IP Library › Granted Patent US 11,207,784
Granted Patent B2
US 11,207,784 · App. 16/311,929 · Granted Dec 28, 2021

Hand-held robot operating device combination comprising a basic-control position sensor

Inventor: Yevgen Kogan (Augsburg, DE)
Assignee: KUKA Deutschland GmbH
B25J13/02B25J13/088
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Quick Facts
Patent No.
US 11,207,784
App. No.
16/311,929
Granted
Dec 28, 2021
Kind
B2
Abstract

A hand-held robot operating device combination has: an autonomous safety-related basic control device that includes a housing, a safety-relevant switching means on the housing, and a communication device for connecting the autonomous safety-related basic control device for control purposes to a controller of a robot; an autonomous mobile terminal that includes a terminal controller and at least one terminal position sensor designed to sense positional data in respect of the autonomous mobile terminal in at least one of the degrees of freedom thereof; and a holder designed to mechanically connect the autonomous safety-related basic control device to the autonomous mobile terminal in a manually detachable combined arrangement so as to form the hand-held robot operating device combination; the autonomous safety-related basic control device includes at least one basic-control position sensor which is designed to sense positional data in respect of the autonomous safety-related basic control device in at least one degrees of freedom thereof.

Claims (49)

1. A hand-held robot operating device combination, having:

an autonomous safety-related basic-control apparatus having a housing, a safety-related switching means arranged on the housing and a communication apparatus for connecting the autonomous safety-related basic-control apparatus for control purposes to a robot controller of a robot,

an autonomous mobile terminal having a terminal controller and at least one terminal position sensor which is designed to capture positional information from the autonomous mobile terminal in at least one of its degrees of freedom, and

a holder which is designed to mechanically connect the autonomous safety-related basic-control apparatus to the autonomous mobile terminal in a manually detachable combined arrangement in order to form the hand-held robot operating device combination,

wherein:

the autonomous safety-related basic-control apparatus has at least one basic-control position sensor which is designed to capture positional information from the autonomous safety-related basic-control apparatus in at least one of its degrees of freedom; and

at least one from the group of the terminal controller of the autonomous mobile terminal, the autonomous safety-related basic-control apparatus, and the robot controller is designed to compare position information from the autonomous mobile terminal captured by the at least one terminal position sensor with the position information from the autonomous safety-related basic-control apparatus captured by the at least one basic-control position sensor and, when the position information from the autonomous mobile terminal matches the position information from the autonomous safety-related basic-control apparatus, to generate a signal characterizing a mechanical connection state of the autonomous mobile terminal and the autonomous safety-related basic-control apparatus.

2. The hand-held robot operating device combination as claimed in claim 1 , wherein:

in a case of an existing mechanical connection state of the autonomous mobile terminal and the autonomous safety-related basic-control apparatus established by the signal, the robot controller is configured to permit a communication for robot control purposes between the autonomous safety-related basic-control apparatus and the autonomous mobile terminal, and, in the case of a lacking mechanical connection state of the autonomous mobile terminal and the autonomous safety-related basic-control apparatus established by the signal, the robot controller is configured to prevent the communication for robot control purposes between the autonomous safety-related basic-control apparatus and the autonomous mobile terminal.

3. The hand-held robot operating device combination as claimed in claim 1 , wherein:

the at least one terminal position sensor is a terminal acceleration sensor which is designed to capture acceleration values from the autonomous mobile terminal in at least one of its degrees of freedom;

the at least one basic-control position sensor is a basic-control acceleration sensor which is designed to measure acceleration values of the autonomous safety-related basic-control apparatus in at least one of its degrees of freedom;

the terminal controller of the autonomous mobile terminal is designed to forward the acceleration values measured by the terminal acceleration sensor to the autonomous safety-related basic-control apparatus;

the autonomous safety-related basic-control apparatus is designed to record the acceleration values measured by the at least one basic-control acceleration sensor; and

the autonomous safety-related basic-control apparatus is configured to compare the acceleration values measured by the terminal acceleration sensor with the acceleration values measured by the at least one basic-control acceleration sensor and, when the acceleration values measured by the terminal acceleration sensor match the acceleration values measured by the at least one basic-control acceleration sensor, to generate a signal characterizing the mechanical connection state of the autonomous mobile terminal and the autonomous safety-related basic-control apparatus.

4. The hand-held robot operating device combination as claimed in claim 1 , wherein:

the at least one terminal position sensor is a terminal acceleration sensor which is designed to capture acceleration values from the autonomous mobile terminal in at least one of its degrees of freedom;

the at least one basic-control position sensor is a basic-control acceleration sensor which is designed to measure acceleration values of the autonomous safety-related basic-control apparatus in at least one of its degrees of freedom;

the terminal controller of the autonomous mobile terminal is designed to compare the acceleration values measured by the terminal acceleration sensor with the acceleration values of the autonomous safety-related basic-control apparatus measured by the basic-control acceleration sensor and, when the acceleration values of the autonomous mobile terminal match the acceleration values of the autonomous safety-related basic-control apparatus, to generate a signal characterizing the mechanical connection state of the autonomous mobile terminal and autonomous safety-related basic-control apparatus.

5. The hand-held robot operating device combination as claimed in claim 1 , wherein:

in a case of an existing mechanical connection state of the autonomous mobile terminal and the autonomous safety-related basic-control apparatus established by the signal, the autonomous safety-related basic-control apparatus is configured to permit a communication for robot control purposes between the autonomous safety-related basic-control apparatus and the autonomous mobile terminal and, in the case of a lacking mechanical connection state of the autonomous mobile terminal and the autonomous safety-related basic-control apparatus established by the signal, and the autonomous safety-related basic-control apparatus is configured to prevent the communication for robot control purposes between the autonomous safety-related basic-control apparatus and the autonomous mobile terminal.

6. The hand-held robot operating device combination as claimed in claim 1 , wherein:

at least one of the robot controller, the terminal controller or the autonomous safety-related basic-control apparatus is configured to calibrate the at least one basic-control position sensor in relation to the at least one terminal position sensor.

7. The hand-held robot operating device combination as claimed in claim 1 , wherein:

at least one of the robot controller, the terminal controller or the autonomous safety-related basic-control apparatus is configured to calibrate the at least one terminal position sensor in relation to the at least one basic-control position sensor.

8. The hand-held robot operating device combination as claimed in claim 1 , wherein:

the at least one terminal position sensor forms part of an inertial measuring unit of the autonomous mobile terminal.

9. The hand-held robot operating device combination as claimed in claim 1 , wherein:

the at least one basic-control position sensor forms part of an inertial measuring unit of the autonomous safety-related basic-control apparatus.

10. The hand-held robot operating device combination as claimed in claim 1 , wherein:

the at least one basic-control position sensor is designed to capture the position information from the autonomous safety-related basic-control apparatus in at least one of its degrees of freedom which is the same degree of freedom in which terminal position sensor captures the position information from the autonomous mobile terminal.

11. The hand-held robot operating device combination as claimed in claim 1 , wherein:

the at least one terminal position sensor is a terminal magnetic field sensor which is designed to capture magnetic field information relating to the autonomous mobile terminal in at least one of its degrees of freedom, or the at least one basic-control position sensor is a basic-control magnetic field sensor which is designed to capture magnetic field information relating to the autonomous safety-related basic-control apparatus in at least one of its degrees of freedom.

12. The hand-held robot operating device combination as claimed in claim 1 , wherein:

the at least one terminal position sensor is a terminal optical sensor which is designed to capture image information recordable from the autonomous mobile terminal in at least one of its degrees of freedom, or the at least one basic-control position sensor is a basic-control optical sensor which is designed to capture image information recordable from the autonomous safety-related basic-control apparatus in at least one of its degrees of freedom.

13. A hand-held robot operating device combination, having:

an autonomous safety-related basic-control apparatus having a housing, a safety-related switching means arranged on the housing and a communication apparatus for connecting the autonomous safety-related basic-control apparatus for control purposes to a robot controller of a robot,

an autonomous mobile terminal having a terminal controller and at least one terminal position sensor which is designed to capture positional information from the autonomous mobile terminal in at least one of its degrees of freedom, and

a holder which is designed to mechanically connect the autonomous safety-related basic-control apparatus to the autonomous mobile terminal in a manually detachable combined arrangement in order to form the hand-held robot operating device combination,

wherein:

the autonomous safety-related basic-control apparatus has at least one basic-control position sensor which is designed to capture positional information from the autonomous safety-related basic-control apparatus in at least one of its degrees of freedom;

the at least one terminal position sensor is a terminal acceleration sensor which is designed to capture acceleration values of the autonomous mobile terminal from the autonomous mobile terminal in at least one of its degrees of freedom, and the at least one basic-control position sensor is a basic-control acceleration sensor which is designed to capture acceleration values of the autonomous safety-related basic-control apparatus in at least one of its degrees of freedom; and

at least one of the robot controller, the autonomous mobile terminal or the autonomous safety-related basic-control apparatus is configured to compare the acceleration values of the autonomous mobile terminal with the acceleration values of the autonomous safety-related basic-control apparatus and to generate a signal characterizing a mechanical connection state of the autonomous mobile terminal and the autonomous safety-related basic-control apparatus when the acceleration values of the autonomous mobile terminal measured by the terminal acceleration sensor matches with the acceleration values of the autonomous safety-related basic-control apparatus measured by the basic-control acceleration sensor.

14. The hand-held robot operating device combination as claimed in claim 13 , wherein:

the at least one basic-control position sensor forms part of an inertial measuring unit of the autonomous safety-related basic-control apparatus.

15. A method for operating the hand-held robot operating device combination as claimed in claim 13 , the method comprising:

said at least one of the terminal acceleration sensor and the at least one basic-control acceleration sensor respectively measuring said acceleration of said at least one of the autonomous mobile terminal or the autonomous safety-related basic-control apparatus;

said at least one of the robot controller, the autonomous mobile terminal or the autonomous safety-related basic-control apparatus comparing said acceleration values of the autonomous mobile terminal with said acceleration values of the autonomous safety-related basic-control apparatus; and

when the acceleration values of the autonomous mobile terminal measured by the at least one terminal acceleration sensor matches with the acceleration values of the autonomous safety-related basic-control apparatus measured by the at least one basic-control acceleration sensor, said at least one of the robot controller, the autonomous mobile terminal or the autonomous safety-related basic-control apparatus generating said signal characterizing the mechanical connection state of the autonomous mobile terminal and the autonomous safety-related basic-control apparatus.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 20, 2018
From: KOGAN, YEVGEN
To: KUKA DEUTSCHLAND GMBH
Reel/Frame 047831/0168 →
Priority Claims (1)
DE 10 2016 211 244.9 · Jun 23, 2016 · national
Continuity (1)
Related Publication 20190210228A1 · Jul 11, 2019