145W PV Module in Solar Power Systems for Mobile Communication Station

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Shanghai
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Min Order Qty:
1000 watt
Supply Capability:
1000000 watt/month
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Item specifice:

Material: Monocrystalline Silicon Max. Power(W): 145 Number of Cells(pieces): 36

Product Description:

Product Description

Features
High reliability with guaranteed -3% to +5% power output tolerance, ensuring return on investment
High conversion efficiency based on leading innovative photovoltaic technologies
Withstands high wind-pressure and snow load, and extreme temperature variations
Attractive appearance
Unique frame design, high mechanical strength, and easy Installation
145W PV Module in Solar Power Systems for Mobile Communication StationEfficiency
Low voltage-temperature coefficient allows higher power output at high-temperature condition
High efficient, high reliable solar cells ensure our product output stability

Materials
Glass
1. High light transmission no less than 91.6%
2. Excellent mechanical loading performance (5400 PA)
EVA
1. High light transmission
2. High GEL and peeling strength guarantying strong encapsulation
3. Good ultraviolet aging resistance
4. Excellent oxidation resistance
5. TUV certified
Cell
1. Excellent efficiency and long term reliability
2. Good performance under high temperature and low irradiance conditions
3.100% In-line Electroluminescence (EL) tested
4. Positive tolerance for each panel
5. Cell efficiency filling by 0.2 percentage
6. TUV certified
Back sheet
1. TPT based encapsulation and protection
2. Good aging resistance
3. Excellent adhesion and ultraviolet stability
4. TUV certified
Frame
1. Anodized/ Electrophoretic aluminium means durable protection from environment
2. Unique design profile ensuring strong mechanical loading performance
3. Silver/ Black color available
Junction box
1. Climate membrance: Excellent heat dissipation, prevent steam coming from outside and corrosion of diode by inside steam on the condition of big difference in temperature
2. IP65 protection
3. TUV certified
Connector
1. MC4 compatible/ IP65 or MC4 original/ IP67

Packaging & Delivery
1. Packaging Detail: 2PCS/CARTON; 504PCS/40'; 520PCS/40'H
2. Delivery Detail: 10-15 days after receiving deposit

Quality and Safety
1. Rigorous quality control meeting the highest international standards
2.25-year power output transferable warranty
3. Have TUV, IEC, CE, ISO9001/14004 and RoHS certificates

Main Export Markets: 
1. Central/South America
2. Eastern Europe
3. MID East/Africa
4. North America
5. Western Europe

Electrical Characteristics
Cells size (mm):156*156
Cells per module:36pcs
Module size (mm):670*795*30
Power tolerance:+/-3%
Nominal peak power(WP):130w
Nominal voltage(V):17.5
Nominal current (A):8.29
NOCT:45+/-2degree
Voltage temperature coefficient:-0.33%/degree
Current temperature coefficient:+0.05%/degree
Power temperature coefficient:-0.23%/degree
Open circuit voltage (Voc):21.6
Short cirsuit current(Isc):8.95
Conversion efficiency:16.70%
Operating temperature:-40 to+85degree
Max system voltage:1000V DC
Surface Maximum Load Capacity60m/s(200kg/sq. m)
Cell power4.02w

FAQ

1.Price per watt?

It depends on the quantity, delivery date and payment terms.

2.Parameter of the module?

We have different series of panels in different output, both c-si and a-si. please take the specification sheet for your reference.

3.Can you provide the peripheral products of the solar panels, such as the battery, controller etc.?

We have two companies(CNBM International & CNBM engineering Co.) with different approaches. We can supply not only the solar module but also Solar Cells, off grid solar system, even service with on grid plant.

4.Warranty policy?

Our product performance guarantees for 25 years

• 12 years guarantee for workmanship

• Timeliness of delivery

• Quality Products certified (TÜV, UL, CE, ISO)

5.Lead time?

In 3 days after purchasing, we will arrange the factory delivery ASAP. The specific time of receiving is related to the state and position of customers. Commonly 7 to 10 working days can be served.


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Solar Panels collect solar energy from the sun and then solar energy is used to produce electricity.
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I'd presume they do. They seem flat enough to generate enough surface tension to function as a raft. Not sure if their weight would cause them to sink should the raft capsize though. For what it's worth, there are floating solar panels that are being tested for water-based solar energy plants. The cost per panel is the same as standard solar.
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The answer is actually quite complicated, but if you're planning on building just a very small system, most likely, the panel will be small and weak. In this case, connecting a panel that is 8 volts open circuit directly to a lead-acid battery is probably the most efficient way to charge. There are charge controllers that you can buy, some of which actively track the maximum power point for charging your battery. Unfortunately, those controllers might eat 5 or 0 watts, just to get you another few percent of charging efficiency. If your panel is only 50 watts in the first place, you can see that this is not a good deal. If you're getting serious panels (clue: price $500 each), then you may very well benefit from a charge controller with MPPT (max power point tracking). Lead-acid, either a flooded cell like your car battery, or AGM, are the standard for solar energy storage. Lithium ion is better in many ways, being less sensitive to temperature, state of discharge, and they are also lighter. Charging them is also more straightforward with the right circuitry. The problem is, they cost like $500 per kWh, compared with less than a tenth that price for lead-acid.
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There are batteries particularly made for solar, such as the Trojan T05-RE . I think the RE stands for renewable energy. A deep cycle battery should work all right, although not quite as well. What you want to do is try out your setup first, with just one battery, and the panels provided. If this is one of those 45 watt kits, you may be surprised at how little energy you actually get from the panels. Increasing the number of batteries won't help, either - that's like getting a larger water tank, when you only have a trickle to fill it. If your goal is really to save money, the most cost-effective solar is the grid-tied type, with no batteries at all. That's what we have, and I've never regretted it.
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I have a better idea . Why don't we pull our troops out of there and take the money that we spend to kill people and build a mass amount of solar cells and hand them out to our own people maybe give one of our hungry people a little food to go with it . You could even take a little of that money and put some kids through college . I can think of thousands of things to do with that cash . Why don't we ever take care of our own people first ?
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A solar cell's purpose is to generate electricity through the release of electrons from a material that is bombarded by electromagnetic radiation or photons. Most crystalline solar cells are sensitive to visible radiation from 400 - 700 nanometers, which correspond to 3. - .8 electron volts, of the visible region as shown by ACEPT W3 Group (999) and also into the near infrared spectrum. As the wavelength of the electromagnetic radiation increases, the amount of electron volts decreases. This means that infrared radiation has less electron volts than the visible spectrum of light (because it has a larger wavelength than visible light) and ultraviolet and gamma radiation has more electron volts than both the visible spectrum of light and infrared radiation (because they have a smaller wavelength than both infrared and visible light). Abramowitz, M., Davidson, M., Neaves, S. (2003) wrote that all forms of electromagnetic radiation originate from the atom which contain orbiting electrons around its nucleus. When those electrons absorb more external energy than they can contain in order to be stable, the extra energy is released in the form of an electromagnetic wave. That electromagnetic wave contains a magnetic field and an electric field, one offset by ninety degrees to the other along the propagation plane.
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Your local installer will estimate this much more precisely than I can. Your main problem, as I see it, is not that you need this many solar panels. Your main problem is that you consume WAY too much electricity. You should probably cut your energy consumption in half BEFORE you invest in solar because it will be way more economic to eliminate the main consumers than to generate that wasted energy. I, for example, need no more than 80kWh/month for a household of two.
Q:How to setup my home on Solar Panel?
good okorder.com lots of good ideas there

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