24V 100Ah Lithium Iron Phosphate Battery Pack
Rechagebale LiFePO4 Battery | Lithium Battery Pack | 24v battery
Key features
- Light Weight and Mini Size: 2560Wh energy output, easy to move and install.
- Low Temp Cut-Off Protection:smart BMS automatically cuts off the charge and discharge when below the temperature
- Wide Application:perfect choices for Home energy backup, Rvs, Motors, Boat, Camping, Home alarm
- Reliable and secure: Grade A prismatic cell and certified by UL and UN38.3
- Warranty: 3 years
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24V Deep-Cycle Lithium Battery for Solar Power Storage
Balancing useful capacity with moderate operating current, the 24V 100Ah LiFePO4 battery provides approximately 2.56kWh of stored energy for solar arrays, backup circuits, communication equipment, compact inverter systems, and independent DC power setups. The higher voltage reduces current compared with an equivalent 12V configuration, which can simplify cable planning and lower resistive losses in correctly designed systems. A-grade lithium iron phosphate cells deliver steady voltage throughout much of the discharge cycle, while the integrated battery management system supervises daily operation.
Bluetooth Battery Monitoring and Smart BMS Protection
Built-in Bluetooth connectivity allows operating data to be viewed through a compatible mobile device. Voltage, current, state of charge, cell condition, temperature, and warning information remain accessible without adding an external meter. This helps technicians review battery behavior during commissioning and makes routine checks easier after installation.
- 24V nominal voltage with 100Ah rated capacity
- Approximately 2.56kWh of total energy storage
- A-grade LiFePO4 cells with a stable discharge profile
- Bluetooth access for real-time battery status
- Smart BMS with cell balancing and fault protection
- Support for compatible solar controllers and AC chargers
- Compact enclosure for organized equipment layouts
The BMS monitors charge and discharge current, individual cell voltage, internal temperature, and overall battery condition. It can interrupt operation when the system encounters overcharge, excessive discharge, short circuit, overcurrent, or abnormal temperature. These controls help protect the cells while allowing connected equipment to receive consistent low-voltage DC power.
Rapid Charging for Off-Grid and Backup Battery Systems
A correctly selected charger can restore capacity faster after extended use. Solar input can replenish the battery through a suitable MPPT or PWM controller, while compatible AC charging equipment can provide an alternative source when sunlight remains limited. Charging voltage, current limits, and temperature conditions should follow the specified battery parameters.
Compared with a 12V 200Ah battery storing a similar amount of energy, a 24V architecture carries lower current at the same power level. This can benefit inverter connections, cable runs, and protection-device selection when the complete electrical design follows the required standards. The format also suits applications that have already adopted 24V DC loads and charging equipment.
Cycle performance depends on operating temperature, charge rate, load demand, and depth of discharge. Under defined test conditions, the cells can support more than 6,000 cycles at an 80% depth of discharge. Consistent charging practices and suitable ventilation help maintain long-term performance.
JSDSolar can adapt the 24V 100Ah LiFePO4 battery with selected terminals, communication options, enclosure finishes, labels, and packaging. Project support may include inverter matching, controller settings, cable calculations, charging recommendations, and parallel capacity planning.

Core Parameters
| Content | Description |
| Cell | Prismatic Lifepo4 Battery |
| Nominal voltage | 25.6V |
| Rate capacity | 100Ah |
| Energy | 2560Wh |
| Cycle life | 6000 times(0.2℃-25℃,80%DoD) |
| Charge voltage | 14.4V ± 0.2V |
| Recommand charge current | 20A(0.2C) |
| Dimensions | 260*188*211 mm |
Solar Energy Cases for Different Residential
Common Questions
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Why install home energy storage batteries?
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Store solar/grid power for outages, optimize energy use, cut bills. Solar integration ensures 24/7 power—ideal for tropical climates with frequent storms.
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How long do batteries last?
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Quality lithium-ion models endure 8-15 years, 5x longer than lead-acid. Built to withstand high humidity and salt air common in coastal regions.
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Are they safe for homes?
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Certified batteries (UL, IEC) feature fire-resistant casings and thermal controls. Avoid uncertified brands—critical in areas prone to extreme heat.
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Compatibility with inverters?
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Check voltage (24V/48V recommended) and communication protocols (CAN, RS485). Consult us to match local grid standards (110-120V).
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Maintenance needed?
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Lithium batteries are zero-maintenance vs. lead-acid. Ensure proper ventilation and avoid direct sunlight—key for tropical installations.
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Cost vs. savings?
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Higher upfront cost, but 30-50% long-term savings via solar pairing and peak-shaving. Many governments offer green energy incentives.
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