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Wanjet Sprayer

Wanjet Sprayer

Crop protection only works when it actually lands on every plant the same way. The WanJet handles spray applications autonomously on your existing pipe rail, traveling at a calibrated speed with an engineered boom so the same treatment hits every row. Built in stainless steel and only 30cm wide, with flow and motion sensors that shut the robot down the second something goes wrong. Your team stays out of the spray zone.

For pricing and additional information, contact the AdeptAg Sales team.

Details

  • Consistent Coverage, Row After Row

    A handheld sprayer is only as consistent as the operator holding it. The WanJet moves at a fixed speed with a calibrated boom, applying spray dust evenly down the row with fewer missed spots.

    Keep Your Team Out of the Spray Zone

    Hand spraying puts an operator in every row, breathing whatever comes out of the wand. The WanJet runs the application autonomously, so your team is somewhere else doing other work.

    Built for the Greenhouse, Runs on Your Pipe Rail

    Stainless steel construction resists the chemicals it is designed to apply, and a smooth outer surface slides past plants without damaging foliage. At 30cm wide, it fits between rows on the standard pipe rail you already have.

    Spray Where You Need It, Skip Where You Do Not

    The robot can be set to spray only specific sections of its path, cutting the volume of spray liquid used on partial-coverage runs. Useful for spot treatments, edge rows, and any application that does not need a full pass.

    Simple Operator Controls

    The S55's onboard switch board has a main switch, an emergency stop, and four push buttons. Spray tip selection and water pressure control liquid output, and individual nozzles can be adjusted or closed by hand. No software training required.

    Fails Safe When Something Goes Wrong

    A flow switch and a rear-wheel rotation sensor monitor whether the robot is actually moving and actually spraying. If either drops out, the robot shuts down on its own and waits for conditions to return before resuming.

  • Specification Value
    Width 11.8″ (30 cm)
    Travel Speed  20 to 80 meters/min, digital speed regulation
    Pipe Rail Compatibility Track widths from 38 to 100 cm
    Construction Stainless steel, smooth outer surface
    Drive System Pipe rail compatible
    Power (S55) Maintenance-free sealed batteries
    Controls Computer-controlled with onboard switch board (main switch, emergency switch, 4 push buttons)
    Spray Boom Adjustable nozzle angle, individual nozzle shut-off
    Liquid Output Control Spray tip selection plus water pressure
    Safety Systems Rear-wheel rotation sensor, flow switch with automatic shutdown on flow loss

Questions?
We're here to help.

If you are running a production greenhouse with pipe rail infrastructure and currently doing spray applications by hand, the WanJet is the upgrade path. It is purpose-built for the narrow aisles and dense canopy of greenhouse production, not for outdoor field or high-tunnel applications. If you are not sure your layout is a fit, an AdeptAg specialist can confirm based on your bay geometry and rail configuration.
Most production pipe rail systems are compatible. The robot uses the standard rail your team already uses for harvest carts and other equipment. If you have non-standard rail or unusual bay layouts, we will confirm fit before installation.
The S55 has a switch board on the robot itself with a main switch, an emergency stop, and four push buttons. Operators do not need software training. Setup involves selecting spray tips and setting water pressure for the application, then sending the robot down the row.
Yes. The robot can be configured to spray only specific portions of its path, which is useful for spot treatments, edge passes, or scenarios where a full canopy application is not required. This typically reduces the volume of spray liquid used per run.
The robot shuts itself down automatically. A flow switch monitors liquid output continuously, and if it stops detecting flow, the robot stops moving and waits until pressure returns. You do not end up with a robot that traveled the whole bay without actually applying anything.

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