IP Library › Granted Patent US 12,515,358
Granted Patent B2
US 12,515,358 · App. 17/889,575 · Granted Jan 6, 2026

Cable management systems and methods for a wearable mobile robot

Inventors: Phil Long (Castro Valley, CA); Kevin Conrad Kemper (San Francisco, CA); Timothy Alan Swift (Walnut Creek, CA); Austin Campbell (San Francisco, CA); Linus Park (Pacifica, CA); Ashley Swartz (Daly City, CA); Rob Stuart (Arcata, CA); Samuel Pannepacker (San Francisco, CA)
Assignee: ROAM ROBOTICS INC.
B25J19/0025B25J9/0006B25J9/142B25J19/0029
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Quick Facts
Patent No.
US 12,515,358
App. No.
17/889,575
Granted
Jan 6, 2026
Kind
B2
Abstract

An exoskeleton system comprising: one or more actuator units that comprise a fluidic actuator; an exoskeleton device; one or more cables, the one or more cables comprising a first cable extending from the exoskeleton device to a first actuator unit of the one or more actuator units; and a retractable cable assembly coupled to the first cable, with the retractable cable assembly configured to pull the first cable to reduce slack in the first cable.

Claims (44)

1 . An exoskeleton system comprising:

a left and right leg actuator unit configured to be respectively coupled to a left and right leg of a user, the left and right leg actuator units each including:

an upper arm and a lower arm that are rotatably coupled via a joint, the joint positioned at a knee of the user with the upper arm coupled about an upper leg portion of the user above the knee and with the lower arm coupled about a lower leg portion of the user below the knee, and

a fluidic bellows actuator that extends between the upper arm and lower arm, and

an exoskeleton device disposed within a backpack, the exoskeleton device including:

a fluidic system, and

a processor and memory, the memory storing instructions, that when executed by the processor, are configured to control the fluidic system to introduce fluid to the fluidic bellows actuators of the left and right leg actuator units; and

a plurality of unitary cables, comprising a first unitary cable extending from the exoskeleton device to the right leg actuator unit and a second unitary cable extending from the exoskeleton device to the left leg actuator unit, the first and second unitary cables each comprising:

one or more electrical power lines configured to convey electrical power from the exoskeleton device to the left or right leg actuator unit,

one or more fluid lines configured to convey the fluid from the exoskeleton device to the respective fluidic bellows actuators of the left or right leg actuator unit,

one or more communication lines configured to convey communication signals from the exoskeleton device to the left or right leg actuator unit, and

a sheath that surrounds and encloses the one or more electrical power lines, the one or more fluid lines, and the one or more communication lines, and

at least one retractable cable assembly configured to have a mechanical retention force to maintain at least one of the plurality of unitary cables pulled tight against the user with reduced slack remaining in the at least one of the plurality of unitary cables, the at least one retractable cable assembly comprising:

a chimney defined by a portion of the backpack in which the exoskeleton device is disposed,

a chimney cavity defined by the chimney,

a reel assembly disposed within the backpack having a reel line extending into the chimney cavity, with a portion of the at least one of the plurality of unitary cables coupled to an end of the reel line, the reel assembly biasing the reel line such that the reel line exerts a pulling force on the at least one of the plurality of unitary cables to reduce slack in the least one of the plurality of unitary cables between the backpack and at least one of the left and right leg actuator units, while also allowing an available length of the least one of the plurality of unitary cables between the backpack and at least one of the left and right leg actuator units to dynamically increase, and to accommodate movement of the user while also minimizing slack in the least one of the plurality of unitary cables between the backpack and the at least one of the left and right leg actuator units.

2 . The exoskeleton system of claim 1 , wherein the fluid comprises air and wherein the one or more fluid lines comprise one or more tubes configured to convey the air from an air source at the exoskeleton device to the respective fluidic bellows actuators of the left or right leg actuator units to cause selective inflation of the respective fluidic bellows actuators of the left or right leg actuator units.

3 . The exoskeleton system of claim 1 , wherein the first and second unitary cables consist essentially of:

a single fluid line defined by a tube configured to convey air from an air source at the exoskeleton device;

a single power line configured to convey the electrical power; and

one or more a plurality of communication lines.

4 . The exoskeleton system of claim 1 , wherein each of the plurality of unitary cables further comprises a cable connector comprising:

a first connector side having release button and a first coupling face that includes a first pin array and a fluidic connector,

a second connector side having a second coupling face that includes a second pin array configured to operably couple and de-couple with the first pin array, a fluid stem configured to operably couple and de-couple with the fluidic connector of the first connector side, and

a first and a second cable portion extending respectively from the first and second connector sides,

wherein actuating the release button causes the first and second coupling faces to disengage, including causing the first and second pin arrays to de-couple, and causing the fluid stem and fluidic connector to de-couple.

5 . An exoskeleton system comprising:

one or more actuator units that comprise a fluidic actuator;

an exoskeleton device that includes:

a fluidic system, and

a device configured to control the fluidic system to introduce fluid to the fluidic actuators of the one or more actuator units;

one or more cables, comprising at least a first cable extending from the exoskeleton device to a first actuator unit, the first cable comprising:

one or more electrical lines, and

one or more fluid lines configured to convey the fluid from the exoskeleton device to a first fluidic actuator of the first actuator unit; and

at least one retractable cable assembly configured to have a mechanical retention force to maintain at least the first cable with reduced slack remaining in the first cable, the at least one retractable cable assembly comprising:

a chimney,

a chimney cavity defined by the chimney,

a reel assembly having a reel line extending into the chimney cavity, with a portion of the first cable coupled to an end of the reel line, the reel assembly biasing the reel line such that the reel line exerts a pulling force on the first cable to reduce slack in the first cable to first actuator unit, while also allowing an available length of the first cable to the first actuator unit to dynamically increase, wherein the reel line exerts the pulling force on the first cable to reduce slack in first cable between a backpack being worn by a user and the first actuator unit being worn by the user, while also allowing the available length of the first cable between the backpack and the first actuator unit to dynamically increase, and to accommodate movement of the user while also minimizing slack in the first cable between the backpack and the first actuator unit.

6 . The exoskeleton system of claim 5 , wherein the one or more electrical lines comprise

one or more electrical power lines configured to convey electrical power from the exoskeleton device to the first actuator unit, and

one or more communication lines configured to convey communication signals from the exoskeleton device to the first actuator unit.

7 . The exoskeleton system of claim 5 , wherein the at least one retractable cable assembly is configured to pull the first cable tightly against a user wearing the one or more actuator units.

8 . The exoskeleton system of claim 5 , wherein the chimney is defined by a portion of a backpack in which at least a portion of the exoskeleton device is disposed, the backpack configured to be worn by a user.

9 . The exoskeleton system of claim 5 , wherein the reel assembly and at least a portion of the exoskeleton device are disposed within a backpack.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 22, 2025
From: PARK, LINUS; KEMPER, KEVIN CONRAD; SWIFT, TIMOTHY ALAN; CAMPBELL, AUSTIN; LONG, PHIL; SWARTZ, ASHLEY; STUART, ROB; PANNEPACKER, SAM
To: ROAM ROBOTICS INC.
Reel/Frame 071202/0493 →
Continuity (3)
Provisional Application 63233976 · Aug 17, 2021
Provisional Application 63233988 · Aug 17, 2021
Related Publication 20230059711A1 · Feb 23, 2023
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