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High temperature liquid level transmitter
High temperature liquid level transmitter
Product details
Overview of High Temperature Liquid Level Transmitter
High temperature liquid level transmitter is based on the principle that the measured liquid static pressure is proportional to the height of the liquid, and uses the pressure resistance effect of diffused silicon or ceramic sensitive elements to convert static pressure into electrical signals. After temperature compensation and linear correction. Convert to 4-20mADC standard current signal output.
The sensor part of the high-temperature input static pressure level gauge can be directly input into the liquid, and the transmitter part can be fixed with flanges or brackets, making installation and use extremely convenient and overcoming the limitation of only working in low-temperature environments.
Overview and Characteristics of High Temperature Liquid Level Transmitters
Good stability, high precision, and can work in high temperature environments
Directly put into the tested medium, installation and use are quite convenient
Solid state structure, no moving parts, high reliability, long service life, can be processed from water, oil to viscous paste
High precision measurement, wide range temperature compensation unaffected by foaming, deposition, and electrical characteristics of the measured medium
Overview and Technical Parameters of High Temperature Liquid Level Transmitters
Measurement range: 0.3~100m (optional by the user)
Accuracy: 0.2, 0.5, 1.0 levels
● Working temperature:- 20℃~200℃
● Output signal: 2-wire 4-20mADC
Power supply voltage: standard 24VDC (12~36VDC)
● Load capacity: 0~600 Ω
Relative temperature: ≤ eighty-five
Overview and Selection Table of High Temperature Liquid Level Transmitters
Type spectrum | describe | |||||||||||
Input type static pressure high-temperature liquid level gauge | ||||||||||||
Class quality | 2 | Rod type (sensor installed at the bottom, directly in contact with liquid medium) | ||||||||||
3 | Anti-corrosion type | |||||||||||
4 | Pressure rod type (sensor installed on the upper part, not in direct contact with the medium) | |||||||||||
Process connection form | T | Bracket installation | ||||||||||
N | Flange installation DN40 PN1.0 | |||||||||||
Y | Special Agreement | |||||||||||
Sensor connection material | 1 | 304 | Rod style | |||||||||
2 | 316 | |||||||||||
3 | 316L | |||||||||||
4 | Nitrile rubber and polyvinyl chloride composite | Cable type | ||||||||||
5 | Polytetrafluoroethylene (polypropylene flange) | |||||||||||
Explosion proof method | O | Not explosion-proof | ||||||||||
E | Intrinsic safety explosion-proof Exia Ⅱ CT6 | |||||||||||
Display mode | O | Without on-site instructions | ||||||||||
Z | Equipped with ammeter indication (0-100% scale) | |||||||||||
X | Equipped with LCD digital display | |||||||||||
Weight distribution situation | O | No need for counterweight | ||||||||||
W | Need to balance weight | |||||||||||
-□ | Installation height (mm) | |||||||||||
-□ | Measurement height (mm) | |||||||||||
-□ | Density of the tested medium (g/cm3) |
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