N.E.T. TECHNOLOGIES

Innovative Gas Sensing. By constant research and innovation, N.E.T. has developed distinctive and unique technologies. Incorporated every day in our products, they enable exceptional benefits for our Customers.

Gas Sensor Solutions's image

INFRARED GAS TECHNOLOGY

• Non Dispersive Infrared (NDIR) gas sensing
• Dual wavelength, differential absorption technique
• Very gas-selective, low cross-sensitivity with interferent gases
• Corrosion-resistant and cannot be poisoned
• Fail-safe: events such as beam block or failed detectors or sources are revealed
• Requires no routine calibration

Gas Sensor Solutions's image

DYNAMIC GAS TECHNOLOGY

• Dependable detection accuracy over a full 0-100% volume range
• The sensor divides the 100% range in 3 different segments uses a different fitting curve for each one
• The set of coefficients for each range segment is individually determined for each sensor through the entire temperature range by an automated procedure

Gas Sensor Solutions's image

MICROPROCESSOR GAS TECHNOLOGY

• Sensors based on an ARM® Cortex®-M4 core platform with industry-leading low power
• High-level interface, with a standardized, linear output
• No need to process low-level signals and calculations
• Bidirectional communication via digital protocols allows changing of communication and calibration parameters
• Faster response time, with FW accelerator algorithm
• Enhanced dependability and fail-safe operation

Gas Sensor Solutions's image

BLACK BODY SOURCE TECHNOLOGY

• SF6, Ethylene and refrigerant gases have absorption bands in the spectrum of 8 to 10 µm.
• Our IREF series use a state-of-the-art MEMS-based IR source, featuring true Black Body radiation band.
• Black Body Sources emit in a wide wavelength range (2 to 14 μm)
• MEMS IR sources have superior speed and efficiency, smaller energy consumptions than filament lamps and excellent resistance against shocks and vibration

Gas Sensor Solutions's image

KATHAROMETER TECHNOLOGY

• Exceptional performance in detecting Hydrogen and Helium due to their high thermal conductivity.
• Measurement Ranges from ppm levels up to 100% volume, with the ability to operate in oxygen-free environments.
• Superior durability and resistance to poisoning.
• Enhanced resistance to mechanical shocks compared to traditional sensors thanks to advanced membrane-based technology.
• Delivers ultra-fast response times (< 1.4s) with low power consumption due to its pulsed waveform operation.