SYSTEM ANALYZER

Rate My PC: Intel Core i5-14490F + NVIDIA GeForce RTX 4080

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
92%
VS
GPU
97%
PROCESSOR

Intel Core i5-14490F

38,149 Benchmark Score
Top 8% Market Ranking
View Full Specs →
GRAPHICS CARD

NVIDIA GeForce RTX 4080

54,247 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

# Balance and Bottleneck

The Intel Core i5-14490F and NVIDIA GeForce RTX 4080 pairing presents a distinct balance profile that leans heavily on the GPU for most modern workloads. The CPU sits at the 86th percentile among all processors, while the GPU also holds an 86th percentile rank among all graphics cards. This near-identical percentile positioning suggests a generally well-matched pairing, but the underlying workload characteristics reveal where each component takes the lead.

The RTX 4080 delivers a Passmark G3D score of 34,457 and a Passmark GPU Compute score of 20,671, placing it firmly in the upper echelon of graphics hardware. The i5-14490F, with its Passmark Multithread score of 28,662 and Passmark Single Thread score of 3,873, provides solid but not class-leading CPU throughput. In GPU-bound scenarios—particularly at higher resolutions where pixel throughput dominates—the RTX 4080 will be the primary driver of frame rates, with the CPU providing adequate instruction feeding without becoming a significant constraint.

Conversely, in CPU-heavy workloads such as data compression (Passmark score 340,026) or integer math (Passmark score 87,844), the i5-14490F becomes the limiting factor. The 10-core, 16-thread configuration with a 2.50 GHz base clock and 5.00 GHz boost clock delivers strong multi-threaded performance, but it is not in the same class as higher-core-count workstation processors. Benchmark data shows the i5-14490F is within 0.1% of the Intel Core i5-13600KF and 0.3% behind the Intel Core i5-13600HX, indicating it performs essentially on par with those mid-range rivals.

The bottleneck profile shifts depending on resolution. At 1080p, the CPU's single-thread performance (Cinebench R23 single-core score of 3,247) becomes more relevant, as lower resolution reduces GPU workload and increases the importance of CPU frame generation. At 1440p and 4K, the RTX 4080's 716.8 GB/s memory bandwidth and 48.74 TFLOPS FP32 throughput dominate, making the GPU the clear performance ceiling. The data suggests a balanced pairing where neither component consistently starves the other, but the GPU will be the more frequent limiter in gaming scenarios.

# FAQ

Q: How does the Intel Core i5-14490F compare to its closest rival, the Intel Core i5-13600KF?

A: The i5-14490F has an average benchmark score of 38,149, which is 0.1% higher than the i5-13600KF's 38,103. This places the two processors statistically at parity, with the i5-14490F holding a negligible performance edge.

Q: What is the RTX 4080's performance position relative to the RTX 4080 SUPER?

A: The RTX 4080 has an average benchmark score of 54,247, which is 0.1% lower than the RTX 4080 SUPER's 54,209. The two cards are effectively equivalent in benchmark performance, with the SUPER variant holding a marginal advantage.

Q: Does the i5-14490F support overclocking?

A: No. The multiplier is locked, meaning the CPU cannot be overclocked. The 5.00 GHz boost clock is the maximum frequency achievable under normal operating conditions.

Q: What memory types does the i5-14490F support?

A: The CPU supports both DDR4 and DDR5 memory via a dual-channel memory bus. ECC memory is not supported.

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

A: The combined percentile is 86, placing this build in the upper tier of desktop systems. Both the CPU and GPU individually hold 86th percentile rankings among their respective categories.

Q: What PCIe generation does the RTX 4080 use?

A: The RTX 4080 uses a PCIe 4.0 x16 bus interface. The i5-14490F provides PCIe Gen 5 with 16 lanes for CPU-attached devices, offering forward compatibility.

Q: Is the RTX 4080 still in production?

A: No, the RTX 4080 is end-of-life. Its predecessor is the GeForce 30 series and its successor is the GeForce 50 series.

# CPU Analysis

The Intel Core i5-14490F is a 10-core, 16-thread desktop processor built on Intel's Raptor Lake architecture, specifically the Raptor Lake-R refresh. Manufactured on Intel's 10 nm process with a die size of 215 mm², this CPU represents the mid-range tier of the Core 14th Gen lineup. The core configuration—10 physical cores with 16 threads via Hyper-Threading—delivers a balance of single-thread and multi-thread capability.

Clock speeds are a defining feature: a 2.50 GHz base clock that boosts to 5.00 GHz. This 2.5 GHz boost headroom allows the processor to scale aggressively under load, particularly for lightly-threaded workloads that benefit from high frequency. The cache hierarchy includes 80 KB of L1 cache per core, 1.25 MB of L2 cache per core, and 24 MB of shared L3 cache, providing ample on-die storage for frequently accessed data.

Benchmark scores reveal the CPU's performance character. The Cinebench R23 multi-core score of 23,000 demonstrates strong multi-threaded capability, while the single-core score of 3,247 shows competitive single-thread performance. Passmark results reinforce this picture: a Multi-Thread score of 28,662 and a Single Thread score of 3,873. Data compression performance is particularly strong at 340,026, suggesting the CPU handles compression workloads efficiently. Integer math scores of 87,844 and floating-point math of 66,558 indicate solid general-purpose compute performance.

The CPU's nearest rivals provide context for its positioning. The Intel Core Ultra 5 245T averages 38,194 (0.1% higher), the AMD Ryzen 7 250 averages 38,221 (0.2% higher), and the Intel Core i5-13600HX averages 38,261 (0.3% higher). These sub-1% deltas indicate the i5-14490F sits in a dense competitive cluster where no single processor holds a meaningful performance advantage. For real-world workloads, this means users can expect near-identical performance across these options.

The 65 W TDP is notably modest for a processor with 10 cores and a 5.00 GHz boost clock. This power envelope makes the CPU manageable in standard desktop cooling solutions, though the locked multiplier prevents enthusiast-level tuning. The CPU supports DDR4 and DDR5 memory, offering flexibility in platform selection, and provides PCIe Gen 5 with 16 CPU-attached lanes, ensuring compatibility with the latest storage and expansion cards.

# Who Should Build It

The i5-14490F + RTX 4080 combination targets users who demand high GPU throughput without requiring extreme multi-core CPU performance. The 86th combined percentile places this build in the upper tier of desktop systems, making it suitable for users who want high-end gaming and content creation capability without stepping into workstation-class CPU territory.

Gamers at 1440p and 4K resolutions represent the primary audience. The RTX 4080's 16 GB of GDDR6X memory and 716.8 GB/s bandwidth provide ample headroom for high-resolution textures and ray-traced effects, while the i5-14490F's 5.00 GHz boost clock ensures responsive frame pacing. The CPU's 86th percentile ranking guarantees it will not be a limiting factor in GPU-bound gaming scenarios.

Content creators working with video editing, 3D rendering, and GPU-accelerated applications will find the build well-suited. The RTX 4080's 76 RT cores and 304 tensor cores accelerate ray tracing and AI-based workflows, while the CPU's 10 cores and 16 threads handle encoding, decoding, and general multitasking. The Cinebench R23 multi-core score of 23,000 indicates the CPU can manage moderately demanding productivity tasks without becoming a bottleneck.

Software developers working on compilation, testing, and virtualization workloads will benefit from the CPU's multi-threaded performance. The Passmark Multi-Thread score of 28,662 and data encryption score of 18,225 show capable throughput for build pipelines and secure operations. The dual-channel memory support for DDR4 and DDR5 allows developers to choose between cost-effective or high-bandwidth memory configurations.

Students and small business workstation users represent a secondary audience. The build's 86th percentile performance ensures smooth operation across office productivity, web development, and medium-complexity data analysis tasks. The 65 W CPU TDP keeps power consumption manageable, though the GPU's 320 W TDP and 700 W suggested PSU requirement means this is not a low-power system.

# Benchmark Performance

The benchmark data presents a clear picture of this build's performance envelope. The CPU's average benchmark score is 38,149, placing it at the 86th percentile of all CPUs. The GPU's average benchmark score is 54,247, also at the 86th percentile of all GPUs. The combined percentile for the pairing is 86, indicating consistent high-tier placement across both components.

In CPU-specific benchmarks, the i5-14490F achieves a Cinebench R23 multi-core score of 23,000 and a single-core score of 3,247. The Cinebench R20 scores are 9,660 multi-core and 1,363 single-core, while Cinebench R15 scores are 2,318 multi-core and 327 single-core. Passmark results show a Multi-Thread score of 28,662 and a Single Thread score of 3,873. The data compression score of 340,026 stands out as particularly strong, while the find prime numbers score of 122 is modest.

GPU benchmarks show the RTX 4080 achieving a 3DMark Steel Nomad DX12 score of 6,567. Geekbench results are 214,739 for OpenCL and 263,779 for Vulkan. Passmark G3D score is 34,457, with GPU Compute at 20,671. The DirectX 11 score of 314 and DirectX 12 score of 132 reflect the card's modern architecture, while the DirectX 9 score of 370 and DirectX 10 score of 204 show backward compatibility.

Relative to rivals, the RTX 4080 is 0.1% faster than the RTX 4080 SUPER (54,209), 1.1% slower than the AMD Radeon Pro W5700X (54,828), 2.6% slower than the AMD Radeon RX 6750 GRE 12 GB (55,698), and 2.7% slower than the AMD Radeon 8060S (55,757). These deltas are all within 3%, meaning the RTX 4080 performs essentially on par with its nearest competitors despite the RX 6750 GRE having less VRAM.

The combined picture is one of balanced, upper-tier performance. Both components rank at the 86th percentile, creating a system that delivers consistent high-end experiences across gaming and productivity workloads. The lack of measured FPS data for this exact combination means performance estimates must be derived from these synthetic benchmarks, but the consistency across CPU and GPU scores suggests a well-rounded system.

# GPU Analysis

The NVIDIA GeForce RTX 4080 is built on the Ada Lovelace architecture using the AD103 chip, manufactured on TSMC's 5 nm process. The die contains 45,900 million transistors across a 379 mm² area, achieving a transistor density of 121.1 million per mm². This architectural foundation delivers substantial compute capability: 9,728 shading units, 304 texture mapping units, and 112 raster operation pipelines.

Memory configuration is a key strength. The card features 16 GB of GDDR6X memory on a 256-bit bus, delivering 716.8 GB/s of bandwidth. The memory operates at 1,400 MHz with 22.4 Gbps effective data rate. This bandwidth and capacity combination supports high-resolution textures, complex scenes, and GPU-accelerated compute workloads without memory-related bottlenecks.

Clock speeds reach a base of 2,205 MHz with a boost of 2,505 MHz. The pixel rate is 280.6 GPixel/s and the texture rate is 761.5 GTexel/s. FP32 compute performance is 48.74 TFLOPS, with FP16 also at 48.74 TFLOPS (1:1 ratio). These figures place the RTX 4080 firmly in the high-end graphics segment.

Ray tracing and AI acceleration are handled by dedicated hardware: 76 RT cores and 304 tensor cores. The RT cores accelerate ray-traced rendering, while the tensor cores support DLSS and other AI-based features. The card supports DirectX 12 Ultimate (12_2), OpenGL 4.6, and Vulkan 1.4, ensuring compatibility with modern graphics APIs.

Benchmark scores demonstrate strong compute performance. The 3DMark Steel Nomad DX12 score of 6,567 indicates solid DX12 gaming performance. Geekbench scores of 214,739 (OpenCL) and 263,779 (Vulkan) show robust compute capability across different APIs. Passmark G3D score of 34,457 places the card well above average, while GPU Compute score of 20,671 confirms strong general-purpose compute.

The card's power requirements are substantial: a 320 W TDP with a 700 W suggested PSU. The triple-slot cooler and 310 mm length require a spacious case with good airflow. The 1x 16-pin power connector is the sole power input. Display outputs include 1x HDMI 2.1 and 3x DisplayPort 1.4a, supporting multi-monitor configurations.

For rendering workloads, the RTX 4080's combination of 16 GB VRAM, 716.8 GB/s bandwidth, and 48.74 TFLOPS FP32 throughput makes it capable of handling complex 3D scenes, high-resolution textures, and GPU-accelerated renderers. The 304 tensor cores provide additional acceleration for AI-based rendering techniques and denoising algorithms.

# Usage Scenarios

High-Refresh Gaming: At 1080p and 1440p, the RTX 4080's 48.74 TFLOPS FP32 throughput and 716.8 GB/s bandwidth can drive frame rates well beyond 144 Hz in most titles. The i5-14490F's 5.00 GHz boost clock ensures the CPU keeps up with the GPU's frame output, minimizing bottleneck potential. The 86th percentile CPU ranking supports high-refresh gaming without compromising frame pacing.

Streaming: The RTX 4080's NVENC encoder handles video encoding, offloading this task from the CPU. This leaves the i5-14490F's 10 cores and 16 threads free to run the game and streaming software. The CPU's Passmark Multi-Thread score of 28,662 ensures smooth simultaneous gaming and encoding, while the GPU's compute resources handle any AI-based streaming enhancements.

Video Editing: The combination of the i5-14490F's Cinebench R23 multi-core score of 23,000 and the RTX 4080's GPU compute score of 20,671 provides strong performance for video editing. Timeline scrubbing, effect rendering, and export operations benefit from both CPU multi-threading and GPU acceleration. The 16 GB VRAM allows for large preview buffers and complex effects stacks.

3D Rendering: GPU-accelerated renderers will leverage the RTX 4080's 76 RT cores and 48.74 TFLOPS FP32 throughput for fast iterations. The 16 GB GDDR6X memory handles complex scenes without out-of-memory errors. CPU-based rendering also benefits from the i5-14490F's multi-threaded performance, though users requiring extreme CPU rendering speed would need a higher-core-count processor.

Software Development: Compilation and testing workloads benefit from the CPU's 10 cores and 16 threads, with Passmark Integer Math score of 87,844 indicating solid arithmetic throughput. The 24 MB L3 cache reduces memory latency for frequently accessed code paths. The RTX 4080 accelerates GPU compute workloads for developers working on graphics, machine learning, or scientific computing applications.

Student and Office Work: For general productivity, this build is significantly over-provisioned. The i5-14490F's single-thread score of 3,873 ensures responsive application usage, while the GPU's power is largely unused in typical office tasks. The 86th percentile performance guarantees smooth operation across spreadsheets, document editing, and web browsing, with ample headroom for future software requirements.

# Upgrade Path and Platform

The i5-14490F uses the Intel Socket 1700 platform, which supports both DDR4 and DDR5 memory via a dual-channel memory bus. This flexibility allows builders to choose between cost-effective DDR4 or higher-bandwidth DDR5, though the DDR4 and DDR5 memory types require different motherboards. The CPU provides PCIe Gen 5 with 16 CPU-attached lanes, enabling high-bandwidth connectivity for the latest NVMe storage and expansion cards.

The RTX 4080 uses a PCIe 4.0 x16 interface, which is fully compatible with the CPU's PCIe Gen 5 slots. The GPU's 320 W TDP and 700 W suggested PSU requirement mean the system needs a power supply with sufficient headroom. The 65 W CPU TDP is modest, leaving substantial power budget for additional components, storage, and peripherals.

For future upgrades, the Socket 1700 platform limits CPU options to 12th, 13th, and 14th Gen Intel Core processors. Users seeking more CPU performance could consider higher-core-count 14th Gen parts, though the locked multiplier on the i5-14490F means no overclocking headroom. The GPU's end-of-life status and successor (GeForce 50 series) suggest that a future GPU upgrade would be the most impactful path, though the PCIe 4.0 interface may become a minor limitation with next-generation cards.

Memory capacity is another upgrade path. The dual-channel memory bus supports DDR4 and DDR5, with the motherboard determining the specific type. Users requiring more memory bandwidth or capacity can upgrade RAM, though the 24 MB L3 cache provides substantial on-die caching that reduces memory pressure. The platform also supports PCIe Gen 5 storage, offering ultra-fast NVMe SSDs for system and application drives.

# Build Overview

This build pairs the Intel Core i5-14490F with the NVIDIA GeForce RTX 4080 in a desktop configuration. The CPU is a 10-core, 16-thread Raptor Lake Refresh processor with a 5.00 GHz boost clock and 65 W TDP, while the GPU is an Ada Lovelace-based card with 16 GB GDDR6X memory and 320 W TDP. Both components rank at the 86th percentile in their respective categories, resulting in a combined percentile of 86.

The system occupies the upper-midrange to high-end desktop tier. The CPU's performance is statistically identical to several rivals, including the Intel Core i5-13600KF and Intel Core Ultra 5 245T, with all deltas under 1%. The GPU similarly matches the RTX 4080 SUPER within 0.1%, though it trails the AMD Radeon RX 6750 GRE 12 GB by 2.6% and the AMD Radeon 8060S by 2.7%.

The i5-14490F + RTX 4080 combination is a balanced desktop build that prioritizes GPU performance while maintaining solid CPU throughput. The 86th percentile rankings for both components indicate a system that performs well above average in gaming and productivity scenarios. The build's class is desktop, confirming it is designed for stationary use rather than portable applications.

# Gaming Performance

No measured FPS data exists for this exact CPU-GPU combination. The FACT PACK contains no measuredFps rows, meaning all frame rate figures must be treated as estimates derived from the benchmark scores. The dataIsMeasured flag is false, confirming the absence of empirical FPS measurements.

Based on the benchmark scores, this system should deliver strong gaming performance across resolutions. The RTX 4080's 3DMark Steel Nomad DX12 score of 6,567 suggests excellent DirectX 12 gaming capability, while the Passmark G3D score of 34,457 indicates robust overall graphics performance. The GPU's 16 GB VRAM and 716.8 GB/s bandwidth provide ample resources for high-resolution textures and memory-intensive games.

At 1080p, the i5-14490F's 5.00 GHz boost clock and single-core score of 3,873 should allow the CPU to keep pace with the GPU in most titles, though CPU-bound scenarios may see frame rate limitations. At 1440p, the GPU becomes the primary bottleneck, and the RTX 4080's compute resources should deliver high frame rates in most games with ultra settings. At 4K, the GPU's 48.74 TFLOPS FP32 throughput and 716.8 GB/s bandwidth become the determining factors, with estimated frame rates depending on the specific game and optimization level.

Ray tracing performance should be strong given the 76 RT cores. The 304 tensor cores support DLSS, which can improve frame rates in supported titles. The GPU's 86th percentile ranking suggests it outperforms the majority of graphics cards, positioning this build for high-refresh gaming at 1440p and playable frame rates at 4K with settings adjustments. All figures remain estimates due to the absence of measured FPS data.