Gigabyte launches Ultra durable GTX 275

Gigabyte today announced latest GIGABYTE in-house design GV-N275UD-896H with GIGABYTE unique technology Ultra Durable VGA. Built with NVIDIA’s latest processors-GTX 275, GIGABYTE GV-N275UD-896H features 896 MB GDDR3 memory and 240 stream processors.

In addition, GV-N275UD-896H is equipped with the latest NVIDIA SLI®, NVIDIA PureVideo® HD, NVIDIA PhysX™, NVIDIA CUDA™ technology and Microsoft DirectX 10. GV-N275UD-896H provides a sophisticated level of 3D game rendering and unrivaled performance to take your gaming experience to the next level.

GIGABYTE Unique Technology: Ultra Durable VGA

GV-N275UD-896H features GIGABYTE innovative technology-Ultra Durable VGA, which can provide outstanding overclocking capability, lower GPU temperature, and excellent power efficiency. GIGABYTE unique technology Ultra Durable VGA features 2 oz copper PCB board, Samsung/Hynix memory, Japanese solid capacitor, Ferrite Core Chokes, and Low RDS (on) MOSFET. Compared with traditional graphics accelerators, Ultra Durable VGA graphics accelerators can lower GPU temperature by 5%~10%, decrease power switching loss by 10%~30%, and increase overclocking capability by 10%~30%. GIGABYTE Ultra Durable VGA graphics accelerators GV-N275UD-896H can provide truly ¡°high-performance¡± and ¡°green¡± graphic card resolutions.

1. 2 oz Copper PCB – 2 oz copper PCB board doubles the copper inner layer of pCB board and provides unrivaled performance compared with traditional 1 oz PCB board.

2. Tier 1 Samsung and Hynix Memory – Ultra Durable VGA promises 1st tier Samsung/Hynix memory built with 100% fully testing

3. Japanese Solid Capacitor – Solid capacitors contain a solid organic polymer, while electrolytic capacitors use a common liquid electrolyte. Our cards use Japanese solid capacitors made by leading Japanese manufactures and offer better electronic conductivity for unrivaled performance.

4. Ferrite Core Chokes – Ferrite core chokes are comprised of a compound of iron-oxide whose properties hold energy much longer than common iron-core chokes at high frequency. They are able to store energy longer and prevent rapid energy loss at high frequency.

5. Low RDS (on) MOSFET – Lower RDS(on) MOSFETs are specially designed to produce lower switching resistance for faster electric current charging and discharging.

No pictures and pricing available just yet.

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