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4.8kWh 5.12kWh Commercial Use Stacked energy storage battery
  • 4.8kWh 5.12kWh Commercial Use Stacked energy storage battery
Key attributes
Brand Rw Energy
Model NO. 4.8kWh 5.12kWh Commercial Use Stacked energy storage battery
Energy storage capacity 4.8kWh
Cell quality Class B
Parallel number 5 sets
Series S48
Product descriptions from the supplier
Description

Stacked energy storage battery  

企业微信截图_17289605647622.png

Stacked installation with rollers on the base, making it more convenient and aesthetically pleasing,RS485/RS232 and CAN communication functions, capable of communicating with the upper computer and inverter,Generally stacked in 2 layers, with series and parallel terminals for easy grouping,Equipped with a switch to control the lithium battery, with power display and DC protection circuit breaker,Can be configured as a 48V system with 15 strings or a 51.2V system with 16 strings,Optional Bluetooth, 4G and WIFI functions, and a display screen,The default charging current is 0.5C and the discharging current is 1C.

Peculiarity

  • High energy density.

  • Equipped with BMS battery management system, longer cycle life.

  • Beautiful appearance; Free stack combination, easy to install.

  • The panel integrates a variety of interfaces, supports multiple protocols, and ADAPTS to most photovoltaic inverters and energy storage converters.

  • Can be customized adjustment management battery charging and discharging strategy.

  • Modular design, easy maintenance.

Technical parameter

Product model

S48100

Battery type

LiFePO4 3.2V 100AH

Battery capacity

4.8kWh

5.12kWh

Rated discharge current

50A

50A

Maximum discharge current

100A

100A

Voltage range

40.5~54V

43.2~57.6V

Standard battery unit voltage

48V

51.2V

Maximum DC charging voltage

54V

57.6V

Maximum charging current

50A

50A

Single Cluster Battery Pack

15S1P

16S1P

Maximum output power

5KW

5KW

Communication interface

RJ45X2 RS485/232X2 CANX2

Power battery interface

BAT+ X2 BAT- X2

Battery life

Loop 3000~6000次@DOD 80%/25℃/0.5C

Maximum number of parallel machines

15

Cooling mode

Natural cooling

Protection

Over (under) voltage protection/over current protection/over temperature protection/over discharge protection/short circuit protection

Operating environment

Temperature: -30~50℃ Humidity: 20~95RH%

Maximum working altitude

2500m(> 2000m load reduction required)

Fire protection installation

Heptafluoropropane gas fire extinguishing device

Class of protection

IP20

Communication mode

Default: RS485/RS232/CAN

Optional: WiFi/4G/ Bluetooth

 

NOTE:

  • The A-class cell can charge and discharge 6000 times, and the B-class cell can charge and discharge 3000 times, and the default discharge ratio is 0.5C.

  • Class A cell warranty 60 months, Class B cell warranty 30 months.

Application scenarios

  1. Rural Household Photovoltaic (PV) Energy Storage:

     Adaptation Advantages: With a capacity of 4.8kWh, it can power household lighting, fans, and small refrigerators; its stackable design saves space, making it suitable for placement in small courtyards; the temperature resistance range of -30℃~50℃ enables it to operate normally in the environments of most regions.

  2. Emergency Power Supply for Small Commercial Stores:

     Adaptation Advantages: Boasting a 5.12kWh capacity, it can keep convenience store cash registers and LED lights running for 6-8 hours to deal with power outages; it adopts natural cooling, requiring no additional maintenance and thus reducing the operation and maintenance costs for business owners.

  3. Backup Power for Communication Base Stations in Remote Areas:

     Adaptation Advantages: It supports parallel connection of 15 units for capacity expansion up to 76.8kWh, which can meet the emergency power supply needs of small base stations; it complies with the power grid standards of most countries, eliminating the need for voltage conversion.

FAQ
Q: What is a stacked energy storage battery?
A:

Energy storage battery systems are an important part of modern power grids and renewable energy systems. They can store electrical energy during periods of low power demand and release electrical energy during peak demand periods, thereby balancing grid loads and improving energy utilization efficiency.

  • Modular design:Stacked energy storage batteries usually adopt modular design. Each module is an independent energy storage unit that can be used alone or in combination with other modules.

  • Flexible expansion:Users can increase or reduce the number of modules according to actual needs, and easily expand or reduce the capacity of the energy storage system.

  • Unified control system:The entire energy storage system is managed through a unified control system to ensure coordinated work between various modules.

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