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  3. グリッドリンク IoTプラットフォーム事業部
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グリッドリンク IoTプラットフォーム事業部

EstablishmentJune 29, 2016
addressTokyo/Shinjuku-ku/3rd Floor, Shinjuku Seventh Hayama Building, 1-36-2 Shinjuku
phone03-6811-1133
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last updated:Oct 20, 2025
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Automatic control Automatic control
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Water quality and water level Water quality and water level
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Water

Water quality and water level

Introducing examples of IoT utilization related to water quality and water level. ● System Overview The water quality and water level monitoring system using IoT sensors automatically collects information such as water quality and water level in real-time from multiple sensors installed in various locations, including rivers, reservoirs, factories, facilities, and agricultural water sources, and sends it wirelessly to the cloud. The acquired data can be accessed anytime and anywhere via a computer or smartphone over the internet, enabling remote situation awareness, anomaly detection, and operational optimization. ● Main Features Real-time remote monitoring Alert and notification functions Data accumulation and report output Support for multi-site and multi-point measurements Integration with other systems and automatic control ● Benefits of Implementation Reduction and efficiency of manual labor Early detection of anomalies and rapid response Operation and optimization based on data Improvement of safety and sustainability ● Examples of Utilization Scenarios Environmental measures through wastewater and water supply monitoring in factories and water supply and drainage facilities Simplification of monitoring and management of remaining water levels in water tanks and reservoirs in public facilities and apartment complexes Early detection and countermeasures through continuous monitoring in high contamination risk sites Remote monitoring of water quality and water level in rivers, dams, and irrigation channels, and flood warning Management of water quality and water level in irrigation sources and hydroponic cultivation facilities in the agricultural sector.

Water-related IoT: Drainage (Water Quality and Water Level) Monitoring System

Improving the efficiency of drainage management at factories and construction sites.

● Automate the measurement of water quality and water level in drainage ditches and channels, and display the current values on a web screen. ● Notifications will be sent via email and flashing lights if thresholds are exceeded. ● The solenoid valve will automatically open and close when thresholds are exceeded. ● The solenoid valve can be opened and closed by clicking the operation button on the web screen at any desired timing. ● The solenoid valve can be opened and closed by manually operating the local operation button at any desired timing. ▶ For quotation requests, please [Contact us via the web] ◀ ▶ For more details, please [Download the catalog] ◀

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Water-related IoT: Remote monitoring system for factory wastewater (compatible with total water quality regulation)

■ Cloud service for automating water-related operations ■

In factories where wastewater is generated, it is necessary to establish a monitoring system to comply with the water quality standards set by the Ministry of the Environment and the Ministry of Land, Infrastructure, Transport and Tourism for environmental conservation, in order to avoid administrative guidance. By automating the labor-intensive and time-consuming water quality measurements and enabling remote monitoring, labor can be reduced and human errors can be prevented. ● This is a cloud-based remote monitoring system for factory wastewater that combines water quality meters and IoT systems. ● It centrally manages multiple measurement items and multiple measurement locations. ● Measurement data can be viewed and managed in real-time on client devices (computers, smartphones, tablets), which helps improve and optimize water quality management operations. ● In addition to data collection, it is possible to customize the implementation of control operations for various devices triggered by the acquired data. ▶ For a quote request, please contact us via [Web Inquiry] ◀ ▶ For more details, please download the [Catalog] ◀

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Water-related IoT: Water Quality Monitoring System (pH, SS, Turbidity)

■ Cloud service for automating water-related operations ■

pH (hydrogen ion concentration) indicates the degree of acidity or alkalinity of water. It is expressed on a scale of 1 to 14, with 7 being neutral, values above 7 indicating alkalinity, and values below 7 indicating acidity. SS (suspended solids) refers to the insoluble substances that are suspended in water. It is one of the indicators used to measure the degree of water pollution and includes organic matter derived from phytoplankton, their remains, domestic wastewater, and industrial effluents. The amount of SS significantly affects the appearance of water, such as its turbidity and transparency. In factories where wastewater is generated, it is necessary to establish a monitoring system to comply with the water quality standards set by the Ministry of the Environment and the Ministry of Land, Infrastructure, Transport and Tourism for environmental conservation, in order to avoid administrative guidance. By automating the measurement of pH and SS, which is time-consuming and labor-intensive, and implementing remote monitoring, it is possible to reduce manpower and prevent human errors. ▶ For quotation requests, please contact us via [Web Inquiry] ◀ ▶ For more details, please download the [Catalog] ◀

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Water-related IoT: Water Quality Management System (pH)

■ Cloud service for automating water-related operations ■

This is a cloud-based water quality monitoring/pH measurement system that combines a pH meter with an IoT system. It automatically measures the hydrogen ion concentration (pH) and monitors the acidity or alkalinity levels. Measurement data can be viewed and managed in real-time on client devices (PCs, smartphones, tablets), helping to streamline and optimize water quality management operations. Since it is based on a fully-fledged IoT system with remote control functionality, it is possible to not only collect data but also customize the operation control of various devices triggered by the acquired data. ▶ For quotation requests, please contact us via [Web Inquiry] ◀ ▶ For more details, please download the [Catalog] ◀

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Water-related IoT: Water Quality Management System (Turbidity)

■ Cloud service for automating water quality management operations ■

We measure the turbidity levels of water treatment plants, sewage treatment plants, rivers, and industrial wastewater. 1. Monitoring of industrial water intake By monitoring the turbidity of the intake water, we can prevent problems caused by sudden changes in turbidity. 2. Control of coagulants By accurately understanding the concentration of wastewater, we can add the appropriate amount of chemicals, resulting in stable water quality. 3. Monitoring of the sludge interface By installing it in the sedimentation tank, we can monitor the sludge interface. If installed in 2 to 3 stages, we can obtain a more accurate understanding of the interface condition. 4. Monitoring of discharged water We can conduct final monitoring of the treated water before it is released into the river. ▶ For inquiries about estimates, please contact us via [Web Inquiry] ◀ ▶ For more detailed information, please download the [Catalog] ◀

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Water-related IoT: Water Quality Monitoring System (Ammonium and Nitrate)

■ Cloud service for automating water-related operations ■

This is a cloud-based water quality monitoring system. It automates the calibration, measurement, and cleaning of ammonium ions (NH4+) and nitrate ions (NO3-), which are important indicators of the nitrification cycle. It enables a reduction in the workload of water quality management in aquaculture facilities (seed production, research on aquaculture technology, and development of aquatic vaccines). 1. Data Collection Function ● Measurement Items: Ammonium Ion: NH4+ / Nitrate Ion: NO3- ● Required Time: 25 minutes (Calibration: 20 minutes / Measurement: 5 minutes) 2. Web Display Function ● Display of Latest Measurement Values ● Download of CSV Data / Graph Display 3. Alarm Function ● Non-Arrival Email: Notifies via email when measurement data does not reach the cloud. ● Threshold Email: Notifies via email when thresholds (upper and lower limits) are exceeded. ● Alarm Device: Notifies with a flashing light when thresholds (upper and lower limits) are exceeded. ● Automatic Voice Call (Emergency Call): Notifies via voice to mobile phones when thresholds are exceeded. ▶ For more details, please [Download the Catalog] ◀

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Water-related IoT: Water quality management system (COD, total nitrogen, total phosphorus)

■ Cloud service for automating water-related operations ■

● The water quality total amount regulation is a system that monitors the total amount of organic pollutants flowing into closed coastal areas (Tokyo Bay, Ise Bay, Osaka Bay, Seto Inland Sea). ● Facilities that discharge into rivers flowing into the aforementioned areas are required to monitor COD, nitrogen, and phosphorus in their effluent. ● These measurements and load calculations are conducted using testing methods based on JIS standards, and the results must be recorded. ● The water quality total amount regulation applies to facilities with a discharge volume of 50 m³ or more within closed coastal areas. Measurement data can be viewed and managed in real-time on client devices (computers, smartphones, tablets), which can help improve the efficiency of water quality management operations. ▶ For quotation requests, please contact us via [Web Inquiry] ◀ ▶ For more details, please download [Catalog] ◀

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Water-related IoT: Water quality (turbidity, color, residual chlorine) monitoring system

■ Cloud service for automating water-related operations ■

In terms of water supply, "turbidity" refers to the degree of cloudiness observed in water when mixed with impurities, seen as white. "Color" refers to the degree of color observed in water when dissolved substances, such as yellow tones, are present. These are items that are inspected to determine whether the requirement for water supply to be "almost colorless and transparent" is met. ■ Turbidity - A necessary water quality inspection item to confirm whether coagulation and sedimentation treatment, etc., are being carried out appropriately. - Inspected daily - Cannot be omitted - Generally, self-inspection ■ Color - A necessary water quality inspection item to confirm whether the removal of substances like manganese is being carried out appropriately. - Inspected daily - Cannot be omitted - Generally, self-inspection ■ Residual Chlorine - A necessary water quality inspection item to confirm that disinfection against bacteria, etc., has been performed and that chlorine is being retained. - Inspected daily - Cannot be omitted - Generally, self-inspection Measurement data can be viewed and managed in real-time on client devices (computers, smartphones, tablets), contributing to the efficiency of water quality management operations. ▶ For more details, please download the PDF ◀

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Water-related IoT: Water Quality Management System (Oil Concentration)

■ Cloud service for automating water-related operations ■

Water (drain) discharged from air compressors and air dryers contains oils such as compressor oil. Discharging oil-containing drain as is can cause environmental destruction and violate related laws (Water Pollution Prevention Act, Sewerage Act). Additionally, it can lead to problems such as uneven painting due to drain during air blowing, corrosion of piping, and failures of air equipment such as cylinders and solenoid valves. ■ Discharge regulation value according to the Water Pollution Prevention Act: Oil concentration (n-hexane extractable substances) below 5ppm Measurement data can be viewed and managed in real-time on client devices (PCs, smartphones, tablets), contributing to the efficiency of water quality management operations. ▶ For quotation requests, please contact us via [Web Inquiry] ◀ ▶ For more details, please download the [Catalog] ◀

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Water-related IoT: Water quality monitoring system (ammonia, nitrite, nitrate)

■ Cloud service that automates water-related operations ■

Continuous operation of the drainage treatment blower leads to an over-aeration state, causing the pH level in the purification tank to drop, which creates a harsh environment for microbial growth, resulting in decreased purification capacity. To maintain the oxygen levels in the purification tank at an appropriate state, intermittent operation of the blower is desirable. In this regard, when controlling based on dissolved oxygen measurements (DO values), the oxygen consumption of microorganisms is observed to indirectly confirm nitrification, which further leads to over-aeration and excessive electricity consumption. Therefore, by monitoring the nitrification cycle in real-time using ammonia/nitrite/nitrate sensors, we can quickly detect the completion of nitrification and prevent over-aeration. Optimizing the intermittent operation of the blower makes it possible to achieve energy savings. ▶▶▶ For more details, please download the PDF ◀◀◀

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Water-related IoT: Remote Water Quality Monitoring System (Multi-parameter Water Quality Meter)

■Easy IoT Cloud Service■

It is a cloud-based remote water quality monitoring system that combines a multi-parameter water quality meter with an IoT system. It centrally manages multi-parameter sensors and sensors from multiple locations. Measurement data can be viewed and managed in real-time on client devices (PCs, smartphones, tablets), helping to improve and optimize water quality management operations. Since it is based on a full-fledged IoT system with remote control functionality, it is possible to customize the operation control of various devices triggered by the acquired data, in addition to data collection. ▶ For more details, please download the PDF ◀

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Water-related IoT: Remote water quality monitoring system for waste disposal sites.

■ Cloud service for automating water-related operations ■

This is a cloud-managed remote water quality monitoring system that combines water quality sensors and IoT systems. In a landfill site, it centrally manages multiple measurement items and multiple measurement locations, such as pH (hydrogen ion concentration), EC (electrical conductivity), and SS (suspended solids), to properly manage and treat contaminated raw water (leachate) that has been polluted by rainwater coming into contact with waste. Measurement data can be viewed in real-time on client devices (computers, smartphones, tablets), allowing for remote monitoring even in cases of sudden changes in water quality, such as heavy rainfall, thereby contributing to the efficiency and appropriateness of water quality management operations. It is also possible to implement remote control functions for alarms and other devices triggered by the collected data. ▶ For quotation requests, please contact us via [Web Inquiry] ◀ ▶ For more details, please download the [Catalog] ◀

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Water-related IoT: Groundwater Continuous Monitoring System

■■ Cloud service for automating water quality management operations ■■

Regarding water, it plays a vital role in nurturing life on Earth and in the daily lives of citizens and industrial activities through the water cycle. Therefore, efforts to maintain or restore a healthy water cycle must be actively promoted. In terms of usage, industrial water is utilized for boiler water, raw material water, product processing water, cleaning water, cooling water, and temperature control water, accounting for approximately 14% of Japan's water demand based on withdrawal volume. In particular, groundwater is used in many industries due to its stable water temperature and quality, the resilience of wells during disasters (such as earthquakes and typhoons), and the potential for reducing water supply costs. Businesses that utilize groundwater in their operations have a responsibility to use water appropriately, strive to consider a healthy water cycle, and cooperate with policies related to water environments implemented by national or local governments (as per the Basic Water Cycle Law). They are also required to monitor groundwater quality and levels regularly and engage in information disclosure efforts. ▶ For inquiries, please contact us [ via the web ] ◀ ▶ For more details, please [ download the catalog ] ◀

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Water-related IoT flow measurement system (compatible with small and medium diameter pipes)

■ Cloud service for automating water-related operations ■

Water is an important resource for corporate activities. Companies in the steel, semiconductor, paper and pulp, and food and beverage sectors use large amounts of water. The Taskforce on Nature-related Financial Disclosures (TNFD) disclosure framework calls for an explanation of dialogue with local communities under "Governance." It has become a significant management challenge to conserve water resources while engaging in dialogue with local communities and conducting business activities. Regarding flow measurement, the challenge is to implement it without stopping the operations of plants or factories. This requires clamp-on flow meters. ■Clamp-on Flow Meters■ When using electromagnetic flow meters, it is necessary to cut the pipe for installation or replacement, which can affect the operations of the plant or factory. Clamp-on flow meters use ultrasound to measure flow velocity and can be easily installed without stopping the operations or equipment of the facility, allowing for high-precision measurements even in harsh environments. ▶For more details, please download the PDF◀

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Water Equipment IoT Industrial Wastewater Treatment Monitoring System

Automate water quality measurement and valve control.

● Automate the measurement of water quality, water level, and flow rate in industrial wastewater treatment tanks, and display the current values on a web screen. ● Notifications will be sent via email, indicator lights, and automated voice calls if thresholds are exceeded. ● Valves will be automatically opened and closed when thresholds are exceeded. ● Valves can be opened and closed by clicking the remote control button on the web screen. ● Valves can be opened and closed by manually operating the local control button. ▶ For quotation requests, please [ contact us via the web ] ◀ ▶ For more details, please [ download the catalog ] ◀

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Wastewater (Water Quality and Water Level) Monitoring System for the Chemical Industry

Streamlining wastewater management in chemical plants to reduce environmental impact.

In the chemical industry, there is a demand for compliance with environmental regulations and sustainable business operations. In particular, managing wastewater from factories is crucial for preventing water pollution and contributing to environmental conservation. It is necessary to accurately monitor the quality and level of wastewater and to detect abnormalities early in order to minimize environmental risks. Our wastewater (quality and level) monitoring system addresses these challenges. 【Use Cases】 - Wastewater tanks and drainage channels in chemical plants - Continuous monitoring of water quality and level - Automatic notification and response in case of abnormalities 【Benefits of Implementation】 - Increased efficiency in wastewater management - Reduced environmental risks - Compliance with regulations

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Wastewater (Water Quality and Water Level) Monitoring System for Manufacturing Industry

Streamlining drainage management at factories and construction sites, optimizing process management.

In manufacturing process management, wastewater management is an important element. In particular, fluctuations in water quality and water levels at factories and construction sites can impact the production process. For example, exceeding wastewater standards can lead to operational shutdowns or fines. Additionally, abnormalities in wastewater facilities may result in decreased production efficiency or environmental pollution. Our wastewater (water quality and water level) monitoring system has been developed to address these challenges. [Usage Scenarios] - Monitoring water quality and water levels of factory wastewater - Wastewater management in manufacturing processes - Wastewater management at construction sites [Benefits of Implementation] - Risk management through visualization of wastewater conditions - Rapid response in case of abnormalities - Cost reduction through optimization of wastewater facilities

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Water Quality and Level Monitoring System for Power Plants

Streamlining cooling water management at power plants, with automatic monitoring of water quality and water levels.

In the management of cooling water at power plants, proper management of water quality and water levels is essential for balancing stable equipment operation and environmental considerations. Abnormalities in cooling water can lead to decreased power generation efficiency and equipment failures. Additionally, exceeding discharge standards carries the risk of legal liability. Our wastewater monitoring system addresses these challenges by monitoring water quality and water levels in real-time and detecting abnormalities early. 【Usage Scenarios】 - Management of wastewater from cooling towers - Monitoring of wastewater treatment facilities - Management of cooling water for emergency generators 【Benefits of Implementation】 - Early detection of abnormalities in water quality and water levels to prevent equipment troubles - Reduction of risks associated with exceeding discharge standards - Labor-saving and reduction of management costs through remote monitoring

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Wastewater (Water Quality and Water Level) Monitoring System for Food Processing

Streamlining wastewater management in food processing to reduce the risk of foreign matter contamination.

In the food processing industry, foreign matter contamination during the manufacturing process is a serious issue that not only compromises product quality but also undermines corporate trust. Wastewater management is crucial for understanding the sanitary conditions of the manufacturing environment and reducing the risk of foreign matter contamination. By monitoring the quality and level of wastewater, abnormalities can be detected early, allowing for prompt responses. Our wastewater monitoring system contributes to the efficiency of wastewater management in food processing. 【Usage Scenarios】 - Food manufacturing plants - Wastewater treatment facilities - Processes with a high risk of foreign matter contamination 【Benefits of Implementation】 - Early detection of wastewater quality abnormalities - Reduction of foreign matter contamination risks - Strengthening of sanitary management in the manufacturing environment - Compliance with regulations

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Drainage (Water Quality and Water Level) Monitoring System for Mining Industry

Streamlining drainage management in mining to reduce environmental pollution risks.

In mining, water quality management of drainage is extremely important for environmental conservation. In particular, it is essential to prevent the leakage of harmful substances and minimize the impact on the surrounding environment. Abnormalities in water quality and water levels can lead to serious environmental pollution. Our drainage monitoring system allows for real-time monitoring of water quality and water levels, enabling quick responses by detecting anomalies early. 【Usage Scenarios】 - Locations where drainage occurs, such as mines, concentration plants, and smelters - Monitoring of wastewater treatment facilities - Compliance with environmental regulations 【Benefits of Implementation】 - Reduces the risk of water quality pollution - Contributes to environmental conservation - Ensures compliance with legal regulations

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Industrial wastewater treatment monitoring system for steelmaking

Autonomously control water quality, water level, and flow rate to reduce wastewater treatment costs.

In the steel industry, cost reduction in wastewater treatment is an important issue. Inadequate water quality management can lead to decreased treatment efficiency and violations of regulations, potentially incurring additional costs. Our industrial wastewater treatment monitoring system automatically measures water quality, water level, and flow rate, and autonomously controls optimal valve opening and chemical dosing, contributing to the efficiency and cost reduction of wastewater treatment. [Usage Scenarios] - Wastewater treatment tanks in steel manufacturing plants - Reduction of labor costs through automation of water quality management - Reduction of chemical costs through optimization of dosing amounts [Effects of Implementation] - Optimization of the wastewater treatment process - Stabilization of water quality management - Reduction of running costs

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Industrial Wastewater Treatment Monitoring System for Chemical Plants

Autonomous control of water quality measurement, valve opening and closing adjustment, and chemical dosing.

In the chemical plant industry, there is a demand for compliance with environmental regulations and improvement of operational efficiency. Particularly in wastewater treatment processes, thorough water quality management and maintenance of stable treatment capacity are crucial. Abnormal water quality or reduced treatment capacity can increase the risk of environmental pollution and operational shutdowns. Our industrial wastewater treatment monitoring system automates the measurement of water quality, water level, and flow rate, achieving optimal wastewater treatment through autonomous control. 【Usage Scenarios】 - Wastewater treatment tanks in chemical plants - Automation of water quality management - Optimization of valve operation and chemical dosing 【Benefits of Implementation】 - Early detection of anomalies through visualization of water quality data - Optimization of treatment capacity through autonomous control - Labor-saving through remote monitoring and operation

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Industrial wastewater treatment monitoring system for food products

Autonomous control of water quality measurement, valve opening and closing adjustment, and chemical dosing.

In the food industry, water quality management during the manufacturing process is extremely important for ensuring product quality and safety. In particular, thorough water quality management in wastewater treatment is essential to prevent contamination by foreign substances and harmful materials. Inadequate water quality management can increase the risk of product quality deterioration and food poisoning. Our industrial wastewater treatment monitoring system supports food quality management by automating the measurement of water quality, water level, and flow rate, achieving autonomous control. 【Usage Scenarios】 - Food manufacturing plants - Seafood processing plants - Beverage manufacturers - Food waste treatment facilities 【Benefits of Implementation】 - Early detection of water quality abnormalities - Optimization of the wastewater treatment process - Reduction of quality management costs

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Industrial wastewater treatment monitoring system for semiconductors

Autonomous control of water quality measurement, valve opening and closing adjustment, and chemical dosing.

In the semiconductor manufacturing industry, there is a demand for the efficient use of water resources in the manufacturing process and the optimization of wastewater treatment processes. In particular, advanced water quality management is essential in the semiconductor manufacturing process, and delays or deficiencies in wastewater treatment can lead to decreased production efficiency and environmental risks. Our industrial wastewater treatment monitoring system automates the measurement of water quality, water level, and flow rate, and achieves autonomous control such as valve adjustment and chemical dosing, contributing to the efficiency of the wastewater treatment process. 【Usage Scenarios】 - Wastewater treatment facilities in semiconductor manufacturing plants - Business efficiency improvement through automation of water quality management - Rapid response to abnormalities through remote monitoring 【Benefits of Implementation】 - Reduction of wastewater treatment costs through optimization of water quality management - Risk mitigation through rapid response to abnormal occurrences - Continuous improvement based on data

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Industrial Wastewater Treatment Monitoring System for the Textile Industry

Autonomous control of water quality measurement, valve opening and closing adjustment, and chemical dosing.

In the textile industry, compliance with wastewater standards and effective use of water resources are required. In particular, wastewater discharged from processes such as dyeing is prone to cause water quality pollution, making proper treatment essential. Inadequate wastewater treatment not only increases the burden on the environment but can also lead to violations of legal regulations. Our industrial wastewater treatment monitoring system monitors water quality and flow rate, autonomously controls valve operations and chemical dosing, achieving a reduction in wastewater volume and optimization of water quality management. 【Usage Scenarios】 - Dyeing factories - Textile processing factories - Wastewater treatment facilities 【Benefits of Implementation】 - Reduction in wastewater volume - Optimization of water quality management - Compliance with legal regulations

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Industrial Wastewater Treatment Monitoring System for Electronic Components

Autonomously control water quality, water level, and flow rate, contributing to data analysis.

In the electronic components industry, water quality management and data analysis in wastewater treatment are essential for compliance with environmental regulations and improving production efficiency. In particular, managing the discharge of chemicals used in the manufacturing process is crucial for compliance. Inadequate water quality management can lead to environmental pollution and legal risks. Our industrial wastewater treatment monitoring system automates the measurement of water quality, water level, and flow rate, providing real-time data to support data analysis. 【Use Cases】 - Wastewater treatment facilities in electronic component manufacturing plants - Visualization and analysis of water quality data - Automated control of valve operations and chemical dosing 【Benefits of Implementation】 - Optimization of the wastewater treatment process through the collection and analysis of water quality data - Reduction of risks through early detection and response to anomalies - Labor-saving and efficiency improvements through remote monitoring and control

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Groundwater Continuous Monitoring System for Environmental Surveys

Reduce water quality pollution risks and automate water quality management tasks.

In the environmental survey industry, it is essential to accurately understand the contamination status of groundwater and respond swiftly. In particular, groundwater contamination from factory wastewater and soil pollution can have serious impacts on the surrounding environment and people's health. Constant monitoring of groundwater quality and levels, along with early detection of anomalies, is crucial to prevent the spread of contamination and implement appropriate measures. Our groundwater continuous monitoring system automates water quality management tasks and supports efficient contamination tracking. 【Usage Scenarios】 - Groundwater monitoring around factories - Groundwater monitoring in soil contamination surveys - Data collection for environmental impact assessments 【Benefits of Implementation】 - Prevention of contamination spread through early detection of water quality anomalies - Increased operational efficiency through automated data collection - Rapid decision-making based on real-time data

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Groundwater Continuous Monitoring System for Construction Sites

Cloud service for automating water quality management operations.

In the construction industry, the stability of the ground is extremely important for ensuring the safety and quality of construction work. Fluctuations in groundwater can affect the ground and increase the risk of differential settlement and landslides. Therefore, it is necessary to continuously monitor the state of groundwater and detect abnormalities early. Our groundwater monitoring system continuously monitors water quality and water levels in real-time, reducing risks related to ground stability. 【Usage Scenarios】 - Ground surveys at construction sites - Groundwater management in civil engineering projects - Safety management of embankments and reclaimed land 【Benefits of Implementation】 - Reduces the risk of ground subsidence and landslides - Improves the safety of construction work - Early detection of water quality contamination risks - Cost reduction

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Groundwater Continuous Monitoring System for Mining

Cloud service for automating water quality management operations.

In the mining industry, managing the quality of wastewater is crucial to prevent environmental pollution caused by harmful substances contained in the discharge. In particular, groundwater contamination has a significant impact on the surrounding environment, necessitating appropriate monitoring and prompt responses. Implementing monitoring of groundwater quality and levels, along with information disclosure, is also important as part of a company's social responsibility. Our continuous groundwater monitoring system balances the efficiency of water quality management operations with contributions to environmental conservation. 【Usage Scenarios】 - Wastewater treatment facilities at mines - Groundwater monitoring in surrounding areas - Compliance with environmental regulations 【Benefits of Implementation】 - Early detection of water quality anomalies and rapid response - Increased efficiency in water quality management operations - Reduction of environmental risks

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Groundwater Continuous Monitoring System for Urban Development

Automating water quality management operations to reduce flooding risks.

In urban development, flood prevention measures are extremely important for ensuring the safety of the city. In recent years, there have been frequent flooding damages due to sudden heavy rains, and prompt responses are required. By continuously monitoring changes in groundwater levels and water quality, and detecting abnormalities early, it is possible to reduce flood risks and enhance urban safety. Our groundwater monitoring system contributes to this effort. 【Usage Scenarios】 - Management of groundwater in urban areas - Monitoring of rainwater retention facilities - Monitoring of areas with high flood risk 【Effects of Implementation】 - Early detection and response to flooding damage - Increased efficiency in groundwater management - Improved safety of the city

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Groundwater Continuous Monitoring System for Hot Spring Facilities

Automate the management of hot spring water volume and continuously monitor water quality.

In hot spring facilities, it is essential to ensure a stable supply of hot spring water and to manage the hot spring water appropriately. Particularly when utilizing groundwater, fluctuations in water quality and water level directly impact the quality and supply of the hot spring. Inadequate water quality management can not only diminish the value of the hot spring but also adversely affect the operation of the facility. Our groundwater constant monitoring system streamlines the management of hot spring water supply and water quality, supporting a stable supply of hot springs. 【Usage Scenarios】 - Management of hot spring water supply - Monitoring of hot spring water quality - Monitoring in the use of groundwater 【Effects of Implementation】 - Stable supply of hot spring water - Streamlined water quality management - Cost reduction

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Groundwater Continuous Monitoring System for Power Plants

Automate water quality management operations to ensure a stable supply of cooling water.

At power plants, a stable supply of cooling water is essential, and maintaining water quality is crucial. Deterioration of water quality can lead to decreased efficiency and equipment failures. While utilizing groundwater can lead to cost reductions, it is necessary to continuously monitor fluctuations in water quality and water levels and take appropriate actions. Our groundwater constant monitoring system supports stable cooling water supply by monitoring water quality and water levels in real-time and detecting anomalies early. 【Usage Scenarios】 - Cooling water management at power plants - Monitoring groundwater quality and levels - Early detection of water quality anomalies 【Benefits of Implementation】 - Stable operation of cooling water equipment - Increased efficiency in water quality management tasks - Rapid response in case of anomalies

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Groundwater Continuous Monitoring System for Pharmaceuticals

Automating water quality management operations to support stable water supply assurance.

In the pharmaceutical industry, a stable supply of water for drug manufacturing is essential. Thorough water quality management is important for maintaining product quality, streamlining manufacturing processes, and ensuring compliance. While the use of groundwater can lead to cost reductions, it also requires rapid responses to fluctuations in water quality and levels, as well as to emergencies. Our groundwater constant monitoring system addresses these challenges and supports the secure supply of stable water. 【Usage Scenarios】 - Monitoring of water for drug manufacturing - Continuous monitoring of water quality and levels in groundwater use - Rapid response to water quality anomalies 【Benefits of Implementation】 - Reduction of quality risks through early detection and response to water quality anomalies - Cost optimization in groundwater use - Streamlining and labor-saving in water quality management operations

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Water Quality Management System (Turbidity) for Water Supply and Sewerage

Cloud service for automating water quality management operations.

In the water supply and sewage industry, stable management of water quality is required. In particular, early detection of fluctuations in raw water quality and abnormalities in the treatment process is essential for the safe supply of water. Turbidity measurement becomes a crucial element in addressing these challenges. Our water quality management system supports stable water quality management by monitoring turbidity in real-time and detecting abnormalities early. 【Use Cases】 - Monitoring of raw and treated water at water supply and sewage treatment plants - Turbidity monitoring of rivers and industrial wastewater 【Benefits of Implementation】 - Prevention of issues caused by sudden changes in turbidity - Cost reduction through optimization of chemical dosing - Efficient operation through accurate understanding of sludge interface

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Water Quality Management System (Turbidity) for Food Manufacturing

We automate water quality management operations to protect food quality.

In the food manufacturing industry, managing the quality of water used in production is crucial for maintaining product quality. In particular, to prevent contamination and the proliferation of microorganisms, it is necessary to continuously monitor the turbidity of the water and maintain appropriate water quality. Inadequate water quality can increase the risk of product quality deterioration and foodborne illnesses. Our water quality management system (turbidity) automates water quality management tasks and supports food quality control. [Usage Scenarios] - Monitoring the intake of industrial water in food manufacturing - Continuous monitoring of water quality during the manufacturing process - Quality control of final products [Benefits of Implementation] - Preventing issues caused by sudden changes in turbidity - Maintaining stable water quality and improving product quality - Streamlining water quality management tasks

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Water Quality Management System (Turbidity) for Beverage Manufacturing

Cloud service for automating water quality management tasks.

In the beverage manufacturing industry, it is essential to detect foreign substances in the water used for production early on to maintain product quality. In particular, foreign substance contamination can not only compromise product safety and flavor but also lead to production line stoppages and product disposal. Our water quality management system (turbidity) monitors the turbidity of water in real-time, allowing for the early detection of potential foreign substance contamination, thus addressing these challenges. 【Usage Scenarios】 - Monitoring of source water in the beverage manufacturing process - Turbidity monitoring of product cleaning water - Detection of foreign substance contamination on the production line 【Benefits of Implementation】 - Reduces the risk of product quality deterioration due to foreign substance contamination - Contributes to stable operation of the production line - Enhances product safety and reliability

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Water Quality Management System (Turbidity) for Pharmaceuticals

Cloud service for automating water quality management operations.

In the pharmaceutical industry, managing the water quality of pure water in the manufacturing process is crucial to ensure product quality. In particular, constant monitoring of water quality is required to prevent contamination and microbial growth. High turbidity can lead to a decline in product quality and issues in the manufacturing process. Our water quality management system measures turbidity and contributes to the efficiency of water quality management operations. 【Usage Scenarios】 - Turbidity monitoring in the pure water manufacturing process - Quality management of manufacturing water - Monitoring of cleaning water 【Benefits of Implementation】 - Reduction of quality risks through early detection of water quality abnormalities - Increased efficiency of water quality management operations - Maintenance of stable product quality

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Water Quality Management System (Turbidity) for Power Plants

Cloud service for automating water quality management operations.

In the management of cooling water at power plants, ensuring the efficient operation of equipment and safety is crucial. The quality of cooling water affects equipment corrosion and scale buildup, which can ultimately lead to decreased power generation efficiency and equipment failure. The water quality management system (turbidity) monitors the turbidity of cooling water in real-time and detects anomalies early, preventing these issues before they occur. 【Use Cases】 - Monitoring turbidity of cooling water - Monitoring water quality during intake - Monitoring water quality of discharged water 【Benefits of Implementation】 - Stable operation of equipment - Maintenance of power generation efficiency - Early detection of problems

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Water Quality Management System for Mining (Turbidity)

■ Cloud service for automating water quality management operations ■

In mining wastewater treatment, compliance with environmental regulations and effective resource utilization are required. In particular, managing turbidity in wastewater is important for stabilizing the quality of discharged water and reducing environmental impact. Inadequate water quality management can increase the risk of regulatory violations and operational shutdowns. Our water quality management system (turbidity) monitors turbidity in the wastewater treatment process in real-time and controls the optimal dosage of chemicals, achieving stable water quality management. 【Application Scenarios】 - Mine wastewater treatment facilities - Concentration plant wastewater treatment - Monitoring of final discharge water 【Benefits of Implementation】 - Optimization of the wastewater treatment process - Improved compliance with environmental regulations - Cost reduction through optimization of chemical usage

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Water Quality Management System (Turbidity) for Semiconductor Manufacturing

Cloud service for automating water quality management operations.

In the semiconductor manufacturing industry, the management of ultrapure water quality, which affects product quality, is extremely important. In particular, the contamination by fine foreign substances and impurities is a major factor that reduces product yield. Our water quality management system (turbidity) monitors turbidity in the ultrapure water production process in real-time and detects abnormalities early, supporting the production of high-quality products. 【Usage Scenarios】 - Turbidity monitoring in the ultrapure water production process - Water quality management in the pure water supply line - Reduction of the risk of foreign substance contamination in the manufacturing line 【Benefits of Implementation】 - Improvement in product quality - Enhancement of yield - Reduction of manufacturing costs

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Water Quality Monitoring System for Waterworks Bureau

Utilizing water quality data to streamline leak detection.

The waterworks bureau requires rapid leak detection to minimize losses due to water leaks. Abnormal water quality may indicate signs of leaks, making early detection crucial. This system contributes to improving the accuracy of leak detection by monitoring turbidity, color, and residual chlorine data in real-time and detecting anomalies. 【Usage Scenarios】 - Detection of abnormalities in water pipes - Visualization of water quality data - Remote monitoring 【Benefits of Implementation】 - Reduction of leak risks - Increased efficiency in water quality management operations - Minimization of damage through prompt response

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Water Quality Monitoring System for Food Manufacturing

Automate water quality management operations and streamline quality control.

In the food manufacturing industry, managing the water quality used in production is crucial for maintaining product quality. In particular, proper management of turbidity, color, and residual chlorine is essential to ensure product safety and quality. When water quality deviates from standard values, it can lead to discoloration, off-odors, and spoilage of products, potentially resulting in customer complaints and product disposal. Our water quality monitoring system contributes to the efficiency of quality management by monitoring these water quality parameters in real-time and detecting anomalies early. 【Usage Scenarios】 - Water quality management in food manufacturing plants - Water quality management in beverage production - Water quality management in food processing 【Benefits of Implementation】 - Maintenance of product quality through early detection of water quality anomalies - Streamlining of water quality management operations - Realization of quality improvement based on data

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Water Quality (Turbidity, Color, Residual Chlorine) Monitoring System for Pharmaceuticals

■ Cloud service for automating water-related operations ■

In the pharmaceutical industry, quality control of pure water in drug manufacturing is extremely important. Even slight contamination or changes in water quality can lead to product quality deterioration or issues in the manufacturing process. In particular, managing turbidity, color, and residual chlorine is essential for maintaining the quality of pure water and ensuring the safety of pharmaceuticals. Our water quality monitoring system contributes to the efficiency of pure water management and quality improvement by monitoring these water quality parameters in real-time and detecting anomalies early. 【Usage Scenarios】 - Pure water manufacturing process in pharmaceutical production - Quality control of experimental water in research and development - Management of cleaning water for manufacturing equipment 【Benefits of Implementation】 - Reduction of quality risks through early detection of water quality anomalies - Increased efficiency in water quality management operations - Realization of data-driven quality improvements

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Water Quality Monitoring System for Beverage Manufacturing

Automate water quality management and reduce the risk of foreign substance contamination.

In the beverage manufacturing industry, thorough management of the water used in production is essential to ensure product quality and safety. In particular, foreign matter contamination is a serious issue that can lead to product quality deterioration and health hazards for consumers. Strict water quality management is crucial to minimize these risks. Our water quality monitoring system continuously monitors turbidity, color, and residual chlorine in real-time, allowing for the early detection of abnormalities and reducing the risk of foreign matter contamination. 【Usage Scenarios】 - Water quality management in the beverage manufacturing process - Monitoring of source water, manufacturing water, and cleaning water - Early detection of foreign matter contamination risks 【Benefits of Implementation】 - Improved product quality through early detection of water quality abnormalities - Reduced risk of foreign matter contamination - Increased efficiency in water quality management operations

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Water Quality Monitoring System for Power Plants

Automating cooling water management to support stable operation.

In the management of cooling water at power plants, ensuring the efficient operation of equipment and safety is crucial. The quality of cooling water affects equipment corrosion and scale buildup, leading to decreased power generation efficiency and potential failures. In particular, proper management of turbidity, color, and residual chlorine is essential for the stable operation of the cooling water system. This system monitors these water quality parameters in real-time and detects abnormalities early, preventing equipment troubles before they occur. 【Usage Scenarios】 - Cooling water systems such as cooling towers and heat exchangers - Automation of water quality management - Early detection of water quality abnormalities 【Benefits of Implementation】 - Stable operation of equipment - Reduction of maintenance costs - Increased efficiency in water quality management tasks

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