Trina Honey M TSM – 375DE08M.08(II)


The Trina Honey M TSM – 375DE08M.08(II) is a monocrystalline solar panel manufactured by Trina Solar. The panel has a maximum power output of 375 watts and is designed to operate at a voltage of 37.5 volts.

SKU: trina-honey-m-tsm-375de08m-08ii Category: Tags: , ,


Trina Honey M TSM – 375DE08M.08(II) solar module
120 cells, 375 Wp nominal output, framed Monocrystalline High Power Solar module

Increased power generation with MBB & half-cut technologies
This Honey M product adopts multi-bus bar technology, which can shorten the current conduction distance by more than 50% and thus lower the internal ribbon resistance loss. With finer and narrower bus bars, more sunlight will be reflected back to the round ribbon, thus increasing energy efficiency. The unique circuit design of half-cut cells can reduce power loss to 1/4 compared to full cells, which results in a decrease of electrical resistance within the ribbon and finally improves the overall module efficiency by more than 2%.

Reduced LCOE by improved performance
The Honey M module is compatible with all major balance of system components and module electronics. The half-cut cell design allows it to work at lower temperatures, which improves energy generation per watt. And the unique cell string design makes each cell string work independently, which can significantly reduce the energy loss due to mismatch caused by inter-row shading.

High Reliability
The Honey M module is one of the industry’s most trusted modules. With stronger resistance against hotspots and excessive temperature, half-cut cells can improve module reliability. The application of multi-bus bar cells results in more uniform loads to prevent stress, resulting in better performance even in case of slight cracking.
Ensured PID resistance through cell process and module material control
Resistant to salt, acid and ammonia
Mechanical performance up to 5400 Pa positive load and 2400 Pa negative load

Mechanical Data:

  • 120 monocrystalline cells (6 × 20)
  • Module Dimensions: 1763×1040×30 mm
  • Frame: 35 mm Anodized Aluminium Alloy
  • Weight: 20,0 kg
  • Modules per packing box: 31 pieces
  • Glass: 3.2 mm, High Transmission, AR Coated, Heat Strengthened Glass
  • Encapsulant Material: EVA / POE
  • Backsheet: White
  • J-Box: IP68 rated
  • Cables: Photovoltaic Technology Cable 4.0mm2, L-120cm (for landscape layout)
  • MC4 EVO2 connectors
  • Warranty: 12-year manufacturer guarantee; 25-year Power Warranty

1 review for Trina Honey M TSM – 375DE08M.08(II)

  1. Gabrielle

    In the realm of renewable energy solutions, Trina Honey M TSM – 375DE08M.08(II) stands out as a game-changer in its class. Priced at a mere 156, this product presents an exceptional opportunity for individuals and businesses alike to revolutionize their energy consumption habits without breaking the bank. While amateur users may view it as a simple solar panel, professionals recognize its potential as a critical component in larger-scale projects aimed at reducing carbon footprints and promoting sustainability. With melancholic undertones, we cannot help but feel nostalgic for a future where such technologies were not only accessible but widely adopted. Today’s news of Costco’s subscription-based success and global growth potential serve as a testament to the growing demand for innovative solutions that cater to both environmental concerns and financial feasibility. Trina Honey M TSM – 375DE08M.08(II) is undoubtedly a product worth considering in this regard, making it an excellent investment opportunity for those who prioritize sustainability while seeking solid returns on their capital.

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Frequently Asked Questions:

How do I determine the optimal angle for installing my Trina Honey M TSM - 375DE08M.08(II) solar panels in order to maximize their output?

To determine the optimal angle for your Trina Honey M TSM - 375DE08M. II) solar panels, you should consider the following factors:

1. Latitude: The latitude of the installation location is a crucial factor in determining the optimal angle. At higher latitudes (closer to the poles), the sun is lower in the sky during winter months, while at lower latitudes (nearer the equator), the sun is more directly overhead year-round. As a result, panels installed at a steeper angle will receive more direct sunlight during winter months at higher latitudes, whereas at lower latitudes, a flatter angle may be optimal to prevent overexposure and potential damage in the hotter summer months. Season: The angle of the sun changes throughout the year. In general, panels installed at a steeper angle will receive more direct sunlight during winter months, whereas during summer months, a lower angle may be more appropriate to prevent overheating and potential damage to the panels. Shading: Consider whether there are any nearby obstructions such as trees or buildings that could shade the panels during certain times of day or seasons. If so, it may be necessary to adjust the angle to mitigate shading. Roof orientation: If your roof is not oriented due north, consider how this will affect the angle of the sun throughout the year. Panels installed at a steeper angle on an east-facing or west-facing roof may be better suited for winter months, while those on a south-facing roof could benefit from a flatter angle to prevent overexposure during summer months. To maximize the output of your Trina Honey M TSM - 375DE08M. II) solar panels, it's recommended that you consult with a professional installer who can provide site-specific recommendations based on your location and specific installation circumstances. They will be able to perform a shading analysis, consider the roof orientation, and help you determine an optimal angle for maximum performance.

How do I properly install and connect the Trina Honey M TSM - 375DE08M.08(II) solar panels in a residential off-grid system?

To properly install and connect the Trina Honey M TSM - 375DE08M. II) solar panels in a residential off-grid system, follow these steps:
1. Firstly, make sure you have all the necessary equipment, including mounting hardware, wiring connectors, and an appropriate charge controller. Choose a suitable location for your solar panels that receives maximum sunlight exposure. Make sure to adhere to local building codes and safety guidelines while installing the panels on the roof or ground. Securely fasten each panel onto the mounting racks with the provided hardware, ensuring they are level and properly aligned. Connect the positive (red) wires of each solar panel to the corresponding positive bus bar on your charge controller using MC4 connectors. Repeat this process for the negative (black) wires. Attach the charge controller's output leads to a deep-cycle battery bank, ensuring proper polarity. Connect the load center to the battery bank via an AC distribution panel that is rated appropriately for your specific power needs. Finally, test your system to ensure it is functioning properly by monitoring voltage levels and checking for any electrical faults or issues with charging. Adjust settings on the charge controller as necessary to optimize performance based on local solar irradiance conditions. Regularly inspect and maintain your off-grid system to keep it running efficiently and safely over time, including cleaning the panels to minimize shading and debris accumulation.

How do I properly install and connect the Trina Honey M TSM - 375DE08M.08(II) solar panels for maximum efficiency and safety?

Before installing the Trina Honey M TSM - 375DE08M. II) solar panels, make sure you have a suitable roof structure that can support their weight. Check the manufacturer's specifications for the maximum load per panel and ensure your roof can handle it. Clean the roof surface thoroughly to remove any dirt, debris, or contaminants that may impede panel performance or safety. Use water and mild soap only, and avoid using harsh chemicals or abrasive materials. Follow local electrical codes and requirements for connecting solar panels to your electrical system. This may involve installing a battery backup or inverter, as well as obtaining permits and inspections from your local authorities. Consult a licensed electrician if you're unsure about any of these steps. Install the solar panels using the recommended mounting hardware provided by Trina Solar. Follow the manufacturer's instructions carefully to ensure proper alignment, spacing, and angle for optimal efficiency. Use appropriate safety equipment, such as fall protection and ladder stabilizers, to prevent accidents during installation. Connect the wiring between the solar panels and the electrical system using compatible connectors and cables. Make sure all connections are secure and properly labeled. Follow the manufacturer's instructions for connecting your specific model of Trina Honey M TSM - 375DE08M. II) solar panel to ensure safe operation. Test the solar panels using a multimeter or other diagnostic tool to verify they are generating power and meeting their rated output. Make any necessary adjustments or troubleshooting as needed to achieve maximum efficiency. Regularly monitor the solar panels for signs of wear, damage, or malfunction. Address any issues promptly to prevent further damage and maintain safety. Consider implementing a maintenance plan that includes regular cleaning, inspection, and repair as recommended by Trina Solar or your local authorities. Finally, make sure you have a clear understanding of the warranty terms and conditions for your Trina Honey M TSM - 375DE08M. II) solar panels. Follow these guidelines carefully to ensure you can take advantage of any warranties or guarantees that may be available. Consult the manufacturer's website or a licensed professional for more information on warranty terms and conditions. By following these steps, you can install and connect your Trina Honey M TSM - 375DE08M. II) solar panels safely and efficiently, while maximizing their potential output and minimizing any risks or hazards associated with solar panel installation.

How do I properly install and connect my Trina Honey M TSM - 375DE08M.08(II) solar panels to a power system for maximum efficiency and safety?

To ensure maximum efficiency and safety when installing and connecting your Trina Honey M TSM - 375DE08M. II) solar panels, please follow these steps:

1. Before installation, make sure to read the user manual carefully and familiarize yourself with all the necessary safety precautions and installation guidelines. Choose a suitable location for your solar panels that receives plenty of sunlight throughout the day. The panels should be installed at an angle between 20-30 degrees from the horizontal plane, depending on your latitude. Use high-quality mounting hardware to securely fasten the panels to a sturdy and level surface. Make sure to follow the manufacturer's recommendations for mounting height and spacing between panels. Connect the positive (+) and negative (-) terminals of each panel using MC4 connectors, following the polarity indicated in the user manual. Use appropriate wire gauge and length to ensure low voltage drop over long runs. Install a combiner box or junction box to combine the output from multiple panels into a single circuit for easier management and monitoring. Make sure to use compatible connectors and wiring methods according to the manufacturer's instructions. Connect the combined output of your solar panels to a power inverter, battery bank, and load (such as appliances or electrical grid) using appropriate cables and connectors. Follow the manufacturer's instructions for correct polarity, voltage, and current ratings. Install a circuit breaker or disconnect switch near the combiner box to provide safe and easy access to shut off power in case of emergencies or maintenance needs. Regularly monitor and maintain your solar system to ensure optimal performance and safety. Clean the panels regularly, check connections for loose or corroded terminals, and inspect wiring for any signs of damage or wear. By following these steps, you can ensure that your Trina Honey M TSM - 375DE08M. II) solar panels are installed and connected safely and efficiently, providing maximum power output and minimizing risks associated with electrical hazards or system failures.

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