156*156mm 150W China Polycrystalline Solar Panel

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Loading Port:
Tianjin
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TT OR LC
Min Order Qty:
1000 watt
Supply Capability:
10000000 watt/month

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Item specifice:

Material: Polycrystalline Silicon Max. Power(W): 150 Number of Cells(pieces): 36

Product Description:

Product Description

Key Specifications/Special Features

  • Single crystal

  • Maximum power: 150Wp

  • Maximum working voltage: 35.70V

  • Maximum working current: 4.16A

  • Open circuit voltage: 42.84V

  • Short-circuit current: 4.40A

  • Battery efficiency: 15.00%

  • Cell number: 72pcs (6 x 12mm)

  • Cell dimensions: 125 x 125mm

  • Solar panel dimensions: 1,580 x 808 x 35mm

  • Maximum system voltage: 1,000V

  • Operating temperature: -40 to 85°C

  • Surface maximum loading capacity (surface can withstand the maximum pressure) 60m/s (200kg/sqm)

  • Allowable hail load (hail stress testing) steel ball fall down from 1m height

  • Weight of each solar panel: 16kg

  • Connection box type: PV-JB001 (TUV)

  • Cable type: with TUV mark

  • Cable length: 900mm

  • Output power tolerance: ± 3%

  • Frame material: aluminum

  • Standard test conditions (STC): 1,000W/m² AM1.525°C

  • 10 years product warranty and 25 years 80% of power

  • Fill factor: e72%

  • Loading quantity:

    • 20-foot container: 37pcs

    • 40-foot container: 700pcs

150W Monocrystalline Solar Panel with High Efficiency, Suitable for Streetlights

Product Details

Electrical DataModule SizeWeightNumber of cells series
Nominal PowerMax-PowerMax-PowerOpen-CircuitShort-Circuit
VoltageCurrentVoltageCurrent
PmaxVMPPIMPPVOCISC
WVAVAmmKgpc
1017.20.5821.61.31340*254*171.236
2017.21.1621.61.93340*460*251.836
3017.21.7421.62.57350*670*30336
4017.22.3221.63.23450*670*303.536
5017.22.9121.63.86550*670*304.536
6017.23.4921.63.86603*670*305.336
7017.24.0721.64.51758*670*30636
8017.24.6521.65.17758*670*306.536
9017.25.2321.65.81935*670*306.736
10017.25.821.66.46935*670*306.736
11017.26.421.67.081061*670*35836
12017.26.9821.67.721161*670*358.636
13017.27.5621.68.41277*670*359.836
14017.2421.64.41480*670*3510.936
15017.24.1721.64.581480*670*3510.936
16034.44.6543.25.171480*670*3510.972
17034.44.9443.25.491172*983*3511.772
18034.45.2343.25.811172*983*3511.772
19034.45.5243.26.141260*983*3514.672
20034.45.8143.26.51260*983*3514.672
21034.46.143.26.851488*983*3514.672
22034.46.443.27.081488*983*3515.272


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Q:Whats the annual energy output of the average solar panel.?
The Sun provides about 360 W per square meter above the atmosphere (Solar Constant). Approximately 2/3 of the energy is lost in passing through the atmosphere, which means you should anticipate at best about 450 W per square meter arriving at a solar panel directly facing the Sun on a clear day. You can anticipate an efficiency of approximately 30% for a typical solar collector, or about 00 W to 40 W per square meter of solar collector being delivered as electricity under the best of conditions. These are estimates, but we need better information on the actual power delivered per square meter of a particular solar collector under the best of conditions before we can begin to estimate the amount of energy per meter squared collected over a typical year for a given location.
Q:Building my own solar panels?
Create okorder.com/
Q:How did Obamas funded solar panel plan flop and bunkrupt..where did those billions of dollars go?
Yes, solar panels could change the world if they were especially cheap--but they're not and may not be cheap for many years, if ever. Lots of new technology could change the world but most of it doesn't. The government doesn't have a very good track record of picking winners in the new technology markets; that's something we should probably leave to the venture capitalists to do--with their own money. The money the government spent on solar panels is gone. Racked up as debt that we'll leave to our children and grandchildren to pay off.
Q:how instal solar panel?
There are MANY garden lights with built in batteries and solar panels that you just need to stick in the ground. There are also self contained units that are wall mountable. THAT way there is no need to run wiring, use battery stacks, etc. and will also probably be less expensive overall.
Q:Tips for convincing my school to put solar panels on the schools roof?
Unfortunately installing Photoelectric Solar panels on your school would probably cost more than the entire school budget. In order to make this sort of proposal you would need to have some hard numbers to show exact dollar amounts of costs and benefits. You would need multiple quotes from companies that install solar panels and information from the electrical company that would have to tie the system into their grid. This is a HUGE undertaking. If you really want to reduce carbon emissions, suggest ways to reduce the energy use within the school instead of converting to solar. Better windows, doors, and roof insulation. If you have a leaky roof, fixing that would get rid of water damage and better insulate the school thus saving energy. Suggest plans to reduce electrical usage like having computers go into Hibernate mode after 0 minutes, turning off lights in rooms that aren't getting used, etc... Many people are fooled into thinking that solar power is this awesome free energy source. IT is NOT. Solar panels are great for powering small items or for getting power when you have no other way of getting connected. However it takes MORE electricity to create a solar panel than the solar panel will ever produce in it's ENTIRE lifetime. Do some research into the production of silicon crystal and semiconductors and find out how solar panels are made. Until the technology improves greatly, solar is not a green power source other than generating money.
Q:Research Paper on Solar Panels?
Actually, solar energy IS a good one. It's something we all need to think about, especially when coal and oil become harder to get. Good luck with your paper!
Q:lighting my pond with solar panels?
select 2V, and it will tell you how big of a battery bank and how big of a solar panel you need. For my example, I need a 7ah 2V battery and a 20watt panel.
Q:Solar Panel Circuit Question?
Your solar panel output too little current that cannot be used to power the relay. Change the panel into 2V 500mA type shall work.
Q:question about Solar Panels?
Assuming that you have / will upgrade wiring sizes to carry the extra wattage, that the new total wattage resulting from the addition doesn't overload any existing charge controller, diodes and / or inverter you have installed, then paralleling it straight into one of the other 2 volt groups should do nothing but add current to the system. True, it will be somewhat imbalanced, but it will work. Your other options would be to reconfigure everything down to it's native 2 V configuration which will raise current and lower voltage, with the additional panel creating the additional current to raise the wattage or to put it in series with the other 4 panel clusters so that you would get 36 V and additional current to account for the raised wattage. One last approach might be to set it up on another battery bank of it's own (small and at 2 V) to then connect to the same inverter. You'd be getting more power and storage capability that way, sort of a partial backup system, really, that will take some of the load off the other components to help extend their useful lives and get a bit more flexibility into it as well. The choice is yours here. That is all the ways that the system can be connected in, assuming everything in the first sentence checks out;-) It's difficult to make a recommendation without knowing what other components are in use and what the maximum ratings they carry are. Just remember that parallel connections add current and voltage stays the same, series connections add voltage and the current remains the same and you can figure out what to do with this thing to help you if you stay within maximum ratings for the charge controller, diodes and / or inverter involved. Good luck and stay safe!
Q:Does a 50W solar panel generate 540kWh?
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. .

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