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Agricultural Technology

Custom Battery Systems for Electric and Robotic Lawn Mowers

Custom robotic lawn mower battery pack solutions engineered around traction and blade loads, mowing-area targets, slope conditions, docking and charging behaviour, temperature exposure and cycle frequency.

MACHINE-BASED DEFINITION

Start With the Mower, Terrain and Cutting Cycle

Rated motor power alone does not define the battery. Grass density, blade engagement, traction on slopes, turning, obstacle handling, auxiliary electronics, mowing time and recharge or swap workflow all change the energy, current and thermal requirements.

WHAT TO DEFINE

Inputs for the First Lawn-mower Battery Review

A representative current log or field cycle is ideal. For a new platform, the first definition can combine motor-controller data, target area and documented terrain assumptions.

01

Machine & Cutting Target

Robotic, walk-behind, ride-on or commercial platform, target mowing area or runtime, cutting width, blade system and operating schedule.

02

Electrical Load Profile

System voltage, blade and traction motors, cruise current, engagement and stall peaks, auxiliary loads, peak duration and controller cutoffs.

03

Terrain & Environment

Slope, ground resistance, grass conditions, ambient temperature, vibration, shock, dust, moisture, washdown and storage exposure.

04

Pack & Charging Workflow

Fixed or removable pack, available envelope, mass and balance, retention, connector, dock or charger, turnaround time and service access.

ENGINEERING CONSIDERATIONS

Cutting Load, Traction and Outdoor Operation Drive the Design

The battery must sustain the normal cutting cycle and tolerate short high-load events without excessive voltage sag, heat or nuisance protection. Cell capability, BMS limits, packaging and charging should be coordinated with the mower controls.

01

Duty-cycle Energy

Translate mowing area, cutting time, blade load, traction, turns and auxiliary consumption into usable energy with an appropriate operating reserve.

02

Peak Current & Protection

Evaluate blade engagement, dense grass, acceleration, slopes and short stall events against cell, interconnect and BMS limits.

03

Mechanical & Environmental Design

Coordinate module placement, retention, vibration isolation, connectors, sealing, drainage, dust control, thermal path and service access.

04

Machine & Charger Interface

Define voltage limits, SOC indication, alarms, contactor or wake behavior, CAN or other communication and fixed, removable or dock-charging logic.

MACHINE-SPECIFIC BATTERY DEFINITION

Parameters Defined From Terrain, Cutting Load and Charging Workflow

No fixed reference configuration is published on this page yet. The battery is engineered for the target equipment; voltage, capacity, continuous and peak current, charging, BMS logic, communication, protection rating and mechanical interfaces can be customized. Final specifications are subject to the approved project definition. Lawn-mower battery sizing must include blade load, traction, slope, grass condition, route or cutting area, docking and outdoor exposure.

Project parameterHow it is defined
System voltage & energyDefined from the equipment voltage window, duty cycle, runtime or autonomy target and reserve. Continuous current | Defined from sustained operating loads and the required thermal margin. Peak current & duration | Defined from startup, acceleration, actuator or fault events with an explicit pulse duration. Charging interface | Defined from charger or power-source voltage, current, connector, control and recharge window. BMS & communication | Protection, sensing, SOC/SOH and CAN, RS485, RS232 or application-specific interfaces as required. Protection & environment | Ingress, vibration, shock, temperature, storage and corrosion requirements are assigned from the real operating environment. Mechanical integration | Enclosure, mounting, connector, cabling, service access and replacement method are developed around the equipment. Customization note | No fixed reference configuration is published on this page yet. The battery is engineered for the target equipment; voltage, capacity, continuous and peak current, charging, BMS logic, communication, protection rating and mechanical interfaces can be customized. Final specifications are subject to the approved project definition.

VALIDATION & FIELD READINESS

Validate With Representative Cutting and Charging Cycles

Bench capacity is only one part of acceptance. The sample should be evaluated in the machine across expected terrain, cutting loads, environmental conditions and charging behavior.

01

Electrical & Thermal Bench Test

Confirm energy, peak-power response, voltage sag, protection thresholds, charging, communication and temperature rise.

02

Machine Integration Test

Check fit, retention, connector and cable access, controller startup, blade engagement, traction peaks, SOC reporting and fault handling.

03

Representative Mowing Trial

Run the target cutting area or duty cycle across expected grass and slope conditions while recording energy use, current and temperature.

04

Production Release

Freeze the approved pack, charger and interface configuration, environmental checks, acceptance criteria and production tests.

FROM CUTTING CYCLE TO RELEASED PACK

One Engineering Definition Across Battery and Mower

Stellova converts the mower, terrain and operating workflow into battery requirements, coordinates electrical, BMS and mechanical interfaces, defines validation and carries the accepted configuration into controlled production.

View the Engineering Process ↗

DISCUSS YOUR LAWN-MOWER PROJECT

Share the Mower, Terrain and Runtime Requirements

Send the mower type, motor and controller data, voltage, cutting-area or runtime target, blade and traction loads, slopes and grass conditions, battery space, charging method, environmental exposure, communication needs and target quantity.

Discuss Your Project ↗