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  2. Comparison of open-source wireless drivers - Wikipedia

    en.wikipedia.org/wiki/Comparison_of_open-source...

    Partly based on the ath9k driver for Linux: Yes atu: Atmel AT76C503/ AT76C503A/ AT76C505/ AT76C505A Integrated Yes [49] BSD: Reverse engineering Yes atw: ADMtek ADM8211 Integrated — BSD: Documentation based Yes awi: BayStack 650 2.7 to 4.3 — BSD: Yes bwfm: Broadcom and Cypress IEEE 802.11a/ac/ax/b/g/n wireless network device 6.3+ BSD ...

  3. Wi-Fi 6 - Wikipedia

    en.wikipedia.org/wiki/Wi-Fi_6

    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 ]

  4. Monitor mode - Wikipedia

    en.wikipedia.org/wiki/Monitor_mode

    NDIS 6 supports exposing 802.11 frames to the upper protocol levels, [2] while previous versions only exposed fake Ethernet frames translated from the 802.11 frames. Monitor mode support in NDIS 6 is an optional feature and may or may not be implemented in the client adapter driver.

  5. Qualcomm Atheros - Wikipedia

    en.wikipedia.org/wiki/Qualcomm_Atheros

    The article comparison of open-source wireless drivers lists free and open-source software drivers available for all Qualcomm Atheros IEEE 802.11 chipsets. The most recent generations of Atheros wireless cards (802.11ac and 802.11ax) require non-free binary blob firmware to work, [ 39 ] [ 40 ] whereas earlier generations generally do not ...

  6. Wi-Fi 7 - Wikipedia

    en.wikipedia.org/wiki/Wi-Fi_7

    IEEE 802.11be, dubbed Extremely High Throughput (EHT), is a wireless networking standard in the IEEE 802.11 set of protocols [9] [10] which is designated Wi-Fi 7 by the Wi-Fi Alliance. [ 11 ] [ 12 ] [ 13 ] It has built upon 802.11ax , focusing on WLAN indoor and outdoor operation with stationary and pedestrian speeds in the 2.4, 5, and 6 GHz ...

  7. List of WLAN channels - Wikipedia

    en.wikipedia.org/wiki/List_of_WLAN_channels

    Wireless LAN (WLAN) channels are frequently accessed using IEEE 802.11 protocols. The 802.11 standard provides several radio frequency bands for use in Wi-Fi communications, each divided into a multitude of channels numbered at 5 MHz spacing (except in the 45/60 GHz band, where they are 0.54/1.08/2.16 GHz apart) between the centre frequency of the channel.