16.07kWh 51.2V 314Ah Modular LiFePO4 Solar Storage Battery.
Designed around an expandable low-voltage battery architecture, this LiFePO4 battery provides 16.07kWh nominal energy from a 51.2V 314Ah platform. The system supports CAN and RS485 communication and can be expanded with up to 15 battery units in parallel when additional storage capacity is required.
A modular battery system allows storage capacity to be selected according to the project rather than relying on a fixed battery configuration. One battery provides 16.07kWh nominal energy, while additional compatible units can be added when greater storage capacity is required.
The battery uses LiFePO4 chemistry with a nominal voltage of 51.2V and nominal capacity of 314Ah. This combination provides 16.07kWh of nominal energy in each battery unit.
CAN and RS485 communication interfaces are provided for connection with compatible inverter systems. The exact inverter model and communication protocol should be checked before ordering.
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| Parameter | Specification |
|---|---|
| Battery Chemistry | LiFePO4 |
| Nominal Energy | 16.07kWh |
| Nominal Voltage | 51.2V |
| Nominal Capacity | 314Ah |
| Recommended Charge Voltage | 57.6V |
| Communication | CAN / RS485 |
| Parallel Expansion | Up to 15 Units |
| Cycle Life | 8,000 Cycles (25°C, 100% DOD) |
| Specified Service Life | 10 Years |
| Enclosure Protection | IP20 |
| Dimensions | 500 × 235 × 820mm |
| Approx. Weight | 120kg |
| Discharge Temperature | -20°C to +55°C |
| Charge Temperature | 0°C to +45°C |
| Storage Temperature | -5°C to +35°C |
Solar storage and household electricity are listed among the intended application scenarios in the product information. Remote or nomadic farm applications and central office use are also included.
Because the enclosure protection rating is IP20, the installation location should provide environmental protection appropriate to the specified enclosure rating and operating conditions.
The battery provides CAN and RS485 communication interfaces for inverter integration. Communication compatibility can differ between inverter brands, models and protocol versions.
Providing the exact inverter brand and model before ordering allows the communication protocol and battery configuration to be checked in advance.
One battery provides 16.07kWh of nominal energy. Whether this is sufficient depends on household electricity consumption, the loads that need to be powered and the required backup duration. Actual system sizing should therefore be based on the home's energy usage rather than battery capacity alone.
Operating time depends on the actual electrical load. A home with lower continuous consumption will receive a longer backup duration than a site with higher loads. Inverter efficiency, battery operating limits and system settings will also affect actual runtime.
Yes. The product specification supports up to 15 battery units in parallel, allowing storage capacity to be increased when one 16.07kWh battery is not sufficient for the project.
The battery provides CAN and RS485 communication for inverter integration. Compatibility depends on the inverter model and communication protocol, so the exact inverter brand and model should be confirmed before ordering.
Yes. Solar storage is specifically listed among the intended application scenarios in the supplied product information. The complete battery and inverter configuration should be selected according to the solar system design and required storage capacity.
The technical specification lists 8,000 cycles at 25°C and 100% depth of discharge, together with a specified service life of 10 years.
The enclosure protection rating is IP20. The installation environment should therefore provide protection appropriate to the specified enclosure rating and remain within the listed operating temperature conditions.
The inverter should first match the battery's 51.2V low-voltage architecture and supported communication interface. The exact inverter power and model should be selected according to the system load and project design. Providing the inverter model before ordering allows compatibility to be checked.
Provide the inverter brand and model, typical electrical load, required backup duration, planned battery quantity and solar system information. These details help determine the appropriate battery configuration and check inverter communication compatibility.
Send us your inverter model, required storage capacity, typical load and expected backup duration. We can check the battery quantity and communication compatibility for your energy storage configuration.
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