• Poly-crystalline Solar Cell 156MM with Excellent Conversion Efficiency and Weak Light Performance System 1
Poly-crystalline Solar Cell 156MM with Excellent Conversion Efficiency and Weak Light Performance

Poly-crystalline Solar Cell 156MM with Excellent Conversion Efficiency and Weak Light Performance

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Loading Port:
Tianjin
Payment Terms:
TT or LC
Min Order Qty:
10 watt
Supply Capability:
500 watt/month

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Guaranteed by refinement solar cell producing process, up to 18.1% efficiency for mass production of CSG-MM156 series cells, up to 18.5% for the highest efficiency, up to 265W (6×10 Series) for module output max power;
Better shortwave response ensured by Selective Emitter Technology;
Better continuousness of fingers and stable performance ensured by Double Printing Technology;
Whole-process inspection from wafer input to cell packaging, to ensure high quality and excellent performance;
Production and Quality Control
CSG fully integrated PV chain from silicon materials, ingot, wafer, solar cell to solar module, and well-established QC management system, to guarantee consistency of high quality;
Mature technical control and strict sorting standard, to ensure consistency and reliability of solar cell;
Completely careful operation during production to avoid micro-cracks and reduce breakage rates during module assembly;
Electrical Properties
Mature crystalline cells manufacturing technology and complete quality control system, to ensure excellent electrical stability;
Lower module encapsulation loss realized by reasonable electrical characteristics setting, including high voltage and low current, high parallel resistance and low series resistance, classification with precise current classes, and positive power tolerance;  
Excellent conversion efficiency, weak light performance and shortwave response guaranteed by leading R&D innovation system;
Recommend Welding Technique
Welding:tin-coated copper ribbons, coated with 20-25μm thickness (64%Sn,36%Pb)

 

 

Applications of Solar Cell Products

1Fields of Aerospace, Space development and Space-tech.
Solar cells products first to show their talents in space technology because of its reliability and unique superiority. 1958 Solar first landed on satellites. Thus aerospace, satellites have not been away from the solar cell; the development of future space, the first month of the solar cell kicking will play an important role. It landed on other planets, the current Mars rover "Spirit", "Opportunity" solar cells on which they work is the main power supply.

2. Application of industrial and agricultural production.

Solar cell products have also been widely used in the industrial and agricultural as a new energy. In scattershot interpersonal mountain sea, a variety of lighthouse beacon, a variety of satellite communication station; a variety of remote sensing, meteorological station, road and rail automatic lights have become the preferred power source.
In many remote areas without electricity-grid, photovoltaic power supply system is widely used too.
Photocell gets a lot of applications in automatic control, such as the measurements of seized and number for the plant products; production of various types of sensors; photocell various wavelengths (colors) in response to different sensitivity (or stamped filter) of the probe light color.

Solar cell products are also the professional solar power of Transportation, communications, forestry, agriculture, television, meteorology, geology and other.

3. Small civilian life products

Solar cell products have lots of small product range, under various names currently.

(1)     Small-scale photovoltaic system class:
Solar charger: cases can give two AA nickel-cadmium battery, or do a small 3V power supply.
Solar Calculator:  portable pocket calculator to do the power supply, there is light can work.
Solar hood: use a small fan to automatically adjust the sun, summer is cool to take the absolute best.
Solar portable lights: solar battery charging, energy storage batteries, particularly suitable for areas without electricity and mobile use.

(2)     Many variety of electrical equipment and backup power.

 

Q:What is the role of surge suppressors in solar cell systems?
The role of surge suppressors in solar cell systems is to protect the system from voltage surges or spikes that can potentially damage the solar panels, inverters, or other components. These surge suppressors help regulate and stabilize the electrical flow by diverting excess voltage to ground, ensuring the smooth operation and longevity of the solar cell system.
Q:Can solar cells be used in high-altitude areas?
Yes, solar cells can be used in high-altitude areas. In fact, solar cells can actually be more efficient at higher altitudes due to reduced atmospheric interference and increased solar irradiance. However, the performance of solar cells can still be affected by factors like temperature and snow cover, which need to be considered for optimal utilization in high-altitude regions.
Q:Are solar cells affected by temperature?
Yes, solar cells are affected by temperature. High temperatures can cause a decrease in the efficiency of solar cells, resulting in a decrease in their power output. This is due to the fact that the performance of the semiconductor materials used in solar cells can degrade at elevated temperatures. Additionally, temperature variations can also lead to thermal stress, which can impact the structural integrity of the solar cells.
Q:How do solar cells perform in areas with high levels of insect activity?
Solar cells can be affected by insects in areas with high levels of insect activity. Insects can cause shading on the surface of solar panels, reducing their efficiency. Additionally, insect debris and waste can accumulate on the panels, further decreasing their performance. Regular cleaning and maintenance can help mitigate these issues and ensure optimal performance of solar cells in such areas.
Q:Can solar cells be used to power remote locations?
Yes, solar cells can be used to power remote locations. Solar cells, also known as photovoltaic cells, convert sunlight into electricity. They can be installed in remote areas where there is no access to the grid or where it is not feasible to connect to the grid. Solar power is a sustainable and renewable energy source, making it an ideal solution for powering remote locations that are off the grid.
Q:How efficient are solar cells?
Solar cells are highly efficient at converting sunlight into electricity, with the average efficiency of commercial solar panels ranging from 15% to 20%. However, advancements in technology have led to the development of more efficient solar cells, such as multi-junction cells, which can achieve efficiencies of over 40%.
Q:What is the impact of solar cells on reducing electricity bills?
Solar cells have a significant impact on reducing electricity bills as they harness the power of the sun to generate clean and renewable energy. By producing electricity on-site, solar cells can offset a considerable portion of a household's or business's energy consumption, leading to substantial savings on monthly electricity bills. Moreover, excess energy generated by solar cells can be fed back into the grid, allowing homeowners and businesses to earn credits or even receive payments for the surplus energy they contribute. Overall, solar cells offer a sustainable and cost-effective solution to reduce electricity bills and promote energy independence.
Q:What is the role of inverters in solar cell systems?
The role of inverters in solar cell systems is to convert the direct current (DC) generated by the solar panels into alternating current (AC) that can be used to power electrical devices or be fed back into the grid.
Q:What is the maximum efficiency achievable by a solar cell?
The maximum efficiency achievable by a solar cell is determined by the Shockley-Queisser limit, which states that the theoretical maximum efficiency is around 33.7% for a single-junction solar cell. However, in reality, due to factors such as material limitations and losses in the conversion process, the practical maximum efficiency of commercial solar cells currently ranges between 15% to 22%.
Q:What is the solar cell?
The structure of solar cells is diverse. Now, PN-type solar cells composed of P-type semiconductors and N-type semiconductors are used. They are mainly composed of P-type and N-type semiconductors, electrodes, and antireflection films.

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