12 Volt Solar Cells - Lower Price but Constant Good Quality Polycrystalline 156 Solar Cell High Efficiency
- Loading Port:
- Shanghai
- Payment Terms:
- TT or LC
- Min Order Qty:
- 1000 pc
- Supply Capability:
- 20000 pc/month
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Packaging & Delivery | |
Packaging Detail: | solar cell, 10boxes*100pcs in one carton, safe enough for transfer |
Delivery Detail: | 5~7 days after receive deposit |
Specifications | |
solar cell for solar panel | |
1.16.8%~18.25% high efficiency | |
2.100% checked quality | |
3.ISO9001/ISO14001/TUV/UL | |
4.fast lead time |
Product Description
POLY6'(156*156) Multicrystalline Silicon solar celle
Diagonal: 220mm±0.5mm
Thickness(Si): 200±20 μm
Dimension: 156mm×156mm±0.5mm
Front(-) Back(+)
Blue anti-reflecting coating (silicon nitride); Aluminum back surface field;
1.5mm wide bus bars; 2.0mm wide soldering pads;
Distance between bus bars: 51mm. Distance between bus bars :51mm.
poly 156 cell Electrical Characteristics( solar cell for solar panel ) | ||||||||||||
Efficiency(%) | 18 | 17.8 | 17.6 | 17.4 | 17.2 | 16.8 | 16.6 | 16.4 | 16.2 | 16 | 15.8 | 15.6 |
Pmpp(W) | 4.33 | 4.29 | 4.24 | 4.19 | 4.14 | 4.09 | 4.04 | 3.99 | 3.94 | 3.9 | 3.86 | 3.82 |
Umpp(V) | 0.53 | 0.527 | 0.524 | 0.521 | 0.518 | 0.516 | 0.514 | 0.511 | 0.509 | 0.506 | 0.503 | 0.501 |
Impp(A) | 8.159 | 8.126 | 8.081 | 8.035 | 7.99 | 7.938 | 7.876 | 7.813 | 7.754 | 7.698 | 7.642 | 7.586 |
Uoc(V) | 0.633 | 0.631 | 0.628 | 0.625 | 0.623 | 0.62 | 0.618 | 0.617 | 0.615 | 0.613 | 0.611 | 0.609 |
Isc(A) | 8.709 | 8.677 | 8.629 | 8.578 | 8.531 | 8.478 | 8.419 | 8.356 | 8.289 | 8.22 | 8.151 | 8.083 |
. Warranty:
(1)5years quality assurance resulted from design, material and workmanship;
(2)Not less than 90% power output within 10years;
(3)Not less than 80%power output within 25years;
(4)Third-party insurance(Certificate Of Products Quality Warranty and Certificate Of Products Liability Insurance).
Advantages:
Lower price but constant good quality:
1. Excellent A grade solar cell from JA solar or our own lab;
2. Excellent backsheet from SFC, 3M;
3. EVA from Bridgestone;
4. Junction box with UL and TUV listed, IP65;
5. High transmission low iron tempered glass;
6. Solar panels with TUV, IEC, CE, ISO9001, ISO14001, CEC marked and ETL, MCS in processing;
PACKAGE AND SHIPPING ;
Material in stock can be produce (procedure 5-20days) right away after pre-payment confirmation. COSCO Mearsk MSC or othe ship to worldwide for safe shipping, don't worry about package damager or loss. It take 15-40 days to worldwide, Please note us your contact details include your phone number for easy contacting from shipping company officer.And we have about 12 years in solar panel production and exporting all over th world
Working Principle of Home Solar Cell
Home solar cell is the core part of the solar power system. The role of home solar cell is to convert the sun's light energy into electrical energy, and the DC output is stored in the battery. Home solar cell is the most important part of the solar system, the conversion rate and service life is an important factor in the decision whether to use the solar value.
Brief introduction of Home Solar Cell
1. Cell: High efficiency (over 16.5%) of monocrystalline silicon solar chip package, to ensure adequate power generation solar panels.
2. Glass: low Steel of suede glass (also called white glass), a thickness of 3.2mm, in the wavelength range of the spectral response of the solar cell (320-1100nm) light transmission rate of more than 91%, greater than 1200nm for IR light have a higher reflectivity. This glass also resistant to ultraviolet radiation from the sun, the light transmittance is not decreased.
3. EVA: using plus UV agents, antioxidants and the thickness of the curing agent is 0.78mm high EVA film as a sealant between the solar cell and a glass, TPT linking agent. It has a high light transmittance and resistance to aging.
4. TPT: solar cells on the back cover - fluorine plastic film is white, from the reflection of the sun, so the slight increase in the efficiency of the components, and because of having a high infrared emissivity, can reduce the operating temperature of the component, but also help to improve the efficiency of the module. Of course, this fluorine plastic film solar cell having a first packaging material required aging resistance, corrosion resistance, and the basic requirements, airtight and so on.
5. Border: used in high strength aluminum alloy frame, strong resistance to mechanical shock resistance. Solar Power is the highest value part. Its role is to the sun's radiation is converted to electrical energy stored in batteries or sent to, or promote the work load.
- Q: Can solar cells be used in developing countries?
- Yes, solar cells can be used in developing countries. In fact, solar energy is an ideal solution for providing electricity in remote areas without access to a reliable power grid. Solar cells are cost-effective, require minimal maintenance, and can be easily installed in various locations. Moreover, using solar energy can help reduce reliance on fossil fuels, improve energy accessibility, and contribute to sustainable development in developing countries.
- Q: Can solar cells be used in remote areas with no grid access?
- Yes, solar cells can be used in remote areas with no grid access. Solar cells convert sunlight into electricity, making them an ideal solution for remote areas where traditional power grids are not accessible. These off-grid solar systems can provide a reliable and sustainable source of electricity for various applications such as lighting, charging small devices, and powering basic appliances. Additionally, advancements in battery storage technology allow excess energy generated during the day to be stored and used during the night, ensuring continuous power supply even in remote areas without grid access.
- Q: How do solar cells handle electrical surges or lightning strikes?
- Solar cells are designed to handle electrical surges or lightning strikes in a few ways. Firstly, the metal frames and grounding systems in solar installations help to dissipate any excess electrical energy. Additionally, many solar systems are equipped with surge protection devices that divert the excess electrical current away from the solar cells, preventing damage. Finally, solar panels are often connected to an inverter, which acts as a buffer and helps to regulate the flow of electricity, providing another layer of protection against surges or lightning strikes.
- Q: Can solar cells be used for water desalination?
- Yes, solar cells can be used for water desalination. Solar-powered desalination systems harness the energy from sunlight to convert seawater or brackish water into fresh water. This process is known as solar desalination and involves using solar panels to generate electricity, which in turn powers the desalination system. Solar desalination offers a sustainable and environmentally-friendly solution to address water scarcity in regions with abundant sunlight.
- Q: What is the role of solar cells in powering streetlights?
- The role of solar cells in powering streetlights is to harness sunlight and convert it into electricity. This electricity is then stored in batteries, which are used to power the streetlights during nighttime or when there is not enough sunlight available. Solar cells enable streetlights to operate independently from the electrical grid, reducing energy costs and environmental impact.
- Q: Can solar cells be used in railway applications?
- Yes, solar cells can be used in railway applications. They can be installed on train rooftops to generate electricity, which can power various systems such as lighting, air conditioning, and communication systems. This helps reduce reliance on traditional power sources, lower operating costs, and make railways more sustainable and environmentally friendly.
- Q: How does the solar cell work in terms of photochemical conversion?
- The principle of photovoltaic power generation is: the typical material used is silicon (Si), the outer number of electrons is 4, then the silicon consists of four atoms molecular state, known as true semiconductors.
- Q: Can solar cells be used in medical devices?
- Yes, solar cells can be used in medical devices. Solar cells can provide a renewable and sustainable source of energy for various medical devices, such as remote monitoring systems, wearable devices, and even implantable devices. They can help eliminate the need for frequent battery replacements and provide continuous power supply, making them particularly useful in remote or resource-limited areas.
- Q: Can solar cells be used in vehicles?
- Yes, solar cells can be used in vehicles. They are commonly used in electric vehicles (EVs) to charge the battery and provide power to various systems, increasing their range and efficiency. Solar panels can be installed on the roof or hood of a vehicle to capture sunlight and convert it into electricity, helping to reduce reliance on grid charging and decrease carbon emissions.
- Q: How do solar cells impact global warming?
- Solar cells have a positive impact on global warming as they generate clean, renewable energy by converting sunlight into electricity, reducing the reliance on fossil fuels. By utilizing solar cells, we can decrease greenhouse gas emissions and mitigate climate change.
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12 Volt Solar Cells - Lower Price but Constant Good Quality Polycrystalline 156 Solar Cell High Efficiency
- Loading Port:
- Shanghai
- Payment Terms:
- TT or LC
- Min Order Qty:
- 1000 pc
- Supply Capability:
- 20000 pc/month
OKorder Service Pledge
OKorder Financial Service
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