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FJD Trion Field Robotics

Turn site planning into autonomous execution 

FJD Trion Field robotics connects digital knowledge of a site with machines that can act on it. Instead of guiding equipment through every metre of work, teams capture the operating area, define the task and give the robot a plan it can follow.

The result is a repeatable way to automate outdoor work. Robots can execute planned routes, maintain consistent operating standards and handle recurring tasks while teams supervise progress and focus on the wider site.

Turn site planning into autonomous execution  

FJD Trion Field robotics connects digital knowledge of a site with machines that can act on it. Instead of guiding equipment through every metre of work, teams capture the operating area, define the task and give the robot a plan it can follow.

The result is a repeatable way to automate outdoor work. Robots can execute planned routes, maintain consistent operating standards and handle recurring tasks while teams supervise progress and focus on the wider site.

Built for teams ready to automate outdoor work

From sports facilities and public parks to parking areas and golf courses, field robotics helps teams turn recurring outdoor work into planned, repeatable robotic tasks.

Sports clubs & facility teams

Create and refresh field markings for regular matches, training sessions, tournaments and special events.

Schools & universities

Manage multiple sports, changing layouts and repeat marking across campuses and athletic facilities.

Municipalities & parks

Coordinate recurring field marking across public parks, recreation grounds and community sports facilities.                                 

Grounds & landscaping

Add autonomous line marking to professional grounds-management and landscaping services.

Parking Striping Companies

Plan new parking layouts, refresh existing lines and manage striping work around fixed site features.

Turf Management Teams

Map managed areas to support planned robotic mowing and coordinated turf-maintenance operations.

​How a physical site becomes an automated robot task

Capture the environment, establish its position and define the work digitally before sending clear instructions to the robot.

Step 1 : Capture the site

Use FJD Trion S2 Max to scan the site and record its existing geometry as 3D data. Capture the boundaries, surfaces and fixed features that the robot will need to work around.

Step 2: Position the site

Use the FJD Trion V4e Pro GNSS receiver to connect the captured data to its physical location. This creates the spatial reference between the digital map and the robot’s operating area.


Step 3 : Plan the task

Bring the captured and positioned data into FJD Trion Model. Map the operating area, establish boundaries and prepare the routes or layout required for the job.

At this stage, the site becomes more than a visual record. It becomes a world model that can be used to tell a robot where to work, where not to work and what path to follow.

Step 4: Deploy the robot

Send the approved task to a your FJD robot or fleet for execution. Using the routes, boundaries and instructions prepared in FJD Trion Model, the robot carries out the assigned work while the team monitors progress, manages exceptions and remains in control of the operation. 


What changes when work becomes autonomous

Reduce the labour, setup time, rework and equipment downtime behind recurring tasks while keeping every operation aligned with the same approved digital plan.

More Consistent Execution

Give recurring tasks a defined digital plan the robot can follow each time.

Less Repeated Setup

Reuse captured site data instead of rebuilding the operating area for every task.

More Time for the Wider Operation

Let the robot execute the planned task while the team focuses on supervision and other site work.

Check Before Deployment

Review routes, boundaries and instructions before the robot begins working.

What you need to get it done

適切なツールがあれば、作業の開始はより簡単に、実行はよりシンプルに、納品はより迅速になるからです。

Capture the Exact Site Conditions

FJD Trion S2 

S2 Max captures the operating area as detailed 3D data. It records the boundaries, surfaces and physical features needed to create a digital representation of the site before routes, work zones or robotic tasks are defined.

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Anchor the Digital Site to the Real World

FJD Trion V4e Pro 

V4e Pro provides the GNSS positioning reference that connects captured site data to its physical location. This keeps the digital map, planned task and robot’s operating area aligned within the same real-world coordinate system.

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Turn Your Data into a Plan

FJD Trion Model 

FJD Trion Model turns captured and positioned data into instructions a robot can use. Define operating boundaries, prepare routes, review the task and create the digital plan that guides the robot during execution.

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Portable Autonomous Marking for Sports Fields

FJD PaintMaster Mini 

PaintMaster Mini follows prepared digital layouts to mark supported sports fields autonomously. Its compact format makes it suitable for clubs, schools, facilities and contractors that need to transport the robot between smaller or distributed marking jobs.

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Professional Marking for Larger Field Operations

FJD PaintMaster 

PaintMaster Pro executes prepared marking layouts across larger or more demanding field operations. It is designed for professional grounds teams, contractors and organisations managing frequent work, multiple fields or higher-volume marking programmes.

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Robotic Striping for Parking Areas

FJD PaintMaster Parking 

PaintMaster Parking follows digitally prepared routes to apply supported layouts on hard surfaces. It is designed for parking operators and striping companies handling new stall layouts, existing-line repainting and sites shaped by kerbs, islands and other fixed features.

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  Choose the robot for the job

迅速なプロジェクト成果物が必要な場合でも、本格的な現場運用が必要な場合でも、FJD Trionは実世界のデータを実際の成果へとつなぐ手段を提供します。


PaintMaster Mini

PaintMaster Pro
Role
A flexible solution for small to medium-sized venues and lightweight line-marking tasks
A high-performance solution for professional sports venues and high-frequency line-marking operations
Weight
21.85 kg (48.2 lb)
73.4 kg (161.8 lb)
Paint tank capacity
8 L (2.1 gal)

20 L (5.3 gal), expandable to 25 L (6.6 gal) 

Line-marking speed
2 km/h (1.2 mph)
3 km/h (1.9 mph)
Line width range
5–12 cm (2.0–4.7 in.)
6–17 cm (2.4–6.7 in.)
Nozzle ground clearance
3–8 cm (1.2–3.1 in.)
3–11 cm (1.2–4.3 in.)

See FJD Trion Field Robotics at work with GolfMind

GolfMind brings this connected workflow to golf course maintenance, turning captured site data and planned mowing areas into autonomous work in the field. See how the complete solution helps turf management teams maintain large areas with greater consistency and less hands-on operation.

Explore GolfMind

Frequently asked questions

Learn how FJD Trion field robotics combines 3D site capture, GNSS positioning, world-model software and autonomous machines, and what to consider when choosing a workflow for line marking, mowing or other outdoor tasks.

Field robotics combines sensing, positioning, digital mapping and autonomous machines to perform work in outdoor or operational environments. The site is captured and modelled digitally, the task is defined in software, and a compatible robot follows the resulting routes, boundaries and instructions.

A robot-ready digital map represents the physical site and contains the boundaries, routes or work zones required for robotic execution. It gives the robot a defined operating area and helps teams review the task before the machine begins working.  

3D scanning captures the shape and physical features of the robot’s operating environment. The resulting site data can be used to identify boundaries, surfaces, obstacles and other conditions that must be considered when preparing the robotic task.

GNSS positioning connects captured site data to its real-world location. It helps keep the digital map, planned task and robot’s physical operating area aligned within the same coordinate reference.

A world model is a digital representation of the environment in which a robot will operate. It can contain site geometry, boundaries, routes, work zones and task instructions that help the robot understand where it should work and where it should not.

A complete workflow generally requires equipment for capturing the site, GNSS technology for positioning, software for preparing the task and a compatible robot for execution. The exact hardware and configuration depend on the environment and the work being automated.

The capture, positioning and task-planning process can support different robotic applications when the data, software and robot are compatible. The final machine might mark a sports field, stripe a parking area, mow turf or perform another task within the mapped environment.

FJD Trion Field Robotics can reduce repeated site setup, manual machine operation, avoidable rework and time spent recreating recurring tasks. Digitally saved sites and plans can also be reused, helping teams complete repeat operations with fewer labour-intensive preparation steps.

Start with the task, operating environment, site size and frequency of work. Then determine what site data, positioning method, planning software and robot are required. You can contact our specialists for a free technical consultation or on-site demonstration to confirm whether the proposed configuration suits the actual conditions.