Electronics enclosures
Consider a conductive coating on a housing where a metallic solution is difficult to integrate. Treat seams, cable entries, apertures, and grounding as part of the enclosure design.
Protect a function or provide a useful indication
Start with the job of the equipment: keep interference out of an enclosure, preserve an optical path, or give a usable chemical indication.
Practical integration opportunities
Consider a conductive coating on a housing where a metallic solution is difficult to integrate. Treat seams, cable entries, apertures, and grounding as part of the enclosure design.
Explore laser-protection materials against defined wavelengths and exposures, while preserving the transmission, clarity, and field of view needed by the optical system.
Evaluate color-changing patches, wipes, or surfaces for a specified chemical substance. Define where the indication will be read, how quickly it is needed, and what action it should support.
These examples describe potential uses, not qualified platforms or performance claims. Each requires evaluation against the intended system and operating conditions.
Define a useful first evaluation
Electromagnetic / Conductive Coatings
Nanomaterial-enabled conductive coating approaches for electromagnetic interference management and electronics protection.
Explore EMI shieldingOptical / Visible & Near-infrared
Optical material approaches to protection from visible and near-infrared laser threats, evaluated against the needs of the intended application.
Explore Laser protectionChemical / Color-changing Materials
Material-based colorimetric approaches to chemical threat sensing, with potential formats including patches, wipes, sprays, and platform-integrated surfaces.
Explore Colorimetric sensingStart with the problem
Tell us what your system needs to do, the constraints it faces, and the evidence your team needs next.
Other application areas