Preparing the published article.
DJI (SZ DJI Technology Co., Ltd.): Agricultural and Professional Aerial Systems
DJI supplies Agras farming drones, FlyCart delivery aircraft and enterprise aerial systems. Review current configurations, a Brazilian farming case and deployment requirements.
DJI's professional aerial robotics portfolio
DJI supplies aircraft, imaging equipment and associated software for agricultural, delivery and enterprise missions. Its official policy identifies SZ DJI Technology Co., Ltd. and affiliated companies. For a commercial deployment, the contracting seller and local support organization should be specified separately from the DJI brand.
This profile covers professional aerial workflows. Agras crop treatment, FlyCart cargo movement and dock-based observation have different aircraft, payloads, staffing and commissioning requirements. Select a system around the work to be completed and the operating site.
Current Agras systems and configuration boundaries
On 1 July 2026 DJI announced Agras T55 and the T100 Dual Battery Spraying System. The release describes a 50 L spraying tank for T55 and a 90 L tank for the T100 dual-battery spraying configuration. Sales availability varies by country and region. These configurations should be distinguished from the earlier T100 launch specifications.
The T55 support page separates standard centrifugal nozzles from optional mist nozzles and standard from optional nozzle quantities. It also lists different batteries and takeoff weights. Specify the actual battery, spraying or spreading equipment, charging system and lift package rather than combining maximum figures from different setups.
Delivery and dock-based observation are separate systems
FlyCart 100 was launched globally on 4 December 2025 for aerial cargo operations, alongside DJI Delivery App and DeliveryHub. Its payload and range depend on configuration and test conditions. Obtain the current mission-specific load chart, including battery redundancy, route reserve and payload attachment, instead of using a headline lifting maximum as a routine route commitment.
DJI Dock 3 supports the Matrice 4D series for remotely managed missions. A dock installation involves aircraft compatibility, siting, power, connectivity and maintenance access. Agricultural spray tanks and FlyCart delivery equipment are not interchangeable with this observation system.
Build the operating and data workflow
For farming, plan the field boundary, crop, application objective, refill locations and battery turnaround. Separate the responsibilities for mission planning, piloting, material preparation and field records. Application quality must be assessed against the chosen crop and material; an automated route does not itself establish agronomic suitability.
For inspection or delivery, define the required images or cargo handover, ground access and recovery arrangements. DJI's Payload SDK documentation provides a development route for supported equipment. Confirm aircraft, firmware, interface and application compatibility before budgeting an integration. Agree who owns flight logs, derived datasets and software accounts.
A Brazilian soybean case with an older aircraft
A DJI case study published on 16 January 2025 describes Danilo Bordini's Agras T40 use in Cambé, Paraná, Brazil, following adoption in 2023. The account describes a three-person team covering piloting, chemical preparation and battery charging. It provides a practical example of the ground organization behind drone spraying.
This is manufacturer-reported evidence for T40 in a particular farming operation. It does not establish results for T55, a T100 dual-battery system or another crop. A procurement assessment should request representative field records and measure coverage quality, intervention time and total ground-support effort locally.
Validate the proposed mission before scaling
Run a representative trial with the intended aircraft and equipment. Record productive flight time, refilling, charging, setup, weather interruptions and recovery. Test the actual terrain, obstacles and landing area. Define acceptance around completed work and usable output rather than flight time alone.
Ask the operator and dealer to confirm the permissions, qualifications and operating restrictions applicable to the location and mission. Include third-party access to the site and a documented response to lost communications or a cancelled flight. Product availability and automated functions do not establish permission for every planned operation.
Specify a complete procurement package
Request a written regional quotation covering the aircraft, payload systems, batteries, charging or generating equipment, controller, software and training. Include consumables, transport equipment, repair turnaround and replacement-aircraft arrangements where needed. The official T55 download center separates operating manuals, lift equipment, nozzle packages and component warranty information.
Confirm local service support, software entitlement and the cost of maintaining the proposed duty cycle. A farm or delivery contractor should compare equipment ownership with a managed service using the same work specification. No universal price or productivity guarantee follows from the product launch material.
Prepare an aerial robotics buyer brief
Explore Agricultural, Aerial & Underwater Robots and Write a Robotics Buyer Brief stating the site, mission, work volume, payload and required outputs. Use Robotics RFQ to request comparable equipment and deployment proposals.
Research reviewed: 10 September 2026. Zhilianhai provides source-based research and enquiry routing. This profile is not a supplier endorsement, quotation or purchase commitment.

