Solar Monocrystalline Series Panels 185-w

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Shanghai
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100 pc
Supply Capability:
30000 pc/month

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Product Description:

 

Structure of  Monocrystalline Solar Module for 185W Series Description:

Monocrystalline Solar Module for 300W l : 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, rner 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.

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

Standard Test Conditions of Monocrystalline Silicon Solar Panel:

The opto-electrical specifications shown below are stabilized values being measured at Standard Test Conditions, 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 Monocrystalline Silicon Solar Panel

• CNBM Solar performance guarantees for 25 years

• 12 years guarantee for workmanship

• Timeliness of delivery

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

 

Monocrystalline Silicon Solar Panel       

 Our designing philosophy is making solar product easy to use and convenient to maintain. We adhere to "develop inverter and controller" as our core technology, and built up solar product from 0.5W to 100KW into standard and mass production, meeting most customers' needs in this field.    

Parameter TypeMax Power
(W)
Dimension(mm)

Weight
(kg)

Max Current
(A)
Max Voltage
(V)
Short CircuitOpen Circuit
Current(A)Voltage(V)
ESC 300W/36M3001960*986*5023.58.33369.3343.2
ESC 295W/36M2951960*986*5023.58.19369.1843.2
ESC 290W/36M2901960*986*5023.58.06369.0243.2
ESC 285W/36M2851960*986*5023.57.92368.8743.2
ESC 280W/36M2801960*986*5023.57.78368.7143.2
ESC 275W/36M2751960*986*5023.57.64368.5643.2
ESC 270W/36M2701960*986*5023.57.50368.4043.2
ESC 265W/36M2651960*986*5023.57.36368.2443.2
ESC 260W/36M2601960*986*5023.57.22368.0943.2
ESC 255W/36M2551960*986*5023.57.08367.9343.2
ESC 250W/36M2501960*986*5023.56.94367.7843.2
ESC 240W/48M2401580*1066*5020.05.00485.6056.6
ESC 230W/48M2301580*1066*5020.04.79485.3756.6
ESC 230W/30M2301640*986*5019.07.67308.5936.0
ESC 225W/30M2251640*986*5019.07.50308.4036.0
ESC 220W/48M2201580*1066*5020.04.58485.1356.6
ESC 220W/30M2201640*986*5019.07.33308.2136.0
ESC 215W/30M2151640*986*5019.07.17308.0336.0
ESC 210W/48M2101580*1066*5020.04.38484.9056.6
ESC 210W/30M2101640*986*5019.07.00307.8436.0
ESC 210W/27M2101480*986*4518.07.78278.7132.4
ESC 205W/27M2051480*986*4518.07.59278.5032.4
ESC 200W/27M2001480*986*4518.07.41278.3032.4
ESC 200W/48M2001580*1066*5019.54.1847.84.7854.62
ESC 195W/27M1951480*986*4518.07.22278.0932.4
ESC 190W/27M1901480*986*4518.07.04277.8832.4
ESC 185W/27M1851480*986*4518.06.85277.6732.4
ESC 185W/36M1851580*808*4516.05.14365.7643.2
ESC 180W/36M1801580*808*4516.05.00365.6043.2
ESC 175W/36M1751580*808*4516.04.86365.4443.2
ESC 170W/36M1701580*808*4516.04.72365.2943.2
ESC 165W/36M1651580*808*4516.04.58365.1343.2
ESC 160W/36M1601580*808*4516.04.44364.9843.2
ESC 135W/27M1351196*808*3513.05.00275.6032.4
ESC 130W/27M1301196*808*3513.04.81275.3932.4
ESC 125W/27M1251196*808*3513.04.63275.1932.4
ESC 120W/27M1201196*808*3513.04.44274.9832.4
ESC 115W/27M1151196*808*3513.04.26274.7732.4
ESC 110W/27M1101200*808*3512.74.08274.7431.39
ESC 100W/18M1001196*540*35105.6817.576.621.6
ESC 95W/18M951196*540*3510.05.28185.9121.6
ESC 90W/18M901196*540*3510.05.00185.6021.6
ESC 85W/18M851196*540*3510.04.72185.2921.6
ESC 80W/18M801196*540*3510.04.44184.9821.6
ESC 75W/18M751196*540*3510.04.17184.6721.6
ESC 60W/18M60810*540*307.03.33183.7321.6
ESC 55W/18M55810*540*307.03.06183.4221.6
ESC 50W/18M50810*540*307.02.78183.1121.6
ESC 45W/18M45620*540*355.02.50182.8021.6
ESC 40W/18M40610*540*305.02.22182.4921.6
ESC 30W/18M30440*540*303.51.67181.8721.6
ESC 25W/18M25440*540*303.51.39181.5621.6
ESC 20W/18M20430*430*303.01.11181.2421.6
ESC 15W/18M15285*450*302.00.83180.9321.6
ESC 10W/18M10285*341*301.50.56180.6221.6

FAQ

We have organized several common questions for our clientsmay help you sincerely

①What price for each watt?

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

②What is your size for each module? Can you tell me the Parameter of your module?

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

③Can you provide the peripheral products of the solar panels, such as the battery, controller, and inverter? If so, can you tell me how do they match each other?

Yes, we can, we have two companies for solar region, one is CNBM International, the other is CNBM engineering Co.

We can provide you not only the solar module but also the off grid solar system, we can also provide you service with on grid plant.

④What is your warranty system?

 Our product  performance guarantees for 25 years

• 12 years guarantee for workmanship

• Timeliness of delivery

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

⑤How do you pack your products?

We have rich experience on how to pack the panels to make sure the safety on shipment when it arrives at the destination.

⑥ Can you do OEM for us?

Yes, we can.

⑦How long can we receive the product after purchase?

In the purchase of product within three working days, We will arrange the factory delivery as soon as possible. The pecific 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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Q:Solar Panel Wiring in SERIES?
You should be fine with the series as long as you use a multimeter and verify configuration Get a charge controller. Will be worth the small cost and prevent many issues.
Q:Are solar panels efficiency already calculated in their power rate?
If it says STC or Standard Test Conditions on the nameplate or documentation, then that means 80 watts under bright sun at an unrealistically cool temperature. It is rare to see that power in real life, except when the perfect storm of conditions come together. There is also a PTC rating for some panels, which is more realistic. If the panel does not say STC or PTC, the manufacturer is free to make up whatever test they feel like, which generally leads to ridiculously overstated power. As for efficiency, for residential panels, that's generally only of academic interest. A 80-watt panel is 80 watts, regardless of the efficiency. A more efficient panel will take up slightly less space, but most people are more interested in the total price, since roof space is generally not an issue.
Q:Solar panel for laptop?
Actually they do make these... u have one but the voltage is no guaranteed as depends on the radiation from sunlight. I have a 8v 60Watt folding solar panel... works great and does charge laptop but not consistent. It works better when you also have an external battery with you as well. Battery will charge laptop Solar panel will charge battery Also most important... put laptop screen on super dim / power savior mode or else laptop will eat up energy. I have a desktop replacement hp laptop and able to keep it charged at 9volts just under 2amps... (38 watts)... on power save mode of course ALLPOWERS 8v 60Watt folding solar panel charger Also.... Poweradd Pilot 30000mAh multi-voltage (9v -20v) portable chargers. Remember solar panels are nothing without batteries... not just for storing at night but also storing all the energy you can get. If not you would only be powering the load
Q:what is solar panel? full description needed?
Solar panel refers to a panel designed to absorb the sun's rays as a source of energy for generating electricity or heating.
Q:How much can I expect it to cost to install solar panels?
solar panels are expensive and you probably wont life long enough to recup the cost. last week the times quoted £5000 to install, a potential saving of £200 per year and 00 years to recoup. based on 400 hrs of sunshine. (uk) factor in your sunshine state hrs and you may just benefit.
Q:Can you lease your property for solar panels?
Hi, In the UK solar companies will fit them for nothing. The company gets the government allowance (called feed in tarrif FIT) and you get the benefit of the reduction in your power bills. The solar company make better money than the householder,BUT if the householder is in most of the day it could be most beneficial if the energy is used while the panels are generating, this means the householder is not paying for the power from the grid. If the householder works normally from 9 to 5 then there is less advantage in terms of getting free power from the panels. Best Wishes.
Q:Does infrared radition occur in solar panels?
Solar panels do heat up. But that's because the radiant energy from the Sun that lies within the infrared (IR) band of energy causes the material in the panels to heat up. And that's the same for any body that has the Sun shine on it. Your face, for example, will heat up while you get a nice tan on the beach. That's due to the heat producing IR radiant energy. Now if those solar panels are supposed to heat buildings etc., that heat produced in the panels when the IR strikes them will be transferred, usually by some fluid, to floors of the rooms to be heated. And as the amount of heat generated by the Sun is proportional to the area of the solar panels, bigger areas of panel will generate more heat than smaller areas. Photoelectric solar panels are another kind. Here the interest is in the visible band of radiant energy from the Sun. Heat, from IR, is still there, but it is not the product sought by PE solar panels. The visible light photons knock off loosely bound electrons from the photoelectric material (typically silicon based) and those electrons are siphoned off as current. That's where the electrical power comes from for buildings using PE solar panels to provide their own electricity.
Q:DIY home solar panels?
Not a good idea. The reason why panels are that much more expensive than cells is that the panels themselves are not that cheap either. If you start with the cells, you'll need - mechanical protection (hail, ice, snow) - electrical protection (i.e. waterproofing - if water comes in contact with the cells and wires, you'll get electrolysis which will corrode your wires and contacts faster than you can say 'b*mmer') - that setup will need to withstand temperatures between -20 and +30 °C (only guessing, might be worse) - oh, and the side facing the sun must be transparent (as far as possible) Now as to connecting the stuff: no, it will be neither easy to connect it to the house power nor to the grid - which is why that step (at least) in all countries I know of must be done by a certified electrician. If you get it wrong and you're lucky, only _your_ inverter will explode. Regarding the power: these 4W per cell (or kW for your shed) is the peak value, i.e. with the sun shining orthogonally onto the cells on a clear day. Since this (for a fixed installation) will only be true (at most) for a few minutes on a few days each year, your overall yield will be significantly less, probably more like 4 kWh/day for each clear day for each kWpeak you install _IF_ the shed roof is oriented exactly south and inclined towards the sun's noon position at the spring/autumn equinox (i.e. inclination angle = your geographical latitude). How many clear days do you have in britain? Yes, I had a similar idea for myself - but for one thing, the registered companies I addressed apparently weren't really interested in that small fry, plus the cost of the system + setup would barely have been amortized after the expected lifetime, even taking into account the (german) governmental subsidies. If I had the money to spare, I'd rather invest in a communal solar park. Much better ROI, the large installations get much better prices (per kW) for the setup.
Q:Why don't we use solar panels?
It takes companies or citizens to desire to switch their power source. Yes some areas build solar or wind abilities to create power. Its not super cost effective but getting there. Its new technology, that use to be super expensive to make panels, and now is more affordable. In todays world economy, even though it would help down the road, noone has the money to redo their power source right now, its cheaper to just pay the company providing power. All new things take time to be implimented, studied, planned, and permitted. There will be a slow increased usage, but its not like tomarrow everyone will ask for solar power and companies invest to make it available, just cant happen that way. For your Sahara synario, each country can deal with its own power needs, to bring the power from the Sahara to another country is not doable, each desert area could power its nearby areas, when the need and desire arises. In most continents of the world, individual countries are more concerned with basics, clean water and food, and most dont do a good job at providing that, solar power to poor nations, although its a good thought, just isnt a concern now, its clean water and food, medicine is more important. The big picture warrants more diverse ways to get power, but the world is not as one, the countries do not discuss their needs with other countries. Some countries come to the rescue of others on their own if allowed to. Someday, hopefully the world will be more eco friendly, and peole wont starve to death daily
Q:would the planet cool if covered in solar panels?
The opposite - they heat the Earth up. The ground underneath might be brown or green or sand. The solar panels are Black. They absorb more radiant energy. Solar electricity is energy and somewhere down the wire will produce heat. Solar's saving grace is that it has the same heating effect year after year. But greenhouse gasses have a cumulative effect. The excess gasses produced in year one are added to the gasses in year two, etc. For instance say the heating of soalr cells is 5 times (5s) that of greenhouse gasses (g). Year - Total Heating - 5s + g 2 - 5s + 2g 3 - 5s + 3g 4 - 5s + 4g 5 - 5s + 5g 6 - 5s + 6g 7 - 5s + 7g 8 - 5s + 8g 9 - 5s + 9g 0 - 5s + 0g etc... In 50 years you have 50 - 5s + 50g

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