Super G (wireless networking)

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Short description: Proprietary Wi-Fi performance improvement technology

Super G is a proprietary method to increase the throughput of an IEEE 802.11g (Wi-Fi) wireless LAN.[1] Atheros uses frame-bursting, compression, and channel bonding technology to improve performance. The throughput transmission speed limit when using Super G is claimed to be up to 40 Mbit/s-60 Mbit/s at a 108 Mbit/s signaling rate, which is achieved through the bonding of two 54 Mbit/s 802.11g channels.

Vendors

Other vendors have marketed Super G products as 108G Technology, 108 Mbit/s 802.11g, Xpress technology and Xtreme G. Manufacturers that have licensed Super G technology from Atheros include Airlink 101, Clipsal, D-Link, Intelbras, LevelOne, Netgear, Nortel Networks, Planex, SMC, Sony, TRENDnet, SparkLAN, Toshiba and ZyXEL. In general[who?], Super G products from different vendors are all interoperable in Super G mode.[citation needed]

Interference

Non-standard channel bonding extensions to 802.11g such as Super G, have been criticized[according to whom?] for creating interference on all Wi-Fi channels, potentially causing issues with other wireless devices that use the band, such as neighboring wireless networks, cordless telephones, baby monitors, and Bluetooth devices.[citation needed] However, Atheros claims that in real-world scenarios with physical separation and walls, closely located networks will not experience any interference from a Super G network.[citation needed]

Alternatives

Atheros has also adapted this technology to their 802.11a/g chipsets, marketing it as Super AG.

Super G is one of several competing incompatible proprietary extension approaches that were developed to increase performance of 802.11g wireless devices, such as Xpress from Broadcom, MIMO-based extensions from Airgo Networks, and Nitro from Conexant.

See also

References

  1. Ellison, Craig (Feb 3, 2004). "Super G Doubles 802.11g Performance". PC Magazine. https://www.pcmag.com/article2/0,2817,1435720,00.asp. Retrieved 2 September 2017. 

External links