Abstract:
A seed drill (FIG. 1 ) having a frame (1 ) with knife hoes (7 ) mounted thereon. The knife hoes are movable in a vertical plane and each has two laterally projecting wings (8 ) bent downwardly toward one another; the outer edges of the wings merge forwardly together to form a point. Each knife hoe has an upright strut (13 ) supporting the leading point of the knife. Further, each knife hoe is disposed on a shank (9 ) which is mounted on the frame with parallel guide means (10 ). The parallel guide means has at least one articulation (19 ) acting in a vertical plane, a stop (21 ) limiting forward swinging movement of the knife hoe about the articulation, and at least one resilient element (22 ) exerting a force on the knife hoe in the direction of the stop. The drill further includes a gauge wheel (16 ) for each knife hoe to limit the depth of penetration of the knife hoe into the soil.
Abstract:
A mounting assembly for an agricultural product meter includes an upper mount configured to support at least a portion of a weight of the agricultural product meter. The upper mount is configured to couple to a support structure. The mounting assembly also includes a pin configured to engage the agricultural product meter via movement of the pin along a longitudinal axis of the pin. In addition, the mounting assembly includes a lower mount configured to selectively receive the pin via movement of the pin along the longitudinal axis of the pin. The lower mount is configured to couple to the support structure, and the pin is configured to block movement of the agricultural product meter away from the support structure while the pin is engaged with the agricultural product meter and the lower mount.
Abstract:
A soil apparatus (e.g., seed firmer) having a locking system is described herein. In one embodiment, the soil apparatus includes a lower base portion for engaging in soil of an agricultural field, an upper base portion, and a neck portion having protrusions to insert into the lower base portion of a base and then lock when a region of the upper base portion is inserted into the lower base portion and this region of the upper base portion presses the protrusions to lock the neck portion to the upper base portion.
Abstract:
A seed pod deployer is provided comprising a body having a hopper adapted to contain a plurality of seed pods; a feeder adapted to transfer the seed pods from the hopper to a nozzle; a launcher adapted to receive the seed pods from the nozzle, the launcher comprising a pair of flywheels and at least one motor adapted for driving the pair of flywheels; and a control system adapted for controlling the operation of the seed pod deployer.
Abstract:
A seeding apparatus includes an implement frame and front and rear frame members are pivotally mounted to the implement and furrow openers mounted to each. In an operating position the front and rear furrow openers are engaged in the ground and separated by an operating distance, and can be raised to an idle position where the furrow openers are above the ground and the front and rear furrow openers are separated by an idle distance that is greater than the operating distance. The implement frame has an inner wing pivotally attached to a center frame, and an outer wing pivotally attached to the inner wing. The inner wing section pivots upward and the outer wing section pivots downward supported by a transport wheel. When in the transport position the inner and outer wing sections extend upward from the center frame section and the transport wheel is above the ground.
Abstract:
A lower planting arm of a row unit. The lower planting arm includes a first linkage arm. The lower planting arm also includes a second linkage arm parallel with the first linkage arm. The lower planting arm also includes a first bracket fixedly engaging with the first linkage arm and the second linkage arm at a first position. The lower planting arm also includes a second bracket fixedly engaging with the first linkage arm and the second linkage at a second position opposite to the first position. Each of the first bracket and the second bracket of the lower planting arm is adapted to operably engage with an actuating device of the row unit.
Abstract:
A system is provided for measuring soil properties. The system includes at least one sensor coupled to a row unit of an agricultural implement and a camera coupled to the row unit of the agricultural implement. The at least one sensor is configured to measure at least one soil property of soil worked by the row unit and/or of soil in a trench opened by an opening assembly of the row unit. And, the camera is arranged, on the row unit, to capture images of the soil worked by the row unit and/or the trench opened by the opening assembly of the row unit.
Abstract:
A seed meter for metering a plurality of seeds includes a seed meter housing defining a seed inlet, a seed outlet, and a chamber therebetween, a hub rotatably mounted to the seed meter housing about a rotational axis and extending from a first end positioned within the chamber of the seed meter housing to a second end positioned outside of the seed meter housing, a metering element mounted to the hub within the chamber, a plurality of drain apertures located in the seed meter housing adjacent to the hub, and a handle mounted to the second end of the hub, the handle extends over the plurality of drain apertures in an axial direction parallel to the rotational axis of the hub.
Abstract:
A system includes a motor, a memory storing instructions and at least one controller configured to execute the instructions to cause the system to obtain at least one message over a network, the at least one message indicating a target position for a rotor of the motor and a target time associated with the target position, determine a position command and a speed command based on the target position and the target time, and control the motor based on the position command and the speed command.