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Shanghai Russell Technology Co., Ltd

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Industrial high-temperature glass electrode with temperature compensation for special environments

NegotiableUpdate on 01/15
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Overview
Industrial high-temperature glass electrodes with temperature compensation for special environments. This series of electrodes is an industrial high-temperature glass electrode with temperature compensation, designed for various working conditions, suitable for special scenarios such as high temperature and HF, integrated with temperature compensation to ensure accurate and stable measurement.
Product Details

Special environment industrial electrode

This series of industrial electrodes is a temperature compensated glass electrode designed specifically for special working conditions. It integrates temperature electrodes with specifications such as Pt100/Pt1000, which can automatically correct the impact of temperature on measurement, ensuring detection accuracy in complex environments. It is suitable for special industrial scenarios such as high temperature, high pressure, and fluorine-containing corrosion.

1、 Product classification and core parameters

1. High temperature pH electrodes 8671W, 8674W

Model: 8671W, 8674W

Measurement parameter: pH

Core features:

Adopting a special structural design to adapt to high temperature environments

8671W temperature resistance 0-100 ℃; 8674W temperature resistance 0-130 ℃;

Built in temperature compensation electrode, automatically compensates for temperature deviation, ensuring accurate pH measurement;

Capable of withstanding a pressure of 0.3MPa and adapting to high pressure industrial processes;

Universal VP/S7/S8 plug, compatible with mainstream industrial testing equipment.

2. High temperature ORP electrodes 8672W, 8673W

Model: 8672W, 8673W

Measurement parameter: ORP

Core features:

Special structure suitable for high temperature scenarios 8672W, temperature resistance 0-130 ℃; 8673W temperature resistance 0-100 ℃;

Equipped with temperature compensation function to eliminate the interference of temperature on ORP potential measurement;

Capable of withstanding a pressure of 0.3MPa and adapting to high pressure working conditions;

Universal VP/S7/S8 plug for easy system integration.

3. HF specific pH electrode 8675W

Model: 8675W

Measurement parameter: pH

Core features:

Specially designed for HF environments, capable of withstanding fluoride concentrations up to 4000ppm;

Built in temperature compensation electrode, suitable for temperature range of 0-90 ℃, ensuring pH measurement accuracy in acidic and highly corrosive environments;

Capable of withstanding a pressure of 0.3MPa, meeting the requirements of industrial processes;

Universal VP/S7/S8 plug, compatible with conventional testing equipment.

2、 Core advantages

Accurate and stable: with temperature compensation function, automatically correcting temperature errors, and reliable measurement data;

Scenario adaptation: covering special industrial environments such as high temperature, high pressure, and strong corrosion;

Strong compatibility: Universal plug design, easy to integrate with existing detection systems.


3、 Applicable scenarios



Electrode model core functionality Adaptation scenario example
8671W High temperature pH detection (0-100 ℃) PH monitoring of medium temperature chemical reaction kettle and pH control of conventional high-temperature water treatment system
8672W High temperature ORP detection (0-130 ℃) High temperature oxidation-reduction reaction process, ORP monitoring of high-temperature electroplating solution
8673W High temperature ORP detection (0-100 ℃) ORP monitoring of medium temperature fermentation system and detection of oxidation potential of solution after pharmaceutical high-temperature sterilization
8674W High temperature pH detection (0-130 ℃) PH monitoring of ultra-high temperature reactor and pH analysis of high-temperature steam condensate water
8675W Fluorine pH detection (0-90 ℃) PH monitoring of fluorine-containing chemical production wastewater and pH detection of fluoride synthesis process