KTPT-W
The KTPT submersible level transmitter operates on the principle that the hydrostatic pressure of the measured liquid is directly proportional to the liquid's height. It utilizes the piezoresistive effect of diffused silicon to convert this hydrostatic pressure into an electrical signal, which then undergoes temperature compensation and linear correction before being converted into a standard 4–20 mA DC current signal for output. The sensor unit of the submersible level transmitter can be directly immersed in the liquid, while the transmitter housing can be securely mounted using either a flange or a bracket, making installation and operation exceptionally convenient.
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KTPT-W
Overview
The KTPT submersible level transmitter operates on the principle that the hydrostatic pressure of the measured liquid is directly proportional to the liquid's height. It utilizes the piezoresistive effect of diffused silicon to convert this hydrostatic pressure into an electrical signal, which then undergoes temperature compensation and linear correction before being converted into a standard 4–20 mA DC current signal for output. The sensor unit of the submersible level transmitter can be directly immersed in the liquid, while the transmitter housing can be securely mounted using either a flange or a bracket, making installation and operation exceptionally convenient.
Features
1. Excellent stability and high precision;
2. The submersible level transmitter is directly immersed into the medium being measured, making installation and use highly convenient;
3. Solid-state design with no moving parts, offering high reliability and an extended service life. It enables highly accurate measurements across a wide range of media—ranging from water and oils to thicker, paste-like substances—while remaining unaffected by bubbling, sedimentation, or the electrical properties of the measured medium. Additionally, it features comprehensive temperature compensation. The submersible level transmitter includes reverse-polarity protection for the power supply as well as overcurrent limiting protection against overload.
Performance parameters
Measurement range: 0.3–50 m
Accuracy: 0.2%, 0.5%
Operating temperature: -20–80°C
Output signal: Two-wire 4-20mA DC
Power supply voltage: Standard 24VDC (12-36VDC)
Deadband: ≤ ?%.0%FS
Load capacity: 0–600Ω
Relative temperature: <85%
Selection of models
Model |
Explanation |
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KTPT |
Liquid Level Transmitter |
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Isomorphism |
1 |
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Cable-type | ||||||
2 |
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Rod-type (sensor mounted at the bottom, in direct contact with the liquid medium) | |||||||
3 |
|
Anti-corrosion | |||||||
4 |
|
Pressure-guiding rod type (sensor mounted on the upper section, with no 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-type | |||||
2 |
|
316 | |||||||
3 |
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316L | |||||||
4 |
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Butyronitrile rubber and polyvinyl chloride (PVC) composite | Cable-type | ||||||
5 |
|
Polytetrafluoroethylene (F4) (Polypropylene Flange) | |||||||
Explosion-proof method |
0 |
|
Not explosion-proof | ||||||
E |
|
Intrinsically Safe Explosion-Proof ExialICT6 | |||||||
Display Method |
0 |
|
Without on-site instructions | ||||||
K |
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With digital header display | |||||||
|
- Mouth |
|
Measure height (mm) | ||||||
Factory display
Plant display 7
Plant display 8
Plant display 6
Plant display 5
Plant Display 4
Plant Display 9
Plant Exhibition 3
Plant display 2
Factory display
Honor Show
Exhibition style
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