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Home > products > Commercial And Industrial Energy Storage > Industrial and Commercial Battery Energy Storage Solution High Voltage UPS 100V-600V 7 Pack Batteries

Industrial and Commercial Battery Energy Storage Solution High Voltage UPS 100V-600V 7 Pack Batteries

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Industrial and Commercial Battery Energy Storage Solution High Voltage UPS 100V-600V 7 Pack Batteries

GZAPSC provides users with UPS lithium iron phosphate battery energy storage solutions. The battery system consists of a three-level structure; the module-level management system BMU is integrated in the battery module and is responsible for collecting cell voltage, module temperature, battery balance and communicating with the upper-level management system; cabinet level The management system is CBMS, which is responsible for battery current detection, data collection and analysis; alarm and protection control, and communication between upper and lower levels; the main control GBMS is responsible for data analysis, communication with lower-level systems, and communication with UPS.

 

 

The description you provided refers to an industrial and commercial battery energy storage solution designed for high-voltage uninterruptible power supply (UPS) applications. Let's break down the specifications:

  1. Voltage Range: The system operates within a high voltage range of 100V to 600V. This indicates that it is designed to handle higher voltage levels commonly found in industrial and commercial settings.

  2. 7-Pack Batteries: The system consists of seven battery packs. Each pack likely contains multiple batteries connected in series or parallel to achieve the desired voltage and capacity. The specific battery chemistry and capacity of each pack would depend on the manufacturer's design.

Industrial and commercial battery energy storage solutions with high-voltage UPS capabilities are typically employed to provide backup power in case of electrical grid outages or to supplement power during periods of high demand. These systems are commonly used in settings such as data centers, manufacturing facilities, hospitals, and other critical infrastructures where uninterrupted power supply is crucial.

It's important to note that additional components like inverters, power management systems, and monitoring/control systems are typically included in these energy storage solutions to ensure efficient operation, seamless power transfer, and system monitoring.

 

 

Parameter

  • High voltage LiFePO4 battery energy storage cabinet
Model Rated Voltage

 

Rated Capacity

Dimension

(W*D*H)

Maximum Continuous Discharge Current Standard Charging Voltage Range Operating temperature Recommended Charge Method Cut-Off Voltage Protection Class
192V50AH

 

192V

50Ah 600mm*1000mm*1200mm 50A 207V~210V

Charging:

0℃~55

Discharging-20℃~55

CC: 0.2C to 210V

CV:210V

Floating: 207V

168V~171V IP20
192V100AH 192V 100Ah 600mm*800mm*1200mm 100A 207V~210V

Charging:

0℃~55

Discharging-20℃~55

CC: 0.2C to 210V

CV:210V

Floating: 207V

168V~171V IP20
192V200 192V 200AH 800mm*850mm*1500mm 200A 207V~210V

Charging:

0℃~55

Discharging-20℃~55

CC: 0.2C to 210V

CV:210V

Floating: 207V

168V~171V IP20
384V100 384v 100AH 600mm*800mm*2000mm 200A 414V~420V

Charging:

0℃~55

Charging:

-20℃~55

CC: 0.2C to 420V

CV:414V

Floating: 414V

338V IP20
512v200 512V 200AH 600mm*1000mm*2800mm 200A 544V~552V

Charging:

0℃~55

Discharging-20℃~55

CC: 0.2C to 552V

CV:552V

Floating: 544V

448V IP20

Remark: the dimension and the weight will be subject to the datasheet provided by GZAPSC.

Operation Block Diagram

 

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