ATO thermal dispersion flow switch used the precision electronic components, reliable and stable circuit design, which are widely used in aerospace, automotive, military and other high-tech fields, making the flow signal more accurate and stable.
Specification
Model |
ATO-RMD-FE1 |
Media type |
Liquid, Air, Oil |
Measuring range |
Water 3-300cm/s, Gas 200-3000cm/s, Oil 3-300cm/s |
Accuracy |
±1 - ±10cm/s |
Settling time |
3 minutes |
Working pressure |
100bar |
Medium temperature |
-20℃ to 80℃ |
Thread |
G1/2, G1/4 Male Thread, G1 Thread |
Power |
24VDC, 110VAC, 220VAC |
Output signal |
PNP/ NPN/ Relay/ 4-20mA |
Sensor length |
15mm, 20mm, 30mm, 40mm, 60mm |
Setting |
Button |
Consumption current |
<80mA |
Display |
LED Digital Display |
Response time |
2 (2-10)s |
Max.temperature gradient of medium |
300K/min |
Protect |
Reverse/ Short/ Overload |
Protection grade |
Ip67 |
Power connector |
M12 with 1m cable |
Material |
Sensor: ANSI316L
Probe: Stainless Steel
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Load |
Current: 250mA
Relay: 30VDC/5A, 85-265VAC/5A, 120-370VAC/5A
|
Net weight |
1kg |
Details
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Standard terminal
Simple and quick operation
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Waterproof terminal
Effectively isolate the outside water vapor into the inside
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High quality protective housing cast aluminum housing
Good shock resistance applied to harsh working condition
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Exquisite turner technology
Carefully polished, the thermal dispersion flow switch is more beautiful and scratch resistant
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Thermal dispersion flow switch installation diagram
Thermal dispersion flow switch dimension diagram
Thermal dispersion flow switch wiring diagram
Details
Tips: What is ATO thermal dispersion flow switch?
The ATO thermal dispersion flow switch is designed based on the principle that the temperature change of the probe produces a difference. A self-heating sensor and two thermal sensors are built in the probe, and the probe is in contact with the medium. When the thermal dispersion flow switch is working, the self-heating sensor emits constant heat. When there is no medium flowing in the pipeline, the heat received by the thermal sensor is a constant value. When there is a medium flowing in the pipeline, the heat received by the thermal sensor will change with the flow rate of the medium. The thermal sensor converts the temperature difference signal into an electrical signal. When the flow rate reaches a certain set point, the thermal flow switch outputs signal.
The thermal dispersion flow switch has the advantages of no movable parts, can be switched at very low flow, withstand high pressure, and can be used for pipes of different nominal diameters. Part of the thermal dispersion flow switch also has the function of simulating and displaying the flow. The thermal dispersion liquid flow switch can be used to monitor the flow rate of the fluid in the pipeline, monitor the flow interruption or prevent the idling of the pump. Thermal dispersion flow switches are widely used in various industries where it is necessary to monitor the flow rate of fluid in the pipeline or protect important equipment when the liquid flow fails, such as protecting water pumps, monitoring lubricating oil circuits, refrigeration and heating circuits, monitoring pipeline rupture, monitoring leakage, etc.