860–1720 KWh Containerized BESS | EnerCube 3.0 | COENG
860–1720 KWh Containerized BESS | EnerCube 3.0 | COENG
Key Attributes
Brand Name:
COENG
Model Number:
COENG EnerCube 3.0
Place of Origin:
China
Certification:
CE
Minimum Order Quantity:
1
Payment Terms:
L/C,D/A,D/P,T/T
Product Attributes
Highlight
containerized BESS lithium battery
,EnerCube 3.0 energy storage
,COENG battery production line
Operating Temperature:
-20°C To 55°C
Productname:
Lithium Battery Pack Production Line
Ac Voltage:
400V
Productioncapacity:
Customizable, Typically 1000-50000 Packs Per Day
Controlsystem:
PLC Control With Touch Screen Interface
Productionlinelength:
Typically 10-30 Meters
Aftersalesservice:
Installation, Training, Maintenance, Technical Support
Automationlevel:
Semi-automatic To Fully Automatic
Batterytype:
Lithium-ion, Lithium Polymer
Qualityinspection:
Automatic Visual Inspection And Electrical Testing
Rated Output Power:
500kW
Battery Capacity:
552kWh
Machinedimensions:
Varies By Configuration, Typically 10m X 2m X 2m
Packconfiguration:
Customizable Series And Parallel Connections
Voltagerange:
3.7V To 48V
Product Description
COENG EnerCube 3.0 Containerized Battery Energy Storage System
860-1720 kWh Energy Capacity | 400-800 kW Rated Output | LiFePO4 Battery Technology
COENG EnerCube 3.0 is an all-in-one containerized battery energy storage system designed for commercial and industrial energy projects. With five configurations ranging from 860 kWh to 1720 kWh and rated output from 400 kW to 800 kW, it provides a modular platform for project-specific battery storage requirements.
The system integrates battery PACKs, a power conversion system (PCS), a power distribution unit (PDU), fire protection, temperature control and intelligent monitoring within a standard 20HQ container. This integrated design simplifies equipment coordination and supports transportation, installation and ongoing maintenance.
For EPC contractors, system integrators, energy developers and distributors, EnerCube 3.0 offers a coordinated solution for industrial battery storage, renewable energy integration and site energy management.
All-in-One Integration for Streamlined Deployment
EnerCube 3.0 brings the main energy storage components together in one containerized platform. Its modular design helps reduce on-site equipment assembly and simplifies the coordination of battery storage, power conversion and supporting systems.
The standard 20HQ container measures 6058 × 2438 × 2896 mm, providing a defined footprint for site planning, transportation and lifting arrangements.
Flexible AC and DC Coupling
COENG EnerCube 3.0 supports AC and DC coupling for energy projects involving solar generation, wind power and diesel generators.
The coupling arrangement, external equipment and control strategy can be evaluated against the site's electrical architecture and operating objectives. This flexibility supports both new renewable energy projects and the assessment of storage integration into existing installations.
Modular Battery Clusters for Convenient Maintenance
Battery clusters are housed in individual cabinets, with thermal isolation between clusters and independent cluster maintenance. This arrangement supports service access and helps operators organize maintenance activities.
The system also provides 24/7 monitoring and online assisted operation and maintenance. Ethernet connectivity and Modbus TCP/IP support communication with compatible project monitoring and control systems.
Integrated Thermal Management and Fire Protection
EnerCube 3.0 combines battery cabinet HVAC with forced-air cooling for the electrical room. The specified fire protection system includes FAS and FM200/Novec1230.
The battery cabinets are rated IP55, while the electrical room is rated IP34. These separate ratings support accurate site assessment and equipment specification.
Available Models and Configurations
| Model | Rated Output Power | Capacity at Beginning of Life | Battery Configuration |
|---|---|---|---|
| P400C860 | 400 kW | 860 kWh | 4 × 1P240S |
| P500C1075 | 500 kW | 1075 kWh | 5 × 1P240S |
| P600C1290 | 600 kW | 1290 kWh | 6 × 1P240S |
| P700C1505 | 700 kW | 1505 kWh | 7 × 1P240S |
| P800C1720 | 800 kW | 1720 kWh | 8 × 1P240S |
Capacity figures represent beginning-of-life energy capacity. Delivered energy and operating duration depend on the permitted state-of-charge range, conversion losses, auxiliary consumption, operating conditions and load profile.
Technical Specifications
| Parameter | Specification |
|---|---|
| Cell Chemistry | LiFePO4 |
| Cell Capacity | 280 Ah |
| Battery Module Configuration | 1P20S |
| Grid Connection | 3P4W+PE |
| Rated AC Voltage | AC 400 V |
| Rated Frequency | 50/60 (±5) Hz |
| Harmonics | <3% at rated power |
| Overload Capacity | 110% for 10 minutes; 120% for 60 seconds |
| Isolation Transformer | Not included |
| Battery Cabinet Protection | IP55 |
| Electrical Room Protection | IP34 |
| Container Corrosion Protection | C3 |
| Operating Temperature | -20°C to 50°C |
| Relative Humidity | 0-95%, non-condensing |
| Specified Altitude | <2000 m |
| Battery Cabinet Cooling | HVAC |
| Electrical Room Cooling | Forced-air cooling |
| Fire Protection | FAS & FM200/Novec1230 |
| Noise Emission | ≤75 dB |
| Container Type | Standard 20HQ |
| Dimensions, W × D × H | 6058 × 2438 × 2896 mm |
| Maximum Weight | 24,500 kg |
| Communication Interface | Ethernet |
| Communication Protocol | Modbus TCP/IP |
| Warranty | 5 years; extendable to 10 years subject to agreed terms |
The system is derated when ambient temperature exceeds 45°C. The datasheet also specifies derating above 2000 m altitude; high-altitude projects require configuration review.
Commercial and Industrial Energy Storage Applications
Peak Shaving and Load Shifting
Evaluate battery charging and discharging around site demand and electricity tariffs. A suitable dispatch strategy can help manage peak grid imports and shift energy consumption between time periods. Project savings depend on local tariffs, load patterns and system operation.
Solar Energy Storage and Self-Consumption
Store available solar generation for later use at factories, warehouses and commercial facilities. Match the battery configuration to the PV generation profile, daytime and nighttime loads, and any export restrictions.
Renewable Energy Integration
Support project designs combining battery storage with solar, wind or diesel generation. AC and DC coupling options provide flexibility when developing the electrical layout and energy management strategy.
Backup Power and Microgrid Projects
Assess EnerCube 3.0 for projects requiring critical-load support or coordination between multiple energy sources. Backup operation, islanding capability, switching equipment and generator coordination must be confirmed through project-specific engineering.
Transportation, Installation and Service Planning
EnerCube 3.0 is designed for integrated transportation with batteries. Its containerized construction supports coordinated lifting, positioning, installation and maintenance planning.
Before delivery, confirm the selected configuration, final shipping weight, foundation requirements, service clearances, lifting instructions and destination documentation. Any required isolation transformer or medium-voltage equipment should be included in the agreed project scope.
Frequently Asked Questions
What capacities are available?
COENG EnerCube 3.0 is available in 860, 1075, 1290, 1505 and 1720 kWh configurations, paired with rated output powers of 400, 500, 600, 700 and 800 kW respectively.
What battery technology does EnerCube 3.0 use?
The system uses 280 Ah LiFePO4 cells, with a 1P20S battery module configuration and model-specific battery cluster arrangements.
Can the system integrate with an existing solar installation?
EnerCube 3.0 supports AC and DC coupling. Integration with an existing solar installation requires a review of inverter compatibility, grid voltage, protection equipment, communication and project controls.
Is EnerCube 3.0 suitable for outdoor installation?
The datasheet specifies outdoor installation, with IP55 battery cabinets and an IP34 electrical room. Site temperature, humidity, altitude, corrosion exposure and installation clearances must be checked during engineering.
What monitoring and communication features are provided?
The system supports 24/7 monitoring and online assisted O&M. Its specified communication interface is Ethernet, using Modbus TCP/IP.
What compliance documentation should buyers request?
The datasheet lists system references UN3536, LVD, EMC and RoHS; cell references IEC62619, UL1973 and UL9540A; PACK reference UN38.3; and PCS references G99, EN50549, AS4777.2 and VDE4105. Buyers should request the applicable certificates or test reports for the exact supplied configuration and destination market.
What warranty is available?
The specified warranty is 5 years, with an option to extend to 10 years subject to agreed terms. Coverage, operating requirements and extension conditions should be confirmed in the quotation.
What information is needed for a quotation?
Provide your project location, intended application, required kW and kWh, load profile, grid voltage and frequency, existing PV or generator details, installation conditions and target delivery date.
Request Your COENG Containerized BESS Proposal
Planning a commercial solar storage project, industrial battery installation or microgrid?
Share your project requirements with COENG to discuss an EnerCube 3.0 configuration matched to your power demand, energy capacity and site conditions. Request a project-specific proposal covering equipment configuration, technical documentation, delivery scope and service requirements.
Request a BESS Proposal
Download the EnerCube 3.0 Datasheet
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All Reviews
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MWhat we appreciate most about the COENG EnerCube 3.0 is its integrated design. Having the batteries, PCS and supporting systems in one container made it easier for our team to review the equipment scope and plan the installation. The model comparison also helped us discuss power and capacity requirements more clearly
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JThe procurement discussions covered more than the battery specifications. Container dimensions, delivery access, unloading responsibilities and commissioning requirements were all important to our project planning. We valued having these points clearly defined before arranging shipment.
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