150Wp Maximum Power Monocrystalline Solar Panels by Leading Solar Panels Manufacturing Companies
- Loading Port:
- Tianjin
- Payment Terms:
- TT OR LC
- Min Order Qty:
- 1000 watt
- Supply Capability:
- 10000000 watt/month
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Specification
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 × 808 × 35mm
Maximum system voltage: 1,000V
Operating temperature: -40 to 85°C
Surface maximum loading capacity: (surface can withstand themaximum pressure) 60m/s (200kg/sqm)
Allowable hail load (hail stress testing) steel ball fall downfrom 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 25years 80% of power
Fill factor: e72%
Loading quantity:
20-foot container: 37pcs
40-foot container: 700pcs
Product Details
Electrical Data | Module Size | Weight | Number of cells series | ||||
Nominal Power | Max-Power | Max-Power | Open-Circuit | Short-Circuit | |||
Voltage | Current | Voltage | Current | ||||
Pmax | VMPP | IMPP | VOC | ISC | |||
W | V | A | V | A | mm | Kg | pc |
10 | 17.2 | 0.58 | 21.6 | 1.31 | 340*254*17 | 1.2 | 36 |
20 | 17.2 | 1.16 | 21.6 | 1.93 | 340*460*25 | 1.8 | 36 |
30 | 17.2 | 1.74 | 21.6 | 2.57 | 350*670*30 | 3 | 36 |
40 | 17.2 | 2.32 | 21.6 | 3.23 | 450*670*30 | 3.5 | 36 |
50 | 17.2 | 2.91 | 21.6 | 3.86 | 550*670*30 | 4.5 | 36 |
60 | 17.2 | 3.49 | 21.6 | 3.86 | 603*670*30 | 5.3 | 36 |
70 | 17.2 | 4.07 | 21.6 | 4.51 | 758*670*30 | 6 | 36 |
80 | 17.2 | 4.65 | 21.6 | 5.17 | 758*670*30 | 6.5 | 36 |
90 | 17.2 | 5.23 | 21.6 | 5.81 | 935*670*30 | 6.7 | 36 |
100 | 17.2 | 5.8 | 21.6 | 6.46 | 935*670*30 | 6.7 | 36 |
110 | 17.2 | 6.4 | 21.6 | 7.08 | 1061*670*35 | 8 | 36 |
120 | 17.2 | 6.98 | 21.6 | 7.72 | 1161*670*35 | 8.6 | 36 |
130 | 17.2 | 7.56 | 21.6 | 8.4 | 1277*670*35 | 9.8 | 36 |
140 | 17.2 | 4 | 21.6 | 4.4 | 1480*670*35 | 10.9 | 36 |
150 | 17.2 | 4.17 | 21.6 | 4.58 | 1480*670*35 | 10.9 | 36 |
160 | 34.4 | 4.65 | 43.2 | 5.17 | 1480*670*35 | 10.9 | 72 |
170 | 34.4 | 4.94 | 43.2 | 5.49 | 1172*983*35 | 11.7 | 72 |
180 | 34.4 | 5.23 | 43.2 | 5.81 | 1172*983*35 | 11.7 | 72 |
190 | 34.4 | 5.52 | 43.2 | 6.14 | 1260*983*35 | 14.6 | 72 |
200 | 34.4 | 5.81 | 43.2 | 6.5 | 1260*983*35 | 14.6 | 72 |
210 | 34.4 | 6.1 | 43.2 | 6.85 | 1488*983*35 | 14.6 | 72 |
220 | 34.4 | 6.4 | 43.2 | 7.08 | 1488*983*35 | 15.2 | 72 |
- Q:Can it be used on a cellphone so u never have to worry about low battery?
- Solar panels (arrays of photvoltaic cells) use renewable energy from the sun, and are a clean and environmentally sound means of collecting solar energy. Solar panels are a great way to generate electricity on a small scale. Solar panels are commonly named solar cells or photovoltaic cells. Photovoltaic means literally light electricity.” Solar cells or PV cells rely on the photovoltaic effect to absorb the energy of the sun and cause current to flow between two oppositely charged layers. Solar panel installation is a cost effective part of the green movement for saving energy. There are different types of solar panels available, including Monocrystalline Panels, Polycrystalline Panel, Cast Polycrystalline Panels, String Ribbon Silicone Panels and Thin Film Panels. Find more information about solar panels at this Web site:
- Q:How do solar panels impact the environment?
- Solar panels have a positive impact on the environment as they generate clean, renewable energy without emitting harmful greenhouse gases or pollutants. They help reduce reliance on fossil fuels, decrease air and water pollution, and combat climate change, making them a sustainable and environmentally friendly choice for energy production.
- Q:Are there any fire hazards associated with solar panels?
- Yes, while solar panels themselves do not pose a significant fire hazard, there are some potential fire risks associated with their installation and operation. These risks primarily stem from electrical malfunctions, such as faulty wiring, improper installation, or damage to the electrical components. Additionally, in rare cases, solar panels can contribute to the spread of fire by acting as a source of fuel or by hindering firefighting efforts due to their presence on rooftops. However, with proper installation, regular maintenance, and adherence to safety guidelines, the fire hazards associated with solar panels can be minimized.
- Q:If this was sold back to the grids what would be the profit i would stand to make per day on energy received in these panels? How did you come up with this answer?
- I'm putting in a $00,000 solar wind project on ST Thomas, Virgin Islands so I have some experience here..... ) depends on where you are...the further north the less efficient the panels are because early morning and late afternoon sun hitting at a great angle isn't anywhere near as good as noon hitting perpendicular..........the US Department of Energy has a solar calculator showing how many hours a day over the year you get enough sunlight to actually run the panels....in the Caribbean the answer is 6 so in Wisconsin you might only get 4 really usable hours a day, Nevada 5, Seattle...forget about it..... 2) the panels I'm putting in are ( roughly) 2 x 3 feet...you would need access around all four sides of a panel...you are NOT going to crawl 35 feet across an array to fix a unit in the middle......so lets say you get 35 panels tall ( 70/2) by 2 wide (3 foot with a 3 foot access area between each row = 72/6) or 420 panels. Each puts out 75 watts at max. So you are cranking out 73,500 watt hours, or 73kW. If your local utility buys back ( net metering ) the juice at, say, 20 cents a kWh, you get $4.75 an hour. If you have 4 usable hours a day x 365 x $4.74 you get back something like $20,000 a year. You pay about $7.00 a watt for a panel. The 75 watt panels are, rounding up, $200. each. Times the 420 panels number is $475,000 dollars. Add in about $2,000 for the inverter to change panel volts to power company volts, and maybe another $20,000 for installation you are looking at $500,000 AT LEAST to put in the system you propose. AT $20,000 a year in sales, its 20-25 years payback. Now, you can play with these numbers up and down but you still get the answer of A LOT of money to buy and build and a LONG time till payback.
- Q:I know that if I put solar panels in my home I will get 30% back from the govt. Does that mean if I pay 2K I will get back around a 3K check? Or will my income play a roll where I may not get back as much?
- The Tax Lady is almost always right, but I must disagree on the $500 limitation concerning a solar electric system (from the price, it sounds like that's what the original question was about) installed in 20. If there was such a change, there would have been an outcry on the solar installers' forum I visit, just as there was jubilation when the limit on the tax credit was removed a few years ago.
- Q:I don't have a regulator connected as they are a little expensive for a pensioner, If I join the panels into line to the battery bank from the roof should that be OK.?
- I am pretty darn sure you need the regulator because all the advertising says that you must have one if you have more than one small solar panel. I think you can overcharge your batteries otherwise. Solar power is still not cost effective, so most people have solar power because they care about the environment more than they care about expenses. If you are poor, it is better to skip solar power, unless you are in an area where there isn't access to electricity. For example, we have a cabin without electricity. I am a strong environmentalist, too. Solar power is too expensive still, for low income people. It is better to focus on energy conservation, imo. such as change your roof to white, to save on A/C, as the head of the US energy dept. says (he is a nobel prize winning physicist). PS Dave might be right on that stuff, i don't know. but all the ads say you need a regulator if you are going to have more than one solar panel so I assumed this was due to risk of overcharging.
- Q:Can solar panels be used for powering a marina or boating facility?
- Yes, solar panels can definitely be used to power a marina or boating facility. Solar energy can be harnessed to generate electricity that can be used to meet the power needs of various facilities and equipment in a marina or boating facility, including lighting, ventilation, pumps, and charging stations. By utilizing solar power, these facilities can reduce their reliance on conventional energy sources, decrease their carbon footprint, and potentially save on electricity costs in the long run.
- Q:How do you know when it is a good deal to buy a solar panel. For example, what is a good cost per watt, how many volts should I expect, etc.
- first okorder / example: house roof is 20' x 20' 20' = 240, so sq. inches of roof is = 57,600 say rain fall for your area is 3 per month on average. 57,600 x 3 = 72,800 of rain collected. Using the conversion chart link above, that many cubic inches of water = 750 gallons of water free per month. Look at your water bill and see how much you use. Solar panels take on average 2-20 yrs to pay themselves off, just in time for them to be replaced. Paddle wheels go on for just about forever. We still find large paddle wheel mills in the USA that are over 200 yrs old, and still functioning.
- Q:This is the cenario. Your yearly energy use comes by mail and it states that the total amount of energy used your household is 7000kWh.Then you make the decision of switching to get solar panels. The question is what area should your solar panel be given that the average annual length of daylight is 2.0.
- It is not that simple. There are 3 main types of solar cells. Monocrystalline silicon is the most efficient and produces the smallest solar cells, and therefore the smallest panels. Poly-crystalline (or multi-crystalline) silicon produces the next most efficient type of cells and are a popular choice. Amorphous (or thin-film) silicon uses the least amount of silicon and also produces the least efficient solar cells. This means thin film system take up more area than the other two; an important factor to consider in relation to possible future upgrades; i.e. if you'll have enough space left to do so. The North (in the Southern hemisphere) or South (in the Northern hemisphere) facing roof collects the most energy. So this biases the roof area required. Your energy usage can be changed. Hot water (a major energy user) could be better using direct solar heating with peak demand boosting, either from mains or solar. There are other possibilities, either to reduce demand or to provide energy from other sources. Not all sunshine hours are equal. Hours around midday are far more productive than hours later in the day. This must be factored in.
- Q:Dose a solar panel need the entire range or spectrum of sunlight to produce power?
- I think it's in the Ultra-Violet range because Solar Panels will still put out almost full power on an overcast day.
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150Wp Maximum Power Monocrystalline Solar Panels by Leading Solar Panels Manufacturing Companies
- Loading Port:
- Tianjin
- Payment Terms:
- TT OR LC
- Min Order Qty:
- 1000 watt
- Supply Capability:
- 10000000 watt/month
OKorder Service Pledge
OKorder Financial Service
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