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Smart Solar Management Energy Storage System:SSMESS Series

SSMESS Series:Smart Solar Management Energy Storage System

SSMESS_1

Intro:

High-Precision Intelligent Modulation Capabilities

Features 0.05% high-precision voltage and current measurement, delivering precise regulation for input/output energy and battery pack safety control.

Remote Backend Monitoring & Predictive Maintenance

Equipped with remote backend monitoring, input/output energy calculation displays, and fault alerts. Integrated with the patented embedded DaVinci Energy Monitoring Software, the system analyzes variations in battery characteristics to predict potential equipment issues during normal operation. This enables proactive maintenance and minimizes the risk of financial losses caused by sudden downtime.

Compatibility with Mixed Battery Packs and Retired Batteries

Utilizes battery State of Health (SOH) evaluation and classification technology for retired batteries, allowing decommissioned batteries to be redeployed online and significantly reducing initial setup costs. The system can integrate new and retired battery packs based on specific requirements, intelligently controlling charging and discharging circuits to maximize the performance of each energy storage unit.

Modular Design for Flexible Power Configuration

Supports energy storage demands ranging from 50kW to 400kW. The scalable configuration accommodates small-scale energy storage needs (homes, small businesses) up to medium-scale requirements (factories, communities).

Versatile Power Input & High-Efficiency Bidirectional Conversion

The system accepts multiple power inputs, including solar photovoltaic (PV), 380V AC factory power, and 220V/110V AC grid power. It also provides highly efficient bidirectional conversion between AC grid power and DC power, truly achieving a “near-zero-carbon” microgrid system.

 

ModelSMESS-200SMESS-50
Battery Specifications
Energy Storage Capacity
Battery Voltage
Battery Type
 
200KWH
48~400V
LiFePO4 Cell (Lithium Iron Phosphate)
 
50KWH
48~400V
LiFePO4 Cell (Lithium Iron Phosphate)
Input
AC Charging Voltage
Charging Power
DC Charging Voltage
Charging Current
Charging Efficiency
Charging Type
 
380/220V 3P4W
30KW/50KW
60~850Vdc
80A
>94%
>CC/CV
 
380/220V 3P4W
30KW/50KW
60~850Vdc
20A
>94%
>CC/CV
Standard Output
AC Voltage
Output Power
Output Frequency
Output Efficiency
THD
 
380V/220V 3P4W
50KW
50/60Hz
>90%
<5%
 
380V/220V 3P4W
10KW
50/60Hz
>90%
<5%
Optional Output (DC Multi-channel Programmable)
Voltage
Current
Power
Output Efficiency
Output Mode
 
5~300Vdc
0~300A
50KW
>92%
CC/CV/CP/CR
 
5~300Vdc
0~300A
10KW
>92%
CC/CV/CP/CR
System Specifications
Weight (t)
Dimensions
Cooling Method
Altitude (m)
Operating Temperature
Operating Humidity
Communication Protocol
Input Protection
Output Protection
 
9
606*244*259 (20’ Standard Container)
Air Cooling
<2000
-10~+50℃
0~90%, Non-condensing
TCP/IP
Overvoltage, Overcurrent, Overtemperature, Undervoltage
Overvoltage, Overcurrent, Overtemperature, Undervoltage
 
9
606*244*259 (20’ Standard Container)
Air Cooling
<2000
-10~+50℃
0~90%, Non-condensing
TCP/IP
Overvoltage, Overcurrent, Overtemperature, Undervoltage
Overvoltage, Overcurrent, Overtemperature, Undervoltage

SSMESS Series:Smart Solar Management Energy Storage System

HCM-1000_1_1

Intro:

High-Precision Intelligent Modulation Capabilities

Features 0.05% high-precision voltage and current measurement, delivering precise regulation for input/output energy and battery pack safety control.

Remote Backend Monitoring & Predictive Maintenance

Equipped with remote backend monitoring, input/output energy calculation displays, and fault alerts. Integrated with the patented embedded DaVinci Energy Monitoring Software, the system analyzes variations in battery characteristics to predict potential equipment issues during normal operation. This enables proactive maintenance and minimizes the risk of financial losses caused by sudden downtime.

Compatibility with Mixed Battery Packs and Retired Batteries

Utilizes battery State of Health (SOH) evaluation and classification technology for retired batteries, allowing decommissioned batteries to be redeployed online and significantly reducing initial setup costs. The system can integrate new and retired battery packs based on specific requirements, intelligently controlling charging and discharging circuits to maximize the performance of each energy storage unit.

Modular Design for Flexible Power Configuration

Supports energy storage demands ranging from 50kW to 400kW. The scalable configuration accommodates small-scale energy storage needs (homes, small businesses) up to medium-scale requirements (factories, communities).

Versatile Power Input & High-Efficiency Bidirectional Conversion

The system accepts multiple power inputs, including solar photovoltaic (PV), 380V AC factory power, and 220V/110V AC grid power. It also provides highly efficient bidirectional conversion between AC grid power and DC power, truly achieving a “near-zero-carbon” microgrid system.

 

ModelSMESS-200SMESS-50
Battery Specifications
Energy Storage Capacity
Battery Voltage
Battery Type
 
200KWH
48~400V
LiFePO4 Cell (Lithium Iron Phosphate)
 
50KWH
48~400V
LiFePO4 Cell (Lithium Iron Phosphate)
Input
AC Charging Voltage
Charging Power
DC Charging Voltage
Charging Current
Charging Efficiency
Charging Type
 
380/220V 3P4W
30KW/50KW
60~850Vdc
80A
>94%
>CC/CV
 
380/220V 3P4W
30KW/50KW
60~850Vdc
20A
>94%
>CC/CV
Standard Output
AC Voltage
Output Power
Output Frequency
Output Efficiency
THD
 
380V/220V 3P4W
50KW
50/60Hz
>90%
<5%
 
380V/220V 3P4W
10KW
50/60Hz
>90%
<5%
Optional Output (DC Multi-channel Programmable)
Voltage
Current
Power
Output Efficiency
Output Mode
 
5~300Vdc
0~300A
50KW
>92%
CC/CV/CP/CR
 
5~300Vdc
0~300A
10KW
>92%
CC/CV/CP/CR
System Specifications
Weight (t)
Dimensions
Cooling Method
Altitude (m)
Operating Temperature
Operating Humidity
Communication Protocol
Input Protection
Output Protection
 
9
606*244*259 (20’ Standard Container)
Air Cooling
<2000
-10~+50℃
0~90%, Non-condensing
TCP/IP
Overvoltage, Overcurrent, Overtemperature, Undervoltage
Overvoltage, Overcurrent, Overtemperature, Undervoltage
 
9
606*244*259 (20’ Standard Container)
Air Cooling
<2000
-10~+50℃
0~90%, Non-condensing
TCP/IP
Overvoltage, Overcurrent, Overtemperature, Undervoltage
Overvoltage, Overcurrent, Overtemperature, Undervoltage