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Sensors Product List and Ranking from 1365 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Aug 19, 2026~Sep 15, 2026
This ranking is based on the number of page views on our site.

Sensors Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Aug 19, 2026~Sep 15, 2026
This ranking is based on the number of page views on our site.

  1. null/null
  2. シスコム(SysCom) Tokyo//Trading company/Wholesale
  3. HexaCORE Co., Ltd. (formerly Chuo Seisakusho Co., Ltd.) Head Office and Factory Miyagi//Industrial Electrical Equipment
  4. 4 センシリオン Kanagawa//Electronic Components and Semiconductors
  5. 5 MACOME CORPORATION NAGANO TOKYO OSAKA NAGOYA HIROSHIMA Nagano//Industrial Electrical Equipment

Sensors Product ranking

Last Updated: Aggregation Period:Aug 19, 2026~Sep 15, 2026
This ranking is based on the number of page views on our site.

  1. [Basic Knowledge of Humidity Measurement Presented] Ultra-thin Temperature and Humidity Flexible Sensor シスコム(SysCom)
  2. Fujibo "Resistance Change Type Flexible Load Sensor" *Under Development 富士紡ホールディングス 近未来商品開発統括部 (BtoBサイト担当部門)
  3. Clamp-on flow sensor "FD-H series"
  4. 4 Radar Level Sensor "FR Series"
  5. 5 PICLIA Piezo Cable Sensor - High Heat Resistance, High Sensitivity *Evaluation Kit DAIKIN FINETECH, LTD.

Sensors Product List

7141~7170 item / All 7843 items

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Attraction-oriented seat sensor

Contributing to the safety management of attractions. Accurately detecting the presence or absence of passengers.

In the attraction industry, safety is the top priority, and various measures are required to ensure the safety of passengers. In particular, verifying the safety of seats is crucial, and accurately knowing the presence of passengers is essential. Seat sensors accurately detect the presence of passengers and support the safe operation of attractions. 【Usage Scenarios】 - Seats on roller coasters, Ferris wheels, and other attractions - Confirmation of passenger safety and seatbelt usage 【Benefits of Implementation】 - Ensuring passenger safety - Reducing the risk of accidents - Improving the reliability of attractions

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Concentration Support Using Sheet Sensors for Educational Institutions

Visualize the seating situation and optimize the learning environment.

In educational institutions, maintaining students' concentration is crucial for maximizing learning effectiveness. By monitoring students' posture and seating situations during class, it is possible to detect decreases in concentration or abnormalities early and take appropriate action. Our seat sensors detect seating conditions in detail and support students' concentration. 【Usage Scenarios】 - Monitoring students' seating situations during class - Identifying factors that hinder concentration - Improving the learning environment 【Benefits of Implementation】 - Enhanced student concentration - Maximized learning effectiveness - Creation of a better learning environment

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About the actual measurement test of the temperature sensor (thermistor)

We support your business with high-quality and meticulous product inspections utilizing our extensive experience and know-how!

This time, we will introduce the inspection of measurement device components using a constant temperature chamber. The inspection conducted this time was on a "temperature sensor" that measures temperature. A commonly used method for checking the integrity and functionality of sensors is to create a pseudo-measurement environment and actually operate the sensor within it. In the case of a temperature sensor, if it shows the same temperature of 25°C in that environment, we can determine that the product is good. However, maintaining a constant temperature in a room with air convection is very challenging. The fact that manufacturers promote their air conditioners with points like "we evenly heat (or cool) your room" can be seen as a reflection of the difficulty in maintaining a constant temperature indoors. *For more detailed information, you can view it through the related links. For further details, please download the PDF or feel free to contact us.*

  • Contract Inspection
  • Sensors

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Solving procurement challenges for processing machinery and machine parts in manufacturing SCM.

[Case Study Available] Solving Supply Chain Challenges! Mitsui & Co. Plastics' SCM Support Services

In recent years, with the diversification of consumer needs and the globalization of business, the importance of supply chain management has been increasing. However, many companies may be facing the following challenges: \Do you have any concerns regarding your supply chain or logistics?/ 【1】I want to build an SCM, but there are no personnel I can rely on. 【2】I want to strengthen the procurement and supply system to respond to the diversification of customer needs. 【3】I want to rapidly build a global supply chain. 【4】I lack information and know-how and am considering outsourcing. To address these challenges, we would like to introduce our SCM support services. 【Features】 ■ Over 20 years of support experience and abundant know-how Utilizing our experience in supporting procurement, production management, and logistics in domestic manufacturing, we assist in building the optimal system for your company. ■ Global network and high information capability We propose optimized logistics routes for procurement by leveraging a trading network of over 5,000 companies both domestically and internationally. ■ Concentration of resources on core business and realization of lead time reduction By outsourcing non-core operations, we help concentrate your resources on critical areas such as development and production, contributing to lead time reduction.

  • others
  • Other contract services
  • Other services
  • Sensors

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Industrial Sensors for Construction Sites

Support for remote monitoring of construction sites.

In the construction industry, there is a demand for safety management and efficiency on site. Remote monitoring systems allow for understanding the site conditions without human intervention, contributing to accident prevention and improved work efficiency. Industrial sensors are designed with durability and reliability in mind, assuming use in various environments at construction sites. 【Use Cases】 - Monitoring the operation status of heavy machinery and materials at construction sites - Safety management of workers - Environmental monitoring of the site 【Benefits of Implementation】 - Real-time understanding of site conditions to prevent accidents before they occur - Improved work efficiency and contribution to cost reduction - Reduced burden on managers through remote monitoring

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Makome Research Institute Co., Ltd. for Remote Medical Care

Development, manufacturing, and sales of industrial sensors.

In the field of remote medical care, it is important to accurately grasp patients' vital data. Especially when monitoring a patient's condition remotely, reliable sensor technology is required. Accurate data collection is essential for appropriate diagnosis and treatment. The industrial sensors developed by Makome Research Institute solve the challenges of data collection in remote medical care. 【Usage Scenarios】 - Remote patient monitoring - Collection of vital data in home healthcare - Integration into medical devices 【Effects of Implementation】 - Real-time understanding of patients' health conditions - Reduction of healthcare professionals' burden - Improvement in the quality of medical services

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Industrial Sensors for Logistics

Supporting the efficiency of logistics with industrial sensors.

In the logistics industry, accurately understanding the location and condition of cargo during transportation is essential for efficient operations and improving customer satisfaction. This is particularly important for tracking temperature-sensitive cargo and expensive precision equipment, where real-time information collection is crucial. Inaccurate tracking or lack of information can lead to delays, loss, and deterioration of quality. Our industrial sensors address these challenges and contribute to the efficiency of logistics. 【Use Cases】 - Cargo tracking - Monitoring of temperature-sensitive cargo - Vehicle location tracking 【Benefits of Implementation】 - Visualization of transportation status through real-time location tracking - Quality preservation through thorough temperature management - Reduction of risks related to loss and theft

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Industrial Sensors for the Energy Industry

Supporting energy efficiency with industrial sensors.

In the energy industry, it is essential to accurately grasp the operational status of equipment and optimize energy consumption. Particularly in large-scale facilities such as plants and power stations, precise data collection through sensors is crucial for efficient operation and cost reduction. Inaccurate data can lead to delays in detecting equipment anomalies and unnecessary energy consumption. Our industrial sensors support energy efficiency through high-precision measurement technology. 【Usage Scenarios】 - Monitoring the operational status of plants - Measuring the efficiency of power generation equipment - Visualizing energy usage 【Benefits of Implementation】 - Early detection of equipment anomalies - Optimization of energy consumption - Reduction of operational costs

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Industrial Sensors for Manufacturing Industry

Supporting quality inspection with industrial sensors.

In quality inspection of the manufacturing industry, accurate measurement of products and early detection of anomalies are required. To suppress the occurrence of defective products and improve production efficiency, high-precision sensor technology is essential. Makome Research Institute's industrial sensors address various challenges in the manufacturing process and contribute to strengthening quality control. [Application Scenarios] * Measurement of product dimensions * Detection of foreign matter contamination * Detection of operational failures [Effects of Implementation] * Improvement in the accuracy of quality inspection * Reduction of defective products * Enhancement of production efficiency

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APN Corporation for Agriculture

We will support the improvement of harvest forecast accuracy from development to manufacturing.

In the agricultural sector, improving the accuracy of harvest forecasts is essential for planned production and sales. Particularly for crops that are susceptible to the effects of weather and pests, accurate predictions directly contribute to reducing harvest losses and maintaining quality. Uncertain forecasts can lead to opportunity losses and excessive inventory risks. APN Corporation provides solutions that contribute to harvest forecasting through the development and manufacturing of IoT devices and sensors. 【Use Cases】 - Data collection on growth conditions using IoT sensors - Predicting harvest timing through data analysis - Building harvest forecasting models in conjunction with weather data 【Benefits of Implementation】 - Planned production and sales through improved harvest forecast accuracy - Reduction of harvest losses and maintenance of quality - Improvement of production efficiency

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Unipulse Corporation for Medical and Healthcare

Reliable technology and support that underpin remote medical care.

In the medical and healthcare industry, especially in telemedicine, there is a demand for safe and reliable care for patients. Remote operation of equipment and sensing technologies to accurately understand the patient's condition are crucial for delivering high-quality medical services. Improper equipment operation or inaccurate data can lead to delays in diagnosis and treatment, as well as risks to patient safety. Unipulse Corporation supports the resolution of these challenges in telemedicine through the development, manufacturing, and sales of various sensors such as strain gauges, load cells, displacement sensors, torque sensors, and vibration sensors, as well as robotic products like electric balancers and electric torque actuators. [Use Cases] - Operation of rehabilitation support equipment remotely - Monitoring of patients' vital signs and physical conditions - Precise positioning of medical devices remotely [Benefits of Implementation] - Improvement in the quality of remote patient care - Reduction of burden on healthcare professionals - Provision of safer and more accurate medical services

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Makome Research Institute Co., Ltd. for the Manufacturing Industry

Supporting quality control with industrial magnetic sensors.

In quality control within the manufacturing industry, accurate measurement and stable operation are required to maintain the precision and reliability of products. In particular, detecting subtle changes on the production line and monitoring factors that affect product performance are essential for maintaining quality. Inadequate measurement or monitoring can lead to the occurrence of defective products or a decline in product performance. Makome Research Institute's industrial magnetic sensors provide products that meet these quality control needs. 【Usage Scenarios】 - Detection of component positions on the production line - Confirmation of product operation - Anomaly detection in inspection processes 【Benefits of Implementation】 - Stabilization of quality - Reduction of defective products - Improvement of production efficiency

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Makome Research Institute Co., Ltd. Industrial Sensors for Agriculture

High-precision industrial magnetic sensors that support reproductive management.

In the agricultural field, it is essential to accurately grasp the growth conditions of crops and carry out optimal management. Particularly in monitoring growth environments and automation systems, precise data collection through sensors is indispensable. Inadequate measurements can lead to poor growth and reduced yields. Makome Research Institute's industrial magnetic sensors provide solutions to meet these growth management needs. 【Usage Scenarios】 - Environmental monitoring systems within fields - Control of automatic irrigation and fertilization systems - Location tracking and motion detection of agricultural machinery 【Benefits of Implementation】 - Appropriate management through visualization of growth conditions - Increased efficiency and labor-saving in operations - Stabilization of yields and improvement in quality

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Makome Research Institute Co., Ltd. for Automobiles

Industrial magnetic sensors supporting autonomous driving

In autonomous driving systems, high-precision sensors are required to accurately grasp the vehicle's condition and the surrounding environment. In particular, obtaining real-time information on the vehicle's behavior and location is essential for achieving safe and efficient autonomous driving. Inaccurate sensor data can lead to system malfunctions or accidents. Our company contributes to improving the reliability of autonomous driving systems through the development, manufacturing, and sales of industrial magnetic sensors. 【Usage Scenarios】 - Steering control of autonomous vehicles - Utilization as wheel speed sensors - Application in ADAS (Advanced Driver Assistance Systems) - High-precision data acquisition leveraging achievements in motorsports 【Benefits of Implementation】 - Enhanced safety of autonomous driving systems - Improved accuracy of vehicle control - Provision of accurate data in real-time - Offering reliable sensor solutions

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Makome Research Institute Co., Ltd. for Communications

Supporting stable network operation with industrial sensors.

In the telecommunications industry and network optimization, stable operation of systems and efficient management are required. In particular, the detection of abnormalities in network equipment and the maintenance of performance are directly linked to the reliability of service provision. Inadequate monitoring or failure to detect abnormalities early can lead to communication failures or service interruptions. Makome Research Institute's industrial sensors address these challenges and contribute to the stable operation of networks. 【Usage Scenarios】 - Monitoring the operational status of network equipment - Real-time monitoring of communication quality - Rapid identification of causes during failures 【Benefits of Implementation】 - Reduction of network downtime - Improvement of communication performance - Optimization of operational costs

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[For Electronic Component Manufacturing] PT-VM02 Ultrasonic Sound Pressure Sensor

Quantifying the condition of the cleaning tank to support quality control.

In the quality control of the electronic components manufacturing industry, the cleaning process is a crucial factor that affects product reliability. Changes in cavitation intensity within the cleaning tank and aging deterioration can lead to reduced cleaning effectiveness and adverse effects on products. To prevent these issues and maintain stable quality, it is essential to accurately understand the condition of the cleaning tank and implement appropriate management. The PT-VM02 supports problem-solving in quality control by quantifying the condition of the cleaning tank. 【Usage Scenarios】 - Daily management of the cleaning tank - Aging deterioration management - Performance comparison of cleaning equipment - Evaluation of cavitation intensity 【Benefits of Implementation】 - Visualization of the cleaning tank's condition for early detection of abnormalities - Quality improvement through optimization of the cleaning process - Stable operation of equipment and improved product yield - Reduction of maintenance costs

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  • Other measurement, recording and measuring instruments
  • Sensors

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Nearline-PM for Data Centers

Early detection of server anomalies to reduce downtime.

In a data center, the stable operation of servers is the most important issue. Abnormal vibrations from server cooling fans and power units can lead to system shutdowns. Nearline-PM continuously monitors the vibrations of these devices and detects abnormalities early, preventing downtime before it occurs. 【Usage Scenarios】 - Server rooms - Cooling fans and power units in data centers - 24/7 operational monitoring 【Benefits of Implementation】 - Stable operation of servers - Reduced risk of system shutdowns - Lower operational costs

  • Vibration Inspection
  • Vibration Monitoring
  • Safety Sensors
  • Sensors

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Nearline-PM for Infrastructure

No wiring work required, easy to install later. Constant monitoring of infrastructure equipment vibrations.

In the infrastructure industry, continuous monitoring is required to maintain the integrity of structures such as bridges and tunnels. In particular, vibrations are an important indicator of deterioration or abnormalities in structures. Nearline-PM enables quantitative and objective management of infrastructure equipment's vibrations through wireless vibration sensors, allowing for early detection of anomalies. It does not require wiring and is easy to retrofit, making it simple to implement in existing facilities. 【Usage Scenarios】 - Bridges - Tunnels - Plant equipment 【Benefits of Implementation】 - Early detection of equipment abnormalities, reducing repair costs - Enables planned maintenance, contributing to the longevity of equipment - Improves the efficiency of inspection work through remote monitoring

  • Vibration Inspection
  • Vibration Monitoring
  • Safety Sensors
  • Sensors

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Nearline-PM for Mining

Early detection of abnormalities in mining equipment using vibration sensors. Supporting improved operational efficiency.

In the mining industry, stable operation of equipment is essential for ensuring productivity and safety. In particular, equipment such as motors, pumps, and conveyors used in harsh environments has a high risk of failure due to vibration, and unexpected shutdowns can lead to significant losses. Nearline-PM addresses these challenges by enabling early detection of equipment anomalies and facilitating planned maintenance, thereby contributing to improved operational rates. 【Use Cases】 - Equipment such as motors, pumps, and conveyors in mining plants - Equipment prone to anomalies caused by vibration - Situations where remote monitoring of equipment operation is desired 【Benefits of Implementation】 - Prevents unexpected equipment shutdowns, maintaining productivity - Reduces maintenance costs - Extends the lifespan of equipment

  • Vibration Inspection
  • Vibration Monitoring
  • Safety Sensors
  • Sensors

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Nearline-PM for Food Factories

Support for quality control in food factories. Early detection of equipment anomalies with vibration sensors.

In the food industry, stable operation of manufacturing equipment is crucial for quality control. Contamination and production line stoppages can lead to a decline in product quality and production losses. Nearline-PM enables early detection of abnormalities in equipment such as motors and pumps through vibration diagnostics, allowing for planned maintenance. This reduces the risk of production stoppages due to sudden equipment failures and contributes to maintaining product quality. 【Usage Scenarios】 - Monitoring of motors, pumps, compressors, etc., on food production lines - Equipment condition management to reduce the risk of contamination - Predictive maintenance of equipment in the quality control department 【Benefits of Implementation】 - Prevents unexpected equipment failures, improving production efficiency - Maintains product quality and earns customer trust - Reduces costs through planned maintenance

  • Vibration Inspection
  • Vibration Monitoring
  • Safety Sensors
  • Sensors

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Nearline-PM for Aerospace

Support quality control of aerospace components with vibration sensors.

In the aerospace industry, the quality of components affects safety and performance. Particularly for parts subjected to vibration and stress, even minor anomalies can lead to serious accidents. Nearline-PM supports quality management by detecting initial anomalies in components through vibration measurement and analysis. It requires no wiring and is easy to retrofit, allowing for flexible integration into existing inspection systems. 【Usage Scenarios】 * Vibration inspection of aircraft components * Anomaly detection in engine parts * Quality management on the manufacturing line 【Benefits of Implementation】 * Improved quality through early detection of component anomalies * Cost reduction through planned maintenance * Streamlined inspection processes

  • Vibration Inspection
  • Vibration Monitoring
  • Safety Sensors
  • Sensors

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Nearline-PM for Shipbuilding

Monitoring the vibrations of structures to support safe operations.

In the shipbuilding industry, maintaining the integrity of the hull structure is essential for the safe operation of vessels. Particularly, prolonged use and operation in harsh environments can lead to deterioration and damage of the structure. Continuous monitoring is crucial for early detection of these issues and for implementing appropriate measures. Nearline-PM addresses these challenges through vibration diagnostics of structures using wireless vibration sensors. 【Use Cases】 - Vibration monitoring of hull structures - Vibration monitoring of engines and propulsion systems - Anomaly detection of various equipment 【Benefits of Implementation】 - Early detection of structural anomalies to prevent accidents - Enables planned maintenance and reduces costs - Enhances operational safety

  • Vibration Inspection
  • Vibration Monitoring
  • Safety Sensors
  • Sensors

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Nearline-PM for the Energy Industry

A wireless vibration sensor for early detection of abnormalities in energy equipment.

In the energy industry, equipment monitoring is crucial for the stable operation of plants and power stations. Equipment failures can lead to power supply interruptions and significant losses. It is especially important to detect abnormalities in rotating equipment such as motors, pumps, and fans early and to carry out planned maintenance. Nearline-PM is a wireless vibration sensor that addresses these challenges. 【Usage Scenarios】 - Power plants - Substations - Oil plants - Gas plants 【Benefits of Implementation】 - Prevents unexpected equipment shutdowns - Reduces maintenance costs - Extends equipment lifespan

  • Vibration Inspection
  • Vibration Monitoring
  • Safety Sensors
  • Sensors

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Nearline-PM for Mining

Optimize the operation of mining equipment with vibration sensors. No wiring required, easy to retrofit.

In the mining industry, the stable operation of equipment affects production efficiency. Particularly for critical equipment such as crushers and conveyors, it is important to detect abnormalities caused by vibrations early and to carry out planned maintenance. Sudden failures can lead to significant losses due to operational downtime. Nearline-PM addresses these challenges through vibration diagnostics of equipment using wireless vibration sensors. 【Usage Scenarios】 * Crushers * Conveyors * Pumps * Fans 【Benefits of Implementation】 * Early detection of equipment abnormalities and realization of planned maintenance * Prevention of sudden failures, reducing losses from operational downtime * Improvement of equipment operating rates and enhancement of production efficiency * Reduction of maintenance costs * On-site equipment condition monitoring and efficiency improvement

  • Vibration Inspection
  • Vibration Monitoring
  • Safety Sensors
  • Sensors

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Nearline-PM for Pharmaceuticals

A wiring-free vibration sensor visualizes the vibrations of pharmaceutical equipment, enabling early detection of abnormalities.

In the pharmaceutical industry, stable operation of manufacturing equipment is essential for maintaining product quality and production efficiency. In particular, abnormalities in rotating equipment such as compressors and pumps can lead to production line stoppages and a decline in product quality. Nearline-PM supports stable operation of these facilities by continuously monitoring their vibrations and detecting abnormalities early. 【Usage Scenarios】 - Vibration monitoring of pumps, compressors, and fans on pharmaceutical manufacturing lines - Vibration monitoring of equipment in clean rooms - Monitoring of equipment condition in quality control departments 【Benefits of Implementation】 - Prevents unexpected equipment failures and improves production efficiency - Maintains product quality and reduces the occurrence of defective products - Enables planned maintenance and reduces maintenance costs

  • Vibration Inspection
  • Vibration Monitoring
  • Safety Sensors
  • Sensors

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Near-Line PM for Disaster Prevention

We will detect bearing abnormalities early and ensure the safety of infrastructure facilities.

In the field of disaster prevention, the stable operation of infrastructure facilities is essential for protecting the safety of the public. In particular, failures of rotating machinery such as pumps and generators can reduce the ability to respond in emergencies. Nearline PM contributes to the stable operation of infrastructure facilities by enabling early detection of bearing abnormalities in these devices, allowing for proactive maintenance. 【Usage Scenarios】 - Pump equipment at fire stations - Emergency generators at disaster prevention centers - Air conditioning systems in public facilities 【Benefits of Implementation】 - Reduction of equipment downtime - Improvement of emergency response capabilities - Optimization of maintenance costs

  • Vibration Monitoring
  • shaft
  • Generators and transmission motors
  • Sensors

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Nearline PM for Financial Institutions

Early detection of bearing abnormalities to reduce fraud risk.

In financial institutions, stable operation of equipment is essential, and system downtime due to fraudulent activities can lead to significant losses. In particular, abnormalities in rotating machinery, which are critical infrastructure, can trigger a complete system shutdown. Nearline PM detects bearing abnormalities in high-frequency bands above 10 kHz, capturing signs of failure early to prevent system downtime caused by fraud risks. 【Usage Scenarios】 * Data center air conditioning systems * Backup power supply systems * Monitoring of critical infrastructure equipment 【Benefits of Implementation】 * Improved business continuity through stable operation of equipment * Reduced risk of system downtime due to failures * Early detection of abnormalities through high-frequency measurements

  • Vibration Monitoring
  • shaft
  • Generators and transmission motors
  • Sensors

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Signs of bearing abnormalities are not visible unless measured above 10 kHz.

Condition monitoring of rotating machinery: Why should we measure above 10 kHz?

"Why can't we detect abnormalities quickly?" The reason lies in the measurement frequency range. Initial damage to bearings cannot be captured below the conventional 1kHz. This white paper summarizes the reasons why high-frequency measurements (10kHz to 30kHz) change predictive maintenance.

  • Vibration Monitoring
  • pump
  • Motor
  • Sensors

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