Earlier quoted context omitted.
GP called the term ancient, not the band itself, and I find it hard to disagree with that. Calling something “high”, “fast”, or “new” is rarely a naming decision that’ll stand the test of time, but given that there were already LF and MF below it, it did make sense at the time. Who could have predicted we’d go up all the way into visible light with our RF communications? The only thing on a lower frequency used daily…
Millimeter wavelength RF was already studied in the 19th century... The RF communication band you're talking about is smack dab in a band already defined in the original 1937 document. Honestly the naming scheme makes sense to me. The spectrum is divided into 12 bands of equal (log) size, up to a frequency where we don't know whether such waves will ever be reliably generated at room temperature without breaking the…
Digital Telecommunication in HF band - WWWAN - World-Wide Wireless Area Network
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Re: Digital Telecommunication in HF band - WWWAN - World-Wide Wireless Area Network
#22"Multimedia"? Over HF where one "cell" (using the WWAN nomenclature) may have several tens kbps of total (uplink and/or downlink) throughput at most? (see Shannon-Hartley theorem, which is distinct from Shannon-Nyquist sampling theorem) But for emails and the rest of proposed use, sure. Also, OsmoDevCon is iirc invite-only, making linking to its schedule on a public forum mostly pointless (visit #osmocom on Libera fo…
Re: Digital Telecommunication in HF band - WWWAN - World-Wide Wireless Area Network
#23Earlier quoted context omitted.
Millimeter wavelength RF was already studied in the 19th century... The RF communication band you're talking about is smack dab in a band already defined in the original 1937 document. Honestly the naming scheme makes sense to me. The spectrum is divided into 12 bands of equal (log) size, up to a frequency where we don't know whether such waves will ever be reliably generated at room temperature without breaking the…
I'm not sure I understand. In 1937 we already knew that light and RF are both part of the EM spectrum so I don't know what you mean by generating waves that break the laws of physics (we have and had absolutely no issues generating waves with 100s of THz frequency). As a physicist coming from the optics I find naming in RF often quite puzzling, e.g. why do we call it microwave, while wavelengths are all longer that m…
Re: Digital Telecommunication in HF band - WWWAN - World-Wide Wireless Area Network
#24Earlier quoted context omitted.
Millimeter wavelength RF was already studied in the 19th century... The RF communication band you're talking about is smack dab in a band already defined in the original 1937 document. Honestly the naming scheme makes sense to me. The spectrum is divided into 12 bands of equal (log) size, up to a frequency where we don't know whether such waves will ever be reliably generated at room temperature without breaking the…
I'm not sure I understand. In 1937 we already knew that light and RF are both part of the EM spectrum so I don't know what you mean by generating waves that break the laws of physics (we have and had absolutely no issues generating waves with 100s of THz frequency). As a physicist coming from the optics I find naming in RF often quite puzzling, e.g. why do we call it microwave, while wavelengths are all longer that m…
In a way suitable for even medium range RF communication? No. That's what I mean. The required power would be insanely high. So high that it's not achievable without some breakthrough. I didn't literally mean "break the laws of physics", because that's something we obviously cannot do.
Re: Digital Telecommunication in HF band - WWWAN - World-Wide Wireless Area Network
#25How is this different from what the ham radio guys have? They were doing ip over ham in the 90s, i think, which is more performant than uucp for sure.
I'm a bit annoyed by the closed and Windows-only nature of VARA (see also discussion https://old.reddit.com/r/amateurradio/comments/12d2s3e/would...), but well, it works well as far as I've heard.
Re: Digital Telecommunication in HF band - WWWAN - World-Wide Wireless Area Network
#26What HF means in this context? A few GHz? Also, for long range I thought the longer the wave length is, the better.
Re: Digital Telecommunication in HF band - WWWAN - World-Wide Wireless Area Network
#27Earlier quoted context omitted.
HF is 3 MHz to 30 MHz. Yes it does not make much sense, the term is ancient.
Ancient? The HF band is still very much in use... Modern developments have not changed the fundamental properties of RF propagation. UHF ("a few GHz") can only be propagated in line of sight reliably. HF can literally travel around the world.
Re: Digital Telecommunication in HF band - WWWAN - World-Wide Wireless Area Network
#28Earlier quoted context omitted.
If you consider SSB voice one medium, and CW morse code another, HF has been multimedia for more than a century :)
There's also SSTV. Surely images, voice and text counts as multi-media?
But what is it actually used for today? Or is it rather one of those we do, because we can?
Re: Digital Telecommunication in HF band - WWWAN - World-Wide Wireless Area Network
#29Earlier quoted context omitted.
I'm not sure I understand. In 1937 we already knew that light and RF are both part of the EM spectrum so I don't know what you mean by generating waves that break the laws of physics (we have and had absolutely no issues generating waves with 100s of THz frequency). As a physicist coming from the optics I find naming in RF often quite puzzling, e.g. why do we call it microwave, while wavelengths are all longer that m…
> we have and had absolutely no issues generating waves with 100s of THz frequency In a way suitable for even medium range RF communication? No. That's what I mean. The required power would be insanely high. So high that it's not achievable without some breakthrough. I didn't literally mean "break the laws of physics", because that's something we obviously cannot do.