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Wednesday, April 15, 2009

Memory DDR3 Notebook Series First overclock from OCZ

OCZ as a memory manufacturer that is especially known by the user and enthusiast overclockers issued a series of DDR3 memory overclocking for the latest notebook, OCZ PC3-8500 DDR3 Intel Extreme Edition SODIMM.


Information technology and move quickly to redress the needs of the dissemination of information that the higher and faster, the system needs and hardware support adequate. On the other hand, the PC enthusiast and gamers are always eager to have the best system and fastest on the market to support the activities and day-to-day hobby.

Speed is one part of the system that always get attention by the PC enthusiast and gamer in every benchmark and review system circulating on the internet and magazines and computer technology.


Speed is higher.
OCZ release of this product in order to speed up the performance of hard disk and solid-state drive (SSD), which was faster and the thirst for bandwidth. Clock running at 1066MHz and 6-6-6-16 latency at 1.6V, the memory is available in 4GB kit purchase packages and modules with a capacity of 2GB. This will run the memory settings that OCZ is determined at the time in every system boot Intel Core 2 Extreme and Pentium 2.

XMP simplify the process of overclocking.
The memory modules SO-DIMM has the support extreme memory profiles (XMP). OCZ become pioneers in the implementation of XMP support in the SO-DIMM. Technology XMP overclocking process easier by providing a preset such as "Low latency" or "High Frequency" that allows users to configure overclocking memory at the time and provide options other than the process of calculation and the calculation of frequency and latency manually.

XMP will determine timing, voltage and memory frequency automatically. However, when needed, overclockers or the user can set a fixed memory configuration manually. XMP is also a feature "fail-safe default boot" that will change the memory settings at the time of boot in accordance with the JEDEC standard at the time of the going-stabilan system caused by a configuration memory that is too aggressive.

Source: OCZ Technology

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