SYSTEM ANALYZER

Rate My PC: Intel Core i5-14600T + Intel Arc B580

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

91 / 100
ULTIMATE READY

Apex Performer

Top 9% 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
92%
PROCESSOR

Intel Core i5-14600T

32,707 Benchmark Score
Top 10% 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

FAQ

Q: What kind of performance does the Intel Core i5-14600T offer?

A: The i5-14600T delivers an average benchmark score of 32707, placing it in the 83rd percentile of all CPUs. This puts it statistically on par with the Intel Core Ultra 7 155H (deltaPct 0), AMD Ryzen 5 7400F (deltaPct -0.1), and AMD Ryzen AI 7 PRO 360 (deltaPct 0.1) in overall processing capability.

Q: How does the Intel Arc B580 compare to other graphics cards?

A: The Arc B580 scores 15748 in Passmark G3D and 3068 in 3DMark Steel Nomad DX12, landing in the 68th percentile of all GPUs. Its average score of 23021 places it within 1% of the NVIDIA GeForce RTX 2080 (deltaPct 0.6) and AMD Radeon RX 580 2048SP (deltaPct -0.2).

Q: What is the combined performance tier of this build?

A: This CPU and GPU pairing achieves a combined percentile of 76 across all desktop configurations. That places it in the upper quartile of systems, indicating solid mid-to-upper tier performance for a desktop build.

Q: What memory and storage support does the CPU provide?

A: The i5-14600T supports both DDR4 and DDR5 memory in a dual-channel configuration. It offers PCIe Gen 5 with 16 lanes from the CPU, and includes ECC memory support for systems requiring error correction.

Q: What are the key specifications of the GPU's memory subsystem?

A: The Arc B580 features 12 GB of GDDR6 memory on a 192-bit bus, delivering 456.0 GB/s of bandwidth. Memory runs at 2375 MHz with 19 Gbps effective speed, which is substantial for a card in this performance class.

Q: What power supply is recommended for this GPU?

A: The Arc B580 has a TDP of 190 W and the suggested PSU rating is 450 W. The card requires a single 8-pin power connector and occupies a dual-slot width.

Q: What display outputs are available on the Arc B580?

A: The card includes one HDMI 2.1a port and three DisplayPort 2.1 outputs, supporting modern high-bandwidth displays. It uses a PCIe 4.0 x8 bus interface.

Balance and Bottleneck

The data shows a system where the GPU is the primary limiting factor in graphics-heavy workloads. The Arc B580 sits at the 68th percentile of all GPUs while the i5-14600T reaches the 83rd percentile of all CPUs. This 15-point gap in percentile positioning indicates the processor has more headroom than the graphics card in most gaming and rendering scenarios.

For CPU-bound tasks like data compression, integer math, and single-threaded workloads, the i5-14600T is the dominant component. Its Passmark integer math score of 95112 and floating point math score of 64726 demonstrate substantial compute throughput that will not bottleneck a GPU in this class. The processor's 14 cores and 20 threads provide ample parallelism for modern game engines that offload physics, AI, and streaming tasks to the CPU.

In GPU-bound scenarios, the Arc B580's 13.67 TFLOPS FP32 performance and 456.0 GB/s memory bandwidth will be the determining factor for frame rates. The CPU's single-thread score of 3744 in Passmark is strong enough to feed the GPU in most titles, but the GPU's 68th percentile position means it will cap performance in graphically intensive games at higher resolutions.

The memory subsystem shows a balanced configuration. The CPU supports DDR4 and DDR5 with dual-channel operation, while the GPU has 12 GB of GDDR6. This is a pairing where the CPU can handle the data feeding while the GPU's 192-bit bus and 456.0 GB/s bandwidth manage the rendering pipeline. The CPU's 24 MB of shared L3 cache helps maintain data flow to the GPU without stalling.

Bottleneck analysis from benchmark scores indicates that at lower resolutions, the GPU will likely be the constraint in most modern titles. The CPU's Passmark multithread score of 26409 and Cinebench R23 multicore score of 22447 suggest it can handle even heavily threaded games while leaving room for background tasks. Only in extremely CPU-intensive simulations or strategy games would the i5-14600T become the limiting factor.

The 35 W TDP of the CPU combined with the 190 W TDP of the GPU means the system has modest total power requirements. The suggested 450 W PSU provides sufficient headroom for both components under load, indicating the balance is more about performance distribution than power delivery.

Benchmark Performance

The Intel Core i5-14600T delivers strong benchmark results across synthetic tests. In Cinebench R23, it scores 22447 multicore and 3169 single-core. The R20 results show 9427 multicore and 1330 single-core, while R15 produces 2262 multicore and 319 single-core. Geekbench results are 12840 multicore and 2559 single-core.

Passmark testing reveals specialized strengths. Data compression scores 301827, data encryption reaches 18226, and extended instructions hit 16985. Integer math achieves 95112 while floating point math scores 64726. Random string sorting finishes at 34310, physics at 1873, and find prime numbers at 121. The overall Passmark multithread score is 26409 with a single-thread score of 3744.

The CPU's average benchmark score of 32707 places it at the 83rd percentile of all CPUs. Its nearest rivals show remarkable clustering: the Intel Core Ultra 7 155H at 32697 (deltaPct 0), AMD Ryzen 5 7400F at 32750 (deltaPct -0.1), AMD Ryzen AI 7 PRO 360 at 32662 (deltaPct 0.1), and AMD Ryzen 7 PRO 6850H at 32812 (deltaPct -0.3). This means the i5-14600T trades blows within a fraction of a percent with these alternatives.

The Intel Arc B580 GPU posts a 3DMark Steel Nomad DX12 score of 3068. Geekbench OpenCL reaches 92821 with Vulkan at 109672. Passmark results show G3D at 15748, G2D at 709, and GPU compute at 7729. DirectX tests produce scores of 183 for DX9, 128 for DX11, and 76 for DX12.

The GPU's average benchmark score of 23021 places it at the 68th percentile of all GPUs. Its nearest rivals include the AMD Radeon RX 580 2048SP at 23061 (deltaPct -0.2), NVIDIA GeForce RTX 2080 at 22895 (deltaPct 0.6), NVIDIA GeForce RTX 3080 at 23172 (deltaPct -0.7), and NVIDIA P106-100 at 23249 (deltaPct -1). The Arc B580 effectively matches these cards within 1%.

No measured FPS data exists for this exact CPU+GPU combination. All frame rate discussions must be inferred from benchmark scores and percentile positions rather than direct game testing.

Upgrade Path and Platform

The i5-14600T uses the Intel Socket 1700 platform with the Raptor Lake architecture on a 10 nm process. This socket supports DDR4 and DDR5 memory in dual-channel configurations, giving builders flexibility in memory choice. ECC memory support is included, which is useful for workstation reliability.

PCIe Gen 5 with 16 lanes from the CPU provides modern connectivity for high-bandwidth storage and expansion cards. The platform is production-active with a release date of January 2024. The CPU has a launch MSRP of $255 and a 35 W TDP, making it a low-power option for the platform.

The Arc B580 GPU connects via PCIe 4.0 x8, which is sufficient for its bandwidth needs. It requires a 450 W suggested PSU and uses a single 8-pin power connector. The card measures 272 mm in length, 115 mm in height, and 45 mm in width, so case compatibility should be checked against these dimensions.

For a sensible next upgrade, the GPU presents the most opportunity. The CPU's 83rd percentile position leaves headroom, while the GPU's 68th percentile suggests that upgrading to a higher-tier graphics card would benefit gaming performance. The platform supports this path since the CPU can likely feed a more powerful GPU without becoming a bottleneck.

Memory upgrades are possible given dual-channel support for both DDR4 and DDR5. The CPU's 24 MB L3 cache and per-core L2 cache of 2 MB benefit from faster memory, and the dual-channel configuration is already in place. Storage upgrades can leverage PCIe Gen 5 lanes from the CPU for maximum throughput.

The power delivery is not a limiting factor. The 450 W suggested PSU provides ample headroom for the 35 W CPU and 190 W GPU, leaving room for additional drives and peripherals. Future GPU upgrades would require checking PSU requirements, but the current configuration has substantial headroom.

CPU Analysis

The Intel Core i5-14600T is a 14-core, 20-thread processor based on Raptor Lake architecture. It uses the Raptor Lake-R codename and belongs to the Core 14th Gen series. The base clock is 1.80 GHz with a boost clock of 5.10 GHz, operating within a 35 W TDP envelope.

The cache hierarchy consists of 80 KB L1 per core, 2 MB L2 per core, and 24 MB shared L3 cache. The die size is 257 mm² on a 10 nm Intel process. Integrated graphics come in the form of UHD Graphics 770, providing basic display output without a discrete GPU.

Benchmark performance is strong for a low-power chip. The Cinebench R23 multicore score of 22447 indicates capable multi-threaded performance for a 35 W processor. Single-core performance of 3169 in R23 and 3744 in Passmark shows the boost clock is effective for lightly threaded workloads.

The Passmark data encryption score of 18226 and extended instructions score of 16985 suggest strong security and vector processing capabilities. Data compression at 301827 demonstrates efficiency in archiving and file management tasks. The find prime numbers score of 121 is modest, reflecting the 35 W power constraint under sustained load.

The 83rd percentile ranking places this CPU above most processors in the database. Its nearest rivals include both mobile and desktop chips, with the AMD Ryzen 5 7400F being the closest desktop competitor at a 0.1% advantage. The Core Ultra 7 155H matches it exactly, showing the i5-14600T competes well above its power class.

For real workloads, the 14-core configuration handles modern game engines that use multiple threads for physics, audio, and streaming. The 20 threads provide good parallel throughput for compilation tasks and content creation. The 5.10 GHz boost clock ensures responsive single-threaded performance for everyday applications.

GPU Analysis

The Intel Arc B580 uses the BMG-G21 chip with Xe2-HPG architecture from the Battlemage generation. It is manufactured on a 5 nm TSMC process with 19,600 million transistors on a 272 mm² die. The transistor density reaches 72.1 million per mm².

Memory configuration is substantial with 12 GB of GDDR6 on a 192-bit bus. Bandwidth reaches 456.0 GB/s at 2375 MHz with 19 Gbps effective speed. This memory subsystem outperforms many cards in its price class and supports 1440p gaming with high texture settings.

Compute resources include 2560 shading units, 160 texture mapping units, and 80 raster output units. The card features 20 ray tracing cores. Clock speeds are fixed at 2670 MHz for both base and boost. Pixel rate is 213.6 GPixel/s with texture rate of 427.2 GTexel/s.

FP32 performance is 13.67 TFLOPS with FP16 at 27.34 TFLOPS (2:1 ratio). These numbers indicate strong compute throughput for both gaming and productivity workloads. The 3DMark Steel Nomad DX12 score of 3068 confirms competitive DX12 performance.

The GPU's 68th percentile ranking places it above average but not in the top tier. Its nearest rival, the NVIDIA GeForce RTX 2080, is only 0.6% faster on average, while the RTX 3080 is 0.7% slower in this benchmark dataset. This clustering indicates the Arc B580 delivers performance comparable to previous-generation high-end cards.

Ray tracing capabilities are present with 20 dedicated RT cores, though the 68th percentile ranking suggests ray-traced workloads will be demanding. The 12 GB VRAM with 456.0 GB/s bandwidth provides sufficient capacity for modern game assets. Display outputs include HDMI 2.1a and three DisplayPort 2.1 connectors supporting high refresh rates and multi-monitor setups.

Who Should Build It

Gamers targeting 1080p high-refresh or 1440p gaming will find this pairing well-suited. The GPU's 68th percentile and CPU's 83rd percentile mean the system can handle demanding titles while maintaining high frame rates in less intensive games. The 12 GB VRAM provides future-proofing for texture-heavy titles.

Content creators working with video editing and 3D rendering will benefit from the CPU's 14 cores and the GPU's compute capabilities. The Passmark multithread score of 26409 and GPU compute score of 7729 indicate sufficient processing power for rendering tasks. Data compression scores of 301827 help with video encoding workflows.

Software developers will appreciate the CPU's single-thread performance of 3744 in Passmark for compilation speed. The 20 threads handle parallel builds efficiently. ECC memory support adds reliability for long-running build processes and server-like workloads.

Students and office workers get a responsive system with strong multi-tasking capability. The 35 W CPU TDP keeps power consumption low for daily use, while the GPU handles occasional light gaming or graphics work. The UHD Graphics 770 integrated GPU provides a fallback if the discrete GPU is idle or removed.

Small business workstations requiring reliability and moderate performance fit this build well. The ECC memory support and production-active status of both components indicate long-term availability. The dual-channel DDR4/DDR5 support allows memory upgrades as needs grow.

Build Overview

This desktop build pairs the Intel Core i5-14600T with the Intel Arc B580. The CPU delivers 14 cores and 20 threads with a 35 W TDP, while the GPU provides 12 GB of GDDR6 memory with 456.0 GB/s bandwidth. Together they achieve a combined percentile of 76 across all desktop configurations.

The CPU sits at the 83rd percentile of all CPUs with an average benchmark score of 32707. The GPU ranks at the 68th percentile with an average score of 23021. This creates a system where the processor has more relative headroom than the graphics card, making the GPU the more likely upgrade target.

The platform uses Intel Socket 1700 with Raptor Lake architecture on a 10 nm process. Memory support includes DDR4 and DDR5 in dual-channel configuration with ECC options. PCIe Gen 5 with 16 CPU lanes provides modern connectivity. The GPU connects via PCIe 4.0 x8.

Power requirements are modest with a 35 W CPU and 190 W GPU. The suggested 450 W PSU provides sufficient headroom. The GPU requires a single 8-pin connector and occupies dual slots with dimensions of 272 mm by 115 mm by 45 mm.

This is a balanced desktop system for general use, gaming, and productivity. The CPU's 83rd percentile positions it well above average, while the GPU's 68th percentile provides solid mainstream graphics performance. The combined 76th percentile ranking places the complete build in the upper quartile of desktop systems.

Usage Scenarios

High-refresh gaming: The GPU's Passmark G3D score of 15748 and CPU's single-thread score of 3744 indicate the system can push high frame rates at 1080p in competitive titles. The 456.0 GB/s memory bandwidth supports fast texture streaming, while the CPU's 5.10 GHz boost clock minimizes frame time spikes. At 1440p, the 68th percentile GPU becomes the limiting factor, but the 12 GB VRAM helps maintain consistent performance.

Streaming: The CPU's 14 cores and 20 threads handle simultaneous game and encode workloads. The Passmark multithread score of 26409 provides headroom for streaming software, while data compression at 301827 helps with video encoding efficiency. The GPU's 13.67 TFLOPS FP32 performance can also assist with hardware encoding tasks.

Video editing: The Cinebench R23 multicore score of 22447 demonstrates strong rendering performance for video exports. The GPU's compute score of 7729 accelerates effects and transitions. The 12 GB VRAM handles large timeline previews, and the dual-channel memory support allows sufficient RAM bandwidth for editing software.

3D rendering: The CPU's floating point math score of 64726 and the GPU's 27.34 TFLOPS FP16 performance provide solid rendering throughput. The 20 RT cores enable hardware-accelerated ray tracing in supported applications. The 24 MB L3 cache helps maintain data flow during complex scene rendering.

Software development: The Passmark single-thread score of 3744 ensures responsive IDE performance and fast compilation for single-file builds. The 20 threads handle parallel compilation jobs efficiently. ECC memory support protects against data corruption during long build processes. The data encryption score of 18226 benefits security-sensitive development workflows.

Student and office work: The 35 W TDP keeps power consumption low for all-day operation. The CPU's 83rd percentile ensures smooth multitasking across documents, browsers, and communication tools. The GPU's 68th percentile provides sufficient acceleration for presentations and light graphics work. The UHD Graphics 770 integrated GPU offers a backup if the discrete GPU needs troubleshooting or removal.