SYSTEM ANALYZER

Rate My PC: Intel Core i3-14100T + NVIDIA Quadro RTX 5000

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

87 / 100
HIGH-END

Power Build

Top 13% of systems. Excellent for 1440p Ultra or 4K High gaming.

1440p Ultra4K High

System Balance Analysis

CPU vs GPU performance ratio
Well Balanced
CPU
83%
VS
GPU
91%
PROCESSOR

Intel Core i3-14100T

17,648 Benchmark Score
Top 17% Market Ranking
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GRAPHICS CARD

NVIDIA Quadro RTX 5000

21,629 Benchmark Score
Top 9% 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

Strong Performance

Excellent for 1440p gaming. Most games will run at high/ultra settings smoothly.

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 i3-14100T + NVIDIA Quadro RTX 5000: A Desktop Workstation Pairing with Unusual Dynamics

This desktop build combines Intel's power-efficient 14th-generation Core i3 processor with NVIDIA's professional-grade Quadro RTX 5000 GPU, creating a system that sits at the 69th percentile overall among all CPU-GPU pairings. The pairing is notable for its stark contrast: a 35-watt, 4-core CPU designed for low-power operation alongside a 230-watt, 16 GB prosumer graphics card built for rendering and compute workloads. The benchmark data reveals a system where the GPU substantially outclasses the CPU in raw compute potential, yet the processor holds its own in single-threaded tasks. This analysis interprets the available benchmark scores, percentile positions, and architectural details to determine what this combination can realistically deliver across gaming, content creation, and professional applications, with the caveat that no measured FPS data exists for this exact pairing, so all frame-rate expectations are estimates derived from component benchmark scores.

Upgrade Path and Platform

The Intel Core i3-14100T mounts on the Intel Socket 1700 platform, which supports both DDR4 and DDR5 memory in a dual-channel configuration. This flexibility is a significant advantage for builders, as it allows the system to be configured with either memory generation depending on availability and platform preferences. The CPU also supports ECC memory, a feature typically associated with workstation and server environments, which adds reliability for long-running compute tasks where data integrity is paramount. The processor provides Gen 5 PCIe with 16 lanes from the CPU, ensuring ample bandwidth for modern graphics cards and NVMe storage devices, though the Quadro RTX 5000 itself operates on a PCIe 3.0 x16 interface.

With a TDP of just 35 watts, the i3-14100T is an exceptionally power-frugal processor, which means the system's overall power draw is dominated by the GPU. The Quadro RTX 5000 has a 230 W TDP and the suggested PSU for this pairing is 550 W, leaving substantial headroom for additional drives, fans, and peripherals. A sensible next upgrade path would involve increasing core count on the same socket, as the LGA 1700 platform supports higher-tier 14th-generation processors, though the 35 W TDP of the current chip suggests the cooling solution is modest and would need to be revisited for a more powerful CPU. The platform's dual memory support also means that upgrading from DDR4 to DDR5 would require a motherboard change, so the most economical next step is likely a CPU swap within the existing board and memory configuration.

Benchmark Performance

The CPU's average benchmark score is 17,648, placing it at the 71st percentile among all processors. This score is remarkably close to its nearest rivals: the Intel Core i3-13100F scores 17,653 (a 0% delta), the Intel Core i7-1255U scores 17,656 (0% delta), and the AMD Ryzen 3 8300GE scores 17,614 (0.2% faster). Even the AMD EPYC 9374F, a server-class chip, is only 0.3% behind with a score of 17,693. This clustering indicates that the i3-14100T delivers performance squarely in line with other modern quad-core parts, regardless of their intended market segment.

The GPU presents a different picture. Its average benchmark score of 21,629 places it at the 67th percentile among all GPUs, with nearest rivals including the GeForce GTX 1060 6 GB (21,856, 1% faster), the RTX A4000 Mobile (21,379, 1.2% slower), and the Radeon HD 8970M (21,237, 1.8% slower). The Quadro RTX 5000's scores across Geekbench OpenCL (78,999), Vulkan (92,309), and Passmark G3D (15,616) indicate strong compute capabilities, while its Passmark DirectX scores (59 for DX12, 140 for DX11, 113 for DX10, 195 for DX9) are surprisingly low, suggesting that its professional drivers are optimized for compute rather than gaming rasterization. The combined percentile of 69 for the pairing places it in the upper-midrange tier of desktop systems, though the gap between CPU and GPU capabilities creates a nuanced performance profile.

CPU Analysis

The Intel Core i3-14100T is a 4-core, 8-thread processor based on the Raptor Lake architecture, manufactured on Intel's 10 nm process with a die size of 163 mm². Its base clock is 2.70 GHz with a boost clock of 4.40 GHz, and it features 80 KB of L1 cache per core, 1.25 MB of L2 cache per core, and 12 MB of shared L3 cache. The processor includes UHD Graphics 730 integrated graphics, which can serve as a fallback display output or for basic tasks when the discrete GPU is idle. The launch MSRP is $134.

Benchmark results show a processor that punches above its low-power rating in single-threaded performance. The Cinebench R23 single-core score of 1,639 and multi-core score of 11,612 indicate that the i3-14100T excels in lightly-threaded workloads, which is typical for tasks like web browsing, office applications, and legacy software that relies on high clock speeds. The Passmark single-thread score of 3,498 reinforces this, while the multithread score of 13,662 and integer math score of 40,292 show that the 8 threads can handle moderate parallel workloads. However, the floating-point math score of 31,379 and the find prime numbers score of 56 reveal limitations in heavily parallel scientific or financial computations. The data compression score of 152,636 and encryption score of 7,881 suggest adequate performance for file archiving and disk encryption, though the extended instructions score of 10,414 indicates reasonable SIMD capability. The physics score of 973 is modest, which may affect gaming performance in physics-heavy titles.

Who Should Build It

This pairing targets users who need professional-grade GPU compute without requiring a high-end CPU. The Quadro RTX 5000's 16 GB VRAM and 448.0 GB/s memory bandwidth make it suitable for large 3D scenes, high-resolution textures, and GPU-accelerated rendering, while the i3-14100T handles the orchestration of these tasks. Content creators working in Blender, Maya, or Cinema 4D would benefit from the GPU's compute power, though the CPU might bottleneck scene preparation and physics simulations. Software developers writing CUDA or OpenCL code for GPU acceleration would find this system capable, as the i3-14100T's single-thread performance is sufficient for compilation and code editing, while the Quadro RTX 5000 handles the heavy parallel compute.

Students and small business workstations that require ISV-certified graphics for CAD or architectural visualization would find this pairing appropriate, as the Quadro line is designed for professional applications. However, the 4-core CPU may struggle with multitasking-heavy workflows, such as running a virtual machine while compiling code. Gamers at 1080p resolution would see strong performance from the GPU, but the CPU's low TDP might limit frame rates in CPU-bound titles. The 71st percentile CPU and 67th percentile GPU suggest that this system is not at the modern, but it occupies a specific niche for users who prioritize GPU compute over CPU throughput.

Balance and Bottleneck

The balance between the i3-14100T and Quadro RTX 5000 is heavily skewed toward the GPU. The CPU's 71st percentile ranking and the GPU's 67th percentile are close, but the nature of their workloads differs vastly. In GPU-accelerated tasks like rendering or machine learning inference, the Quadro RTX 5000's 11.15 TFLOPS of FP32 performance and 22.30 TFLOPS of FP16 performance will be the primary driver, with the CPU merely feeding data. The GPU's Passmark GPU compute score of 6,525 and Geekbench OpenCL score of 78,999 indicate substantial parallel throughput, which the 4-core CPU cannot match in raw compute terms.

However, in gaming scenarios, the CPU is likely to be the bottleneck. The Quadro RTX 5000's low DirectX scores (59 for DX12) suggest that gaming performance is not its strength, and even if it were, the i3-14100T's 4 cores and 35 W TDP would limit frame rates in modern titles that utilize more than 4 threads. The FPS scaling would be constrained by the CPU's single-thread performance (Cinebench R23 single-core 1,639) in low-resolution gaming, while at higher resolutions, the GPU would become the limiting factor. The Passmark physics score of 973 further indicates weak CPU-side physics processing, which could cause frame hitches in physics-intensive games. This pairing is therefore best suited for tasks where the GPU does the heavy lifting and the CPU handles I/O and orchestration, rather than balanced workloads where both components are stressed equally.

Gaming Performance

No measured FPS data exists for this exact CPU-GPU combination, so all frame-rate expectations are estimates derived from benchmark scores. The Quadro RTX 5000's Passmark DirectX 12 score of 59 and DirectX 11 score of 140 are low, suggesting that this GPU is not optimized for gaming workloads. Its Passmark G3D score of 15,616 is respectable, but the DirectX results indicate driver and architectural limitations for real-time rasterization. At 1080p ultra settings, the system might achieve playable frame rates in older or less demanding titles, but modern AAA games would likely struggle due to both the GPU's professional focus and the CPU's limited core count.

At 1440p or 4K, the GPU's 16 GB VRAM would accommodate high-resolution textures, but the low DirectX scores suggest that frame rates would be inconsistent. The CPU's 4.40 GHz boost clock helps in lightly-threaded games, but its 35 W TDP means sustained performance may be limited. For esports titles like Counter-Strike or League of Legends, the system could deliver high frame rates due to the GPU's raw compute and the CPU's strong single-thread score, but for demanding single-player games, this pairing is not recommended. The data implies that users seeking this combination for gaming would be disappointed, as the Quadro RTX 5000 is a professional tool, not a gaming card.

FAQ

Q: What is the launch MSRP of the Intel Core i3-14100T?

A: The launch MSRP is $134.

Q: Does the i3-14100T support ECC memory?

A: Yes, the CPU supports ECC memory, which is unusual for a consumer-grade processor and beneficial for workstation reliability.

Q: What is the memory bandwidth of the Quadro RTX 5000?

A: The GPU has a memory bandwidth of 448.0 GB/s, with 16 GB of GDDR6 memory on a 256-bit bus.

Q: How does the i3-14100T compare to the Intel Core i3-13100F?

A: The i3-14100T has an average benchmark score of 17,648, while the i3-13100F scores 17,653, a delta of 0%. They are essentially performance equals.

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

A: The suggested PSU is 550 W, which accounts for the GPU's 230 W TDP and the CPU's 35 W TDP.

Q: What is the process node and architecture of the Quadro RTX 5000?

A: The GPU is based on the Turing architecture, manufactured on TSMC's 12 nm process, with a die size of 545 mm² and 13,600 million transistors.

Q: Does the i3-14100T have integrated graphics?

A: Yes, it includes UHD Graphics 730, which can be used for display output or basic tasks without the discrete GPU.

Build Overview

This is a desktop build that pairs Intel's Core i3-14100T, a 14th-generation Rapt Lake processor, with NVIDIA's Quadro RTX 5000, a professional Turing-architecture GPU. The CPU is a 4-core, 8-thread part with a 35 W TDP, while the GPU is a 230 W card with 16 GB of GDDR6 memory and 3072 shading units. The combined percentile is 69, placing this system in the upper-midrange tier of all desktop configurations. The CPU scores at the 71st percentile, and the GPU at the 67th percentile, indicating a relatively balanced overall ranking, though the GPU's professional focus means its gaming performance lags behind its compute capabilities.

The pairing is classified as a desktop workstation, given the Quadro RTX 5000's professional lineage and the CPU's ECC memory support. The system's strength lies in GPU-accelerated compute tasks, where the 11.15 TFLOPS of FP32 performance and 384 tensor cores can be fully utilized. The CPU's low power consumption makes it suitable for systems that run 24/7, such as render farms or inference servers, where the 35 W TDP reduces cooling and electricity costs. The GPU's 16 GB VRAM is ample for large datasets, and its 4x DisplayPort 1.4a outputs plus 1x USB Type-C provide extensive display connectivity for multi-monitor setups.

Usage Scenarios

High-Refresh Gaming: The Quadro RTX 5000's low DirectX scores (59 for DX12) and the CPU's 4-core limit make high-refresh gaming at 144Hz or 240Hz unlikely. The system might achieve 60 FPS in esports titles at 1080p, but demanding games would see frame rates below 30 FPS. The CPU's single-thread score of 1,639 in Cinebench R23 helps in CPU-bound scenarios, but the GPU's professional drivers are not optimized for gaming.

Streaming: Streaming requires both CPU and GPU resources for encoding and game rendering. The i3-14100T's 8 threads and the GPU's NVENC encoder (implied by Turing architecture) could handle 1080p60 streaming, but the GPU's gaming performance would be the limiting factor. The Passmark multithread score of 13,662 suggests the CPU can handle encoding, but overall streaming quality would be compromised by the GPU's weak DirectX performance.

Video Editing: In video editing software like Premiere Pro or DaVinci Resolve, the GPU's 16 GB VRAM and 448.0 GB/s bandwidth accelerate effects, color grading, and rendering. The CPU's single-thread performance (3,498 Passmark single-thread) handles timeline scrubbing and interface responsiveness. The system should handle 4K video editing with proxy workflows, though 8K editing might strain the 4-core CPU during export.

3D Rendering: This is the system's strongest scenario. The GPU's 11.15 TFLOPS FP32 and 22.30 TFLOPS FP16 performance, combined with 48 RT cores, accelerate ray-traced renders in Blender or Octane. The CPU's Cinebench R23 multi-core score of 11,612 is adequate for CPU-based rendering, but the GPU would be the primary renderer. The 16 GB VRAM allows for large scenes with high-resolution textures.

Software Development: For developers writing CPU-bound code, the i3-14100T's 4 cores might be limiting for large compilation jobs. The Passmark integer math score of 40,292 and data compression score of 152,636 indicate decent performance for code compilation and version control. The GPU's compute capabilities are useful for CUDA development, and the ECC memory support adds stability for long-running builds.

Student and Office Work: This scenario exceeds the system's capabilities. For word processing, spreadsheets, and web browsing, the i3-14100T's single-thread performance is more than sufficient, and the GPU's compute power is wasted. The 35 W TDP keeps power consumption low, making it an efficient office machine, but the Quadro RTX 5000's $2,299 launch MSRP is overkill for such tasks. The system would be better utilized in a lab environment where GPU compute is needed.

GPU Analysis

The NVIDIA Quadro RTX 5000 is based on the TU104 chip, manufactured on TSMC's 12 nm process with 13,600 million transistors on a 545 mm² die. It features 3072 shading units, 192 texture mapping units, and 64 raster operation units, along with 48 RT cores and 384 tensor cores. The GPU operates at a base clock of 1620 MHz and a boost clock of 1815 MHz, with memory running at 1750 MHz (14 Gbps effective) across a 256-bit bus, yielding 448.0 GB/s of bandwidth. The 16 GB GDDR6 memory is substantial for professional workloads.

The GPU's benchmark scores reveal a compute-focused design. Its Geekbench OpenCL score of 78,999 and Vulkan score of 92,309 are strong, indicating excellent compute performance. The Passmark GPU compute score of 6,525 and G3D score of 15,616 are respectable, but the DirectX scores (59 for DX12, 140 for DX11, 113 for DX10, 195 for DX9) are notably low. This discrepancy suggests that the Quadro RTX 5000's drivers prioritize compute and professional rendering over gaming rasterization, which is expected for a workstation card. The pixel rate of 116.2 GPixel/s and texture rate of 348.5 GTexel/s provide ample fill rate for rendering tasks.

The GPU's FP32 throughput of 11.15 TFLOPS and FP16 of 22.30 TFLOPS (2:1) make it a capable compute card, though modern GPUs offer higher figures. The 384 tensor cores accelerate AI workflows like Deep Learning Super Sampling (DLSS) and machine learning inference, while the 48 RT cores handle ray tracing, albeit at lower performance than newer RTX cards. The GPU is end-of-life, having been released in 2018 with a predecessor of Quadro Volta and successor of Workstation Ampere. Its 230 W TDP and dual-slot design require significant cooling, and the 1x 6-pin + 1x 8-pin power connectors need a 550 W PSU. The 4x DisplayPort 1.4a outputs and 1x USB Type-C provide modern display connectivity, and the card supports DirectX 12 Ultimate (12_2), OpenGL 4.6, and Vulkan 1.4. The GPU's 67th percentile ranking places it mid-pack among all GPUs, with nearest rivals including gaming cards like the GTX 1060 6 GB, indicating that its professional features come at the cost of gaming performance.