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How to Debug Turbine Flow Meter Converter?

Abstract: How to debug the turbine flowmeter meter converter? The information is provided by the excellent flowmeter and flowmeter manufacturers and quotation manufacturers. How to debug the converter of the turbine flowmeter during its use? Let's take a brief look at it. After installing the turbine flowmeter, don't rush to use it. First, check whether there is a problem with the wiring of the installation box, if found. More flowmeter manufacturers choose models and price quotations. You are welcome to inquire. The following is how to debug the turbine flowmeter meter converter? The article details. How to debug the converter of the turbine flowmeter during its use? Let's take a brief look at it. After installing the turbine flowmeter, don't rush to use it. First, check whether there is any problem with the wiring of the installation box. If a problem is found, it should be dealt with in time, so as to ensure the normal use in the future. Due to the lack of operating experience of some technicians, it is necessary to carefully study the instructions of the turbine flowmeter. Be good at analyzing and thinking about the problems encountered in the initial operation. The whole set of electromagnetic flowmeter has been adjusted and calibrated on the flow calibration device of the manufacturer. As long as the matching number of the sensor and the converter, and whether the instrument coefficient is correct, etc., the turbine flowmeter can be put into operation without any adjustment. Messed up the whole set of instruments that had been adjusted. Before the instrument is put into operation, the turbine flowmeter sensor must be filled with the actual measurement medium, and the zero point adjustment should be made in a static state after power-on. After being put into operation, it is also necessary to stop the flow to check the zero point regularly according to the medium and the conditions of use. Especially for the non-clean medium that is easy to precipitate, easy to contaminate the electrode, and contains solids, more inspections should be carried out in the early stage of operation to gain experience and determine the normal inspection period. For qualified users, several basic parameters of the sensor should be measured and recorded before the turbine flowmeter instrument is put into operation. These data are very helpful for the analysis of the reasons for the failure of the sensor after a period of operation. For example, when the contact resistance of the two electrodes changes, it indicates that the turbine flowmeter electrodes are likely to be contaminated; if the contact resistance increases, the contamination may be insulating deposits; if the contact resistance decreases, the contamination may be conductive The contact resistance of the two electrodes is asymmetric, indicating that the degree of pollution of the two electrodes is different; the decrease in the insulation resistance of the electrodes and the excitation coil indicates the degree of moisture in the turbine flowmeter sensor; when the insulation resistance drops to a certain extent, it will Affect the normal work of the instrument. Note: The cold resistance value of the excitation coil is a parameter to ensure the normality of the excitation coil. Through the above-mentioned understanding of the debugging method of the turbine flowmeter converter, the problem can be easily solved during debugging to ensure the normal use of the turbine flowmeter. The above is the whole content of this article. You are welcome to inquire about the flowmeter selection and quotation of our factory. 'How to Debug Turbine Flow Meter Converter?'

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