Mono Crystal Solar Cells Container Energy Power Storage System Battery Pack Solar Energy
- Loading Port:
- Shanghai
- Payment Terms:
- TT OR LC
- Min Order Qty:
- 1 set
- Supply Capability:
- 10 set/month
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Specification
Container energy power storage system battery pack solar energy
Safety and reliable
● Optimized LFP route, strict cell safety test;
● Thermal simulation design of the whole process from PACK to container;
● Full range of electrical protection: high and low voltage separation, insulation monitoring, grounding protection, lightning protection design;
● Industrial grade temperature control system, to ensure the efficient and reliable operation of the system;
● Intelligent fire control, strategic linkage, multi-level protective measures.
Multidimensional integration
● Easy to transport, installation and operation;
● Easy to copy and expand modularized;
● Highly integrated battery module design to reduce internal resistance, improve consistency and energy efficiency;
●Intelligent local controller unified scheduling management in the box to improve the overall security and stability of the system.
Intelligence and Efficiency
● Large capacity, low internal resistance, long life of the cell design, improve the economy;
● High stability chip level BMS technology, improve battery SOC and available capacity accuracy;Cell level monitoring, improve the consistency and life of batteries;
● Full scene integrated EMS system architecture, high efficiency, digital, intelligent to ensure the reliability, stability and economy of energy storage and power supply;
● Fault prediction, fault identification and quick positioning.
Item NO. | TSMG00002650 | TSMG00002660 | TSMG00002800 | TSMG00003100 |
Battery specification | ||||
Rated discharge rate | 1C | 0.5C | 0.5C | 0.25C |
Battery cell | 3.2V/120AH | 3.2V/145Ah | 3.2V/120Ah | 3.2V/145Ah |
Configuration | 1P216S | 2P24OS | 2P228S | 2P240S |
Voltage range | 604.8-788.4V | 672-850V | 638.4-809.4V | 672-850V |
Nominal capacity | 2.65MWh | 2.66MWh | 2.80MWh | 3.10MWh |
Communication Interface | CAN,RS485,Ethernet | CAN,RS485,Ethernet | CAN,RS485,Ethernet | CAN,RS485,Ethernet |
System specification | ||||
Number of battery pack | 32 | 12 | 16 | 14 |
IP | IP54 | IP54 | IP54 | IP54 |
Size( L*W*H) | 13716mm*2438mm*2896mm | 12192mm*2438mm*2896mm | 12192mm*2438mm*2896mm | 12192mm*2438mm*2896mm |
Weight(Include/exclude the battery) | 48.4T/8T | 38T/7T | 39T/7T | 38T/7T |
Battery temperature control mode | Industrial grade temperature controlled air conditioning | Industrial grade temperature controlled air conditioning | Industrial grade temperature controlled air conditioning | Industrial grade temperature controlled air conditioning |
Fire extinguishing system | HFC-227ea fire extinguishing system | HFC-227ea fire extinguishing system | HFC-227ea fire extinguishing system | HFC-227ea fire extinguishing system |
Images of Container energy power storage system
- Q: 24V 200W solar cells can charge 12V battery?
- The 200-watt battery short-circuit current is almost 12-15 amps, with the battery board connected to the 12-volt 100-hour battery charge current is almost 8-10 amps, just easy to use.
- Q: What should I know about the Crystalline silicon photovoltaic cells?
- Crystalline silicon photovoltaic cells is the most early development of a solar cell. 1.leV, the band gap width of silicon, is an indirect migration type semiconductor, which is not the most suitable material for making solar cells.
- Q: How do solar cells perform in regions with high levels of humidity and rainfall?
- Solar cells can still perform well in regions with high levels of humidity and rainfall. While humidity may slightly decrease the efficiency of solar cells, modern designs and materials are developed to withstand these conditions. Additionally, rainfall can actually be beneficial as it helps to clean the solar panels, removing dust and dirt that may accumulate on the surface. Overall, solar cells can still generate electricity effectively in regions with high humidity and rainfall, although their performance may be slightly affected.
- Q: Can solar cells be used for powering remote communication towers?
- Yes, solar cells can be used for powering remote communication towers. Solar cells convert sunlight into electricity, which can be used to power various devices including communication towers. This is especially useful for remote areas where access to the power grid is limited or non-existent. Solar-powered communication towers offer a sustainable and cost-effective solution for maintaining connectivity in these remote locations.
- Q: How do solar cells perform in areas with high levels of salt spray?
- Solar cells generally perform well in areas with high levels of salt spray. However, prolonged exposure to salt spray can potentially corrode the surface of the cells, reducing their efficiency over time. Regular maintenance, such as cleaning and protective coating, can help mitigate the effects of salt corrosion and ensure optimal performance.
- Q: How do solar cells perform in areas with high levels of air pollution and dust?
- Solar cells do not perform as efficiently in areas with high levels of air pollution and dust. The particles in the air can block sunlight from reaching the solar cells, reducing their ability to generate electricity. Additionally, the dust and pollution can accumulate on the surface of the solar panels, further decreasing their performance. Regular cleaning and maintenance are necessary to ensure optimal efficiency in such areas.
- Q: How do solar cells perform in areas with high levels of pollen?
- Solar cells can be affected by high levels of pollen in certain ways. Pollen, when accumulated on the surface of solar panels, can reduce their efficiency by blocking sunlight from reaching the cells. This reduction in efficiency can result in a decrease in the overall energy generation of the solar panels. Hence, it is important to regularly clean and maintain solar panels in areas with high pollen levels to ensure optimal performance.
- Q: How do solar cells perform in areas with limited sunlight?
- Solar cells generally perform less efficiently in areas with limited sunlight. This is because solar cells rely on sunlight to convert light energy into electricity. In areas with limited sunlight, such as regions with frequent cloud cover or high latitudes, solar cells may generate less electricity or even fail to produce any power at all. However, advancements in solar cell technology, such as the development of more efficient and sensitive materials, have improved their performance in low-light conditions to some extent.
- Q: Can solar cells be used in off-grid applications?
- Yes, solar cells can be used in off-grid applications. Off-grid applications refer to situations where there is no access to the traditional electricity grid. Solar cells, also known as photovoltaic cells, convert sunlight directly into electricity, making them a reliable source of power for off-grid applications. They can be used to generate electricity for various purposes, such as powering homes, buildings, or remote installations in areas without access to the grid.
- Q: How do solar cells perform in areas with high levels of sandstorms?
- Solar cells may not perform optimally in areas with high levels of sandstorms. The sand particles can accumulate on the surface of the solar panels, reducing their efficiency by blocking sunlight and potentially scratching the cells. Regular cleaning and maintenance would be required to ensure proper functioning of the solar cells in such conditions.
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Mono Crystal Solar Cells Container Energy Power Storage System Battery Pack Solar Energy
- Loading Port:
- Shanghai
- Payment Terms:
- TT OR LC
- Min Order Qty:
- 1 set
- Supply Capability:
- 10 set/month
OKorder Service Pledge
OKorder Financial Service
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