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new electromagnetic flow transmitter supply for transportation

new electromagnetic flow transmitter supply for transportation
  • new electromagnetic flow transmitter supply for transportation

new electromagnetic flow transmitter supply for transportation

The design of Kaidi Sensors electromagnetic flow transmitter requires many skills. Except for basic knowledge such as Kinematics and Mechanisms, they also include Technical Drawing and Computer-Aided Engineering (CAE).
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Product Details
Kaidi's level indicator is perfect in every detail.level indicator, manufactured based on high-quality materials and advanced technology, has reasonable structure, excellent performance, stable quality, and long-lasting durability. It is a reliable product which is widely recognized in the market.Kaidi's level gauge is perfect in every detail.level gauge, manufactured based on high-quality materials and advanced technology, has reasonable structure, excellent performance, stable quality, and long-lasting durability. It is a reliable product which is widely recognized in the market.
  • new electromagnetic flow transmitter supply for transportation-level indicator-level switch -level g


magnetic flow meter (mag meterelectromagnetic flow meter) is a transducer that measures fluid flow by the voltage induced across the liquid by its flow through a magnetic field. A magnetic field is applied to the metering tube, which results in a potential difference proportional to the flow velocity perpendicular to the flux lines. The physical principle at work is electromagnetic induction. The magnetic flow meter requires a conducting fluid, for example, water that contains ions, and an electrical insulating pipe surface, for example, a rubber-lined steel tube.

If the magnetic field direction were constant, electrochemical and other effects at the electrodes would make the potential difference difficult to distinguish from the fluid flow induced potential difference. To mitigate this in modern magnetic flowmeters, the magnetic field is constantly reversed, cancelling out the electrochemical potential difference, which does not change direction with the magnetic field. This however prevents the use of permanent magnets for magnetic flowmeters.


Specifications

- Size: DN10~DN600 (PTFE) ; DN40~DN1200 (NBR)

- Standard pressure: PN1.0MPa~40MPa;

- Accuracy: ±0.5%~±1.0%;

- Supply power: 85 to 250VAC (45 to 63Hz), 16 to 36VDC;

- Signal output: Current Output: 4~20mA;

- Frequency Output: 0~5000Hz with photoelectric isolation;

- Pulse Output: 0.001~1.000m3/cp, 0.001~1.000 Ltr/cp, 0.001~1.000USG/cp,0.001~1.000 UKG/cp;

- Alarm Output: Upper Alarm-ALMH, Lower Alarm-ALML with photoelectric isolation;

- Communications: RS-232 without galvanic isolation, RS-485 with Galvanic isolation;

- Ambient temperature: -10~60;

- Relative humidity: ≤85%RH;

- Atmospheric pressure: 86KPa~106KPa;

- Applicable Fluid: electrically conducting liquid;

- Fluid temperature:-25~ +65 and -25~ +180;

- Electrical conductivity: 5us/cm.




The design of Kaidi Sensors electromagnetic flow transmitter is professional. It is carried out by our designers who have taken many factors into considerations such as geometric stress of the parts, the flatness of section, and connection mode.
The mechanical parts of Kaidi Sensors electromagnetic flow transmitter are manufactured using different machining workmanship. They have to experience bending, shaping, cutting, welding, die-sinking, high-speed drilling, milling, grinding, polishing and finishing.
During the design stage of Kaidi Sensors electromagnetic flow transmitter, different factors have been considered, including structural configuration, structure connectivity and interface, structural stiffness and associated mechanical performance.
The design of Kaidi Sensors electromagnetic flow transmitter is strictly conducted. It mainly covers the mechanical structure, spindles, and drive system, control and inspection systems, etc.
The selection of materials for Kaidi Sensors electromagnetic flow transmitter is meticulous. It takes into consideration physical properties (density, melting point, elec/thermal properties, etc.) and mechanical properties (stiffness, elasticity, plasticity, etc.).
It can perform tasks which are deemed as dangerous for humans, as well as be able to perform highly laborious tasks.
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