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▲ Animats 12 hours ago

It works best on problems which are strongly Cartesian. The chopsticks demo shows the limitations of this. The gripper can pick up two chopsticks, but it can't do much with them, because it can't rotate them to bring them together at the points. But it seems to be good for lab equipment with simple geometry.

Also, where are the motors? Inside the gripper, or at the other end of cables?

▲octoberfranklin 11 hours ago | parent [-]

Rotational screw-on caps are not Cartesian, and this excels at dealing with them.

I'm very impressed with this.

Re: chopsticks, oh but it can! It can roll one chopstick between one pair of grippers. Do that while holding the tip against a fixed object and you'll tilt the chopstick. Once you get the tips touching, it can use them.

The motors are inside those chonky things just outside the fingertips. I'm guessing hobby servos, which are tiny cheap and strong.

▲varjag 10 hours ago | parent [-]

Still there are fundamental limitations. Holding a bowl full of liquid, a heavy jug with a rounded handle etc.

▲octoberfranklin 8 hours ago | parent [-]

What would be the problem with a bowl of liquid?

The balancing there comes from the wrist joint, not the fingers. Obviously this device is supposed to be mounted on a wrist joint that can rotate (pitch+yaw). Wrist joints are pretty well-understood these days.

Rounded handle I don't see the problem unless the hole is too small for one of the fingers.

▲varjag 8 hours ago | parent [-]

Holding a rounded handle with a rectangular profile slider is inherently unstable as it's extremely sensitive to the pinch point.

And the bowl has a radius that make orthogonal grip impractical.

▲octoberfranklin 2 hours ago | parent [-]

But it has two pinch points. There are two separate grippers. Look at how it uses scissors.

If the radius of the bowl is that big it's too big for anything one-handed (with a reasonable size hand). So use two hands, like people do.