IP Library Granted Patent US 11,673,742
Granted Patent B2
US 11,673,742 · App. 17/387,764 · Granted Jun 13, 2023

Systems and methods for processing objects including mobile matrix carrier systems

Inventors: Thomas Wagner (Concord, MA); Kevin Ahearn (Nebo, NC); John Richard Amend, Jr. (Belmont, MA); Benjamin Cohen (Somerville, MA); Michael Dawson-Haggerty (Pittsburgh, PA); William Hartman Fort (Stratham, NH); Christopher Geyer (Arlington, MA); Jennifer Eileen King (Oakmont, PA); Thomas Koletschka (Cambridge, MA); Michael Cap Koval (Mountain View, CA); Kyle Maroney (North Attleboro, MA); Matthew T. Mason (Pittsburgh, PA); William Chu-Hyon McMahan (Cambridge, MA); Gene Temple Price (Cambridge, MA); Joseph Romano (Arlington, MA); Daniel Smith (Canonsburg, PA); Siddhartha Srinivasa (Seattle, WA); Prasanna Velagapudi (Pittsburgh, PA); Thomas Allen (Reading, MA)
Assignee: Berkshire Grey Operating Company, Inc.
B65G1/0471B65G1/0492B65G1/065B65G1/1375B07C5/361B07C5/38B07C2301/0091B25J9/106B25J9/162B25J9/1687B61B13/00B61D3/00B61D9/00B65G1/026B65G1/0478B65G1/0485B65G1/08B65G1/1371B65G1/1373B65G1/1378B65G9/002B65G9/008B65G37/00B65G41/02B65G47/48B65G47/902B65G47/904B65G47/96B65G65/005B65G65/23B65G2201/0258B65G2203/0216B65G2203/044B65G2811/0678B65G2814/0346G05B19/0428G05B19/41815G05B19/41895G05B2219/24001G05B2219/40078G05B2219/40252G05D2201/0216
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Quick Facts
Patent No.
US 11,673,742
App. No.
17/387,764
Granted
Jun 13, 2023
Kind
B2
Abstract

An object processing system is disclosed that includes a plurality of track sections, and a plurality of remotely actuatable carriers for controlled movement along at least portions of the plurality of track sections, wherein each of the remotely controllable carriers is adapted to support and transport an object processing bin.

Claims (41)

1. An object processing system comprising:

an array of track sections that are not mutually connected;

a fixed rack unit including a plurality of protrusions extending over at least a portion of a track section of the array of track sections;

at least one remotely controllable carrier for automated movement along the array of track sections towards the fixed rack unit, the at least one remotely controllable carrier including a plurality of raised bin supports, each raised bin support including a bin support surface, each of the plurality of raised bin supports being mutually separated from one another by at least one recessed surface that is lower than each bin support surface, each recessed surface being low enough to accommodate and receive a protrusion of the plurality of protrusions of the fixed rack unit as the at least one remotely controllable carrier is driven under the fixed rack unit; and

at least one paddle movably mounted on a first end of at least one of the at least one remotely controlled carrier, said at least one paddle being actuatable to facilitate at least one of:

loading an object from the plurality of raised bin supports onto the plurality of protrusions of the fixed rack unit while the at least one remotely controllable carrier is moved under the fixed rack unit; and unloading the object from the plurality of protrusions of the fixed rack unit to the plurality of raised bin supports while the at least one remotely controllable carrier is moved under the fixed rack unit.

2. The object processing system as claimed in claim 1 , wherein the at least one remotely controllable carrier includes a plurality of powered wheels that are mounted for pivotal movement with respect to the at least one remotely controllable carrier.

3. The object processing system as claimed in claim 1 , wherein the at least one remotely controllable carrier is movable in two mutually orthogonal directions.

4. The object processing system as claimed in claim 1 , further comprising a processing programmable motion device with an articulated arm, and wherein the articulated arm is positioned adjacent a portion of the array of track sections.

5. The object processing system as claimed in claim 1 , wherein one or more track sections among the array of track sections are provided in a generally square shape.

6. The object processing system as claimed in claim 1 , wherein the system includes a plurality of storage bins for providing storage of objects pre-processing, and a plurality of destination bins containing processed objects.

7. The object processing system as claimed in claim 6 , wherein the destination bins are shipping boxes.

8. The object processing system as claimed in claim 1 , wherein the at least one paddle is actuatable in an upward direction by rotating the at least one paddle in the upward direction.

9. The object processing system as claimed in claim 1 , wherein the at least one paddle is actuatable in an upward direction by moving the paddle linearly in the upward direction.

10. The object processing system as claimed in claim 1 , further comprising a second paddle movably mounted on a second end of the at least one remotely controlled carrier, said second end being opposite the first end, said second paddle being actuatable to facilitate at least one of:

loading an object from the plurality of raised bin supports onto the plurality of protrusions of the fixed rack unit while the at least one remotely controllable carrier is moved under the fixed rack unit; and

unloading the object from the plurality of protrusions of the fixed rack unit to the plurality of raised bin supports while the at least one remotely controllable carrier is moved under the fixed rack unit.

11. The object processing system as claimed in claim 10 , wherein the second paddle is actuatable in an upward direction by rotating the second paddle in the upward direction.

12. The object processing system as claimed in claim 10 , wherein the second paddle is actuatable in an upward direction by moving the second paddle linearly in the upward direction.

13. An object processing system comprising:

a plurality of remotely controllable carriers for automated movement about a work area, each remotely controllable carrier including a plurality of raised bin supports, each raised bin support including a bin support surface, each of the plurality of raised bin supports being mutually separated from one another by at least one recessed surface that is lower than each bin support surface;

a fixed rack unit including a plurality of protrusions, each recessed surface of each remotely controllable carrier being low enough to accommodate and receive a protrusion of the plurality of protrusions of the fixed rack unit as the remotely controllable carrier is driven under the fixed rack unit; and

at least one paddle movably mounted on a first end of each remotely controllable carrier, said at least one paddle being actuatable to facilitate at least one of

loading an object from the plurality of raised bin supports onto the plurality of protrusions of the fixed rack unit while the remotely controllable carrier is moved under the fixed rack unit; and

unloading the object from the plurality of protrusions of the fixed rack unit to the plurality of raised bin supports while the remotely controllable carrier is moved under the fixed rack unit.

14. The object processing system as claimed in claim 13 , wherein each remotely controllable carrier includes a plurality of powered wheels that are mounted for pivotal movement with respect to the at least one remotely controllable carrier.

15. The object processing system as claimed in claim 13 , wherein each remotely controllable carrier is movable in two mutually orthogonal directions.

16. The object processing system as claimed in claim 13 , further comprising a processing programmable motion device with an articulated arm, and wherein the articulated arm is positioned adjacent a portion of an array of track sections on which the plurality of remotely controllable carriers are movable by automated movement.

17. The object processing system as claimed in claim 16 , wherein one or more track sections among the array of track sections are provided in a generally square shape.

18. The object processing system as claimed in claim 13 , wherein the at least one paddle is actuatable in an upward direction by rotating the at least one paddle in the upward direction.

19. The object processing system as claimed in claim 13 , wherein the at least one paddle is actuatable in an upward direction by moving the paddle linearly in the upward direction.

20. The object processing system as claimed in claim 13 , further comprising a second paddle movably mounted on a second end of each of the plurality of remotely controllable carriers, said second end being opposite the first end, and the second paddle being actuatable to facilitate at least one of:

loading an object from the plurality of raised bin supports onto the plurality of protrusions of the fixed rack unit while the remotely controllable carrier is moved under the fixed rack unit; and

unloading the object from the plurality of protrusions of the fixed rack unit to the plurality of raised bin supports while the remotely controllable carrier is moved under the fixed rack unit.

21. The object processing system as claimed in claim 20 , wherein the second paddle is actuatable in an upward direction by rotating the second paddle in the upward direction.

22. The object processing system as claimed in claim 20 , wherein the second paddle is actuatable in an upward direction by moving the second paddle linearly in the upward direction.

23. An object processing system comprising:

a plurality of remotely controllable carriers for automated movement, each remotely controllable carrier including a plurality of raised bin supports, each raised bin support including a bin support surface, each of the plurality of raised bin supports being mutually separated from one another by at least one recessed surface that is lower than each bin support surface;

a fixed rack unit including a plurality of protrusions, each recessed surface of each remotely controllable carrier being low enough to accommodate and receive a protrusion of the plurality of protrusions of the fixed rack unit as the remotely controllable carrier is driven under the fixed rack unit,

a first paddle movably mounted on a first end of each remotely controllable carrier, said at least one paddle being actuatable to facilitate at least one of loading an object from the plurality of raised bin supports onto the plurality of protrusions of the fixed rack unit while the remotely controllable carrier is moved under the fixed rack unit; and unloading the object from the plurality of protrusions of the fixed rack unit to the plurality of raised bin supports while the remotely controllable carrier is moved under the fixed rack unit; and

a second paddle movably mounted on a second end of each of the plurality of remotely controllable carriers, said second end being opposite the first end, and being actuatable to facilitate at least one of loading an object from the plurality of raised bin supports onto the plurality of protrusions of the fixed rack unit while the remotely controllable carrier is moved under the fixed rack unit; and unloading the object from the plurality of protrusions of the fixed rack unit to the plurality of raised bin supports while the remotely controllable carrier is moved under the fixed rack unit.

Assignments (2)
MERGER AND CHANGE OF NAME Recorded Feb 1, 2022
From: BERKSHIRE GREY, INC.; BERKSHIRE GREY OPERATING COMPANY, INC.
To: BERKSHIRE GREY OPERATING COMPANY, INC.
Reel/Frame 058947/0548 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 15, 2021
From: WAGNER, THOMAS; AHEARN, KEVIN; AMEND, JOHN RICHARD, JR.; COHEN, BENJAMIN; DAWSON-HAGGERTY, MICHAEL; FORT, WILLIAM HARTMAN; GEYER, CHRISTOPHER; KING, JENNIFER EILEEN; KOLETSCHKA, THOMAS; KOVAL, MICHAEL CAP; MARONEY, KYLE; MASON, MATTHEW T.; MCMAHAN, WILLIAM CHU-HYON; PRICE, GENE TEMPLE; ROMANO, JOSEPH; SMITH, DANIEL; SRINIVASA, SIDDHARTHA; VELAGAPUDI, PRASANNA; ALLEN, THOMAS
To: BERKSHIRE GREY, INC.
Reel/Frame 057483/0067 →
Continuity (5)
Continuation 16171303 · Oct 25, 2018
Provisional Application 62578030 · Oct 27, 2017
Provisional Application 62641640 · Mar 12, 2018
Provisional Application 62681409 · Jun 6, 2018
Related Publication 20210362968A1 · Nov 25, 2021
Cited By (1)
US 12,254,443