IP Library Granted Patent US 11,272,655
Granted Patent B2
US 11,272,655 · App. 17/171,953 · Granted Mar 15, 2022

Modular smart implement for precision agriculture

Inventors: Jeffrey L. Antle (Salinas, CA); Steven T. Snyder (Salinas, CA); Austin J. Larick (Salinas, CA)
Assignee: Stout Industrial Technology, Inc.
A01B71/02A01B63/002A01B63/008A01B63/10A01B79/005A01M21/02G06K9/00657G06K9/627
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Quick Facts
Patent No.
US 11,272,655
App. No.
17/171,953
Granted
Mar 15, 2022
Kind
B2
Abstract

An illustrative modular smart implement for precision agriculture includes a chassis having a hydraulic system, a control system, and articulating tool arms that are adapted to releasably receive one of a tool attachment for working a crop and/or field, including precision planting, cultivating, thinning, spraying, harvesting, and/or data collection. A toolbar fixed to the chassis receives and supports the articulating tools arms. An alignment member and side shift actuator provide movement of a portion of the tool arms along an axis parallel to a longitudinal axis of the toolbar, and a lift actuator provide movement along a vertical axis.

Claims (72)

1. An implement for receiving and operating a plurality of agricultural tools, at least one of the plurality of agricultural tools supported by a tool arm, comprising:

a chassis;

a toolbar fixed to and spanning at least a portion of the width of the chassis, the toolbar for receiving and supporting the tool arm;

an alignment member operably coupled to the chassis and the tool arm to provide movement of only a first portion of the tool arm along an axis parallel to a longitudinal axis of the toolbar, the second portion of the tool arm remaining fixed relative to the toolbar;

a side shift actuator coupled to the alignment member to translate the alignment member; and

a control system in communication with the side shift actuator to control movement of the alignment member and the first portion of the tool arm, thereby aligning the plurality of agricultural tools along the axis parallel to the longitudinal axis; and

wherein the weight of the tool arm and the plurality of agricultural tools is fully supported by the toolbar.

2. The implement of claim 1 , further comprising a plurality of wheels for supporting the chassis.

3. The implement of claim 2 , further comprising an odometer coupled to one of the chassis and at least one of the plurality of wheels, the odometer in communication with the control system.

4. The implement of claim 2 , further comprising:

a hitch receiver coupled to the chassis and including at least three points of connection; and

a lift sensor coupled to the chassis and in communication with the control system; and

wherein upon the lift sensor detecting lifting of the chassis via the hitch interface, the control system enter a transit mode and operates the side shift actuator to center the alignment member with the chassis and pausing a crop working operation of the plurality of agricultural tools.

5. The implement of claim 2 , further comprising:

a chassis pitch actuator; and

a power-take-off driven hydraulic pump; and

wherein:

at least a first one of the plurality of wheels is coupled to the chassis pitch actuator to adjust a pitch of the chassis relative to a working surface of a field; and

the hitch interface is configured to isolate pitch and roll of a vehicle coupled to the hitch interface from the pitch and roll of the chassis.

6. The implement of claim 2 , wherein at least a pair of the plurality of wheels includes an adjustable wheelbase span.

7. The implement of claim 1 , further comprising:

a chassis frame, the chassis frame including the toolbar; and

a plurality of safety stands each including a strut and a support, the strut pivotably coupled to the support; and

wherein:

the toolbar defines a tube; and

at least two of the plurality of safety stands are slidably received by and stored within opposite ends of the tube of the toolbar when not in use.

8. The implement of claim 7 , wherein the pair of safety stands are operable to slidably extend the struts from an end of the toolbar with the support remaining coupled to the struts, at least a portion of the supports remaining within the toolbar, and the struts rotate vertically downward to support the chassis frame on the ground.

9. The implement of claim 1 , wherein the tool arm further comprises:

a mounting structure coupled to the toolbar; and

an articulating base movably coupled to the mounting structure and further coupled to the alignment member to enable translation of the articulating base along an axis parallel to the longitudinal axis of the toolbar; and

a tool attachment platform coupled to the articulating base; and

wherein:

the tool attachment platform operably receives and supports at least one of the plurality of agricultural tools,

the first portion of the tool arm includes the articulating base and tool attachment platform, and

the second portion of the tool arm includes the mounting structure.

10. The implement of claim 9 , wherein the toolbar bears all weight of the mounting structure, the articulating base, the tool attachment platform, and the one of the plurality of agricultural tools when the one of the plurality of agricultural tools is not in contact with a working surface of a field, and the alignment member bears none of the weight.

11. The implement of claim 9 , further comprising a threaded rod coupled between opposites sides of the chassis, parallel to the longitudinal axis of the toolbar, and wherein: the mounting structure interfaces with the threaded rod to provide adjustment of a mounting location of the mounting structure along a length of the toolbar; and the articulating base and the mounting structure are movably coupled with at least one linear motion bearing.

12. The implement of claim 9 , further comprising a backbone member movably coupled to the articulating base to enable translation along an axis perpendicular to the toolbar; and wherein the tool attachment platform is coupled to the backbone member.

13. The implement of claim 12 , further comprising at least a pair of linkages movably coupling the backbone member and the articulating base, and wherein the at least a pair of linkages, the backbone member, and the articulating base comprise a four-bar linkage enabling vertical translation of the backbone member relative to the toolbar.

14. The implement of claim 13 , further comprising a lift actuator coupled with the four-bar linkage, the lift actuator controlled by the control system for controlling vertical movement of the backbone member and operating the one of the plurality of agricultural tools.

15. The implement of claim 14 , further comprising a hydraulic system, and wherein:

the lift actuator includes a hydraulic actuator having a first hydraulic port operable with hydraulic pressure to bias or translate the backbone member vertically upward and a second hydraulic port operable with hydraulic pressure to bias or translate the backbone member vertically downward;

the hydraulic system provides a selected regulated pressure to second hydraulic port; and

the hydraulic system provides a variable pressure to the first hydraulic port, the variable pressure controlled by the control system to maintain a vertical position of the one of the plurality of agricultural tools relative to a working surface.

16. The implement of claim 15 , further comprising a ground following member including a lever rotationally coupled to the backbone member and a sensor for sensing the rotational position of the lever, the sensor in communication with the control system, thereby adjusting the variable pressure provided to the first hydraulic port to control the vertical height of the backbone member and associated one of the plurality of agricultural tools relative to the working surface of the field, based at least in part on position data received by the control system from the sensor.

17. The implement of claim 12 , further comprising a ground following member for contacting and following a working surface of a field.

18. The implement of claim 17 , wherein the ground following member includes a mechanical stop to limit a range of downward movement of the backbone member and the one of the plurality agricultural tools relative to the working surface of the field.

19. The implement of claim 17 , wherein the ground following member includes a lever pivotably coupled to the backbone member and a sensor, the sensor in communication with the control system and providing ground following member position data to the control system to control a vertical height of the backbone member and the one of the plurality of agricultural tools relative to the working surface of the field.

20. An implement for receiving and operating a plurality of agricultural tools, comprising:

a chassis;

a toolbar fixed to and spanning at least a portion of the width of the chassis, the toolbar for receiving and supporting the plurality of agricultural tools;

an alignment member operably coupled to the chassis and the plurality of agricultural tools to provide movement of a portion of each of the plurality of agricultural tools along an axis parallel to a longitudinal axis of the toolbar;

a side shift actuator coupled to the alignment member to translate the alignment member;

a control system in communication with the side shift actuator to control movement of the portion of each of the plurality of agricultural tools;

a plurality of wheels for supporting the chassis;

a hitch receiver coupled to the chassis and including at least three points of connection; and

a lift sensor coupled to the chassis and in communication with the control system; and

wherein:

the weight of the plurality of agricultural tools is fully supported by the toolbar; and

upon the lift sensor detecting lifting of the chassis via the hitch interface, the control system enter a transit mode and operates the side shift actuator to center the alignment member with the chassis and pausing a crop working operation of the plurality of agricultural tools.

21. An implement for receiving and operating a plurality of agricultural tools, comprising:

a chassis;

a toolbar fixed to and spanning at least a portion of the width of the chassis, the toolbar for receiving and supporting the plurality of agricultural tools;

an alignment member operably coupled to the chassis and the plurality of agricultural tools to provide movement of a portion of each of the plurality of agricultural tools along an axis parallel to a longitudinal axis of the toolbar;

a side shift actuator coupled to the alignment member to translate the alignment member;

a control system in communication with the side shift actuator to control movement of the portion of each of the plurality of agricultural tools;

a chassis frame, the chassis frame including the toolbar; and

a plurality of safety stands each including a strut and a support, the strut pivotably coupled to the support; and

wherein:

the weight of the plurality of agricultural tools is fully supported by the toolbar;

the toolbar defines a tube; and

at least two of the plurality of safety stands are slidably received by and stored within opposite ends of the tube of the toolbar when not in use.

Assignments (1)
NUNC PRO TUNC ASSIGNMENT Recorded Feb 3, 2022
From: ANTLE, JEFFREY L.; SNYDER, STEVEN T.; LARICK, AUSTIN J.
To: STOUT INDUSTRIAL TECHNOLOGY, INC.
Reel/Frame 058880/0134 →
Continuity (4)
Provisional Application 63074544 · Sep 4, 2020
Provisional Application 62972641 · Feb 10, 2020
Provisional Application 62971991 · Feb 9, 2020
Related Publication 20210243937A1 · Aug 12, 2021
Cited By (1)
US 12,279,540