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Technology

Our innovative Chemical Vapor Deposition (CVD) variants, enable the formation of highly controlled polymer layers.

 

With our systems, we offer maximal versatility! From powders and liquids to solid objects we can coat anything; even temperature-sensitive materials.

 

The result is an ultrathin, fully functional, and topographically conformal thin film, ensuring precise surface coverage.​​​​ 

 

A key advantage of our approach is the preservation of functional groups, which sets it apart from conventional techniques such as Plasma-Enhanced CVD (PECVD), where such groups are often degraded. The exceptional chemical and morphological quality of these coatings makes them particularly well-suited for high-sensitivity applications, including microelectronics, semiconductor technology, and medical devices.

use cases

in many industries, as a high-performance alternative to PFAS materials, offering comparable functionality without the environmental and regulatory concerns associated with fluorinated compounds. The coating not only replaces conventional surface treatments but, in some cases, eliminates the need for entire material systems, streamlining both design and manufacturing processes. ​

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PFAS free

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Microelectronics

as a component in sensors, it provides protection against environmental influences, acids, and other corrosive substances. Additionally, we enable the precise coating of surfaces with electrets, ensuring stable charge retention and optimal functionality. This advanced technology enhances the durability and reliability of sensitive electronic components, making it an indispensable solution for high-performance applications.

for the smallest structures, such as capacitors and transistors, this technology offers highly adjustable dielectric layers. These layers can be tailored for use as functional elements in flexible electronics, as low- or high-k materials, or for advanced packaging solutions. The versatility of these layers ensures optimal performance across a wide range of applications, enhancing the efficiency and miniaturization of electronic devices.

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Semiconductors

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Med-Tech

for hydrophobization, enhancing antiviral properties, or creating tailor-made surfaces for cell growth. The process ensures exceptional cleanliness and precision, making it particularly suitable for highly sensitive applications in fields such as biotechnology and medical devices. Its versatility allows for optimized performance in diverse environments, contributing to both functionality and safety in critical use cases.

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