• Stacked Monocrystalline Silicon Solar Cells System 1
Stacked Monocrystalline Silicon Solar Cells

Stacked Monocrystalline Silicon Solar Cells

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Loading Port:
China Main Port
Payment Terms:
TT OR LC
Min Order Qty:
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Supply Capability:
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Quick Details





Model Number:
PL-1010
Material:
Monocrystalline Silicon
Size:
1m*2m
Number of Cells:
4
Max. Power:
80WP

Packaging & Delivery

Packaging Detail:carton and pallet
Delivery Detail:30days

Specifications

1. monocrystalline silicon solar cells,monocrystalline silicon solar module,pv cell modules
2. Power rang :320 to 480wp

monocrystalline silicon solar cells,monocrystalline silicon solar module,monocrystalline silicon pv cell modules

1. Power rang :5wp to 280 wp per panel;
2. mono crystalline or  poly crystalline;
3. certitication: CE , IEC , TUV, certificate, and so on.
4. With advanced materials and equipments, our modules are designed and manufactured in consistency with the IEC 61215:1993 standards which can guarantee excellent electrical performance and the product life span of 25 years.
5. A film of PECVD is coated on the upper surface as antireflection measure which the characteristic of deep blue color.
6. The modules are embedded with a sheet of imported strong transparent glass, two sheets of long endurance EVA, a high efficiency mono-crystalline cells sheet and a sheet of antihumidity TPT for different weather conditions.
7. High quality anodized aluminum frame which is the choice for strong wind resistance and mountain terrain.
8. A multifunction box can safeguard safe connection.
9. The exterior design and electrical performance of each every module are fully tasted to guarantee superior quality.


Model

Solar ModuleInverterCharge ControllerStorage BatteryDaily Generated Energy(Wh)
Quantity
(pc)
Specr.
(wp)
Power
(W)
DC/ACVoltage/CurrentQuantity
(pc)
Cap./pc
PV320480100012Vdc/220Vac57.6V/10A412V/80Ah1360
PV4004100100012Vdc/220Vac57.6V/10A412V/100Ah1700
PV4804120100012Vdc/220Vac57.6V/10A412V/120Ah2040
when storage battery is fully charged,and all possible loads are in use.


Q: How do solar cells perform in regions with high levels of salt spray and corrosive environments?
Solar cells may experience degradation in regions with high levels of salt spray and corrosive environments. The salt particles and corrosive elements can cause the deterioration of the cell's components, such as the protective coatings and metal contacts. This can result in reduced efficiency and lifespan of the solar cells. However, advancements in materials and designs have been made to improve their resistance to corrosion, allowing solar cells to perform relatively well in such challenging environments.
Q: What is the role of power optimizers in solar cell systems?
The role of power optimizers in solar cell systems is to maximize the energy output of each individual solar panel by ensuring that it operates at its maximum power point (MPP). Power optimizers achieve this by mitigating the effects of shading, module mismatch, and other factors that can decrease the overall performance of the system. They also enable panel-level monitoring and provide important data on the performance of each individual panel, allowing for more efficient maintenance and troubleshooting.
Q: Briefly explain why solar cells are made into components
The main photovoltaic material is the crystalline silicon material (including polysilicon and monocrystalline silicon), this material is high hardness, brittleness, uneven force easily brittle, exposed to the air easily oxidized, and the use of the process can not
Q: Can a solar cell be used in commercial buildings?
The answer is absolutely yes!
Q: Anybody ever heard of solar roll flexible solar panel?
Yes, I did. The solar cell has some specifies as below: Roll able amorphous thin-film solar cells for effective low-light performance Reverse flow protection Fluor polymer construction for extreme durability Link multiple like-units together for even more output
Q: What is the effect of wind on solar cell performance?
The effect of wind on solar cell performance can be both positive and negative. On one hand, a gentle breeze can help to cool down the solar panels, preventing them from overheating and improving their overall efficiency. On the other hand, strong winds can create vibrations that may lead to structural damage or reduce the stability of the solar panels, potentially affecting their performance. Therefore, it is important to strike a balance between the benefits of cooling and the risks associated with excessive wind exposure when designing and installing solar systems.
Q: Can solar cells be used in disaster relief efforts?
Yes, solar cells can be used in disaster relief efforts. They are a reliable and sustainable source of energy that can provide electricity in areas affected by natural disasters, where power grids may be damaged or non-existent. Solar cells can be used to power emergency lighting, communication systems, medical equipment, and water purification systems, among other essential needs. Additionally, solar energy can be harnessed to charge mobile devices and provide a means of communication and access to information during these critical times. Overall, solar cells are a valuable tool in disaster relief efforts, offering a clean and renewable energy solution to support affected communities.
Q: What is sun cells technology?
Sun cell technology is a advanced high power generation technology based on how the sun works on our daily life. It utilizses sun power to generate different powers in the technical way (mostly by using silicon as a transimmiter) to generate energy, and use it in our daily work and life.
Q: How to get high voltage and high current output of solar cells?
Well, there is a scientific way which can help you to get the high current solar cells, but it can only be used in the experiment.
Q: What diode does the solar panel use?
Or part of the shadow to the battery in the anti-output and power consumption according to the known solar modules suitable for the voltage range. Are in the Schottky diode conduction

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