See the operating space
3D LiDAR, depth camera, 360° vision, ultrasonic sensing, RTK GPS and IMU.
Autonomous electric carrier platform
ASSIST / NX—360
Move more. Send fewer people into risk.
A modular unmanned ground vehicle for carrying, towing and task-specific automation across farms, factories and difficult operating environments.

One platform. Multiple missions.
Carrier today.
Sprayer, tow vehicle or inspection robot tomorrow.
Platform architecture
Electric drive, onboard compute, sensor fusion and modular mechanical interfaces form one configurable base for different payloads and environments.
3D LiDAR, depth camera, 360° vision, ultrasonic sensing, RTK GPS and IMU.
ROS 2 autonomy, waypoint missions, obstacle avoidance and in-house ground control.
High-torque electric drive, steer-by-wire control and modular payload or towing interfaces.
Technology stack explorer
Select a layer to inspect the hardware, software and interfaces behind the platform.
Multiple sensing modalities provide complementary coverage for localisation, obstacle response and operator awareness.
Spatial point-cloud perception
Near-field scene understanding
Remote situational awareness
Close-range object detection
Outdoor positioning up to 5 cm
Heading, pitch and roll feedback
Operator in control
Direct operator control for loading, tight manoeuvres and commissioning.
Remote driving with live telemetry, camera feedback and vehicle health data.
Waypoint missions, obstacle detection and path planning for repeatable operations.
Beacon-assisted following for material movement and field support tasks.
Core specification
The ASSIST base platform balances useful payload, electric range and low-speed control for unstructured farm and industrial routes.
Interactive mission planner
Select an operating environment to see a recommended platform configuration and indicative mission profile.
Configure ASSIST for crop spraying, input transport, orchard logistics and modular farm attachments.
Interactive autonomy demo
Start the simulated route to see waypoint navigation, obstacle response and mission telemetry through a simplified ground-control view.
Operating-model comparison
A typical manual workflow requires an available operator, repeated trips, verbal coordination and separate reporting.
Illustrative operating-model comparison. Actual results depend on route, shift pattern, site controls and selected ASSIST configuration.
Application-specific business case
Choose an application first. Each model uses different operating assumptions and savings drivers.
AGR—ROI / Input assumptions
Indicative estimate only. Final savings, investment and payback require route timing, operating-cost evidence and site validation.
Guided pilot planner
Build an initial scope, then send the generated requirement directly to the Borse Automotive team.
Where ASSIST works
Carry tanks, tools and produce; support spraying, tillage, seeding and farm logistics through modular attachments.
Fields · Orchards · VineyardsExplore applicationMove material between stores, production lines and dispatch zones without committing a fixed conveyor route.
Plants · Warehouses · YardsExplore applicationKeep people farther from heat, chemicals, difficult terrain and repetitive high-risk transport tasks.
Inspection · Response · Remote workExplore applicationPlan a pilot
Share the route, load, terrain, operating hours and task. Borse Automotive will recommend the vehicle configuration, sensors, attachment and validation plan.
Phone+91 86006 24579Emailsales@borseautomotive.comDevelopment centreSR No. 4494/09, Behind Furniture Stop, Opposite Samarth Dies, Vilholi, Nashik, Maharashtra 422010, IndiaDiscuss your mission