DJI AGRAS T50 elevates drone agricultural operations to new heights. It inherits a powerful coaxial twin-rotor propulsion system and a split-type torque resistant structure for next level stability when carrying 40 kg spraying¹ or 50 kg spreading¹ payloads.DJI AGRAS T50 leverages a Dual Atomizing Spraying System, Front and Rear Phased Array Radars, and a Binocular Vision System. DJI AGRAS T50 excels across multiple scenarios, from surveying² to spraying and spreading, guaranteeing stable operations and steady performance.

*The appearance of the product is subject to the actual product.

Heavy Payload

40 kg spraying¹50 kg spreading¹

High Flow Rate

Spraying 16 L/min³Spreading 108 kg/min

Signal Stability

Offline operations2 km O3 TransmissionOptional DJI Relay

All Scenario Adaptability

Fully automatic and manual operationOrchard ModeVariable Rate Application

Multidirectional Obstacle Sensing

Multidirectional Obstacle AvoidanceTerrain Following up to 50°

Four Sprinkler Kit (Optional)

Reverse Directional Spray During Flight4-sprinkler spraying, flow rate 24 L/min³

Field Operations

21 hectares per hour⁸

Orchard Operations

4 hectares per hour⁹

Field Operations

1,500 kg of granules per hour¹⁰

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Spraying System

High Rate, Atomized Spray, Leak Free

DJI AGRAS T50's Dual Atomizing Spraying System provides an ultra-large flow rate of up to 16 L/min (2-sprinkler spraying). It produces uniform and fine spray droplets, and does not leak. DJI AGRAS T50 can be equipped with an additional pair of centrifugal sprinklers, increasing flow rate to 24 L/min (4-sprinkler spraying) for operations that require high application volume. When flying manually, use Reverse Directional Spray with four sprinklers to simplify operations without having to make turns.

Magnetic Drive Impeller Pump

Dual pump flow rate of up to 24 L/min[3]. This is a 100% increase compared with the previous generation, to meet demands of fields, orchards, and high-temperature environments.

Dual Atomizing Centrifugal Sprinklers

Droplet size can be adjusted between 50-500 μm, depending on the chemicals used.

Brand-New Solenoid Valves

Precision starting and stopping eliminates leaking.

DJI AGRAS T50 Spreading System

1,500 kg per hour¹⁰

DJI AGRAS T50's new spreader and spiral channel spinning disk significantly improve spreading efficiency and smoothness.

50 kg Payload[1]

75 L max capacity and an expanded loading gate for quick refills.

Smooth Spreading

The torque of the spreader is doubled and the discharge hatch is enlarged to enable a flow rate up to 108 kg/min[4].

Uniform Spreading

DJI AGRAS T50's spiral channel spinning disk makes spreading more uniform.

Low Rate Spreading

You can also switch to small hopper gates to improve spreading accuracy with a low flow rate.

Real-Time Weighing

DJI AGRAS T50 is equipped with a weighing sensor which allows you to monitor the remaining payload in real time.

Fast Disassembly and Cleaning

The spreader can be quickly disassembled and cleaned for easy maintenance.

Tested for reliability, durability, and safety

Spraying and spreading operations are frequent, intense, and take place in complex environments. DJI AGRAS T50 has passed hundreds of reliability tests and its main body is durable to help ensure safe operation.

Double your peace of mind
with Binocular Vision and Dual Radar

DJI AGRAS T50 is equipped with front and rear Active Phased Array Radars with double the number of RF channels[17] for higher detection precision. Together they enable Multidirectional Obstacle Sensing[6], elevating operating safety. Two sets of Binocular Vision sensors enable DJI AGRAS T50 to accurately sense terrain and depict obstacles in detail, for automatic obstacle bypassing[11] and Terrain Following[11] over steep slopes.

One drone for surveying[2], spraying, and spreading

DJI AGRAS T50 integrates aerial surveying[2], spraying, and spreading into a single drone. A high-resolution FPV gimbal camera enables real-time capture of field and orchard images. Paired with DJI RC Plus and RTK service, you can generate high definition maps which underpin subsequent automatic flight routes. DJI AGRAS T50 can take off and perform automatic operations, all at the push of a button.

Orchard Aerial Survey[2]

DJI AGRAS T50 supports obstacle bypassing and Terrain Following for surveying[2] of orchards on slopes up to 20°[5]. With DJI RC Plus and its real-time mapping capabilities, it can automatically identify fruit trees and obstacles. Based on the distribution of the fruit trees, it can generate accurate and fully automatic 3D flight routes.

5 hectare orchard mapped in 10 minutes[12]

Orchard 3D Map

Field Aerial Survey[2]

Area Route
13 hectare field mapped in 10 minutes[12]

Survey the entire field, automatically identify field boundaries and obstacles, and plan more precise flight routes.

Illustration

High Brightness Widescreen Remote Controller

DJI RC Plus has a 7-inch high brightness screen and an 8-core processor for smooth operations. Intelligent route planning minimizes distances flown with a full tank, greatly increasing operation efficiency. Manual mode allows you to control operations at will.

Illustration
Illustration

DJI Agras T50

The DJI Agras T30 agricultural drone, combined with a 30-litre spray tank and a maximum spray width of up to 9 metres, makes it a highly efficient spraying device. Its hourly performance on the job is 16 hectares per hour of flight, making it the current market leader in its category.

€ 999 982

  • Hourly operation efficiency

    15 acres

  • High-precision radar

    Spherical Omnidirectional Radar System

  • Remote control planning precision

    (RTK/GNSS)

  • Removing air from pipes

    One button Air Discharge

  • Total weight (without batteries)

    13 kg

  • Rated take-off weight

    24.8 kg (near sea level)

  • Hovering precision (with good GNSS signal)

    With D-RTK enabled:
    ±10 cm (horizontal) and ±10 cm (vertical)
    With D-RTK disabled:
    ±0.6m (horizontal) and ±0.3m (vertical)
    (with the radar function enabled: ±0.1 m)

  • RTK/GNSS frequency bands

    RTK: GPS L1/L2, GLONASS F1/F2, BeiDou B1/B2, and Galileo E1/E5GNSS: GPS L1, GLONASS F1, and Galileo E1

  • Maximum power consumption

    3,700 W

  • Total weight (without batteries)

    13 kg

  • Rated take-off weight

    24.8 kg (near sea level)

  • Hovering precision (with good GNSS signal)

    With D-RTK enabled:
    ±10 cm (horizontal) and ±10 cm (vertical)
    With D-RTK disabled:
    ±0.6m (horizontal) and ±0.3m (vertical)
    (with the radar function enabled: ±0.1 m)

  • RTK/GNSS frequency bands

    RTK: GPS L1/L2, GLONASS F1/F2, BeiDou B1/B2, and Galileo E1/E5GNSS: GPS L1, GLONASS F1, and Galileo E1

  • Maximum power consumption

    3,700 W

  • Total weight (without batteries)

    13 kg

  • Rated take-off weight

    24.8 kg (near sea level)

  • Hovering precision (with good GNSS signal)

    With D-RTK enabled:
    ±10 cm (horizontal) and ±10 cm (vertical)
    With D-RTK disabled:
    ±0.6m (horizontal) and ±0.3m (vertical)
    (with the radar function enabled: ±0.1 m)

  • RTK/GNSS frequency bands

    RTK: GPS L1/L2, GLONASS F1/F2, BeiDou B1/B2, and Galileo E1/E5GNSS: GPS L1, GLONASS F1, and Galileo E1

  • Maximum power consumption

    3,700 W

  • Total weight (without batteries)

    13 kg

  • Rated take-off weight

    24.8 kg (near sea level)

  • Hovering precision (with good GNSS signal)

    With D-RTK enabled:
    ±10 cm (horizontal) and ±10 cm (vertical)
    With D-RTK disabled:
    ±0.6m (horizontal) and ±0.3m (vertical)
    (with the radar function enabled: ±0.1 m)

  • RTK/GNSS frequency bands

    RTK: GPS L1/L2, GLONASS F1/F2, BeiDou B1/B2, and Galileo E1/E5GNSS: GPS L1, GLONASS F1, and Galileo E1

  • Maximum power consumption

    3,700 W

  • Total weight (without batteries)

    13 kg

  • Rated take-off weight

    24.8 kg (near sea level)

  • Hovering precision (with good GNSS signal)

    With D-RTK enabled:
    ±10 cm (horizontal) and ±10 cm (vertical)
    With D-RTK disabled:
    ±0.6m (horizontal) and ±0.3m (vertical)
    (with the radar function enabled: ±0.1 m)

  • RTK/GNSS frequency bands

    RTK: GPS L1/L2, GLONASS F1/F2, BeiDou B1/B2, and Galileo E1/E5GNSS: GPS L1, GLONASS F1, and Galileo E1

  • Maximum power consumption

    3,700 W

Contacts

Feel free to contact us for any business, media, or personal inquiries:

Agro Copter s. r. o.
IČO: 55 408 508

Address

Nevädzová 17211/6FBratislava - mestská časť Ružinov 821 01

Hours

Monday - Saturday: 11 AM - 9 PMSunday: 11 AM - 7 PM

Contacts

+421 918 617 448orp.retpocorga%40eciffo

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*The appearance of the product is subject to the actual product.[1] Data was measured at sea level. The payload weight is greatly affected by the ambient temperature and altitude. The take-off payload weight needs to be reduced by 10 kg for every 1,000 m increase in altitude. The DJI Agras app will recommend the payload weight according to the current status and surroundings of the aircraft. When adding materials, the maximum weight should not exceed the recommended value, otherwise flight safety may be compromised.[2] RTK is required.[3] Maximum spraying flow rate with two sprinklers is 16 L/min. Maximum spraying flow rate with four sprinklers is 24 L/min.[4] Data measured with 4 mm diameter urea. The maximum flow rate may vary depending on the granule size, density, and surface smoothness of different fertilizers.[5] To ensure a high success rate of surveying and mapping, DJI AGRAS T50 can automatically adjust its flight speed based on the hill slope. The steeper the slope, the slower its speed.[6] The effective sensing range and its ability to avoid and bypass obstacles will vary depending on the ambient light, rain, fog, and the material, position, shape, and other properties of the obstacles. It is recommended that linear objects such as wires or inclined lines be planned as obstacles. Downward sensing is used for Terrain Follow and Altitude Stabilization. The sensing in other directions is used for Obstacle Avoidance.Note: Downward sensing is used to assist in terrain follow and altitude stabilization. Any collision between the bottom of the aircraft and obstacles shall be the customer’s responsibility. In case of any damage caused to the aircraft because it fails to bypass obstacles (except for linear obstacles) while flying at a speed lower than 10m/s, the logs will be analyzed to determine the responsibility, and free repairs will be provided if the failure is caused by an aircraft issue. In the event of linear obstacles such as power lines and stay wires on utility poles, please mark them as obstacles, otherwise the failure to bypass the obstacles would be the customer's responsibility.[7] Charging from 30% to 95%. Factors impacting charging time: Altitude of the charging station; Charging cable meets requirements for fast charging; Battery cell's temperature is in the range of 15° to 70° C (59° to 158° F)[8] Data was measured with the DJI AGRAS T50 and may vary based on operating environment and parameters. Flight parameters for this test: Dosage of 15 L/ha, spraying width of 11 m, flight speed of 7 m/s, and height of 3 m.[9] Data was measured with the DJI AGRAS T50 and may vary based on operating environment and parameters. Flight parameters for this test: Dosage of 90 L/ha, spraying width of 4 m, flight speed of 4 m/s, and height of 3 m.[10] Data was measured with urea and may vary by granule type, operating environment, and parameters. Spreading parameters for this test: Dosage of 225 kg/ha, spreading width of 8 m, flight speed of 10 m/s, height of 4 m, and spinning disk speed of 1,000 r/min.[11] Obstacle Bypassing is supported in the forward direction. Obstacle Bypassing features are not supported at night or in low light environments. Fly with caution. Obstacle Bypassing is not recommended around electric or guy wires.[12] Refers to the mapping time after completing the aerial survey. Time varies depending on the firmware version, type of aerial survey, and other factors.[13] Measured at a flight altitude of 2.5 meters, without obstruction or electromagnetic interference.[14] Batteries are covered by warranty for up to 1,500 charging cycles or 12 months, whichever ends first.[15] Compared with third-party general-purpose generators equipped with a smart charger.[16] To achieve fast charging, the C10000 Intelligent Charger, the C8000 Intelligent Charger, the generator, or utility output power must use the fast-charging connection method that meets the requirements.[17] Compared with T40 Omnidirectional Active Phased Array Radar.[18] Generator only available in selected countries and regions. Please contact your local dealer for more details.