2V 100Ah A-Grade LiFePO4 Battery Cell is a high-capacity prismatic Lithium Iron Phosphate cell designed for professional battery pack assembly, solar energy storage, EV applications, UPS systems, inverter batteries, home backup and commercial energy-storage systems
With a 100Ah standard capacity and 3
2V nominal voltage, the cell provides approximately 320Wh of nominal energy
It features a low internal resistance of ≤0
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Product Description
Short Description
The EVE LF-100 3.2V 100Ah A-Grade LiFePO4 Battery Cell is a high-capacity prismatic Lithium Iron Phosphate cell designed for professional battery pack assembly, solar energy storage, EV applications, UPS systems, inverter batteries, home backup and commercial energy-storage systems.
With a 100Ah standard capacity and 3.2V nominal voltage, the cell provides approximately 320Wh of nominal energy. It features a low internal resistance of ≤0.28mΩ and is specified for 6000+ cycles under suitable operating conditions.
The cell supports a 0.5C (50A) standard charge and discharge, up to 1C (100A) maximum continuous discharge, and 3C (300A) pulse discharge for 10 seconds.
Product Overview
The EVE LF-100 is a premium A-Grade 100Ah LiFePO4 prismatic cell designed for users who require high-capacity, long-life and reliable lithium cells for custom battery construction.
Its large-format prismatic design allows battery manufacturers and professional installers to build different battery configurations by connecting cells in series and parallel.
With ≤0.28mΩ internal resistance, 6000+ cycle specification and up to 100A continuous discharge, the EVE LF-100 is suitable for demanding energy-storage applications.
The cell can be used to build 12V, 24V, 48V/51.2V and higher-voltage LiFePO4 battery systems, depending on the required configuration.
Key Features
EVE LF-100 A-Grade LiFePO4 Cell
A-Grade Cell Quality
3.2V Nominal Voltage
100Ah Standard Capacity
Approx. 320Wh Nominal Energy
6000+ Cycle Life
Internal Resistance: ≤0.28mΩ
Standard Charge: 0.5C / 50A
Standard Discharge: 0.5C / 50A
Maximum Continuous Discharge: 1C / 100A
Maximum Pulse Discharge: 3C / 300A for 10 Seconds
Large-Format Prismatic Design
Suitable for Solar Battery Packs
Suitable for Inverter Batteries
Suitable for EV Battery Packs
Suitable for UPS Systems
Suitable for Home Backup
Suitable for Commercial Energy Storage
Suitable for Off-Grid Applications
Suitable for Custom LiFePO4 Battery Packs
Technical Specifications
Specification Details
Brand EVE
Model LF-100
Cell Grade A Grade
Chemistry LiFePO4
Cell Type Prismatic
Standard Capacity 100Ah
Nominal Voltage 3.2V
Nominal Energy Approx. 320Wh
Cycle Life 6000+ Cycles*
Internal Resistance ≤0.28mΩ
Standard Charge 0.5C (50A)
Standard Discharge 0.5C (50A)
Maximum Continuous Discharge 1C (100A)
Maximum Pulse Discharge 3C (300A) – 10 Seconds
Charging Temperature 0°C to 45°C
Discharging Temperature -20°C to 60°C
Storage Temperature -20°C to 45°C
Dimensions 160.0 ± 0.8 × 113.7 ± 0.5 × 49.9 ± 0.5mm
Weight 2.05 ± 0.05kg
*Actual cycle life depends on charging/discharging conditions, depth of discharge, temperature, current, BMS settings and operating conditions.
EVE A-Grade 100Ah LiFePO4 Cell
The EVE LF-100 is specified as an A-Grade LiFePO4 cell, making it suitable for professional battery-pack construction.
A-Grade cells are preferred where consistent cell quality and electrical characteristics are important.
For multi-cell battery assembly, it is recommended to match cells according to:
Voltage
Capacity
Internal resistance
State of charge
Cell condition
Proper matching helps improve the consistency and performance of the finished battery pack.
6000+ Cycle Life
The EVE LF-100 is specified for 6000+ cycles under suitable test and operating conditions.
This makes it suitable for applications involving regular charging and discharging, including:
Solar energy storage
Home backup
Inverter systems
UPS systems
Commercial energy storage
Off-grid systems
EV applications
Actual cycle life depends on operating conditions such as:
Depth of Discharge (DoD)
Charging voltage
Charging current
Discharge current
Temperature
BMS configuration
Cell balancing
Storage conditions
≤0.28mΩ Internal Resistance
The cell has a specified internal resistance of:
≤0.28mΩ
Low internal resistance can help reduce internal voltage drop and heat generation during current flow.
Actual measured resistance may vary according to:
Temperature
State of charge
Measurement method
Testing equipment
Cell condition
For battery-pack assembly, cells with similar electrical characteristics should preferably be matched together.
Charging & Discharge Capability
Standard Charging
0.5C = 50A
The specified standard charge rate is 50A.
Standard Discharge
0.5C = 50A
The specified standard discharge rate is 50A.
Maximum Continuous Discharge
1C = 100A
The maximum continuous discharge specification is 100A.
Maximum Pulse Discharge
3C = 300A for 10 seconds
The cell is specified to support a pulse discharge of up to 300A for 10 seconds.
The 300A figure is a pulse rating and should not be treated as continuous discharge current. The complete battery's BMS, cables, busbars, terminals, fuse and inverter must all be appropriately rated.
Operating Temperature
According to the provided specification:
Charging: 0°C to 45°C
Discharging: -20°C to 60°C
Storage: -20°C to 45°C
Operating the cell within the recommended temperature range helps maintain performance, safety and service life.
Cell Dimensions
The EVE LF-100 dimensions are:
160.0 ± 0.8 × 113.7 ± 0.5 × 49.9 ± 0.5mm
Approximate dimensions:
Length: 160.0mm
Width: 113.7mm
Thickness: 49.9mm
These dimensions should be considered when designing a battery box or enclosure.
Physical dimensions should always be verified before manufacturing a custom battery enclosure.
Cell Weight
The specified weight is:
2.05 ± 0.05kg
Approximate weight range:
2.00–2.10kg per cell
The total weight of a finished battery will depend on the number of cells plus BMS, cables, busbars, enclosure and other components.
Nominal Energy
One cell provides:
3.2V × 100Ah = 320Wh
Therefore, one EVE LF-100 cell has approximately:
320Wh / 0.32kWh Nominal Energy
Battery Pack Configurations
4S – 12.8V 100Ah
Using 4 cells in series:
4 × 3.2V = 12.8V
Nominal energy:
12.8V × 100Ah = 1.28kWh
Suitable for a 12V-class LiFePO4 battery.
8S – 25.6V 100Ah
Using 8 cells in series:
8 × 3.2V = 25.6V
Nominal energy:
25.6V × 100Ah = 2.56kWh
Suitable for a 24V-class LiFePO4 battery.
16S – 51.2V 100Ah
Using 16 cells in series:
16 × 3.2V = 51.2V
Nominal energy:
51.2V × 100Ah = 5.12kWh
Suitable for a 48V/51.2V-class LiFePO4 battery.
Parallel Configuration
Parallel connections can increase total battery capacity while maintaining the same nominal voltage.
Configuration Approx. Capacity
1P 100Ah
2P 200Ah
3P 300Ah
4P 400Ah
For example, a 16S2P configuration provides:
51.2V 200Ah
Nominal energy:
10.24kWh
The final configuration should be selected according to the inverter, BMS, load and required energy capacity.
Suitable Applications
☀️ Solar Energy Storage
Ideal for building high-capacity LiFePO4 batteries for solar energy-storage systems.
🏠 Home Backup
Suitable for custom battery systems designed to provide backup power for essential household loads.
⚡ Inverter Batteries
Can be assembled into compatible LiFePO4 inverter batteries for 12V, 24V and 48V/51.2V systems.
🚗 EV Applications
Suitable for compatible electric vehicles, electric bikes, scooters and other electric-mobility applications.
🔋 UPS Systems
Suitable for compatible LiFePO4 UPS and backup-power systems.
🏢 Commercial Energy Storage
The 100Ah capacity and 6000+ cycle specification make it suitable for commercial energy-storage applications.
🌐 Off-Grid Systems
Suitable for off-grid solar and renewable-energy storage systems.
Why Choose EVE LF-100 A-Grade Cell?
The EVE LF-100 100Ah A-Grade LiFePO4 Cell combines:
100Ah Capacity
A-Grade Cell Quality
3.2V Nominal Voltage
≤0.28mΩ Internal Resistance
6000+ Cycle Specification
100A Maximum Continuous Discharge
300A Pulse Discharge for 10 Seconds
Its large-format prismatic construction makes it suitable for professional battery manufacturers, solar installers, EV battery builders and custom battery-pack applications.
Recommended Battery Assembly
For professional battery construction:
Use cells of the same model and capacity.
Preferably use cells from the same batch.
Match cell voltage before assembly.
Check internal resistance.
Properly balance cells.
Use a suitable LiFePO4 BMS.
Use correctly rated busbars.
Use appropriately sized DC cables.
Provide proper insulation.
Use a suitable fuse or breaker.
Ensure proper mechanical cell support.
Follow correct charging parameters.
Perform appropriate testing before commissioning.
Package Includes
1 × EVE LF-100 3.2V 100Ah A-Grade LiFePO4 Prismatic Cell
Not Included
BMS
Busbars
Battery Box
Charger
Cables
Cell Supports
Fuse/Breaker
Battery Assembly
Important Note
The specifications in this listing are based on the technical parameters shown in the provided product image, with the cell specified as A Grade.
The 6000+ cycle figure is a specified/test-condition rating. Actual cycle life and performance may vary depending on charging/discharging current, depth of discharge, temperature, BMS settings, cell balancing and overall battery-pack design.
For multi-cell battery packs, always use a properly configured LiFePO4 BMS and appropriately rated electrical and mechanical components.
Frequently Asked Questions
The EVE LF-100 is a 3.2V 100Ah A-Grade LiFePO4 prismatic battery cell designed for professional battery-pack and energy-storage applications.
Yes. The EVE LF-100 in this listing is specified as an A-Grade LiFePO4 cell.
The standard rated capacity is 100Ah.
The nominal voltage is 3.2V.
It uses Lithium Iron Phosphate (LiFePO4) chemistry.
The cell is specified for 6000+ cycles under suitable test and operating conditions.
No. Actual cycle life depends on depth of discharge, charging/discharging current, temperature, BMS settings and operating conditions.
The specified internal resistance is ≤0.28mΩ.
Lower internal resistance can help reduce voltage drop and heat generation during current flow.
The specified standard charge rate is 0.5C, equivalent to 50A for a 100Ah cell.
The specified standard discharge rate is 0.5C, equivalent to 50A.
The specified maximum continuous discharge is 1C, or 100A.
The specified maximum pulse discharge is 3C, or 300A for up to 10 seconds.
No. 300A is a pulse rating for 10 seconds, not a continuous discharge rating.
Approximately 3.2V × 100Ah = 320Wh.
Yes. 4 cells in series (4S) create a 12.8V-class LiFePO4 battery.
Yes. 8 cells in series (8S) create a 25.6V-class LiFePO4 battery.
Yes. 16 cells in series (16S) create a 51.2V-class LiFePO4 battery.
Approximately 1.28kWh nominal energy.
Approximately 2.56kWh nominal energy.
Approximately 5.12kWh nominal energy.
Yes. Parallel connections increase the total Ah capacity while maintaining the same nominal voltage.
Two 100Ah cells in parallel provide approximately 200Ah.
Yes. A 16S2P configuration provides approximately 51.2V 200Ah with around 10.24kWh nominal energy.
Yes. They are suitable for building compatible LiFePO4 solar energy-storage batteries.
Yes. They can be assembled into a properly configured LiFePO4 battery for compatible inverter systems.
Yes. They can be used in compatible electric vehicles, e-bikes, scooters and other EV battery packs.
Yes. They are suitable for compatible LiFePO4 UPS and backup-power battery packs.
Yes. Properly configured battery packs can be used for home backup and energy-storage applications.
The specified dimensions are approximately 160.0 ± 0.8 × 113.7 ± 0.5 × 49.9 ± 0.5mm.
The specified weight is 2.05 ± 0.05kg.
The specified charging temperature range is 0°C to 45°C.
The specified discharging temperature range is -20°C to 60°C.
The specified storage temperature range is -20°C to 45°C.
Yes. A suitable LiFePO4 BMS should be used when assembling a multi-cell battery pack.
Yes, provided the JK BMS has the correct series configuration, current rating and LiFePO4 settings for the completed battery.
Yes. It is recommended to match cells according to voltage, capacity, internal resistance and overall condition before assembling a battery pack.
It is generally recommended to use cells of the same model, capacity and similar electrical characteristics rather than mixing different brands or models.
They are suitable for solar storage, inverter batteries, EVs, UPS systems, home backup, commercial energy storage and custom LiFePO4 battery packs.
The EVE LF-100 combines A-Grade quality, 100Ah capacity, 3.2V nominal voltage, ≤0.28mΩ internal resistance, 6000+ cycle specification, 100A continuous discharge and 300A pulse capability, making it a strong option for professional LiFePO4 battery construction.