| ▲ | everforward 20 hours ago | |||||||||||||||||||||||||||||||
Robo vacuum charging is almost inherently safe. They probably charge at something like 12V/2A. Voltage too low to penetrate skin, wattage too low to cause serious injury unless you’re really trying. You can kind of just leave them exposed and live. None of that applies to a 220V, 50A (or whatever amperage) charging. That can absolutely kill somebody; jet fuel may not melt steel beams, but 11,000W sure will. You’d end up needing some kind of recess probably, and then getting cars to connect to it like planes refueling mid-flight is a nightmare. You could try some sort of USB-C like signaling before power is sent, but people are never going to enjoy “exposed 220V contacts that may or may not be live depending on if things malfunctioned”. | ||||||||||||||||||||||||||||||||
| ▲ | dpark 20 hours ago | parent [-] | |||||||||||||||||||||||||||||||
The point wasn’t that my robot vacuum is handling large current but that “moving device connects to power” is a solved problem. A car capable of driving itself onto this pad could as easily drive itself to a spot to plug in. Extendo-arm from the car could easily slot into an outlet in the floor. Or vice versa. Or a wall or pole. Planes refueling mid flight is hardly an apt metaphor given the charging station isn’t moving at all and the car can move as slowly as needed. | ||||||||||||||||||||||||||||||||
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