IP Library Granted Patent US 12,616,081
Granted Patent B2
US 12,616,081 · App. 17/636,674 · Granted May 5, 2026

High precision greenhouse seed and seedling treatment

Inventors: Jamie Rickard (Oftringen, CH); Christophe Lupfer (Basel, CH); Christoph Grimm (Basel, CH)
Assignee: SYNGENTA CROP PROTECTION AG
A01C11/025A01C1/06A01G7/06
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Quick Facts
Patent No.
US 12,616,081
App. No.
17/636,674
Granted
May 5, 2026
Kind
B2
Abstract

An apparatus and a method for treating and transplanting plant propagation materials into a cultivation medium, including: a. providing a plurality of plant-receiving cavities in the cultivation medium; b. providing the plant propagation materials in a reservoir; c. removing from the reservoir container and separating out plant propagation materials, and d. orienting the separated-out plant propagation materials in a position upwardly of the cavity, and e. releasing the plant propagation material from the orientation position into the associated plant-receiving cavity, and f. selectively applying a dressing composition aliquot to a surface of the plant propagation material while it is moving towards the plant-receiving cavity.

Claims (45)

1 . An apparatus for automatically treating and transplanting plant propagation materials from a reservoir to a plurality of plant-receiving cavities in a cultivation medium, comprising:

a. one or more of plant-receiving cavity-creating means mounted on the apparatus and selectively operable for forming a plurality of laterally spaced-apart plant-receiving cavities; and

b. a separating device comprising a device operable for selectively engaging surfaces of the plant propagation materials, and for separating out and placing them substantially vertically above the plant-receiving cavities, wherein each separating device includes a manipulator for engaging and holding the plant propagation material substantially aligned along a horizontal and a vertical axis while the plant propagation material is displaced downwardly for insertion into a plant-receiving cavity; and

c. a dressing application device configured to selectively apply an aliquot of a dressing composition to the separated plant propagation materials,

wherein the dressing application device is configured to apply the aliquot to the separated plant propagation materials while it is displaced downwardly in free fall for insertion into a plant-receiving cavity, wherein the plant propagation materials are seedlings or seedling plugs suitable as plant propagation materials, wherein the dressing application device comprises:

i. a sensor array comprising at least one sensor for measuring the trajectory of the plant propagation materials while free-falling,

ii. a controller for calculating the trajectory from the data received from the sensor array; and for coordinating and applying the dressing composition; and

iii. an outlet device for dispensing an aliquot of the dressing composition selectively onto the plant propagation materials during free-falling.

2 . The apparatus according to claim 1 , further comprising at least one dressing storage assembly comprising at least one dressing reservoir comprising the at least one agricultural compound and at least one additional component for forming the dressing composition for application, or the dressing composition, in fluid connection with the dressing application device; and preferably, a diluent reservoir for a diluent suitable for diluting the at least one agricultural compound and the at least one additional component to form a dressing composition in applicable state.

3 . The apparatus according to claim 1 , further comprising a mixing control unit configured and operable to adapt the dressing composition by controlling the flow of the dressing composition and/or diluent to obtain a dressing composition to an application state, and/or to a state and composition suitable for one or more environmental conditions, and/or the specific plant propagation material.

4 . The apparatus according to claim 1 , wherein the application device is configured as a structurally independent unit and is arranged underneath the separating device in a free-falling path of the separated plant propagation materials.

5 . The apparatus according to claim 1 , wherein the application device comprises a triggerable application nozzle.

6 . The apparatus according to claim 5 , wherein a plurality of sensors, which detect the transverse position of the plant propagation materials within the sensor shaft, are arranged in the sensor shaft, and wherein the controller is configured to calculate individually the time delay for each plant propagation material taking into account the transverse position of the material.

7 . The apparatus according to claim 1 , wherein the application device has two or more application nozzles, by means of which one, two or more dressing compositions can be applied to the separated plant propagation materials.

8 . The apparatus according to claim 1 further comprising a cartridge assembly comprising one or more cartridges that each are separate from the reservoir, and wherein each cartridge comprises a different or identical dressing premix or application state dressing composition, wherein the application device is configured to apply the dressing from the one or more cartridges to the separated plant propagation materials after they leave the separating device while the plant propagation materials fall toward the underlying agricultural surface, wherein preferably, the one or more cartridges are each connected to a nozzle from a plurality of nozzles, through which the dressing can be applied from the cartridge to the plant propagation materials.

9 . The apparatus according to claim 8 , wherein the cartridge assembly comprises at least one removable cartridge comprising the at least one agricultural compound and the at least one additional component, and a computer-readable unit having information stored therein, the dispensing assembly comprising:

a) a controller unit;

b) a dispensing unit in communication with the controller unit and configured for generating a fluid supply flow to the application device; and

c) an interface unit in communication with the controller unit, the interface unit being configured to interface the computer-readable unit of the cartridge and to at least retrieve the information stored therein; wherein the dispensing unit is responsive to the information stored on the computer-readable unit and retrieved therefrom.

10 . An apparatus for automatically treating and transplanting plant propagation materials from a reservoir to a plurality of plant-receiving cavities in a cultivation medium, comprising:

a. one or more of plant-receiving cavity-creating means mounted on the apparatus and selectively operable for forming a plurality of laterally spaced-apart plant-receiving cavities;

b. a separating device comprising a device operable for selectively engaging surfaces of the plant propagation materials, and for separating out and placing them substantially vertically above the plant-receiving cavities, wherein each separating device includes a manipulator for engaging and holding the plant propagation material substantially aligned along a horizontal and a vertical axis while the plant propagation material is displaced downwardly for insertion into a plant-receiving cavity; and

c. a dressing application device configured to selectively apply an aliquot of a dressing composition to the separated plant propagation materials,

wherein the dressing application device is configured to apply the aliquot to the separated plant propagation materials while it is displaced downwardly in free fall for insertion into a plant-receiving cavity, wherein the plant propagation materials are seedlings or seedling plugs suitable as plant propagation materials,

the apparatus further comprising at least one sensor array comprising one or more sensors to detect each separated plant propagation material output from the reservoir, the at least one sensor configured and operable for detecting the passage of the material through a sensor shaft, and a controller to trigger the application device to apply the dressing composition on the basis of signal output by the at least one sensor, and optionally, one or more of the following:

d. a valve operatively controlled by the controller;

e. the sensor shaft being open at both ends, and wherein the application device is arranged in such a way that the separated plant propagation materials fall through the sensor shaft on their path from the separating device to the underlying surface and into the cavity; and

f. an application nozzle for the dressing composition configured to apply a defined quantity of dressing composition to the plant propagation material after having fallen through the sensor shaft, once the material is outside the sensor shaft, wherein the application device has a controller which cooperates with the at least one sensor, the controller bringing about the triggering of the application nozzle in accordance with sensor signals generated by the at least one sensor, in order to apply the dressing composition to the plant propagation material.

11 . The apparatus according to claim 10 , wherein at least two sensors for detecting the passage of a material through the sensor shaft are arranged one after the other along the sensor shaft, in the falling direction of the plant propagation materials, wherein the controller is configured to calculate, on the basis of the sensor signals of the at least two sensors, a time delay after which it brings about the triggering of the application nozzle.

12 . The apparatus according to claim 11 , wherein the application nozzle is configured to eject, each time it is triggered, a defined quantity of dressing along a spraying trajectory, wherein the controller is configured to calculate the position of an impact location at which the spraying trajectory and the fall line of the plant propagation material to which dressing is applied intersect, and wherein the controller is configured to calculate the time delay on the basis of the position of the impact location and the rate of fall of the plant propagation material, and preferably, wherein the application nozzle is oriented such that its spraying trajectory intersects the fall lines of the plant propagation material at an acute angle, more preferably of from 30° to 60°.

13 . An apparatus for automatically treating and transplanting plant propagation materials from a reservoir to a plurality of plant-receiving cavities in a cultivation medium, comprising:

a. one or more of plant-receiving cavity-creating means mounted on the apparatus and selectively operable for forming a plurality of laterally spaced-apart plant-receiving cavities; and

b. a separating device comprising a device operable for selectively engaging surfaces of the plant propagation materials, and for separating out and placing them substantially vertically above the plant-receiving cavities, wherein each separating device includes a manipulator for engaging and holding the plant propagation material substantially aligned along a horizontal and a vertical axis while the plant propagation material is displaced downwardly for insertion into a plant-receiving cavity; and

c. a dressing application device configured to selectively apply an aliquot of a dressing composition to the separated plant propagation materials,

wherein the dressing application device comprises:

a. a sensor array comprising at least one sensor for measuring the trajectory of the plant propagation materials while free-falling,

b. a controller for calculating the trajectory from the data received from the sensor array;

and for coordinating and applying the dressing composition; and

c. an outlet device for dispensing an aliquot of the dressing composition selectively onto the plant propagation materials during free-falling.

14 . An apparatus for automatically treating and transplanting plant propagation materials from a reservoir to a plurality of plant-receiving cavities in a cultivation medium, comprising:

a. one or more of plant-receiving cavity-creating means mounted on the apparatus and selectively operable for forming a plurality of laterally spaced-apart plant-receiving cavities; and

b. a separating device comprising a device operable for selectively engaging surfaces of the plant propagation materials, and for separating out and placing them substantially vertically above the plant-receiving cavities, wherein each separating device includes a manipulator for engaging and holding the plant propagation material substantially aligned along a horizontal and a vertical axis while the plant propagation material is displaced downwardly for insertion into a plant-receiving cavity;

c. and a dressing application device configured to selectively apply an aliquot of a dressing composition to the separated plant propagation materials; and

d. at least one sensor array comprising one or more sensors to detect each separated plant propagation materials output from the reservoir, the at least one sensor configured and operable for detecting the passage of the material through a sensor shaft, and a controller to trigger the dressing application device to apply the dressing composition on the basis of signal output by the at least one sensor,

wherein at least two sensors for detecting the passage of a material through the sensor shaft are arranged one after the other along the sensor shaft, in the falling direction of the plant propagation materials, wherein the controller is configured to calculate, on the basis of the sensor signals of the at least two sensors, a time delay after which it brings about the triggering of the application nozzle.

Assignments (2)
MERGER Recorded Jul 31, 2024
From: SYNGENTA PARTICIPATIONS AG
To: SYNGENTA CROP PROTECTION AG
Reel/Frame 068139/0538 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 18, 2022
From: RICKARD, JAMIE; LUPFER, CHRISTOPHE; GRIMM, CHRISTOPH
To: SYNGENTA PARTICIPATIONS AG
Reel/Frame 059301/0192 →
Priority Claims (1)
EP 19192906 · Aug 21, 2019 · regional
Continuity (1)
Related Publication 20220272892A1 · Sep 1, 2022
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