
The Future of Smart Surfaces
Discover Nanomade’s metal and transparent touch technologies at Touch Taiwan 2026.
Join us in Taipei to experience live demonstrations of our latest touch technologies.
Discover how metal and transparent surfaces can become fully interactive.
From 8 to 10 April – Booth L717 (4F)
Discover how metal and transparent surfaces can become fully interactive.
From 8 to 10 April – Booth L717 (4F)
Touch Metal – Seamless Interaction on Any Surface
Nanomade transforms any metal surface into an intuitive human-machine interface (HMI) by embedding advanced touch sensors directly into the material. This hardware-based solution enables fully invisible metal interfaces, eliminating the need for mechanical buttons or openings.
Thanks to integrated haptic feedback, the system delivers realistic tactile responses without mechanical parts, simplifying integration into embedded systems while enhancing user experience.
Customizable lighting effects can also be integrated to provide visual feedback through the material, reinforcing usability and premium product design.
Thanks to integrated haptic feedback, the system delivers realistic tactile responses without mechanical parts, simplifying integration into embedded systems while enhancing user experience.
Customizable lighting effects can also be integrated to provide visual feedback through the material, reinforcing usability and premium product design.
Advanced Touch Controls for Metal Headsets
The technology is optimized for compact and curved surfaces, making it ideal for modern audio, AR and VR headsets where space, comfort and precision are critical. Integrated haptic feedback provides clear tactile confirmation for every interaction, allowing users to navigate effortlessly in immersive or eyes-free environments.
In addition, dynamic lighting feedback can be embedded into the interface, enhancing usability and guiding interactions in low-visibility conditions while reinforcing the product’s premium identity. Without mechanical wear solution ensures long-term reliability and consistent performance in both consumer and professional applications.
In addition, dynamic lighting feedback can be embedded into the interface, enhancing usability and guiding interactions in low-visibility conditions while reinforcing the product’s premium identity. Without mechanical wear solution ensures long-term reliability and consistent performance in both consumer and professional applications.
Smart Touch Interfaces for Access Control Systems
Nanomade enables a new generation of rugged access control systems by embedding intuitive touch interfaces directly beneath metal surfaces. Designed for applications such as intercoms, keypads, and video door entry systems, this technology combines advanced functionality with a sleek, modern aesthetic. By integrating touch controls into premium materials like stainless steel or aluminum, manufacturers can create seamless, button-free designs that enhance durability while remaining easy to clean and maintain. The absence of mechanical parts reduces wear and ensures long-term reliability, even in high-traffic environments. Engineered for outdoor and demanding conditions, the solution performs consistently in the presence of humidity, temperature fluctuations, and frequent use. Integrated haptic feedback provides clear tactile confirmation for every interaction, while subtle backlighting improves visibility and guides users in all lighting conditions. Ideal for smart buildings, residential complexes, and commercial infrastructures, this approach simplifies product design, reduces maintenance requirements, and supports the development of secure, durable, and user-friendly access control solutions. duct design, reduces mechanical complexity, and supports the development of elegant, durable and user-friendly appliances.
Transparent Force & Touch – A World First in Interactive Surfaces
Nanomade in collaboration with PolyIC, introduces a breakthrough in human-machine interfaces with the world’s first technology combining force sensing and touch interaction on fully transparent surfaces. This innovation opens new possibilities for designing interactive glass without compromising visibility, clarity, or aesthetics.

Unlike traditional solutions, the technology enables both precise touch detection and force-based input, allowing users to interact with varying levels of pressure for more intuitive and advanced controls. This creates richer user experiences while maintaining a completely seamless and invisible interface.
Fully compatible with glass, displays, and transparent materials, the solution is ideal for applications where design and transparency are critical, such as retail displays, smart windows, control panels, and next-generation user interfaces.
Fully compatible with glass, displays, and transparent materials, the solution is ideal for applications where design and transparency are critical, such as retail displays, smart windows, control panels, and next-generation user interfaces.








