A portable fluid tank mounts on seed cart supports to hold agricultural liquids and accessories.
Actuators generate counter-vibrations to cancel forward oscillations, maintaining consistent application rates.
Sensor fusion corrects low-cost gyroscope drift to maintain uniform spray application across varying crop fields.
A dual sump storage tank positions separate collection zones at the front and rear to maintain continuous fluid extraction during operation.
Pivoting the discharge disc assembly controls spread patterns to reduce material waste and fuel costs.
Electronic control adjusts damping elements on agricultural spreader bars to stabilize the distributor linkage during operation.
Spraying elements switch between row-targeted and broadcast patterns to reduce herbicide waste in unplanted field areas.
Fluidic actuators and sensors maintain nozzle distance on uneven terrain.
Varying plate thickness in a boxed plate frame reduces weight and fabrication time compared to heavy ladder-style configurations.
A liquid dispensing system delivers fertilizer through dribble hoses near plant roots.
Sensors detect vehicle inclination and terrain variations while actuators adjust the boom position to ensure uniform application quality.
A nozzle uses a screen inlet and basket insert to create coarse droplets at low speed.
Laser scanners generate terrain models to preset boom angles, reducing collision risk.
Dynamic support structure compensates for vehicle movements to ensure uniform fertilizer distribution.
Segmented nozzle arrays and electrostatic charging reduce chemical drift while maintaining uniform droplet size across varying environmental conditions.
A double shoot opener delivers seed and fertilizer through separate passages to opposite sides of a central body.
A GNSS and IMU control system maintains precise implement height using real-time sensor fusion.
A plastic tank safety valve uses elasticity to open during negative pressure and a spring mechanism for overpressure.
Individually controllable outlet valves on the distribution manifold prevent seed bed destruction by stopping delivery to raised soil-engaging members.
A liquid holding tank uses a flexible bladder to compartmentalize storage chambers within an agricultural vehicle chassis.
Ozone injection cleans sprayer plumbing and tanks, reducing water consumption and eliminating depot visits for chemical removal.
A drag hose bandage system bundles trailing hoses into a rigid support profile to simplify field sprayer boom assemblies.
Segmented fluid storage reduces chemical waste while the universal frame supports multiple sprayer configurations via dynamic mounting.
Sprinkler irrigation schedules water application by growth stage, reducing consumption by 75% compared to flooded methods.
Lateral boom displacement corrects vehicle path deviations, preventing missed or overlapped turf areas without complex automatic steering systems.
An automatic locking mechanism prevents accidental spillage on uneven terrain.
Dynamic crop shields adjust laterally to bend overhanging canopies, exposing soil for targeted herbicide spraying while preventing overspray damage.