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Aerosmart UAV Trading L.L.C. is a tech company that specialises in drones and solutions in the UAE and across the GCC.

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DJI Agras T50

Overview

The Agras T50 sits at the serious end of the agricultural drone spectrum built for operators who need high-capacity output across large, demanding environments without compromising on stability or control. A coaxial twin-rotor propulsion system combined with a split-type torque-resistant frame keeps the aircraft steady at 40 kg spray payloads and 50 kg spreading payloads, even when wind and terrain push back. Front and rear phased array radars, a dual atomizing spray system, and binocular vision sensors work together to support the full range of precision agriculture operations surveying, spraying, spreading across the kind of varied conditions that commercial farming in the region actually involves.

Heavy Payload

40 kg spraying, 50 kg spreading

High Flow Rate

Spraying 16 L/min, Spreading 108 kg/min

Signal Stability

Offline operations, 2 km O3 Transmission, Optional DJI Relay

All Scenario Adaptability

Fully automated routes, hands-on manual control, dedicated orchard mode, and variable rate application settings built in as standard.

Multidirectional Obstacle Sensing

Multidirectional Obstacle Avoidance Terrain Following up to 50°

Four Sprinkler Kit (Optional)

Reverse Directional Spray During Flight, 4-sprinkler spraying, flow rate 24 L/min
Field Operations
Spreading Operations

Spraying System: High Rate, Atomized Spray, Leak Free

Two atomizing centrifugal sprinklers deliver a consistent 16 L/min output with tight droplet distribution and a fully sealed system nothing drips, nothing misdirects. When the job calls for higher volume coverage, the optional four-sprinkler configuration pushes total flow to 24 L/min and broadens the spray width across each pass. For manual flight operations specifically, the four-sprinkler setup supports reverse directional spray meaning the aircraft can apply product on both the outward and return leg without stopping to turn, which cuts time significantly on plots where automated routes aren’t the best fit.

Magnetic Drive Impeller Pump

Dual pump output reaches 24 L/min double the capacity of the previous generation. The magnetic drive construction eliminates contact seals between the pump mechanism and the liquid path, which removes the corrosion failure point that conventional pump designs encounter after sustained exposure to agrochemicals. Performance holds across open field work, orchard applications, and the elevated temperatures that characterise field operations across the Gulf.

Dual Atomizing Centrifugal Sprinklers

Droplet output adjusts across a 50–500 μm range, giving operators direct control over particle size based on the chemical formulation, application rate, and crop structure in play. Dialling down to finer droplets pushes penetration into dense canopy. Coarser settings cover open field applications efficiently without unnecessary drift.

Brand-New Solenoid Valves

The solenoid valves shut with precision at the end of every spray pass. No residual drip, no trailing application past the field boundary just a clean stop that keeps chemical use accurate and avoids the compliance problems that come with off-target deposition.

DJI AGRAS T50 Spreading System: 1,500 kg per hour

The T50’s spreading system was redesigned at the mechanism level rather than incrementally adjusted. A spiral channel spinning disk works alongside a reworked spreader body to push both throughput consistency and output smoothness beyond what the previous generation could sustain. At 1,500 kg per hour across full field operations, it’s built for the kind of scale where small inefficiencies in distribution compound into significant coverage problems by the end of a session.

50 kg Payload

5 L hopper capacity with a widened loading gate that makes bulk refills practical in the field. Less time between runs means the throughput advantage of 108 kg/min actually translates to the productivity numbers the spec promises.

Smooth Spreading

Doubling the spreader torque alongside an enlarged discharge hatch removes the mechanical bottleneck that limits flow rate on smaller systems. The result is a sustained 108 kg/min output consistent across the full hopper load rather than peaking at the start and tapering as material levels drop.

Uniform Spreading

The spiral channel spinning disk controls how material exits the system and how it distributes across the spread width. Instead of bunching near the centre or tailing off at the edges, granulars land evenly from the first pass through to the last which matters when the crop you’re treating needs consistent coverage to respond consistently.

Low Rate Spreading

Switching to smaller hopper gate settings brings the flow rate down for crops or materials that require low-volume precision application. The mechanism stays accurate at reduced output it doesn’t sacrifice distribution quality to achieve lower throughput, which is the failure point for systems not designed to operate across the full flow range.

Real-Time Weighing

An onboard weighing sensor tracks granular payload throughout the operation and displays remaining weight live on the controller. Operators know exactly when to return for a refill rather than estimating by flight time or guessing from application area which tightens usage accuracy and reduces the risk of running dry mid-field.

Fast Disassembly and Cleaning

The spreader breaks apart without tools for post-session cleaning or material changeovers. For operations running multiple granular types across a day, or switching from fertiliser to seed between plots, quick disassembly keeps the turnaround time realistic rather than a bottleneck in the workflow

Tested for reliability, durability, and safety

Commercial agricultural drone operations run hard frequent cycles, chemical exposure, field dust, heat, and the kind of rough handling that comes with real-world logistics rather than demonstration conditions. The T50 went through hundreds of structured reliability tests covering the stress profiles that actually shorten a working drone’s operational life. The airframe and core systems are built to absorb that environment across a full season without requiring constant maintenance intervention or premature component replacement.

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