PET Double-Sided Solar Power Tape
Product Features

Good stability, can effectively, improve and deal with die cutting and bonding.

The high adhesion adhesive provides excellent adhesion to avariety of surfaces.
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Good resistance to temperature, thermal conductivity, insulation properties.

used for bonding and heat dissipation of LED strips,electronic components and other components.
product material

TECHNICAL Parameters
Key Specifications
Attribute |
Details |
Brand Name |
Fonitaniya |
Serial Number |
FON 10028 |
Total Thickness |
200 µm |
Back Material |
PET Film |
Adhesive Type |
Tackified Acrylic |
Temperature Resistance (Long-term) |
100 °C |
Temperature Resistance (Short-term) |
200 °C |
Weathering Resistance |
Very Good |
Adhesion to Aluminium (14 days) |
10.6 N/cm |
Adhesion to PVC (14 days) |
13 N/cm |
Fonitaniya™ 200μm PET Double-Sided Solar Power Tape
The FON-10028 tape offers a dual-sided adhesive solution crafted for the secure installation of solar panels and components. Designed to work with thin, ultralight photovoltaic modules, it is ideal for applications in wearables, vehicles, and building surfaces. With a thickness of 200 µm, this tape guarantees outstanding adhesion, reliability, and durability in the rigorous conditions of solar installations.
Its advanced temperature tolerance allows it to handle long-term exposure to 100°C and short-term peaks of 200°C. Additionally, superior UV and weather resistance make this tape a prime choice for outdoor use. Its ability to bond effectively with low-energy surfaces further extends its applicability across varied assembly needs.
Engineered for efficiency, the tape is easy to apply manually or in automated processes, ensuring smooth integration into solar systems. With excellent chemical and humidity resistance, it retains structural integrity and adhesion over time, even in challenging environments.

01
7 Jan 2019
●Securing flexible or semi-flexible photovoltaic panels onto building surfaces.

01
7 Jan 2019
●Enhancing solar integration in vehicles.

01
7 Jan 2019
●Attaching ultralight solar modules in wearable technology.