


The 30kWh Floor Mounted Lifepo4 Battery is a high-capacity energy storage unit designed for homes, commercial buildings, small factories, and off-grid sites. It uses long-life LiFePO₄ cells and supports fast charge/discharge for stable power at any time of the day. Users can pair it with solar systems or hybrid inverters to cut grid use, protect against outages, and gain long-term energy savings. The compact floor-mounted design allows easy installation, while smart monitoring ensures safe and efficient operation throughout its life cycle.
This 51.2V 600Ah 30kWh floor-mounted LiFePO4 battery is intended for larger home backup and light-commercial storage projects. Project fit depends on usable energy, inverter power, BMS current, CAN or RS485 protocol, critical loads, installation conditions and the order-specific warranty—not capacity alone.
| Product item | Listed parameter | Product item | Listed parameter |
|---|---|---|---|
| Nominal voltage | 51.2 V (16S2P) | Overall dimensions | 950 x 810 x 285 mm |
| Nominal capacity | 600 Ah | Net weight | 215 kg +/- 0.5 kg |
| Nominal battery energy | 30 kWh | Battery chemistry | LiFePO4 |
| Working voltage | 44-57 V | Listed service life | 10 years |
| Maximum charging current | Confirm on model-specific datasheet | Charging voltage | 58.4 V |
| Maximum discharge current | Confirm on model-specific datasheet | Parallel quantity | Confirm quantity and BMS protocol |
| Applicable temperature | -20 to 65 degrees C | Inverter compatibility | Confirm CAN/RS485 protocol, model and firmware |
| Overload protection | 300 A listed; confirm duration and BMS behavior | Cycle life | 8,000 cycles listed; confirm test conditions and end-of-life criterion |
| Communication | RS485 / RS232 / CAN | Package size | 990 x 860 x 440 mm |
| Warranty period | 10 years listed; confirm terms and exclusions | Documentation | Request model-specific datasheet, protocol and warranty |
Specification note: 51.2 V x 600 Ah is approximately 30.72 kWh nominal before the configured voltage window, SOC reserve and system losses. Confirm usable energy and every current limit on the order-specific datasheet.

LiFePO4 chemistry can support long cycle life, but the listed 8,000-cycle value must be checked against depth of discharge, temperature, charge/discharge rate and the manufacturer's end-of-life criterion.
The floor-mounted enclosure avoids wall loading and separate rack assembly, but it still requires verified floor capacity, indoor environmental conditions, service clearance, cable protection and emergency access. Inverter compatibility must be confirmed by protocol and firmware, not by brand name alone.
Charge power, discharge power and surge support depend on the confirmed BMS current limits and inverter settings. If remote monitoring is required, confirm the gateway, data points, alarm history, user access and remote-support responsibility before ordering.
A 30kWh LiFePO4 battery should be sized from the critical-load table, backup duration and inverter power—not from nominal capacity alone. A 51.2V 600Ah platform is approximately 30.72 kWh nominal, while usable AC energy is lower after SOC reserve, inverter losses, temperature limits and BMS protection.
| Average load | Ideal nominal-energy division | Planning note |
|---|---|---|
| 3 kW | About 10 hours before reserve and losses | Confirm startup surges and whether loads operate continuously. |
| 5 kW | About 6 hours before reserve and losses | Check inverter efficiency, usable SOC and auxiliary consumption. |
| 10 kW | About 3 hours before reserve and losses | Confirm BMS discharge current, inverter rating and cable protection. |
These are arithmetic reference values, not guaranteed runtime. Use interval load data and the 30kWh battery runtime guide for a more complete load review.
Use the 30kWh 600Ah inverter-fit checklist and the CAN/RS485 battery matching guide before approving the inverter.
Compare the home energy storage range, check the floor-mounted battery installation guide, or send the load and inverter data for a configuration review.
It equals approximately 30.72 kWh nominal. Usable AC energy is lower and depends on the configured voltage window, SOC reserve, inverter efficiency, temperature and BMS limits.
No. Voltage overlap is only one requirement. Current limits, CAN or RS485 protocol, firmware, parameter mapping and protection behavior must also match.
Potentially, but the decision requires a load profile, surge assessment, inverter power, BMS current, backup duration and installation review.
Confirm the model label, final datasheet, BMS limits, protocol, dimensions, weight, serial numbers, test records, packing, warranty terms and commissioning scope.
For additional specifications, please get in touch with us. We are committed to providing comprehensive service