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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:Jan 18, 2026
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グリッドリンク Product Lineup

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Automatic control Automatic control
Remote control Remote control
設備保全 設備保全
Water quality and water level Water quality and water level
Condensation Condensation
Noise and vibration Noise and vibration
Air quality Air quality
Land-based aquaculture Land-based aquaculture
hot spring hot spring
Electricity Electricity
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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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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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[Equipment Management IoT] Remote Control System for Solenoid Valves

[Streamlining and Efficiency of On-Site Operations] Reducing the burden of opening and closing valves at multiple locations.

● The electromagnetic valve can be manually operated ON/OFF using the operation button on-site. ● The electromagnetic valve can be remotely operated ON/OFF from a PC or smartphone via the cloud server. ● By combining with sensors such as water level, water quality, water temperature, and oil film detection, the ON/OFF of the electromagnetic valve can be automatically controlled. ● The ON/OFF of the electromagnetic valve can be automatically controlled through the scheduling function on the cloud. ● By combining with sensors such as flow rate, alerts for abnormal occurrences of the electromagnetic valve, early response, and preventive maintenance can be achieved. ▶ For quotation requests, please contact us [ through the web ] ◀ ▶ For more details, please [ download the catalog ] ◀

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Remote Control System for Axial Fans in Equipment Management IoT

[Reduction of manpower and efficiency in on-site operations] Ventilation and air blowing / drying / removal of dust, heat, and humidity / condensation prevention

● The axial fan can be manually operated ON/OFF using the operation button on-site. ● The axial fan can be remotely operated ON/OFF from a PC or smartphone via the cloud server. ● By combining with sensors such as temperature and humidity, the ON/OFF of the axial fan can be automatically controlled. ● The ON/OFF of the axial fan can be automatically controlled through the scheduling function on the cloud. ● By combining with sensors such as vibration, alerts for abnormal occurrences of the axial fan, early response, and preventive maintenance can be achieved. ▶ For quotation requests, please [ contact us via the web ] ◀ ▶ For more details, please [ download the catalog ] ◀

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Cloud-based Fan Automatic Control System for Quality Management IoT

■Case studies of quality management IoT for steel, non-ferrous metals, paper, painting, and logistics warehouses■

In large spaces such as factories and logistics warehouses, numerous blowers are introduced and managed to achieve the following effects: ■ Suppression of condensation By blowing air in low-temperature, high-humidity areas where condensation is likely to occur, we can suppress the generation of moisture, wetness, and condensation. ■ Prevention of heatstroke By lowering body temperature through air blowing, the risk of heatstroke for workers is reduced. To maximize these effects, it is necessary to operate a large number of blowers properly, and in large spaces, remote control and automatic control functions are required. By linking with our "Condensation Risk Monitoring System" (https://www.ipros.jp/product/detail/2000618805/), it becomes possible to achieve energy savings while demonstrating the effectiveness of condensation countermeasures. ▶ For quotation requests, please contact us [ via the web ] ◀ ▶ For more details, please [ download the catalog ] ◀

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Cloud-based condensation risk monitoring system for quality management IoT.

■Quality Control IoT Case Studies for Steel, Non-Ferrous Metals, Pulp and Paper, Coating, and Logistics Warehousing■

Monitors the risk of condensation, which can cause rust on steel materials, corrosion on aluminum materials, and uneven paint application. By calculating the dew point temperature from the surrounding environmental temperature and humidity, and monitoring the difference between this and the surface temperature of the monitored objects (products, walls, ceilings, floors, etc.), the risk of condensation is assessed. Notifications are sent via email, patrol lamps, and automated voice calls according to the risk level (caution / countermeasures / alarm) to prompt quick responses such as ventilation or relocation of stored items. As an option, it is also possible to automatically control a blower. *Dew point temperature: The temperature at which condensation occurs on the target object (products, walls, ceilings, etc.), calculated from the surrounding environmental temperature and relative humidity. ▶ For quotation requests, please contact us via [Web Inquiry] ◀ ▶ For more details, please download the [Catalog] ◀

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[Machine Maintenance IoT] Machine Condition Monitoring System

We will monitor the performance parameters of industrial machinery and enhance maintenance operations.

This is a SaaS platform for industrial machinery that realizes the visualization of the site and the smart maintenance. It automatically monitors key performance parameters in real-time and detects anomalies to reduce unplanned downtime. It supports predictive maintenance by detecting signs of equipment abnormalities and performing maintenance as needed. 【Main Features】 1. Real-time remote monitoring Important operational data and anomalies for each machine are monitored on the cloud 24/7. 2. Alert notifications and anomaly detection Anomalous signs are automatically assessed and immediately notified to the responsible personnel, supporting rapid initial response. 3. Predictive maintenance and trend analysis Based on accumulated data, it enables lifespan predictions and optimization of maintenance timing. 4. Workflow optimization Past trouble histories and work details are database-managed, allowing for efficient maintenance planning and progress management. 【Benefits】 ● Reduction in maintenance costs ● Improvement in machine operating rates ● Increased productivity through failure prevention ● Streamlining of maintenance work and standardization of work quality ● Advancing the maintenance and operation of industrial machinery to the next stage ▶ For more details, please download the PDF ◀

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[Machine Maintenance IoT] Machine Vibration Monitoring System

We will monitor the performance parameters (vibration) of industrial machinery and enhance maintenance operations.

This is a platform for industrial machinery that realizes visualization of the site and smart maintenance. It automatically monitors the key performance parameter of vibration in real-time and detects anomalies, thereby reducing unplanned downtime. 【Main Features】 1. Real-time Remote Monitoring Vibration data from the machinery is collected using dedicated sensors and sent to the cloud. Administrators can check the status anytime and anywhere using smart devices or PCs. 2. Anomaly Detection and Alert Notification Automatically detects abnormal vibrations that exceed set thresholds. In the event of a problem, immediate notifications are sent to support rapid response. 3. Historical Data Accumulation and Analysis Vibration data is safely stored as historical records. Long-term analysis allows for understanding degradation trends and planning optimal maintenance strategies. 【Benefits】 ● Prevention of sudden machinery failures and production stoppages ● Cost reduction through planned maintenance activities ● Efficient equipment management based on degradation predictions ● 24-hour monitoring system for peace of mind, even at remote locations or during nighttime ● Improved production line operating rates and stabilized quality ▶ For more details, please download the PDF ◀

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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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Condensation Risk Monitoring System for Warehouses

Protects the goods in the warehouse from condensation and maintains quality.

In the warehouse industry, maintaining the quality of stored goods is crucial. Condensation can cause rust on steel, corrosion on aluminum, and uneven paint, potentially diminishing the value of the cargo. Our condensation risk monitoring system calculates the dew point temperature from the ambient temperature and humidity, and assesses the risk of condensation by monitoring the difference between the surface temperature of the monitored objects. Notifications are sent via email, patrol lamps, and automated voice calls according to the risk level, prompting quick responses such as ventilation or relocation of stored items, thereby protecting the quality of the cargo. 【Usage Scenarios】 - Temperature and humidity management within the warehouse - Measures against condensation on stored goods - Streamlining quality management 【Benefits of Implementation】 - Maintenance of cargo quality - Reduction of complaint occurrence risk - Cost savings

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Condensation Risk Monitoring System for Chemical Plants

We monitor the risk of condensation that causes corrosion and ensure the safety of the plant.

In the chemical plant industry, equipment corrosion is a significant issue that can lead to operational shutdowns and decreased safety. Particularly in environments where temperature and humidity can fluctuate, the occurrence of condensation is a major factor that accelerates corrosion. Our condensation risk monitoring system calculates the dew point temperature from the ambient temperature and humidity, and assesses the risk of condensation by monitoring the difference between the surface temperature of the monitored object and the dew point. By notifying through email, patrol lamps, and automated voice calls according to the risk level, we encourage prompt responses and prevent equipment troubles caused by corrosion. 【Usage Scenarios】 * Piping within chemical plants * Tanks * Reaction towers * Other equipment with high corrosion risk 【Benefits of Implementation】 * Suppression of equipment corrosion * Reduction of maintenance costs * Stabilization of operations * Improvement of safety

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Condensation Risk Monitoring System for Electronic Components

Monitoring condensation risks in electrostatic discharge measures.

In the electronic components industry, it is essential to minimize the impact of condensation as an electrostatic countermeasure. Condensation can lead to insulation failures and corrosion of electronic components, potentially compromising product reliability. Our condensation risk monitoring system calculates the dew point temperature from the ambient temperature and humidity, and assesses the risk of condensation by monitoring the difference between the surface temperature of the monitored object and the dew point. Notifications are sent via email, patrol lamps, and automated voice calls according to the risk level, prompting swift action. 【Usage Scenarios】 - Storage warehouses for electronic components - Manufacturing lines - Environments requiring electrostatic countermeasures 【Benefits of Implementation】 - Early detection of condensation risk - Maintenance of product quality - Strengthening of electrostatic countermeasures

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Condensation Risk Monitoring System for Pharmaceuticals

Maintain the quality of pharmaceuticals! Monitor condensation risks and support prompt measures.

In the pharmaceutical industry, thorough management of storage environments is required to maintain product quality. In particular, condensation caused by changes in temperature and humidity poses a significant risk of degradation and quality deterioration of pharmaceuticals. Condensation can promote the decomposition of active ingredients and the deterioration of containers, potentially adversely affecting the safety and efficacy of the products. Our condensation risk monitoring system contributes to the preservation of pharmaceutical quality. 【Usage Scenarios】 - Pharmaceutical storage warehouses - Quality control in manufacturing processes - Areas where temperature and humidity management is critical 【Benefits of Implementation】 - Early detection and countermeasures for condensation risks - Preservation of pharmaceutical quality - Assurance of product safety - Optimization of storage environments

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Condensation Risk Monitoring System for Food Manufacturing

We monitor the risk of mold occurrence in food manufacturing to ensure quality.

In the food manufacturing industry, it is important to suppress the occurrence of mold in order to maintain product quality. Particularly in environments with high temperature and humidity, condensation is likely to occur, which can become a breeding ground for mold. Condensation can lead to product deterioration and unpleasant odors, potentially damaging a company's reputation. Our condensation risk monitoring system calculates the dew point temperature from the ambient temperature and humidity, and assesses the risk of condensation by monitoring the difference between the surface temperature of the monitored object and the dew point. By notifying via email, patrol lamps, or automated voice calls according to the risk level, we encourage prompt responses and suppress the occurrence of mold. 【Usage Scenarios】 - Food storage warehouses - Manufacturing lines - Refrigeration and freezing equipment - Product quality control 【Benefits of Implementation】 - Reduction of mold occurrence risk - Maintenance of product quality - Reduction of food waste - Gaining customer trust

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Condensation Risk Monitoring System for Precision Equipment

Monitoring the risk of condensation that can cause failures in precision machinery.

In the precision machinery industry, maintaining product quality and ensuring long-term operation are essential. Particularly for precision instruments that are susceptible to temperature changes and humidity, the occurrence of condensation poses a significant risk of failure and performance degradation. Our condensation risk monitoring system calculates the dew point temperature from the surrounding environmental temperature and humidity, and assesses the condensation risk by monitoring the difference between this and the surface temperature of the monitored object. This enables prompt responses such as ventilation or changes in storage locations, thereby reducing the risk of failure for precision instruments. 【Usage Scenarios】 - Precision machinery manufacturing factories - Precision machinery storage warehouses - Research and development facilities - Quality control departments 【Benefits of Implementation】 - Reduction of failure risk due to condensation - Maintenance of product quality - Improvement of operational efficiency - Cost reduction

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Automotive Condensation Risk Monitoring System

A condensation risk monitoring system that protects the quality of automotive parts.

In the automotive industry, maintaining the quality of parts is crucial. In particular, metal and electronic components are constantly exposed to the risk of deterioration due to rust and corrosion from condensation, as well as electrical system malfunctions. Condensation can lead to a decline in product performance and safety issues. Our condensation risk monitoring system calculates the dew point temperature from the ambient temperature and humidity, and determines the risk of condensation by monitoring the difference from the surface temperature of the monitored object. By notifying based on the risk level through email, patrol lamps, and automated voice calls, we encourage prompt responses and reduce the risk of component deterioration. 【Usage Scenarios】 - Storage locations for metal parts - Manufacturing processes for electronic components - Storage locations for finished vehicles - During the transportation of parts 【Benefits of Implementation】 - Maintenance of part quality - Reduction of defective products - Gaining customer trust - Cost reduction

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Condensation Risk Monitoring System for Data Centers

Monitoring the risk of condensation in data center equipment cooling.

In a data center, proper temperature and humidity management is essential to ensure the stable operation of information equipment such as servers. In particular, the efficient operation of cooling systems is important for reducing the risk of equipment failure and keeping operational costs down. Condensation can lead to corrosion and failure of equipment, potentially resulting in data loss and system downtime. Our condensation risk monitoring system monitors temperature and humidity, allowing for early detection of condensation risks to prevent these issues before they occur. 【Usage Scenarios】 - Server rooms - Around air conditioning equipment - Cooling water piping 【Benefits of Implementation】 - Reduces the risk of equipment failure - Reduces the risk of data loss - Lowers operational costs

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Condensation Risk Monitoring System for Refrigeration and Freezing

We monitor the risk of condensation in the freezer and refrigerator to protect the quality of food.

In the frozen and refrigerated food industry, temperature management is extremely important, and condensation inside the storage area poses a significant risk of food quality deterioration and equipment failure. Particularly in environments with drastic temperature changes, it is essential to detect the occurrence of condensation early and take appropriate measures. Our condensation risk monitoring system calculates the dew point temperature from temperature and humidity, visualizing the risk of condensation occurrence, thereby contributing to the maintenance of food quality. 【Usage Scenarios】 - Inside frozen and refrigerated warehouses - Food storage warehouses - Logistics centers requiring temperature management 【Benefits of Implementation】 - Early detection of condensation risks - Preservation of food quality - Prolonged equipment lifespan - Reduction of unnecessary costs

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Machine Vibration Monitoring System for Manufacturing Industry

Monitor the vibrations of industrial machinery to reduce unplanned downtime.

In the manufacturing industry, the stable operation of equipment affects production efficiency. Unexpected machine failures can lead to production line stoppages, resulting in significant losses. It is important to detect abnormalities caused by vibrations early and to carry out planned maintenance to minimize downtime. Our machine vibration monitoring system monitors vibration data from industrial machinery in real-time and detects abnormalities to prevent equipment failures before they occur. 【Use Cases】 - Abnormality detection of machine tools and conveyor equipment on the production line - Monitoring of plant equipment operating 24 hours a day - Understanding the status of equipment located in remote areas 【Benefits of Implementation】 - Reducing the risk of production stoppages due to sudden machine failures - Cost reduction through planned maintenance - Extending the lifespan of equipment - Labor savings through remote monitoring

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Machine Vibration Monitoring System for Oil Plants

Monitor the vibrations of plant equipment to contribute to stabilizing operations and reducing maintenance costs.

In the oil plant industry, stable operation of equipment is essential, and unexpected shutdowns can lead to significant losses. In particular, abnormal vibrations in rotating machinery are a major cause of early deterioration and failure of equipment. Our machinery vibration monitoring system monitors the vibrations of plant equipment in real-time, allowing for early detection of anomalies, thereby reducing unplanned downtime and contributing to improved operational efficiency. 【Usage Scenarios】 - Oil refining plants - Chemical plants - Crude oil drilling rigs - Rotating machinery such as pumps, compressors, and turbines 【Benefits of Implementation】 - Prevention of sudden machinery failures - Cost reduction through planned maintenance - Prolonged equipment lifespan - Enhanced safety through 24-hour remote monitoring

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Machine Vibration Monitoring System for Power Equipment

A vibration monitoring platform that supports the stable operation of power equipment.

In the power industry, early detection of abnormalities in critical equipment such as generators and transformers, along with planned maintenance, is essential for stable supply. Equipment failures can lead to widespread power outages and have serious impacts on social infrastructure. Our machine vibration monitoring system monitors equipment vibration data in real-time and detects anomalies, thereby reducing unplanned downtime and contributing to stable supply. 【Usage Scenarios】 - Power plants - Substations - Transmission equipment - Rotating machines such as pumps, fans, and compressors 【Benefits of Implementation】 - Reduced risk of power outages due to sudden equipment failures - Cost savings through planned maintenance - Extended equipment lifespan - Peace of mind provided by 24/7 remote monitoring

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Machine Vibration Monitoring System for Steelmaking

Monitoring the vibrations of steelmaking equipment to support quality maintenance and stable operation.

In the steel industry, it is important to detect equipment abnormalities early and take appropriate measures to maintain the stability of the manufacturing process and the quality of the products. Particularly in equipment used in high-temperature environments or under heavy loads, deterioration due to vibrations and temperature changes significantly affects quality. A machine vibration monitoring system aims to address these challenges by monitoring equipment vibration data in real-time, detecting anomalies early, reducing unplanned downtime, and stabilizing product quality. 【Application Scenarios】 * Rolling mills * Sintering machines * Blast furnaces * Continuous casting equipment 【Benefits of Implementation】 * Early detection of equipment abnormalities to prevent sudden failures * Stabilization of product quality * Improvement of production efficiency

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Vibration Monitoring System for Chemical Plants

Monitoring the vibrations of plant equipment to support safe operations.

In the chemical plant industry, the safe operation of equipment is the most important issue. In particular, abnormal vibrations in rotating machinery can lead to serious accidents. Vibration monitoring systems are essential for improving the safety of the plant. 【Usage Scenarios】 * Rotating machinery such as reactors, pumps, and compressors * Plants handling hazardous materials * Plants operating continuously 24 hours a day 【Benefits of Implementation】 * Early detection of equipment abnormalities to prevent accidents * Reduction of downtime through planned maintenance * Improvement of overall plant safety

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Mining Machine Vibration Monitoring System

Monitor the vibrations of mining machinery and reduce downtime.

In the mining industry, the stable operation of heavy machinery and plants affects production efficiency. Machine failures lead not only to losses from production stoppages but also to decreased safety. A machine vibration monitoring system provides real-time condition monitoring and anomaly detection to address these challenges. This helps reduce unplanned downtime and supports safe operations. 【Use Cases】 - Mining machinery (excavators, transport vehicles, etc.) - Concentration plants - Crushers 【Benefits of Implementation】 - Prevention of sudden machine failures - Cost reduction through planned maintenance - Improvement of production line operating rates

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Machine Vibration Monitoring System for Water Treatment

Early detection of pump anomalies to support stable operation of water treatment facilities.

In the water treatment industry, pump failures can lead to facility shutdowns and potentially impact stable water supply. Especially for pumps that operate 24 hours a day, it is crucial to continuously monitor vibrations and temperature changes to detect abnormalities early. Our machine vibration monitoring system monitors pump vibration data in real-time and detects anomalies, thereby reducing unplanned downtime and contributing to the stable operation of water treatment facilities. 【Use Cases】 - Pumps in water purification plants, sewage treatment plants, and wastewater treatment facilities - Monitoring of pump vibrations, temperature, and unusual noises - Checking pump status from remote locations 【Benefits of Implementation】 - Reduced risk of operational shutdowns due to pump failures - Lower maintenance costs - Achieving stable operation of water treatment facilities

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Machine Vibration Monitoring System for the Food Manufacturing Industry

Reduce the risk of foreign matter contamination in food manufacturing lines and strengthen quality control.

In the food manufacturing industry, foreign object contamination is a serious issue that not only undermines product quality and safety but can also damage a company's reputation. Abnormal vibrations in machinery on the production line are one sign of potential contamination, making early detection and countermeasures essential. Our machine vibration monitoring system continuously monitors the vibrations of key machinery on the production line in real-time, detecting anomalies to reduce the risk of foreign object contamination and ensure food safety. 【Use Cases】 - Machinery such as filling machines, packaging machines, and conveyors in food manufacturing lines - Processes with a high risk of foreign object contamination 【Benefits of Implementation】 - Early detection of machinery abnormalities to prevent foreign object contamination - Improvement in product quality and safety - Enhanced company reliability

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Machine Vibration Monitoring System for Automotive Manufacturing

Reduce production line downtime and improve operational efficiency.

In the automotive manufacturing industry, production line stoppages lead to significant losses. In particular, failures of key equipment such as press machines and welding robots can impact the entire production schedule, potentially resulting in delivery delays and loss of customer trust. A machine vibration monitoring system aims to address these challenges by early detection of equipment anomalies and preventing line stoppages before they occur. 【Usage Scenarios】 * Press machines * Welding robots * Conveyor systems * Painting lines 【Benefits of Implementation】 * Reduction in unexpected line stoppages * Cost optimization through planned maintenance * Improvement in production efficiency * Stabilization of quality

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Machine Vibration Monitoring System for Data Centers

Optimize data center cooling efficiency and reduce downtime.

In data centers, the stable operation of servers and cooling systems is crucial, and maintaining cooling efficiency is essential. In particular, equipment vibrations can be signs of performance degradation or failure, potentially impacting the overall operation of the data center. Our machine vibration monitoring system monitors vibrations from cooling fans and pumps in real-time, allowing for early detection of anomalies, reducing unplanned downtime, and contributing to the optimization of cooling efficiency. 【Usage Scenarios】 - Cooling fans - Pumps - Air conditioning equipment 【Benefits of Implementation】 - Early detection of abnormalities in cooling systems - Cost reduction through planned maintenance - Stable operation of data centers - Promotion of energy efficiency

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Digital transformation of wastewater treatment using IoT/AI for food manufacturing.

Automating wastewater treatment to support the efficiency of food manufacturing.

In the food manufacturing industry, there is a demand for the efficiency of wastewater treatment. In particular, thorough water quality management and the resolution of labor shortages are important challenges. Manual wastewater treatment not only requires time and effort but also has limitations in the accuracy of water quality management. Our IoT/AI-driven digital transformation of wastewater treatment addresses these challenges. 【Usage Scenarios】 - Wastewater treatment facilities in food manufacturing plants - Automation of water quality management - Resolution of labor shortages 【Benefits of Implementation】 - Improved accuracy of water quality management - Cost reduction through labor savings - Significant improvement in operational efficiency

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Digital Transformation of Wastewater Treatment in Chemical Plants through IoT/AI

Automate wastewater treatment to achieve water quality management and cost reduction.

In the chemical plant industry, water quality management and efficiency in wastewater treatment are important challenges. In particular, there is a need to respond to water quality fluctuations due to the discharge of diverse waste liquids, comply with regulations, and reduce operating costs. Manual water quality monitoring and chemical dosing carry risks of human error and delays, which may result in suboptimal treatment. Our IoT/AI-driven digital transformation of wastewater treatment addresses these challenges. 【Use Cases】 - Wastewater treatment facilities in chemical plants - Automation of water quality management - Optimization of chemical usage - Labor reduction through remote monitoring 【Benefits of Implementation】 - Real-time monitoring of water quality data - Cost reduction through optimization of chemical usage - Early detection and response to abnormalities - Reduction of operating costs through labor savings

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Digital Transformation of Wastewater Treatment for Pharmaceuticals using IoT/AI

Supporting quality control in pharmaceutical factories through the digital transformation of wastewater treatment.

In the pharmaceutical industry, strict management of water quality in the manufacturing process is required. The quality of wastewater treatment directly affects the quality of the products, so it is important to maintain a consistently stable water quality. Manual water quality management carries risks due to human error and delays in measurement. Our IoT/AI-based wastewater treatment digital transformation system automates water quality monitoring, scum recovery, automatic dosing of sludge settling agents, and streamlines chemical inventory management, contributing to improved quality control. 【Usage Scenarios】 - Wastewater treatment facilities in pharmaceutical factories - Streamlining water quality management - Strengthening quality control 【Benefits of Implementation】 - Real-time monitoring of water quality data - Optimization of chemical usage - Reduction of on-site workload

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Digital Transformation of Wastewater Treatment using IoT/AI for the Pulp and Paper Industry

Automating wastewater treatment to achieve energy savings and improved operational efficiency.

In the pulp and paper industry, there is a demand for improved energy efficiency in wastewater treatment. In particular, electricity consumption in the wastewater treatment process contributes to increased costs. Manual water quality management and chemical dosing can lead to human errors and delays in optimization, potentially reducing energy efficiency. Our IoT/AI-driven digital transformation of wastewater treatment contributes to energy savings and operational efficiency through the automation of water quality measurement, optimization of scum recovery, and automation of chemical dosing. 【Use Cases】 - Optimization of the wastewater treatment process - Automation of water quality management - Optimization of chemical usage 【Benefits of Implementation】 - Reduction in energy consumption - Cost savings through optimized chemical usage - Improvement in operational efficiency

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DX of wastewater treatment using IoT/AI for semiconductors

Automating wastewater treatment to achieve high-precision water quality management.

In the semiconductor industry, the use of ultra-pure water in the manufacturing process and the advanced management of wastewater treatment associated with it are required. In particular, the contamination of fine particles and impurities directly affects product quality, making the precision of wastewater treatment crucial. Manual water quality management can be challenging to maintain in optimal condition due to human error and delays in measurement. Our IoT/AI-powered wastewater treatment digital transformation solution automates water quality monitoring, scum recovery, automatic dosing of sludge settling agents, aeration tank management, raw water tank and mixing tank management, and chemical inventory management, achieving high-precision water quality management. 【Usage Scenarios】 - Wastewater treatment facilities in semiconductor manufacturing plants - Locations requiring high-precision water quality management - Places where strict management of water pollutants is necessary 【Benefits of Implementation】 - Reduction of human errors through automation of water quality management - Rapid response through real-time collection and analysis of water quality data - Cost reduction through optimization of chemical usage - Improvement of product quality through stable water quality management

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Digital Transformation of Wastewater Treatment in the Textile Industry through IoT/AI

Achieving cost reduction and environmental impact reduction through the automation of wastewater treatment.

In the textile industry, reducing costs and minimizing environmental impact in wastewater treatment are important challenges. Optimizing the wastewater treatment process contributes to solving these issues. Manual water quality management and chemical dosing lead to increased labor costs and higher chemical usage, which drive up expenses. Our IoT/AI-based wastewater treatment digital transformation solution addresses these challenges. 【Usage Scenarios】 - Reducing labor costs through automation of the wastewater treatment process - Optimizing chemical usage through automation of water quality measurement - Improving the efficiency of site patrols through remote monitoring 【Benefits of Implementation】 - Reduction in costs associated with wastewater treatment - Improved accuracy in water quality management - Decreased environmental impact

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Digital Transformation of Wastewater Treatment in Oil Refining using IoT/AI

Automating wastewater treatment to support safe operations.

In the oil refining industry, ensuring safety in wastewater treatment is the top priority. The wastewater generated during the handling of crude oil and chemicals poses a risk of environmental pollution, making proper treatment essential. Manual water quality management carries the risk of accidents due to human error and oversight, and continuous monitoring around the clock is challenging. Our IoT/AI-driven digital transformation of wastewater treatment automates water quality monitoring, detects anomalies, and optimizes chemical dosing, supporting safe operations. 【Use Cases】 - Wastewater treatment plants - Automation of water quality management - Early response through anomaly detection 【Benefits of Implementation】 - Reduction of water quality pollution risks - Decrease in human errors - 24/7 monitoring - Cost reduction

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