Really good whitepaper on WiFi 6 (802.11ax): https://www.cisco.com/c/dam/en/us/products/collateral/wirele... Also: http://www.ni.com/white-paper/53150/en/ Main differences with 802.11ac: - denser subcarriers (or "tones") spacing; they are spaced by 78.125 kHz instead of 312.5 kHz, for example a 80 MHz channel now allows 980 data subcarriers, up from 234. That's a 4.19× improvement (4× higher density doesn't translate…
Due to the increased efficiency, the speed increase is supposed to be much higher. At CES they showed up to 11Gbits: https://www.zdnet.com/article/d-link-asus-tout-802-11ax-wi-f...
D-Link can claim "11 Gbit/s" because:
- first channel at 2.4 GHz is 40 MHz wide (468 data subcarriers) where 802.11ax can operate at 286.8 Mbit/s, multiplied by 4 streams = 1147 Mbit/s
- second channel at 5 GHz is 160 MHz wide (1960 data subcarriers) where 802.11ax can operate at 1201.0 Mbit/s, multiplied by 4 streams = 4804 Mbit/s
- third channel also provides 4804 Mbit/s
1147 + 4804 + 4804 = 10755 Mbit/s which D-Link's marketing team rounds to "11 Gbit/s." It goes without saying that a typical client WiFi device (phone, laptop) will never reach 11 Gbit/s. For starters it will only use 1 of the 3 channels (4804 Mbit/s maximum) and most devices are 2×2 thus capable of 2 streams (2402 Mbit/s maximum.) Even if they are 3×3 you'd be lucky in real-world conditions to get about one and a half times or twice the bandwidth of one stream.