Standard wifi is phy limited to ~1600m unless you can increase ack response time limit, otherwise retransmissions will be sent by the sender while ack's are being transmitted by the receiver.
Then, per friis equation, with enough power and antenna gain (it's the antenna gain that really matters) the limit is only obstructions/terrain. Get yourself high enough (mountains, planes, satellites, moons, etc), or bounce of an opportune reflector (planes, moon, aurora, meteors, ionosphere, rain, hail, etc), and there is no real limit, besides how big of an antenna you're willing to build in orbit :P
or just make the throughput really really really REALLY slow and ice your receivers with liquid He.
Hams make a game of it: https://www.arrl.org/files/file/WA50-Standings/Distance-Reco...
Long range WiFi is a "solved" problem with 802.11ah with sub-Ghz carrier and can reach more than a km depending on bandwidth requirements
All that assuming tx power is within regulation, no enterprise grade antenna, and all with commercially available parts
I used a pair to link from my house to a nearby block of flats, around 9km LOS, and back to my friend's house (we didn't have LOS to each other) around 15km.
They worked well at full link speed, around 80Mbps. These were just bog standard off-the-shelf ones, although for space considerations I "mix'n'matched" the links using one with a 10dB dish at one end and the patch antenna at the other.
Here in the UK at least, you can use as high an EIRP as you like, so there's nothing to stop you taking a cheapy USB wifi or bluetooth dongle and 3D printing an adaptor to mount it on the boom of a cheap satellite dish.
And it should be open to public use. Not yet another carrier frequency they will charge us an arm and a leg to use, some of the cell phone connectivity charges are insane, hundreds of dollars for low bandwidth iot sims.
In HAM circles some people do use WiFi in an arguably legal manner by making the SSID their callsign and either making the network open or putting the password somewhere public. This is because you are not allowed to use public bands for encrypted communications (with a carveout for satellite control, for obvious reasons).
I'm unsure what ranges can be hit with that setup, but I know it can be far enough that LoS due to curvature of the earth becomes a factor.
I do think just getting a wireless P2P bridge is easier and smarter and why this hasn't seen more use.
And presumably also no SSL when browsing?
Part of why I never really understood the appeal to getting a ham license. Things like no encrypted communications really limits the utility.
Anything outside of talking to randoms on the open air, and you'll better served by the computer networking infrastructure where encryption is allowed, you can speak to anyone in the world anyway, and the medium (IE physical device) you're using is irrelevant.
And most of this isn't really done to communicate. For that, most ham amateurs would use cell-phones, Facebook or whatnot. It's done for the sake of doing it. Or, in other words, to have an excuse to tinker with technical things.
That you can actually communicate is often just a consequence, a by-product. And the "communication" e.g. in contests to seek rare countries is actually really, really bland and boring. Translated to english: "Here is Mike, Calling Reunion, calling Reunion, calling Reunion, Mike here" - "Here is Jaques, Renunion, answering to Mike. I can your you very bad" - "Mike here, to Jaque. I can your you quite nice. And thanks for the talks ... calling Mongolia, calling Mongolia, here is Mike, calling Mongolia ..." --- and it's on PSK31 or CW even shorter.
You see, the ACTUAL communication is boring. The kick is probably to be able to manage and adjust your transceiver, wires, antenna, technical skills to actually be able to connect to these countries.
Or to be able to program and use in-real-life a sound compression algorithm with machine-learning and to test that with alike people on e.g. HF, Meteoscatter, via Satellite (which all produce very different channel characteristics).
Or to produce your own 6-layer PCP with an FPGA that actually does nice SDR algorithms.
It's a means to self-gratification.
Most hams can enjoy the hobby without encryption. The limits discourage uses that endanger the hobby.
The actual mechanism preventing abuse is the requirement to broadcast a callsign in a way that casual observers can interpret it.
I don't see the point personally. I'm just aware of the arguments. The "best" use case I saw was some hunting and lake cabins extending coverage.
How so?
I will probably never be able to find the source, and my poor memory probably inflated the range like any good fish story.
These records aren't really usable in real-life, e.g. to view a movie. When it rains, or is foggy.
Just mounting a maneuvering 3 m dish to your laptop isn't everyones most desired leisure ...
This chatter about a successful 2005 Defcon shootout [0] indicates that a 125 mile link was able to pass traffic sufficiently reliably to be used for SSH, VNC, and other applications summarized as "etc" for several hours.
The one that somat appears to be thinking about was the year before and set up a ~55 mile link. The Wired article about it [1] doesn't say much about what data was shoved over the link, just that they "...shot a signal from one station to the second station with an encrypted message provided by the judges.", suggesting that at least some data transfer was required to consider the attempt valid.
> Just mounting a maneuvering 3 m dish to your laptop isn't everyones most desired leisure ...
That would have to be a very fancy dish to handle targeting a spot 1.5Km+ away while attached to a device that's being manhandled. I imagine it'd make much more sense to put the dish on a fixed mount and wire it up to the laptop, run wired ethernet from the AP to the laptop, or have a second radio in an AP to provide service to nearby clients.
[0] <https://groups.google.com/g/SOCALWUG/c/5T5wekafdv8>
[1] <https://defcon.org/html/links/dc_press/archives/12/wired_wif...>
Here in Czechia, there was also another unlicensed band, 10.5 GHz, that has more sensible regulation - instead of EIRP limit, there was PA limit (power before antenna). So one can do long-range links with large enough antennas and most long range links was later converted to these. Unfortunately as this is local unlicensed band, radios for that were orders of magnitude pricier than generic wifi.
Extreme contention when 250 people had 3 APs as their only connection and half were trying to play WoW at the same time.
Made some diy wifi antennas: waveguide, yagi, etc...
Back in the day used Radiomobile software to calculate the link budget between the receiver and the transmitter.
Just have a look at the European Hamnet network: https://hamnetdb.net/map.cgi - There are a lot of hill-to-hill connections with 60-100km range and plenty of SNR left. Even a few links around 150km.
In professional context these super long links need a very very precise link budget planing to get enough 'nines' in their reliability rating. One of the reasons why you are not seeing them too often.
It was TCP/IP data streaming down and commands going up.
Demi-automonous testing at some 2km range. Worked great...
XD
Long distance links with only a few bps or kbit/s are a solved problem (LoRa).
I wonder how far that can go
I think I have an ancient wireless phone on 900mhz and all my weather sensors are on 900mhz
https://www.digikey.com/en/articles/unlicensed-915-mhz-band-...
https://www.cnx-software.com/2026/01/13/halowlink-2-wi-fi-ha...
I've used it with some raspberry pis to create hi-fidelity walkie talkies it's quite pleasant.
It's surprisingly complex actually.