship between the Core i5-14400 and Arc A770 shows a generally balanced pairing, with the GPU holding a higher percentile ranking than the CPU. The GPU's 90th percentile placement versus the CPU's 82nd percentile suggests that in many gaming scenarios, the processor may become the limiting factor before the graphics card reaches its full potential. However, the CPU's strong multi-threaded performance, evidenced by its Cinebench R23 multi-core score of 21315, ensures it can feed the GPU in most titles without severe frame pacing issues.

Benchmark results indicate the CPU excels in both single-threaded and multi-threaded workloads. The Geekbench single-core score of 1905 and multi-core score of 9807 demonstrate solid all-around processing capability. The PassMark single-thread score of 3741 reinforces that the CPU handles lightly-threaded tasks well, which matters for games that rely on one or two primary threads. Meanwhile, the multi-threaded PassMark score of 25080 shows ample headroom for background tasks like streaming or recording while gaming.

The GPU's compute capabilities are substantial, with FP32 performance of 19.66 TFLOPS and FP16 of 39.32 TFLOPS. These figures indicate the Arc A770 can handle demanding graphics workloads, but the CPU's mid-range positioning means that at lower resolutions or with less demanding graphics settings, the processor may bottleneck the system. At higher resolutions where the GPU works harder, the balance shifts toward the GPU becoming the primary performance driver. The combined percentile of 86 reflects a system that performs above average overall, with the GPU providing the stronger relative contribution to the pair's capabilities.

GPU Analysis

The Intel Arc A770 is built on the Xe-HPG architecture using the DG2-512 chip, fabricated on a 6 nm process at TSMC. The GPU contains 21,700 million transistors across a 406 mm² die, with a transistor density of 53.4 million per square millimeter. The memory subsystem features 16 GB of GDDR6 memory on a 256-bit bus, delivering 512.0 GB/s of bandwidth. This generous memory capacity supports high-resolution textures and large datasets without running into capacity limits.

Clock speeds are set at 2100 MHz base and 2400 MHz boost, with memory running at 2000 MHz (16 Gbps effective). The GPU includes 4096 shading units, 256 texture mapping units, and 128 raster operation pipelines. For ray tracing workloads, the Arc A770 provides 32 dedicated RT cores, which handle hardware-accelerated ray tracing effects. The pixel rate reaches 307.2 GPixel/s, while the texture rate hits 614.4 GTexel/s, indicating strong fill rates for high-resolution rendering.

Benchmark scores for the GPU include a 3DMark Steel Nomad DX12 result of 2969, a Geekbench OpenCL score of 109175, and a Geekbench Vulkan score of 94284. These figures place the Arc A770 at the 90th percentile among all GPUs, with an average benchmark score of 68809. The nearest rivals include the NVIDIA CMP 90HX at 69000 (0.3% higher), the AMD Radeon Instinct MI25 at 68562 (0.4% lower), the AMD Radeon Pro WX 8200 at 69870 (1.5% higher), and the NVIDIA Quadro P6000 at 69986 (1.7% higher). The GPU supports DirectX 12 Ultimate (12_2), OpenGL 4.6, and Vulkan 1.4, covering modern graphics APIs. Display outputs include one HDMI 2.1 port and three DisplayPort 2.0 connections, supporting multiple monitors and high refresh rates.

Who Should Build It

This configuration targets desktop users who want balanced performance across productivity and entertainment tasks without concentrating on a single extreme workload. The Intel Core i5-14400's 10 cores and 16 threads, combined with the Arc A770's 16 GB of VRAM, create a system capable of handling a wide range of applications. Gamers playing at 1440p or 4K resolution will benefit from the GPU's high percentile ranking and substantial memory buffer, though frame rates will vary by title and settings as discussed later.

Content creators working with video editing or 3D rendering will find the CPU's multi-threaded performance valuable, as the Cinebench R23 multi-core score of 21315 and PassMark multi-thread score of 25080 demonstrate strong parallel processing capability. Software developers can leverage the processor's 16 threads for compilation tasks, while the GPU's compute performance supports GPU-accelerated workloads. Students and small business users building general-purpose workstations will appreciate the platform's DDR4/DDR5 flexibility and ECC memory support, which adds stability for long-running compute tasks.

The GPU's end-of-life status and the CPU's locked multiplier suggest this build is best suited for users who want a dependable, no-fuss system rather than enthusiasts seeking maximum overclocking headroom or future expansion options. The 82nd percentile CPU ranking and 90th percentile GPU ranking indicate that this system outperforms the majority of existing desktop hardware, making it a solid choice for users upgrading from older platforms.

Benchmark Performance

The Core i5-14400's benchmark suite shows a consistent pattern of strong performance across different testing methodologies. In Cinebench tests, the processor scores 2148 in R15 multi-core, 303 in R15 single-core, 8952 in R20 multi-core, 1263 in R20 single-core, 21315 in R23 multi-core, and 3009 in R23 single-core. These results highlight the CPU's capability in both heavily threaded rendering workloads and lightly threaded tasks like web browsing or office applications.

Geekbench results of 9807 multi-core and 1905 single-core align with other mid-range desktop processors, placing the CPU at the 82nd percentile overall. The PassMark suite provides additional detail on specific workload types: data compression scores 314995, data encryption scores 16731, extended instructions score 19816, prime number finding scores 80, floating point math scores 61549, integer math scores 82017, multithread scores 25080, physics scores 1396, random string sorting scores 32346, and single-thread scores 3741. The average benchmark score across all tests is 32115.

Comparing to nearest rivals, the Core i5-14400 sits within 0.3% of several other processors. The Intel Core i7-12800H scores 32121 (0% difference), the Intel Core i7-13705H scores 32076 (0.1% higher than the i5-14400), the Intel Core i5-14450HX scores 32040 (0.2% higher), and the Intel Core i9-11900 scores 32226 (0.3% lower). This tight clustering indicates the i5-14400 delivers performance equivalent to several higher-tier mobile and older desktop parts.

The Arc A770's GPU benchmarks place it at the 90th percentile. The 3DMark Steel Nomad DX12 score of 2969 reflects modern DirectX 12 gaming performance, while the Geekbench OpenCL score of 109175 and Vulkan score of 94284 demonstrate strong general-purpose compute capabilities. The average GPU benchmark score of 68809 positions the card among professional and high-end consumer GPUs, with rival comparisons showing differences of less than 2% against the NVIDIA CMP 90HX, AMD Radeon Instinct MI25, AMD Radeon Pro WX 8200, and NVIDIA Quadro P6000.

Gaming Performance

No measured FPS data exists for the Core i5-14400 paired with the Arc A770, so the following frame rate expectations are estimates derived from the component benchmark scores rather than direct testing results. The GPU's 90th percentile ranking and the CPU's 82nd percentile ranking suggest this system can handle modern games at high settings, particularly at 1440p and 4K resolutions where the GPU's 16 GB of VRAM and 512.0 GB/s memory bandwidth provide ample resources for high-resolution textures.

The GPU's 3DMark Steel Nomad DX12 score of 2969 indicates strong DirectX 12 performance, which is relevant for recent AAA titles that utilize this API. The Vulkan score of 94284 suggests good compatibility with games using the Vulkan API. The 32 RT cores provide dedicated hardware for ray tracing effects, though users should expect performance impacts when enabling ray tracing at higher settings. The CPU's single-thread score of 3009 in Cinebench R23 indicates it can maintain high frame rates in CPU-bound scenarios, while the multi-thread score of 21315 ensures smooth performance when multiple background tasks run alongside gaming.

For competitive titles that favor high frame rates, the CPU's strong single-threaded performance and the GPU's high pixel rate of 307.2 GPixel/s suggest the system can deliver elevated frame rates at 1080p or 1440p. For visually demanding games at 4K, the GPU's texture rate of 614.4 GTexel/s and 16 GB memory buffer provide a solid foundation, though the exact frame rates will depend on the specific game's optimization and the chosen quality settings. Users should treat these expectations as rough guidelines rather than precise predictions.

Usage Scenarios

High-Refresh Gaming: The combination of the CPU's 82nd percentile ranking and the GPU's 90th percentile ranking supports high-refresh gaming at 1080p and 1440p in most titles. The CPU's single-thread score of 3009 in Cinebench R23 ensures responsiveness, while the GPU's pixel rate of 307.2 GPixel/s can drive high frame rates when settings are adjusted appropriately.

Streaming: The CPU's 10 cores and 16 threads provide sufficient parallel processing capacity for game encoding while maintaining gameplay performance. The PassMark multithread score of 25080 indicates the processor can handle simultaneous gaming and streaming workloads, though users may need to adjust quality settings to maintain smooth performance.

Video Editing: The Cinebench R23 multi-core score of 21315 and PassMark floating point math score of 61549 demonstrate strong performance for video rendering and effects processing. The GPU's 16 GB of VRAM supports large editing timelines and GPU-accelerated effects without running out of memory.

3D Rendering: The CPU's multi-threaded performance, evidenced by the PassMark multithread score of 25080, handles CPU-based rendering workloads effectively. The GPU's FP32 performance of 19.66 TFLOPS supports GPU-accelerated rendering engines, with the 32 RT cores providing hardware acceleration for ray-traced rendering tasks.

Software Development: The 16 threads and 20 MB of shared L3 cache support compilation tasks and parallel build processes. The ECC memory support adds stability for long-running development workloads, while the PassMark data encryption score of 16731 indicates reasonable performance for secure coding tasks.

Student and Office Work: The CPU's single-thread score of 3741 in PassMark and Geekbench single-core score of 1905 ensure snappy performance for everyday applications. The integrated UHD Graphics 730 provides a backup display solution, while the platform's DDR4/DDR5 support allows cost-effective memory configurations for budget-conscious builds.

FAQ

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

A: The combined system ranks at the 86th percentile overall, with the CPU at the 82nd percentile and the GPU at the 90th percentile.

Q: How much memory bandwidth does the Arc A770 provide?

A: The GPU offers 512.0 GB/s of memory bandwidth through a 256-bit bus with 16 GB of GDDR6 memory running at 2000 MHz (16 Gbps effective).

Q: Does the Core i5-14400 support overclocking?

A: No, the multiplier is locked, meaning the CPU does not support overclocking. It has a base clock of 2.50 GHz and a boost clock of 4.70 GHz.

Q: What power supply is recommended for this system?

A: The suggested PSU rating for the Arc A770 is 550 W, which accounts for the GPU's 225 W TDP and the CPU's 65 W TDP along with other system components.

Q: Is measured gaming FPS data available for this exact combination?

A: No, the data for this specific pairing contains no measured FPS rows, so all gaming frame rate figures are estimates derived from benchmark scores rather than direct testing.

Q: What memory types does the Core i5-14400 support?

A: The processor supports both DDR4 and DDR5 memory through a dual-channel memory bus, and it also supports ECC memory for enhanced data integrity.

Q: How does the Arc A770 compare to its nearest GPU rivals?

A: The Arc A770's average benchmark score of 68809 is within 1.7% of the NVIDIA CMP 90HX (69000, 0.3% higher), AMD Radeon Instinct MI25 (68562, 0.4% lower), AMD Radeon Pro WX 8200 (69870, 1.5% higher), and NVIDIA Quadro P6000 (69986, 1.7% higher).

CPU Analysis

The Intel Core i5-14400 is a desktop processor from Intel's Core 14th Gen series, built on the Raptor Lake architecture with the Raptor Lake-R codename. It features 10 cores and 16 threads, comprising a mix of performance and efficiency cores that handle both heavy workloads and background tasks. The processor is fabricated on Intel's 10 nm process node with a die size of 215 mm², and it uses the Intel Socket 1700 interface for motherboard compatibility.

The cache hierarchy consists of 80 KB of L1 cache per core, 1.25 MB of L2 cache per core, and a shared 20 MB L3 cache. This cache configuration provides fast access to frequently used data, which contributes to the CPU's strong single-threaded performance. The base clock of 2.50 GHz boosts up to 4.70 GHz under load, delivering responsive performance for both lightly threaded and heavily threaded applications. The 65 W TDP keeps cooling requirements modest, allowing for standard air coolers in most desktop builds.

Benchmark results show the CPU performing at a level comparable to several other processors in its class. The Cinebench R23 multi-core score of 21315 and single-core score of 3009 demonstrate balanced performance across both multi-threaded and single-threaded workloads. The Geekbench scores of 9807 multi-core and 1905 single-core align with these results, confirming the CPU's mid-range positioning. In the PassMark suite, the processor shows particular strength in integer math (82017) and multithread (25080) tests, with lower scores in prime number finding (80) and physics (1396) indicating that these specific workloads are not the CPU's primary strengths.

The CPU's nearest rivals in benchmark performance include the Intel Core i7-12800H, Intel Core i7-13705H, Intel Core i5-14450HX, and Intel Core i9-11900, all within 0.3% of the i5-14400's average score of 32115. This clustering suggests that the i5-14400 delivers performance typical of higher-tier mobile processors and older desktop parts, making it a competitive choice for users who need solid multi-threaded performance without stepping up to higher-core-count processors. The 82nd percentile ranking means the CPU outperforms the majority of all tested CPUs, positioning it as a capable mainstream option for gaming, content creation, and general productivity.