IP Library Granted Patent US 12,558,801
Granted Patent B2
US 12,558,801 · App. 18/395,746 · Granted Feb 24, 2026

Robotic torso

Inventors: Connor Richard Shannon (Vancouver, CA); Hessam Maleki (Burnaby, CA); James Zhong Sheng Liu (Burnaby, CA); Matthew Hill (Vancouver, CA); Seymur Dadashov (Richmond, CA)
Assignee: Sanctuary Cognitive Systems Corporation
B25J17/00
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Quick Facts
Patent No.
US 12,558,801
App. No.
18/395,746
Filed
Dec 26, 2023
Granted
Feb 24, 2026
Kind
B2
Art Unit
3618
USPC
74/490.05
Abstract

A robotic torso for a humanoid robot includes a first torso member having an axial axis aligned with a reference axis and a second torso member having at least one mounting portion for at least one humanoid component. The robotic torso includes a series of actuators arranged in a column between the first torso member and the second torso member and coupling the first torso member to the second torso member. Each of the actuators has a rotatable member defining a rotational axis. The rotational axes of each adjacent pair of actuators in the series of actuators are orthogonal to each other.

Claims (33)

1 . A robotic torso comprising:

a first torso member having an axial axis aligned with a reference axis, wherein the first torso member comprises an inner chamber;

a second torso member having at least one mounting portion for at least one humanoid component joint;

a series of actuators arranged in a column between the first torso member and the second torso member and coupling the first torso member to the second torso member, each of the actuators having a rotatable member defining a rotational axis, wherein the rotational axes of each adjacent pair of the actuators are orthogonal to each other, wherein a first actuator of the series of actuators is disposed within the inner chamber such that the rotational axis of the first actuator is aligned with the reference axis;

a third torso member coupled to the rotatable member of the first actuator, wherein rotation of the rotatable member of the first actuator about the reference axis causes rotation of the third torso member about the reference axis;

a first rotational stop member coupled to the first torso member; and

a second rotational stop member coupled to the third torso member, wherein the second rotational stop member selectively engages with the first rotational stop member to limit a rotational range of the third torso member about the reference axis.

2 . The robotic torso of claim 1 , wherein the third torso member comprises a first actuator support having a first longitudinal axis that is orthogonal to the reference axis, and wherein a second actuator of the series of actuators is mounted on the first actuator support such that the rotational axis of the second actuator is aligned with the first longitudinal axis; and further comprising:

a fourth torso member coupled to the rotatable member of the second actuator, wherein rotation of the rotatable member of the second actuator about the first longitudinal axis causes rotation of the fourth torso member about the first longitudinal axis.

3 . The robotic torso of claim 2 , further comprising:

a third rotational stop member coupled to the fourth torso member;

a fourth rotational stop member coupled to the rotatable member of the second actuator, wherein the fourth rotational stop member selectively engages with the third rotational stop member to limit a rotational range of the fourth torso member about the first longitudinal axis; and

a locking member coupled to the fourth torso member and movable between a first position to permit rotation of the fourth torso member about the first longitudinal axis and a second position to prevent rotation of the fourth torso member about the first longitudinal axis.

4 . The robotic torso of claim 2 , wherein the fourth torso member comprises a second actuator support having a second longitudinal axis that is orthogonal to the first longitudinal axis, and wherein a third actuator of the series of actuators is mounted on the second actuator support such that the rotational axis of the third actuator is aligned with the second longitudinal axis; and further comprising:

a fifth torso member coupled to the rotatable member of the third actuator, wherein rotation of the rotatable member of the third actuator about the second longitudinal axis causes rotation of the fifth torso member about the second longitudinal axis.

5 . The robotic torso of claim 4 , further comprising:

a third rotational stop member coupled to the fifth torso member;

a fourth rotational stop member coupled to the rotatable member of the fourth torso member, wherein the fourth rotational stop member selectively engages with the third rotational stop member to limit a rotational range of the fifth torso member about the first axis; and

a locking member coupled to the fifth torso member and movable between a first position to engage with the fourth torso member and prevent relative rotation between the fifth torso member and the fourth torso member and a second position to disengage from the fourth member and permit relative rotation between the fifth torso member and the fourth torso member.

6 . The robotic torso of claim 4 , wherein the fifth torso member comprises a third actuator support having a third longitudinal axis that is orthogonal to the second longitudinal axis, wherein a fourth actuator of the series of actuators is mounted on the third actuator support such that the rotational axis of the fourth actuator is aligned with the third longitudinal axis, wherein the second torso member is coupled to the rotatable member of the fifth torso member, and wherein rotation of the rotatable member of the fifth torso member about the third longitudinal axis causes rotation of the second torso member about the third longitudinal axis.

7 . The robotic torso of claim 6 , further comprising:

a third rotational stop member coupled to the second torso member;

a fourth rotational stop member coupled to the rotatable member of the fourth actuator, wherein the fourth rotational stop member selectively engages with the third rotational stop member to limit a rotational range of the second torso member about the third longitudinal axis; and

a locking member coupled to the second torso member and movable between a first position to permit relative rotation between the second torso member and the fifth torso member and a second position to prevent relative rotation between the second torso member and the fifth torso member.

8 . A robot comprising:

a robotic torso comprising:

a first torso member having an axial axis aligned with a reference axis, wherein the first torso member comprises an inner chamber;

a second torso member having at least one mounting portion for at least one humanoid component joint;

a series of actuators arranged in a column between the first torso member and the second torso member and coupling the first torso member to the second torso member, each of the actuators having a rotatable member defining a rotational axis, wherein the rotational axes of each adjacent pair of the actuators are orthogonal to each other, wherein a first actuator of the series of actuators is disposed within the inner chamber such that the rotational axis of the first actuator is aligned with the reference axis;

a third torso member coupled to the rotatable member of the first actuator, wherein rotation of the rotatable member of the first actuator about the reference axis causes rotation of the third torso member about the reference axis;

a first rotational stop member coupled to the first torso member; and

a second rotational stop member coupled to the third torso member, wherein the second rotational stop member selectively engages with the first rotational stop member to limit a rotational range of the third torso member about the reference axis; and

two robotic arms disposed on opposite sides of the reference axis, each robotic arm coupled to one of the torso members.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 18, 2024
From: SHANNON, CONNOR RICHARD; MALEKI, HESSAM; LIU, JAMES ZHONG SHENG; HILL, MATTHEW; DADASHOV, SEYMUR
To: SANCTUARY COGNITIVE SYSTEMS CORPORATION
Reel/Frame 066164/0279 →
Continuity (2)
Provisional Application 63435302 · Dec 26, 2022
Related Publication 20240208082A1 · Jun 27, 2024
References Cited (14)
US 5428713A · Matsumaru · 1995 [cited by examiner]
US 6463356B1 · Hattori · 2002 [cited by examiner]
US 6564888B1 · Gomi · 2003 [cited by examiner]
US 6658962B1 · Rosheim · 2003 [cited by examiner]
US 6917175B2 · Hattori · 2005 [cited by examiner]
US 7023164B2 · Iribe · 2006 [cited by examiner]
US 7597025B2 · Narita · 2009 [cited by examiner]
US 7971504B2 · Haniya · 2011 [cited by examiner]
US 8875594B2 · Alfayad · 2014 [cited by examiner]
US 20030038607A1 · Yim · 2003 [cited by examiner]
US 20140137691A1 · Nogami · 2014 [cited by examiner]
KR 100788787B1 · 2007 [cited by examiner]
KR 20100014038A · 2010 [cited by examiner]
KR-100788787-B1 Machine Translation (Year: 2007). [cited by examiner]
Cited By (6)
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