• Sunman Solar Panels - Polycrystalline Solar Panels Made in Thailand System 1
  • Sunman Solar Panels - Polycrystalline Solar Panels Made in Thailand System 2
  • Sunman Solar Panels - Polycrystalline Solar Panels Made in Thailand System 3
  • Sunman Solar Panels - Polycrystalline Solar Panels Made in Thailand System 4
Sunman Solar Panels - Polycrystalline Solar Panels Made in Thailand

Sunman Solar Panels - Polycrystalline Solar Panels Made in Thailand

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Loading Port:
Guangzhou
Payment Terms:
TT OR LC
Min Order Qty:
26 pc
Supply Capability:
100000 pc/month

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Characteristics of Polycrystalline Solar Panel

I Solar Cell : High efficiency crystalline solar cell. Even if under the weak light, the solar module can produce maximum power output.

II Tempered glass (toughened glass): Anti-reflecting coating and high transmission rate glass increase the power output and mechanical strength of solar module.

III EVA and TPT: Using high quality EVA and TPT to prevent destroying and water.

IV  AI frame: Without screw, corner connection. 6 holes on the frame can be installed easily.

V Junction box: Multi function junction box with water proof.

VI Long lifetime: ≥25 years; Less power decrease.

VII Good performance of preventing from atrocious weather such as wind and hails.

VIII Resisting moisture and etching effectively, not effected by geology. .

 

Standard Test Conditions of Polycrystalline Solar Panel

The opto-electrical specifications shown below are stabilized values being measured at Standard Test Conditions of multicrystalline silicon Solar Panel, Irradiance: 1000W/m2, Spectrum: AM1.5 at 25°C, The info below is subject to manufacturing tolerances. Where appropriate minutes of measurement are available and are used for the dimensioning of the installation.

Currently,We have 250w-300w solar panel stocks in Both West and East Coasts made in Vietnam,India,Korea,Malaysia and Japan.Meanwhile,we also arrange production line in Wisconsin,USA.If you're interested,please contact us soon.

Thanks for your time.

 

Q: i want to go off grid with solar panels but i need to know how many vots and watts i need to power my house
you must consider what electrical appliances you want to use, eg. do you have an electric stove? clothes dryer? air conditioner? heater? watts are watts, solar panels are used to create d.c. electricity which is stored in batteries then inverted to a.c. household electricity the d.c. batteries are usually 36 to 48 volts then this is converted to 20 volt a.c. when you figure out the watts being consumed in your household you size your batteries and inverter to these requirements. on your current electric bill you should see a charge for kwh, kilowatt hours= watts in thousands x hours. If you use 25 kwh per month your house is using 35 watts per hour x 720 hours in a month. you would then want sol.ar panels that charge at least 70 watts per hour because roughly half of the day it's dark depending on where you live December is even less of course in the northern hemisphere. Your batteries need to have capacity to hold a days worth of power, batteries are rated in amp hours, amp hours x volts = watt hours. I hope this points you in the right direction. All of this being said be sure to buy your system from a reputable dealer, someone with experience and good references. I am an electrician and have seen systems put in that are completely worthless because they were not sized properly and It sucks to see that someone paid $30k or more for something that is completely useless, it sucks even more when they ask me to help them and I say pay another $30k to up size the system to what they need. Remember you don't get anything for nothing so be prepared to spend money initially and be prepared to be live very energy conscious in your day to day life. Good luck
Q: How do solar panels affect insurance premiums?
Solar panels can potentially lead to a decrease in insurance premiums as they are considered to be a low-risk investment that adds value to a property. However, the exact impact on insurance premiums may vary depending on factors such as location, system size, and the insurance provider's policies.
Q: Can solar panels be used to power a telecommunications network?
Yes, solar panels can certainly be used to power a telecommunications network. Solar energy can be harnessed and converted into electricity, which can then be used to power various devices and systems, including telecommunications infrastructure. This provides a sustainable and environmentally friendly solution for powering telecommunications networks, especially in remote or off-grid areas where access to traditional power sources may be limited.
Q: Can solar panels be installed in shaded areas?
Solar panels can be installed in shaded areas, but their efficiency and power output will be significantly reduced compared to panels installed in direct sunlight.
Q: Can solar panels be installed on churches or religious buildings?
Yes, solar panels can be installed on churches or religious buildings. In fact, many religious institutions have embraced solar energy as a sustainable and cost-effective solution to reduce their carbon footprint and lower energy bills. Installing solar panels on churches not only aligns with their commitment to environmental stewardship but also allows them to set an example for their community by promoting clean energy and sustainability.
Q: Can solar panels be used in remote areas without access to the grid?
Yes, solar panels can be used in remote areas without access to the grid. Solar panels generate electricity by harnessing sunlight, and they can operate independently of the grid. This makes them an ideal solution for remote areas where setting up power lines and accessing the grid may be difficult or costly. Solar panels can provide a reliable and sustainable source of electricity in such areas, allowing for various applications like powering homes, schools, clinics, and even small businesses.
Q: Can solar panels be damaged by hail or other elements?
Yes, solar panels can be damaged by hail or other elements. Hailstones, strong winds, and other extreme weather conditions can potentially cause physical damage to solar panels, such as cracks in the glass surface or dislodging of components. However, most solar panels are designed and tested to withstand such elements to a certain extent, and reputable manufacturers often provide warranties to cover any damages caused by hail or other weather-related incidents.
Q: How do solar panels impact the local economy?
Solar panels can have a positive impact on the local economy in several ways. Firstly, the installation and maintenance of solar panels create jobs, boosting employment opportunities in the area. Additionally, the use of solar energy reduces dependency on traditional energy sources, which can lead to lower energy costs for businesses and residents, freeing up more money to be spent locally. Furthermore, solar panel installations often require local partnerships and suppliers, supporting local businesses and stimulating economic growth. Ultimately, the adoption of solar panels contributes to a more sustainable and resilient local economy.
Q: Can solar panels be used in areas with high levels of pollution from transportation?
Yes, solar panels can be used in areas with high levels of pollution from transportation. While pollution may have some impact on the efficiency of solar panels, they can still generate electricity even in polluted environments. However, regular maintenance and cleaning may be required to ensure optimal performance and prevent any potential buildup of pollutants on the panel surface.
Q: Simplfy it so i can understand pls and put it in stages such as . sun hits solar panel plsHow many different types of solar panels are there?
Solar panels are made of a series of solar cells.solar cells are an electical device that convert sun energy directly into electicity by the photovoltaic effect,which is an physic and chemical phenomenon.solar cells are made of special materials called semiconductors such as silicon,which is currently used most commonly.Basically, when light strikes the cell, a certain portion of it is absorbed within the semiconductor material.This means that the energy of the absorbed light is transferred to the semiconductor. The energy knocks electrons loose, allowing them to flow freely.This flow of electrons is a current, this current, together with the cell's voltage (which is a result of its built-in electric field or fields), defines the power (or wattage) that the solar cell can produce.

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