• 2000W High Quality 180W Monocrystalline Solar Panel CNBM System 1
  • 2000W High Quality 180W Monocrystalline Solar Panel CNBM System 2
2000W High Quality 180W Monocrystalline Solar Panel CNBM

2000W High Quality 180W Monocrystalline Solar Panel CNBM

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Loading Port:
Qingdao
Payment Terms:
TT OR LC
Min Order Qty:
10 set
Supply Capability:
300000 set/month

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1.5W to 180W Monocrystalline  Solar Panel

 

High Quality 180W   Monocrystalline  Solar Panel CNBM

High Quality 180W   Monocrystalline  Solar Panel CNBM

 

 

Quick Details

Place of Origin:

China (Mainland)

Brand Name:

CNBM

Model Number:

XRP-156M-250W

Material:

Monocrystalline Silicon

Size:

1620x992x40mm

Number of Cells:

60

Max. Power:

250w

Optimum Operating Voltage (Vmp):

28.8V

Optimum Operating Current (Imp):

8.68A

Open Circuit Voltage (Voc):

36V

Short Circuit Current (Isc):

8.87A

Maximum Power at STC (Pmax):

250W

Operating Module Temperature:

-40 °C to +85 °C

Maximum System Voltage:

1000 V DC (IEC) / 600V DC (UL)

Maximum Series Fuse Rating:

15A

Packaging & Delivery

Delivery Detail:

two weeks after order confirmation

  

 Features:

1) High Module conversion efficiency, through superior manufacturing technology

2) 0 to +5W positive tolerance for mainstream products

3) Certified to withstand high wind loads and snow loads

4) Anodized aluminum is for improving corrosion resistance

5) Anti-reflective, Highly transparent, low iron tempered glass

6) Excellent performance under low light environment

 

 

Benefit:

 

25-year performance warrant

10-year Product warranty

 

 

Electrical Characteristics: 

Item No.

XRM-250W

Optimum Operating Voltage (Vmp)

28.8V

Optimum Operating Current (Imp)

8.68A

Open Circuit Voltage (Voc)

36V

Short Circuit Current (Isc)

8.87A

Maximum Power at STC (Pmax)

250W

Cell  Efficiency

 17.70%

Operating Module Temperature

   -40 °C to +85 °C

Maximum System Voltage

  1000 V DC (IEC) / 600V DC (UL)

Maximum Series Fuse Rating

15A

Power Tolerance

   0/+5 %

 

STC:  lrradiance 1000 W/m2, module temperature 25 °C, AM=1.5;

Best in Class AAA solar simulator (IEC 60904-9) used, power measurement uncertainty is within +/- 3%

 

Mechanical Characteristics:

 

No. of Cells

60(6X10)

Dimensions

1640x992x40MM

Weight

20.0KGS

Front 

Glass 4.0 mm  tempered glass

Frame

Anodized aluminium alloy

 

Temperature Characteristics:

 

Nominal Operating Cell Temperature (NOCT)

45±2°C

Temperature Coefficient of Pmax 

-0.44 %/°C

Temperature Coefficient of Voc

-0.33 %/°C

Temperature Coefficient of Isc 

 0.055 %/°C

 

  • Refer to the Wmp range

       Our factory can produce solar panel and solar module from 1.5W-290w (1.5w, 2.5w, 5w, 10w, 20w, 40w, 50w, 60w, 80w,   85w, 125w, 135w, 150w, 165w, 180w), according to customers requirement.

 

       (A). Wmp range: 0.01W-6W, to be sealed with epoxy resin on PCB (printed circuit board), or to be sealed in plastic directly.

       (B). Wmp range: 0.01W-15W, to be encapsulated with PET, on PCB (printed circuit board)

       (C). Wmp range: 1W-60W, to be encapsulated with PET, on stainless steel, with holes for assembling purpose.

       (D). Wmp range: 1W-290W, to be encapsulated with tempered glass, EVA, TPT, together with aluminium frame, junction box and (if necessary)diode and cable.

 

  • Refer to the material:

       Monocrystalline solar cell or polycrystalline solar cell

       Efficiency range 14%-17%, cell size 5/6.

 

 

Q: I have several 6v 4.5a sealed lead acid batteries. I would like to hook one of them up to a solar panel and have it stay charged from the solar panel all the time, but not overcharged. Is there a simple way to do this with an IC or something? I am only a beginner with circuits so I want it to be something very easy to make. Basically, I want it to stay charged all the time so it's available if I need it for a power out or something.Thanks.
What I would suggest is that you find a panel that is rated for 00 mA, at any voltage higher than 8 volts. A 2 or even 8-volt panel will do, because the voltage will drop to match the battery. Then I would get a diode to put in series with the panel to prevent the battery from discharging through the panel at night. That's called a blocking diode. At such low currents, a charge controller is not worth it. There is not enough power to overheat the battery, which is principally what a charge controller protects against in a larger system. Be aware that you could also simply plug a trickle charger for the battery into the wall outlet, at a cost of less than a penny a day in electricity.
Q: I'm building a solar panel for the first time and have the tabbed solar cells. I put together 4 strings of 9 cells. And the cells are each 0.55V, 3.6A.Because I'm going to be using the panel indoors and leaning it up against a window pane, I put them in a 24x36 inch poster-size frame. The frame has a plexiglass cover and a thick cardboard backing. My question to you is this. Will the cardboard backing up against the metal underside (positive side) of the solar cells be ok? I don't know if it may catch fire or if holes may burn through when there's full sun.My guess here is it should be ok. But maybe I'm wrong. If I am wrong, or if something should be put in between, please let me know what I should use.Thanks everyone!
No,do not use card board because your cells are quite powerful. Accident short might cause fire. Replace it with another piece of plexi-glass.
Q: If my school uses 88240kWh of electricity per month and I have 000 50W solar panels running for 6 hours a day, does it mean it will take 88240kWh / {{[(50W x 3600s)*000]/000}kWh x 6} number of hours to generate that much electricity (88240kWh)?
your first question: Does a 50W solar panel generate 540kWh? 540 kW-hr / 50W = 3600 hours it would take that long for the panel to generate that amount of energy. your second question is confused, as you both stipulate the number of hours at 6 hours per day, and you try to solve for the number of hours. 000 x 50w = 50 kW 50 kW x 6 hr/day x 30 day/mo = 27000 kW-hr/mo = 27 MW-hr/mo that is the amount of energy generated. That is nowhere close to 88240 kWh or 88 MW-hr. I would take 7 times more solar panels to generate that much energy. .
Q: I had someone quote me for solar panels on my house but I can't afford it. They were talking about how I have enough room and the perfect location to put many of them and actually get paid for it. I have about a half acre that is tiered and points in the correct direction for them to get pretty much the full day sun. Additionally, I live in so cal where it is sunny most of the year. Does anyone know if solar companies will lease or install them to get the payback? I would be happy to allow them to use the land just to cover my electrical expense and they could have any payback.
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: looking for alternative ways to save energy money and thinking about solar panels. anyone know anything about it and how expensive it is to install them?
One okorder to save people a tremendous amount of money on solar installs.
Q: Could anybody give some review about Homemade Solar Panel.
Have okorder . It may extremely teach everyone!
Q: Can solar panels be installed on remote or off-grid locations?
Yes, solar panels can be installed on remote or off-grid locations. In fact, they are particularly suitable for such locations as they do not require a connection to the traditional power grid. Solar panels can generate electricity by harnessing sunlight, making them a reliable and sustainable energy source for remote areas.
Q: Can solar panels be installed on mountain huts or lodges?
Yes, solar panels can be installed on mountain huts or lodges. In fact, mountain huts and lodges are often ideal locations for solar panel installations due to their remote locations and ample access to sunlight. Solar panels can provide a sustainable and reliable source of electricity for lighting, heating, and powering various appliances in these mountainous areas.
Q: Well my dad has been into Solar panels for quite a while, his birthday is coming up and i want to get him a small minature one, so he can toy around with it and be able to use it as expirience for when he gets a bigger one. my dad has been doing ALOT of studying, and i've been looking online but idk what kinda kits to get so should i get a 0w kit, 5w kit, or 20w kit? which one would be best to fool around with and play with? thanks
The okorder /... All the other sites you google/yahoo for will be advertisements. I think the author of this one was a engineering student. Hope this helps!
Q: Can solar panels be installed on golf courses or recreational facilities?
Yes, solar panels can be installed on golf courses or recreational facilities. These locations often have vast open spaces with ample sunlight, making them ideal for harnessing solar energy. Additionally, installing solar panels in these areas can help offset the energy demands of the facilities, reduce carbon emissions, and promote sustainability.

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