

The specifications of hardware and performance of the drive allow for a low optimization time between reading information and writing data, ensuring that your experience is as efficient as possible. Combined with the SATA interface, this gives the drive a faster transfer speed and reading rate. In terms of physical dimensions, this particular hard drive has a metric height of 26.1mm, a metric depth of 147mm, a metric width of 101.6mm, and a metric weight of 0.75kg.This version of the Western Digital Black 2TB 3.5-inch hard drive has an increased cache size of 64MB. With a form factor of only 3.5 inches, this WD2002FAEX is small enough to take up little space, yet provide a huge amount of support. This ensures that your files are safe from unwanted forces, which also conserves HDD life.The main use for the Western Digital Caviar Black 2TB 3.5-inch internal hard drive is for power computing, especially since it uses SATA 6 Gb/s connectivity.

Along with the vibration control technology added to this device, it also comes with corruption protection technology. NoTouch ramp load technology keeps the recording head from touching the disk media, which provides for a longer HDD life. This feature also dramatically increases reliability and ensures that everything within the hard drive is stabilized and that the tracking is accurate. StableTrac is a feature that secures the motor shaft of the HDD on both ends, which reduces vibration for more accurate data reading and writing. The average latency for the Western Digital Caviar Black 2TB WD2002FAEX is 4.2 ms.This internal hard drive has a host of features, including dual actuator technology, StableTrac, and NoTouch ramp load technology. With a buffer cache of 64MB, the Caviar Black has an internal data transfer speed of 6 Gb/s buffer to host and 138 MB/s host to/from drive with SATA 6 Gb/s connectivity. Even at 2TB, the WD2002FAEX still maintains data read and write efficiency with 7200RPM. The Western Digital Caviar Black 2TB 3.5-inch internal hard drive offers massive storage capacity without sacrificing data processing speeds.
