IP Library › Granted Patent US 11,618,161
Granted Patent B2
US 11,618,161 · App. 16/898,882 · Granted Apr 4, 2023

Robot hand controller, robot system, and robot hand control method

Inventor: Mizuki Tago (Yamanashi, JP)
Assignee: FANUC CORPORATION
B25J9/1612B25J9/1697B25J13/08B25J15/0023G06T1/0014G06V20/10G06V20/68
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Quick Facts
Patent No.
US 11,618,161
App. No.
16/898,882
Granted
Apr 4, 2023
Kind
B2
Abstract

A robot hand controller includes an air supply unit configured to supply air into fingers of a robot hand and configured to discharge air in the fingers, and a controller configured to control the air supply unit, where the air supply unit includes two or more air passages respectively connected to the different fingers, the air passages capable of supplying the air into the fingers and discharging the air in the fingers independently from each other, and the controller controls supply and discharge of the air through each of the two or more air passages in response to a shape of the workpiece and an object in a vicinity of a transport destination of the workpiece.

Claims (23)

1. A robot hand controller of a robot hand having a plurality of hollow fingers for holding a workpiece, wherein the plurality of fingers comprises at least a first pair of fingers deformed to an opened state and a closed state in response to an air pressure inside of the first pair of fingers and a second pair of fingers deformed to an opened state and a closed state in response to an air pressure inside of the second pair of fingers, the robot hand controller comprising:

an air supply unit configured to supply air into the plurality of fingers, and configured to discharge air in the plurality of fingers; and

a controller configured to control the air supply unit, wherein

the air supply unit includes at least a first air passages and a second air passage, the first air passage configured to make adjustment of the air pressure in the inside of the first pair of fingers and the second air passage configured to make adjustment of the air pressure in the inside of the second pair of fingers, and

the controller is configured to control the air supply unit to be in a first closed pattern in which the first pair of fingers and the second pair of fingers are made to be in the closed state by the adjustments by the first air passage and the second air passage, and configured to control the air supply unit to be in a second closed pattern in which only the first pair of fingers is made to be in the closed state by the adjustment by the first air passage.

2. The robot hand controller according to claim 1 , wherein the controller is configured to control the air supply unit to be in a third closed pattern in which only the second pair of fingers is made to be in the closed state by the adjustment by the second air passage.

3. The robot hand controller according to claim 1 , wherein the controller adjusts an opening amount of the fingers in response to an external dimension of the workpiece by controlling a pressure of the air supplied to the fingers through the respective air passages.

4. The robot hand controller according to claim 1 , further comprising:

a storage that stores holding data in which a plurality of kinds of shapes of the workpiece are associated with a plurality of pieces of closing pattern data each of which indicates one of opening and closing for the first pair of fingers and the second pair of fingers, wherein

the controller controls the adjustments of the air pressures by the first air passage and the second air passage based on the plurality of pieces of closing pattern data.

5. The robot hand controller according to claim 4 , further comprising:

an image processor configured to receive an image of the workpiece from a camera, and to measure a contour of the workpiece, wherein the controller creates the closing pattern data based on the contour of the workpiece measured by the image processor, and causes the storage to store holding data including the created closing pattern data and the contour of the workpiece measured by the image processor.

6. A robot system comprising:

a robot;

a robot hand connected to the robot, the robot hand having a plurality of hollow fingers, wherein the plurality of fingers comprises at least a first pair of fingers deformed to an opened state and a closed state in response to an air pressure inside of the first pair of fingers and a second pair of fingers deformed to an opened state and a closed state in response to an air pressure inside of the second pair of fingers; and

a robot hand controller comprising an air supply unit configured to supply air into the plurality of fingers, and configured to discharge air in the plurality of fingers; and

a controller configured to control the air supply unit, wherein

the air supply unit includes at least a first air passages and a second air passage, the first air passage configured to make adjustment of the air pressure in the inside of the first pair of fingers and the second air passage configured to make adjustment of the air pressure in the inside of the second pair of fingers, and

the controller is configured to controls the air supply unit to be in a first closed pattern in which the first pair of fingers and the second pair of fingers are made to be in the closed state by the adjustments by the first air passage and the second air passage, and configured to control the air supply unit to be in a second closed pattern in which only the first pair of fingers is made to be in the closed state by the adjustment by the first air passage.

7. A method of controlling a robot hand having a plurality of hollow fingers for holding a workpiece, wherein the plurality of fingers comprises at least a first pair of fingers deformed to an opened state and a closed state in response to an air pressure in inside of the first pair of fingers and a second pair of fingers deformed to an opened state and a closed state in response to an air pressure inside of the second pair of fingers, wherein the robot hand includes at least a first air passage and a second air passage, the first air passage configured to make adjustment of the air pressure in the inside of the first pair of fingers and the second air passage configured to make adjustment of the air pressure in the inside of the second pair of fingers,

the method comprising:

holding the workpiece in a first closed pattern that makes the first pair of fingers and the second pair of fingers be in the closed state by the adjustments by the first air passage and the second air passage; and

holding the workpiece in a second closed pattern that makes only the first pair of fingers be in the closed state by the adjustment by the first air passage.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 11, 2020
From: TAGO, MIZUKI
To: FANUC CORPORATION
Reel/Frame 052909/0747 →
Priority Claims (1)
JP JP2019-134980 · Jul 23, 2019 · national
Continuity (1)
Related Publication 20210023701A1 · Jan 28, 2021
Cited By (1)
US 12,444,263