IP Library Granted Patent US 11,524,403
Granted Patent B2
US 11,524,403 · App. 16/793,902 · Granted Dec 13, 2022

Vacuum-based end effector for engaging parcels

Inventors: Josiah Douglas (Louisville, KY); Kurt Michael Wittmer (Louisville, KY); Michael Alan McCue (Louisville, KY); David W. Caldwell, II (Louisville, KY); Gregory Robert Sturm (Simpsonville, KY); Derek Robert Sturm (Louisville, KY); Thomas Anthony Hillerich, Jr. (Louisville, KY)
Assignee: Material Handling Systems, Inc.
B25J9/1669B25J15/0683B25J15/0691B25J19/02B25J19/021B25J19/026B65G47/917B65G2201/0285B65G2203/042B65G2203/044
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Quick Facts
Patent No.
US 11,524,403
App. No.
16/793,902
Granted
Dec 13, 2022
Kind
B2
Abstract

A vacuum-based end effector for engaging parcels includes a base plate, one or more vacuum cups of a first type, and one or more vacuum cups of a second type. Each vacuum cup of the vacuum-based end effector is configured to be placed in fluid communication with a vacuum source to provide the vacuum cup with a suction force which can be used to engage and grasp parcels. Each vacuum cup includes a bellows defining a pathway for a flow of air and a lip connected to the bellows. Each lip of the one or more vacuum cups of the first type comprises a foam lip, and each lip of the one or more vacuum cups of the second type comprises an elastomeric lip. The vacuum-based end effector can be combined with a robot to provide an improved system for engaging parcels.

Claims (49)

1. A vacuum-based end effector, comprising:

a base plate;

one or more vacuum cups of a first type connected to the base plate and configured to be placed in fluid communication with a vacuum source, each vacuum cup of the one or more vacuum cups of the first type including

a bellows defining a pathway for a flow of air, the bellows having a proximal end operably connected to the base plate and a distal end, and

a foam lip connected to the distal end of the bellows; and

one or more vacuum cups of a second type connected to the base plate and configured to be placed in fluid communication with the vacuum source, each vacuum cup of the one or more vacuum cups of the second type including

a bellows defining a pathway for a flow of air, the bellows having a proximal end operably connected to the base plate and a distal end, and

an elastomeric lip connected to the distal end of the bellows.

2. The vacuum-based end effector as recited in claim 1 , wherein the foam lip is comprised of a foam rubber.

3. The vacuum-based end effector as recited in claim 1 , wherein the elastomeric lip is comprised of silicone.

4. The vacuum-based end effector as recited in claim 1 , and further comprising:

a vacuum sensor operably connected to at least one vacuum cup.

5. The vacuum-based end effector as recited in claim 1 , and further comprising:

one or more proximity sensors, each of the one or more proximity sensors being configured to detect the presence of a parcel relative to the vacuum-based end effector.

6. The vacuum-based end effector as recited in claim 5 , wherein the one or more proximity sensors comprises at least one photoelectric sensor.

7. The vacuum-based end effector as recited in claim 5 , wherein the one or more proximity sensors comprises at least one ultrasonic sensor, the at least one ultrasonic sensor being configured to detect an amount of compression of at least one vacuum cup.

8. The vacuum-based end effector as recited in claim 1 , wherein the one or more vacuum cups of the first type and the one or more vacuum cups of the second type are adjustably connected to the base plate.

9. The vacuum-based end effector as recited in claim 1 , wherein the one or more vacuum cups of the first type comprises a first plurality of vacuum cups, and wherein the one or more vacuum cups of the second type comprises a second plurality of vacuum cups.

10. The vacuum-based end effector as recited in claim 9 , wherein the first plurality of vacuum cups and the second plurality of vacuum cups are arranged in an alternating configuration around a perimeter of the base plate.

11. The vacuum-based end effector as recited in claim 9 , wherein at least one of the first plurality of vacuum cups and the second plurality of vacuum cups includes a vacuum cup connected to a center area of the base plate.

12. The vacuum-based end effector as recited in claim 9 , and further comprising:

multiple vacuum sensors, with each vacuum cup of the first plurality of vacuum cups and each vacuum cup of the second plurality of vacuum cups being operably connected to one of the multiple vacuum sensors.

13. A system for engaging parcels, comprising:

a robot; and

an end effector operably connected to the robot, the end effector including

a base plate,

one or more vacuum cups of a first type connected to the base plate and configured to be placed in fluid communication with a vacuum source, each vacuum cup of the one or more vacuum cups of the first type including

a bellows defining a pathway for a flow of air, the bellows having a proximal end operably connected to the base plate and a distal end, and

a foam lip connected to the distal end of the bellows, and

one or more vacuum cups of a second type connected to the base plate and configured to be placed in fluid communication with the vacuum source, each vacuum cup of the one or more vacuum cups of the second type including

a bellows defining a pathway for a flow of air, the bellows having a proximal end operably connected to the base plate and a distal end, and

an elastomeric lip connected to the distal end of the bellows.

14. The system for engaging parcels as recited in claim 13 , and further comprising:

one or more sensors; and

a controller operably connected to each sensor of the one or more sensors and the robot, the controller including a processor for executing instructions stored in a memory component to (i) receive and analyze data received from the one or more sensors to locate a parcel, and (ii) communicate instructions to the robot which causes the robot to move the end effector toward the parcel.

15. The system for engaging parcels as recited in claim 14 , wherein each sensor of the one or more sensors is configured to acquire data corresponding to at least one of positioning of the parcel, pneumatic engagement with the parcel, and an amount of vacuum cup compression.

16. A system for engaging parcels, comprising:

a robot; and

an end effector operably connected to the robot, the end effector including

a base plate,

one or more vacuum cups connected to the base plate and configured to be placed in fluid communication with a vacuum source,

one or more vacuum sensors, each vacuum cup of the one or more vacuum cups being operably connected to a vacuum sensor of the one or more vacuum sensors,

a photoelectric sensor attached to the base plate, the photoelectric sensor being configured to detect the presence of a parcel relative to the end effector, and

an ultrasonic sensor attached to the base plate, the ultrasonic sensor being configured to detect an amount of compression of at least one vacuum cup of the one or more vacuum cups.

17. The system for engaging parcels as recited in claim 16 , and further comprising:

a controller operably connected to each of the one or more vacuum sensors, the photoelectric sensor, the ultrasonic sensor, and the robot, the controller including a processor for executing instructions stored in a memory component to (i) receive and analyze data received from the one or more vacuum sensors, the photoelectric sensor, and the ultrasonic sensor, and (ii) communicate instructions to the robot which causes the robot to move the end effector toward the parcel.

18. The system for engaging parcels as recited in claim 16 , wherein the one or more vacuum cups includes:

a first vacuum cup including a foam lip; and

a second vacuum cup including an elastomeric lip.

Assignments (5)
SECURITY INTEREST Recorded Jul 10, 2026
From: FORTNA INC.; FORTNA EQUIPMENT, LLC; FORTNA SYSTEMS, INC.
To: WILMINGTON SAVINGS FUND SOCIETY, FSB
Reel/Frame 075234/0044 →
SECURITY INTEREST Recorded Apr 10, 2025
From: FORTNA SYSTEMS, INC.
To: ARES AGENT SERVICES, L.P., AS ADMINISTRATIVE AND COLLATERAL AGENT
Reel/Frame 070795/0675 →
CHANGE OF NAME Recorded Nov 14, 2024
From: MATERIAL HANDLING SYSTEMS, INC.
To: FORTNA SYSTEMS, INC.
Reel/Frame 069361/0776 →
SECURITY INTEREST Recorded Jun 1, 2022
From: OPTRICITY CORPORATION; MHS EQUIPMENT, LLC; MATERIAL HANDLINGS SYSTEMS, INC.; MHS CONVEYOR CORP.
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 060075/0344 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 18, 2020
From: DOUGLAS, JOSIAH; WITTMER, KURT MICHAEL; MCCUE, MICHAEL ALAN; CALDWELL, DAVID W., II; STURM, GREGORY ROBERT; STURM, DEREK ROBERT; HILLERICH, THOMAS ANTHONY, JR.
To: MATERIAL HANDLING SYSTEMS, INC.
Reel/Frame 051850/0279 →
Cited By (1)
US 12,678,938