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Unlike traditional rigid glass modules, this glass-free solar panel combines ultra-lightweight design (<1mm thickness) with exceptional flexibility, solving the efficiency bottleneck of conventional flexible modules while retaining their adaptability. Engineered for durability and performance, it’s an ideal choice for BIPV (Building Integrated Photovoltaics), wearable devices, and extreme environments—delivering consistent power with an annual degradation rate of less than 0.25% and a 30-year service life. Whether you’re integrating solar into building facades or powering portable tech, this bendable solar panel merges efficiency, aesthetics, and practicality.

Leverages HJT solar cell technology to compensate for traditional flexible modules’ low efficiency, ensuring maximum energy conversion even in low-light conditions.
Low temperature coefficient paired with flexible packaging technology guarantees stable performance in high-temperature or large temperature difference environments (e.g., deserts, vehicles).
PID-free solar module construction eliminates potential induced degradation risks, enhancing long-term reliability.
Glass-free structure reduces breakage during transportation and installation, making it safer than rigid glass panels.
70% lighter than glass modules with a thickness of ≤4mm, significantly reducing logistic and installation burdens.
Lightweight solar panel design enables bracket-free mounting, saving time and labor costs.
Ribbon-free, all-black finish with no veiling glare, blending seamlessly with building curtain walls and vehicle sunroofs.
Customizable in color and transparency to meet unique architectural or design requirements.
Advanced shingling technology stringing and sealing techniques ensure UV resistance and water resistance.
Impact-resistant glass fiber layer enhances durability against harsh outdoor conditions.
Installs quickly with foam rubber tape, no complex brackets required—saving over 50% on installation costs.
Lightweight and thin design cuts logistic costs by more than 30% compared to glass modules.
Parameter | HMN-100W | HMN-200W | HMN-300W |
Maximum Power (Pmax) | 100W | 200W | 300W |
Cell Technology | HJT Solar Cell | HJT Solar Cell | HJT Solar Cell |
Thickness | ≤4mm | ≤4mm | ≤4mm |
Weight | 70% lighter than glass modules | 70% lighter than glass modules | 70% lighter than glass modules |
Flexibility | Bendable | Bendable | Bendable |
Surface Material | Transparent ETFE Film | Transparent ETFE Film | Transparent ETFE Film |
Sealing Film | Special EVA Film | Special EVA Film | Special EVA Film |
Backsheet | TPT Backsheet | TPT Backsheet | TPT Backsheet |
Annual Degradation Rate | <0.25% | <0.25% | <0.25% |
Service Life | Up to 30 years | Up to 30 years | Up to 30 years |
Operating Temperature | -10°C~70°C | -10°C~70°C | -10°C~70°C |
PID Resistance | High | High | High |
Seamlessly integrates with curtain walls, rooftops, and facades—enhancing architectural aesthetics while generating clean energy.
Flexible and lightweight design powers portable electronics, smart wearables, and outdoor gear without adding bulk.
Ideal for car sunroofs, RVs, and electric vehicles—provides supplementary power and withstands temperature fluctuations.
Stable performance in high heat and large temperature differences makes it perfect for off-grid desert installations.
Supports remote cabins, campsites, and rural areas with reliable, low-maintenance power.
It has a service life of up to 30 years with an annual degradation rate of less than 0.25%, thanks to its HJT structure’s strong resistance to PID.
Yes. It offers customizable color and transparency, a ribbon-free all-black design, and no veiling glare, allowing seamless integration into building curtain walls, vehicle sunroofs, and BIPV projects.
Yes. The low temperature coefficient of HJT technology, combined with flexible packaging, ensures stable performance in high-temperature or large temperature difference environments (e.g., deserts, vehicles).
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