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SERVICE ROBOT BATTERY SYSTEMS

Custom Service Robot Battery Solutions

Stellova develops each custom service robot battery pack around mobility, computing, sensing, communication and accessory loads. The lithium battery for a service robot is defined against its duty cycle, charging strategy, enclosure, interfaces and required operating continuity.

SERVICE ROBOT OPERATING REQUIREMENTS

Indoor Service Depends on Predictable Runtime and Safe Interaction

Drive motors, displays, compute, sensors, audio, lifts and other accessories create different load profiles across service tasks. The pack must also preserve enough energy for reliable return to the charging dock.

BATTERY DEFINITION INPUTS

Define the Mission, Accessories and Docking Behavior

The first review connects mission duration, accessory loads, available space, charging behavior and host communication.

01

Mission energy

Define travel, waiting, display, compute, audio, lift and accessory demand across a representative service cycle.

02

Return-to-dock reserve

Preserve energy for route completion, docking attempts and safe shutdown.

03

Indoor mechanical integration

Confirm available volume, mounting, connector, cable routing, ventilation and service access.

04

Charging and diagnostics

Define dock voltage and current, wake-up behavior, SOC reporting, fault data and maintenance workflow.

INDOOR SERVICE ENGINEERING

Human-Proximate Operation Requires Coordinated Safety and Diagnostics

Electrical protection, enclosure integration, low-noise operation, diagnostics and service access must suit equipment operating near people.

01

Human-proximate safety

Coordinate electrical protection, temperature sensing, enclosure integrity and fault reporting for operation near people.

02

Quiet and stable operation

Avoid control or cooling choices that create unnecessary noise or unstable voltage during accessory changes.

03

Docking reliability

Review contact alignment, repeated partial charging, wake-up logic and recovery from interrupted charging.

04

Serviceability

Define diagnostic access, connector placement, replacement procedure and battery-state reporting for operators.

SHARED APPLICATION CONFIGURATION

One Confirmed Platform Applied to the Service-Robot Scenario

The parameters below use the same confirmed 25.9 V / 30 Ah platform also referenced for a delivery application. This is a shared application configuration—not a claim of a second independent project.

Project parameterHow it is defined
ModelST-SR-01
Content typeShared application configuration
ApplicationIndoor service robot
Nominal voltage25.9 V
Rated capacity30 Ah
Nominal energy777 Wh
Charge limit voltage29.4 V
Charge current15 A
Continuous discharge current30 A
Peak discharge current/
CommunicationRS485 / RS232
Protection / operating temperature/
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.

SERVICE ROBOT BATTERY FAQ

Questions to Resolve Before Prototype Release

The final answers depend on the service mission, accessories, charging station and operating environment.

01

Why is this called a shared configuration?

The confirmed electrical platform is also referenced for another application; the service-robot page applies it to different operating requirements without claiming a second project.

02

How is service runtime estimated?

Use representative drive, compute, display, audio and accessory loads plus return-to-dock reserve.

03

Can the pack work with an automatic dock?

Yes, when voltage, current, contacts, alignment, wake-up logic and charge-control behavior are defined together.

04

What data should the BMS report?

The required SOC, SOH, temperature, fault and maintenance data are defined with the robot controller and operator workflow.

CUSTOMIZATION & RFQ

Provide the Robot Mission and Charging Requirements

Share the robot voltage, mission cycle, drive and accessory loads, target runtime, return-to-dock reserve, installation space, charging method, communication and compliance needs.

Review the Engineering Process ↗

DISCUSS YOUR APPLICATION

Share Your Service Robot Mission and Docking Requirements

Send the available robot, accessory-load and charging-station data. Stellova will identify the missing inputs that materially affect runtime, safety, docking reliability and prototype risk.

Discuss Your Service Robot Battery ↗