IP Library Granted Patent US 12,466,502
Granted Patent B1
US 12,466,502 · App. 17/954,498 · Granted Nov 11, 2025

Method and system for improving stability in a legged robot

Inventors: Andrew Abate (Albany, OR); Kevin Francis Sweeney (Albany, OR)
Assignee: Agility Robotics, Inc.
B62D57/032
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Quick Facts
Patent No.
US 12,466,502
App. No.
17/954,498
Granted
Nov 11, 2025
Kind
B1
Abstract

A robot has a body and at least two legs extending from the robot body, each leg comprising a plurality of links that are rotatably connected. A ground contacting assembly is rotatably connected to the distal link of each leg. The ground contacting assembly is configured to provide an increase in roll range of motion and to facilitate abduction and adduction of the leg for traversing terrain.

Claims (40)

1 . A legged robot for traversing a terrain, comprising:

a robot body; and

at least two legs extending from the robot body wherein each leg comprises:

a plurality of rotatably connected links comprising at least a proximal link and a distal link; and

a ground contacting assembly rotatably connected to the distal link of each leg, wherein each ground contacting assembly comprises:

a first element; and

a pair of connecting rods, wherein each connecting rod comprises a rod-end and a proximal end, wherein each rod-end comprises:

a rod-end center; and the rod end centers define a horizontal axis through the first element, and

wherein the rod-ends are rotatably connected to the first element via an angled connector having a central axis, wherein the central axis is oriented at a coronal plane angle in the range of between 5° and 45° relative to the horizontal axis; and

said proximal end is connected to said leg, wherein said ground contacting assembly of the legged robot has a roll range of motion in the coronal plane for traversing said terrain.

2 . The legged robot of claim 1 , wherein said plurality of links are rotatably connected in an end to end manner.

3 . The legged robot of claim 1 , wherein said proximal end of said connecting rod is connected to said distal link of said leg.

4 . The legged robot of claim 1 , wherein said proximal end of said connecting rod is connected to an actuator.

5 . The legged robot of claim 1 , wherein said angled connector is selected from the group consisting of screws, studs, threaded studs, bolts, and fasteners.

6 . The legged robot of claim 1 , wherein the central axis of the angled connector is oriented at a coronal plane angle of 10° relative to the horizontal axis.

7 . The legged robot of claim 1 , wherein said ground contacting assembly has a roll range of motion that is greater in the abduction direction than an adduction direction.

8 . The legged robot of claim 1 , wherein said ground contacting assembly has a roll range of motion of about 55° in the coronal plane.

9 . The legged robot of claim 1 , wherein said rod-end rotates about 50° relative to the central axis of the angled connector.

10 . The legged robot of claim 1 , wherein the angled connector rotatable connects each of the pair of connecting rods to the first element at a first angle and a second angle wherein the first and the second angle are different angles within the range of between 5° and 45° relative to the horizontal axis.

11 . The legged robot of claim 1 , wherein the angled connector rotatable connects each of the pair of connecting rods to the first element at a first angle and a second angle wherein the first and the second angle are identical angles within the range of between 5° and 45° relative to the horizontal axis.

12 . A ground contacting assembly comprising:

a first element; and

a pair of connecting rods, wherein each connecting rod comprises a rod-end and a proximal end, wherein each rod-end comprises:

a rod-end center; and the rod end centers define a horizontal axis through the first element, and

wherein the rod-ends are rotatably connected to the first element via an angled connector having a central axis, wherein the central axis is oriented at a coronal plane angle in the range of between 5° and 45° relative to the horizontal axis; and

said proximal end is connected to a leg of a robot wherein said ground contacting assembly is operable to provide abduction and adduction of said leg for traversing terrain.

13 . The ground contacting assembly of claim 12 , wherein said proximal end of said connecting rod is connected to a distal link of said leg.

14 . The ground contacting assembly of claim 12 , wherein the central axis of the angled connector is oriented at a coronal plane angle of 10° relative to the horizontal axis.

15 . The ground contacting assembly of claim 12 , wherein said ground contacting assembly has a roll range of motion of about 55° in the coronal plane.

16 . The ground contacting assembly of claim 12 , wherein said rod-end rotates about 50° relative to the central axis of the angled connector.

17 . A legged robot for traversing a terrain, comprising:

a robot body; and

two legs extending from the robot body wherein each leg comprises:

a proximal link, an intermediate link, and a distal link; the proximal link having a first end rotatably connected to the body and a second end rotatably connected to the intermediate link at an intermediate link first end, the intermediate link having an intermediate second end rotatably connected to the distal link at a distal link first end; and

a ground contacting assembly rotatably connected to the distal link of each leg, wherein each ground contacting assembly comprises:

a first element; and

a pair of connecting rods, wherein each connecting rod comprises a rod-end and a proximal end, wherein each rod-end comprises:

a rod-end center; and the rod end centers define a horizontal axis through the first element, and

wherein the rod-ends are rotatably connected to the first element via an angled connector having a central axis, wherein the central axis is oriented at a coronal plane angle of 10° relative to the horizontal axis; and

said proximal end is connected to said distal link, wherein said ground contacting assembly is operable to facilitate abduction and adduction of each said leg for traversing said terrain.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 3, 2023
From: ABATE, ANDREW
To: AGILITY ROBOTICS
Reel/Frame 063521/0576 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 3, 2023
From: SWEENEY, KEVIN
To: AGILITY ROBOTICS, INC.
Reel/Frame 063525/0237 →
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