Minecraft

Minecraft

AVERAGE FPS
425
excellent

This combination delivers exceptional performance with an average of 425 FPS, perfect for high refresh rate gaming and competitive play.

Average FPS: resolution vs quality settings

UltraHighMediumLow
4K Ultra HD 127 204 257 324
1440p QHD 244 390 491 620
1080p Full HD 386 618 688 748

Cell color: green is 120+ FPS, teal is 60+, amber is 30+, red is below 30.

Every measured configuration

3840x2160 Low 324
3840x2160 Medium 257
3840x2160 High 204
3840x2160 Ultra 127
2560x1440 Low 620
2560x1440 Medium 491
2560x1440 High 390
2560x1440 Ultra 244
1920x1080 Low 748
1920x1080 Medium 688
1920x1080 High 618
1920x1080 Ultra 386

Minecraft with Intel Core i7-12700KF + NVIDIA GeForce RTX 5090 D, In-Depth Analysis

# FAQ

Q: What is the combo rank of the Intel Core i7-12700KF with the NVIDIA GeForce RTX 5090 D in Minecraft?

A: This combination ranks 26th out of 1,176 tested combos in Minecraft, placing it in the top 2.2% of all tested configurations for this game.

Q: How does the CPU performance compare to its nearest rivals?

A: The Intel Core i7-12700KF has an average benchmark score of 35,365, which is nearly identical to the Intel Core i7-13700T (35,403, 0.1% lower) and the Intel Core 5 213PE (35,428, 0.2% lower). It slightly outperforms the Intel Core i5-13600T (35,305, 0.2% ahead) and the Intel Core i7-12700K (35,287, 0.2% ahead).

Q: What is the GPU's memory configuration and how does it impact Minecraft?

A: The RTX 5090 D features 32 GB of GDDR7 memory on a 512-bit bus with 1.79 TB/s bandwidth. This large memory pool and high bandwidth ensure that Minecraft's texture data and world chunks are readily available, preventing stutter even at high render distances.

Q: What are the GPU's clock speeds?

A: The RTX 5090 D has a base clock of 2017 MHz and a boost clock of 2407 MHz, with memory running at 1750 MHz (28 Gbps effective). These clocks contribute to its strong performance in both synthetic benchmarks and real-world gaming.

Q: What is the CPU's core and thread configuration?

A: The Intel Core i7-12700KF has 12 cores and 20 threads, with a base clock of 3.60 GHz and a boost clock of 5.00 GHz. It features 25 MB of shared L3 cache and 1.25 MB of L2 cache per core.

Q: What is the GPU's performance percentile compared to all GPUs?

A: The RTX 5090 D sits in the 92nd percentile of all GPUs, with an average benchmark score of 77,712. Its nearest rivals include the AMD Radeon RX 6650M XT (76,904, 1.1% higher) and the AMD Radeon RX 6850M XT (78,940, 1.6% lower).

How This Combo Ranks

The combination of the Intel Core i7-12700KF and NVIDIA GeForce RTX 5090 D achieves a rank of 26 out of 1,176 tested combos in Minecraft. This places it in the 97.8th percentile of all tested configurations, indicating that this pairing delivers near-top-tier performance for this title. The ranking is particularly impressive given that Minecraft is often considered CPU-bound at lower resolutions, and this combo demonstrates that the CPU can keep pace with one of the most powerful consumer GPUs available.

The data shows that this combo outperforms the overwhelming majority of tested systems, with only 25 other combinations delivering higher average frame rates. This suggests that users seeking the absolute highest performance in Minecraft would find this pairing highly competitive. The high rank is consistent across the board, reflecting the balanced capabilities of both the 12th-gen Core i7 processor and the Blackwell-architecture GPU.

When examining the CPU's synthetic benchmark scores, the i7-12700KF delivers a multi-threaded score of 28,838 in Cinebench R23 and a single-thread score of 4,071 in the same test. These figures indicate strong computational throughput that supports the high frame rates observed in Minecraft. The GPU's 3DMark Steel Nomad DX12 score of 14,326 further confirms its capability to handle modern rendering workloads efficiently.

The rank of 26 out of 1,176 is a strong indicator that this combo represents a top-tier configuration for Minecraft. Users can expect exceptional performance without encountering significant bottlenecks from either component, as the data suggests both the CPU and GPU are well-matched for this game's requirements.

GPU Role

The NVIDIA GeForce RTX 5090 D plays a dominant role in determining Minecraft's performance at higher resolutions and settings. With 32 GB of GDDR7 memory, the GPU can hold vast amounts of world data and texture assets in local memory, reducing the need to fetch data from system memory or storage. This is particularly beneficial in Minecraft, where large render distances and complex world generation can create significant memory pressure.

The GPU's memory bandwidth of 1.79 TB/s ensures that data flows quickly between the memory and the processing units. This is crucial for maintaining high frame rates, especially when the player is moving rapidly through the world and new chunks are being loaded. The 512-bit memory bus width further enhances data throughput, allowing the GPU to handle the demanding memory access patterns typical of voxel-based games.

The clock speeds of 2017 MHz base and 2407 MHz boost provide substantial computational power. The GPU's FP32 performance of 104.8 TFLOPS indicates its ability to process the geometry and shading operations required by Minecraft's block-based rendering. The 21,760 shading units and 680 texture mapping units work together to deliver the high pixel and texture rates observed in the benchmark results.

The RTX 5090 D's 92nd percentile ranking among all GPUs, with an average benchmark score of 77,712, underscores its position as a high-end graphics solution. Its nearest rivals, such as the AMD Radeon RX 6850M XT (78,940, 1.6% lower) and the NVIDIA Tesla P100 PCIe 16 GB (79,605, 2.4% lower), show that this GPU competes favorably with other top-tier options.

In synthetic benchmarks, the GPU achieves a Geekbench OpenCL score of 310,674 and a Vulkan score of 376,915, demonstrating robust compute capabilities that translate well to gaming workloads. The Passmark G3D score of 44,065 further confirms its strong graphical performance. These scores indicate that the GPU is well-suited for Minecraft's rendering requirements, which involve both traditional rasterization and potential ray tracing effects.

Measured FPS Breakdown

The measured frame rates for this combo in Minecraft show a clear scaling pattern across resolutions and settings. At 3840x2160 (4K), the average FPS ranges from 127 at Ultra settings to 324 at Low settings. The Medium setting at 4K delivers an average of 257 FPS, with minimum and maximum values of 218 and 295 FPS respectively. The High setting at 4K achieves 204 FPS average, showing that even at the highest resolution, this combo maintains playable frame rates across all settings.

Moving to 2560x1440 (1440p), performance improves significantly. The Ultra setting delivers 244 FPS average, while High reaches 390 FPS. Medium at 1440p produces 491 FPS average, with min and max values of 418 and 565 FPS. Low settings at 1440p achieve an impressive 620 FPS average, indicating that the GPU is far from being a bottleneck at this resolution.

At 1920x1080 (1080p), the frame rates become exceptionally high. Ultra settings deliver 386 FPS average, while High reaches 618 FPS. Medium at 1080p produces 688 FPS average, with minimum and maximum values of 585 and 791 FPS. Low settings at 1080p achieve 748 FPS average, demonstrating that this combo can drive high-refresh-rate monitors well beyond their limits.

The data shows a consistent pattern: as resolution decreases, frame rates increase substantially. At 4K, the difference between Low and Ultra is 197 FPS (324 vs 127), while at 1080p, the difference is 362 FPS (748 vs 386). This indicates that the GPU is the primary limiting factor at higher resolutions, while at 1080p, the CPU begins to play a more significant role in determining maximum frame rates.

The minimum FPS values recorded at Medium settings provide insight into frame time consistency. At 4K Medium, the minimum of 218 FPS is only 15% below the average of 257 FPS, suggesting stable performance. At 1440p Medium, the minimum of 418 FPS is 15% below the average of 491 FPS. At 1080p Medium, the minimum of 585 FPS is 15% below the average of 688 FPS. This consistent 15% variance indicates predictable frame delivery without major hitches.

CPU Role

The Intel Core i7-12700KF plays a crucial role in Minecraft's performance, particularly at lower resolutions where the GPU is less stressed. With 12 cores and 20 threads, this processor provides substantial multi-threaded capability that supports the game's world generation and entity processing. The base clock of 3.60 GHz and boost clock of 5.00 GHz ensure responsive single-threaded performance, which is critical for Minecraft's primary game logic thread.

The CPU's cache hierarchy, with 80 KB of L1 cache per core, 1.25 MB of L2 cache per core, and 25 MB of shared L3 cache, helps reduce memory latency for frequently accessed data. This is particularly beneficial in Minecraft, where chunk data and block states are accessed repeatedly during world rendering and simulation. The large L3 cache allows more of the working set to reside on-chip, reducing the need to access system memory.

Synthetic benchmarks reveal the CPU's strengths. In Cinebench R23, the i7-12700KF scores 28,838 in multi-core and 4,071 in single-core tests. The Geekbench multi-core score of 14,367 and single-core score of 2,255 further confirm its balanced performance profile. The Passmark multi-thread score of 34,092 and single-thread score of 3,984 indicate that this processor can handle both heavily threaded workloads and latency-sensitive tasks effectively.

The CPU's 85th percentile ranking among all processors, with an average benchmark score of 35,365, places it in the upper tier of desktop CPUs. Its nearest rivals show remarkably similar performance: the Intel Core i7-13700T scores 35,403 (0.1% higher), and the Intel Core i5-13600T scores 35,305 (0.2% lower). This suggests that the i7-12700KF provides performance comparable to newer and more power-efficient alternatives.

In Minecraft specifically, the CPU's role becomes more pronounced at 1080p resolution. The jump from 386 FPS at Ultra to 748 FPS at Low settings at 1080p indicates that the GPU is not the sole determinant of performance. The CPU's ability to feed the GPU with rendered frames becomes the limiting factor at these high frame rates, and the i7-12700KF's strong single-thread performance ensures that this limit is sufficiently high.

Settings Recommendations

Based on the measured FPS data, the optimal settings for this combo depend on the user's display refresh rate and resolution preference. At 3840x2160, the High preset provides an average of 204 FPS, which is well above the 144 Hz refresh rate common on high-end 4K monitors. The Ultra preset at 4K delivers 127 FPS average, which still exceeds 120 Hz but may not fully saturate a 144 Hz display. For users with 4K 120 Hz or 144 Hz displays, the High preset offers the best balance of visual quality and performance, while Ultra is suitable for those prioritizing image quality over maximum frame rates.

At 2560x1440, the Ultra preset achieves 244 FPS average, which exceeds the refresh rate of most 1440p gaming monitors (typically 144 Hz to 240 Hz). The High preset at 390 FPS provides headroom for even the fastest 360 Hz displays. For 1440p users, the Ultra preset is recommended for maximum visual fidelity without sacrificing smoothness, as the 244 FPS average ensures consistent frame delivery even during demanding scenes.

At 1920x1080, all settings deliver frame rates well beyond typical display refresh rates. The Ultra preset at 386 FPS is more than sufficient for 360 Hz monitors, while the High preset at 618 FPS provides extreme headroom. For 1080p users, the Ultra preset is the clear recommendation, as it offers the best visual quality while still delivering frame rates that exceed the capabilities of virtually all consumer displays.

The Medium preset provides the only recorded minimum FPS values in the data, offering insight into frame time consistency. At 4K Medium, the 218 FPS minimum and 295 FPS maximum indicate stable performance with only 35% variance from the average of 257 FPS. At 1440p Medium, the 418 FPS minimum and 565 FPS maximum show similar consistency. At 1080p Medium, the 585 FPS minimum and 791 FPS maximum demonstrate reliable frame delivery.

For users seeking the highest possible frame rates, the Low preset at 1080p delivers 748 FPS average, while at 1440p it reaches 620 FPS, and at 4K it achieves 324 FPS. These settings minimize visual features but maximize performance, making them suitable for competitive play or for users with extremely high refresh rate displays. However, given the already exceptional performance at higher settings, most users will find the High or Ultra presets provide a superior experience without sacrificing meaningful frame rates.

Hardware Specifications

Intel Core i7-12700KF

Cores / Threads 12 / 20
Base Clock 3600 MHz
Boost Clock 5000 MHz
TDP 125W
Socket Intel Socket 1700
View Full CPU Details →

NVIDIA GeForce RTX 5090 D

VRAM 32 GB GDDR7
Base Clock —
Boost Clock 2407 MHz MHz
TDP 575 WW
View Full GPU Details →

FPS Benchmarks by Resolution & Settings

Performance data for Intel Core i7-12700KF + NVIDIA GeForce RTX 5090 D in Minecraft

Resolution Settings Avg FPS
3840x2160 Low 324.0
3840x2160 Medium 257.0
3840x2160 High 204.0
3840x2160 Ultra 127.0
2560x1440 Low 620.0
2560x1440 Medium 491.0
2560x1440 High 390.0
2560x1440 Ultra 244.0
1920x1080 Low 748.0
1920x1080 Medium 688.0
1920x1080 High 618.0
1920x1080 Ultra 386.0

Minecraft with ii7-12700KF + Other GPUs

See how Minecraft performs with the same CPU but different graphics cards.

Minecraft with RTX 5090 D + Other CPUs

See how Minecraft performs with the same GPU but different processors.

Other Games with ii7-12700KF + RTX 5090 D

Explore FPS benchmarks for other games using this same hardware combination.