

Asus NVIDIA GeForce RTX 3060 Graphic Card – 8 GB GDDR6
ASUS Dual GeForce RTXTM 3060 White OC Edition 8GB GDDR6 with two powerful Axial-tech fans and a 2-slot design for broad compatibility
DUAL
Featuring the latest NVIDIA® Ampere architecture, ASUS Dual GeForce RTX™ 3060 fuses dynamic thermal performance with broad compatibility. Advanced cooling solutions from flagship graphics cards – including two Axial-tech fans for maximizing airflow to the heatsink – are packed into the 20 cm long, 2-slot card, delivering more power in less space. These enhancements make ASUS Dual the perfect choice for gamers who want heavyweight graphics performance in a compact build.
COOLING
Axial-tech Fan DesignBetter, faster, stronger
Two tried-and-true Axial-tech fans feature a smaller hub that facilitates longer blades and a barrier ring to increase downward air pressure.
0dB Technology | Quiet intelligence
To eliminate unnecessary noise, a stop mode halts all fans when the GPU temp falls below 50 degrees and power consumption is low.
Dual Ball Fan Bearings | 2x longer lifespan
Different bearing types have unique pros and cons. Ball bearings excel at durability and can last up to twice as long as sleeve bearing designs.
2-slot Design | Sink your heat into this
A carefully designed shroud, heatsink, and heatpipe layout allows the two Axial-tech fans to leverage chassis side-panel ventilation and deliver thermal performance that belies the card’s size.
ENGINEERING
Auto-Extreme Technology | Precision automated manufacturing
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.
Protective Backplate | That’s so metal!
The PCB is reinforced by an aluminum backplate that adds structural rigidity, helping to prevent flex and protect components and trace pathways from damage.