New opportunities through technology and innovation.
Mox Mems Sensor – MoxAi V5.0
The smallest and most selective gas sensor with AI that you have ever seen.
MoxAi V5.0 gas sensors offer you unlimited possibilities.
The latest Nanoz gas sensors can be integrated into watches, smartphones, and other products. Despite their compact design, our sensors offer four times the detection range of comparable models on the market.
New Sensor MoxAi V5.0
Thanks to its nanodesign with 4 sensors and 2 heating elements, it operates with the lowest power consumption, just 1/10 of comparable sensors. Its compact size measures only 2.8 mm in width, 2.8 mm in length, and 1.6 mm in height.
New technology: MOx with Ai
With more than four times the detection range, this sensor (E-Nose) is so selective that we were able to equip it with AI. This technology provides the foundation for new innovations.
New applications: MoxAi V5.0.
Thanks to the synergy between hardware and software, we are able to offer or develop new solutions that were previously, if at all, either cumbersome, expensive, or much larger for the use case. You can read more about this in the applications section below.
Application of MoxAi V5.0
Explore the limitless possibilities of Nanoz – versatile, innovative, and efficient.
Medical
New early detection of diseases through real-time breath gas analysis. Personal protection in the workplace.
Automotiv / Aviation / Greentech
New applications with E-Nose for e-batteries, from cars to containers, or in-car air quality.
Industrie 5.0
Measuring and controlling processes during emission, installation, and operation. Accuracy and speed help preserve the environment and resources.
Air Quality
Measure air quality correctly and accurately for monitoring quality and creating a healthier environment. Real-time measurement of metrology processes.
Food / Agriculture
Measure the gases during the cultivation and transport of food with our solutions, ensuring the best quality year after year. This increases yield and preserves the environment.
Our unique, self-developed deep learning AI is an innovative development process, combining cutting-edge technology and custom algorithms. These steps are tailored by us for each application to achieve the best results.
Answered briefly and technically – the questions we receive most often about NANOZ NZGS 2.
What makes NZGS 2 selective?
Two sensitive layers across four sensing elements, plus a triangular heater modulation. Each gas produces its own response pattern, which an AI assigns.
Which gases, and from what level?
14 gases and gas groups. The lowest limit of detection is 25 ppb for acetone; ethanol and formaldehyde follow at 30 ppb.
Why does electrolyte vapour matter?
Because it buys warning time. Hydrogen-only sensors report thermal runaway at stage 3, the venting event – NZGS 2 already detects stage 2.
What damages the sensor permanently?
Silicone compounds. They poison the SnO₂ layer irreversibly; sensitivity cannot be restored afterwards.