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    Conductivity Sensor

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    Inductive Conductivity Sensor for Water, 4-20mA/RS485

    $1,293.54
    SKU: ATO-CS-S7S
    Low price inductive conductivity sensor for sale online. Inductive conductivity sensor for water can be used to measure the conductivity value in the solution, the measuring ranges are 0~1000ms/cm or 0~2000ms/cm, the measuring method is non-contact, the working conditions are 0~60℃ or 0~120℃, and the protection level is IP68. It can be directly connected to devices with RS485/4-20mA signal interfaces and supports the MODBUS protocol.

    4 Electrode Electrical Conductivity (EC) Sensor, 0.1~500ms/cm

    $616.46
    SKU: ATO-CS-CON630D
    High-quality 4 electrode electrical conductivity (EC) sensors are suitable for measuring the changes in conductivity values in aqueous solution systems within a wide range. The conductivity measurement range is 0.1~500ms/cm, and the salinity measurement range is 0~500ppt. The digital electrical conductivity (EC) sensor has high accuracy and stable performance. The conductivity measurement accuracy is 1.5%F.S and the temperature measurement accuracy is ±0.5℃.

    2 Electrode Electrical Conductivity (EC) Sensor, 0-9999μs/cm

    $302.62
    SKU: ATO-CS-CON625D
    Factory price 2 electrode electrical conductivity (EC) sensor for sale. 2 electrode electrical conductivity (EC) sensor can measure water temperature, conductivity and TDS. The conductivity measurement range is 0~9999μs/cm or 0~70ms/cm, and the TDS measurement range is 0~10000ppm.

    Inline Conductivity Sensor/Probe for Liquid, 0~5000μs/cm

    $521.85
    SKU: ATO-CS-406-S
    Inline conductivity sensors/probes for sale, with protection level up to IP68, are designed for liquid conductivity monitoring. Signal output is optional RS485/4-20mA, with a range of 0~5000μs/cm, which can be easily integrated into different devices. The operating temperature of the inline electrical conductivity sensor/probe for liquid is 0~65℃, and the accuracy level is ±1.5%F.S. and ±0.3℃, which is suitable for the measurement needs of different liquids.

    High Temperature Conductivity Sensor, 0~130℃, 0~2000μs/cm

    $703.07
    SKU: ATO-CS-100-1
    Buy a high temperature conductivity sensor online. The high temperature conductivity sensor has a measurement range of 0~2000μs/cm, a temperature range of 0~130℃, an accuracy of up to 2%FS, and built-in NTC10K temperature compensation. The high temperature electrical conductivity sensor can be used with instruments and is suitable for online water quality testing, multi-channel water quality testing and intelligent water quality monitoring systems.

    Industrial EC Sensor, RS485/4-20mA/0-5V/0-10V

    $195.08
    SKU: ATO-CS-SUS01
    The electrodes of the high-precision industrial electrical conductivity (EC) sensor are available with RS485/4-20mA/0-5V/0-10V output signals. The industrial EC sensor has a conductivity measurement range of 0.01~20μS/cm, a temperature measurement range of -20~100℃, a salinity measurement range of 0~10ppm, a TDS measurement range of 0~10ppm, and a conductivity resolution of 0.001μS/cm.

    Contacting Conductivity Sensor/Probe for Water, 0~2000μs/cm

    $314.55
    SKU: ATO-CS-1.0
    Buy a good price contacting conductivity sensor/probe for water. A contacting conductivity sensor/probe can detect the conductivity of aqueous solution, NPT 1/2 or NPT 3/4 thread installation is optional. The measurement range is 0~2000μs/cm, the temperature range is 0℃~60℃, built-in temperature probe, temperature compensation can be performed, suitable for power plants, water treatment industry, etc.

    Sanitary Toroidal Conductivity Sensor, 1~2000ms/cm

    $2,925.84
    SKU: ATO-CS-DNFA-5
    The low-cost sanitary inductive conductivity sensor has a conductivity measurement range of 1ms/cm ~ 2000ms/cm, an accuracy of ±2% or ±1ms/cm, a built-in temperature probe, temperature compensation Pt1000, and strong anti-interference ability. The sanitary toroidal electrical conductivity sensor can be widely used in monitoring the conductivity measurement of solutions such as thermal power, chemical industry, metallurgy, environmental protection, pharmaceuticals, biochemistry, food and tap water.

    Wireless Conductivity Sensor, 0~5000μs/cm

    $427.39
    SKU: ATO-CS-306
    Buy high-quality wireless conductivity sensors online, suitable for conductivity measurement in the range of 0~5000μs/cm and TDS measurement in the range of 0-3000 mg/L, providing RS485 signal output. The protection level of the wireless conductivity sensor is IP68, and it can be used with a Bluetooth wireless transmission module for wireless remote control.

    Bluetooth Wireless Transmission Module for Conductivity Sensor

    $96.62
    SKU: ATO-CS-MINI1
    Popular Bluetooth wireless transmission modules for sale online, which can be used to connect conductivity sensors, with ASCII Bluetooth transmission for output and hexadecimal Bluetooth transmission for input. The storage capacity of the Bluetooth wireless transmission module for the conductivity sensor is 4M bytes, which can store up to 300,000 data.

    Portable Laboratory Conductivity Sensor, 2~20000μs/cm

    $155.38
    SKU: ATO-CS-1VTC
    Cheap portable laboratory conductivity sensor for sale. The portable laboratory conductivity sensor has a measurement range of 2~20000μs/cm and a temperature range of 0~80℃. The shell material is glass and the electrode material is platinum black. It can be used to quickly measure the conductivity of liquids.

    pH and Conductivity Sensor with Composite Electrode, 0-14pH

    $695.65
    SKU: ATO-PHB-5
    Buy pH and conductivity sensors at an economical price. The pH and conductivity sensors use a three-composite electrode structure, including a measuring electrode, a reference electrode and a temperature electrode, with a measurement range of 0- 4pH, and can be used in environmental monitoring, industrial production control, food processing, pharmaceutical industry and other fields.

    ATO provides a comprehensive range of industrial conductivity sensors designed for precision liquid analysis. Whether you are monitoring ultra-pure water in pharmaceutical processes or managing wastewater treatment, our sensors offer reliability with various cell constants (K=0.01, 0.1, 1.0, 10.0). Features include high-temperature resistance, integrated Automatic Temperature Compensation (ATC), and compatibility with 4-20mA or RS485 Modbus protocols.

    Conductivity Sensor Selection Guide

    Series Cell Constant (K) Measuring Range Best For Recommended Model
    Ultra-Pure Water 0.01 0.05 ~ 20 μS/cm RO Water, Power Plants ATO-CS-SUS01
    Pure Water 0.1 0.5 ~ 200 μS/cm Distilled Water, Labs ATO-CS-SUS01 (K=0.1)
    General Industrial 1.0 1.0 ~ 2000 μS/cm Tap Water, Cooling Towers ATO-CS-CON625D
    High Concentration 10.0 10 μS ~ 200 mS/cm Seawater, Chemical ATO-CS-CON630D
    Inductive (Clogging) N/A 0 ~ 1000 mS/cm Sewage, Slurry ATO-CS-DNFA-5

     

    Selection Tip (Decision Logic): As a rule of thumb, use a lower cell constant (K) for low-ion liquids (e.g., ultrapure water, K=0.01 or 0.1) to ensure high sensitivity, and a higher cell constant for ion-rich liquids (e.g., seawater or wastewater, K=10.0) to prevent electrode polarization and signal saturation.

    What is a conductivity sensor?

    A Conductivity Sensor is a high-precision analytical transducer used to measure a liquid's ability to conduct an electrical current. This measurement directly correlates to the concentration of dissolved ions (salts, minerals, or acids) in the solution. In industrial automation, two core technologies are used to translate these physical states into digital data:

    • Contacting Sensors: Best for Low Conductivity (<2000μS/cm)
      Using metal electrodes in direct contact with the fluid, these are the "Gold Standard" for high-purity water applications (like RO systems). They offer extreme sensitivity required to detect trace impurities but are susceptible to fouling in dirty liquids.
    • 4-Electrode Sensors: Best for Mid-to-High Conductivity with High Precision. These sensors provide a hybrid solution by using an additional pair of electrodes to cancel out polarization errors and cable resistance. They are ideal for fluctuating industrial wastewater where both accuracy and anti-fouling are needed.
    • Inductive (Toroidal) Sensors: Best for High Conductivity (>2000μS/cm) and Corrosive Media.
      Utilizing a non-contact magnetic coil design, these are the "Heavy-Duty" choice for aggressive chemicals, brine, and wastewater. They are immune to electrode corrosion, coating, or "poisoning," ensuring long-term stability in high-scaling environments.

    Key Technical Features for Conductivity Sensors

    • Digital Communication (Industry 4.0): Beyond 4-20mA signals, sensors supporting RS485 Modbus-RTU enable multi-parameter transmission (EC, TDS, and Temperature) over long distances without signal degradation.
    • Automatic Temperature Compensation (ATC): Conductivity typically fluctuates by 2-3% per °C. Reliable probes integrate high-precision sensors (PT100/PT1000) to normalize readings to a standard 25°C.
    • Material Resilience: For high-temperature sterilization (up to 130°C), specialized sensors with reinforced seals are required to prevent ingress and measurement drift.

    Conductivity Sensor Applications

    Selecting the right sensor architecture depends on your specific liquid environment. Here is how to match the technology to your application:

    Application Scenario Key Requirements Recommended Solution Featured ATO Model
    Pure Water & Semiconductors Detect trace ionic leakage in RO/DI systems Contacting Sensors (K=0.01) for maximum resolution ATO-CS-SUS01 (Precision Contacting)
    Food, Beverage & Pharma Withstand CIP cleaners & high-temp sterilization Inductive (Toroidal) Sensors (PEEK/PFA) ATO-CS-DNFA-5 (Inductive Toroidal)
    Agriculture & Hydroponics Real-time nutrient monitoring & easy integration Wireless or Portable Probes ATO-CS-306 (Wireless IoT)
    Chemical & Wastewater Handle concentrated acids & heavy scaling 4-Electrode Sensors (Anti-fouling design) ATO-CS-CON630D (Digital 4-Electrode)


    Tips for Installing Conductivity Sensor

    For reliable data and a longer sensor lifespan, follow these three essential engineering rules:

    Rule 1: Always Upward Flow

    Install the sensor in a vertical pipe section with upward flow. This ensures the pipe is always full and flushes out air bubbles that cause erratic readings.

    Upward flow ensures full pipe for conductivity sensor measurement.

    Rule 2: The 45° Mounting Rule.

    On horizontal pipes, mount the probe at a 45° angle. This prevents air bubbles from insulating the electrodes at the top and keeps sediment from burying the sensor at the bottom.

    Correct 45 degree angle conductivity sensor installation avoids bubbles.

    Rule 3: Avoid the 'Wall Effect' (2cm Minimum Clearance)

    Maintain at least 2cm of clearance between the sensor and the pipe wall to prevent the pipe material from interfering with the electrical field. For Inductive sensors, ensure the probe is centered; proximity to metal walls can distort the magnetic field, leading to a 3-5% measurement error.

    Frequently Asked Questions

    Q: When is an Inductive Conductivity Sensor better than a contacting model?

    A: Choose inductive sensors for "dirty," scaling, or highly corrosive liquids. Their non-contact design prevents the electrode "poisoning" and degradation common in harsh chemical processes.

    Q: Can ATO Conductivity Sensors measure TDS and Salinity directly?

    A: Yes. ATO digital conductivity sensors are designed with built-in conversion algorithms. These conductivity sensors support real-time output of TDS (mg/L) and Salinity (PSU/PPT) via RS485 Modbus-RTU, eliminating the need for manual calculation or external conversion tables.

    Q: Can pipe materials interfere with Inductive Sensor accuracy?

    A: Yes. Since inductive technology uses magnetic fields, metal pipes can cause interference. Ensure at least 2cm of clearance between the probe and the wall for precise readings.

    Q: How often should I calibrate my Inductive Conductivity Sensor?

    A: For chemical or wastewater use, we recommend a monthly check. While inductive models resist fouling better than contacting probes, regular verification ensures accuracy in aggressive media.