• 15w High Quality Mono Solar Panel for Pool Pump with Low Factory Price System 1
  • 15w High Quality Mono Solar Panel for Pool Pump with Low Factory Price System 2
15w High Quality Mono Solar Panel for Pool Pump with Low Factory Price

15w High Quality Mono Solar Panel for Pool Pump with Low Factory Price

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Loading Port:
Shanghai
Payment Terms:
TT OR LC
Min Order Qty:
100 watt
Supply Capability:
50000 watt/month

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Introduction

 

High quality mono Solar Panel with low factory price this is a kit using for factory and storge field. this product is a higer output version with stable power and we gurantee you for 20years.      

Monocrystalline solar cells are currently the fastest developing a solar cell, its structure and production process has been finalized, the products have been widely used for space and ground. Such solar cells with high purity silicon rods as raw materials. Silicon rods, material performance indicators in order to reduce production costs, and now solar terrestrial applications such as the use of solar grade somewhat relaxed. Some semiconductor devices can also be used for processing materials and discard the head and tail of silicon materials, solar cells after re-drawn into a dedicated silicon rod.

      

 

suggestied application

 

home lighting business lighting,

Garden lighting, pavement lighting    

Farmer household lighting

Decorative water pump

Traffic signal lighting

industry area

business area

Solar Power Plant, Solar House 

 

Product features

 

The modules are made of Monocrystalline or Polycrystalline Silicon cell.
Materials and color of the solar panel frame: Clear anodized aluminum alloy type 6063T5 Universal frame; Silver-white color;
The output connection gathers the coupling: Selects conforms to the IEC-612615; 2005, class II, IEC61730 international standard; Airtight waterproofing binding clamp;
Module seal structure: The surface is thick, the high diaphanous rate armored glass with solar cell board special-purpose 3.2mm becomes after the high temperature lamination craft. The back selects has waterproof and anti- aged performance fine TPT materials. The entire block battery board has, the waterproofing, the anti- aging airtight and so on the fine performance;
Power tolerance: +/-3%
The module bears the outside striking potential [V]: 1000V/1min
Working temperature: -40°C~+85°C
Service life [year]: It can be used more than 25 years under the environment of without acid, alkali and so on .

 

packing

 

Details: packed in international standard cartons(according to the requirements of customers ) for solar panels    

 

Parameters

 

 

15W High Quality Mono Solar Panel with Low Factory Price

15W High Quality Mono Solar Panel with Low Factory Price

 

Q:Can I use a regulator from a car to regulate the voltage from a solar panel to a battery?
solar panels will naturally produce a certain DC voltage which is what your battery needs - the current will vary based on the sun light. You need probably 4V to have some over voltage. So based on your specs look at having at least 4 V but not too much over that (tells you how many panels you need in series) I would have blocking diodes (probably the solar cell has them built in) to insure the battery does not discharge thru the panel.
Q:The intensity of sunlight at the distance of the Earth's orbit is 380 W/m2. An Earth-orbiting satellite has a solar panel that measures .35 m by 4.86 m, which converts solar energy to electrical energy with an efficiency of 26%. In one hour, how much electrical energy does the panel produce? Assume that the satellite's attitude control jets keep the panel oriented perpendicular to the incoming sunlight.
380 W/m2. An Earth-orbiting satellite has a solar panel that measures .35 m by 4.86 m, which converts solar energy to electrical energy with an efficiency of 26%. In one hour, how much electrical energy does the panel produce? 380 W/m? x .35 m x 4.86 m x 0.26 = 2354 watts energy is watts*time E = 2354 watts x 3600 sec = 847472 Joules or, E = 2354 watt-hours
Q:Can solar panels be used to power a factory?
Yes, solar panels can be used to power a factory. By installing a large number of solar panels on the factory's roof or in nearby open spaces, the generated solar energy can be harnessed and converted into electricity to meet the power requirements of the factory. This can help reduce the dependency on traditional grid electricity and also contribute towards a more sustainable and environmentally friendly operation of the factory.
Q:I want to get definate instructions on how to make the components and convert my home to solar energy. I know I could hire some one to do this, but frankly I do not have the funds at my disposal to do it. I thought if I could find detailed instuctions I could slowly do it myself (with my husband's help). I have looked into loans for this purpose to no avail. Finding the information on the net could take forever! If anyone knows a site that would give me the information or even a hint on how to start? Any help will be appreciated, but if you have any good links to good information please share them with me..Thanks
I doubt that you are going to want to learn how to dope your own silicon wafers, add contacts and laminate them into PV panels.? I also doubt that you're going to even want the various chemicals to make e.g. cadmium-based cells anywhere near your house (cadmium is a very toxic metal).? In other words, making your own solar panels is not an at-home project. You can buy solar panels based on cells of several different types.? A link to a Pricewatch-like website for current prices on solar panels is below.? Mounting panels to roofs or pole mounts, running conduit and wires, and installing battery banks and inverters are within the capabilities of skilled laypeople. More data at the links. Edit:? I am reporting all of Agua-Luna's cut-and-paste pieces as spam.? I encourage others to do likewise.
Q:Our school is in the process of being built, but they have no plans to include any environmental benefits. I was wondering how to get a grant for solar panels (at least) or who I can talk to in order to get a grant.
You might do better looking at a more economical environmental project. In most parts of the US, solar panels simply don't pay for themselves over their equipment life. Schools won't be eligible for tax credits (since they don't pay taxes) and so solar panels will likely take more than 40 years to pay for themselves. The life of a solar panel is expected to be 25 years. You should, however, try to talk to the school board about things like solar water heating (which can have a very attractive payback) and light fixtures that have sockets such that they will only take compact flourescent bulbs and skylights to allow for less lighting use in classrooms and perhaps even ground source heat pumps for space heating. All of these can be quite economical, and will make more sense when installed during construction. Good luck.
Q:Can solar panels be used to power an air conditioning system?
Yes, solar panels can be used to power an air conditioning system. Solar panels generate electricity from sunlight, which can be used to run various electrical appliances, including air conditioning units. By harnessing solar energy, it is possible to power an air conditioning system without relying on traditional power sources, leading to energy savings and reduced carbon emissions.
Q:we are planing to move out of the grid. we need to operate constantly 2 laptops online - does any one can tell us how much solar panels we shall need to make sure of that?
A laptop is about 70 to 00 W, and you have two. You also may need to power a router, and modem. So, about 50W to 250W contineous should cover it. To save power when not in use, you can let the display go blank. This will reduce your solar pannel, and battery size, and cost. You will need batteries, and blocking rectifier to store the energy for use at night, and a 300W to 400W inverter. Checkout the link below for purchasing solar equipment. You can only hope to get about 8 to 9 hours of full output from your solar pannels, and 80% efficiency. The laptops will be on and using about 200W for the 8 hours during the charging period. So your pannels, need to produce that plus 2 times more than this amount, so you can charge the batteries for the evening, at the same time. So for 24 hour operation, you will need 200W x8hrs for the laptops, plus (6 hours*70W)/8=340W avg. Total of ~540W for 8 hours. Assuming you use power saving modes when not in use, you can probably get away with 3x60W -- 520W to 600W pannel. ( Thuja is right, a few cloudy days may knock you offline) Batteries. A common low cost ( $40) automotive battery can hold about 40 Amp/hours at 2V. Under load, you may get 35 Amp hours at 0V, which is about 350Watts for one hour. You need about 80W avg for 6 hours, or ~ 2900Watt Hours. Which means you would need 9 automotive batteries. Deep storage batteries cost more, but are more durable. 6*00W pannels, $460*6 ~ $2800 Inverter $70 Batteries $400 Battery cables, rectifier, lugs, connectors $50 There are probably some other hidden costs. I was rooting for you, but it appears to be pricey. Another thing you can do, is to use the new energy efficient RF florescent bulbs for lighting. The color and brightness are excellent, and a 60W bulb only uses about 3W, and they last a lot longer as well.
Q:What are the different types of solar panels?
There are three main types of solar panels: monocrystalline, polycrystalline, and thin-film. Monocrystalline panels are made from a single crystal structure, offering high efficiency but also higher costs. Polycrystalline panels are made from multiple crystal structures, slightly less efficient but more cost-effective. Thin-film panels use a layer of semiconductor material, providing the lowest efficiency but the ability to be flexible and lightweight.
Q:Thanks
Initial cost , space occupied AND DAILY CYCLE (unless through a battery) are the only disadvantages. REST ARE ALL ADVANTAGES
Q:How do I clean my solar panels?
To clean your solar panels, start by turning off the system and ensuring the panels are cool to touch. Use a soft brush or sponge with mild detergent mixed in water to gently scrub away any debris or dirt. Rinse the panels with clean water and allow them to dry naturally. Avoid using abrasive materials or harsh chemicals, as they may damage the panels. Additionally, be cautious when working at heights and consider seeking professional help if needed.

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