"A source has informed me that due to AT&T shutting down its 3G network by Feb 2022, Model S's without an LTE-capable modem will lose connectivity features unless connected to WiFi. HOWEVER, Tesla will offer retrofits for $200. Affected vehicles are pre June 2015."
"Tesla will be offering retrofits for these vehicles for a bargain price of only $200, even though the vehicles affected by this could be up to nine years old."
Source:https://twitter.com/SawyerMerritt/status/1415851250055323648
They're going to upgrade the modems to LTE for $200 each.
(Also don't have a 2014 Model S so doesn't impact me personally)
I have an Thinkpad T430s, that came with mPCIe 3G modem; for LTE, it was possible to find a replacement, but for 5G, I don't expect there will be any (any whitelists in firmware aside).
Or similarly, I have an openwrt router with mPCIe 802.11-ac wifi (Turris Omnia). It is not possible to replace them with -ax adapters, they all have m.2 interface.
With cars and other long-used goods I would expect the same problems.
Still, Tesla could have spent the software effort required to make it work with a few of the most common 3G/4G/(5G) modules from reputable manufacturers.
I'm not sure how you plan on taking apart the dashboard for less than $50 of labor, though.
Edit: I mean, hindsight is great when you're designing a new car, and Tesla did make it much easier to replace this card in newer models, but we're talking about old cars. 75 minutes of labor for an S, 90 for an X.
Of course I'm not saying that. Please re-read my post if necessary.
Edit: This is a design deficiency, is what I'm saying.
(Before anyone replies about $20 SDRs, those aren't even close to 4G/5G capable.)
I think the answer here is an internal USB modem or something. Easy to upgrade. Just up to the car manufacturer to commit to writing new drivers. (I assume that they don't want to do this, so are probably happy when technology changes out from under them. Everyone has to buy a new car!)
- Car stuff has to deal with a way wider temperature range than normal consumer stuff (-40 to +125 °C). That is the thing that makes silicon so expensive.
- Car stuff has to deal with vibrations and mechanical stress, meaning more expensive PCBs, less options for solder (remember the infamous NVIDIA solder issue of ~2010?) and connectors
- Car voltage regulation is a hot mess, at least for ICE vehicles - IIRC during engine start, voltages can drop to something like 6-ish volts and after that (or during battery disconnects/other load dumps) into 120-ish volts, and the voltage has an awful lot of ripple because usual generators are AC that's driven through a diode rectifier, with the battery acting as stabilizer.
- Most stuff in cars requires hours of work to replace it - Tesla were to my knowledge the first ones who did software updates outside of shop visits at all.
https://electronics.stackexchange.com/questions/301826/how-t...
The FCC defines SDR here extremely broadly, any radio which "frequency range, modulation type or maximum output power (either radiated or conducted)" can be changed.
This describes a substantial portion of radios - including many if not most WiFi access points. They are legal and many US companies design, manufacture, and/or sell these types of radios (I work for one of them).
“ The rules require any manufacturer certifying a device under the new process to take steps to prevent “unauthorized” changes to the software on the device that might alter its radio frequency and power parameters in a way that takes it out of compliance with the regulations known as FCC Part 15 regulations.”
Test equipment is exempt because it is not licensed as an intentional emitter under part 15.