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The FreeAgent GoFlex drives support USB 2.0, USB 3.0 (backwards compatible with USB 2.0 ports), FireWire, and eSATAp (aka eSATA/USB or powered eSATA); they are supplied fitted with an adapter for one of these standards (often USB 2.0), or none (bare drive), and additional adapters can be purchased.
[10] [54] Additionally, FireWire features two data buses for each segment of the bus network, whereas, until USB 3.0, USB featured only one. This means that FireWire can have communication in both directions at the same time (full-duplex), whereas USB communication prior to 3.0 can only occur in one direction at any one time (half-duplex).
Open Host Controller Interface (OHCI) [1] is an open standard.. Die shot of a VIA VT6307 Integrated Host Controller used for IEEE 1394A communication. When applied to an IEEE 1394 (also known as FireWire; i.LINK or Lynx) card, OHCI means that the card supports a standard interface to the PC and can be used by the OHCI IEEE 1394 drivers that come with all modern operating systems.
USB 3.0 SuperSpeed (aka USB 3.1 Gen 1, USB 3.2 Gen 1x1) 5 Gbit/s: 500 MB/s: 2010 eSATA (SATA 600) 6 Gbit/s: 600 MB/s: 2011 CoaXPress full (up and down bidirectional link) 6.25 Gbit/s + 20.833 Mbit/s: 781 MB/s: 2009 External PCI Express 2.0 ×2: 8 Gbit/s: 1 GB/s: USB 3.1 SuperSpeed+ (aka USB 3.1 Gen 2, USB 3.2 Gen 1x2, USB 3.2 Gen 2x1, USB4 Gen ...
Additionally, USB ports are color-coded according to the specification and data transfer speed, e.g. USB 1.x and 2.x ports are usually white or black, and USB 3.0 ones are blue. SuperSpeed+ connectors are teal in color. [2] FireWire ports used with video equipment (among other devices) can be either 4-pin or 6-pin. The two extra conductors in ...
The written USB 3.0 specification was released by Intel and its partners in August 2008. The first USB 3.0 controller chips were sampled by NEC in May 2009, [4] and the first products using the USB 3.0 specification arrived in January 2010. [5] USB 3.0 connectors are generally backward compatible, but include new wiring and full-duplex operation.