• Sunpower Solar Cells for Sale - PV Solar Energy Panel Mono TÜV with IEC61215 System 1
Sunpower Solar Cells for Sale - PV Solar Energy Panel Mono TÜV with IEC61215

Sunpower Solar Cells for Sale - PV Solar Energy Panel Mono TÜV with IEC61215

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Loading Port:
China main port
Payment Terms:
TT or LC
Min Order Qty:
500000 pc
Supply Capability:
100000 pc/month

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Specifications

1.withstand high wind pressure and snow load.

2.with IEC61215/61730, TUV, CE, ISO

3.high conversion efficiency

ITEM NO.NBJ-180 M
Maximum Power (W)180
Optimum Power Voltage (V mp)36.9
Optimum Operating Current (I mp): 4.88
Open Circuit Voltage (Voc)44.3
Short Circuit Current (ISC)5.22
Cell Efficiency (%)16.50%
Module Efficiency (%)14.10%
FF (%)70-76%
Warranty90% of 10 years, 80% of 25 years.
Standard Test ConditionsAM1.5 1000W/m2 25 +/-2°C
Bypass Diode Rating (A)12
Cable & Connector TypePass the TUV Certificate
Brand Name of Solar Cells----Cell
Size of Module (mm)1580*808*35
Solar Cell125*125 Mono
Backing (Material)TPT
Frame (Material Corners, etc.)Aluminum-alloy
Number of Cell (PCS)6*12
N/W(KG)15.5
Junction Box TypePass the TUV Certificate
Tolerance Wattage (e.g. + /-5%)±3%
Front Glass Thickness (mm)3.2
Surface Maximum Load Capacity5400Pa
Allowable Hail Load23m/s, 7.53g
Packing1*20' GP276pcs
1*40' GP644pcs
Temperature Coefficients of ISC(%)°C: 0.04
Temperature Coefficients of Voc(%)°C: -0.38
Temperature Coefficients of Pm(%)°C: -0.47
Temperature Coefficients of IM(%)°C: 0.04
Temperature Coefficients of VM(%)°C: -0.38
Temperature Range -40°C to +85°C

TUV, IEC, CE Certified photovoltaic /pv solar energy panel

 

Description:

1.high conversion efficiency

2.sealed with high transparency low-iron tempered glass, anti-aging EVA, high insulation TPT.

3.withstand high wind pressure and snow load.

4.with IEC61215/61730, TUV, CE, ISO

 

Warranty:

1) 5 years for material & workmanship;

2) 12 years for 90% power output;

3) 25 years for 80% power output.

* MOQ: 50pcs

* Delivery Time: 10-20 days after order confirmation

* Package: Wooden carton or pallet packing

 

Photovoltaic energy conversion is the key to electricity generation by solar panels.  This takes place when photons with sufficient energy excite charge carriers to higher energy levels.  The built-in asymmetry of the solar cells separates the carriers both in space and energy. The number of charge carriers collected at the external terminals determines the net current produced by the solar cell. The energy differences maintained between the charge carriers when extracted at the external terminals is converted to electrical voltage. The photovoltaic process is shown below:

PV Solar Energy Panel Mono TUV with IEC61215

As listed above, the power generation of the solar cell happens in three steps—photo generation of charge carriers, separation of charge carriers, and transport of the charge carriers from the point of generation to the external electrical connections—and all three steps must be performed well to produce an efficient solar cell.

The efficiency of a solar cell is defined as the ratio between the output of electrical power and the available power of the light falling onto the module.  More commonly, this is referred to as the conversion efficiency of the solar cell.  This is measured under a well-defined set of standard testing conditions.  The reason for this standardised testing is that efficiency is a key metric for the solar industry, and that both producers and researchers need to be able to compare efficiencies obtained using different technologies.  Modules are traded on efficiency ($/kWh), not number of units.  The efficiency of a module depends heavily on the quality of the material used in manufacturing, which means it may make economic sense to invest more in materials and processes higher in the value chain if they significantly increase efficiency.  Below typical solar cell characteristics are shown:

 PV Solar Energy Panel Mono TUV with IEC61215

Solar cells convert light energy into electrical energy either indirectly by first converting it into heat, or through a direct process known as the photovoltaic effect. The most common types of solar cells are based on the photovoltaic effect, which occurs when light falling on a two-layer semiconductor material produces a potential difference, or voltage, between the two layers. The voltage produced in the cell is capable of driving a current through an external electrical circuit that can be utilized to power electrical devices. This tutorial explores the basic concepts behind solar cell operation.

Q: What is the impact of hurricane-force winds on solar cell efficiency?
The impact of hurricane-force winds on solar cell efficiency can be significant. These strong winds can cause physical damage to solar panels, such as breaking or dislodging them from their mounts. This not only affects the overall functionality of the solar system but can also lead to a decrease in energy generation. Additionally, high winds can result in the accumulation of dust, dirt, or debris on the surface of the solar panels, reducing their ability to absorb sunlight and convert it into electricity. Therefore, it is crucial to ensure proper installation and maintenance of solar systems in hurricane-prone areas to minimize the negative impact on efficiency.
Q: Can solar cells be used for powering medical devices?
Yes, solar cells can be used for powering medical devices. Solar cells convert sunlight into electricity, which can be harnessed to provide power to various devices including medical equipment. This is particularly useful in remote areas or during emergencies where access to traditional power sources may be limited or unavailable. Additionally, solar-powered medical devices can be more sustainable and cost-effective in the long run.
Q: Are solar cells affected by pollution?
Yes, solar cells can be affected by pollution. Air pollution, such as smog and particulate matter, can reduce the efficiency of solar cells by blocking sunlight and reducing the amount of light that reaches the cells. Additionally, pollutants can settle on the surface of solar panels, creating a layer that reduces their ability to generate electricity.
Q: Can solar cells be used in public infrastructure projects?
Yes, solar cells can be used in public infrastructure projects. Solar cells can be integrated into various infrastructure elements such as street lights, bus stops, parking meters, and even road surfaces to generate electricity from sunlight. This sustainable energy source can help reduce reliance on traditional power grids, lower carbon emissions, and promote renewable energy use in public spaces.
Q: Can solar cells be used for powering remote weather stations?
Yes, solar cells can be used for powering remote weather stations. Solar cells convert sunlight into electricity, providing a sustainable and reliable source of power for remote locations where access to the grid may be limited or non-existent. This makes solar cells an ideal solution for weather stations that require continuous power supply in remote areas.
Q: Can solar cells be used for large-scale power generation?
Yes, solar cells can be used for large-scale power generation. Advances in technology and economies of scale have made solar power increasingly cost-effective and efficient. Large solar arrays, known as solar farms, are capable of generating significant amounts of electricity to meet the energy demands of cities and even entire regions. Additionally, solar power is a clean and renewable energy source, making it an attractive option for reducing greenhouse gas emissions and mitigating climate change.
Q: How do solar cells perform in areas with high humidity and saltwater exposure?
Solar cells can still perform well in areas with high humidity and saltwater exposure, although their efficiency may be slightly reduced. The moisture in the air and the saltwater can create a thin layer of corrosion on the surface of the solar cells, which can hinder their performance over time. However, advancements in solar cell technology, such as improved coatings and materials, have made them more resilient to these conditions. Regular cleaning and maintenance can also help mitigate the effects of humidity and saltwater exposure on solar cell performance.
Q: What are the short-circuit currents of solar cells affected by the factors?
The size of the suede, the uniformity, the depth of diffusion, the film thickness of the PECVD, the printing condition of the screen and the sintering conditions,
Q: How are solar cells used in military applications?
Solar cells are used in military applications to power various equipment and devices in the field, such as communication systems, surveillance equipment, and remote sensors. They provide a reliable and sustainable source of energy, reducing the need for traditional fuel-based generators and minimizing logistical challenges. Additionally, solar cells can be integrated into portable and lightweight systems, enabling soldiers to operate efficiently in remote areas or during extended missions.
Q: Is the Solar Power Photovoltaic Cells the same as PV cells modules?
Yes, they are exactly the same thing, PV is short for Photovoltaic Voltage. Usually the expert will just use the word PV for most of the time.
Our company is a High-tech enterprise, who is professional on manufacturing on solar photovoltaic products. We mainly produce the solar module and system. Our annual production capacity of solar module is 50MW.Meanwhile,we also undertake the design, installation and serviceonbothon-grid & off-grid system for home and power plant.

1. Manufacturer Overview

Location Zhejiang,China (Mainland)
Year Established 2006
Annual Output Value Above US$100 Million
Main Markets North America 2.90%
South America 25.60%
Eastern Europe 4.83%
Southeast Asia 9.18%
Africa 1.16%
Mid East 2.90%
Western Europe 19.81%
Central America 2.41%
Northern Europe 9.95%
Southern Europe 8.21%
South Asia 0.97%
Domestic Market 12.08%
Company Certifications ISO 9001:2008

2. Manufacturer Certificates

a) Certification Name  
Range  
Reference  
Validity Period  

3. Manufacturer Capability

a) Trade Capacity
Nearest Port Rotterdam,Hamburg
Export Percentage 81% - 90%
No.of Employees in Trade Department 6-10 People
Language Spoken: English, Chinese, Japanese, German, French
b) Factory Information
Factory Size: 3,000-5,000 square meters
No. of Production Lines 5
Contract Manufacturing OEM Service Offered Design Service Offered Buyer Label Offered
Product Price Range Low and/or Average

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