IP Library › Granted Patent US 10,568,256
Granted Patent B2
US 10,568,256 · App. 15/795,396 · Granted Feb 25, 2020

Seeding system

Inventors: Michael E. Frasier (Iowa City, IA); Scott C. McCartney (Bettendorf, IA)
Assignee: DEERE & COMPANY
A01C7/06A01C7/081A01C7/082A01C7/084A01C15/00B65G53/04B65G53/46B65G53/60A01C7/102A01C15/04
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Quick Facts
Patent No.
US 10,568,256
App. No.
15/795,396
Granted
Feb 25, 2020
Kind
B2
Abstract

A seed metering system includes a volumetric meter and a plurality of row units. Each and every one of the plurality of row units includes a singulating meter, a bypass conduit, and an outlet that is common to and downstream of the singulating meter and the bypass conduit. The seed metering system further includes a dispersion unit including an inlet and a plurality of outlets and operable to disperse the plurality of seeds from the volumetric meter to the plurality of row units. The seed metering system is operable in a first mode of operation in which the volumetric meter communicates with each singulating meter via the dispersion unit to singulate the plurality of seeds. The seed metering system is operable in a second mode of operation in which the volumetric meter communicates with each bypass conduit via the dispersion unit such that the plurality of seeds are not singulated.

Claims (30)

1. A seed metering system for selectively metering a plurality of seeds, the seed metering system comprising:

a volumetric meter;

a plurality of row units, wherein each and every one of the plurality of row units comprises

a singulating meter in selective communication with the volumetric meter,

a bypass conduit in selective communication with the volumetric meter, and

an outlet that is common to and downstream of the singulating meter and the bypass conduit; and

a dispersion unit including an inlet and a plurality of outlets and operable to disperse the plurality of seeds from the volumetric meter to the plurality of row units,

wherein the seed metering system is operable in a first mode of operation in which the volumetric meter communicates with each singulating meter via the dispersion unit to singulate the plurality of seeds, and

wherein the seed metering system is operable in a second mode of operation in which the volumetric meter communicates with each bypass conduit via the dispersion unit such that the plurality of seeds is not singulated.

2. The seed metering system of claim 1 , wherein each row unit further comprises a seed sensor positioned at the outlet and operable to detect the plurality of seeds in the first mode and in the second mode.

3. The seed metering system of claim 1 , wherein each one of the plurality of row units includes a valve located upstream of the singulating meter and the bypass conduit, and located downstream of the volumetric meter, the valve operable to switch from a first position in the first mode to a second position in the second mode.

4. The seed metering system of claim 3 , wherein the valve is located downstream of the dispersion unit.

5. The seed metering system of claim 3 , wherein each one of the plurality of row units further comprises a mini-hopper located downstream of the valve and upstream of the singulating meter.

6. The seed metering system of claim 1 , wherein each one of the plurality of row units further comprises a mini-hopper operably positioned between the dispersion unit and the respective singulating meter.

7. The seed metering system of claim 1 , wherein the outlet common to and downstream of the singulating meter and the bypass conduit is configured to discharge seeds to a furrow.

8. The seed metering system of claim 1 , further comprising a fan operable to generate an airflow into the inlet of the dispersion unit.

9. The seed metering system of claim 1 , wherein each row unit is connected to a different outlet of the plurality of outlets of the dispersion unit.

10. A seed metering system for selectively metering a plurality of seeds, the seed metering system comprising:

a storage tank;

a plurality of row units, wherein each and every one of the plurality of row units comprises

a singulating meter in selective communication with the storage tank,

a bypass conduit in selective communication with the storage tank, and

an outlet that is common to and downstream of the singulating meter and the bypass conduit; and

a dispersion unit including an inlet and a plurality of outlets and operable to disperse the plurality of seeds from the storage tank to the plurality of row units,

wherein the seed metering system is operable in a first mode of operation in which the storage tank communicates with each singulating meter via the dispersion unit to singulate the plurality of seeds, and

wherein the seed metering system is operable in a second mode of operation in which the storage tank communicates with each bypass conduit via the dispersion unit such that the plurality of seeds is not singulated.

11. The seed metering system of claim 10 , wherein each row unit further comprises a seed sensor positioned at the outlet and operable to detect the plurality of seeds in the first mode and the second mode.

12. The seed metering system of claim 10 , wherein each one of the plurality of row units includes a valve located upstream of the singulating meter and the bypass conduit, and located downstream of the storage tank, the valve operable to switch from a first position in the first mode to a second position in the second mode.

13. The seed metering system of claim 10 , wherein each one of the plurality of row units further comprises a mini-hopper operably positioned downstream of the dispersion unit and upstream of the singulating meter.

14. The seed metering system of claim 10 , wherein the outlet common to and downstream of the singulating meter and the bypass conduit is configured to discharge seeds to a furrow.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 29, 2017
From: FRASIER, MICHAEL E.; MCCARTNEY, SCOTT C.
To: DEERE & COMPANY
Reel/Frame 044505/0792 →
Continuity (2)
Continuation 14871653 · Sep 30, 2015
Related Publication 20180049366A1 · Feb 22, 2018
Cited By (1)
US 12,745,693