High quality solar panel 250w
- Loading Port:
- China Main Port
- Payment Terms:
- TT OR LC
- Min Order Qty:
- -
- Supply Capability:
- 10000000000000 watt/month
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Quick Details
Place of Origin: | Guangdong China (Mainland) | Brand Name: | CAP | Model Number: | 50w100w150w200w250w300w |
Material: | Monocrystalline Silicon | Size: | 1385*1035*75mm | Number of Cells: | 72pcs |
Max. Power: | 300w | type: | solar panel | color: | blue&black |
warranty: | 5 years |
Packaging & Delivery
Packaging Detail: | standard export package for solar panel |
Delivery Detail: | 7-15 days for solar panel |
Specifications
solar panel
High Efficiency
25 years Warranty
High-transmissivity low-iron tempered glass
Solar Panel
50w100w150w200w250w300w
Characteristics
1,High and stable conversion efficienly based on over 4 years professional experience
2 ,High reliability with guaranteed +/-10% output power tolerance
3,Proven materials,tempered front glass,and a sturdy anodized aluminum frame allow modules to operate reliably in multiple mountily configurations
4,Combination of high efficicncy and attractive appearance
Quality and Safety
1,25 year 80%,10 year 90% power warranty 3 year power warranty
2,ISO9001:2000 (Quality Management system) certified factory
3,Product Quality warranty & products Liability Insurance to guarantee and user' benefits
4,Certifications TUV Intercert, CE Temperature Coefficients
Module Type | 100w | 150w | 200w | 250w | 300w |
Maximum Power at ST(Pmax)W | 100wp | 150wp | 200wp | 250wp | 300wp |
Maximum Power Voltage(Vmp)V | 36/18 | 36/18 | 36/18 | 30.8v | 36/18 |
Maximum Power Current(Imp)A | 2.77/5.55 | 4.16/8.33 | 5.55/11.1 | 8.11A | 8.33/16.66 |
Open Circuit Voltage(Voc)V | 39.5/19.05 | 39.3/19.4 | 39.6/19.5 | 36.2V | 39.6/19.8 |
Short Circuit Current(Isc)A | 3.04/6.09 | 4.58/9.16 | 6.1/12.2 | 8.7A | 9.16/18.33 |
Cell Efficiency(%) | 18.60% | 18.10% | 18.60% | 17.80% | 18.10% |
Module Efficiency(%) | 17.70% | 17.20% | 17.70% | 17.10% | 17.20% |
Operating Temperature°C | -40°C to +85°C | -40°C to +85°C | -40°C to +85°C | -40°C to +85°C | -40°C to +85°C |
Maximum system voltage | 1000V(IEC)DC | 1000V(IEC)DC | 1000V(IEC)DC | 1000V(IEC)DC | 1000V(IEC)DC |
Power tolerance | -0.03 | -0.03 | -0.03 | -0.03 | -0.03 |
Temperature coefficients of Pmax | -0.45%/°C | -0.45%/°C | -0.45%/°C | -0.45%/°C | -0.45%/°C |
Temperature coefficients of Voc | -0.27%/°C | -0.27%/°C | -0.27%/°C | -0.27%/°C | -0.27%/°C |
Temperature coefficients of Isc | 0.05%/°C | 0.05%/°C | 0.05%/°C | 0.05%/°C | 0.05%/°C |
Weight(kg) | 8 | 11 | 14 | 20 | 25.5 |
Number of cell(pcs) | 4*9 | 4*9 | 6*10 | 6*12 | 6*12 |
Dimensions(mm) | 1194*534*35/30 | 1580*808*50/35 | 1471*670*40/35 | 1640*992*50 | 2000*1050*50 |
- Q:Can solar cells be used in museums?
- Yes, solar cells can be used in museums. They can be used to power various devices and lighting within the museum, reducing reliance on traditional energy sources and contributing to a more sustainable and environmentally friendly operation. Additionally, solar cells can be integrated into the design of museum buildings, providing a visually appealing and efficient way to generate renewable energy.
- Q:What is the role of monitoring systems in solar cell systems?
- The role of monitoring systems in solar cell systems is to continuously monitor and analyze the performance and efficiency of the solar panels. It allows for real-time tracking of the energy production, detecting any malfunctions or abnormalities, and identifying potential issues that may affect the overall system performance. This data helps in optimizing the efficiency of the solar cell system, ensuring maximum energy generation, and enabling timely maintenance and repairs. Monitoring systems also provide valuable insights for system optimization, energy consumption analysis, and performance evaluation.
- Q:What is the impact of electromagnetic interference on solar cell performance?
- Electromagnetic interference (EMI) can have a significant impact on the performance of solar cells. EMI refers to the disturbance caused by electromagnetic radiation from external sources, such as power lines, electronic devices, or radio frequency signals. This interference can disrupt the normal functioning of solar cells and degrade their efficiency. EMI can lead to reduced power output and overall performance degradation of solar cells. The electromagnetic waves can induce unwanted electrical currents or voltages in the solar cell, which can interfere with the normal flow of electrons and cause power losses. Additionally, EMI can introduce noise and create fluctuations in the output voltage or current of the solar cell, affecting the stability and reliability of the system. To minimize the impact of EMI on solar cell performance, various mitigation techniques can be employed. These include utilizing shielding materials or enclosures to block electromagnetic radiation, implementing proper grounding and isolation techniques, and using filters or suppressors to reduce unwanted electromagnetic signals. Moreover, adhering to electromagnetic compatibility standards during the design and installation of solar systems can help mitigate the effects of EMI and ensure optimal performance of solar cells.
- Q:What do the solar cell suppliers provide once we purchase the order from the solar cells from them.
- Some of the solar cells suppliers will also provide the construction of the solar cells for your project.
- 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 space heating systems?
- Yes, solar cells can be used in space heating systems. Solar panels, which consist of solar cells, can convert sunlight into electricity. This electricity can then be used to power space heating systems, either directly or through storage in batteries. Additionally, solar thermal systems can use solar energy to heat water or air, which can then be used for space heating purposes.
- Q:Can solar cells be used for powering irrigation systems?
- Yes, solar cells can be used for powering irrigation systems. Solar energy can be converted into electricity through solar cells, which can then be used to power irrigation pumps and other components of the irrigation system. This provides a sustainable and environmentally friendly way to meet the energy needs of irrigation systems, especially in remote areas or regions with limited access to the electricity grid.
- Q:Can solar cells generate electricity at night?
- No, solar cells cannot generate electricity at night as they rely on sunlight to produce electricity.
- Q:Where can I buy the 156x156mm high efficiency poly solar cells assembly?
- 156x156mm high efficiency poly solar cells assembly is usually very easy to get, all you need to do is to post your need online, and the suppliers will come to you.
- Q:What is the impact of solar cells on reducing water usage?
- Solar cells have a positive impact on reducing water usage because they generate electricity without needing water for cooling or steam production, unlike traditional power plants. This reduces the strain on water resources and helps conserve water for other important uses.
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High quality solar panel 250w
- Loading Port:
- China Main Port
- Payment Terms:
- TT OR LC
- Min Order Qty:
- -
- Supply Capability:
- 10000000000000 watt/month
OKorder Service Pledge
OKorder Financial Service
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