System focus
Matched generation and storage
Battery + Solar Solutions
Matched compact battery and solar power solutions for remote sensors, tracking units, security devices and outdoor electronics where reliable operation depends on both energy storage and available light.

Scope
Battery + panel matching
Support
Charging concept & interfaces
Product details & applications
See how the solution is configured and applied.

The solar module, charger, battery and device load are matched through one energy-budget and voltage-compatibility review.

Sleep/active loads, seasonal light, autonomy target, temperature and communication duty cycle shape the solution.
Product overview
Engineered around the application.
Matched compact battery and solar power solutions for remote sensors, tracking units, security devices and outdoor electronics where reliable operation depends on both energy storage and available light.
Key features
- Device load and duty-cycle review
- Battery energy and reserve-day estimation
- Solar output matched to location and enclosure area
- Voltage and charging compatibility evaluation
- Controller, cable and connector coordination
- Seasonal light and temperature considerations
- Prototype power-budget validation
- OEM component and subassembly support
Common configurable ranges
Useful starting points for an RFQ.
These are selection ranges rather than fixed stock SKUs. Dimensions, capacity, load and interfaces must be evaluated together.
Battery options
Solar options
Architecture review
Customization capabilities
Electrical, mechanical and interface options.
Load profile
Battery voltage
Battery capacity
Cell chemistry
Solar power
Solar voltage
Charge controller
Low-voltage cut-off
Cable & connector
Enclosure interface
Mounting concept
Monitoring output
Prototype plan
Production packaging
Typical specifications
Detailed engineering discussion range.
Values below describe common feasibility discussions—not a guaranteed stock model. Final limits are confirmed in the approved specification, prototypes and project validation.
Core product specifications
| System scope | Custom battery, compact solar module and charging/interface concept for an OEM device |
|---|---|
| Battery options | Small LiPo, cylindrical Li-ion or 12.8V / 25.6V LiFePO4 according to device needs |
| Solar options | Mini module, small custom panel or portable panel depending power and use case |
| Energy budget | Calculated from active, sleep, standby and transmission loads over the operating cycle |
| Reserve capacity | Defined from autonomy target, seasonal conditions, battery depth of discharge and temperature |
| Charging control | Application-specific solar charger, PWM or MPPT approach selected for battery chemistry and input range |
| Voltage conversion | Regulation or DC-DC conversion considered where device, battery and solar voltages differ |
| Protection | Battery protection, reverse polarity, over-current, temperature and low-voltage behavior coordinated at architecture level |
| Interfaces | Cable, connector, polarity and mounting defined around the product |
| Validation | Bench power-budget tests and representative light / load trials planned for the approved prototype |
Integration, validation & production
| Deliverable boundary | Component matching and power-architecture support; full end-product system responsibility is defined separately |
|---|---|
| Production support | Prototype, pilot and coordinated OEM supply |
| Battery charge limits | Charge voltage, current, temperature limits and termination behavior follow the approved battery chemistry and BMS |
| PV input window | Solar Voc, Vmp, Isc and Imp must remain inside the charger limits across expected temperature and light conditions |
| Load profile | Peak, active, idle, sleep and communication loads recorded with duration and daily frequency |
| Autonomy target | Specified as required operation without useful solar input under stated temperature and load assumptions |
| Low-power behavior | Quiescent current, wake timing, brownout threshold and low-voltage recovery considered for remote devices |
| Temperature strategy | Battery charge restrictions, solar behavior and enclosure temperature reviewed together |
| Enclosure boundary | Ingress, venting, condensation, cable glands and mounting remain part of the agreed customer / supplier scope |
| Monitoring options | Battery voltage, charge current, solar input, SOC estimate or fault status interfaces where required |
Applications
Typical product uses.
Remote IoT nodes
Configuration is evaluated against the device load, available space, operating environment and production requirements.
GPS & asset tracking
Configuration is evaluated against the device load, available space, operating environment and production requirements.
Environmental sensing
Configuration is evaluated against the device load, available space, operating environment and production requirements.
Security cameras
Configuration is evaluated against the device load, available space, operating environment and production requirements.
Agricultural monitoring
Configuration is evaluated against the device load, available space, operating environment and production requirements.
Telemetry equipment
Configuration is evaluated against the device load, available space, operating environment and production requirements.
Outdoor signage & lighting
Configuration is evaluated against the device load, available space, operating environment and production requirements.
Remote communication devices
Configuration is evaluated against the device load, available space, operating environment and production requirements.
Engineering support
From requirements to production.
- 01Requirement Review
- 02Electrical Evaluation
- 03Solution Design
- 04Prototype Development
- 05Testing & Validation
- 06Pilot Production
- 07Mass Production
FAQ
Planning your custom project.
How do you size the battery and solar panel?
We begin with the device load profile, required autonomy, location, seasonal light, available panel area, charging losses and temperature. Those inputs establish an initial energy budget for prototype validation.
Can any solar panel charge any battery?
No. Panel voltage and current must match a compatible charge controller and battery profile. Direct connection is usually inappropriate for rechargeable lithium batteries.
Do you develop the complete customer device?
Our stated scope is battery, solar and related power-interface support. Responsibility for firmware, final enclosure, regulatory system approval and other product subsystems is agreed per project.
Can existing device connectors be retained?
Often yes, provided the voltage, current, polarity, pinout and environmental rating are suitable.
What is needed for a first review?
Provide the load profile, operating hours, location, autonomy target, available battery and panel space, interface voltage, environment and expected annual quantity.
Faster engineering review
Send the details that define your application.
- Device and use environment
- Voltage, load and runtime
- Maximum dimensions
- Charging method
- Connector or interface
- Prototype and annual quantity
Start a project
Developing a product that needs a custom power solution?
Tell us your voltage, capacity, size, power or application requirements. We will help evaluate the right battery, solar or integrated solution.