DavisB
New experiment, with through-slot sensors this time:
Design works, but have to integrate it with mechanics!
BOM:
- 74HC165, parallel in shift registers 8cent x2 = 16cents
- 1% 1206 resistors x32 = 8.62cents
- iter8105 (Everlight Electronics), 11.5cents a piece x16 = 184cents (or alternative "noname" source in the exact same dimensions, 6.84cents x16 = 109.44cents)
- 0805 MultiLayerCeramic capacitor, 2x100nf+10uf, 1.6cents
- single sided copper FR4, for the area, roughly 40cents
- pin header on both sides would be 2.5cent
Total cost for one board: 2.54eur (x11 = 27.8eur for whole piano) or 1.78eur (x11 = 19.60eur for whole piano) with 'noname' brand sensors (which i'm almost certain don't matter at all in this case)
There are extra cons as these are through hole components and they are quite big.
Smaller slot-through sensors are available in SMT packages, but those are significantly more expensive, and I suspect they might be harder to integrate with mechanics due to their size and small gap width and similar.
itr8307 SMT sensors are hard to beat price wise as those go down to 5-6cents a piece in relatively small volumes and one sensor is sufficient per key (which adds up to just 5.28eur in sensors for the whole piano)
This design would take up either 11pins or 22pins (depending if you chain up the two shift registers or not) + load pin + clock pin. I like this design the most frankly at the moment for it's utmost simplicity.
I'll probably be way less enthusiastic after trying to integrate them with the mechanics, but this is an approach i have to at least examine.











