Looks like it. A motor on a motor. One to control vector direction and another to control magnitude/speed.So they are all sloped little cylinders that can rotate clockwise or counter-clockwise, the sensor detects where your feet are and what direction you are facing then adjusts the rotation of the ones under your feet to shuffle you in the opposite direction. Very cool.
Looks like it. A motor on a motor. One to control vector direction and another to control speed.
I'm not getting it. How do you control the direction like that? From what I can see the slope direction is changed. So with one motor they have directional control and speed with the other motor rotation. I drew a crappy diagram below. The contact point is always the top of the slope, the speed is controlled with rotation A shown in blue. At the moment if you spin A the vector direction is along the x axis shown in red. You rotate motor B and you can control the vector direction. If i've misunderstood it and it doesn't work like this then I should probably patent this idea.Nah they all just rotate, but due to the sloped top, they rotate the ones on either side of your feet in opposite rotations to "push" your feet forward or backwards.
The vectors dont make sense to me like this if the slope direction isn't changing. They would only be able to provide force backwards and forwards in one direction. It's probably going over my head.you control the angle by just adjusting the rotation speed, say the ones on the left of your feet might rotate counter clockwise a bit quicker than the ones on the right of your feet are rotating clockwise, so you then don't go "straight" ahead, or only rotating a subset of the ones the feet are actually making contact with. My guess is it's very simple hardware with complex software and sensors, else it'd be unmaintainable.
patents.justia.com
Like a black Jeremy Clarkson, they even dress the same!That dude looks like someone who beats up his assistant for serving luke warm dinners.
Just pull don't your pants like normal ..Very cool, but how do you get off?
Once they can get the rollers smaller and faster you will see something really exciting.