World's smallest, cheapest network switch developed by US high school robotics team — Murex Robotics makes the hardware fully open-source (www.tomshardware.com)
from lemmee_in@lemm.ee to technology@lemmy.world on 18 Jun 2024 00:07
https://lemm.ee/post/34876361

Designed for use in a remotely piloted underwater rover, the mrxSwitch v2.0 supplies five 100 Mbps Ethernet ports at a footprint of only 44.9mm by 42.2mm. Network switches of this form factor are typically reserved for highly embedded systems; the team prioritizes its use in remote-operated underwater vehicles (ROVs) or autonomous underwater vehicles (AUVs), but IoT devices and other consumer devices with space constraints may have use for network switches this small. The mrxSwitch v2.0 represents a 30% size reduction over its predecessor, along with a BOM cost reduction of 15%, even with its smart-looking custom PCB.

Most solutions for network switches of this form factor are priced at a premium due to the narrowness of the use case, with MATE-sponsored options running from $75 to $175 – hence the decision to engineer an original solution. The mrxSwitch v2.0 stands at a current BOM price of $7. While you might not see it used in our best network switches (at least not yet), the build is a serious triumph for the young team.

#technology

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trollblox_@programming.dev on 18 Jun 2024 01:26 next collapse

based

nandeEbisu@lemmy.world on 18 Jun 2024 03:02 next collapse

This is awesome, and done by some really talented kids who are clearly smart motivated and willing to put in the work to get this project out the door.

Now imagine if the resources to do this kind of work as well as the background education and things like food security and economic stability were given to kids outside of an exclusive private boarding school? We’d empower some of the most imaginative of us to accomplish so many more amazing things.

GoTeamBoobies@lemmy.world on 18 Jun 2024 06:14 next collapse

I thought having government funded research was the purpose of NASA and that was then open sourced.

nilloc@discuss.tchncs.de on 19 Jun 2024 12:32 collapse

That was before the right made up “public/private partnerships” to hide government handouts to Boeing, defense contractors, drug companies, and Monsanto (or whatever their new name is).

ieatpwns@lemmy.world on 18 Jun 2024 11:49 collapse

Then the poors will rise up, can’t have that. /s

Hugh_Jeggs@lemm.ee on 18 Jun 2024 06:33 next collapse

For the Americans reading - that’s 5,88×10-9  football fields

Edit 10^-9

flying_sheep@lemmy.ml on 18 Jun 2024 06:40 next collapse

Testing superscript syntax: 10^-9^

10^-9^
gravitas_deficiency@sh.itjust.works on 18 Jun 2024 14:04 collapse

~subscript~ also ^works^

~subscript~ also ^works^
uis@lemm.ee on 18 Jun 2024 14:48 next collapse

Ah, 5.88 nanofootball fields.

FiskFisk33@startrek.website on 19 Jun 2024 09:28 collapse

so at leat 4 burgers per bald eagle

Aceticon@lemmy.world on 18 Jun 2024 10:44 next collapse

The work is almost all done by integrated circuits, so what they did was basically supply the necessary crystal and caps to get the integrated circuits to work, add what looks like a voltage regulator to regulate supply and route the whole thing on what’s almost certainly a 4 layer board.

Also at the speeds we’re talking about we’re not yet in the domain of having to worry about stuff like the impedance of lines and the signals in absolutelly normal circuit board lines bouncing or getting distorted due to things like impedance mistmatch.

What’s impressive here is not the size of the thing (you would be surprised at how stupidly small even very complex functionality is nowadays - stuff like the Blackberry Raspberry Pi-Zero is only as big as it is because of making available so many pins to connect to not because of the actual hardware), it’s that this is pretty advanced electronics for high-schoolers even with good teachers, as figuring this stuff out generally involves a lot of datasheet reading unless you’re starting from somebody else’s design.

phx@lemmy.ca on 18 Jun 2024 13:38 next collapse

I assume you meant raspberry pi-zero and not blackberry?

Aceticon@lemmy.world on 18 Jun 2024 13:59 next collapse

Yeah.

“Blackberry” both felt wrong at the time and my brain kept telling me it was familiar hence it must be right.

Showing my years here ;)

phx@lemmy.ca on 19 Jun 2024 06:27 collapse

Yeah. I’ll admit I got a bit excited at the idea that Blackberry might consider entering the mini-computer market and make a pi-type device.

Excrubulent@slrpnk.net on 18 Jun 2024 14:01 collapse

Ah dang, I got excited for a sec. There is a Blackberry Pi project but it’s just a Raspberry Pi in the form factor of a Blackberry.

JigglySackles@lemmy.world on 19 Jun 2024 06:50 collapse

Yeah I was looking at it and was thinking the article writer is grossly misunderstanding the device. It looks like it’d be a fantastic item for their use case and it’s highly impressive that some high schoolers did that. But it’s not exactly a design that will take over for home and enterprise switching.

PsyDoctah9Jah@lemmy.world on 18 Jun 2024 14:08 next collapse

" High School students missing after the release of an open source product…" or something.

gazter@aussie.zone on 19 Jun 2024 21:49 collapse

At that size, for that speed, I wonder why wifi was discarded. Depends on the components connecting, I guess, but if each component is custom I imagine adding a small wifi chip to each could be smaller overall?

Freestylesno@lemmy.world on 20 Jun 2024 12:56 collapse

While it works Wifi isn’t great for control. You need a stable connection without jitter.