Typical energy
OEM portable energy systems
Portable Power Stations
Compact portable power stations developed for OEM and private-label projects, integrating a rechargeable battery, BMS, inverter, charging electronics and application-specific AC, DC and USB outputs.

AC output class
300W to 2,000W
Battery options
LiFePO4 or Li-ion
Product details & applications
See how the solution is configured and applied.

Battery chemistry, inverter platform, charge inputs, cooling and port controls are validated as one product architecture.

Continuous load, surge demand, AC standard, charging sources, ports and environmental targets define the platform.
Product overview
Engineered around the application.
Compact portable power stations developed for OEM and private-label projects, integrating a rechargeable battery, BMS, inverter, charging electronics and application-specific AC, DC and USB outputs.
Key features
- Integrated battery, BMS, inverter and charger
- Pure sine-wave AC output where required
- AC, DC and solar charging input options
- USB-A, USB-C PD, DC and AC output combinations
- Display, lighting and state-of-charge interface options
- Thermal design and enclosure integration
- OEM appearance, labeling and packaging
- Prototype, validation and pilot production 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.
Stored energy class
AC market
Charging and outputs
Customization capabilities
Electrical, mechanical and interface options.
Battery energy
AC rated power
Peak power
Cell chemistry
AC voltage & frequency
Solar input
USB-C PD profile
DC outputs
BMS strategy
Display & controls
Housing design
Cooling concept
Branding
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
| Product architecture | Battery pack, BMS, inverter, charger, DC conversion, user interface and enclosure |
|---|---|
| Typical stored energy | Approximately 300Wh to 2,000Wh; final range depends on the platform and approved battery configuration |
| Battery chemistry | LiFePO4 for cycle-life-focused designs or Li-ion for energy-density-focused designs |
| Typical AC rated output | Approximately 300W to 2,000W with project-specific surge requirements |
| AC output | 110–120Vac / 60Hz or 220–240Vac / 50Hz market configurations, subject to approved inverter platform |
| AC waveform | Pure sine wave for compatible project platforms |
| Charging inputs | AC adapter or mains charging, vehicle DC and solar input options |
| Solar charging | PV input voltage, current and MPPT range matched to the approved charging platform |
| DC outputs | 12V-class DC, regulated ports and application-specific interfaces |
| USB outputs | USB-A and USB-C Power Delivery options subject to controller selection |
| Protection | Battery, inverter, charge, over-current, short-circuit, over-temperature and under-temperature functions coordinated at system level |
| User interface | LCD or LED status, power controls, lighting and optional wireless monitoring |
Integration, validation & production
| Enclosure | Molded polymer or hybrid construction with handle, ventilation and impact requirements reviewed per project |
|---|---|
| Compliance planning | Transport, battery, EMC, electrical-safety and market approvals are defined for the exact product; no certification is assumed |
| Production support | Platform selection, industrial-design coordination, prototype, pilot, private label and OEM production |
| Battery nominal voltage | Platform-specific DC bus voltage selected for stored energy, inverter power, current and thermal performance |
| Rated energy definition | Nominal Wh is stated from the approved battery configuration; usable AC or DC energy is lower because of conversion and protection limits |
| AC frequency | 50Hz or 60Hz according to the approved market configuration |
| Surge capability | Time-limited surge rating matched to motor, compressor or power-supply start-up behavior |
| Operating temperature | Charge and discharge windows are defined by battery chemistry, electronics, cooling and enclosure design |
| Cycle-life target | Defined at an agreed retained-capacity threshold, depth of discharge, temperature and load profile |
| Size and weight | Platform-dependent and confirmed after battery, inverter, cooling, port and enclosure selection |
| Branding options | Neutral product, private label, color, control-panel artwork, packaging and manuals subject to project scope |
Applications
Typical product uses.
Field service equipment
Configuration is evaluated against the device load, available space, operating environment and production requirements.
Mobile offices
Configuration is evaluated against the device load, available space, operating environment and production requirements.
Emergency backup
Configuration is evaluated against the device load, available space, operating environment and production requirements.
Outdoor electronics
Configuration is evaluated against the device load, available space, operating environment and production requirements.
Inspection & surveying
Configuration is evaluated against the device load, available space, operating environment and production requirements.
Event and production equipment
Configuration is evaluated against the device load, available space, operating environment and production requirements.
Mobile medical support
Configuration is evaluated against the device load, available space, operating environment and production requirements.
Small off-grid systems
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.
Are these retail-ready standard products?
Meanwatt presents this as an OEM project series. Available platform, enclosure, output ports, branding and compliance scope must be confirmed before quotation.
Which battery chemistry is better?
LiFePO4 is commonly selected when cycle life and thermal stability are priorities; conventional Li-ion may be considered where compact size and lower weight are more important.
Can a portable solar panel be matched to the unit?
Yes. The panel open-circuit voltage, operating voltage, current, connector and expected environmental conditions must fit the power station solar-input window.
What specifications are needed for a quotation?
Provide stored energy, continuous and peak AC load, AC market, charging methods, required ports, size or weight target, operating environment, branding and estimated quantity.
Are certifications included?
Certification is product- and market-specific. Required transport, battery, EMC and electrical-safety approvals are reviewed after the platform and configuration are selected.
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.