IP Library Granted Patent US 11,754,155
Granted Patent B2
US 11,754,155 · App. 17/448,224 · Granted Sep 12, 2023

Screw actuator for a legged robot

Inventors: Steven D. Potter (Bedford, MA); Zachary John Jackowski (Sommerville, MA); Adam Young (Waltham, MA)
Assignee: Boston Dynamics, Inc.
F16H25/20B25J9/102B25J9/106B25J9/108B25J9/123B25J17/0241B62D57/032F16H2025/204F16H2025/2043F16H2025/2075Y10S901/01
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Quick Facts
Patent No.
US 11,754,155
App. No.
17/448,224
Granted
Sep 12, 2023
Kind
B2
Abstract

A robot leg assembly including a hip joint and an upper leg member. A proximal end portion of the upper leg member rotatably coupled to the hip joint. The robot leg assembly including a knee joint rotatably coupled to a distal end portion of the upper leg member, a lower leg member rotatably coupled to the knee joint, a linear actuator disposed on the upper leg member and defining a motion axis, and a motor coupled to the linear actuator and a linkage coupled to the translation stage and to the lower leg member. The linear actuator includes a translation stage moveable along the motion axis to translate rotational motion of the motor to linear motion of the translation stage along the motion axis, which moves the linkage to rotate the lower leg member relative to the upper leg member at the knee joint.

Claims (39)

1. A robot leg assembly comprising:

a hip joint;

an upper leg member having a proximal end portion and a distal end portion, the proximal end portion of the upper leg member rotatably coupled to the hip joint;

a knee joint rotatably coupled to the distal end portion of the upper leg member;

a lower leg member rotatably coupled to the knee joint;

a linear actuator disposed on the upper leg member and defining a motion axis, the linear actuator comprising a translation stage moveable along the motion axis;

a motor coupled to the linear actuator, the linear actuator configured to translate rotational motion of the motor to linear motion of the translation stage along the motion axis, wherein the motor is disposed on the proximal end portion of the upper leg member; and

a linkage coupled to the translation stage and to the lower leg member,

wherein movement of the translation stage along the motion axis moves the linkage to rotate the lower leg member relative to the upper leg member at the knee joint.

2. The robot leg assembly of claim 1 , wherein the linear actuator comprises a screw actuator.

3. The robot leg assembly of claim 1 , wherein the linkage is coupled to the lower leg member at a knee pivot of the knee joint.

4. The robot leg assembly of claim 1 , wherein the linkage comprises:

a first link coupled to a carrier; and

a second link coupled to the first link at a joint configured to allow relative rotation between the first link and the second link, wherein the second link is coupled to a knee pivot to which the lower leg member is coupled.

5. The robot leg assembly of claim 1 , further comprising a foot member coupled to the lower leg member.

6. The robot leg assembly of claim 5 , wherein the upper leg member is coupled to the lower leg member at a knee pivot of the knee joint, wherein the linkage is coupled to the lower leg member such that when the foot member rests on a surface, a screw shaft is subjected to a compressive force.

7. The robot leg assembly of claim 5 , wherein the upper leg member is coupled to the lower leg member at a knee pivot of the knee joint, wherein the linkage is coupled to the lower leg member at the knee joint such that when the foot member rests on a surface, a screw shaft is subjected to a tensile force.

8. The robot leg assembly of claim 1 , wherein the motor is mounted at the hip joint of a robot.

9. The robot leg assembly of claim 1 , further comprising a screw actuator disposed within the upper leg member, the screw actuator comprising a screw shaft and a nut mounted coaxial to the screw shaft such that the screw shaft is rotatable within the nut.

10. A robot comprising:

at least one leg, each leg of the at least one leg comprising:

a hip joint;

an upper leg member having a proximal end portion and a distal end portion, the proximal end portion of the upper leg member rotatably coupled to the hip joint;

a knee joint rotatably coupled to the distal end portion of the upper leg member;

a lower leg member rotatably coupled to the knee joint;

a linear actuator disposed on the upper leg member and defining a motion axis, the linear actuator comprising a translation stage moveable along the motion axis;

a motor coupled to the linear actuator, the linear actuator configured to translate rotational motion of the motor to linear motion of the translation stage along the motion axis, wherein the motor is disposed on the proximal end portion of the upper leg member; and

a linkage coupled to the translation stage and to the lower leg member,

wherein movement of the translation stage along the motion axis moves the linkage to rotate the lower leg member relative to the upper leg member at the knee joint.

11. The robot of claim 10 , wherein the linear actuator comprises a screw actuator.

12. The robot of claim 10 , wherein the linkage is coupled to the lower leg member at a knee pivot of the knee joint.

13. The robot of claim 10 , wherein the linkage comprises:

a first link coupled to a carrier; and

a second link coupled to the first link at a joint configured to allow relative rotation between the first link and the second link, wherein the second link is coupled to a knee pivot to which the lower leg member is coupled.

14. The robot of claim 10 , further comprising a foot member coupled to the lower leg member.

15. The robot of claim 14 , wherein the upper leg member is coupled to the lower leg member at a knee pivot of the knee joint, wherein the linkage is coupled to the lower leg member such that when the foot member rests on a surface, a screw shaft is subjected to a compressive force.

16. The robot of claim 14 , wherein the upper leg member is coupled to the lower leg member at a knee pivot of the knee joint, wherein the linkage is coupled to the lower leg member at the knee joint such that when the foot member rests on a surface, a screw shaft is subjected to a tensile force.

17. The robot of claim 10 , wherein the motor is mounted at the hip joint of the robot.

18. The robot of claim 10 , further comprising a screw actuator disposed within the upper leg member, the screw actuator comprising a screw shaft and a nut mounted coaxial to the screw shaft such that the screw shaft is rotatable within the nut.

Assignments (4)
CORRECTIVE ASSIGNMENT TO CORRECT THE REMOVE APPLICATIONS NUMBERS 63127573 AND 11/302759 AND THE CITY OF THE ASSIGNEE PREVIOUSLY RECORDED AT REEL: 057111 FRAME: 0202. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Oct 27, 2021
From: BOSTON DYNAMICS, INC.
To: BOSTON DYNAMICS, INC.
Reel/Frame 057964/0415 →
CHANGE OF NAME Recorded Oct 5, 2021
From: BOSTON DYNAMICS, INC.
To: BOSTON DYNAMICS, INC.
Reel/Frame 057711/0202 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 21, 2021
From: POTTER, STEVEN D.; JACKOWSKI, ZACHARY JOHN; YOUNG, ADAM
To: GOOGLE INC.
Reel/Frame 057544/0472 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 21, 2021
From: GOOGLE INC.
To: BOSTON DYNAMICS, INC.
Reel/Frame 057544/0507 →
Continuity (3)
Continuation 16286778 · Feb 27, 2019
Continuation 15380561 · Dec 15, 2016
Related Publication 20220003297A1 · Jan 6, 2022