Description
ProArt GeForce RTX 4060 Ti OC edition 16GB GDDR6
ProArt GeForce RTX 4060 Ti 16GB OC Edition GDDR6 Graphics Card (PCIe 4.0, 16GB GDDR6, DLSS 3, HDMI 2.1a, DisplayPort 1.4a)
- NVIDIA Ada Lovelace Streaming Multiprocessors: Up to 2x performance and power efficiency
- 4th Generation Tensor Cores: Up to 4x performance with DLSS 3 vs. brute-force rendering
- 3rd Generation RT Cores: Up to 2x ray tracing performance
- OC mode: 2685 MHz (OC mode)/ 2655 MHz (Default mode)
- Axial-tech fans scaled up for 21% more airflow
- 2.5-slot design: allows for greater build compatibility while maintaining premium cooling
- Dual ball fan bearings last up to twice as long as conventional designs
- 0dB technology lets you enjoy light gaming in relative silence
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Axial-tech UpgradesA Fresh Spin Bigger and better. Axial-tech fans spin on dual-ball bearings and have been scaled up to propel 21% more air through the card, setting the stage for lower temperatures, less noise, and higher performance. |
Reverse Rotation and 0dB TechnologyOrchestrated Chill The two side fans spin counterclockwise to minimize turbulence and maximize air dispersion through the heatsink. All three fans come to a standstill when GPU temps are below 50 Celsius, letting you play less-demanding games or perform light tasks in relative silence. Fans start up again when temps are over 55 C, referencing a speed curve that balances performance and acoustics for work or play. |
2.5-slot DesignCustom Heatsink Heatpipes efficiently wick heat into a fin stack optimized for airflow from the Axial-tech fans. The entire array is dressed in stealthy black to match the ProArt theme. |
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Compact PCBPacks a Punch Component and trace layouts have been optimized onto a short PCB to reduce power losses and let heat escape through a massive backplate vent. *Illustration for reference only. |
Auto−Extreme TechnologyReliability Boost Auto-Extreme Technology is an automated manufacturing process that sets new standards in the industry by allowing all soldering to be completed in a single pass. This reduces thermal strain on components and avoids the use of harsh cleaning chemicals, resulting in less environmental impact, lower manufacturing power consumption, and a more reliable product overall. |
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