Big Discount Mono-Crystalline 60W Solar Panel to San Diego
Short Description:
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Mono-Crystalline 60W Solar Panel
Technical parameter
Maximum Power(W) 60W
Optimum Power Voltage(Vmp) 18.46V
Optimum Operating Current(Imp) 3.25A
Open Circuit Voltage(Voc) 22.51V
Short Circuit Current(Isc) 3.57A
Mechanical Characteristics
Cell Type Mono-crystalline 125 x 83mm
No of Cell 36 (4x9pcs)
Dimensions 821x554x35mm
Weight 5.0Kg
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——Mono-crystalline solar cell 125*83mm
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
We are using Phoenix Contact controllers, sensors, and other equipment to implement a hybrid method of sun tracking for solar panels.
Situation after the last video:
We had nanoLC-based closed loop control of our Lutron motors working using accelerometers. We had basic ideas for our control software and solar panel frames figured out. We also received more Phoenix Contact equipment that we needed to progress with our project.
Focal points of this video:
We have built the frames that will be used to hold the small solar panels for the demo of our tracking system. Since we are using 2 nanoLC’s that need to communicate from separate locations, we needed a way to overcome the limitations of the nanoLC ethernet modules. We did this by creating a Java application to serve as the Modbus Master for the nanoLC Modbus slaves, which enabled us to transfer values between the 2 nanoLC’s. In addition to this, we also have completed a detailed outline of our control system software.
Next steps:
Next, we will be programming our control system software into our main control nanoLC. We will be finalizing the frames that will hold our small solar panels for our tracking system demonstration. We will also be fine-tuning our Java application for nanoLC intercommunication. Finally, we will be putting together all of the pieces of our system to show a full demonstration of our solar panel sun tracking system.
Installation solaire réalisée par l’équipe de IDS Énergie à l’été 2015 à Saint-Côme.
L’installation est complètement indépendante et est composée de 15 panneaux solaires 295w sur un pointeur automatique à deux axes IDS Énergie. Ce système comprends 24 batteries TROJAN 6v, un contrôleur de charge Midnite de 96 ampères ainsi que deux onduleur/chargeur Magnum MS 4448PAE.
Merci à M. Pascal Gaudet pour sa collaboration et sa confiance envers IDS Énergie!