Goods high definition for Poly-crystalline Solar Panel 50W in Liberia
Short Description:
We have many excellent staff members good at marketing, QC, and dealing with kinds of troublesome problem in the production process for Goods high definition for Poly-crystalline Solar Panel 50W in Liberia, We welcome new and old customers from all walks of life to contact us for future business relationships and mutual success!
Poly-crystalline Solar Panel 50W
Technical parameter
Maximum Power(W) 50W
Optimum Power Voltage(Vmp) 18.43V
Optimum Operating Current(Imp) 2.71A
Open Circuit Voltage(Voc) 22.48V
Short Circuit Current(Isc) 2.98A
Mechanical Characteristics
Cell Type Poly-crystalline 156 x 52mm
No of Cell 36 (4x9pcs)
Dimensions 678x542x25mm
Weight 4.2Kg
Front Glass 3.5mm,High Transmission, Low Iron,Tempered Glass
Junction box IP65 Rated
Output Cable TUV 1×4.0mm2/UL12AWG,Length:900mm
Temperature and Coefficients
Operating Temperature(°C): -40°C ~ + 85°C
Maximum System Voltage: 600V(UL)/1000V(IEC) DC
Maximum Rated Current Series: 15A
Temperature Coefficients of Pmax: -0.47%
Temperature Coefficients of Voc: -0.389%
Temperature Coefficients of Isc: 0.057%
Nominal Operationg Cell Temperature (NOCT): 47+/-2°C
Materials of solar panel
1).Solar Cell——Poly-crystalline solar cell 156*52mm
2).Front Glass——-3.2mm, high transmission, low iron, tempered glass
3).EVA——-excellent anti-aging EVA
4).TPT——-TPT hot seal made of flame resistance
5).Frame——anodized aluminum profile
6).Junction Box——-IP65 rated, high quality, with diode protection
Superiority: high quality anodized aluminum frame, high efficiency long life, easy installation, strong wind resistance, strong hail resistance.
Features
1. High cell efficiency with quality silicon materials for long term output stability
2. Strictly quality control ensure the stability and reliability, totally 23 QC procedures
3. High transmittance low iron tempered glass with enhanced stiffness and impact resistance
4. Both Poly-crystalline and Mono-crystalline
5. Excellent performance in harsh weather
6. Outstanding electrical performance under high temperature and low irradiance
Quality assurance testing
Thermal cycling test
Thermal shock test
Thermal/Freezing and high humidity cycling test
Electrical isolation test
Hail impact test
Mechanical, wind and twist loading test
Salt mist test
Light and water-exposure test
Moist carbon dioxide/sulphur dioxide
How many solar panels and batteries do we need to connect with a 20KW solar system? How much backup will you get from it and how many appliances can it run? This video answers all your questions!
Solar Off-Grid Hybrid Inverter is a highly efficient Inverter having the solar priority on the system. The inverter is
designed to first charge through the panel and thereafter through grid if available. The low THD and low no-load current in the system help optimizing its performance
.
Do you want to know more about Off Grid Hybrid solar inverter watch this interesting video next- https://www.youtube.com/watch?v=D4fu3h45cn0&index=1&list=PLOkQAGxziu3QIAJ0nlwEyk2D3otg9t60u https://www.youtube.com/watch?v=Ib1EjDEV5eM&list=PLOkQAGxziu3QIAJ0nlwEyk2D3otg9t60u&index=3
To watch more videos on inverters, batteries, solar power and upcoming technologies subscribe to Su-Kam’s YouTube channel- https://www.youtube.com/user/SukamIndia
Check out our solar website to know interesting facts about solar inverter/batteries- http://sukam-solar.com/
To buy this product link on this link- http://sukam-solar.com/solar-power-conditioning-unit-pcu/
To download brochure of this product click here- http://sukam-solar.com/wp-content/uploads/Brainy-S-5-5kva-Static-Solar-Inverter-Brochure.pdf
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High efficiency silicon solar cells
Professor Andrés Cuevas has been awarded the 2015 Becquerel Prize for Outstanding Merits in Photovoltaics.
The award recognises his scientific merits in the development and characterisation of silicon solar cells, the most common type of solar cell technology.
Professor Cuevas is one of the pioneers in the development of bifacial silicon solar cells and he contributed significantly to the development of high-efficiency silicon solar cells. When he started in the field 40 years ago, Professor Cuevas said solar cells were so expensive people thought it was a technology that would never become mainstream. His drive to work in this field has always been the dream to provide energy to the world.
“I have tried to contribute to the field in a direct way that industry can use, that the whole of the research community can learn from,” he said. “Having access to this technology could change life so significantly for those 1.3 billion people around the world who have no electricity.”
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