IP Library Granted Patent US 11,814,246
Granted Patent B2
US 11,814,246 · App. 17/313,549 · Granted Nov 14, 2023

Bin infeed and removal 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.
B65G1/0471B65G1/0492B65G1/065B65G1/1375B65G67/02B07C5/361B07C5/38B07C2301/0091B25J9/106B25J9/162B25J9/1687B61B13/00B61D3/00B61D9/00B65G1/026B65G1/0478B65G1/0485B65G1/08B65G1/1371B65G1/1373B65G1/1378B65G9/002B65G9/008B65G37/00B65G41/02B65G47/48B65G47/902B65G47/904B65G47/96B65G65/005B65G65/23B65G2201/0258B65G2203/0216B65G2203/044B65G2811/0678B65G2814/0346G05B19/0428G05B19/41815G05B19/41895G05B2219/24001G05B2219/40078G05B2219/40252G05D2201/0216
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Quick Facts
Patent No.
US 11,814,246
App. No.
17/313,549
Granted
Nov 14, 2023
Kind
B2
Abstract

A bin exchange system is disclosed that includes a plurality of automated carriers, each of which is adapted to be remotely movable on an array of track sections, at least one input station by which bins may be introduced to the array of track sections, at least one processing station in communication with the array of track sections wherein objects may be moved between bins, and at least one output station by which bins may be removed from the array of track sections.

Claims (39)

1. An object processing system comprising:

a plurality of automated carriers providing movement about a planar work surface of a plurality of containers on container support portions of the plurality of automated carriers;

at least one conveyance system positioned above the planar work surface; and

an exchange system for moving containers between an automated carrier of the plurality of automated carriers and the at least one conveyance system, said exchange system including at least one belted conveyor extending between the work surface and the at least one conveyance system and control means for controlling a speed of at least one of the belted conveyor and the automated carrier to cause the speed of the belted conveyor to be similar to that of the automated carrier.

2. The object processing system as claimed in claim 1 , wherein each of said automated carriers includes at least one actuatable paddle.

3. The object processing system as claimed in claim 2 , wherein the control means further actuates the at least one actuatable paddle to urge a container from a container support portion of an engaged automated carrier to the at least one belted conveyor.

4. The object processing system as claimed in claim 2 , wherein the control means further actuates the at least one actuatable paddle to urge a container from the at least one belted conveyor to a container support portion of an engaged automated carrier.

5. The object processing system as claimed in claim 1 , wherein each automated carrier includes a pair of mutually opposing actuatable paddles.

6. The object processing system as claimed in claim 5 , wherein each of the pair of mutually opposing actuatable paddles moves rotationally.

7. The object processing system as claimed in claim 5 , wherein each of the pair of mutually opposing actuatable paddles moves both vertically and horizontally.

8. The object processing system as claimed in claim 5 , wherein each of said automated carriers includes at least one centering plate for further containing a container of the plurality of containers on each automated carrier.

9. The object processing system as claimed in claim 5 , wherein each of said automated carriers includes a pair of mutually opposing centering plates.

10. The object processing system as claimed in claim 1 , wherein each automated carrier includes a pair of mutually opposing actuatable wheels.

11. An object processing system comprising:

a plurality of automated carriers providing movement about a planar work surface of a plurality of containers on container support portions of the plurality of automated carriers, each of said plurality of automated carriers including at least one actuatable paddle;

at least one conveyance system positioned above the planar work surface; and

an exchange system for moving containers between an automated carrier of the plurality of automated carriers and the at least one conveyance system, said exchange system including at least one belted conveyor extending between the work surface and the at least one conveyance system and control means for actuating the at least one actuatable paddle to urge a container from a container support portion of an engaged automated carrier to the at least one belted conveyor.

12. The object processing system as claimed in claim 11 , wherein a speed of the at least one belted conveyor is controlled to be similar to a speed of the engaged automated carrier.

13. The object processing system as claimed in claim 11 , wherein a speed of the engaged automated carrier is controlled to be similar to a speed of the at least one belted conveyor.

14. The object processing system as claimed in claim 11 , wherein the control means further actuates the at least one actuatable paddle to urge a container from the at least one belted conveyor to a container support portion of an engaged automated carrier.

15. The object processing system as claimed in claim 11 , wherein each automated carrier includes a pair of mutually opposing actuatable paddles.

16. The object processing system as claimed in claim 15 , wherein each of the pair of mutually opposing actuatable paddles moves rotationally.

17. The object processing system as claimed in claim 15 , wherein each of the pair of mutually opposing actuatable paddles moves both vertically and horizontally.

18. The object processing system as claimed in claim 15 , wherein each of said automated carriers includes at least one centering plate for further containing a container of the plurality of containers on each automated carrier.

19. The object processing system as claimed in claim 15 , wherein each of said automated carriers includes a pair of mutually opposing centering plates.

20. The object processing system as claimed in claim 11 , wherein each automated carrier includes a pair of mutually opposing actuatable wheels.

21. An object processing system comprising:

a plurality of automated carriers providing movement about a planar work surface of a plurality of containers on container support portions of the plurality of automated carriers, each of said plurality of automated carriers including at least one actuatable paddle;

at least one conveyance system positioned above the planar work surface; and

an exchange system for moving containers between an automated carrier of the plurality of automated carriers and the at least one conveyance system, said exchange system including at least one belted conveyor extending between the work surface and the at least one conveyance system and control means for actuating the at least one actuatable paddle to urge a container from at least one belted conveyor to a container support portion of an engaged automated carrier.

22. The object processing system as claimed in claim 21 , wherein a speed of the at least one belted conveyor is controlled to be similar to a speed of the engaged automated carrier.

23. The object processing system as claimed in claim 21 , wherein a speed of the engaged automated carrier is controlled to be similar to a speed of the at least one belted conveyor.

24. The object processing system as claimed in claim 21 , wherein the control means further actuates the at least one actuatable paddle to urge a container from a container support portion of an engaged automated carrier to the at least one belted conveyor.

25. The object processing system as claimed in claim 21 , wherein each automated carrier includes a pair of mutually opposing actuatable paddles.

26. The object processing system as claimed in claim 25 , wherein each of the pair of mutually opposing actuatable paddles moves rotationally.

27. The object processing system as claimed in claim 25 , wherein each of the pair of mutually opposing actuatable paddles moves both vertically and horizontally.

28. The object processing system as claimed in claim 25 , wherein each of said automated carriers includes at least one centering plate for further containing a container of the plurality of containers on each automated carrier.

29. The object processing system as claimed in claim 25 , wherein each of said automated carriers includes a pair of mutually opposing centering plates.

30. The object processing system as claimed in claim 21 , wherein each automated carrier includes a pair of mutually opposing actuatable wheels.

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 Jul 1, 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 056730/0657 →
Continuity (5)
Continuation 16171310 · Oct 25, 2018
Provisional Application 62681409 · Jun 6, 2018
Provisional Application 62641640 · Mar 12, 2018
Provisional Application 62578030 · Oct 27, 2017
Related Publication 20210253378A1 · Aug 19, 2021
Cited By (4)
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