Best 150 ah Lithium Ion Battery for Solar System

Sales Best 150 ah Lithium Ion Battery for Solar System

Our 7.5 kWh Lithium 48V Battery lasts 6000+ cycles. Nominal voltage of 48V with a capacity of 150Ah, this Lithium-Ion battery has a standard BMS (Battery Management System).
  • Warranty : 10 years
  • Certificate : TUV, CE
  • Communication : CAN/ RS485
  • Rated Capacity : 7.5kWh
  • Rated Voltage : 48V
  • Model : CLV48150

Product Detail  

Best 150 ah Lithium Ion Battery for Solar System

Features:

1. High Inverter Compatibility.

2. Reliable LiFePO4 battery Cell.

3. Superior safety, 10 years warranty.

4. Easy to install, small volume, light weight, large capacity.

5. Scalable up to 60kWh (4 parallel).

6. BMS built-in with WIFI module to see the battery running information.

7. High temperature performance.


Application:

48V 150Ah 7.5 kWh Lithium Battery

Specification:

Model

CLV48150

Total Energy*

7.5kWh

Usable Energy (DC)*

6.9kWh

Nominal Charge/Discharge Power

3.75kW

Peak Power (Only Discharge)

8kWh for 3 seconds

Constant Current (Only Discharge)

110A

Voltage

48~56Vd.c

Nominal Voltage

51.2Vd.c

Nominal Current

75A

Max. Charge Voltage

57.6Vd.c

Weight

82kg

Dimension(mm)

525*820*238mm

Max. Recommended DOD

90%

Operating Condition

Indoor or outdoor

Operating Temperature(Charge)

From 0~45ºC

Operating Temperature(Discharge)

From -10~50ºC

WIFI Frequency Range

2400MHz~2483MHz

Humidity

4~100% (No condensed water)

Pollution Degree

3

Over Voltage Category

II

Cooling Type

Natural cooling

Case Material

Metal+Plastic

Installation

Free standing

IP rating

IP 65

Protective Class

I

Max. Connection Number

4

Warranty

10 years

Life Span

>15 years

Communication

CAN/ RS485

Protection Mode

Triple hardware protection

Battery Protection

Over-current/Over-voltage/Short circuit/ Under-voltage/Over temperature

Safety

Cell UL 1973

CE

Hazardous Material Classification

9

Transportation

UN 38.3


Functions of LiFePO4 Battery Pack BMS (Battery Management System):

(1) Measurement of LiFePO4 battery terminal voltage

(2) Energy balance between single LiFeP04 cells

(3) Total battery voltage measurement

(4) Total battery current measurement

(5) SOC calculation: estimate the remaining power of the Lithium battery

(6) Dynamically monitor the working state of the LiFePO4 battery pack: prevent over charging or over discharging

(7) Real-time data display

(8) Data recording and analysis: maintain the reliability and efficiency of the entire battery operation

Application of LiFePO4 Battery Pack with BMS

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