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IEEE 802.11n (aka Wi-Fi 4) 600 Mbit/s: 75 MB/s: 2009 IEEE 802.11ac (aka Wi-Fi 5) 6.8–6.93 Gbit/s: 850–866.25 MB/s: 2012 IEEE 802.11ad: 7.14–7.2 Gbit/s: 892.5–900 MB/s: 2011 IEEE 802.11ax (aka Wi-Fi 6/6E) 11 Gbit/s: 1.375 GB/s: 2019 IEEE 802.11be (aka Wi-Fi 7 or Extremely High Throughput (EHT)) 46.12 Gbit/s expected: 5.765 GB/s expected ...
Wi-Fi 6, or IEEE 802.11ax, is an IEEE standard from the Wi-Fi Alliance, for wireless networks . It operates in the 2.4 GHz and 5 GHz bands, [ 9 ] with an extended version, Wi-Fi 6E , that adds the 6 GHz band. [ 10 ]
Multicast File Transfer Protocol: MFTP: C. Kenneth Miller et al. 1995 — IETF Draft (1998) [18] NACK-Oriented Reliable Multicast Transport Protocol: NORM: RFC 5740: Odette File Transfer Protocol: OFTP: Organisation for Data Exchange by Tele Transmission in Europe: 1986: X.25: RFC 6726 [19] Odette File Transfer Protocol 2: OFTP2
IEEE 802.11ax is the successor to 802.11ac, marketed as Wi-Fi 6 (2.4 GHz and 5 GHz) [74] and Wi-Fi 6E (6 GHz) [75] by the Wi-Fi Alliance. It is also known as High Efficiency Wi-Fi , for the overall improvements to Wi-Fi 6 clients in dense environments . [ 76 ]
The name Wi-Fi is not short-form for 'Wireless Fidelity', [34] although the Wi-Fi Alliance did use the advertising slogan "The Standard for Wireless Fidelity" for a short time after the brand name was created, [31] [33] [35] and the Wi-Fi Alliance was also called the "Wireless Fidelity Alliance Inc." in some publications. [36]
Few systems transfer files and data by simply copying the contents of the file into the 'Data' field of HDLC or PPP frames — another protocol layer is used to format the data inside the 'Data' field of the HDLC or PPP frame. The most commonly used such protocol is Internet Protocol (IP), defined by RFC 791. This imposes its own overheads.