Polycrystalline Silicon Solar Panel Type CR240P-CR200P

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Product Description:

1. Structure of Polycrystalline Silicon Solar Panel Type CR240P-CR200P

Solar modules, which are widely used in ground mounted utility-scale PV plants, large-scale and small civil and commercial power generating system such as BIPV combined to the grid, roof-mounted PV power system, rural electrification, communications, emergency auxiliary power. Solar PV module is comprised of some solar cells which are connected in serial with high efficiency and enhanced reliability. The solar cells are laminated between sheets of ethylene vinyl acetate (EVA) and high-clarity low-iron tempered glass, and  sealed by the silica gel in a anodized aluminum frame . The solar module has got the professional certificate as following:

Polycrystalline Silicon Solar Panel Type CR240P-CR200P

 

2. Main Features of Polycrystalline Silicon Solar Panel Type CR240P-CR200P

  • esthetic appearance, with stands high wind-pressure and snow load, and easy installation

  • Water resistant junction box

  • Design to meet unique demand of customer

  • 25 year poweroutput warranty

3.Polycrystalline Silicon Solar Panel Type CR240P-CR200P Images

 

Polycrystalline Silicon Solar Panel Type CR240P-CR200P

Polycrystalline Silicon Solar Panel Type CR240P-CR200P

 

 

4. Polycrystalline Silicon Solar Panel Type CR240P-CR200P Specification

 

 

Module type

CR240P

CR230P

CR220P

CR210P

CR200P

Cell type

156mm × 156mm

No. of cells and connections

60(6×10)

Dimension of module (mm)

1650×992×50

Weight of module (kg)

20.0

Maximum Power (Pm)

240W

230W

220W

210W

200W

Open-circuit voltage (Voc)

36.6V

36.4V

36.2V

36.0V

36.0V

Short-circuit current (Isc)

8.70A

8.58A

8.38A

8.30A

8.25A

Volatage at Pmax (Vmp)

30.2V

29.6V

29.2V

28.8V

28.7V

Current at Pmax (Imp)

7.96A

7.78A

7.54A

7.30A

6.97A

Maximum system voltage

1000VDC

Operating temperature

-40 to +85

Polycrystalline Silicon Solar Panel Type CR240P-CR200P

Characteristics:  Module I-V Graph 240W

Polycrystalline Silicon Solar Panel Type CR240P-CR200P

 

5. FAQ

 

(1) Can you offer the test report of the module?

     Sure. All the solar modules must pass necessary tests including EL test and ultra-red test and other visual test of the apperance, and the test report presents all the detailed data of the modules.

(2) How  to confirm about the quantity and the type of solar module?

     It depends on the solar system where  you want to put into use the solar modules. We have experienced engineers to design for your order and you need to give more information to fix the details.

(3) How long will you deliver the solar modules?

     We need to purchase the materials according to the list confirmed by you and put into production, and  we will do our best to get your satisfaction.

 

 

 

 

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Q:Why can not the solar panel load directly?
Power supply must be a number of individual battery strings, connected in parallel and tightly packaged into components.
Q:Solar panels single crystal and double crystal in the rain which is easy to use
Polycrystalline silicon solar cell production process and monocrystalline silicon solar cell almost, but the polysilicon solar cell photoelectric conversion efficiency will have to reduce a lot of its photoelectric conversion efficiency of about 12% (July 1, 2004 Japan Sharp market efficiency of 14.8% Of the world 's most efficient polysilicon solar cells).
Q:What is the working principle of solar panels?
the inorganic salts such as gallium arsenide Ⅲ-Ⅴ compounds, cadmium sulfide, copper indium selenium and other multi-compounds as the material of the battery;
Q:Single crystal solar panels and polycrystalline solar panels
Monocrystalline silicon solar cells are mainly made of monocrystalline silicon, compared with other types of solar cells, monocrystalline silicon cell conversion efficiency of the highest. In the early days, monocrystalline silicon solar cells occupied most of the market share, in 1998 after the retreat of polysilicon, the market share accounted for second. Due to the shortage of polysilicon raw materials in recent years, after 2004,
Q:What is the difference between solar panels and light panels?
Crystalline silicon cell conversion rate, rich in raw materials, is a large-scale commercial production of the battery, but the crystal silicon battery brings the harm can not be ignored. Crystal silicon series of batteries have a "three high more than a" common problem. High cost, high energy consumption, high pollution, byproducts and other shortcomings.
Q:Composition and function of solar panels
Among them, for the electronic grade polysilicon accounted for about 55%, solar grade polysilicon accounted for 45%, with the rapid development of photovoltaic industry, solar cell demand for polysilicon growth rate higher than the development of semiconductor polysilicon, is expected to 2008 solar polysilicon
Q:The voltage and power problems of solar panels
3, charge 12V battery when the power is really small, if it is a normal controller, then the equivalent of 18V voltage in the charge, probably 18 x (240 / 30.2) = 143w solar panels.
Q:What is the principle and structure of solar panels?
inverter: solar direct output are generally 12VDC, 24VDC, 48VDC. In order to provide power to 220VAC appliances, it is necessary to convert the DC power from the solar power system into AC power, so it is necessary to use DC-AC inverter.
Q:What is the principle of solar panels work?
Solar power generation There are two ways of solar power generation, one is the light - heat - electricity conversion, the other is the optical - electrical direct conversion.
Q:How many solar panels have ah?
But in reality, the need for solar panel power and solar charger to find a balance in the portability. It is generally believed that the minimum power of the solar charger can not be less than 0.75w, and the secondary power solar panel produces 140mA of current under standard light. In the general sunlight generated by the current at 100mA or so, if less than the secondary power charging current is too small,

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