How to perform initial setup of an electromagnetic flowmeter using a 475 handheld communicator.
Electromagnetic flowmeters are one of the most common industrial instruments in industrial production. They operate based on Faraday's law of electromagnetic induction and are mainly used to measure the volumetric flow of conductive media in pipes. They are crafted with high precision, featuring a simple and compact structure, and are easy to install. Moreover, they possess numerous superior product performances. So, how can a newly purchased electromagnetic flowmeter be initially set up using the 475 handheld communicator? Many instrument users may not be very clear about this. Today, a technical editor from Shaanxi Huibo Electromechanical will introduce how to perform the initial setup of the electromagnetic flowmeter using the 475 handheld communicator.
Release time:
2021-11-30
Source:

Electromagnetic flowmeters are one of the most common industrial instruments in industrial production. They operate based on Faraday's law of electromagnetic induction and are mainly used to measure the volumetric flow of conductive media in pipes. They are crafted with high precision, featuring a simple and compact structure, and are easy to install. Additionally, they possess numerous superior product performances. So how do you perform initial settings on a newly purchased electromagnetic flowmeter using the 475 handheld communicator? Many instrument users may not be very clear about this. Today, the technical editor from Shaanxi Huibo Electromechanical will introduce how to perform initial settings on an electromagnetic flowmeter using the 475 handheld communicator.
1. How to modify the range of the electromagnetic flowmeter using the 475 handheld communicator. The specific steps are as follows:
1. Power on, connect the 475 handheld communicator to the pressure transmitter, and select HART.
2. After successful communication, select Online, and the specific function menu that can be set for the electromagnetic flowmeter will be displayed.
3. Click 2. quick setup
4. Select and click 4. analog outputs, modify the range (3. range min 0t/h lower limit, 4. range Max 100t/h upper limit).
2. How to modify the damping of the electromagnetic flowmeter using the 475 handheld communicator. The specific steps are as follows:
Steps 1 and 2, same as above.
3. Click 2. quick setup
4. Click 4. analog outputs
5. Select and click 7. time constant, modify damping to 3s.
3. How to perform zero calibration on the electromagnetic flowmeter using the 475 handheld communicator. The specific steps are as follows:
Steps 1 and 2, same as above.
3. Click 4. setup
4. Click 1. process input
5. Click to select 1. calibration
6. Click 1. autom.zero to perform empty pipe calibration.
4. How to perform loop testing on the electromagnetic flowmeter using the 475 handheld communicator. The specific steps are as follows:
Steps 1 and 2, same as above.
3. Click 3. test
4. Click 1. simulation to perform loop testing.
That concludes our discussion on how to perform initial settings on an electromagnetic flowmeter using the 475 handheld communicator. We hope that through the learning of the above content, our instrument user friends can apply it in their previous work. If you would like to learn more about related flowmeter content, feel free to click and check.
Key words:
Electromagnetic flowmeter, 475 handheld controller
Related News
Temperature measurement is an important and fundamental feature of most industrial process control. So how do you choose the correct temperature transmitter for reliable temperature measurement and detection?
DVC2000 vs DVC6200: What’s the Difference Between Fisher FIELDVUE Digital Valve Positioners?
Both Fisher DVC2000 Digital Valve Positioner and Fisher DVC6200 Digital Valve Positioner are perhaps two-star products in Emerson's Fisher FIELDVUE product range.
Understanding the Working Process of Fisher FIELDVUE DVC2000 Digital Valve Controller
Fisher FIELDVUE DVC2000 is a digital valve controller. It is fed with a 4-20mA control signal and then the commands are processed by means of a microcontroller.
Differential pressure transmitters are a critical part of flow measurement systems. If you use the wrong transmitter, your measurements will be inaccurate, your processes will not run smoothly, and you may even shut down.
Rosemount 2088 Pressure Transmitter or Rosemount 3051 Transmitter-Which One Is Right For Me?
The selection of pressure transmitters for industrial processes often puts engineers in a dilemma between the Rosemount 2088 and the Rosemount 3051.
How Does Yokogawa YTA710 Dual Input Temperature Transmitter Work? YTA710 Working Principle Explained
Yokogawa YTA710 Smart Temperature Transmitter is a best-selling smart temperature transmitter produced by Japan Yokogawa.
Related Products