The G16 Diaphragm Pmax 0.5 Bar Gas Meter provides highly accurate and dependable measurement for very high-volume gas consumption in large commercial, industrial, and multi-residential applications. Engineered to operate efficiently at pressures up to 0.5 bar, it delivers stable and precise readings even under demanding conditions. Its robust diaphragm mechanism and corrosion-resistant construction ensure long-term durability with minimal maintenance. Designed for easy installation and smooth integration into advanced monitoring systems, the G16 meter offers consistent accuracy, reliable performance, and efficient gas management for large-scale, high-demand operations.
The G16 Diaphragm Pmax 0.5 Bar Gas Meter provides highly accurate and reliable measurement for very high-volume gas consumption in large commercial, industrial, and multi-residential applications. Engineered to operate efficiently at pressures up to 0.5 bar, it delivers stable and precise readings even under demanding conditions. Its robust diaphragm mechanism and corrosion-resistant construction ensure long-term durability with minimal maintenance. Designed for easy installation and smooth integration into advanced monitoring systems, the G16 meter offers consistent accuracy, reliable performance, and efficient gas management for high-demand, large-scale operations.
Model |
G16 Diaphragm |
Type |
Mechanical Gas Meter |
Pressure Rating |
0.5 Bar |
Application |
Large Residential, Commercial & Industrial |
Material |
Corrosion-Resistant Steel & Engineering Plastic |
Display |
Mechanical Counter |
Special Features |
Very High Capacity Measurement, Pressure Tolerance up to 0.5 Bar, Accurate Reading, Long Service Life, Easy Installation |
Brand |
SmartZEN |
"Handles very high-volume gas efficiently. Installation was simple and readings are consistently accurate."
"Perfect for our large industrial setup. Reliable, durable, and accurate for very high-volume gas monitoring."
"Reliable performance for very high-demand environments. Excellent build quality and consistent readings."