10.24kWh 51.2V 200Ah Residential LiFePO4 Battery with CAN RS485 Communication
This residential LiFePO4 battery provides 10.24kWh of nominal energy from a 51.2V 200Ah configuration. It is designed as the battery-storage section of a compatible home solar, backup or off-grid energy system.
Optional CAN, RS485 and WiFi interfaces support different residential integration requirements when the selected inverter, communication protocol, firmware and cable definition are compatible. An optional LCD can provide supported local battery information.
A 10.24kWh home battery should be selected from the actual household load schedule rather than from the inverter rating alone. The first step is deciding which circuits must remain available during a grid interruption or off-grid operating period.
Priority Circuits
Lighting, refrigeration, routers, communication equipment and security systems can be grouped according to required operating hours.
Intermittent Loads
Pumps, refrigerators and motor-driven appliances should be calculated using both operating time and startup demand.
Load Management
Heating, cooking equipment and large air conditioners may need to be separated when longer backup duration is required.
The 10.24kWh rating represents nominal stored DC energy. The energy available to household AC equipment will be lower after inverter conversion efficiency, battery reserve settings, cable losses and operating temperature are considered.
Battery capacity and inverter output are different design values. The battery determines the stored-energy reserve, while the inverter determines how much AC power can be supplied at one time.
The connected inverter must support a nominal 51.2V LiFePO4 battery and the complete 40.0–58.4Vdc operating window. Its charging profile should support the listed 56.0V floating-charge voltage.
Continuous charging current should remain at or below 100A. The battery supports up to 200A of continuous discharge, so the inverter’s maximum battery-side demand must remain within this limit.
The listed 300A pulse value applies for one second only. It may provide temporary current headroom for a compatible brief demand, but it is not a continuous household-load rating.
CAN or RS485 communication may allow supported battery data to be exchanged with a compatible inverter. A matching physical port does not guarantee communication unless the protocol, cable pin definition and firmware also match.
WiFi is listed as an optional interface. The exact monitoring functions and platform requirements depend on the ordered configuration and should be confirmed before production.
The IP20 battery requires a dry indoor location with stable floor support, no condensation and suitable access to the inverter and DC protection equipment.
| Residential Storage Rating | 51.2V / 200Ah / 10.24kWh |
| Battery Chemistry | Lithium Iron Phosphate / LiFePO4 |
| Inverter Battery Window | 40.0–58.4Vdc |
| Charging Reference | 56.0V Float / 100A Continuous Maximum |
| Discharge Current Limits | 200A Continuous / 300A for 1 Second |
| Optional Communication | CAN / RS485 / WiFi |
| Optional Local Display | LCD |
| BMS Protection Coverage | Overcharge / Overdischarge / Overcurrent / Short Circuit / Overtemperature |
| Indoor Installation Data | 720 × 450 × 250mm / 90kg Net / IP20 |
No. It is the battery section. A compatible inverter, charging source, DC protection and household distribution design are required separately.
No. The inverter protocol, firmware, cable definition and equipment settings must be compatible.
No. WiFi is listed as an optional communication interface and should be confirmed with the ordered configuration.
That depends on the inverter output rating, simultaneous load, startup demand and battery-side current.
Provide the load list, required backup hours, inverter model, solar-array size and preferred communication method.
Need to match the battery with a household inverter and load plan?