The 4070 Ti GAMING OC WINDFORCE cooling system features three 100mm unique blade fans, alternate spinning, 7 composite copper heat pipes, a vapor chamber directly touches the GPU, 3D active fans and Screen cooling, which together provide high efficiency heat dissipation.
The vapour chamber directly contacts the GPU, coupled with the composite heat pipes, which quickly transfers the heat of the GPU and VRAM to the heatsink.
4070 Ti GAMING OC Extended heatsink allows air to pass through, providing better heat dissipation.
Graphene nano lubricant can extend the life of fan by 2.1 times, close to the life of double ball bearing, and is quieter.
4070 Ti GAMING OC factory default setting is OC mode, which provides users with the best performance. However, switching to silent mode will enjoy a quieter experience.
The legendary three-ring lighting provides excellent visual enjoyment. You can choose any lighting effect or synchronise with other devices in GIGABYTE CONTROL CENTER.
The metal backplate not only provides an aesthetical shape, but also enhances the structure of the graphics card to provide complete protection.
The new anti-sag bracket is tailored to each graphics card. It provides the optimised reinforcement and better overall visual appearance.
Ultra Durable certified highest-grade metal chokes, lower ESR solid capacitors, 2oz copper PCB, and lower RDS(on) MOSFETs, plus over-temperature design to deliver superior performance and longer system life.
When experiencing any power supply abnormality, the indicator will alert gamers by flashing light.
Fully automated production process ensures top quality of the circuit boards and eliminates sharp protrusions of the solder connectors seen on the conventional PCB surface. This friendly design prevents your hands from getting cut or inadvertently damaging components when making your build.
GIGABYTE CONTROL CENTER (GCC) is a unified software for all GIGABYTE supported products. It provides an intuitive interface that allows users to adjust clock speed, voltage, fan mode and power target in real-time.