All six product lines are manufactured using our wet-laid nonwoven technology — the same paper-derived process, applied to carbon, aerogel, silica, polymer, and aluminum-coated fibers to create materials engineered for electrical, thermal, and structural high-performance applications.
High-end thermal insulation paper based on silica aerogel — approximately 90% inorganic and classified UL94 V0. At just 1–3 mm per layer, aero365 delivers a thermal conductivity below 25 mW/mK, making it one of the few materials that fits within the tight packaging constraints of modern battery modules and heat shields.
Wet-laid papers and nonwovens based on carbon fibers — virgin and recycled. The homogeneous fiber distribution unique to wet-laid processing delivers consistent electrical properties across the entire sheet, critical for electrochemical and shielding applications.
A carbon fiber wet-laid nonwoven with tailored electrical resistivity — designed to convert electrical energy into homogeneous infrared heat across the entire surface area. No hot spots, no moving parts, no maintenance. From caravan low-voltage applications to mains-powered floor and ceiling heating.
A lightweight silicate fiber paper based on quartz fibers and silica gel fibers — two applications in one material. At the thermal extreme, it outperforms E-glass where conventional fibers have already failed. In electronics, its very low dielectric constant makes it the substrate material of choice for 5G antenna systems, radomes, and high-frequency PCBs.
Wet-laid papers and nonwovens from high-performance polymer fibers — PEEK, polyimide, and aramid. Electrically insulating, lightweight, and dimensionally stable at continuous temperatures up to ~300–350 °C, where commodity plastics have already failed. Available at ultra-low areal weights from 8 gsm.
Wet-laid nonwovens based on aluminum-coated Alucoat® glass or basalt fibers. The aluminum coating delivers metal-like electrical conductivity and EMI shielding up to ~20 dB (single layer, 0–2700 MHz), while the mineral substrate provides high tensile strength and dimensional stability at areal weights from 35 gsm.
| Your requirement | Product | Key spec |
|---|---|---|
| Thermal insulation in very confined spaces — battery cells, heat shields, cryogenics | aero365 | <25 mW/mK · 1–3 mm · UL94 V0 |
| Electrical conductivity — gas diffusion layer, electrode, EMI shielding (carbon) | carbon365 | 2–10 Ohm/sq · 10–150 gsm |
| Electric surface heating — floor, wall, ceiling, mobile, composite | thermo365 | 12–220 V · 10–2000 W/m² |
| High-temperature stability above 700 °C or low dielectric constant — 5G, PCB, radomes, turbines | silica365 | 1150 °C · very low ε · non-combustible |
| Electrical insulation with high thermal stability — motors, transformers, battery, aerospace | poly365 | ~300–350 °C · 8–20 gsm · insulating |
| EMI shielding or ESD — electronics, automotive, military, industrial laminates | alucoat365 | ~20 dB · 35–150 gsm · Al-coated mineral |
| Custom material — specific areal weight, fiber blend, or coating | Custom Development | Contact us to discuss |
Tell us about your challenge. We'll identify the right product — or develop a new one together.
Let's Create Something New →