IP Library Granted Patent US 11,999,056
Granted Patent B2
US 11,999,056 · App. 17/609,598 · Granted Jun 4, 2024

Brake assembly for a drive device in a robot

Inventors: Tim Rokahr (Munich, DE); Andreas Spenninger (Karlsfeld, DE); Carles Calafell Garcia (Munich, DE)
Assignee: FRANKA EMIKA GMBH
B25J19/0004F16D2125/38
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Quick Facts
Patent No.
US 11,999,056
App. No.
17/609,598
Granted
Jun 4, 2024
Kind
B2
Abstract

A braking device for a drive device of a joint between two links of a robot arm including a brake activating device and a locking element, wherein the brake activating device is designed to bring the locking element into engagement with a rotor of the drive device as required in order to halt rotation of the rotor, the locking element being designed as a bolt and the braking element being designed as a braking star with webs which have a defined impact surface for the bolt.

Claims (21)

1. A braking device for a drive device of a joint between two links of a robot arm comprising a brake activation device and a locking element, wherein the brake activation device is designed to bring the locking element into engagement with a braking element when required, which is connected to a rotor of the drive device in a rotationally fixed manner in order to stop a rotation of the rotor, the locking element being designed as a bolt and the braking element being designed as a braking star which comprises at least one web projecting radially from an axis of the rotor,

characterized in that

the web comprises an impact surface which interacts with the bolt when engaged, and which is curved inwards with respect to a direction of rotation of the braking star and comprises a radius (RA) which corresponds at least to a radius (DB/2) of the bolt, and in that the impact surface extends in the radial direction beyond a distance (LB) between the axis of the rotor and an axis of the bolt.

2. The braking device according to claim 1 , in which the impact surface expands away from the web in a circumferential direction for guiding the bolt.

3. The braking device according to claim 2 , in which the web comprises at least one recess located radially inwards.

4. The braking device according to claim 1 , in which the web comprises at least one recess located radially inwards.

5. The braking device according to claim 4 , in which two uniform holes are provided which are equally spaced from a central axis (S) of the web.

6. The braking device according to claim 5 , in which a line (L) extending radially between the axis of the rotor and a center of a hole intersects the impact surface at a point (P), the radius (RP) associated with the point (P) being smaller than the distance (LB) between the axis of the rotor and the axis of the bolt.

7. The braking device according to claim 6 , in which a line (L) extending radially between the axis of the rotor and a center of a hole intersects the impact surface at a point (P) where greatest impact forces occur when the bolt is engaged.

8. The braking device according to claim 6 , in which a radius (RL) formed by the distance of a center of the hole to the axis of the rotor is at least equal to or smaller than a radius (RB) formed by the distance (LB) of the axis of the bolt to the axis of the rotor minus the bolt radius (DB/2).

9. The braking device according to claim 6 , in which a hole diameter (DL) is at least equal to or smaller than the bolt radius (DB/2).

10. The braking device according to claim 5 , in which a line (L) extending radially between the axis of the rotor and a center of a hole intersects the impact surface at a point (P) where the greatest impact forces occur when the bolt is engaged.

11. The braking device according to claim 10 , in which a radius (RL) formed by the distance of a center of the hole to the axis of the rotor is at least equal to or smaller than a radius (RB) formed by the distance (LB) of the axis of the bolt to the axis of the rotor minus the bolt radius (DB/2).

12. The braking device according to claim 10 , in which a hole diameter (DL) is at least equal to or smaller than the bolt radius (DB/2).

13. The braking device according to claim 5 , in which a radius (RL) formed by the distance of a center of the hole to the axis of the rotor is at least equal to or smaller than a radius (RB) formed by the distance (LB) of the axis of the bolt to the axis of the rotor minus the bolt radius (DB/2).

14. The braking device according to claim 13 , in which a hole diameter (DL) is at least equal to or smaller than the bolt radius (DB/2).

15. The braking device according to claim 5 , in which a hole diameter (DL) is at least equal to or smaller than the bolt radius (DB/2).

16. The braking device according to claim 1 , in which N webs being arranged equidistantly to each other in a circumferential direction are provided, and an opening angle (a) of each web determining a circumferential width of a web is 360°/3N.

17. The braking device according to claim 16 , in which three webs are provided.

18. A drive device for a joint between two links of a robot arm having a braking device according to claim 1 .

19. A robot comprising a robot arm having a plurality of links arranged to be movable relative to each other by a joint, at least one joint comprising a drive device according to claim 18 .

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 18, 2025
From: FRANKA EMIKA GMBH
To: FRANKA ROBOTICS GMBH
Reel/Frame 073261/0220 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 18, 2025
From: FRANKA ROBOTICS GMBH
To: FR ADMINISTRATION GMBH
Reel/Frame 073261/0679 →
CHANGE OF NAME Recorded Dec 18, 2025
From: AGILE ROBOTS HANOVER GMBH
To: FRANKA ROBOTICS GMBH
Reel/Frame 074015/0484 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 26, 2024
From: ROKAHR, TIM; SPENNINGER, ANDREAS; GARCIA, CARLES CALAFELL
To: FRANKA EMIKA GMBH
Reel/Frame 067232/0728 →
Priority Claims (1)
DE 10 2019 112 023.3 · May 8, 2019 · national
Continuity (1)
Related Publication 20220212354A1 · Jul 7, 2022