Taipei, Taiwan – 8 November, 2010 – ADATA Technology, one of the world’s leading manufacturers of high performance DRAM modules and NAND Flash application products, is pleased to announce the launch of its XPG™ DDR3 2400G 4GB dual channel kit.
The new XPG DDR3 2400G runs at an operating voltage of 1.65V with a CL value of 9-11-9-27, allowing for predicted bandwidth of up to 38.4GB per second. This new addition is intended to meet the ever increasing demand of PC gamers for reliable high performance DRAM modules.
Experience staggering speeds without overheating!
Each memory chip must pass a stringent filtering process before it is deemed suitable for completion with an 8-layer PCB (Printed Circuit Board) and supplied with Thermal Conductive Technology (TCT). This new XPG Gaming Series retains operational stability by lowering the module temperature while simultaneously improving power consumption and prolonging product lifespan. Moreover, each memory chip is in direct contact with the head spreaders to facilitate heat dissipation. For power users, the XPG V2.0 2400G 4GB dual channel kit also supports the Intel XMP Extreme Memory Profiles, substantially facilitating configurations.
Availability
For a list of selected distributors and stockists in the UK, please visit www.adata-group.com
About ADATA www.adata-group.com
ADATA Technology, the world’s 2nd largest vendor of DRAM Modules (iSuppli, May 2010), 3rd largest of vendor of USB Flash Drives (Gartner, May 2010), and one of Taiwan’s Top 20 global brands, provides complete memory solutions, including DRAM Modules, USB Flash Drives, Memory Cards, Solid State Drives and Portable Hard Drives. Committed to constant innovation, ADATA delivers first-rate quality and industry-leading product performance to worldwide customers. Widely known for its distinctive design, ADATA products are internationally recognized by Germany’s iF Design Award, Red dot Award, CES Best of Innovations Award, Japan’s Good Design Award, Best Choice of Computex Award, and Taiwan Excellence Gold Award.