Features of the Rosemount 8732E Electromagnetic Flowmeter
1. The measurement is not affected by the changes in fluid density, viscosity, temperature, pressure and conductivity.
2. There are no blocking moving parts in the measuring pipe, no pressure loss, and the requirements for the straight pipe section are low. It has unique adaptability to slurry measurement.
3. Reasonable selection of sensor fabrics and electrode materials, that is, excellent corrosion resistance and wear resistance.
4. The converter adopts a novel excitation method, with low power consumption, stable zero point and high accuracy. The scale of the flow can reach the standard value.
5. The converter can be integrated with the sensor or separated.
6. The converter uses 16-bit high-performance microprocessor, which is convenient for parameter setting and reliable for programming.
7. The flowmeter is a two-way measurement system, with three built-in calculators: forward total, reverse total and difference total; It can display positive and negative flow and has a variety of outputs: current, pulse, digital communication, HART.
8. The converter adopts surface mounting technology, which has the functions of self-test and self-diagnosis.
9. The measurement accuracy is not affected by the changes of fluid density, viscosity, temperature, pressure and conductivity, and the sensor induced voltage signal has a linear relationship with the uniform flow velocity, so the measurement accuracy is high.
10. There is no flow obstruction in the measuring pipeline, so there is no additional pressure loss; There are no moving parts in the measuring pipe, so the sensor has an extremely long life.
|
More on that
|
Installation of Rosemount transmitter attachments
The Rosemount transmitter is an important accessory in the use of time and time and time components, which will also affect the accuracy of the transmitter measurement results. Therefore, in order to prevent the occurrence of measurement errors, we need to pay attention to the following points in the equipment process of additional equipment.
1. Rosemont ...
|
|
Precautions for use of Rosemount differential pressure transmitters
Rosemount differential pressure transmitter in daily use we should pay attention to something, take Rosemount transmitter 3051DP differential pressure transmitter as an example, Rosemount differential pressure transmitter has a coplanar differential pressure transmitter and a flat mounted differential pressure transmitter in use The principle is the same, but the installation ...
|
|
How the Rosemount 3051 pressure transmitter works
The 3051 pressure transmitter is used to measure the level, density, and pressure of liquids, gases, or vapors, and then convert the pressure signal into a 4-20mADC signal output. There are mainly capacitive pressure transmitters and diffusion silicon pressure transmitters, ceramic pressure transmitters, strain gauge pressure transmitters, etc.
...
|
|
Pipe diameter requirements for the installation of the Rosemount 8800D vortex flowmeter
1. The upstream and downstream pipe diameter of the flowmeter on the installation point must be installed in accordance with the standard flowmeter caliber, otherwise the measurement accuracy will be affected.
2. If there is a tapering pipe in the upstream of the flowmeter installation point, there should be a straight pipe section of equal diameter of not less than 15D (D is the diameter of the pipe) in the upstream of the flowmeter, and there should be ...
|
|
How Rosemount Electromagnetic Flowmeters Troubleshoot Air Ducts
Rosemount Electromagnetic Flowmeter Eliminates Empty Pipe ProblemRosemount Electromagnetic Flowmeter Eliminates Empty Pipe Problem
If the ATC detection is unexpected, the following measures can be adopted:
1. Make sure the sensor is overflowing.
2. Ensure that the measuring electrode has not been installed on the top of the pipe of the sensor.
...
|
|
How to choose the Rosemount 3051DP differential pressure transmitter
1.3051D transmitter is a coplanar pressure transmitter, which can measure the pressure or the side differential pressure, and there are two options P is the differential pressure measurement and G is the gauge pressure.
2. To understand the range used in the field, select the corresponding code according to the range, a total of 5 options: the lowest - 6.216KPA and the maximum 13789.54KPA.
...
|
|
The installation environment affects the use of Rosemount transmitters
If you want to get better measurement results in practical applications, you need to pay attention to the following environmental issues when installing:
1. The Rosemount transmitter pressure impulse pipe should be arranged in a place where the temperature fluctuation is small, and the buffer tube (disk) should be connected when measuring steam or other low-temperature medium.
|
|
Rosemount transmitter signal line grounding method
If the Rosemount transmitter does not have alarms and safety adjustment options installed, the transmitter will typically operate according to the default alarm settings, i.e., the alarm condition is set to "high" and the safety is set to "off". Then proceed as follows:
1. ...
|
|
A summary of methods for on-site inspection of Rosemount transmitter failures
When something goes wrong with the Rosemount transmitter, you can first use the common methods of on-site inspection to check it, such as: query method: recall the ignition, smoke, odor, power supply change, lightning strike, wetting, misoperation, and mismaintenance before the fault occurs; Intuitive method: investigate external damage to the circuit, leakage of the impulse pipe, ...
|
|
How to troubleshoot the Rosemount 3051 differential pressure transmitter if it encounters problems
1. Line failure
When the computer in the Rosemount transmitter monitoring system shows abnormal values, it is necessary to immediately check the line status of the junction box of the differential pressure transmitter to see if there is a short circuit, etc., and the way to check is to measure the resistance.
...
|
|
Rosemount 3051S direct-attach pressure transmitter
The Rosemount 3051S direct-attach pressure transmitter is a professional-class solution for optimized functionality. This scalable SuperModule™ platform reduces process variation and reduces protection, making it particularly useful for gauge and absolute pressure measurement in Rosemont transmitters. Should...
|
|
Features of the Rosemount Transmitter 3051S Series High Precision Transmitters:
Features of the Rosemount Transmitter 3051S Series High Precision Transmitters:
Advanced diagnosis
Advanced diagnosis provides ongoing process monitoring to ensure the integrity and security of the process environment. The Statistical Process Monitoring (SPM) skill alerts you to deal with issues and anomalies. This comprehensive ...
|
|
Rosemount 3144P Temperature Transmitter Installation Steps
Typical on-site installation
1. Install the thermowell to the wall of the process vessel.
2. Install and tighten the thermowell.
3. Perform a leak check.
4. Connect all necessary couplings, couplings and extension fittings. Seal the dispensing with a certified thread sealant ...
|
|
The Rosemount 3051 transmitter is prone to some failures
1. The pressure of the 3051 transmitter does not go up to the output of the transmitter, the output of the pressurized transmitter does not change, and the output of the pressure transmitter changes suddenly, and the zero position of the pressure relief transmitter cannot be returned.
In this case, you should see if the pressure interface is leaking or blocked, and after looking at the wiring method and power supply, ...
|
|
Key Features of the Rosemount 248 Temperature Transmitter:
Top mount and rail mount applications provide 2-year stability.
The integrated LCD meter provides easy indication of the process and diagnostic indications.
Available as a ready-to-install solution, including a wide range of sensors, thermowells, and housings.
Polished stainless steel housing can be applied to ...
|
|
Rosemount transmitter installation requirements and how to install it
Rosemount transmitters must be installed in a constant temperature environment, which is also determined by the characteristics of the flange transmitter. Because the measured medium of ordinary transmitters generally enters the transmitter measurement chamber through the impulse tube. If the measurement is a viscous liquid medium, it will be easier to form a conductive ...
|
|
Rosemount differential pressure transmitter selection considerations
The following points should be considered in the selection of differential pressure transmitters:
1. Measure the scale, the accuracy of the demand and the measurement function;
2. Measure the environment of the outer surface, such as the industrial environment of petrochemical industry, the existence of flammable, toxic and explosive risk atmosphere, and the high ambient temperature;
3 tested ...
|
|
Fault Judgment in Rosemount Differential Pressure Transmitter Applications
Fault judgment and analysis in the application
In the process of measuring the transmitter, there are often some problems, and the timely analysis and treatment of faults are crucial for the ongoing production According to the experience of daily maintenance, some of the analysis methods and analysis methods are summarized and summarized.
|
|
Features that Rosemount Instrument Thermowells have
Rosemount Instrument Heat Jacket has the following features:
1. Similar tags – when presenting some similar applications that only need to be changed slightly, it should be possible to imitate the application value of a specific tag, and then there is no need to re-enter the repetitive information, only change the variables that need to be changed in the new use.
|
|
How to solve the problem of Rosemount differential pressure transmitter migration failure
The migration of differential pressure transmitters is a form of application, which refers to the process of artificially moving the measuring point of a differential pressure transmitter from the zero point to the required value. The migration of differential pressure transmitters includes two major contents: positive migration and negative migration.
|
|