
Lithium Battery Energy Storage System
- Payment Type:
- L/C, T/T, D/P, Paypal, Money Gram, Western Union
- Incoterm:
- FOB, CFR, CIF, EXW, FCA, CPT, CIP
- Min. Order:
- 10 Piece/Pieces
- Min. Order:
- 10 Piece/Pieces
- Delivery Time:
- 28 Days
- Transportation:
- Ocean, Land, Air
- Port:
- Shenzhen, HongKong
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Contact NowPlace of Origin: | China |
---|---|
Productivity: | 10000 |
Supply Ability: | 5000 |
Payment Type: | L/C,T/T,D/P,Paypal,Money Gram,Western Union |
Incoterm: | FOB,CFR,CIF,EXW,FCA,CPT,CIP |
Certificate: | CE/UN 38.3 |
Transportation: | Ocean,Land,Air |
Port: | Shenzhen,HongKong |
This Lithium Battery Energy Storage System is Energy Storage System for Electrical Equipments, Lithium Battery With DC Output, Solar Battery Bank, Power Energy Storage System, Solar Energy Storage, Solar Battery Light, Solar Battery Backup 48v, Solar Battery LiFePo4, Lithium Battery Off Grid, Solar Battery Storage, Solar House Battery.
The lithium iron phosphate battery has a series of unique advantages, such as high working voltage, high energy density, long cycle life, environmental protection and so on. It also supports stepless expansion, and can be used for large-scale electric energy storage after forming the energy storage system. The energy storage system of lithium iron phosphate battery consists of lithium iron phosphate battery, battery management system (BMS), converter (rectifier, inverter), central monitoring system, transformer, etc.
In the charging stage, the intermittent power supply or power grid is used for charging the energy storage system. The alternating current is rectified by the rectifier and charged to the energy storage battery module for energy storage. In the discharging stage, the energy storage system discharges to the power grid or load. The direct current of the energy storage battery module is inverted to the alternating current through the inverter, and the output of the inverter is controlled by the central monitoring system, so as to realize the energy storage The grid or load provides stable power output.
Intelligent battery software uses algorithms to coordinate solar production, usage history, utility rate structures, and weather patterns to optimize when the stored energy is used.
During daylight, the battery storage system is charged by clean electricity generated by solar.
Energy is discharged from the battery storage system during times of high usage, reducing or eliminating costly demand charges.
Battery type(kwh) |
LiFePO4 |
Usable energy(kw) |
10.24 |
Max output power(kw) |
5.12 |
Peak output power |
10.24 60S |
Round-trip efficiency |
>=95.3%(under test condition) |
Nominal voltage(v) |
51.2 |
Operating voltage range(v) |
43.2~56.4 |
communication |
RS485/CAN |
Dimension(W*H*D,mm) |
720*1000*615 |
Net weight |
About 140kg |
Enclosure protection rating |
IP20 |
Ambient temperature range |
-10~50 |
Certification&safety standard |
CE/UN38.3 |
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