Recertified Computer Memory / DDR2 / OCZ DDR2 PC2-6400 / 800MHz / Vista Upgrade Edition / 4GB Dual Channel

OCZ DDR2 PC2-6400 / 800MHz / Vista Upgrade Edition / 4GB Dual Channel


The new PC2-6400 Vista Upgrade edition is optimized for perfect compatibility for those transitioning from Microsoft Windows® XP to Vista?.

Shipping Weight: 0.27 Lbs (0.12 Kgs)
Out of stock.

$ 43.25

OCZ DDR2 PC2-6400 / 800MHz / Vista Upgrade Edition / 4GB Dual Channel
Capacity:
4GB (2x2048) D/C
Standard:
PC2-6400
Single module or dual kit:
Dual Kit
Memory speed:
800MHz DDR2
Cas latency:
CL 5-6-6-18 (CAS-TRCD-TRP-TRAS)
Voltage:
1.8 Volts*
Warranty:
Lifetime Warranty
Series:
Vista Upgrade Edition
The new PC2-6400 Vista Upgrade edition is optimized for perfect compatibility for those transitioning from Microsoft Windows® XP to Vista?. The OCZ Vista Upgrade series has gone through stringent testing with the full spectrum of Vista versions to deliver a perfect balance of memory performance and stability across the full range of applications.

For gamers shifting to Vista and who prefer the performance of high speed memory, the PC2-6400 Vista Upgrade 4GB kit will provide excellent memory bandwidth and deliver the most efficient operation possible, ensuring the best possible gaming and productivity on Vista systems.

Each memory module features a proprietary OCZ XTC (Xtreme Thermal Convection) heatspreader for the most effective heat dissipation. Furthermore, each OCZ Vista Upgrade module is 100% hand-tested for quality assurance and compatibility and is backed by an industry leading OCZ Lifetime Warranty and technical support for unparalleled peace of mind.


* In order to boot on some motherboards this product is programmed to 667MHz; to run at 800MHz you will need to manually set the speed to 800MHz and voltage to 1.8V in your BIOS

**XTC (Xtreme Thermal Convection) heatspreaders optimize the thermal management of memory modules by promoting greater airflow by means of micro-convection throughout what is usually the dead air space inside conventional heatspreader designs. In this manner, build-up of heat is avoided and thermal dissipation of the memory components is offloaded more efficiently through the honeycomb design. At the same time, mechanical stability is maintained.

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