The Mettler-Toledo Conductivity Sensor InLab 741-ISM 2-pol Cell ATC is a robust and accurate sensor designed for low conductivity measurements in ultrapure and pure water applications. Featuring a 2-pole cell and integrated ATC (Automatic Temperature Compensation), this sensor delivers precise results with Intelligent Sensor Management (ISM) technology for seamless calibration and data management.
This sensor is ideal for laboratories requiring high-precision conductivity measurements in pure water analysis.
It is a robust and accurate sensor designed for low conductivity measurements in ultrapure and pure water applications. Featuring a 2-pole cell and integrated ATC (Automatic Temperature Compensation), this sensor delivers precise results with Intelligent Sensor Management (ISM) technology for seamless calibration and data management.
Yes. It is designed for low conductivity measurements in ultrapure and pure water applications, and offers a cell type of 2-pole cell optimized for low conductivity measurements and a measuring range of 0.001 to 500 µS/cm to support this kind of work.
It has a cell type of 2-pole cell optimized for low conductivity measurements, a measuring range of 0.001 to 500 µS/cm and a temperature range of 0 to 100 °C, and is supplied under manufacturer part number 30014094.
It offers accurate conductivity readings by compensating for temperature changes, stores calibration and sensor data for easy integration with compatible meters, typically comes with a fixed cable and suitable connector for Mettler-Toledo meters and designed for reliable use in laboratory and industrial environments.
For low conductivity measurements in ultrapure and pure water applications, the Mettler-Toledo model is the better choice, offering a cell type of 2-pole cell optimized for low conductivity measurements, a measuring range of 0.001 to 500 µS/cm and a temperature range of 0 to 100 °C. The Xylem WTW model offers K = 0.1 for accurate low-conductivity measurements and built for high-performance and longevity as an alternative, while the Mettler-Toledo model's accurate conductivity readings by compensating for temperature changes and stores calibration and sensor data for easy integration with compatible meters help make it a strong fit for low conductivity measurements in ultrapure and pure water applications.
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