Products Description
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The panels feature a sleek and modern appearance, suitable for various architectural styles. Their streamlined and contemporary designs can blend well with both traditional and modern buildings. Whether it's a historic mansion or a futuristic skyscraper, solar panels can be installed in a way that complements the overall aesthetic, adding a touch of technological elegance while also serving an important energy function.
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Solar panels offer great flexibility in terms of installation locations. They can be installed on rooftops of residential and commercial buildings, on the ground in large solar farms, or even integrated into the structure of a building's facade or awning. This versatility allows for maximum utilization of available space and enables energy generation in a wide range of settings, from urban areas to rural landscapes.
Products parameters
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Module |
WN 550-580W - 36MH | ||||||||
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Max Power Pmax(W) |
550 | 560 | 565 | 570 | 580 | ||||
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Max Power Voltage(Vmp/V) |
41.50 | 41.77 | 41.92 | 42.07 | 42.37 | ||||
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Max Power Current(Imp/A) |
13.26 | 13.41 | 13.48 | 13.55 | 13.69 | ||||
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Open Circuit Voltage(Voc/V) |
50.21 | 50.47 | 50.60 | 50.74 | 51.02 | ||||
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Short Circuit Current(Isc/A) |
14.00 | 14.15 | 14.23 | 14.31 | 14.47 | ||||
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Module Efficiency(%) |
21.29 | 21.68 | 21.87 | 22.07 | 22.45 | ||||
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Power Tolerance(W) |
0 ~ + 3 %
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Operating Temperature
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-40 °C ~ +85 °C
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Max Series Fuse Rating
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30 A
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Products Overview


| Product Specification | |
| Module Size |
2278×1134×30
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| Weight | 29kg |
| Cell Type |
N- type Mono
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| Junction Box | IP68 |
| Connector | PV Connector |























Technique
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The backsheet of a solar panel is another important component. It is typically made from a composite material that offers a combination of properties. The backsheet provides a barrier against moisture ingress from the rear side of the panel. It also has good electrical insulation properties to prevent short circuits. The material is selected for its durability and resistance to UV radiation, as it is exposed to sunlight for long periods. The backsheet is carefully laminated onto the back of the encapsulated cell assembly, ensuring a seamless and protective covering.
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Solar panel manufacturing often involves the use of laser technology. Lasers are used to scribe patterns onto the silicon wafers. These patterns can define the active areas of the cells and create electrical isolation between different regions. The precision of the laser scribing process allows for very fine and accurate features to be created, contributing to the overall performance and efficiency of the solar cells.
FAQ
Can the panel work with a battery storage system?
Yes, the panel can be easily integrated with a battery storage system. This allows the excess electricity generated during the day to be stored and used during the night or when there is a power outage. The panel's output voltage and current are compatible with most standard battery inverters and charge controllers. By combining the panel with a battery, homeowners and businesses can achieve greater energy independence and better manage their energy consumption patterns.
What is the spectral response of the panel?
The panel has a broad spectral response, meaning it can effectively convert a wide range of wavelengths of sunlight into electricity. It is designed to capture not only the visible light spectrum but also some of the infrared and ultraviolet wavelengths. The solar cells are engineered with materials and structures that optimize the absorption and conversion of different photon energies. This broad spectral response contributes to its overall efficiency and ability to generate power under various sunlight conditions.
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