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Home > products > 24V Lithium Iron Phosphate Battery > Rechargeable Lithium Iron Phosphate Battery 24V 30AH LiFepo4 Battery Cell

Rechargeable Lithium Iron Phosphate Battery 24V 30AH LiFepo4 Battery Cell

Product Details

Place of Origin: China

Brand Name: EWT

Certification: MSDS

Model Number: LFP 24V 30AH

Payment & Shipping Terms

Minimum Order Quantity: 10

Price: 95USD/pc for 10-100pcs

Packaging Details: carton box+paper box

Delivery Time: 7-12 delivery days

Payment Terms: T/T

Supply Ability: 100pcs for 25-30 days

Get Best Price
Product Details
Highlight:

Lithium Iron Phosphate Battery 24V 30AH

,

24V 30AH LiFepo4 Battery Cell

,

Rechargeable Lithium Iron Phosphate Battery Cell

Type:
LiFePO4 24V 30Ah
Package:
Individual Box Package
Chargeable:
Yes
Ship Method:
By Sea By Air
Efficiency:
High
Shape:
Pack
Self-Discharge Rate:
Low
Rechargeable:
Yes
Discharge Current:
60A
Durability:
Strong
Battery Type:
Rechargeable
Maintenance:
Low
Type:
LiFePO4 24V 30Ah
Package:
Individual Box Package
Chargeable:
Yes
Ship Method:
By Sea By Air
Efficiency:
High
Shape:
Pack
Self-Discharge Rate:
Low
Rechargeable:
Yes
Discharge Current:
60A
Durability:
Strong
Battery Type:
Rechargeable
Maintenance:
Low
Product Description

Rechargeable Lithium Iron Phosphate 24V 30AH LiFepo4 Battery Cell



species


Lithium Iron Phosphate


Voltage

32700-24V


capacity

30AH


Batteries

IFR32700 3.2V 6Ah


size

195*131*185mm


weight

7KG


Maximum charging current

20A


Maximum discharge current

50A


Display screen

No


Communication support

Bluetooth



What is the essence of the average voltage of lithium batteries? How to improve?


Generally speaking, the higher the specific capacity of the electrode, or the higher the average battery voltage, it is undoubtedly beneficial to the improvement of battery energy density. where the average cell voltage is determined by the free enthalpy of the lithium-ion exchange reaction, which includes the intercalation and disengagement of the lithium ions on the active electrode material. For ordinary cathode materials, the electrode reaction appears to be a redox reaction at first glance, however, this view does not take into account the interaction of electrons and ions in the material. It is because of these interactions that the electronic state of the transition metal ions involved in the reaction depends on the degree of lithium ion intercalation.