Conductivity Sensor And Transmitter

Conductivity Sensor and Transmitter Manufacturer for Industrial Water Quality Measurement

ARTang supplies conductivity sensors and transmitters for online conductivity measurement in water treatment, chemical processing, food and beverage, power, and industrial water systems. They are used for process conductivity monitoring, ionic concentration control, water purity monitoring, CIP phase detection, and process liquid quality control.

With different sensor types, measuring ranges, temperature compensation, installation methods, and output signals, ARTang conductivity sensors and transmitters help users maintain stable water quality, detect process changes, and support automatic control in industrial applications.

Key Features of Conductivity Sensors and Transmitters

Conductivity Measurement

Measures the electrical conductivity of liquids to help monitor ion concentration, water purity, salinity, or process liquid changes.

Temperature Compensation

Supports temperature compensation to reduce conductivity reading errors caused by liquid temperature changes.

Wide Range Options

Suitable for low-conductivity water, industrial wastewater, chemical liquids, cleaning solutions, and concentration monitoring applications.

Conductivity Sensors and Transmitters Applications

Water and Wastewater

Conductivity monitoring helps track raw water, treated water, wastewater, and discharge quality, supporting process control and water quality management.

Chemical

In chemical processes, conductivity measurement can be used to monitor concentration, dilution, mixing, and changes in ionic strength.

Food and Beverage

Conductivity sensors are commonly used in CIP cleaning, rinse water monitoring, ingredient water control, and process water quality checks.

Power

Boiler water, cooling water, demineralized water, condensate, and pure water systems often require conductivity or resistivity monitoring to control water quality.

How to Select the Right Conductivity Sensors and Transmitters

Select a conductivity sensor based on conductivity range, process liquid, sensor type, mounting method, and temperature conditions to avoid unstable readings or unsuitable sensor selection.

Conductivity Range and Unit

Confirm whether the application requires low conductivity, high conductivity, TDS, salinity, resistivity, or concentration monitoring.

Process Liquid Conditions

Check whether the liquid is pure water, boiler water, wastewater, CIP solution, cooling water, or chemical liquid, as contamination and corrosion affect sensor selection.

Electrode or Inductive Type

Choose electrode or inductive conductivity sensors according to conductivity range, coating risk, chemical corrosion, and maintenance requirements.

Mounting and Temperature

Confirm inline, immersion, flow-through, or insertion mounting, and check liquid temperature to ensure suitable installation and temperature compensation.

    Conductivity water analyzer schematic showing measurement principle with sensor electrodes in water and typical installation with sensor, pipeline, analyzer, and flow direction.

    Why Choose ARTang for Conductivity Sensors and Transmitters

    Avoiding Range Mismatch

    We help confirm conductivity range, TDS, resistivity, salinity, or concentration needs to reduce wrong sensor selection.

    Reducing Fouling Problems

    Select electrode or inductive sensors according to contamination, coating, corrosion, and maintenance conditions.

    Supporting Process Water Control

    Support conductivity monitoring for pure water, boiler water, cooling water, rinse water, CIP cleaning, and process liquid control.

    FAQ About Conductivity Sensors and Transmitters

    What information is needed to choose a conductivity sensor and transmitter?

    Please provide the liquid type, conductivity range, temperature, installation method, sensor type requirement, output signal, and whether the medium is corrosive, contaminated, coating-prone, or low-conductivity water.

    What is the difference between electrode and inductive conductivity sensors?

    Electrode conductivity sensors are commonly used for clean water, pure water, low-conductivity water, and general water quality monitoring. Inductive conductivity sensors are often preferred for high-conductivity, corrosive, contaminated, or coating-prone liquids.

    Can conductivity sensors be used for CIP cleaning?

    Yes. Conductivity sensors are often used in CIP systems to monitor cleaning solution concentration, rinse water quality, and phase separation between water, acid, alkali, product, or cleaning liquid.

    How do I choose a conductivity sensor for pure water or boiler water?

    Pure water, boiler water, condensate, and demineralized water usually require low-range conductivity or resistivity measurement. The sensor should be selected based on conductivity range, temperature, installation method, and required accuracy.

    What causes unstable conductivity readings in industrial processes?

    Unstable readings may be caused by wrong range selection, temperature changes, coating on electrodes, air bubbles, poor grounding, unsuitable installation, or contamination of the sensor surface.

    Need Help Choosing a Conductivity Sensors and Transmitters?

    Send us your liquid type, conductivity range, temperature, installation method, sensor type, and signal output requirements. ARTang will help you select a suitable conductivity sensor and transmitter for your process.