IP Library Patent Application 18934029
Patent Application
App. No. 18/934,029

ORDER FULFILLMENT SYSTEM

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Quick Facts
Patent No.
US None
App. No.
18/934,029
Abstract

An order fulfillment system is disclosed including a multi-level tote storage structure, one or more autonomous mobile robots configured to pick, transport and place one or more tote; one or more workstations configured to accommodate a picker that transports one or more eaches from a tote on one of the autonomous mobile robots to a “put” location, wherein the autonomous mobile robots are configured to move from level to level in the order fulfillment apparatus.

Claims (48)

1 . A mobile robot for transferring totes comprising:

a horizontal transit system configured to self-propel the mobile robot horizontally along horizontal tracks extending along aisles within a storage structure; and

a transfer system for transferring a tote from a first storage shelf, at a first level of multiple levels of the storage structure and within a first aisle of the aisles of the storage structure, to the mobile robot while the mobile robot is positioned at the first level and within the first aisle and without lateral movement of the mobile robot within the first aisle toward the first storage shelf, the tote comprising a first wall configured to be oriented parallel to an axis of transfer of the tote from the first storage shelf to the mobile robot, and a second wall and a third wall each oriented perpendicular to the first wall, the first wall positioned between the second wall and the third wall, the transfer system comprising:

a transfer motor;

a movable surface coupled to the transfer motor and configured to move with the movable surface;

a first finger mounted to the movable surface and configured to move with the movable surface;

wherein the first finger is configured to engage against a first surface formed on the first wall of the tote to pull the tote from the first storage shelf onto the mobile robot.

2 . The mobile robot of claim 1 , wherein a portion of the first finger extends underneath and behind the first surface to engage against the first surface to pull the tote onto the mobile robot.

3 . The mobile robot of claim 2 , wherein the first finger comprises a length, a proximal end, and a distal end separated from the proximal end by the length, wherein the first finger is secured with the movable surface at the proximal end, with the length substantially parallel with the first wall of the tote, and the first finger comprising: a first tote contacting surface configured to engage against the first surface as the tote is pulled onto the mobile robot, and a second tote contacting surface configured to engage against a second surface of the tote in moving the tote off of the mobile robot.

4 . The mobile robot of claim 1 , wherein the first finger comprises a length, a proximal end, and a distal end separated from the proximal end by the length, wherein the first finger is secured with the movable surface at the proximal end, with the length substantially parallel with the first wall of the tote, and the first finger comprising a first tote contacting surface proximate the distal end.

5 . The mobile robot of claim 4 , wherein the transfer system further comprises:

a second finger secured with the movable surface and comprises a second length wherein the second finger extends from the movable surface along the length substantially parallel with the first wall of the tote, and the second finger comprising a second tote contacting surface configured to contact one or more surfaces of the tote.

6 . The mobile robot of claim 4 , wherein the mobile robot, in pulling the tote onto the mobile robot, is configured to move the first tote contacting surface into a pocket formed on the first wall and engage the first surface formed within the pocket.

7 . The mobile robot of claim 4 , further comprising a second finger further comprising a second tote contacting surface configured to engage against a second surface of the tote in moving the tote off of the mobile robot;

wherein the mobile robot, in moving the tote off of the mobile robot in a first direction, is configured to:

cause the first tote contacting surface to induce a first force against the first surface and move the tote a first distance in the first direction; and

position the second finger to cause the second tote contacting surface to induce a second force against the second surface and move the tote a second distance in the first direction after the tote is moved the first distance.

8 . The mobile robot of claim 7 , wherein the first finger comprises a third tote contacting surface; and

the mobile robot, in moving a second tote off of the mobile robot in a second direction opposite the first direction, is configured to:

cause the third tote contacting surface to induce a third force against a third surface of the second tote, opposite the first surface of the second tote, and move the second tote a third distance in the second direction; and

position the second finger to cause the second tote contacting surface to induce a fourth force against a fourth surface of the second tote and move the second tote a fourth distance in the second direction after the second tote is moved the third distance.

9 . The mobile robot of claim 7 , wherein the first tote contacting surface comprises a first roller, and the second tote contacting surface comprises a second roller.

10 . The mobile robot of claim 4 , wherein the horizontal transit system further comprises a first sprocket and a second sprocket spaced from the first sprocket, and wherein the movable surface extends around the first sprocket and the second sprocket, and wherein the mobile robot controls a rotation of the first sprocket in controlling the movement of the movable surface and the first finger.

11 . A method of transferring a tote by a mobile robot, the method comprising:

self-propelling the mobile robot along a horizontal track extending along an aisle at a first level of multiple levels within a storage structure;

positioning the mobile robot within the aisle and aligned with a first tote at a first storage shelf within the storage structure, wherein the tote comprises a first wall configured to be oriented parallel to an axis of transfer of the tote from the first storage shelf to the mobile robot, and a second wall and a third wall each oriented perpendicular to the first wall, the first wall positioned between the second wall and the third wall; and

controlling a transfer motor, of a transfer system of the mobile robot without lateral movement of the mobile robot within the aisle toward the first storage shelf, in moving a movable surface of the transfer system causing movement of a first finger mounted to the movable surface, and engaging the first finger against a first surface formed on the first wall of the tote inducing a first force and pulling the tote from the first storage shelf onto the mobile robot.

12 . The method of claim 11 , wherein the moving of the first finger in engaging the first surface comprises moving a portion of the first finger to extend underneath and behind the first surface and engaging against the first surface in pulling the tote onto the mobile robot.

13 . The method of claim 11 , wherein the moving the first finger in engaging the first surface comprises moving the first finger with a length of the first finger being substantially parallel with the first wall of the tote and engaging the first surface by a first tote contacting surface, of the first finger, that is proximate a distal end of the first finger and pulling the tote onto the mobile robot; and

controlling movement of the first finger engaging a second tote contacting surface, of the first finger, against a second surface of the tote in moving the tote off of the mobile robot.

14 . The method of claim 11 , wherein the moving the first finger in engaging the first surface comprises moving the first finger with a length of the first finger being substantially parallel with the first wall of the tote and engaging the first surface by a first tote contacting surface, of the first finger, that is proximate a distal end of the first finger.

15 . The method of claim 14 , further comprising:

controlling movement of a second finger, secured with the movable surface, such that a second length of the second finger is substantially parallel with the first wall of the tote; and

engaging a second tote contacting surface, of the second finger, with a second surface of the tote.

16 . The method of claim 14 , the pulling the tote onto the mobile robot comprises moving the first tote contacting surface into a pocket formed on the first wall and engaging the first surface formed within the pocket.

17 . The method of claim 14 , further comprising:

moving the tote off of the mobile robot in a first direction comprising:

causing the first tote contacting surface to induce a first force against the first surface and moving the tote a first distance in the first direction; and

positioning a second finger to cause a second tote contacting surface of the second finger to engage a second surface of the tote; and

inducing a second force, by the second tote contacting surface, against the second surface and move the tote a second distance in the first direction after the tote is moved the first distance.

18 . The method of claim 17 , further comprising:

moving a second tote off of the mobile robot in a second direction opposite the first direction comprising:

causing a third tote contacting surface of the first finger to engage a third surface of the second tote, wherein the third surface is opposite the first surface of the second tote;

inducing, by the third tote contacting surface, a third force against the third surface of the second tote and moving the second tote a third distance in the second direction; and

inducing, by the second tote contacting surface of the second finger, a fourth force against a fourth surface of the second tote and moving the second tote a fourth distance in the second direction after the second tote is moved the third distance.

19 . The method of claim 17 , wherein the first tote contacting surface comprises a first roller, and the second tote contacting surface comprises a second roller.

20 . The method of claim 14 , wherein the moving the first finger comprises:

controlling rotation of one of a first sprocket and a second sprocket, around which the movable surface extends, in controlling the movement of the movable surface and the first finger.

Assignments (9)
CORRECTION BY DECLARATION TO CLARIFY OWNERSHIP OF ERRONEOUSLY FILED TRANSACTION PREVIOUSLY RECORDED AT REEL 070290/0180 Recorded Aug 18, 2025
From: ADVANCE SYSTEMS & ROBOTICS LLC
To: SYMBOTIC LLC
Reel/Frame 072590/0278 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 21, 2025
From: WALMART APOLLO, LLC
To: WALMART ADVANCED SYSTEMS & ROBOTICS INC.
Reel/Frame 070290/0048 →
CHANGE OF NAME Recorded Feb 21, 2025
From: WALMART ADVANCED SYSTEMS & ROBOTICS INC.
To: ADVANCED SYSTEMS & ROBOTICS LLC
Reel/Frame 070290/0180 →
MERGER Recorded Feb 12, 2025
From: ADVANCED SYSTEMS & ROBOTICS LLC
To: SYMBOTIC LLC
Reel/Frame 070201/0872 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 17, 2025
From: WALMART INC.
To: WALMART APOLLO, LLC
Reel/Frame 069938/0176 →
CORRECTIVE ASSIGNMENT TO CORRECT THE INVENTOR'S NAME PREVIOUSLY RECORDED AT REEL: 69310 FRAME: 341. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT . Recorded Jan 17, 2025
From: CHESNA, MICHAEL
To: WALMART APOLLO, LLC
Reel/Frame 069938/0099 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 17, 2025
From: ALERT INNOVATION INC.
To: WALMART INC.
Reel/Frame 069938/0140 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 18, 2024
From: ALERT INNOVATION INC.
To: WALMART APOLLO, LLC
Reel/Frame 069310/0341 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 14, 2024
From: LERT, JOHN G., JR.; FOSNIGHT, WILLIAM J.; WARHURST, JULIAN; SOLOMON, MARK
To: ALERT INNOVATION INC.
Reel/Frame 069265/0614 →