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AMR BATTERY SYSTEMS

Custom AMR Battery Solutions

Stellova develops autonomous mobile robot battery systems and each custom AMR battery pack around route duty cycle, payload, peak traction demand, fleet availability and charging windows. An opportunity charging battery strategy is coordinated with the robot, charger and operating schedule.

AMR APPLICATION CHALLENGES

AMR Runtime Depends on the Mission Profile—not Capacity Alone

An AMR battery must support the full operating pattern: travel distance, payload, acceleration, turning, lifting or conveyor loads, idle consumption, shift length and charging opportunities. Average power alone can understate motor and actuator peaks, while an oversized pack can create unnecessary weight and integration constraints.

RECOMMENDED BATTERY DEFINITION

Define the Pack Around the AMR, Charger and Fleet Schedule

The recommended architecture is established from measured or documented equipment inputs. The items below are design decisions, not a universal AMR specification.

01

Energy and reserve

Calculate usable energy from the route, payload, auxiliary loads, shift target and required operating reserve.

02

Peak-load capability

Capture acceleration, grade, lifting and other transient loads, including pulse duration and repetition.

03

Charging strategy

Match plug-in, docking or opportunity charging to fleet availability, charger limits and acceptable downtime.

04

BMS and host interface

Define protection, SOC/SOH reporting and RS485, RS232 or CAN integration where required by the AMR controller.

AMR-SPECIFIC ENGINEERING

The Battery Must Work With Fleet Operation and Docking Behavior

AMR battery design is an equipment-integration task. Route variability, payload changes, repeated motor peaks, docking frequency and installation constraints must be reviewed together.

01

Mission variability

Use representative routes and payloads rather than a single best-case runtime estimate.

02

Transient loads

Verify peak current, duration and recovery for acceleration, turning, lifting and attached automation.

03

Docking reliability

Coordinate charge contacts, alignment tolerance, wake-up logic and communication with the docking system.

04

Environmental definition

Specify the required temperature range, sealing target and service conditions; IP65/IP67 and -20°C to 60°C can be evaluated when the project requires them.

ACTUAL BATTERY CASE

ST-AMR-01 Project Reference Configuration

This is an actual AMR battery configuration previously supplied for a specific project. It is shown as engineering evidence, not as a universal stock product. Only existing, confirmed parameters are displayed.

Project parameterHow it is defined
ApplicationAutonomous mobile robot (AMR)
Reference modelST-AMR-01
Nominal voltage14.8 V
Rated capacity5.2 Ah
Nominal energy76.96 Wh
Charge limit voltage16.8 V
CommunicationRS485 / RS232 / CAN
Protection / operating temperatureIP65 / IP67; -20°C to 60°C
Customization noteAll electrical parameters, communication protocols, IP ratings and operating temperature ranges can be customized according to your equipment and application requirements. If you cannot find the required specification, contact STELLOVA for a custom solution.

AMR BATTERY FAQ

Questions Commonly Resolved Before Prototype Release

The final answer depends on the actual AMR load profile and integration requirements; these points define what must be verified.

01

How should AMR battery capacity be sized?

Use route data, payload, auxiliary loads, idle demand, shift target and reserve—not runtime alone.

02

Can the BMS communicate with the AMR controller?

RS485, RS232 or CAN can be evaluated; message definitions, update rate and fault behavior must be agreed with the host controller.

03

Can the pack support docking or opportunity charging?

Yes, when charger voltage, current, contacts, alignment, wake-up logic and thermal limits are defined together.

04

Is ST-AMR-01 a standard product?

No. It is a project reference configuration; the production specification is customized and approved for the target AMR.

CUSTOMIZATION & RFQ

Provide the AMR Duty Cycle Before the Prototype Specification Is Frozen

Share the nominal voltage, representative route and payload, shift target, continuous and peak loads with duration, charging method, controller interface, installation space, environment, compliance needs and forecast volume. Stellova will convert these inputs into a reviewable battery definition and prototype scope.

Review the Engineering Process ↗

DISCUSS YOUR AMR PROJECT

Share Your AMR Load Profile and Charging Plan

Send the equipment data available today—even if some values are preliminary. We will identify the missing inputs that materially affect battery sizing, BMS integration and prototype risk.

Discuss Your AMR Battery Project ↗