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EU stocks EVE MB56 3.2V 628Ah Lifepo4 3.2V Battery Grade A+ HSEV

EU stocks EVE MB56 3.2V 628Ah Lifepo4 3.2V Battery Grade A+ HSEV
EU stocks EVE MB56 3.2V 628Ah Lifepo4 3.2V Battery Grade A+ HSEV
EU stocks EVE MB56 3.2V 628Ah Lifepo4 3.2V Battery Grade A+ HSEV
EU stocks EVE MB56 3.2V 628Ah Lifepo4 3.2V Battery Grade A+ HSEV
-4 %
EU stocks EVE MB56 3.2V 628Ah Lifepo4 3.2V Battery Grade A+ HSEV
EU stocks EVE MB56 3.2V 628Ah Lifepo4 3.2V Battery Grade A+ HSEV
EU stocks EVE MB56 3.2V 628Ah Lifepo4 3.2V Battery Grade A+ HSEV
EU stocks EVE MB56 3.2V 628Ah Lifepo4 3.2V Battery Grade A+ HSEV

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Lifepo4
ModelMB56
VersionGrade A+(HSEV)
Real Capacity650-660Ah
Nominal Voltage3.2V
Voltage range2.5V-3.65V
Max Discharge Current0.5C
Cycling Performance8000 cycles
Size350*203*71mm
Weight11Kg
Initial internal resistance0.18mΩ
TerminalLaser welding M6 stud
EU stocks EVE MB56 3.2V 628Ah Lifepo4 3.2V Battery Grade A+ HSEV
  • Stock: In Stock
  • Brand: EVE
  • Model: MB56
  • Weight: 5.60kg
  • Dimensions: 35.00cm x 7.10cm x 20.30cm
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$129.00
$135.00

Available Options

This product has a minimum quantity of 4
Tags: MB56 , 628Ah

Brand & Model: EVE MB56 HSEV Grade A+

Nominal Voltage: 3.2V; Safe charge and discharge range: 2.5V~3.65V

Nominal Capacity: 628Ah; Factory tested capacity: 680–685Ah (Extra High Surplus Capacity)

Energy per Cell: ≈2.01kWh

Discharge Specification: Continuous discharge at standard 0.5C, short-term peak discharge up to 1C

Cycle Life: 8,000 complete charge-discharge cycles

Initial Internal Resistance: ≤0.18mΩ (Ultra-low internal resistance, minimal heat generation under high current)

Terminal Specification: M6 laser-welded studs. Recommended tightening torque: 7N·m for secure, vibration-resistant connection

MOQ: Minimum order quantity: 4 pcs. 

Free Supporting Accessories: A full set of DIY assembly parts including busbars, nuts and insulation plates provided free for every order

Quality Control Process: Automatic capacity sorting → Laser terminal torque testing → Voltage/internal resistance re-inspection prior to shipment → Terminal insulation protection

Packaging Specification: 2pcs in a box, Individually cushioned with foam, packed in 5-ply cartons. 40 cartons (80 pcs) per pallet for shipment

Inventory & Logistics: In stock at local EU warehouse. Goods dispatched within 1–2 working days after payment. DDP tax-inclusive delivery across Europe within 3–7 days with full shipment tracking. Steady monthly restocking via multiple containers. Total cell inventory at warehouse: over 200,000 units

Supporting Documents: Original EVE MB56 datasheet available for download

EU Compliance: Full set of energy storage safety certifications: CE, UN38.3, RoHS and MSDS



About Shipping:

Instock:

Items are currently in stock and ready to ship.

We typically ship in-stock items within 1–2 business days of receiving payment.

Shipping usually takes 3–7 business days, delivery to locations far from the warehouse may take longer (subject to the carrier's schedule).

We will provide a tracking number so you can monitor the shipment's progress.

Pre-order:

Pre-order items are currently in transit to our warehouse.

Regarding estimated shipping times, delays may occur during customs clearance.

More shipping information please check at our Logistics Policy



Docan Energy warehouse stocks

Docan Energy currently has over 200,000 LiFePO4 cells in stock, featuring a full range of brands including

EVE, CATL, REPT, CALB, CORNEX, HITHIUM, DESAY, SUNWODA, GOTION, Lifepo4 cells and Sodium cells.

Capacity included: 100Ah,105Ah,120Ah,168Ah,230Ah,280Ah,304Ah,314Ah,334Ah,628Ah..


Capacity Test

Each cell undergoes comprehensive testing for capacity and voltage to ensure only qualified cells are selected and matched.

These can be shipped individually or assembled into finished battery packs.

All cells undergo stud welding, followed by individual torque testing to ensure the studs do not detach under a torque of 7 N·m.


Test Again Before Shipment

Prior to boxing and shipment, all batteries undergo a second round of comprehensive inspection to verify voltage and internal resistance parameters.

While simultaneously screening for cell swelling or bulging.

Cells that have passed inspection are fitted with insulating sleeves on their terminals, effectively preventing short circuits caused by accidental contact during transport.


Free accessories

Each cell come with busbars, nuts, and insulating boards.


Battery Package

The cells is secured within all-around anti-collision foam padding and packaged in a five-layer corrugated kraft paper carton.

Effectively cushioning against bumps and drops to prevent damage during transport.


EU/USA warehouse stocks

We ship over 10 containers to EU and USA warehouse every month.

Ensure sufficient stock reserves to enable rapid delivery.



LiFePO4 Cell Usage Precautions

1. Storage Environment Store the LiFePO4 cells in a dry, ventilated and cool place with an ambient temperature of 0~30℃.
Avoid direct sunlight, rain and humid conditions. Do not expose the cells to open-air stacking.
For long-term storage, keep the cell voltage at 3.20V~3.25V to maintain cell performance.

2. Strict Prohibition of Damage Operations Do not disassemble, puncture, squeeze or drop the cells. Keep the cells away from fire and high-temperature environments.
Improper operations may cause cell swelling, leakage, overheating or fire hazards.

3. Assembly Requirements Assemble cells with consistent voltage and internal resistance. Use a matched BMS protection board for battery pack assembly.
Avoid prolonged high-temperature welding on cell terminals to prevent damage to the internal diaphragm.
For assembled LiFePO4 cells, apply moderate and even pre-compression to restrain expansion, reduce internal resistance and extend service life.

4. Charging & Discharging Standards The standard charging cut-off voltage is 3.65V, and the discharging cut-off voltage is 2.5V. Overcharging and overdischarging are strictly prohibited.
The recommended charging temperature ranges from 0℃ to 45℃. Reduce charging current in low-temperature environments.

5. Short Circuit Prevention Install insulating covers on cell terminals after testing. Avoid positive and negative terminal short circuit caused by metal contact or accidental touch during installation, transportation and use.

6. Waste Disposal Waste and expired cells shall be recycled and disposed of by professional institutions in accordance with relevant regulations. Do not discard them randomly.

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