Trina Solar 575W Vertex monocrystalline panel, 132 cells

Trina Solar
TSM-575W-DE19R
Solar PV Panels

Important Notice: We deliver orders of a pallet or more directly from our warehouse. For orders of less than a pallet, please arrange for collection.


575W Vertex monocrystalline panel

High customer value in solar energy can be achieved through a combination of factors such as a low Levelized Cost of Energy (LCOE), reduced Balance of System (BOS) costs, and a shorter payback time. Additionally, having a low guaranteed first year and annual degradation, compatibility with existing mainstream system components, and a higher return on investment can also contribute to high customer value.

High power solar panels, with power ratings up to 575W, can provide significant energy output for a solar energy system. These panels are designed to maximize energy production and provide a higher return on investment for the system.

Up to 21.5% module efficiency can be achieved with high density interconnect technology. This technology improves the overall efficiency of the solar panel by reducing the resistance in the electrical connections between the individual solar cells.

Multi-busbar technology is also used to improve the performance of high power solar panels. This technology uses multiple electrical connections within the panel to improve the light trapping effect, reduce series resistance and improve current collection. This results in a higher energy output and improved performance of the solar panel overall.

These features of high power solar panels with high module efficiency, and multi-busbar technology, provide an ideal solution for large-scale solar energy projects, where high energy output is a priority and a high return on investment is desired.

Minimized micro-cracks with innovative non-destructive cutting technology
Micro-cracks in solar cells can lead to a decrease in the efficiency and lifespan of the solar panel. In South Africa, where temperatures can reach high levels, it is important to use innovative non-destructive cutting technology to minimize micro-cracks, ensuring that the panels will perform at optimal levels for a longer period of time. This technology helps the panel to withstand the high temperatures and maintain their performance over time.

Ensured PID resistance through cell process and module material control
Potential Induced Degradation (PID) is a phenomenon that occurs when stray current affects the performance of the solar panel, resulting in a decrease in efficiency and lifespan. In South Africa, where the humidity can be high, it is important to use cell process and module material control to ensure PID resistance. By controlling the materials and processes used to produce the solar cells and modules, PID resistance can be ensured, resulting in a more reliable solar panel.

Mechanical performance up to 5400 Pa positive load and 2400 Pa negative load
In South Africa, the solar panels are exposed to strong winds and heavy rain. It is important that the solar panels can withstand high wind loads and snow loads without any damage. High-reliability solar panels are designed to withstand mechanical performance up to 5400 Pa positive load and 2400 Pa negative load, ensuring that they will perform at optimal levels even in harsh weather conditions.

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Trina Solar 575W Vertex monocrystalline panel, 132 cells
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