Each laboratory faces the task of obtaining a high-quality and reliable work result. This result would be impossible without the use of precise measuring instruments to control research parameters such as pressure, temperature, humidity, concentration, flow rate, and many others.
Flow rate is the least frequently measured parameter for laboratory applications. Even more rarely is the flow of gas, rather than liquid, measured. In this regard, there are relatively few laboratory gas flow meters. The requirements for such flow meters are quite high:
• High accuracy;
• Ability to measure flow "from zero";
• Small connection diameters;
• Compact size;
• Ability to record readings in the device memory;
• Operation with various gases and/or gas mixtures.
Whether it is Air, Oxygen (O2), Carbon Dioxide (CO2), Nitrogen (N2), Argon (Ar), or a mixture based on them – one of the best laboratory solutions for measuring the flow of these gases is the thermal anemometric flow meter. The operating principle of this flow meter is based on measuring mass flow rather than volumetric flow, which can be measured either in kg/sec or in normal m3/h, making it well suited for laboratory conditions.
Data obtained by this laboratory flow meter can be transmitted via the ModBus electronic protocol or an analog signal (4-20 mA) to an industrial data logger, where it can subsequently be compiled into a graph or *.xls table format and analyzed.
If your laboratory faces the task of measuring the flow of a non-standard gas, please contact our engineers for consultation.

