About Conductivity Level Sensors
This stainless steel made Conductivity Level Sensor is used for creating conductive path between reference electrode and probe electrode. This sensor plays significant role in sensing, amplifying and in relaying the current produced in conductive path. Offered Conductivity level sensor can operate at maximum 85 degree C temperature. It is suitable for measuring level of chemicals, corrosive fluids, boiler water, coolant fluid etc. This instrument is also used in STP and ETP projects. Long working life and easy to comprehend measurement method are its main aspects.
Product details
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Power supply
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24 V DC
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Working temperature
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-30 degree to 85 degree
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Country of Origin
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Made in India
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Usage/Application
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Liquid Level Measurement
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Resolution
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0.01 mm
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Brand
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DB Instruments
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Material
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Stainless steel
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High-Precision Liquid Level DetectionUtilizing advanced electrolytic conductivity probes, this sensor detects liquid levels with excellent accuracy and high sensitivity. The adjustable sensitivity feature allows for adaptation to varying fluid types, while the LED indication provides clear, immediate feedback. Its robust construction ensures dependable operation, even in demanding industrial environments.
Versatile Installation and CompatibilityThis sensor is engineered for both vertical and horizontal mounting, with flexible installation options including screw or flange mount. The threaded BSP connection provides seamless integration with existing systems. With a wide operating temperature range and strong housing protection (IP65), the sensor is suitable for a diverse array of industrial sites.
Reliable Performance for Industrial ApplicationsDesigned for continuous monitoring of liquid levels across water, chemical, and mixed-liquid environments, the conductivity level sensor guarantees consistent measurement up to 10 meters. CE certification and high reliability make it the preferred choice for manufacturers and suppliers in India seeking robust and easy-to-install solutions.
FAQs of Conductivity Level Sensors:
Q: How does the conductivity level sensor detect liquid levels?
A: The sensor uses electrolytic rod-type probes made of SS304 stainless steel to measure the conductivity of liquids. When the liquid comes into contact with the probe, the sensor detects a change in conductivity (minimum 5 S/cm) and triggers the output indication via LED and relay/SPDT contacts.
Q: What are the installation options for this sensor?
A: The sensor can be installed vertically or horizontally and supports both screw and flange mounting methods. Its threaded/BSP connection ensures secure integration with existing industrial process setups.
Q: Where is this conductivity level sensor commonly used?
A: This sensor is widely used in industrial environments across India, particularly for monitoring water, chemicals, and liquid levels in tanks, storage vessels, and process containers where reliable level measurement is essential.
Q: What is the benefit of using SS304 probe material and weatherproof housing?
A: SS304 stainless steel is highly resistant to corrosion from most industrial liquids, offering long operational life. The weatherproof IP65 housing protects the sensor from dust, moisture, and environmental hazards, improving reliability in challenging conditions.
Q: How does the output indication work, and what signal types are available?
A: The sensor provides instant LED output indication and supports both analog and digital signal outputs. It delivers relay/SPDT contact closures for integration with control systems, helping operators respond rapidly to high or low level conditions.
Q: What is the process for adjusting sensitivity and response time?
A: Sensitivity settings can be customized to detect very low to high conductivity liquids, with a rapid response time of less than 2 seconds. Adjustments are typically made via the sensors terminal block interface to match specific application needs.
Q: What warranty and certification assurances are provided?
A: Each conductivity level sensor comes with a one-year warranty and CE certification, ensuring compliance with international safety and quality standards for industrial instrumentation.