IP Library Granted Patent US 12,479,100
Granted Patent B2
US 12,479,100 · App. 18/111,943 · Granted Nov 25, 2025

Moving robot and moving robot assembly including the same

Inventor: Jaewan Ahn (Seoul, KR)
Assignee: HL Robotics Co., Ltd.
B25J9/1669B25J5/007B25J9/0096B25J9/1674B25J9/1679B25J11/0005B25J13/087
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Quick Facts
Patent No.
US 12,479,100
App. No.
18/111,943
Granted
Nov 25, 2025
Kind
B2
Abstract

A moving robot includes: a connection unit configured to detachably mount one of a plurality of task modules and electrically connectable to the one of a plurality of task modules when the one of a plurality of task modules is mounted; a frame unit supporting the connection unit and configured to be movable; a drive unit configured to move the frame unit; and a control unit to which a plurality of different driving modes corresponding to at least some of the plurality of task modules is input in advance and which controls the drive unit so that the moving robot is autonomously driven based on the plurality of driving modes.

Claims (62)

1 . A moving robot comprising:

a connection unit configured to detachably mount one of a plurality of task modules and electrically connectable to the one of the plurality of task modules when the one of the plurality of task modules is mounted;

a frame unit supporting the connection unit and configured to be movable;

a drive unit configured to move the frame unit; and

a control unit to which a plurality of different driving modes corresponding to at least some of the plurality of task modules is input in advance and which controls the drive unit so that the moving robot is autonomously driven based on the plurality of driving modes,

wherein the connection unit includes a connection body to which the one of the plurality of task modules is detachably mounted,

wherein the connection body is configured to support the one of the plurality of task modules,

wherein the connection body includes a plurality of engagement recesses having different shapes and engaged with the one of the plurality of task modules so that a relative position of the one of the plurality of task modules with respect to the moving robot is maintained,

wherein each of the plurality of task modules has a fixture to be engaged with each of the plurality of engagement recesses so that a relative position of the plurality of task modules with respect to the moving robot is maintained,

wherein the fixture has a shape corresponding to one of the plurality of engagement recesses to engage with the one of the plurality of engagement recesses,

wherein when another one of the plurality of task modules different from the one of the plurality of task modules is mounted on the connection body, the fixture of the another on of the plurality of task modules is engaged with another one of the plurality of engagement recesses.

2 . The moving robot of claim 1 , wherein the connection unit further includes:

a plurality of robot terminals configured to be electrically connected to the plurality of task modules,

wherein the control unit selects one of the plurality of driving modes based on which of the plurality of robot terminals is electrically connected to the one of the plurality of task modules, and controls the drive unit based on the selected driving mode.

3 . The moving robot of claim 1 , wherein the control unit selects one of the plurality of driving modes when one or more robot terminals of a first group among the plurality of robot terminals are connected to the one of the plurality of task modules, and selects another driving mode among the plurality of driving modes when one or more robot terminals of a second group different from the first group among the plurality of robot terminals are connected to the one of the plurality of task modules.

4 . The moving robot of claim 3 , wherein in the first group and the second group,

the one or more robot terminals included in the first group are different from the one or more robot terminals included in the second group, or

the one or more robot terminals included in the first group are the same as some of the one or more robot terminals included in the second group, or

some of the one or more robot terminals included in the first group are different from each of the one or more robot terminals included in the second group.

5 . The moving robot of claim 1 , wherein the connection body extends in one direction to guide a movement of the one of the plurality of task modules, and

the plurality of engagement recesses are spaced apart from each other along the one direction on the connection body.

6 . The moving robot of claim 1 , wherein the connection body has a rail shape along which the one of the plurality of task modules is slidable.

7 . The moving robot of claim 1 , wherein the connection unit includes a plurality of connection bodies configured to support the one of the plurality of task modules and extending in a length direction of the frame unit, and

the plurality of connection bodies are supported by the frame unit and are spaced apart in a width direction of the frame unit.

8 . A moving robot assembly comprising:

a moving robot that is autonomously movable; and

a plurality of task modules configured to be mounted on the moving robot,

wherein the moving robot includes:

a connection unit configured to detachably mount one of the plurality of task modules and electrically connectable to the one of the plurality of task modules when the one of the plurality of task modules is mounted;

a frame unit supporting the connection unit and configured to be movable;

a drive unit configured to move the frame unit; and

a control unit to which a plurality of different driving modes corresponding to at least some of the plurality of task modules is input in advance and which controls the drive unit so that the moving robot is autonomously driven based on the plurality of driving modes,

wherein the connection unit includes a connection body to which the one of the plurality of task module detachably mounted,

wherein the connection body is configured to support the one of the plurality of task modules,

wherein the connection body includes a plurality of engagement recesses having different shapes and engaged with the one of the plurality of task modules so that relative position of the one of the plurality of task modules with respect to the moving robot is maintained,

wherein each of plurality of task modules has a fixture to be engaged with each of the plurality of engagement recesses so that a relative position of each of the plurality of task modules with respect to the moving robot is maintained,

wherein the fixture has a shape corresponding to one of the plurality of engagement recesses to engage with the one of the plurality of engagement recesses,

wherein with another one of the plurality of task modules different from the one of the plurality of task modules is mounted on the connection body, the fixture of the anther one of the plurality of task modules is engaged with another one of the plurality of engagement recesses.

9 . The moving robot assembly of claim 8 , wherein the connection unit further includes:

a plurality of robot terminals configured to be electrically connected to the plurality of task modules,

wherein each of the plurality of task modules includes a module terminal to be connected to one or more of the plurality of robot terminals,

wherein when the one of the plurality of task modules is mounted on the connection body, the module terminal of the one of the plurality of task modules is connected to one or more robot terminals of a first group among the plurality of robot terminals, and

wherein when the another one of the plurality of task modules is mounted on the connection body, the module terminal of the another one of the plurality of task modules is connected to one or more robot terminals of a second group different from the first group among the plurality of robot terminals.

10 . The moving robot assembly of claim 9 , wherein each of the plurality of task modules includes a docking unit configured to be movable along the connection body, and

the docking unit has the fixture to be engaged with each of the plurality of engagement recesses so that a relative position of each of the plurality of task modules with respect to the moving robot is maintained.

11 . The moving robot assembly of claim 8 , wherein the connection unit is configured such that when one of the plurality of engagement recesses is engaged with the fixture, one or more robot terminals among the plurality of robot terminals are connected to the module terminal.

12 . The moving robot assembly of claim 8 , wherein the connection body extends in one direction to guide a movement of the one of the plurality of task modules, and

the plurality of engagement recesses are spaced apart from each other along the one direction on the connection body.

13 . The moving robot assembly of claim 10 , wherein the connection body has a rail shape along which the docking unit is slidable.

14 . The moving robot assembly of claim 8 , wherein the connection unit includes a plurality of connection bodies configured to support the one of the plurality of task modules and extending in a length direction of the frame unit, and

the plurality of connection bodies are supported by the frame unit and are spaced apart in a width direction of the frame unit.

15 . The moving robot assembly of claim 8 , wherein the connection unit includes:

a connection body to which one of the plurality of task modules is detachably mounted;

a plurality of robot terminals configured to be electrically connected to the plurality of task modules; and

a power terminal disposed in the connection body at a position different from the plurality of robot terminals, and

wherein each of the task modules further includes a battery unit for supplying power to the drive unit through the power terminal.

16 . The moving robot assembly of claim 8 , wherein the control unit is configured to control the drive unit so that the frame unit moves at different moving speeds along different moving paths for the plurality of driving modes, respectively.

17 . The moving robot assembly of claim 8 , wherein the moving robot further includes:

a sensing unit configured to sense a person or object around the moving robot; and

an alarm unit configured to generate a warning sound or display letters,

wherein the plurality of driving modes include a patrol mode, and

wherein the control unit controls the alarm unit based on information about the person or object detected by the sensing unit while the moving robot moves within a predetermined area when the moving robot is in the patrol mode.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 8, 2025
From: HL MANDO CORPORATION
To: HL ROBOTICS CO., LTD.
Reel/Frame 070766/0386 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 21, 2023
From: AHN, JAEWAN
To: HL MANDO CORPORATION
Reel/Frame 062753/0504 →
Priority Claims (1)
KR 10-2022-0023162 · Feb 22, 2022 · national
Continuity (1)
Related Publication 20230264354A1 · Aug 24, 2023
References Cited (10)
US 5720077A · Nakamura · 1998 [cited by examiner]
US 20070061043A1 · Ermakov · 2007 [cited by examiner]
US 20110202175A1 · Romanov · 2011 [cited by examiner]
US 20130345875A1 · Brooks · 2013 [cited by examiner]
US 20160334801A1 · Ratanaphanyarat · 2016 [cited by examiner]
US 20200298394A1 · Han · 2020 [cited by examiner]
US 20210213604A1 · Lee · 2021 [cited by examiner]
US 20210272434A1 · Hashimoto · 2021 [cited by examiner]
US 20220289323A1 · Akin · 2022 [cited by examiner]
CN 213782709U · 2021 [cited by examiner]