• CNBM Polycrystalline Silicon 265W Solar Panels in America System 1
  • CNBM Polycrystalline Silicon 265W Solar Panels in America System 2
  • CNBM Polycrystalline Silicon 265W Solar Panels in America System 3
CNBM Polycrystalline Silicon 265W Solar Panels in America

CNBM Polycrystalline Silicon 265W Solar Panels in America

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Loading Port:
China main port
Payment Terms:
TT OR LC
Min Order Qty:
100000 watt
Supply Capability:
10000000 watt/month

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Specification

Material:
Polycrystalline Silicon
Max. Power(W):
265
Number of Cells(pieces):
60

About CNBM
CNBM International Corp, established in 2004, is the business entity for trade and logistic of CNBM Group.With the advantages in Cement, Composite Materials, NewBuilding Materials and Engineering, CNBM mainly concentrate on coal, steel and construction equipments and give priority to solar and wind energy development.CNBMInternational is highly recognized by its business partners and clients all over the world and has established good business relationship with the customers in over 120 countries and regions all over the world.

The capacity of CNBMSOLAR is reach to 1GW, and make sure each year our shipment capacity is more than 700-800MWs, at the same time, we have set up the largest solar power station with our partner in Ukraine.

 

Standard Test Conditions of Polycrystalline Silicon 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.

Advantages of Polycrystalline Silicon Solar Panel

 A&M Solar performance guarantees for 25 years

12 years guarantee for workmanship for multicrystalline silicon Solar Panel

Timeliness of delivery

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

 

Process is as follows:  

1, the battery test

2, positive Welding - Inspection –

3, on the back of cascading - Inspection –

4, laying (glass cleaning, material cutting, glass pre-processing, laying) –

5, laminating –

6, to flash ( to the side, cleaning) –

7, fitted border (glue, loading angle keys, punching, install box, scrub I glue) –

8, the welding junction box –

9, high-pressure test –

10, component testing -- -

11 appearance inspection, packaging and storage;  

 

 

 

 

CNBM Polycrystalline Silicon 265W Solar Module 

FAQ:

1. How long will my inquiry get response?

 Your inquiry related to our products or prices will be replied within 24 hours. 

2. Can I get professional service and suggestion?

Well-trained and experienced staffs to answer all your questions in fluent English. 

3. Do you accept OEM or customized design?

OEM & ODM, any your customized lightings we can help you to design and put into product.

4. What if I need specific design?

Distributorship are offered for your unique design and some our current models.

 

Data sheet

 

Maximum power265W
Cell type(mm)Polycrystalline solar cell 156*156
Number of cell(pcs)60(6*10)
Manufacture siteChina
Open-circuit voltage(voc)37.7V
Maximum power voltage(vmp)30.6V
Short-circuit current(isc)9.03A
Optimum operating current(imp)8.66A
Power tolerance0~+5W
Module efficiency16.3%
Dimensions(mm)1640*992*40
Weight19 kg
BacksheetSilver
Frame ColarWhite
FrameAnodized Aluminum Alloy

 

 

Q:How much electricity can a solar panel generate?
The amount of electricity a solar panel can generate depends on several factors such as the size and efficiency of the panel, the amount of sunlight it receives, and any shading or obstructions. On average, a typical solar panel can generate between 250 to 400 watts of electricity per hour.
Q:we are doing a fundraiser to have students pledge to make donations for a solar panel instalation on one of the school buildings. I am looking for a slogan for the campain.
Give some green to go green.
Q:Can someone explain to me how solar panels can be used as modern architectural attributes? please help
They aren't considered attributes - electrical solar panels are expanses of gray and aluminum covered with glass and water heating panels are expanses of black covered with glass. To cover the cost of investment they must be mounted at the best angle for the location and climate throughout the year and therefore may dictate the form of the roof (if sloped as on residences) or may not be visible in an architectural sense (if positioned on a flat roof of a commercial building.) No matter where placed, provision has to be made for safely accessing them for repair and maintenance.
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:Can solar panels be used to power electric vehicles?
Yes, solar panels can be used to power electric vehicles. Solar panels generate electricity from sunlight, which can be stored in batteries and used to charge the electric vehicle's battery pack. This renewable energy source provides an eco-friendly and sustainable way to power electric vehicles.
Q:I need to power a series of meraki wireless repeaters that plug into a standerd wall outlet. consuming 5v or .08 amps However I need this in a remote location (like out in the middle of nowhere) Using A solar panel as power supply and a battery to store the energy but, how and what do I use to convert the energy coming from the solar panel to the battery and the batteries power supply to match the needs of the meraki wireless repeater? How do I make this as compact as possible? Do I need a ac/dc converter? or dc/ac converter? Any suggestions or solutions would be great !
First things first. 5 Volts @ .08 amps would be .2 Watts. therefore you would need at least the same amount from a solar panel to replenish the batteries. But what puzzles me is the notion that plugging it in a wall outlet ? If you use 20 V @ 0.08 then the power consumption is 9.6 Watts And what is a meraki wireless repeater? I never heard of one. I'm a FCC licensed Ham and have some idea what is available. If you need 5 volts DC, you could use twelve Ni-cads in series and just keep them trickle charged with the solar panel That would make it compact. If you were to use an automotive battery (or motorcycle), then you would need a DC/DC converter.
Q:How much Electricity does a standard Solar panel producein terms of Watts and in terms of Units( i.e. electricity meter attached in our House)If I have 20 Solar panels and an inverter , how much electricity will I Be able to harness and store (state that in terms of volts)Can I run Arefridgerator, Iron, Heaters, Plasma T.V. and other high Electricity Consuming Devices.
Take a look on OKorder at some of the books on how to design solar energy systems. It is a bit more complicated than you might expect. I'm not sure what you consider to be a standard solar panel, but the 3' ones I have produce about 5 watts of power in full sunlight. Put simply, you need to convert the power from the solar cells (variable voltage) into a constant voltage usable for charging a batteries. Most of the low cost modules for this purpose can't handle more than about 00 watts. Larger systems are available that handle thousands of watts but they are quite pricey. Since you can't take out more than you put into your battery system, you can calculate about how long you can run a high-current appliance based upon its wattage rating, that of the battery system (adjusted for loss of converting to AC), and the charging system.
Q:260 watt solar panels on an rv?
What are you going to power with your 260w solar panels? Tools? They generally use more than 260w. The panels will generate electricity. The problem is that your tools likely don't use DC. And if you're asking here, it's not likely that you have the background to hook everything up correctly. You'd need both batteries and a pretty good sized inverter.
Q:Can solar panels be used for powering a hotel or hospitality establishment?
Yes, solar panels can definitely be used for powering a hotel or hospitality establishment. Solar energy is a clean and sustainable source of power, and installing solar panels can significantly reduce energy costs for the establishment. Additionally, hotels often have large rooftops or open spaces that are suitable for installing solar panels, making it a practical and efficient solution for meeting their energy needs.
Q:Can solar panels be installed on a historic building?
Yes, solar panels can be installed on a historic building. However, it is important to carefully consider the impact on the building's aesthetics and historical integrity. Specialized techniques and materials may be required to ensure that the installation is done in a way that preserves the building's unique architectural features. Additionally, it may be necessary to obtain permission or meet certain requirements from local historic preservation authorities before proceeding with the installation.

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