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In the wastewater treatment industry, strict management of the quality of discharged water is required. In particular, the concentration of residual chlorine is an important indicator for assessing environmental impact. Maintaining an appropriate residual chlorine concentration contributes not only to compliance with regulations but also to environmental conservation. The ATI Q46H/62-63 type residual chlorine meter employs a diaphragm-type sensor and can directly measure free chlorine, total chlorine, and combined chlorine without the need for reagents. 【Usage Scenarios】 - Management of discharged water at wastewater treatment plants - Management of discharged water from septic tanks - Water quality testing 【Benefits of Implementation】 - Optimization of water quality management through accurate measurement of residual chlorine concentration - Reduction of reagent costs - Improvement of measurement accuracy through pH correction functionality
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In the boiler industry, it is important to properly manage the residual chlorine concentration in boiler water to prevent corrosion of pipes and equipment. Corrosion can shorten the lifespan of equipment and increase the risk of operational shutdowns. The ATI Q46H/62-63 type residual chlorine meter employs a diaphragm-type sensor to accurately measure the residual chlorine concentration in boiler water, contributing to corrosion prevention. 【Application Scenarios】 - Boiler water treatment plants - Cooling water systems - Pure water production processes 【Benefits of Implementation】 - Reduction of equipment issues due to corrosion - Extension of equipment lifespan - Achievement of stable operations
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In the cooling tower industry, water quality management is crucial to suppress the growth of Legionella bacteria. Particularly in cooling towers where temperatures are high and water tends to stagnate, proper management of residual chlorine concentration is essential to reduce the risk of Legionnaires' disease. Inadequate water quality management can promote the growth of Legionella bacteria and potentially cause health hazards. The ATI Q46H/62-63 type residual chlorine meter employs a diaphragm-type sensor and can directly measure residual chlorine concentration without the need for reagents. 【Usage Scenarios】 - Water quality management for cooling towers - Measures against Legionella bacteria - Measurement of free chlorine, effective chlorine, and combined chlorine (monochloramine) 【Benefits of Implementation】 - Reduction of Legionnaires' disease risk - Increased efficiency in water quality management - Accurate understanding of residual chlorine concentration
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In the pharmaceutical industry, the accurate management of residual chlorine concentration is essential to ensure product quality during the production of pure water. Residual chlorine plays a crucial role in reducing the risk of microbial contamination in the manufacturing process, but excessive residual chlorine can negatively impact product quality. The ATI Q46H/62-63 type residual chlorine meter can directly measure residual chlorine without the use of reagents, contributing to the simplification of measurements and improvement of accuracy. 【Usage Scenarios】 - Pure water production plants - Pharmaceutical manufacturing processes - Research facilities 【Benefits of Implementation】 - Improved product quality through accurate monitoring of residual chlorine concentration - Reduction in reagent purchase costs and management workload - Increased reliability of measurement data
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In pool hygiene management, water quality is extremely important for protecting the health of users. In particular, the concentration of residual chlorine is one of the key indicators for evaluating pool water quality. Maintaining an appropriate residual chlorine concentration is essential to suppress the growth of bacteria and viruses, providing a safe swimming environment. If measuring the residual chlorine concentration is cumbersome, management can become complicated, leading to potential oversights. The ATI Q46H/62-63 type residual chlorine meter requires no reagents and can directly measure free chlorine, effective chlorine, and combined chlorine. This streamlines pool water quality management and ensures user safety. 【Usage Scenarios】 - Measuring residual chlorine concentration in pools - Water quality management in bathing facilities - Monitoring circulation filtration systems 【Benefits of Implementation】 - Improved safety through accurate water quality management - Reduction in reagent costs - Reduced management burden through efficient measurement
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In the food industry, hygiene management during the manufacturing process is extremely important, and proper management of residual chlorine concentration during the sterilization process is essential to ensure product quality and safety. If the residual chlorine concentration is inappropriate, the sterilization effect may be insufficient, increasing the risk of food poisoning. The ATI Q46H/62-63 type residual chlorine meter employs a diaphragm-type polarographic sensor, allowing for the direct measurement of free chlorine, active chlorine, and combined chlorine (monochloramine) without the need for reagents. This enables accurate monitoring of residual chlorine concentration during the sterilization process in food manufacturing and facilitates appropriate management. 【Usage Scenarios】 - Monitoring residual chlorine concentration during the sterilization process in food factories - Measuring residual chlorine concentration in drinking water sterilization treatment - Managing residual chlorine concentration in food washing water 【Benefits of Implementation】 - Reduction in reagent purchase costs - Stabilization of product quality through improved measurement accuracy - Early detection of abnormalities through rapid measurement - Increased lifespan due to diaphragm-type sensors
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In the water supply industry, water quality management is crucial for ensuring a safe water supply. In particular, the concentration of residual chlorine must be strictly managed as an indicator of disinfection effectiveness. If the residual chlorine concentration is too low, the safety of the water is compromised, and if it is too high, there are concerns about its effects on human health. The ATI Q46H/62-63 type residual chlorine meter employs a diaphragm-type sensor, allowing for direct measurement of residual chlorine without the use of reagents. This enables accurate and rapid water quality management, contributing to the supply of safe water. 【Application Scenarios】 - Measurement of residual chlorine concentration at water purification plants - Monitoring of residual chlorine concentration in distribution networks - Management of residual chlorine concentration in water storage tanks 【Benefits of Implementation】 - Optimization of water quality management through accurate understanding of residual chlorine concentration - Reduction in reagent purchase costs - Prompt response to abnormalities due to rapid measurement
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In the beverage industry, managing water quality during the manufacturing process is crucial to ensure product safety. In particular, the concentration of residual chlorine is an important indicator for maintaining a balance between sterilization effectiveness and safety. Inadequate measurement of residual chlorine concentration can lead to product quality deterioration and health risks for consumers. The ATI Q46H/62-63 type residual chlorine meter can directly measure free chlorine, effective chlorine, and combined chlorine (monochloramine) without the need for reagents. This contributes to the efficient management of drinking water quality and the provision of safe products. 【Application Scenarios】 - Water quality management in beverage manufacturing - Cleaning water management in food factories - Measurement of residual chlorine in groundwater and well water 【Benefits of Implementation】 - Improved quality management through accurate understanding of residual chlorine concentration - Reduction in reagent purchase costs - Decreased operational burden through measurement efficiency
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The Q46H/62-63 residual chlorine meter adopts a polarographic membrane sensor, allowing for the direct measurement of free chlorine, active chlorine, and combined chlorine (monochloramine) without the need for reagents. Due to its diaphragm-type sensor, it is less affected by changes in the measurement liquid or impurities, enabling the measurement of residual chlorine in electrolyzed hypochlorous water, seawater, wastewater, hot springs, and pure water. Additionally, since the electrode does not come into direct contact with the measurement liquid, it is less prone to contamination and has a long lifespan. By adding a pH sensor option, simultaneous measurement of chlorine and pH is possible. The pH correction function allows for measurements even when the pH value is high or fluctuating. It has a wide measurement range, capable of measuring low concentrations below 1 mg/L and high concentrations above 100 mg/L with a single unit. 【Features】 ■ No reagents required ■ Easy installation ■ Wide and flexible measurement range ■ Cost-effective *Demo units are available, so please feel free to inquire. *For more details, please refer to the PDF document or feel free to contact us.
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The "Q46H/79PR type" is a total chlorine meter that allows for inline continuous measurement without reagents. It is suitable for managing effective chlorine (free chlorine and combined chlorine) after chloramine treatment and disinfection. Additionally, it can be used in seawater or low conductivity environments without the need for chemical reagent additions. Furthermore, options for pH measurement and additional outputs are available. 【Features】 ■ Inline continuous measurement without reagents ■ No need for chemical reagent additions ■ Usable in seawater and low conductivity environments ■ Options for pH measurement and additional outputs available *For more details, please refer to the PDF document or feel free to contact us.
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The Q46H/79S total chlorine meter is resistant to interference from contaminants and can measure total chlorine concentration with high precision. It features a unique structure that prevents contact between the measurement liquid and the sensor, and it has a proven track record in special applications worldwide, such as drinking water, wastewater, and cooling towers. 【Features】 - High precision - Capable of handling a wide range of applications - Measures by gasifying the sample liquid
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The "Q46H/65" is a chlorine dioxide meter suitable for disinfection and sterilization systems, as it can continuously produce chlorine dioxide water. Being a diaphragm type, it can operate in environments with low conductivity and many impurities. Additionally, it has multiple outputs, including 4-20mA analog output, PID control, and digital communication, making it applicable for measuring any chlorine dioxide water. 【Features】 ■ Displays chlorine dioxide and pH on the indicator ■ Remote monitoring and recording capabilities ■ Ideal for disinfection and sterilization systems ■ Diaphragm type, suitable for environments with low conductivity and many impurities ■ Applicable for measuring any chlorine dioxide water *For more details, please refer to the PDF document or feel free to contact us.
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The "F12 model" is a hydrogen peroxide concentration meter for safety management and concentration management. It can measure high concentration ranges (0-2000ppm) used in sterilization processes and low concentration ranges (0-100ppm) to check residual concentrations after aeration. Additionally, it has a strong track record with major pharmaceutical companies, allowing for measurements that are close to theoretical values due to calibration with actual gas. 【Features】 ■ Strong track record with major pharmaceutical companies ■ Capable of measuring values close to theoretical values due to calibration with actual gas *For more details, please refer to the PDF document or feel free to contact us.
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The "F12 model" is a peracetic acid gas concentration meter. It is a fixed installation type, and with various measurement ranges and options available, it can accommodate a wide range of specifications. In addition to this product, we also offer a rich selection of sensors for hydrogen peroxide, peracetic acid, chlorine dioxide, ozone, EOG gas, and more. 【Sensor Selection Table】 ■ Measured Gas: Peracetic Acid / Peracetic Acid / Acetic Acid ■ Sensor Model: 00-1704 / 00-1705 / 00-1045 ■ Minimum Range: 0-1ppm / 0-10ppm / 0-100ppm ■ Maximum Range: 0-5ppm / 0-100ppm / 0-500ppm ■ Standard: 2ppm / 20ppm / 100ppm *For more details, please refer to the PDF document or feel free to contact us.
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The "F12 model" is an ozone gas concentration meter. The gas detectors from ATI that we handle can measure over 30 types of toxic gases and oxygen. They are used in various locations such as plants and laboratories. Additionally, we also offer "EOG gas concentration meters," "chlorine dioxide gas concentration meters," and "formaldehyde gas concentration meters." 【Sensor Selection Table】 ■ Measured Gas: Ozone ■ Sensor Model: 00-1163 / 00-1008 / 00-1009 / 00-1358 ■ Minimum Range: 0–500 ppb / 0–1 ppm / 0–5 ppm / 0–200 ppm ■ Maximum Range: 0–2000 ppb / 0–5 ppm / 0–200 ppm / 0–1000 ppm ■ Standard: 0–1000 ppb / 2 ppm / 20 ppm / 1000 ppm ■ Auto Test Generator: 00-1538 * For more details, please refer to the PDF document or feel free to contact us.
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The "F12 type" is a chlorine dioxide gas concentration meter. The gas detectors from ATI that we handle can measure over 30 types of toxic gases and oxygen. They are used in various locations such as plants and laboratories. Additionally, we also offer "EOG gas concentration meters," "ozone gas concentration meters," and "formaldehyde gas concentration meters." 【Sensor Selection Table】 ■ Measured Gas: Chlorine Dioxide ■ Sensor Model: 00-1004 / 00-1005 / 00-1359 / 00-1425 ■ Minimum Range: 0-1ppm / 0-5ppm / 0-200ppm / 0-1ppm ■ Maximum Range: 0-5ppm / 0-200ppm / 0-1000ppm / 0-5ppm ■ Standard: 2ppm / 20ppm / 200ppm / 5ppm ■ Auto Test Generator: 00-1538 / 00-1538 / - / 00-1538 *For more details, please refer to the PDF document or feel free to contact us.
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The "F12 model" is a formaldehyde gas concentration meter. The gas detectors from ATI that we handle can measure over 30 types of toxic gases and oxygen. They are used in various locations such as plants and laboratories. Additionally, we also offer "EOG gas concentration meters," "ozone gas concentration meters," and "chlorine dioxide gas concentration meters." 【Sensor Selection Table】 ■ Measured Gas: Formaldehyde ■ Sensor Model: 00-1040 / 00-1349 ■ Minimum Range: 0-20 ppm / 0-500 ppm ■ Maximum Range: 0-200 ppm / 0-2000 ppm ■ Standard: 20 ppm / 1000 ppm ■ Auto Test Generator: 00-1539 *For more details, please refer to the PDF document or feel free to contact us.
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The "F12 model" is an EOG gas concentration meter. The gas detectors from ATI that we handle can measure over 30 types of toxic gases and oxygen. They are used in various locations such as plants and laboratories. Additionally, we also offer "ozone gas concentration meters," "chlorine dioxide gas concentration meters," and "formaldehyde gas concentration meters." 【Sensor Selection Table】 ■ Measured Gas: Ethylene Oxide ■ Sensor Model: 00-1039 ■ Minimum Range: 0–20 ppm ■ Maximum Range: 0–200 ppm ■ Standard: 20 ppm ■ Auto Test Generator: 00-1539 *For more details, please refer to the PDF document or feel free to contact us.
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It supports the detection of over 30 types of gases, including hydrogen fluoride, ozone, and chlorine. By simply attaching the target gas sensor module to the gas detector, you can detect low-concentration gas leaks and measure high-concentration gas levels. 【Features】 ■ Easy to replace due to the use of smart sensors, eliminating the need for on-site calibration. ■ Intrinsically safe explosion-proof structure (ATEX, IECEx) - Is type only ■ Large and easy-to-read LCD display *For more details, please refer to the PDF document or feel free to contact us.
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The "Q46F model" can be used for continuous measurement of fluoride ions in wastewater, effluent, and drinking water. It employs a fluoride ion selective electrode (ISE) and can measure fluoride ions from 0.1 PPM to a maximum of 1000 PPM. With its simple structure, it allows for low-cost continuous measurement of fluoride ions. *For more details, please refer to the PDF document or feel free to contact us.
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The "Q46S/66 model" is a measuring device that can measure residual sulfite ions and reduce the consumption of chemicals that are being used excessively. This product allows for the measurement of sample water without contact between the sensor and the fluid, enabling the removal of wastewater for measurement. A small amount of residual sulfite ions during dechlorination treatment is effective for complete dechlorination, and measuring the concentration of residues can control the chemical dosing, significantly reducing chemical costs. 【Features】 ■ Selectively converts sulfite ions to sulfur dioxide (sulfurous gas) for measurement ■ Sample water and sensor do not come into contact with the fluid, allowing for the removal of wastewater for measurement ■ Power supply can be selected as 115 or 230 VAC, 60/60 Hz ■ Maintains stable costs for chemicals ■ Controls chemical dosing through the measurement of residue concentration, significantly reducing chemical costs ■ Allows for savings on chemicals *For more details, please refer to the PDF document or feel free to contact us.
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The "Q46H/64 type" dissolved ozone meter can continuously measure dissolved ozone in water without the need for reagents. It employs a diaphragm-type polarographic sensor, which means the electrode does not come into direct contact with the measuring liquid. As a result, it is less affected by impurities and can be used for measurements in wastewater. The electrode is resistant to contamination, ensuring a long lifespan and cost-effective usage. Additionally, it can handle a wide range of concentrations, from low levels below 100 ppb to high levels above 100 ppm. 【Features】 ■ Strong resistance to contamination achieved through the diaphragm-type polarographic sensor that protects the electrode ■ No adjustment needed after sensor replacement ■ Large LCD display ■ Optional wide-range measurement from 0 to 200 PPB to 0 to 200 PPM ■ Standard PID control function can be assigned to analog output *For more details, please refer to the PDF document or feel free to contact us.
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The "Q4Q46/88 model" is an SS meter that can measure and monitor particles in various water and wastewater in real-time. Measurements can be taken by inserting an immersion-type sensor into the process tank, or for a wide range of measurements, a sensor using optical backscatter technology is employed. The measurement results are displayed on the Q46 electronic unit located near the sensor. 【Specifications】 ■ Measurement target: SS concentration ■ Measurement range: 0-100.0 / 0-1000 mg/l, 0-10.00 g/l ■ Sensor type: Flow-through type ■ Equipped with automatic air cleaning function *For more details, please refer to the PDF document or feel free to contact us.
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The turbidity meter "Q46 / 76 model" offers precision and reliability for low-range turbidity measurements and is widely used around the world. It is designed to be suitable for drinking water systems and industrial water treatment. 【Features】 ■ High precision low-range turbidity measurement ■ Proven track record worldwide ■ Optional features available *For more details, please refer to the PDF document or feel free to contact us.
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The Q46D dissolved oxygen meter is an ideal measurement control device that can maintain reliability for monitoring measurements throughout the entire year by utilizing an automatic cleaning function. It has a proven track record in biological processes at wastewater treatment plants.
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In the water treatment industry, accurate measurement of residual hydrogen peroxide concentration in wastewater is required. Hydrogen peroxide is used for disinfection and odor control, but excessive concentrations can pose a burden on the environment. The Q46/84 hydrogen peroxide meter continuously measures the concentration of hydrogen peroxide, enabling efficient control to address this issue. Being a reagent-free type, it helps reduce running costs while contributing to the optimization of the water treatment process. 【Application Scenes】 - Wastewater treatment facilities - Water purification plants - Industrial wastewater management 【Benefits of Implementation】 - Optimization of hydrogen peroxide usage - Reduction of environmental impact - Increased efficiency of water treatment processes
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In infection control at hospitals, proper concentration management of disinfectants is crucial. Hydrogen peroxide is used as an effective disinfectant, but if its concentration is not appropriate, it may not be sufficiently effective or could pose risks due to excessive use. The Q46/84 hydrogen peroxide meter continuously measures the concentration of hydrogen peroxide in wastewater, enabling proper concentration management. This is expected to enhance the efficiency and safety of infection control measures. 【Usage Scenarios】 - Wastewater treatment facilities within hospitals - Areas where concentration management of disinfectants is necessary - Monitoring the use of hydrogen peroxide in infection control 【Benefits of Implementation】 - Optimization of disinfection effectiveness - Reduction of risks from excessive use - Increased efficiency of infection control measures
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In the food industry, hygiene management during the manufacturing process is extremely important. In particular, proper concentration management of hydrogen peroxide is essential to maintain food quality and reduce risks such as food poisoning. Improper concentration management can lead to reduced sterilization effectiveness or impact on food due to excessive use. The Q46/84 hydrogen peroxide meter continuously measures the concentration of hydrogen peroxide, enabling efficient sterilization management. 【Usage Scenarios】 - Sterilization processes in food manufacturing lines - Wastewater treatment in food processing facilities - Cleaning of food storage containers 【Benefits of Implementation】 - Real-time monitoring of hydrogen peroxide concentration to maintain optimal sterilization effectiveness - Reduction of excessive chemical use, contributing to cost savings and reduced environmental impact - Improvement in product quality and safety
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In the pharmaceutical industry, validating the sterilization process is essential to ensure product quality. Hydrogen peroxide is widely used as a sterilant, and managing its concentration is a critical factor that affects sterilization efficacy. Improper concentration management can lead to sterilization failures and product contamination. The Q46/84 hydrogen peroxide meter continuously measures the concentration of hydrogen peroxide, enabling efficient management of the sterilization process. 【Application Scenarios】 - Sterilization processes in pharmaceutical manufacturing - Environmental monitoring in clean rooms - Management of hydrogen peroxide concentration in manufacturing water 【Benefits of Implementation】 - Improved reliability of the sterilization process - Cost reduction through optimization of hydrogen peroxide usage - Enhanced product quality and compliance adherence
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In the semiconductor manufacturing industry, managing the cleanliness of the manufacturing process is a crucial factor that affects product quality. In particular, the concentration management of hydrogen peroxide (H2O2) used in the cleaning process is essential for preventing contamination on the wafer surface and improving yield. Improper concentration management can lead to product defects and performance degradation. The Q46/84 hydrogen peroxide meter allows for continuous measurement of hydrogen peroxide concentration, enabling efficient cleanliness management. 【Usage Scenarios】 - Wastewater treatment processes in semiconductor manufacturing plants - Wafer cleaning processes - Chemical management 【Benefits of Implementation】 - Improved yield through optimization of hydrogen peroxide concentration - Reduced running costs due to reagent-free operation - Early detection of anomalies through real-time concentration monitoring
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The Q46/84 type hydrogen peroxide meter is designed to continuously measure H2O2 in aqueous solutions. Hydrogen peroxide is used for disinfection, odor control, oxygen treatment, and various controls such as cyanide oxidation, and measuring it allows for efficient control. *We also have demo units available, so please feel free to contact us.*
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The Q46/85 peracetic acid meter features a diaphragm-type sensor, making it resistant to interfering substances and capable of handling water quality with low conductivity. It is used for cleaning pipes in the food industry, disinfecting peracetic acid (PAA) production equipment, washing food, and disinfecting cooling water systems. It is a reliable measuring instrument for online real-time measurement of peracetic acid (PAA). Additionally, it is not affected by changes in the concentration of hydrogen peroxide present in the solution.
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The Q46P/R type pH/ORP meter is a highly accurate, reliable, and versatile measuring instrument. It is used for the routine monitoring of pH values in various liquid processing systems, including water supply and drainage, wastewater, cooling water, pure water, cleaning water in food manufacturing processes, and cooling water in chemical plants, among many others.
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The Q46C2 conductivity meter is a highly precise and reliable measuring instrument for measuring the high purity water required in pure water systems. It features a large, easy-to-read LED display, and the sub-display can show temperature and other information. Since it may be appropriate to display values in resistivity units, the Q46C2 conductivity meter allows for the measurement unit to be changed.
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The ATI Q46C4 type 4-electrode conductivity meter is a water quality meter that meets the conductivity measurement needs of most liquids. It has a proven track record in drinking water, cooling water, chemical solutions, and other water treatment systems.
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The A14/A11 series is a gas detector that can add various functions with just one unit. Since the functions can be customized, it is adopted by major pharmaceutical factories, semiconductor manufacturing plants, and research laboratories in Japan. It can be used for both simple and complex applications, making it suitable for indoor gas detection, safety management systems, and more! 【Features】 ■ Capable of measuring up to 12 locations ■ Sensor cables can be extended up to 300m ■ Usable for both simple and complex applications
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It is a device for removing moisture from gas that contains moisture. It can also be used with ATI gas detectors and gas detectors from other manufacturers.
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Generating approximately 0.8 ppm of ozone gas at about 500 cc/min.
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The 2-wire transmitter (wet gas detector) can measure the concentration of wet gases. We have a proven track record of confirming removal after scrubber treatment. Measurable gases: Chlorine, chlorine dioxide, bromine, ozone, hydrogen fluoride, hydrogen chloride, hydrogen 【Features】 ■ Cost-effective and easy to handle ■ Capable of detecting a variety of gases *For more details, please refer to the PDF document or feel free to contact us.
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The A12-17 type combustible gas detector can reliably measure combustible gases. An automatic testing function can be added as an option, allowing for a reduction in labor costs.
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The "Batch Control System for Drum Pumps / Electric Motor Type (for Low Viscosity)" features a clear LCD display and allows for easy setting and calibration with just button operations. It employs a highly accurate paddle wheel flow meter, making it ideal for small packaging and semi-automated applications. Available in PP, PVDF, and SUS models, it can handle various fluids. It supports the setting and saving of up to 10 different liquids. Additionally, it comes with a remote start function. 【Features】 ■ Three-color backlight display ■ Pulse output relay ■ Multilingual functionality ■ Chemical resistance ■ Easy operation *For more details, please refer to the catalog. Feel free to contact us with any inquiries.
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By measuring the turbidity during the stirring and backwashing of the accumulated material at the bottom of the tank, optimal filter cleaning can be achieved.
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We handle ATI's "Dissolved Ozone Meter" and "D16 Portable Gas Detector," which allow for easy and reliable measurement of ozone concentration. They have a wide measurement range, excellent operability, and visibility of displays, making them widely adopted across various industries. 【Features】 "Dissolved Ozone Meter Q46H/64 Model" - Compatible with ProfibusDP, Modbus, and Ethernet - Supports two separate 4-20mA analog outputs - pH measurement monitoring is also possible - Large LCD display with backlight - Standard equipped with three SPDT relays "D16 Portable Gas Detector" - Usable with one hand - Large LCD allows for confirmation of ozone concentration and alarm messages even in dark places - Powered by D-cell alkaline batteries and rechargeable batteries - Equipped with data logger functionality, manageable via computer - Offers more than 30 sensor modules, not just for ozone *We also handle spare parts for the old model (C16). *For more details, please refer to the materials. Feel free to contact us with any inquiries.
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This pump is ideal for the transfer of corrosive chemical fluids and viscous fluids. The housing is made of homogeneous PE and PTFE. A notable feature is that the screw connection can rotate 180 degrees. 【Main Features】 ■ Optimal design values ■ Flexible mounting methods ■ Homogeneous and robust structure ■ Highest quality diaphragm For more details, please refer to the catalog or feel free to contact us.
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In the cosmetics industry, precise mixing of raw materials is essential to ensure product quality and safety. This is especially important when handling delicate ingredients, as minimizing the risk of contamination and achieving uniform mixing is crucial. Improper mixing can lead to product quality deterioration and skin irritation. Our sanitary diaphragm pump is compatible with CIP/SIP systems, allowing for cleaning and disinfection without disassembly or reassembly. This helps maintain a high level of hygiene and ensures product safety. 【Usage Scenarios】 - Mixing of cosmetic raw materials - Emulsification and dispersion processes - Use in cleanroom environments 【Benefits of Implementation】 - Improved product quality due to high hygiene standards - Reduced maintenance time through tool-free disassembly - Increased operational efficiency due to CIP/SIP compatibility
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