SYSTEM ANALYZER

Rate My PC: Intel Core i7-14700T + Intel Arc B570

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

92 / 100
ULTIMATE READY

Apex Performer

Top 8% 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
93%
VS
GPU
91%
PROCESSOR

Intel Core i7-14700T

41,914 Benchmark Score
Top 7% Market Ranking
View Full Specs →
GRAPHICS CARD

Intel Arc B570

20,556 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
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

The Intel Core i7-14700T and Intel Arc B570 pairing represents a desktop configuration that balances a high-core-count, power-efficient CPU with a modern mid-range GPU. According to the FACT PACK, this combination holds a combined percentile of 77, placing it above the majority of systems in the benchmark database. It is important to note that the FACT PACK contains no measured FPS data for this specific CPU+GPU combination; all performance discussion regarding frame rates is estimated from the individual component benchmark scores and their percentile rankings. The data available shows a platform that is well-suited for multitasking and productivity, with a GPU that holds its own in the current graphics landscape.

Usage Scenarios

For high-refresh gaming, the data suggests a capable, though not extreme, experience. The Arc B570 GPU sits at the 65th percentile among all GPUs, with a 3DMark Steel Nomad DX12 score of 2649, indicating solid DirectX 12 performance. The CPU's strong single-core performance, evidenced by a Cinebench R23 single-core score of 3667, is sufficient to drive high frame rates in most titles. However, the GPU's mid-range standing means that pushing maximum refresh rates at higher resolutions will likely require some graphical settings adjustments. The pairing is best suited for 1080p high-refresh gaming, where the CPU's single-thread capability and the GPU's 11.52 TFLOPS of FP32 compute can deliver smooth, high-frame-rate experiences.

Streaming and content creation workloads benefit from a strong balance between CPU and GPU resources. The CPU boasts 20 cores and 28 threads, resulting in a Cinebench R23 multi-core score of 25980, which places it at the 88th percentile among all CPUs. This high multi-threaded throughput allows for smooth encoding and scene composition while gaming. The Arc B570's dedicated video encode hardware, while not benchmarked in the provided data, is complemented by the CPU's sheer processing power. The system's overall 77th percentile ranking suggests that it can handle a live stream, game, and chat application simultaneously without significant performance degradation.

Video editing is a primary strength for this configuration, driven largely by the CPU. The Core i7-14700T's performance in rendering tasks is excellent, as indicated by its Cinebench scores; the R20 multi-core score of 10911 and R15 multi-core score of 2618 demonstrate high sustained throughput for timeline rendering and export. The Arc B570's 10 GB of GDDR6 memory with 380.0 GB/s of bandwidth provides ample storage for video frame buffers and previews, reducing the likelihood of stuttering in 4K timelines. The GPU's 23.04 TFLOPS of FP16 compute is also relevant for accelerated effects and color grading, making this a highly capable system for non-linear video editing.

For 3D rendering, the data reveals a system that is more CPU-bound than GPU-bound. The CPU's 28 threads and impressive multi-core performance (25980 in R23) will significantly reduce render times for CPU-based render engines like those found in many architectural and product visualization suites. The GPU, with its 2304 shading units and 18 RT cores, is not a top-tier renderer but is competent for real-time viewport previews and GPU-accelerated rendering in DirectX 12 workloads, as shown by its 2649 score in 3DMark Steel Nomad. The system is a practical choice for freelance or student 3D artists who need reliable performance without a workstation-class budget.

Software development is another area where this build excels. The CPU's high thread count and the 33 MB of shared L3 cache are beneficial for compiling large codebases, where parallel processing is crucial. The Passmark data encryption score of 21277 and data compression score of 354216 indicate strong performance in tasks that simulate code signing, packaging, and database operations. The GPU's Vulkan 1.4 support ensures compatibility with modern graphics APIs used in development. The 88th CPU percentile means that developers will rarely feel bottlenecked by the processor, even when running virtual machines, containers, and an IDE simultaneously.

Student and office work is handled with ease, but this is where the system is arguably over-powered. The CPU's base clock of just 1.30 GHz and TDP of 35 W make it incredibly power-efficient for everyday tasks like web browsing, word processing, and spreadsheet management. The Passmark single-thread score of 3905 ensures snappy application responsiveness. While the discrete GPU is not necessary for these tasks, it provides headroom for future workloads or light gaming during off-hours. The system's efficiency does not compromise performance, making it a long-lasting investment for a student moving into more demanding fields like engineering or media studies.

GPU Analysis

The Intel Arc B570 is built on the Xe2-HPG architecture and manufactured on a 5 nm process by TSMC, a significant step up from the previous generation. It features 19,600 million transistors on a 272 mm² die, operating at a fixed clock speed of 2500 MHz for both base and boost. The GPU is equipped with 10 GB of GDDR6 memory on a 160-bit bus, providing a memory bandwidth of 380.0 GB/s. This memory configuration is a key strength, offering more capacity than many rivals in its performance class, which is beneficial for modern games that demand large texture pools.

The compute capabilities of the Arc B570 are defined by 2304 shading units, 144 texture mapping units, and 80 raster output pipelines. This configuration yields a pixel rate of 200.0 GPixel/s and a texture rate of 360.0 GTexel/s. The FP32 compute throughput is rated at 11.52 TFLOPS, which is the standard measure for raw shader performance. For ray tracing, the GPU includes 18 dedicated RT cores, a feature that is increasingly important in modern AAA titles, though the raw compute here suggests it is not a flagship ray tracing performer.

The benchmark results for the GPU paint a picture of a solid mid-range performer. In 3DMark Steel Nomad DX12, it scores 2649, which is a good indicator of modern DirectX 12 gaming performance. The Geekbench Vulkan score of 96844 is notably high, suggesting strong driver optimization for this API. The Passmark G3D score of 14195 places it at the 65th percentile overall, with its average benchmark score of 20556 being nearly identical to the NVIDIA GeForce RTX 3070 Mobile (deltaPct of 0.1). This places the Arc B570 in the company of the previous generation's high-end mobile GPUs, indicating that it is a competent desktop card for 1080p and entry-level 1440p gaming.

The GPU's interfaces and outputs are modern and forward-looking. It uses a PCIe 4.0 x8 bus interface, which is sufficient for its bandwidth needs. Display output is handled by one HDMI 2.1a port and three DisplayPort 2.1 ports, supporting high refresh rates and high resolutions on multiple monitors. The card is a dual-slot design, 272 mm in length, and requires a single 8-pin power connector, with a suggested PSU of 450 W. The TDP is rated at 150 W, indicating that it is a power-efficient card relative to its performance class.

Benchmark Performance

The system's overall performance is best understood by examining the individual component scores and their positions relative to the broader market. The CPU, Intel Core i7-14700T, achieves an average benchmark score of 41914, placing it at the 88th percentile of all CPUs. Its nearest rival, the AMD Ryzen 9 PRO 8945HS, scores 41963, a difference of only -0.1%, showing that the i7-14700T is statistically tied with that chip. It is 0.3% ahead of the Intel Core i7-12850HX and 0.6% ahead of the Intel Core 7 251TE, confirming its position as a high-end multi-threaded processor.

The GPU, Intel Arc B570, has an average benchmark score of 20556, placing it at the 65th percentile of all GPUs. Its closest rival is the NVIDIA GeForce RTX 3070 Mobile, which scores 20534, a negligible 0.1% difference. It is also virtually tied with the Intel Arc A750 (deltaPct of -0.1%). This indicates that the Arc B570 is a solid performer, but it does not reach the upper echelon of graphics cards, as evidenced by its 65th percentile rank, which is significantly lower than the CPU's 88th percentile.

The combined picture is one of a CPU-heavy system. The CPU's average score of 41914 is nearly double the GPU's average score of 20556. In raw compute terms, the CPU's Passmark multithread score of 30571 and its high Cinebench R23 multi-core score of 25980 dwarf the GPU's Passmark G3D score of 14195. This suggests that in many workloads, the processor will be the dominant contributor to overall system performance. The combined percentile of 77 reflects this asymmetry, showing that while the system is well above average, the GPU prevents it from reaching the top tier of gaming rigs.

In specific gaming scenarios, the CPU is unlikely to be a limiting factor. Its Cinebench R23 single-core score of 3667 is robust for gaming logic and physics. The bottleneck will almost certainly be the GPU in modern, graphically intensive titles. For esports and older games, the system will likely perform exceptionally well, but for the latest AAA releases at high settings, the Arc B570's 65th percentile ranking will be the determining factor. The data shows a system where the CPU has significant untapped potential in gaming workloads.

Balance and Bottleneck

The balance of this system is clearly skewed toward CPU performance. The CPU's 88th percentile ranking versus the GPU's 65th percentile creates a scenario where the processor far outpaces the graphics card in relative market standing. In CPU-intensive workloads like video encoding, 3D rendering, and software compilation, the system will perform at a very high level, close to the top tier of consumer desktops. The GPU, while competent, will not be the star of the show in these tasks.

In gaming, the bottleneck is almost exclusively the GPU. The CPU has more than enough headroom to feed frames to the Arc B570 at 1080p and even 1440p. The CPU's high single-core score (3905 in Passmark) and multi-core muscle ensure that frame pacing and minimum frame times will be stable. The GPU's FPS scaling will be the limiting factor; as resolution and graphical fidelity increase, the 65th percentile GPU will struggle to maintain high frame rates, while the CPU continues to have resources to spare.

This imbalance is not necessarily a negative, as it provides a clear upgrade path. A user who finds the GPU limiting can replace it with a more powerful model without needing to upgrade the CPU, as the i7-14700T has the performance headroom to support much faster graphics cards. Conversely, for productivity tasks, the system is well-balanced, as the GPU provides acceleration for tasks like video encoding and 3D previews, while the CPU handles the heavy lifting.

The estimated FPS data, derived from the benchmark scores, suggests that in lighter esports titles, the system could achieve very high frame rates, but in demanding AAA games, it will settle into the 60-100 FPS range at high settings, depending on the resolution. The 3DMark Steel Nomad score of 2649 is a strong indicator of DX12 performance, but it is not in the same league as the top-tier GPUs that score above 4000. The bottleneck analysis points to the GPU as the primary component to monitor for gamers.

CPU Analysis

The Intel Core i7-14700T is a 20-core, 28-thread processor based on the Raptor Lake architecture, specifically the Raptor Lake Refresh generation. It uses a hybrid architecture, though the core configuration is not explicitly broken down in the data. The CPU has a base clock of 1.30 GHz and a boost clock of 5.20 GHz, which is a significant range that allows for both high efficiency at idle and high performance when needed. It is manufactured on Intel's 10 nm process node, with a die size of 257 mm².

The cache hierarchy is substantial: 80 KB of L1 cache per core, 2 MB of L2 cache per core, and 33 MB of shared L3 cache. This large L3 cache is beneficial for gaming and productivity workloads, as it reduces the need to access slower system memory. The CPU supports dual-channel DDR4 and DDR5 memory, providing flexibility in platform cost and performance. It also supports ECC memory, which is a feature typically found in workstation-class components, making this chip attractive for small business servers or workstations where data integrity is critical.

The CPU's benchmark scores are exceptional for a 35 W TDP part. The Cinebench R23 multi-core score of 25980 is particularly impressive, indicating that it can sustain high multi-threaded performance despite its low power envelope. This is likely due to efficient boosting behavior and the high core count. In contrast, the single-core score of 3667 in Cinebench R23 shows that it is also capable in lightly-threaded tasks. The Passmark scores further reinforce this: a multithread score of 30571 and a single-thread score of 3905.

The "T" suffix in the model number indicates a power-optimized variant, with a TDP of just 35 W. This makes it an excellent choice for small form factor builds or systems where heat and power consumption are primary concerns. However, the boost clock of 5.20 GHz ensures that it does not sacrifice performance when workloads demand it. The data shows that this CPU is a unique blend of high efficiency and high performance, with its nearest rivals being other high-end mobile and desktop chips, all within a 0.6% performance delta of each other.

Who Should Build It

This build is a strong match for gamers targeting 1080p high-refresh-rate monitors. The CPU's robust single-core performance and the GPU's 65th percentile standing are a good combination for achieving high frame rates in competitive shooters and MOBAs. For gamers at 1440p, the system is still viable, but users will need to adjust settings in more demanding titles to maintain smooth performance, as the GPU's memory bandwidth of 380.0 GB/s and 11.52 TFLOPS are adequate but not overwhelming.

Content creators, particularly video editors and 3D artists, will find this system to be an excellent investment. The CPU's 28 threads and high multi-core scores (25980 in Cinebench R23) make short work of video exports and CPU-based rendering. The GPU's 10 GB of VRAM is a significant advantage for working with large textures and high-resolution video previews. The combination of the CPU's 88th percentile performance and the GPU's compute capabilities creates a system that handles professional workflows without breaking a sweat.

Software developers and data professionals will appreciate the CPU's thread count and the ECC memory support. Compiling large codebases, running virtual machines, and processing large datasets are all heavily multi-threaded workloads that benefit from the i7-14700T's architecture. The Passmark data encryption score of 21277 also indicates strong performance for security-related tasks. This build serves as a powerful workstation for technical professionals who need reliability and speed.

Students in engineering, architecture, and media programs will find this build to be a capable companion throughout their studies. It can handle CAD software, rendering projects, and gaming in the evenings. Small business users running office applications, financial software, or local servers will benefit from the CPU's efficiency and the system's overall reliability. The low TDP of the CPU and the 150 W TDP of the GPU mean the system does not require exotic cooling or a massive power supply, making it a practical choice for a desk or a small server room.

Upgrade Path and Platform

The platform is built around the Intel Socket 1700, which supports the Core 14th Gen series. The CPU supports DDR4 and DDR5 memory, giving builders the option to use more affordable DDR4 or higher-performance DDR5 modules. The PCIe connectivity is robust, featuring Gen 5 with 16 lanes for the CPU, which is primarily used for the graphics card. The Arc B570 uses a PCIe 4.0 x8 interface, which is fully compatible and leaves bandwidth headroom for future expansion, such as a Gen 5 NVMe SSD.

The power requirements are modest. The CPU has a TDP of 35 W, and the GPU has a TDP of 150 W, with a suggested PSU rating of 450 W. This leaves significant headroom for adding additional drives, fans, and other peripherals. The GPU requires a single 8-pin power connector, which is a standard and easily accommodated feature. The system's overall power efficiency is a key strength, allowing for quiet cooling solutions and lower electricity bills.

A sensible next upgrade for this system would be the GPU. The CPU is so powerful that it can support significantly faster graphics cards without becoming a bottleneck. Upgrading to a higher-tier GPU would immediately improve gaming performance and accelerate GPU-intensive tasks. The CPU's 88th percentile ranking means it is not likely to need an upgrade for several years, so users should focus on the GPU for gaming improvements. The platform itself is likely at the end of its socket's life, so a future CPU upgrade would necessitate a motherboard change, but this is not a pressing concern given the current CPU's performance.

The chassis and cooling requirements are also flexible. The CPU is a 35 W part, so even a modest air cooler will suffice. The GPU is a dual-slot card, 272 mm in length, which fits in most mid-tower cases. The system can be built in a compact case if desired, making it a versatile option for various build preferences. The platform offers a balanced mix of current performance and future expansion potential, primarily through GPU upgrades.

Build Overview

This desktop build combines the Intel Core i7-14700T with the Intel Arc B570, creating a system that is defined by its exceptional CPU performance and competent mid-range GPU. The CPU is a 20-core, 28-thread powerhouse that sits at the 88th percentile of all processors, while the GPU is a solid performer at the 65th percentile of all graphics cards. This pairing results in an overall combined percentile of 77, indicating a system that outperforms the vast majority of desktop configurations in the database.

The class of this build is desktop, and it is best described as a productivity-first system with strong gaming capabilities. The CPU is the clear star, offering performance that rivals much more expensive processors while maintaining a low power draw of 35 W. The GPU, while not a high-end model, provides a solid foundation for 1080p gaming and hardware acceleration for creative workloads. The system is not a top-tier gaming rig, but it is an incredibly well-rounded machine.

The overall tier of this build, based on the 77th combined percentile, places it in the upper-mid-range category. It is a system that will handle almost any task a typical user throws at it, from demanding professional applications to modern games. The data suggests that the i7-14700T is a sleeper hit for productivity, and the Arc B570 is a capable companion that delivers a smooth experience. This is a build for users who prioritize multi-threaded performance and system responsiveness above raw graphics horsepower.

The build confirms the efficiency of modern components. The CPU's low TDP and the GPU's 150 W TDP mean that the entire system can be powered by a standard 450 W PSU, allowing for a compact and quiet build. The combination of the high-performance CPU and the solid GPU creates a versatile platform that will remain relevant for years. It is a practical choice for a wide range of users, from professionals to enthusiasts.

FAQ

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

A: The combination of the Intel Core i7-14700T and Intel Arc B570 has a combined percentile of 77, indicating it performs better than 77% of all systems in the database.

Q: How does the CPU's multi-core performance compare to its nearest rival?

A: The CPU has an average benchmark score of 41914, which is essentially tied with the AMD Ryzen 9 PRO 8945HS at 41963, a delta of -0.1%. It is 0.3% ahead of the Intel Core i7-12850HX.

Q: What is the GPU's memory bandwidth and capacity?

A: The Intel Arc B570 has 10 GB of GDDR6 memory on a 160-bit bus, providing a memory bandwidth of 380.0 GB/s.

Q: Does the CPU support ECC memory?

A: Yes, the Intel Core i7-14700T supports ECC memory, a feature that is beneficial for workstation and small business server applications where data integrity is important.

Q: What is the TDP of the CPU and the suggested PSU wattage for the GPU?

A: The CPU has a TDP of 35 W, and the suggested PSU for the system is 450 W, which accounts for the GPU's 150 W TDP.

Q: What is the difference in performance between this GPU and the Intel Arc A750?

A: The Arc B570 has an average benchmark score of 20556, while the Arc A750 scores 20582, making the A750 just 0.1% faster, which is a negligible difference.

Q: What are the CPU's Cinebench R23 multi-core and single-core scores?

A: The CPU scores 25980 in Cinebench R23 multi-core and 3667 in Cinebench R23 single-core, showing strong performance in both multi-threaded and single-threaded workloads.