Micro Motion RFT9739 D4SUA Transmitter

Micro Motion RFT9739 D4SUA Transmitter

Micro Motion RFT9739 D4SUA is a transmitter, and the following are some common product details for this product:
Measurement principle: The Micro Motion RFT9739 D4SUA transmitter adopts the principle of mass flow measurement and is based on the unique Coriolis mass flow sensor technology. It determines the mass flow rate of the fluid by measuring the vibration generated when the fluid passes through the pipeline.
High precision and reliability: This transmitter has extremely high precision and reliability, and can provide accurate and stable mass flow measurement. It has undergone precise calibration and testing, and can provide accurate measurement results under various process conditions.
Multiple output signal options: Micro Motion RFT9739 D4SUA transmitters typically provide multiple output signal options, such as analog signals (such as 4-20mA, 0-10V) and digital signals (such as HART, FOUNDATION Fieldbus). These output signals can be integrated with the control system to achieve flow monitoring and control.
Protection level and material selection: This transmitter usually has a sturdy housing design and high protection level, which can provide reliable performance in harsh industrial environments. In addition, it can also select appropriate materials according to application requirements to adapt to different fluids and process conditions.
Temperature and pressure range: Micro Motion RFT9739 D4SUA transmitters typically have a wide operating temperature and pressure range, which can adapt to different process requirements. It can operate normally in high temperature, high pressure, and low temperature environments.
Self diagnosis and remote monitoring functions: This transmitter usually has self diagnosis and remote monitoring functions, which can monitor the equipment status and performance in real-time. This helps to promptly identify faults and carry out maintenance, improving the reliability and operational efficiency of the system.