Memory Active
shopping basket

Shopping Basket

Loading...

Main Pages


Search


Memory by tech


Memory by type


Memory by Application


Solid State Disks

60GB Upgrade for your Lenovo ThinkCentre M Series M57P (Type 6393) machine!

We've spent years amassing all the information we need to make sure you get the right memory for your Lenovo ThinkCentre M Series M57P (Type 6393) Thin Client. We guarantee this memory will work in your machine for the life of your machine. Your Lenovo ThinkCentre M Series M57P (Type 6393) supports up to 8 in 4 slots and modules must be installed 1 at a time.

Install in matched pairs to utilize Dual Channel mode. Installing more than 4GB of memory will require a 64-bit Operating System. Mixing module speeds will default to the lowest speed.

 CodeDescriptionCapacityPriceinc VAT 
   SSD
2940106 60GB Integral P Series 2 SSD 2.5in SATA (Sandforce Chipset) for Lenovo ThinkCentre M Series M57P (Type 6393)60GB £97.33 £116.80 Buy

More information about this machine

more about your Lenovo ThinkCentre M Series M57P (Type 6393) machine
Valid XHTML 1.0 Transitional

©2005-2011 Memory Express Ltd. All rights reserved. Errors and Omissions excepted. All pricing excludes VAT unless otherwise stated. Please read our terms and conditions, returns and privacy policies for more information. Some product information © 2011 Openrange Ltd or © 2011 IceCat BV and is provided in good faith. All trademarks acknowledged.

Network Engines Inc Memory I - Mate Memory Everex Memory Adaptec Memory Silicon Graphics Memory Mustek Memory Sendo Memory Aosta Memory
Advent Memory Epox Memory MSI Memory Grundig Memory Dfi Memory LG Memory Lexmark Memory Kodak Memory
Braun Memory Cisco Memory Nokia Memory Alcatel Memory Gigabyte Memory MSI Memory Sendo Memory Cisco Memory
Viewsonic Memory Siemens Memory Tyan Memory Emachines Memory Tel.me Memory Konica Minolta Memory Gateway 2000 Memory Elitegroup Memory
Tektronix Memory O2 Memory Epson Memory Konica Minolta Memory Rm Memory Bell And Howell Memory Everex Memory Motion Computing Memory