containerized battery energy storage system
Integration and modularization: Integrating components such as battery packs, battery management systems, energy storage inverters, and energy management systems into a standard container to form a compact, plug and play energy storage unit. Multiple containers can be flexibly combined according to actual needs to achieve energy storage system configurations of different scales, making it easy to expand and upgrade.
Efficient energy conversion: The equipped energy storage inverter can efficiently achieve the mutual conversion of DC and AC electricity, supporting both grid connected and off grid operation modes. It can interact with the power grid and provide stable voltage and frequency support for the load, improving energy utilization efficiency.
Intelligent management and monitoring: Equipped with an intelligent management system, it can monitor various operating parameters of the energy storage unit in real time, such as battery status, temperature, voltage, current, etc. By optimizing the charging and discharging strategy, the battery life can be extended and the overall performance of the system can be improved. It also has remote communication function, which facilitates remote diagnosis and maintenance by operation and maintenance personnel, reducing operation and maintenance costs.
Strong environmental adaptability: The container shell is made of high-strength and corrosion-resistant materials, which have good waterproof, dustproof, fireproof, shockproof, UV resistant and other properties. It can work normally in harsh environmental conditions such as high temperature, humidity, sand and dust. At the same time, the system is equipped with a comprehensive cooling system and fire protection system to ensure the stable and safe operation of the equipment in various environments.
Container Energy Storage System
Advantageous Functions
- Smooth New Energy Output
- Peak Valley Arbitrage
- Demand Management
- Construction of Microgrid

20FT 40HQ Container Energy Storage System



PCS capacity:300kW
Dimension:3000*2438*2591(W*D*H)mm
Battery capacity:1075kWh
PCS capacity:500kW
Dimension:6058*2438*2591(W*D*H)mm


| Specification | |||
|
Model No.: |
MECC-645-300 |
MECC-1075-500 |
MECC-2150-1000 |
|
Container Size |
20ft |
20ft |
40HQ |
| Battery Parameter | |||
|
Battery Type |
LifePo4 |
||
|
Battery capacity |
645.12kWh |
1075.2kWh |
2150.4kWh |
|
Battery cabinet capacity |
768V/280Ah,215.04kWh |
||
|
Battery cabinet Qty |
3pieces in parallel |
5pieces in parallel |
10pieces in parallel |
|
Cycle life time |
10000times |
||
| PCS Parameter | |||
|
PCS power |
300kW |
500kW |
1MW |
|
Isolated Transformer |
Included |
||
|
Output Voltage |
380V/400V 3L+N+PE |
||
| Others | |||
|
Air conditioner |
Yes |
||
|
Fire fighting system |
Yes |
||
|
Certification |
CE,UN38.3,EN50549,G99,VDE4105 |
||








FAQ
What is the capacity range of a containerized battery energy storage system?
The capacity of a containerized battery energy storage system can vary widely depending on its design and intended use. Small scale models might have a capacity in the range of a few kilowatt hours (kWh), suitable for powering a small off grid cabin or a set of low power devices. Larger industrial grade containers can store hundreds or even thousands of kWh, which are useful for large scale solar power plants or grid supporting energy storage systems.
How efficient is the energy storage in containerized battery energy storage system?
The efficiency of energy storage in a containerized battery energy storage system is mainly determined by the type of energy storage technology used, such as lithium ion batteries. Modern lithium ion based storage systems in these containers typically have an efficiency of around 90 - 95%. This means that for every 100 units of electrical energy input into the storage system, 90 - 95 units can be retrieved for use, with the remaining 5 - 10% being lost as heat during the charging and discharging processes.
What are the maintenance requirements for containerized battery energy storage system?
Regular maintenance of containerized battery energy storage system includes periodic inspection of the battery cells for signs of swelling, leakage, or overheating. The electrical connections should be checked for tightness and corrosion. Temperature and humidity monitoring systems need to be calibrated regularly to ensure optimal operating conditions. Additionally, software controlled systems may require periodic updates to maintain efficient operation. Battery specific maintenance might involve equalizing the charge of battery cells in some cases.
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