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A split-flow meter is a precise flow measurement instrument that is used in various industries. When installing a split-type flow meter, it is necessary to pay attention not only to the installation techniques but also to the requirements of the installation environment. Since split-type electromagnetic flowmeters need to be installed in different environments, there are many issues that need to be taken into consideration. So, what specific things need attention? Below, the editor will provide a detailed introduction. 1. Try to avoid high-voltage equipment, high-frequency equipment, and high-power switching power supply equipment. The power supply for the instruments should be separated from those devices as much as possible. 2. Avoid direct exposure to high-temperature heat sources and radiation sources. If installation is necessary, thermal insulation and ventilation measures must be in place. 3. Avoid high-humidity environments and environments with highly corrosive gases. If installation is necessary, ventilation measures must be in place. 4. Split-type electromagnetic flowmeters should be installed on pipes with minimal vibration as much as possible. If installation is necessary, pipe fastening devices must be installed 2D upstream and downstream of it, along with vibration damping pads to enhance the vibration resistance. 5. It is best to install the instrument indoors; if it is installed outdoors, waterproofing measures must be taken. In particular, at the electrical connections, the cables should be bent into a U shape to prevent water from entering the amplifier housing along the cables. 6. Sufficient space should be left around the instrument mounting point to facilitate wiring and regular maintenance. The above are the six requirements for the installation environment of split-type electromagnetic flowmeters provided by our technical team. We hope that you can use this information as a reference; from this detailed overview, it is clear that electromagnetic flowmeters used in agricultural equipment must be able to withstand extremely harsh conditions. They are often exposed to water, moisture, chemicals, and dust, and must also be able to resist impacts and vibrations, as well as high temperatures and humid environments.
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