• High Quality Solar Module for ASF110W Series System 1
  • High Quality Solar Module for ASF110W Series System 2
  • High Quality Solar Module for ASF110W Series System 3
High Quality Solar Module for ASF110W Series

High Quality Solar Module for ASF110W Series

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Loading Port:
Shanghai
Payment Terms:
TT OR LC
Min Order Qty:
25 pc
Supply Capability:
10000 pc/month

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Description:

Solar Module for ASF110W Series : The product is a multi-purpose solar charger. It has good performance under weak light and high temperature due to the thin-film solar panels inside. The built-in high capacity and high quality rechargeable polymer lithium battery, ensure safety under stronge sunlight. In addition to solar charging, this product also allows fast DC power charging from available DC power of computer and other equipment with USB port.
With all kinds of adapter, the product can be used for mobile phones, digital cameras and other small digital products like iPad for fast charging.

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

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

IX The certificate issued by international authority: UL, TUV, IEC, CE.

2. Standard Test Conditions of Solar Module for ASF110W Silicon Solar Panel:

STC: Iirradiance of 100mW/cm2, AM1.5 Spectrum, and cell  temperature of 25 (77).

NOCT: The estimated temperature of a solar PV module when it is operating under 800 W/m2 irradiance, 20 ambient temperature and a wind speed of 1 meter per second)                   

Maximum power may vary by ±5%, and other electrical data may vary by ±10%.                           

50Hz Full Sine Wave1 cycle, Non-repetitive                           

                           

Installation Specifications                        

Maximum System Voltage                                                            600  V      

Module operating  temperature                                                 40°C to +85°C                   

Temperature Coefficients                        

Open Circuit Voltage                                                                     -0.33   %/      

Short Circuit Current                                                                       0.09   %/        

Maximum Power                                                                            -0.20   %/      

Voltage at Maximum Power                                                           -0.32   %/      

Current at Maximum Power                                                            0.14   %/     

3. Solar Panel Images

 

High Quality Solar Module for ASF110W Series

High Quality Solar Module for ASF110W Series

 

4. Solar Module for ASF110W Silicon Solar Panel Specification

Size(L×W×T)                               

1,414×1,114×35   mm

Weight

20.3  Kg

IP Rating

IP67

Connector

MC4

Cable Length

1000  mm

Cable Size

2.5  mm²

Number of diodes

1

Electrical Specifications

Maximum  power (Pmax at STC)

110   W

Maximum power voltage (Vpm at STC)

77     V

Maximum power current (Ipm at STC)

1.42  A

Open circuit voltage (Voc at STC)

99     V

Short circuit current (Isc at STC)

1.65  A

Diode  average rectified output current (Io)

10       A

5.FAQ

We have organized several common questions for our clients,may help you sincerely:

①How about your company?

Hangzhou tianyu light co., LTD. (AmpleSun) is a professional engaged in amorphous silicon and microcrystalline silicon thin film solar cell components
Internationalization of research and development, production, sale and service of high-tech enterprises, is a good example of the emerging industries.The company was founded in early 2008, the project total investment 2.2 billion yuan, a total of the four production lines.
The thin film solar cell production line with annual capacity of 25 mw, has been built 40000 square meters of modern factory and production, the world's leading production line imported from Japan, has a high production efficiency and automation
Degree.By the end of 2011, as the production process from the amorphous silicon to the upgrading of microcrystalline silicon, the four lines of output will increase to 120 mw.

②How to guarantee the quality of the products?

Tianyu light first-class production facilities and raw materials, the internationalization of r&d and design team,
Efficient management model is to provide quality and reliable solar photovoltaic products and energy systems solutions,
In order to meet the growing global demand for energy.

 

Q:i need technical and non technical details to generate MW power by solar panels
First off, you should consider cost per kilowatt-hour (kWh) since kWh is energy whereas MW is power, and kWh is a common unit of energy used by power utilities. But first you would need to design the power capacity required, which as you state, is assumed to be MW. Average system costs = $95 per square foot Average solar panel output = 0.6 watts per square foot Average solar energy system costs = $8.95 per watt Form this information, the capital cost of installing MW = $8.95 /W * 0^6 W/MW = $9 million. The lifetime of a typical solar power system is probably about 20 years. Assuming a true MW peak output of the solar panel it would be anticipated that a daily average energy production would be peak output over about 3 hours per day, or 3 MWh of energy per day. Total production over a 20 year system life would be 3 MWh * 365 days/yr * 20 yr = 22 x 0^3 MWh So in terms of costs of capitalization of the system, the cost of Energy (/kWh) = $8.95 million / 22 x 0^3 MWh = $0.40 / kWh (approximately) This cost does not include maintenance, however, given the simplicity of these systems; other than periodic equipment replacement, which is covered by specifying a 20 year complete system replacement; other maintenance cost should be relatively low. The required surface area of solar panel = 0^6 W / 0.6 W/ft^2 = 94,340 ft^2 or a little over 2 acres of panel surface area. To be able to properly access and maintain the solar array, the minimum area required would likely be 5 to 0 acres.
Q:Where can I find good instructions to build a cheap solar panel on my own?
There okorder /
Q:can i put a solar panel on a projector. if nt wat is a low energy projector that i can watch movies and play games on
Unlikely to prove useful. Solar panels don't generate very much current. You would probably wind up spending several thousand dollars, and wind up with a solar panel array (including batteries and power inverter) that is certainly not portable. You will also need adequate current for your projection source (ie DVD player or computer), as well as sound. By and large, the cheapest projectors require the least amount of power. There is no way around the fact that, for a projector to be practical, it must output out a great deal of light. Adequate light requires adequate current.
Q:A homeowner is considering putting a horizontal solar panel on her roof to heat water for domestic use. An average increase of water temperature each day from 60oF to 20oF is wanted for 50 gallons. How large a panel would be needed on a clear winter day at 40o latitude if the overall efficiency is 50%?
Good points. I'm new to the solar energy world, but solar just makes sense. Who wouldn't want to make it work? The more I learn the more I think its a great alternative to some of the energy we use. This info really helps.
Q:Can solar panels be used in areas with high pollution?
Yes, solar panels can be used in areas with high pollution. While pollution can reduce the efficiency of solar panels to some extent, they can still generate electricity in such areas. Regular cleaning and maintenance of the panels can help mitigate the impact of pollution and ensure their optimal performance. Additionally, the use of advanced technologies and materials in solar panel production can further enhance their resilience to pollution.
Q:Can solar panels be installed on a school or university campus?
Yes, solar panels can be installed on a school or university campus. Many educational institutions are recognizing the benefits of solar energy and are choosing to install solar panels on their campuses. This not only helps in reducing carbon emissions and dependence on fossil fuels but also serves as an educational tool for students to learn about renewable energy. Additionally, installing solar panels can lead to cost savings on electricity bills for the institution in the long run.
Q:I want to make 2V 4.5A solar panel to charge my battery used in my RC car project. I just like to know how should I amplify the current for 4.5A. I need the total circuit diagram. Can anyone help me. Please. I need some affordable methods please.
Have okorder / . It could obviously explain everybody!
Q:Can solar panels work at night?
No, solar panels do not work at night as they rely on sunlight to generate electricity.
Q:i have a 50 watt 2 Volt solar panel..Will it can switch on directly a car head light on a sunny day??? How much head lights it can support on a bright sunny day??? if its cloudy then can it run a single Head light???? i have no batteries just want to connect a car Head light directly to solar panel.
It should illuminate two auto headlights on a sunny day, if it really generates 50 watts at 2 V. On a cloudy day, I don't know. It depends on how cloudy it is.
Q:I am curious about how much of the energy that a solar panel of a given size and capacity will produce in it's lifetime, and what fraction of that energy was required to produce it in the first place?
The attached link is to an article from the 200 Home Power magazine. In that article the energy payback was found to be between 2 and 4 years. Newer panels are more efficient primarily because the silicon wafers used today are thinner. The silicon cell embodies most of the energy required to make a solar panel. Today most solar panels will produce the amount of energy required to manufacture them in between about 9 months and 2 years depending upon the specific technology used to make it. Solar panels are expected to produce energy for between 30 and 50 years. Therefore it takes around 5% of their total energy production to produce them. Note that these figures depend upon where the panels are installed. Panels in very sunny areas may generate more than 3 times the energy of panels in a cloudier area. Edit - The energy payback meta-study that carbonates references below mention one particular study Alsema (2000), which the authors used as a baseline to come up with their 4 year payback figure. These studies DO NOT assume ideal conditions. The Alsema study assumes an annual an irradiation of 700 kWh/m2/yr. That is the United States average irradiation and does take into account cloudy weather and the like. Under idea conditions the amount of energy collected can be almost twice as much. Albuquerque New Mexico is an example. The figures I mentioned above are recent values reported by several different panel manufacturers with whom I discussed the issue at the 2006 IEEE 4th World Conference on Photovoltaic Energy Conversion held this May. The very long payback times that carbonate highlights are almost certainly wrong. The study he references concludes that paybacks range between 2 and 8 years with 4 years being the most likely. In my opinion payback times are actually a fair bit shorter based on conversations with the manufacturers.

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