AUO offers exceptionally stable and highly reliable customized modules suitable for various environments and has improved field applications of solar power generation with additional diversity
In response to the government's target of achieving 20GW in PV by 2025 and market demand trending towards high-performance products, implementing a highly stable and reliable PV plant is the foremost consideration of every customer. Selecting the key component for "modules" is critical for PV plants. AUO's mono-crystalline modules with multi-busbar half-cut technology offer exceptional power generation performance that maintains stable operations for PV plants. Their high weather resistance is suitable for harsh environments and can satisfy customers' diverse project requirements. In response to the international trend of Nearly Zero Energy Buildings (nZEBs) and various renewable energy applications, AUO has developed PV modules that can be attached to or integrated into buildings. Additionally, module designs can be customized to effectively utilize the surface of the building facade and increase the diversity of field applications. Products include the vivid and aesthetic SunBello module, the flexible and lightweight SunCurva module, and the quick-and-easy-installed SunSteel module, all of which offer the 5 major benefits of aesthetics, energy, carbon reduction, thermal insulation, and easy installation.
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MBB HCC is next-gen technology that optimizes the design structure of solar batteries, allowing solar modules to maintain stable output performance over extended periods and enhance power generation performance and reliability.
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The solar cell utilizes multiple strands of copper wire to form shorter current paths and improve current collection efficiency; the round copper wires increase the amount of light incident to the battery compared to traditional flat copper ribbons.
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Integration with half cut battery cell reduces the impact of shading, minimizes the impacts in micro-cracks, and decreases loss due to resistance, further improving the module's power efficiency.
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The multi-busbar structure effectively decreases the impact of external force on batteries and restricts the scope of micro-cracks, preventing the exp