• 180w Photovoltaic Solar Panel for Home Solar Systems in Kansas System 1
  • 180w Photovoltaic Solar Panel for Home Solar Systems in Kansas System 2
  • 180w Photovoltaic Solar Panel for Home Solar Systems in Kansas System 3
180w Photovoltaic Solar Panel for Home Solar Systems in Kansas

180w Photovoltaic Solar Panel for Home Solar Systems in Kansas

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Loading Port:
Shanghai
Payment Terms:
TT OR LC
Min Order Qty:
1000 watt
Supply Capability:
1000000 watt/month

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Specification

Material:
Monocrystalline Silicon
Max. Power(W):
180
Number of Cells(pieces):
60

Product Description

Features
High reliability with guaranteed -3% to +5% power output tolerance, ensuring return on investment
High conversion efficiency based on leading innovative photovoltaic technologies
Withstands high wind-pressure and snow load, and extreme temperature variations
Attractive appearance
Unique frame design, high mechanical strength, and easy Installation
180W Photovoltaic Solar Panel for Home Solar SystemsEfficiency
Low voltage-temperature coefficient allows higher power output at high-temperature condition
High efficient, high reliable solar cells ensure our product output stability

Materials
Glass
1. High light transmission no less than 91.6%
2. Excellent mechanical loading performance (5400 PA)
EVA
1. High light transmission
2. High GEL and peeling strength guarantying strong encapsulation
3. Good ultraviolet aging resistance
4. Excellent oxidation resistance
5. TUV certified
Cell
1. Excellent efficiency and long term reliability
2. Good performance under high temperature and low irradiance conditions
3.100% In-line Electroluminescence (EL) tested
4. Positive tolerance for each panel
5. Cell efficiency filling by 0.2 percentage
6. TUV certified
Back sheet
1. TPT based encapsulation and protection
2. Good aging resistance
3. Excellent adhesion and ultraviolet stability
4. TUV certified
Frame
1. Anodized/ Electrophoretic aluminium means durable protection from environment
2. Unique design profile ensuring strong mechanical loading performance
3. Silver/ Black color available
Junction box
1. Climate membrance: Excellent heat dissipation, prevent steam coming from outside and corrosion of diode by inside steam on the condition of big difference in temperature
2. IP65 protection
3. TUV certified
Connector
1. MC4 compatible/ IP65 or MC4 original/ IP67

Packaging & Delivery
1. Packaging Detail: 2PCS/CARTON; 504PCS/40'; 520PCS/40'H
2. Delivery Detail: 10-15 days after receiving deposit

Quality and Safety
1. Rigorous quality control meeting the highest international standards
2.25-year power output transferable warranty
3. Have CE, ISO9001/14004 and RoHS certificates

Main Export Markets: 
1. Central/South America
2. Eastern Europe
3. MID East/Africa
4. North America
5. Western Europe

Electrical Characteristics
Cells size (mm):156*135.5
Cells per module:48pcs
Module size (mm):992*1155*40
Power tolerance:+/-3%
Nominal peak power(WP):180w
Nominal voltage(V):24.1
Nominal current (A):7.47
NOCT:45+/-2degree
Voltage temperature coefficient:-0.33%/degree
Current temperature coefficient:+0.05%/degree
Power temperature coefficient:-0.23%/degree
Open circuit voltage (Voc):29.5
Short cirsuit current(Isc):8.07
Conversion efficiency:17.87%
Operating temperature:-40 to+85degree
Max system voltage:1000V DC
Surface Maximum Load Capacity60m/s(200kg/sq. m)
Cell power4.3w

FAQ

1.Price per watt?

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

2.Parameter of the module?

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

3.Can you provide the peripheral products of the solar panels, such as the battery, controller etc.?

We have two companies(CNBM International & CNBM engineering Co.) with different approaches. We can supply not only the solar module but also Solar Cells, off grid solar system, even service with on grid plant.

4.Warranty policy?

Our product performance guarantees for 25 years

• 12 years guarantee for workmanship

• Timeliness of delivery

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

5.Lead time?

In 3 days after purchasing, we will arrange the factory delivery ASAP. The specific time of receiving is related to the state and position of customers. Commonly 7 to 10 working days can be served.

Q: What is the difference b/w them which one is better .
how much does these pannels way and which are the most efficient?
Q: Can solar panels be installed on sports stadiums or arenas?
Yes, solar panels can be installed on sports stadiums or arenas. In fact, many stadiums and arenas around the world have already installed solar panels to harness clean and renewable energy. These panels can be mounted on the roof or other suitable areas of the facility, helping to offset energy consumption and reduce carbon emissions. Additionally, the large surface area of stadiums and arenas provides ample space for solar panel installation, making them ideal candidates for utilizing solar energy.
Q: I have 2 solar panels one is 5 watts 2 volts .2 amps or -The other is 50 watts 2 volts 2.6 amps or-Can I ...and what is the best way to hook them togeather to increase my amps being put back to my battery ?? I would be hooking them up to a 7 amp 00 watt charge controllerThe panels are rated 2 volt but the specs say they will produce more whennot connected to charge controllerPlease advise and should I even bother with the smaller panel ?
The answer is that the two panels should be put in parallel. The voltage out will drop to the voltage of the lower panel, but you should get most of the power, if the panels aren't too badly mismatched. I would try to get a multimeter and try to measure the actual current coming out of the panels in full sun. Sometimes the specifications on these smaller panels are very optimistic. If the whole setup is putting out less than 2 amps, I'd say wire the whole thing straight to the battery - little chance of boiling the electrolyte at those currents.
Q: I had an idea for new parabolic solar panels shaped like horseshoes. They can install them outside buildings facing the equator. They could angle them from the ground based on how many degrees latitude the location and rotate them according to seasonal changes. The disadvantage of photovoltaic panels is that they are not all capable of receiving direct sunlight. That is the quintessential reason I believe horseshoe solar panels are more effective than flat rectangular ones. One side could function in the morning; the middle could perform at midday; and the other could operate during the evening. That method seems more sensible than hourly positioning. I'm certain horseshoe panels could save and produce more electricity. A football stadium, shopping mall, or outlet center would be a fantastic place. What do you think?
The panel's own shadow at different times will defeat the purpose. In addition large areas of expenssive panel will remain idle. Flat panels are the most economical solution.
Q: is a wind turbine better than solar panels
Both solar and wind production is largely a function of location. If you live in the southwest where the sun shines most days, maybe solar is an option. If you happen to live in one of the wind corridors, maybe wind is an option. Neither one will be as reliable and cheap as your grid power, though. Best is to concentrate on conservation of energy use.
Q: Online stores selling solar photo-voltaic generation kits gives specs indicating the power generation capability of the system. For example, Solar World Grid-Tie Solar Electric System with 245W Panels PV Powered PVP2000 Inverter, .2 to 2.4 kW. This seems to indicate that the system can generate .2 to 2.4 kW. Is that per day? Per month? I'm trying to calculate the return on investment, but can't because I don't know how much power a system such as this will generate in a month.
As Ed said, that .2 kW is an instantaneous rating in bright sun. The way to do this right is to consult the maps here rredc.nrel /solar/old_data/nsr... to find the number of equivalent sun-hours your location gets per day. Select, Average, Annual, Flat plate tilted south at latitude. A map will come up. For northern California, it shows 5 equivalent sun hours per day, for example. If the system is .2 kW, then .2 x 5 = 6.0 kWh of energy the system will generate per day, on average. That takes into account cloudy days, short winter days, long summer days, everything. The 2.4 kW system would give double that, obviously. But that's an example, based on a specific location. Phoenix would do better, Seattle would do worse.
Q: Which kit did you use?How easy was it to build? How much did it cost to build the panels?How many kw or watts does it produce?Any other info on the kit or panels you built would be helpful.Thanks!
the kit is a fraud and should be ignored. You cannot make a solar panel at home to the quality and output that professional ones are. It's like thinking you can buy chips and make your own PC.
Q: Can solar panels be used in areas with frequent lightning storms?
Yes, solar panels can be used in areas with frequent lightning storms. While lightning poses a potential risk, modern solar panels are designed with safety features to mitigate the impact of lightning strikes. These features include grounding systems, surge protectors, and lightning arrestors. Additionally, solar panels are built to withstand extreme weather conditions, including lightning storms, ensuring their durability and functionality in such areas.
Q: Are there any risks associated with solar panel installation?
Yes, there are a few risks associated with solar panel installation. Some potential risks include the risk of falling during installation, electrical shock or fire hazards if not installed correctly, potential damage to the roof during installation, and the risk of panels not performing as expected due to factors like shading or poor maintenance. However, these risks can be minimized by hiring a professional installer, following safety guidelines, and ensuring proper maintenance and monitoring of the solar panel system.

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