It's stunning. The video speaks for itself. Please scale this up, like way up back of a truckbed size. This would be delightful to see spinning and running IRL.
Then get a grant and make one as wide as a city street
nowadays when people don't want to go the rotating led bar way, which requires very high density led strips (hundreds of ~200-400 mil smd leds) and the accordingly complex control circuitry (basically an FPGA per bar + high speed bus, etc), they do nipkow disk but with individual leds instead of holes. this way you can get away with tens of leds while still having a reasonable sized picture and not that much bandwidth to drive it.
edit: another, less sophisticated take is for example
Unfortunately the video link points to https://example.com/docs
https://youtu.be/41b8fw3_wP8
From git history on the readme.md
Also, the second picture is a video link with the correct URL.
It's stunning. The video speaks for itself. Please scale this up, like way up back of a truckbed size. This would be delightful to see spinning and running IRL.
Then get a grant and make one as wide as a city street
Okay, that is genuinely amazing.
Love it, thank you for sharing and for being inspiring :-)
I can see this being applied to hubcaps in the future.
Absolutely fantastic!
The video URL doesn't seem to be correct, through. ;)
> Avoid use in operations.
Oops
about the same idea as nipkow disk
nowadays when people don't want to go the rotating led bar way, which requires very high density led strips (hundreds of ~200-400 mil smd leds) and the accordingly complex control circuitry (basically an FPGA per bar + high speed bus, etc), they do nipkow disk but with individual leds instead of holes. this way you can get away with tens of leds while still having a reasonable sized picture and not that much bandwidth to drive it.
edit: another, less sophisticated take is for example
https://hackaday.io/project/191947-rotating-led-display/deta...