4G Connectivity · Custom Development for Enterprises

4G Battery and Solar Power System Development

For battery terminal manufacturers and outdoor equipment R&D teams, we develop charging, power conversion, peak power supply, power detection and sleep control; deliver circuits, power consumption state design, battery life estimation and measurement records.

Hardware and machine integrationSpecialist DevelopmentInterface and verification

SERVICE OVERVIEW

Service overview

Winge Technology provides 4G battery and solar power supply system development services to battery terminal manufacturers and outdoor equipment R&D teams, and implements specific technical links around the company's existing products and target systems. Services can be commissioned independently or combined with terminal hardware, firmware and platform development, with interfaces and scope of responsibilities confirmed at project launch.

  • Scope and Basic Check
  • Implementation and integration
  • Delivery Documentation
  • Verification and Constraints

DEVELOPMENT SCOPE

Development services

Development Scope

01

Scope and Basic Check

Determine the existing foundation, technology dependencies and content that needs to be developed based on battery specifications, solar conditions, load status, working cycle, temperature, target battery life and charging methods.

02

Implementation and integration

Decompose the sleep, sampling, registration and upload power consumption, design power conversion, charging, peak power supply and power detection, calculate the capacity according to the target working conditions and measure and correct it.

03

Delivery Documentation

Deliver circuit, power consumption state design, battery life estimation and measurement records.

04

Verification and Constraints

Battery life is affected by the network, sensors and actual duty cycle. The complete device usage time cannot be derived from the single sleep current of the module.

Project implementation process

Verification of data and interfaces → Confirmation of technical solutions and verification use cases → Implementation of integration with the target environment → Regression of abnormal scenarios → Transfer of version data.

Verify the implementation results in the target hardware and software environment, and deliver records of associated interface configurations, version dependencies, and problem handling to facilitate subsequent integration and maintenance by the enterprise R&D team.

Project Inputs

  • Battery specifications, solar conditions, load status, duty cycle, temperature, target battery life and charging method.
  • Design information, code, interface permissions and target test equipment can be provided.
  • Source files, programs or tools expected to be delivered, inter-module integration testing responsibilities and project nodes.
  • Acceptance samples, environment, test conditions and passing thresholds.

Deliverables and Acceptance

DeliverablesDelivery contentVerification method
achieve resultsDeliver circuit, power consumption state design, battery life estimation and measurement records.Measure the power supply waveform at the communication peak.
Integrated dataVersions and dependencies, interface configuration, usage or deployment steps, and integration changesRecord the current and duration of each working stage.
Verify recordsTest conditions, execution records, problem lists and regression resultsVerify low battery, charging, and unexpected retry behavior.

The delivery scope and acceptance criteria are determined based on the target environment. Third-party SDK, licenses, laboratories, cloud resources, equipment materials and on-site support are listed separately; when the existing information is insufficient, follow-up work will be determined through interface verification or key function verification.

Frequently Asked Questions

How to set acceptance conditions for battery life?

Clarify the battery capacity and status, temperature, signal environment, sampling upload cycle and number of allowed retries, and record the complete working cycle. After estimation based on measurements, it needs to be verified under target usage conditions.

4G What information is required for the development of battery and solar power supply systems?

Please give priority to battery specifications, solar conditions, load status, working cycle, temperature, target battery life and charging method. At the same time, the existing implementation, problems encountered, expected changes, and compatible test conditions are explained to facilitate the determination of implementation scope and reproduction methods.

Can it be implemented on existing products?

You can first evaluate the scope of existing designs and versions that can be changed, retain the verified parts, and determine the interfaces and dependencies that need to be adjusted. Please note for this service: Battery life is affected by the network, sensors and actual duty cycle, and the complete device usage time cannot be derived from the single sleep current of the module. Existing and new functions must undergo regression testing within the agreed scope after the changes.

PROJECT DELIVERY

From requirements to delivery

01

Requirements review

Confirm business goals, existing devices and systems, interfaces and deployment conditions.

02

Scope and solution

Review technical dependencies and agree responsibilities, deliverables and acceptance methods.

03

Development and integration

Implement the agreed scope and integrate with the target devices and systems.

04

Testing and issue resolution

Run agreed test cases and record issues, fixes and regression results.

05

Handover and acceptance

Deliver the agreed work, build configurations, interface documentation and test records.

06

Maintenance and changes

Handle version maintenance and assess new requirements within the agreed support scope.

Define Devices, Interfaces and Deliverables

Please explain the development goals, current versions and delivery requirements of the 4G battery and solar power supply system, and provide battery specifications, solar conditions, load status, working cycle, temperature, target endurance and charging methods to facilitate technical verification and workload assessment.

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