24V-Class Energy Storage

25.6V 100Ah LiFePO4 Lithium Deep Cycle Battery

Built for 24V solar and backup systems, this 25.6V 100Ah LiFePO4 battery delivers 2560Wh of stored energy in one unit. It is a strong fit for higher-voltage deep-cycle applications where system matching, runtime, and stable performance matter more than simple 12V replacement.

25.6V / 100Ah / 2560Wh
نظام إدارة المباني المدمج
Bluetooth Monitoring
Supports 2S4P
For 24V Solar & Backup Systems
Deep Cycle LiFePO4

Suitable for 24V solar storage, backup systems, RV, marine and other deep-cycle applications where 24V system design is preferred.

Voltage
25.6V
سعة
100 أمبير
طاقة
2560Wh
Buyer Snapshot

A quick overview for buyers evaluating whether this 25.6V 100Ah battery fits a 24V system, a solar storage setup, or a larger backup application.

A quick procurement view of the model, how it is used, and what is included. Use this screen to decide whether it matches your project before going into the details.

Model
25.6V 100Ah
24V-class deep cycle battery
طاقة
2560Wh
More stored energy in one battery
System Voltage
25.6V
Built for 24V applications
يراقب
بلوتوث
Standard app-based battery checks
Protection
نظام إدارة المباني المدمج
Core protections for daily system use
System Build
2S4P
Expandable for larger battery systems
Typical Use
Solar / Backup First
Also suitable for RV, marine and UPS where 24V is preferred
Chemistry
LiFePO4
Stable lithium iron phosphate
24V LEAD-ACID REPLACEMENT

Replacing a 24V lead-acid setup with a 25.6V LiFePO4 battery

A 25.6V 100Ah LiFePO4 battery is built for 24V deep-cycle systems where higher voltage, stored energy, and system compatibility matter. The comparison below is written for cycling applications such as solar and backup use, not starter batteries.

Weight comparison: 25.6V 100Ah LiFePO4 vs ~24V 100Ah lead-acid

Weight comparison (upload image)

LIGHTER WEIGHT
Easier to handle
Lower handling weight

Compared with a typical 24V 100Ah lead-acid setup, this 25.6V 100Ah LiFePO4 battery is much lighter and easier to move, install, and service.

Usable energy comparison:

Usable energy comparison (upload image)

MORE USABLE ENERGY
More energy in one battery
Longer runtime potential

Compared with a typical 24V 100Ah lead-acid setup, this 25.6V 100Ah LiFePO4 battery provides much more usable energy for daily cycling and backup runtime.

For the same power demand, a 24V system can operate at lower current than a 12V system. That can help make system planning cleaner in larger solar and backup applications.
ITEM
25.6V 100AH LIFEPO4 BATTERY
TYPICAL 24V 100AH LEAD-ACID BATTERY SETUP
System Voltage
Built for 24V applications
Usually built from multiple 12V lead-acid batteries
Stored Energy
Provides 2560Wh in one battery
Depends on bank configuration and usually offers lower usable energy in daily cycling
Current in System Use
In a 24V system, it can run at lower current than a 12V system for the same power demand
Often creates a bulkier and less efficient system layout than a cleaner 24V lithium setup
صيانة
Needs no watering, no acid, and no venting
Usually needs more maintenance and tends to age faster in cycling use
يراقب
Includes built-in Bluetooth for app-based status checks
Usually needs an external meter or shunt for better visibility
Expansion
Supports 2S4P
Can be expanded, but the layout is often heavier and less flexible
Charging Profile
Best used with a LiFePO4-compatible charger or controller
Uses a different charging profile

Before replacing a 24V lead-acid setup, check these points

These checks are simple, but they prevent most replacement issues.

System voltage compatibility

Confirm that your inverter, controller, charger, and connected loads are designed for a 24V battery system.

Charging profile

Use a charger or charge controller with a LiFePO4-compatible voltage profile. Lead-acid charging settings are not suitable.

Cable sizing and current planning

Check system current, cable sizing, terminal access, and installation layout before deployment.

التطبيقات

Built for practical 24V system applications

This 25.6V 100Ah battery is best suited to real 24V deep-cycle applications where system voltage matching, stored energy, and reliable daily use matter.

Main application

Small Solar & Off-Grid Backup Systems

A strong fit for small 24V solar and off-grid backup systems that need more stored energy in one battery and a cleaner match for 24V charge controllers and inverters.

24V Trolling Motors & Marine Use

Suitable for 24V trolling motor setups and marine auxiliary power where stable deep-cycle performance, lower system current, and easier monitoring are valuable.

RV, Camper & Caravan Power

A practical choice for 24V RV, camper, and caravan electrical systems where house power, auxiliary loads, and deep-cycle battery use are part of the setup.

Floor Scrubbers & Cleaning Machines

Well suited to floor scrubbers and cleaning machines that need a 24V lithium battery with stable output, repeatable cycling, and easier day-to-day operation.

Bluetooth monitoring · standard

Bluetooth monitoring for easier system checks

Bluetooth is standard, so battery status can be checked more easily during installation, system setup, and after-sales service. This is especially useful in 24V solar and backup systems where battery visibility helps speed up troubleshooting and routine checks.

What the app is used for

Read live values from the BMS on site. Useful for verifying charge settings, diagnosing low runtime, and checking status without opening cabinets or adding extra meters.

Real-time voltage visibility
Current and status monitoring
Battery temperature checks
SOC review on mobile
Useful for setup, maintenance, and service review

You can also check basic status and warning visibility depending on firmware.

App screenshot shown is a representation of typical status fields. Actual UI details may vary by firmware version.

Bluetooth app screenshot for LiFePO4 battery monitoring
Technical specifications

25.6V 100Ah LiFePO4 Battery Specifications

The 25.6V 100Ah model is designed for 24V deep-cycle systems that need higher stored energy, system voltage compatibility, and practical integration into solar or backup applications.

Technical specifications for the 25.6V 100Ah LiFePO4 lithium deep cycle battery.
نوع من الخلايا LiFePO4
Warranty 5 Years
دورة الحياة 4000 cycles at 100% DOD; 6000 cycles at 80% DOD; 15,000 cycles at 60% DOD
Nominal Voltage 25.6V
Rated Capacity 100 أمبير
طاقة 2560Wh
Max Expansion (Parallel & Series) 2S4P
Internal Resistance ≤40mΩ
الشهادات FCC, CE, RoHS, UN38.3
بلوتوث Standard
BMS 100 أ
Max. Continuous Output Power 2560W
Max. Continuous Charge Current 100 أ
Max. Continuous Discharge Current 100 أ
Max. Discharge Current (1 second) 400A
Charge Method CC/CV
تهمة الجهد 28.8V ± 0.2V
Recommend Charge Current 20 أ
Charge Temperature 0°C to 50°C / 32°F to 122°F
Discharge Temperature -20°C to 60°C / -4°F to 140°F
Storage Temperature -10°C to 50°C / 14°F to 122°F
Low-Temperature Protection Available
Terminals M8 Bolts
Weight Approx. 20 KGs
Dimension 170*483*240mm
Housing Material ABS
Protection Class IP65

For a project-ready confirmation pack (datasheet + documents + compatibility notes), use the inquiry form below.

Dimensions & compatibility

Check fit, terminals and 24V system compatibility

Before installation, it is important to confirm physical fit and system matching. For a 25.6V battery, compatibility is not only about dimensions and terminals, but also about 24V electrical system design.

Dimensions & terminals

Use the current dimension drawing and terminal spec to confirm compartment fit and cable hardware before ordering.

12V 100Ah LiFePO4 battery dimensions and terminal drawing
  • Dimension drawing — shared with current datasheet
  • Weight — confirmed with packing list
  • Terminal type & torque guidance — shared for installation

Installer / procurement checklist

Fast checks that prevent rework in retrofits and new builds.

  • Battery compartment fit
  • Terminal access and cable routing
  • 24V charger and controller compatibility
  • Inverter and load voltage matching
  • Current planning for the full system
Protection & charging

Built-in protection and 24V charging guidance

A built-in BMS helps protect the battery during normal operation, while correct 24V-compatible charging settings help support stable long-term use in solar, backup, and deep-cycle systems.

  • Overcharge protection Cuts charging when a cell voltage is too high, protecting the pack.
  • Over-discharge protection Disconnects loads before cells drop below safe voltage.
  • Overcurrent protection Limits excessive current from loads or wiring faults.
  • Short circuit protection Fast response to short-circuit events on the output side.
  • Temperature protection Operating window enforced on both charge and discharge.
  • Cell balancing Keeps cell voltages aligned for more consistent cycle performance.
BMS protections illustration

Three practical charging methods

Any method works if the charge profile matches LiFePO4. If you share your charger/controller model, we can confirm recommended settings.

Three charging ways illustration

For 24V battery systems, charger and controller settings matter. Always confirm compatibility before installation.

DOCUMENTS & COMPLIANCE

Documents available with this battery

Battery documents help buyers review transport, compliance, and project requirements before ordering.

رقم الأمم المتحدة 38.3
Transport safety report for lithium battery shipments.
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MSDS
Material Safety Data Sheet — handling and storage info.
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Transport Class Report
Official transport classification and shipping guidelines.
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CE
Conformity documentation for the European market.
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IEC
Testing to IEC standards for lithium battery safety/performance.
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التعليمات

أسئلة مكررة

Direct answers from a practical, project-support perspective — replacement fit, charging profile, monitoring, and documents.

The main difference is system voltage. A 12.8V 100Ah battery is designed for 12V systems, while a 25.6V 100Ah battery is designed for 24V systems. The 25.6V model is a better fit when the inverter, controller, and overall battery layout are built around 24V architecture.

Yes. This model is built for 24V applications, so it is more naturally matched to 24V solar controllers, inverters, and battery system layouts.

In many deep-cycle applications, yes. The exact fit depends on system voltage, charging profile, inverter compatibility, cable sizing, and installation layout.

Use a LiFePO4-compatible charger or controller designed for a 25.6V battery. Correct charging voltage and settings are important for proper battery performance.

Yes. It supports 2S4P expansion for larger system planning, subject to correct system design and battery matching.

Yes. Bluetooth monitoring is included as standard for easier battery checks, setup, and maintenance.

It is best suited for 24V solar storage, backup systems, and other higher-voltage deep-cycle applications. It may also be used in RV, marine, UPS, or equipment backup systems where 24V battery architecture is preferred.

Confirm voltage compatibility, charger/controller settings, inverter matching, cable sizing, terminal access, and physical fit.

Talk to us

Send your inquiry for this 25.6V 100Ah battery

If you are evaluating a 24V battery for solar, backup, RV, marine, UPS, or other deep-cycle applications, send your inquiry with your project details and system requirements.

What we typically confirm for buyers

A detailed inquiry helps us confirm the right configuration for your larger-capacity system. You will typically receive:

  • Quotation and lead time for your quantity
  • Current datasheet and full certification package

To speed up the reply, include:

  • Target runtime or daily energy consumption
  • Solar system size (if applicable) and charge controller model
Response time
Usually within one business day

Other models

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