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In the field of atmospheric measurement, accurate monitoring of air pollutants is essential. In particular, measuring the concentrations of oxygen (O₂) and carbon dioxide (CO₂) around factories and research facilities is crucial for environmental conservation and safety management. Inaccurate measurements can reduce the precision of environmental impact assessments and risk management. The Quantek 902P oxygen/carbon dioxide meter accurately measures the concentrations of oxygen and carbon dioxide in the atmosphere with a wide measurement range and high precision, supporting environmental monitoring. 【Usage Scenarios】 - Atmospheric measurement around factories - Gas concentration measurement in research facilities - Environmental surveys 【Benefits of Implementation】 - Reduction of environmental risks through accurate gas concentration measurements - Long-term monitoring through data logging capabilities - Ability to meet diverse needs with a wide measurement range
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In manufacturing process management, maintaining product quality and ensuring safety are essential. In particular, accurate management of oxygen (O₂) and carbon dioxide (CO₂) concentrations is required in environments such as gas atmospheres and fermentation processes. Inappropriate gas concentrations can lead to product quality deterioration and decreased efficiency in the manufacturing process. The Quantek 902P oxygen/carbon dioxide meter addresses these challenges and supports the optimization of process management. 【Usage Scenarios】 - Gas mixing systems - Biotechnology - Fermentation processes - Fruit storage facilities - Welding gas management - Controlled atmosphere rooms (CA rooms) 【Benefits of Implementation】 - Improved product quality - Enhanced manufacturing process efficiency - Ensured safety - Cost reduction
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In experimental environments within research fields, accurate measurement and management of oxygen (O₂) and carbon dioxide (CO₂) concentrations are essential to ensure the reproducibility and safety of experiments. Particularly in cell culture, gas mixing experiments, and environmental control experiments, the composition of gases significantly affects the experimental results, necessitating precise gas concentration measurements. The Quantek 902P oxygen/carbon dioxide meter is designed to meet these needs. 【Usage Scenarios】 - Cell culture experiments - Gas mixing experiments - Environmental control experiments - Fermentation processes 【Benefits of Implementation】 - Improved reproducibility of experiments - Enhanced reliability of experimental results - Realization of a safe experimental environment - Wide range of CO₂ measurement options available
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In the food packaging industry, managing the concentrations of oxygen and carbon dioxide within packaging is crucial for maintaining product freshness and quality. High oxygen levels can accelerate the oxidation of food, potentially leading to quality degradation and loss of flavor. Additionally, carbon dioxide levels can affect the shelf life of food products. The Quantek 902P Oxygen/Carbon Dioxide Meter provides accurate gas concentration measurements to address these challenges and contribute to the preservation of food quality. 【Usage Scenarios】 - Food packaging processes - Refrigerated and frozen storage - Quality control departments 【Benefits of Implementation】 - Accurate understanding of gas concentrations within packaging, leading to improved quality management - Preservation of food freshness and extension of shelf life - Increased reliability from customers
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In the air conditioning industry, proper management of refrigerants is essential for maintaining equipment performance and energy efficiency. Inadequate refrigerant flow can lead to decreased cooling efficiency and potential compressor failure. The FT221 portable ultrasonic flowmeter for liquids, FlowT, accurately measures refrigerant flow and addresses these challenges. 【Usage Scenarios】 - Measuring refrigerant flow in air conditioning systems - Early detection of refrigerant leaks - Equipment maintenance 【Benefits of Implementation】 - Efficient operation through visualization of refrigerant flow - Reduced risk of cost increases due to refrigerant leaks - Prolonged equipment lifespan
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In the water supply industry, leaks can lead to significant losses, necessitating rapid detection and response. Accurate flow measurement is essential for identifying leak locations. The FT221 can be easily installed without modifying the piping, streamlining flow measurement for leak detection. 【Use Cases】 - Leak investigation in water pipes - Flow monitoring in piping systems - Optimization of water billing 【Benefits of Implementation】 - Reduction of losses through early detection of leaks - Shortened investigation time due to rapid measurement - Cost savings by eliminating the need for piping work
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In the wastewater treatment industry, there is a demand for compliance with environmental regulations and optimization of treatment processes. In particular, ammonia concentration is an important indicator of water quality pollution, and accurate measurement is essential. Inadequate ammonia management increases the burden on the environment and carries the risk of regulatory violations. The Instran online ammonia meter measures ammonia concentration in wastewater in real-time, addressing these challenges. 【Use Cases】 - Monitoring effluent water quality at wastewater treatment facilities - Managing ammonia concentration in industrial wastewater - Managing ammonia concentration in aquaculture wastewater 【Benefits of Implementation】 - Rapid anomaly detection through real-time ammonia concentration monitoring - Reduction of running costs through optimization of the wastewater treatment process - Reliable compliance with environmental regulations
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In the land-based aquaculture industry, water quality management is crucial for maintaining the health and growth of seafood. In particular, ammonia is harmful to seafood, and it is essential to manage its concentration appropriately. High levels of ammonia can inhibit the growth of seafood and cause diseases, potentially negatively impacting aquaculture profitability. The Instran online ammonia meter continuously measures the ammonia concentration in water for land-based aquaculture, streamlining water quality management. 【Usage Scenarios】 - Monitoring water quality in tanks at land-based aquaculture farms - Early detection of rising ammonia levels - Optimization of water quality management 【Benefits of Implementation】 - Maintenance of seafood health and promotion of growth - Improvement of aquaculture profitability - Reduction of labor and costs associated with water quality management
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Free membership registrationIn the chemical plant industry, it is crucial to detect leaks of flammable gases early to prevent the risks of explosions and fires. In particular, extensive gas concentration monitoring within the plant is essential for maintaining safe operations. Traditional inspection methods have faced challenges due to the time and effort required to identify leak locations. The MSA IR5500 open-path gas detector monitors in real-time over distances of up to 150 meters, addressing everything from ppm-level minor leaks to LEL-level major leaks. 【Usage Scenarios】 * Gas leak monitoring in outdoor facilities of chemical plants * Concentration monitoring of flammable gases such as methane and propane * Overall safety management of the plant 【Benefits of Implementation】 * Rapid detection of extensive gas leaks to prevent accidents * Quick response enabled by real-time monitoring * Reduced maintenance burden
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Free membership registrationIn the oil and gas industry, it is important to minimize the risk of gas leaks at plants and bases. The leakage of flammable gases can lead to serious accidents such as explosions and fires. Therefore, a system that can cover a wide area and detect gas leaks quickly and accurately is required. The MSA IR5500 open-path gas detector can detect hydrocarbon gases such as methane and propane in real-time at distances of up to 150 meters, addressing these challenges. 【Usage Scenarios】 * Oil refining plants * Gas storage facilities * LNG bases * Pipelines 【Benefits of Implementation】 * Early detection of wide-area gas leaks * Reduction of accident risks * Support for safe operations * Minimization of damage through rapid response
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In the semiconductor manufacturing industry, even minor gas leaks in clean rooms can have serious impacts on product quality and manufacturing processes. Especially in environments using high-purity gases, even trace amounts of gas leaks are unacceptable. Gas leaks pose risks of reduced product yield and equipment failures. The CRYSOUND CRY8124 gas leak detection camera quickly and accurately detects gas leaks in clean rooms, addressing these issues. 【Usage Scenarios】 - Gas leak inspection of piping and equipment in clean rooms - Detection of gas leaks from semiconductor manufacturing equipment - Safety management within clean rooms 【Benefits of Implementation】 - Reduction of product defects due to gas leaks - Stabilization of manufacturing processes - Assurance of a safe working environment
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Free membership registrationAt power plants, it is important to minimize the risks of explosions and fires due to fuel leaks. In particular, rapid and accurate gas detection is required to ensure the safety of extensive equipment. Gas leaks can lead to equipment damage and operational shutdowns, resulting in potential economic losses. The MSA IR5500 open-path gas detector addresses these challenges in power plant safety management. 【Application Scenarios】 - Turbine buildings - Substations - Fuel storage areas - Cable trays - Other locations where hydrocarbon gas leaks may occur 【Benefits of Implementation】 - Early detection of extensive gas leaks to prevent accidents - Quick response times enabling prompt action - Easy integration with existing control systems through Modbus RTU and HART communication - Reduced maintenance burden and lower operational costs
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In experimental environments within research fields, accurate monitoring of CO2 concentration is essential. Particularly in scenarios such as cell culture and chemical reaction experiments, where CO2 concentration significantly impacts results, high-precision measurements are required. Inadequate management of CO2 concentration can compromise the reliability of experimental results. The Quantek 906 carbon dioxide meter measures CO2 concentration over a wide range of 0 to 100%, enhancing the reproducibility and reliability of experiments. 【Usage Scenarios】 - Cell culture experiments - Chemical reaction experiments - Environmental monitoring - Gas analysis 【Benefits of Implementation】 - Improved reliability of experimental results through accurate CO2 concentration measurements - Adaptability to diverse experiments due to a wide measurement range - Understanding environmental changes through continuous measurements - Increased efficiency in data output and analysis through optional features
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In the food processing industry, managing CO2 concentration in the manufacturing environment is crucial for maintaining product quality. Particularly in fermentation and packaging processes, CO2 levels significantly affect the flavor and shelf life of products. Improper management of CO2 concentration can lead to deterioration in product quality and safety issues. The Quantek 906 carbon dioxide meter accurately measures CO2 concentrations from 0 to 100%, supporting quality control in food processing. 【Usage Scenarios】 - Measuring CO2 concentration in food manufacturing processes - Monitoring CO2 concentration in food storage facilities - Managing CO2 concentration in the production of fermented foods 【Benefits of Implementation】 - Stabilization of product quality - Optimization of manufacturing processes - Improvement of food safety
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In the shipbuilding industry, the quality of welds affects the safety and durability of ships. Gas leaks due to welding defects can lead to serious accidents. Especially in welding operations that use high-pressure gases, it is crucial to detect even minor leaks early and take appropriate measures. CRYSOUND CRY8124 contributes to the efficiency of welding inspections and enhances safety by rapidly and accurately detecting minute gas leaks. 【Usage Scenarios】 - Inspection after welding - Leak testing of piping - Inspection of gas supply systems 【Benefits of Implementation】 - Improved quality control of welds - Enhanced safety - Reduced inspection time - Cost savings
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In power plants, safe operation of equipment and efficient management are required. Gas leaks can lead to decreased equipment performance and accidents, making early detection and countermeasures crucial. The CRYSOUND CRY8124 gas leak detection camera quickly detects even minor gas leaks, contributing to safety management and equipment maintenance in power plants. 【Usage Scenarios】 * Leak inspection of compressed air piping * Leak inspection from gas piping * Detection of abnormal sounds from equipment such as turbines 【Benefits of Implementation】 * Reduction of energy loss due to gas leaks * Improved safety of equipment * Decreased maintenance costs
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In the aerospace industry, fuel leaks pose a significant safety risk and can lead to accidents. Fuel leaks not only cause a decline in aircraft performance and worsen fuel efficiency, but they also contribute to environmental pollution. The CRY8124 gas leak detection camera addresses these issues by quickly and accurately detecting even the smallest gas leaks. This ensures the safety of aircraft and contributes to reducing operational costs. 【Usage Scenarios】 - Inspection of aircraft fuel tanks, piping, and around engines - Leak testing of fuel systems in space rockets - Quality control in aircraft manufacturing 【Benefits of Implementation】 - Reduced risk of accidents due to fuel leaks - Shortened inspection time and increased efficiency - Savings on fuel costs and reduced environmental impact
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In the chemical plant industry, gas leaks can lead to serious accidents, making safety management the top priority. In particular, the leakage of flammable and toxic gases poses risks of explosions and health hazards. The CRY8124 gas leak detection camera has been developed to quickly detect even minor gas leaks and enhance the safety of the plant. 【Usage Scenarios】 - Gas leak inspection of pipes, valves, tanks, etc., in chemical plants - Regular equipment inspections - Gas leak detection in emergencies 【Benefits of Implementation】 - Reduces the risk of accidents caused by gas leaks - Enhances plant safety - Lowers maintenance costs
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In the oil and gas industry, safety and efficient operations are essential. Gas leaks can lead to serious accidents and operational shutdowns, necessitating rapid detection and response. The CRY8124 gas leak detection camera quickly detects minute gas leaks, helping to identify potential risks early and support safe operations. [Usage Scenarios] - Gas leak detection in plants, pipelines, and storage tanks - Leak inspection of compressed air systems - Detection of partial discharges [Benefits of Implementation] - Reduces the risk of accidents due to gas leaks - Minimizes losses from operational shutdowns - Strengthens safety management systems
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The AQUAS HMI series is a multifunctional controller that collects and records data obtained from water quality sensors and flow sensors, enabling communication, remote monitoring, alarms, and control. It is widely used for monitoring applications in water environments, such as wastewater treatment facilities, river monitoring, water supply and sewage systems, and industrial wastewater management. This device can connect to multiple digital water quality sensors using RS485 communication, allowing for the simultaneous connection of up to 8 sensors to monitor multiple water quality parameters. Measurable parameters include pH, ORP, conductivity, dissolved oxygen, turbidity, salinity, and ammonium, among others.
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**Measurement Method** Continuous measurement of chloride is performed using an ion-selective electrode with a specific membrane that is selective for chloride ions. This membrane creates charge separation between the electrode surrounded by water and the internal filling solution. The charge is measured as a voltage and changes in response to concentration variations in the water adjacent to the membrane. Compared to traditional colorimetric methods, it has many advantages, including faster response time, greater accuracy, ease of operation, and no need for reagents. **Features** - No reagents required, continuous and real-time measurement of chloride ions - All-in-one compact housing with built-in transmitter and sensor - Equipped with an automatic wiper to keep the optical window clean and maintain stable measurements - Includes RS485 digital communication - Low power consumption design, ideal for outdoor and long-term operation
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Cultivation methods are generally used as a contamination management method through microbial measurement, but it takes several days to obtain measurement results. In contrast, the LuminUltra second-generation ATP microbial measurement luminometer can measure total microbial content on-site in about 5 minutes. This contributes to reducing the time and cost associated with measurements. 【Features】 ◆ Anyone can easily perform measurements. ◆ Immediate measurement results can be obtained. ◆ Total microbial content can be accurately measured, allowing for an understanding of microbial growth trends. 【Case Studies】 ◆ Measuring ATP in inflow water, concentrated water, and permeate water of membrane filtration systems to assess the degree of membrane fouling. ◆ Applying microbial measurements to verify the effectiveness of sterilizing agents and control their dosage. ◆ Purified water recycling in semiconductor manufacturing water treatment facilities. ◆ Checking the microbial content in automotive paints.
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- Oxygen measurement range: 0 to 100% - Carbon dioxide measurement range: selectable from 0, 1, 2.5, 10, 20, 30, 50, 100% - Capable of measuring oxygen/carbon dioxide for all applications - Sampling pump (optional) - Battery operated (optional) - Excellent cost performance design - Supports analog output and data logging functions - 2-year warranty
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It is possible to continuously and in real-time measure ultra-low concentration oil components (PAHs) without using reagents. 【Measurement Targets】 PAHs (Naphthalene, Acenaphthylene, Acenaphthene, Fluorene, Phenanthrene, Anthracene, Fluoranthene, Pyrene, Chrysene, Benzo[a]anthracene, Dibenzo[a,h]anthracene, Indeno[1,2,3-cd]pyrene, Benzo[ghi]perylene) 【Measurement Principle】 This analyzer is based on fluorescence optical technology. A fluorometer emits light at the wavelength necessary to excite the target substance, selectively transmitting only the fluorescence emitted from the target substance at specific wavelengths, and measuring the intensity of that light. The measured fluorescence intensity is proportional to the concentration of the target substance. 【Features】 ■ Continuous and real-time measurement of ultra-low concentration oil components (PAHs) without reagents ■ All-in-one compact housing with built-in transmitter and sensor ■ Equipped with an automatic wiper to keep the optical window clean at all times, maintaining stable measurements ■ Features RS485 digital communication ■ Low power consumption design, ideal for outdoor and long-term operation
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Measurement Target Q40 Oxygen Q41 Carbon Dioxide Q42 Oxygen and Carbon Dioxide The Q40 series analysis device features a color display, menu-based settings, calibration functions, a built-in sample pump, and the capability to collect up to 100,000 data points. This analysis device is designed to incorporate high-speed response sensors into a 2U rack-mounted chassis, making it suitable for various gas measurement applications. Power is supplied via a wall adapter converting AC to 12V DC. Additionally, a robust compact diaphragm pump can be installed, which can be timed to operate only during sampling as needed. The Q40 series offers multiple sampling inlet configurations to accommodate various monitoring applications. Options include Swagelok compression fittings, traditional sample probes, and luer fittings compatible with flexible tubing. Unless otherwise specified, the inlet and outlet are positioned at the rear of the rack-mounted chassis for easy access.
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Measurement Target Gas Q30 Oxygen Q31 Carbon Dioxide Q32 Oxygen and Carbon Dioxide The Q30 series features a color display, menu-based settings, calibration functions, a built-in sample pump, and the capability to collect up to 100,000 data points. This device is equipped with a high-speed response oxygen sensor housed in a desktop/benchtop casing, designed for ease of use in various gas measurement applications. Power is supplied via a wall adapter converting AC to 12V DC. The device includes a robust small diaphragm pump that can be timed to operate only during sampling. The Q30 series allows for the selection of multiple sampling inlet configurations to suit various monitoring applications. Options include a sample probe/needle assembly for package testing or a straight tube probe that can connect to flexible tubing, which is ideal for insertion into various processes, containers, and bio-related enclosures.
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It is possible to continuously and real-time measure sulfide (S²⁻) without using reagents. 【Measurement Method】 Continuous measurement of sulfide is performed using an ion-selective electrode with a specific membrane that is selective for sulfide ions. This membrane creates charge separation between the electrode surrounded by water and the internal filling solution. The charge is measured as voltage and changes in response to concentration variations in the water adjacent to the water membrane. Compared to conventional colorimetric methods, it has many advantages, including faster response time, greater accuracy, ease of operation, and no need for reagents. 【Features】 ■ Continuous and real-time measurement of sulfide (S²⁻) without reagents ■ All-in-one compact housing with built-in transmitter and sensor ■ Equipped with an automatic wiper to keep the optical window clean and maintain stable measurements ■ Equipped with RS485 digital communication ■ Low power consumption design, ideal for outdoor and long-term operation
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It is possible to continuously and real-time measure turbidity. 【Measurement Method】 This is a turbidity analyzer using a scattered light method with near-infrared light (880 nm). The turbidity analyzer consists of a light source, sample cell, and light detector. The incident light is scattered by particles within the sample, and the scattered light is measured by the detector. The amount of scattering varies depending on the quantity of substances in the sample, the wavelength of the light used, and the size and composition of the suspended particles. This analyzer features a long-life LED (880 nm) and complies with the 90° scattered light method according to DIN ISO 7027 or EPA Method 180.1. The automated machine wiper keeps the surface clean to maximize accuracy and minimize maintenance needs by removing bubbles from the optical window. 【Features】 ■ Continuous and real-time turbidity measurement without reagents ■ All-in-one compact housing with built-in transmitter and sensor ■ Equipped with an automatic wiper to keep the optical window clean and maintain stable measurements ■ Includes RS485 digital communication ■ Low power consumption design, ideal for outdoor and long-term operation
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【Measurement Method】 - Fluorescence Optical Method This analyzer is based on fluorescence optical technology. A fluorometer emits light of a specific wavelength necessary to excite the target substance, selectively transmitting only the wavelength of the fluorescence emitted from the substance to measure its fluorescence intensity. The measured fluorescence intensity is proportional to the concentration of the target substance (analyte). 【Features】 ■ Continuous and real-time measurement of CDOM without the need for reagents ■ All-in-one compact housing with built-in transmitter and sensor ■ Equipped with an automatic wiper to keep the optical window clean at all times, ensuring stable measurements ■ Features RS485 digital communication ■ Low power consumption design, ideal for outdoor and long-term operation
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【Measurement Method】 It is based on fluorescence optical technology. The fluorometer generates light of the wavelength necessary to excite the analyte being measured, selectively transmits the wavelength of the emitted light, and measures the intensity of that light. The emitted light is proportional to the concentration of the analyte being measured. 【Features】 ■ No reagents required, continuous and real-time measurement of chlorophyll ■ All-in-one compact housing, built-in transmitter, and sensor ■ Equipped with an automatic wiper to keep the optical window clean at all times, maintaining stable measurements ■ Equipped with RS485 digital communication ■ Low power consumption design, ideal for outdoor and long-term operation
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It is possible to continuously measure nitrate and pH without using reagents. 【Measurement Method】 - Ion-selective electrode method Continuous measurement of nitrate using an ion-selective electrode is performed with a specific membrane that selectively allows the passage of nitrate. The membrane generates electrolysis between the water around the electrode and the internal filling solution. This amount of electricity is measured as voltage, which changes the concentration in the surrounding water. Compared to conventional colorimetric methods, it has many advantages such as faster response time, higher accuracy, simplicity, and no need for reagents. 【Features】 ■ Continuous and real-time measurement of nitrate without reagents ■ All-in-one compact housing with built-in transmitter and sensor ■ Equipped with an automatic wiper to keep the optical window clean and maintain stable measurements ■ Equipped with RS485 digital communication ■ Low power consumption design, ideal for outdoor and long-term operation
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**Measurement Method** - 90° Scattering Light Method (Nephelometry) This analytical device consists of a light source, sample cell, and light detector. The light incident on the sample is absorbed by the components in the water, and by measuring the transmitted light with the detector, the SS equivalent value based on the absorbance in the sample is calculated. A long-life LED is used as the light source, achieving high measurement accuracy through a 180° optical method compliant with international standards. Additionally, the automatic wiper mechanism removes bubbles and dirt adhering to the optical window, maintaining a clean state at all times, which balances accuracy maintenance and reduced maintenance burden. **Features** - Continuous and real-time measurement of SS without the need for reagents - All-in-one compact housing with built-in transmitter and sensor - Equipped with an automatic wiper to keep the optical window clean and maintain stable measurements - RS485 digital communication - Low power consumption design, ideal for outdoor and long-term operation
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It is possible to continuously and in real-time measure TOC (Total Organic Carbon) and SS (Suspended Solids) without using reagents. 【Measurement Method】 It is based on fluorescence optical technology. The fluorometer generates the necessary wavelength of light to excite the target analyte, selectively passes the wavelength of the emitted light, and measures the intensity of the emitted light. The emitted light is proportional to the concentration of the analyte being measured. 【Features】 ■ Continuous and real-time measurement of TOC and SS without reagents ■ All-in-one compact housing, built-in transmitter, and sensor ■ Equipped with an automatic wiper to keep the optical window clean at all times, maintaining stable measurements ■ Equipped with RS485 digital communication ■ Low power consumption design, ideal for outdoor and long-term operation
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It is possible to continuously and in real-time measure COD (Chemical Oxygen Demand) without the use of reagents. 【Measurement Method】 This analytical device consists of a UV 254nm light source, a sample cell, and a light detector. The light incident on the sample is absorbed by components in the water, and by measuring the transmitted light with the detector, the COD equivalent value based on the absorbance in the sample is calculated. The light source uses a long-life LED and achieves high measurement accuracy through a 180° optical system compliant with international standards. Additionally, the automatic wiper mechanism removes bubbles and dirt that adhere to the optical window, maintaining a clean state at all times, which ensures precision and reduces maintenance load. 【Features】 ■ Continuous and real-time measurement of COD without reagents ■ All-in-one compact housing with built-in transmitter and sensor ■ Equipped with an automatic wiper to keep the optical window clean and maintain stable measurements ■ Equipped with RS485 digital communication ■ Low power consumption design, ideal for outdoor and long-term operation
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It is possible to continuously measure BOD (Biochemical Oxygen Demand) without using reagents. 【Measurement Method】 This analytical device consists of a light source, sample cell, and light detector. The light incident on the sample is absorbed by components in the water, and by measuring the transmitted light with the detector, a BOD equivalent value based on the absorbance in the sample is calculated. A long-life LED is used as the light source, achieving high measurement accuracy through a 180° optical method compliant with international standards. Additionally, an automatic wiper mechanism removes bubbles and dirt adhering to the optical window, maintaining a clean state at all times, which balances precision maintenance and reduced maintenance load. 【Features】 ■ Continuous and real-time measurement of BOD without reagents ■ All-in-one compact housing with built-in transmitter and sensor ■ Equipped with an automatic wiper to keep the optical window clean and maintain stable measurements ■ Equipped with RS485 digital communication ■ Low power consumption design, ideal for outdoor and long-term operation
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In the water treatment industry, efficient water quality management and early detection of risks are essential. In particular, abnormal proliferation of microorganisms can lead to equipment corrosion and water quality contamination, potentially resulting in plant shutdowns and health hazards. Luminultra's ATP measurement technology allows for quicker assessment of microbial activity compared to traditional culture methods, enabling early detection of anomalies. This contributes to the optimization of water treatment processes and the maintenance of safe water quality. 【Application Scenarios】 - Microbial monitoring at water purification plants, wastewater treatment facilities, and industrial water plants - Management of biofilms in cooling towers and piping systems - Rapid decision-making in water quality management 【Benefits of Implementation】 - Early risk detection through rapid results - Optimization and efficiency of water treatment processes - Stable plant operation and cost reduction
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- Visualization of compressed air and gas leaks By visualizing leaks in compressed air and gas, gas leaks can be pinpointed and displayed on the screen immediately. Leaks in difficult-to-detect areas, such as high places or large pipe joints, can also be detected, which is challenging for standard gas detectors. Regardless of the type of gas, leaks of flammable gases and vapors can be detected. - Easy-to-read and user-friendly display With a 7-inch touchscreen, leaks can be easily discovered with simple operations. By adjusting just two parameters—frequency range and dynamic range—most testing requirements can be met. - Analysis and reporting All test results are recorded along with photos, audio, and video, and a dedicated software generates reports compliant with ISO 50001 in an editable Excel format. - Long continuous usage With a large-capacity battery, it can be used continuously for over 4 hours. Data can be stored in the internal 8GB storage, and external storage can be expanded up to 256GB using a micro SD card.
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Luminultra is a specialized manufacturer of microbial monitoring technology focused on ATP measurement. With rapid and highly sensitive measurement technology, it supports quality control and risk reduction across a wide range of industries, from water treatment to manufacturing. Products utilizing second-generation ATP technology are implemented in plants and laboratories around the world.
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The CRYSOUND gas leak detection camera is an industrial detection solution that visualizes leaks of compressed air and gas using ultrasonic imaging technology, allowing for rapid and accurate identification of leak locations. Compared to traditional visual checks or soap solutions, it enables safe inspections even on operating equipment, contributing to reduced downtime and improved maintenance efficiency. With a wide frequency range of 20 to 100 kHz, it can detect leaks from very small to large. Some models also support partial discharge detection, making them useful for predictive maintenance of power equipment. Equipped with data transfer capabilities via Bluetooth and Wi-Fi, it facilitates easy recording and reporting on-site. Additionally, explosion-proof models (II 3G Ex ic IIC T5 Gc) are available, ensuring safe use in chemical plants and hazardous environments. A variety of models can be selected according to application and environment, significantly enhancing the reliability and efficiency of equipment maintenance.
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The Luminultra PhotonMaster is a portable luminometer designed to be used in conjunction with Luminultra's second-generation ATP test kits. It can measure microbial-derived ATP levels in just a few minutes, enabling rapid microbial monitoring. Its lightweight and robust design allows for stable use in both laboratory and harsh field environments. Additionally, it supports data collection and analysis via Bluetooth, allowing measurement results to be verified on-site when combined with dedicated software.
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The innovative WaterLink Spin Touch photometer covers all tests for pools and spas and automatically records data every time a test is performed. Simply place a water sample in the multi-test reagent disk, set it in the device, and tap 'Start' to automatically complete all important tests, preventing operational errors. Test Parameters Measurement Range Free Chlorine (DPD) 0-15ppm Total Chlorine (DPD) 0-15ppm Bromine (DPD) 0-33ppm pH 6.4-8.6 Calcium Hardness 0-800ppm Total Alkalinity 0-250ppm Cyanuric Acid 5-150ppm Copper 0-3.0ppm Iron 0-3.0ppm Salinity (Sodium Chloride) 0-5000ppm Phosphate 0-2000ppm Boron 0-80ppm
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The innovative WaterLink Spin Touch photometer covers all tests for pools and spas, automatically recording data every time a test is performed. Simply place a water sample in the multi-test reagent disk, set it in the device, and tap 'Start' to automatically complete all important tests, preventing operational errors. Results are displayed on the touchscreen, saved within the meter, and can be easily transferred to software. Test Parameters Measurement Range Free Chlorine (DPD) 0-15ppm Total Chlorine (DPD) 0-15ppm Bromine (DPD) 0-33ppm pH 6.4-8.6 Calcium Hardness 0-800ppm Total Alkalinity 0-250ppm Cyanuric Acid 5-150ppm Copper 0-3.0ppm Iron 0-3.0ppm Salt (Sodium Chloride) 0-5000ppm Phosphate 0-2000ppm Borate 0-80ppm
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The innovative WaterLink Spin Touch photometer meets all water quality testing needs for pools and spas, recording data each time a test is conducted. Simply place the water sample into the multi-test reagent disk, set it in the meter, and tap "Start." All essential tests are automatically performed, preventing user error. Results are displayed on the touchscreen, stored within the meter, and can be easily transferred to software. Test Items Measurement Range Free Chlorine (DPD) 0-15 ppm Total Chlorine (DPD) 0-15 ppm Bromine (DPD) 0-33 ppm pH 6.4-8.6 Calcium Hardness 0-800 ppm Total Alkalinity 0-250 ppm Cyanuric Acid 5-150 ppm Copper 0-3.0 ppm Iron 0-3.0 ppm Salt 0-5000 ppm
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The innovative WaterLink SpinTouch BC photometer automatically conducts all tests for boiler water and cooling water. Each sealed reagent disk contains the precise amount of reagent needed for a series of tests. By simply placing a sample of less than 3mL into the unique spin reagent disk, all critical tests are completed automatically in just one minute! This is an unprecedented state-of-the-art system that accurately utilizes wet chemical methods. Analysts can obtain high-precision results without time-consuming tests or cleaning tasks. This groundbreaking analytical system is very easy to use and can be handled by anyone. There is no need to fill test tubes, no preprocessing time, and no reliance on intuition.
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⚫TÜV Certification Obtained Zone 2 IECEx & ATEX Compliant The CRY8125 has obtained TÜV certification in compliance with IECEx and ATEX standards, meeting the requirements of IEC 60079-11 and 60079-0. It is capable of detecting gas leaks in explosive gas and dust atmospheres. ⚫Industry Leading Performance Equipped with 200 microphones, a frequency range of 100 kHz, and the fastest processor in the industry, the CRY8124 can pinpoint smaller leaks and partial discharges than any other product. ⚫Communication Methods Data can be transmitted directly to local devices via Bluetooth and WiFi. ⚫Four IEPE Sensor Inputs The system can accommodate up to four IEPE sensors (such as accelerometers and microphones) and a thermal camera, enabling complex detection scenarios. ⚫Up to 10 Hours of Operation With one rechargeable lithium-ion battery, continuous use of up to 5 hours is possible. Two batteries are included as standard, allowing for a total of up to 10 hours of operation. ⚫2-Year Warranty The CRY8125 comes with a 2-year warranty.
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