• Ion Solar Panels 35 Watt Photovoltaic Poly Solar Panels System 1
  • Ion Solar Panels 35 Watt Photovoltaic Poly Solar Panels System 2
Ion Solar Panels 35 Watt Photovoltaic Poly Solar Panels

Ion Solar Panels 35 Watt Photovoltaic Poly Solar Panels

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Loading Port:
China main port
Payment Terms:
TT OR LC
Min Order Qty:
200 watt
Supply Capability:
500000 watt/month

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Specification

Material:
Polycrystalline Silicon
Max. Power(W):
35
Number of Cells(pieces):
20

Instruction

1) Product name: solar panel / module

2) Solar cell: Mono-crystalline / Poly-crystalline / Amorphous

3) Tempered glass laminated with aluminum frame

4) Life time: 20 - 25 years

5) Temperature co-efficiency:  A=+1,46mA B=-79mV, Rp/p=-0.43

6) Power specification at 1kW/m 2, AM 1, 5

7) Output cable: multi contact connectors

8) Construction:

     a) Front: High-transmission 32mm tempered glass

     b) Back: TPT

     c) Encapsulant: EVA

9) Frame: aluminum

10) Certification: CE, TUV

   

Feature

1. High cell efficiency with high quality crystal silicon materials.
2. Long-term stability and reliability.
3. High Transmission, Low Iron Tempered Glass enhanced stiffness and impact resistance
4. Unique Aluminum frame designed for easy Installation and durable requirement
5. Advanced cell encapsulation materials to offer efficient protection
6. Outstanding electrical performance under high temperature and low irradiance conditions
7. Anti-aging of the EVA(polyethylene - vinyl acetate), high-performance crystalline silicon solar cells, good Weather resistance TPT (fluoroplastics composite membrane) by pyramid ,good Weather resistance and anti-UV, hail, water-proof capacity.Images


Imagins

35 Watt Photovoltaic Poly Solar Panels

35 Watt Photovoltaic Poly Solar Panels



Specification

 

Type

CNBM Solar Polycrystalline Series II   (235W—245W)

Materials

Silicon

Size

Length

Width

Height

1640

992

40

Guarantee

12 yrs free from defects in materials and   workmanship

No less than 90% within 10yrs and no less   than 80% within 25yrs

TUV(IEC61215&IEC61730), CE, UL

Application

 Photovoltaic/solar/ green   energy/energy saving

Descriptions

1.High efficiency crystalline silicon solar   cell. Even if under the weak light, the solar module can produce maximum   power output.

2.Tempered glass (toughened glass):   Anti-reflecting coating and high transmission rate glass increase the power output   and mechanical strength of solar module.

3. EVA and TPT: Using high quality EVA and   TPT to prevent destroying and water.

4. AI frame: Without screw, rner   connection. 6 holes on the frame can be installed easily.

5. Junction box: Multi function junction   box with water proof.

6. Long lifetime: ≥25 years; Less power   decrease.

7. Good performance of preventing from   atrocious weather such as wind and hails.

8. Resisting moisture and etching   effectively, not effected by geology.

9. The certificate issued by international   authority: UL, TUV, IEC, CE.

 

Packaging Details:

26pcs/pallet, 28pallets/ 40HQ 

Our   solar panels are packed in cartons, and then pallet. 

Shipping by sea or by air are both ok, it up to customer’s chose.

We’d like to inquiry the freight cost for customer after be informed exact quantity and destination address.

 

FAQ

We have organized several common questions for our clients,may help you sincerely:

1). What’s price per watt?

A: It’s depends on the quantity, delivery date and payment terms of the order. We can talk further about the detail price issue. Our products is high quality with lower price level.

2). Can you tell me the parameter of your solar panels?

We have different series of cells with different power output, both from c-si to a-si. Please take our specification sheet for your reference.

3). How do you pack your products?

We have rich experience on how to pack the panels to make sure the safety on shipment when it arrives at the destination.

4). How long can we receive the product after purchase?

In the purchase of product within three working days, We will arrange the factory delivery as soon as possible. The perfect time of receiving is related to the state and position of customers. Commonly 7 to 10 working days can be served.


Q:Can solar panels be used in remote areas?
Yes, solar panels can be used in remote areas. Solar panels can harness energy from the sun to generate electricity, making them a suitable and sustainable option in areas where access to grid electricity is limited or nonexistent. Their ability to operate independently of traditional power sources makes solar panels a practical choice in remote locations, providing clean and reliable energy for various applications.
Q:Can solar panels be installed on oil or gas facilities?
Yes, solar panels can be installed on oil or gas facilities. Many oil and gas companies are now incorporating solar energy into their operations as a way to reduce their carbon footprint and increase their use of renewable energy sources. These solar panels can be installed on rooftops, open spaces, or even integrated into the infrastructure of the facilities.
Q:How do solar panels affect the property's overall cost savings?
Solar panels can significantly impact a property's overall cost savings by reducing or eliminating electricity bills. As solar panels generate electricity from sunlight, they offset the need for grid power, resulting in lower energy expenses. Additionally, excess energy can be sold back to the grid, further increasing savings. While the initial investment for solar panels may be high, the long-term financial benefits and potential tax incentives make them a worthwhile addition to any property.
Q:How can I determine the size of solar panel system I need?
To determine the size of the solar panel system you need, you should consider factors such as your energy consumption, available roof space, and geographical location. Start by analyzing your average monthly electricity usage to estimate the amount of energy your solar panels should produce. Next, assess your roof's orientation, tilt, and shading to make sure it can accommodate the necessary number of panels. Lastly, consider your location's sunlight hours and climate conditions, as they affect the efficiency and output of solar panels. Consulting with a professional solar installer can also help you accurately determine the size of the solar panel system you need.
Q:Okay, I think I understand what I'm doing, but I want to set up some solar panels on the roof of my garage, the building that gets the most sun, and I want to make sure all my math is correct in determining number of megawatts per year. However, my knowledge of electrical terms in quite n00bish, to say the least.Here is what I think I should be doing.The solar cells come at .75 Watts average power.I will install 4 panels of 64 cells each, with a total of 256 cells.
For comparison, 36 of these make a normal 2V x 50W panel. Note they are not tabbed. This means you have to find a way to connect them yourself. The tabs are probably spot welded on by the suppliers. A supplier below has kits of these with tabs, as needed to connect them together. These are not suitable for grid connect, because the higher voltage needed makes do it yourself panels a dangerous and litigious thing to have on your roof. Maybe you could buy a smaller pack from the link below to compare tabbed and untabbed and work out what to do. Your power calculation is a bit incorrect because the sun is only present some of the time. The 36 cell module would produce 50W when square on to the full sun. The sun may be out for around 2h a day in some places and times of the year. However it is the equivalent of 5h full sun, because of the changing angle throughout the day. Look this up on the internet for your region. Temperate zones may be a lot less. One pack in your link is 36x3 = 08 cells. Thus 50W per pack x 5h a day gives 750Wh per day and 274KWh/y. In reality it will always be less because of regions, weather, clouds, dust, inefficiencies, aging of cells.
Q:How do solar panels interact with the electrical grid?
Solar panels interact with the electrical grid through a process called net metering. When solar panels generate excess electricity, it is fed back into the grid, allowing homeowners or businesses to receive credits for the energy produced. During periods of low solar production, such as at night, electricity is drawn from the grid. This bidirectional flow of electricity enables solar panel owners to offset their energy consumption and contribute to the overall grid supply.
Q:Can solar panels be installed on a university campus or educational facility?
Yes, solar panels can be installed on a university campus or educational facility. In fact, many universities and educational institutions have already embraced solar energy as a sustainable and cost-effective solution for their energy needs. Installing solar panels not only reduces the environmental impact of the facility but also provides an opportunity for hands-on learning and research in renewable energy for students and faculty. Additionally, it can help save on energy costs and provide a reliable source of clean energy for the campus.
Q:Im fourteen and looking for a career I already know solar panels capture the sun and turn it into energy but i would like to know more.
A solar panel is a collection of solar cells (photovoltaic cells) connected together and put in an enclosure. The solar cells work by taking advantage of the photovoltaic effect. The effect is that in a semiconductor P-N junction, when photons of suitable energy strike the junction, an electron and electron-hole pair are generated. This creates a voltage difference between the two sides. When this voltage is applied to a circuit, the electrons are able to flow through, creating usable energy.
Q:The battery is 9ah and the solar panel is 20w
Yes, certainly. So long as the solar panel's voltage exceeds the voltage of the battery (which is probably going, certainly if it can be a discharged battery, which is lower than 2 volts), then it will recharge the battery. Additionally, a 2 V solar panel can produce bigger than 2 volts. Nevertheless, the rate of charging is more likely to be depdendent on the availabilty of daylight. And of course, the better the capcity of the battery, the longer it takes to cost.
Q:how efficient are flexible solar panels?
One I got about 3 years ago is about 50% as efficient as a glass panel I got about 0 years ago. Not exactly a scientific study, I know.

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