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Vibration Sensors Product List and Ranking from 47 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Apr 22, 2026~May 19, 2026
This ranking is based on the number of page views on our site.

Vibration Sensors Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Apr 22, 2026~May 19, 2026
This ranking is based on the number of page views on our site.

  1. 中山水熱工業 Mie//Service Industry
  2. 旭化成エンジニアリング Tokyo//equipment
  3. 中電シーティーアイ 本社 Aichi//Service Industry
  4. 4 null/null
  5. 5 昭和測器 本社 Tokyo//Industrial Electrical Equipment

Vibration Sensors Product ranking

Last Updated: Aggregation Period:Apr 22, 2026~May 19, 2026
This ranking is based on the number of page views on our site.

  1. Equipment Diagnosis System "V-Equipment" 中電シーティーアイ 本社
  2. High-performance wireless vibration sensor with fault analysis capabilities for rotating machinery.
  3. 79GHz millimeter wave radar type non-contact vibration sensor サクラテック
  4. 4 For preventive maintenance of rotating machinery! Compact WiFi vibration sensor available at a low price. 中山水熱工業
  5. 5 Small WiFi vibration sensor adopted by Toshiba Mitsubishi Electric Industrial Systems Corporation. 中山水熱工業

Vibration Sensors Product List

121~132 item / All 132 items

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Conan Air for Building Management: Wi-Fi Vibration Sensor

Easy with your smartphone! Early detection of building equipment abnormalities to maintain a safe and secure environment!

In building management, the stable operation of equipment is crucial, and unexpected failures can lead to impacts on tenants and increased repair costs. It is particularly important to detect abnormalities in equipment that involves vibrations, such as air conditioning systems and pumps, at an early stage and to perform appropriate maintenance. Conan Air continuously monitors the vibrations of these systems and detects anomalies, preventing failures and supporting the safe operation of the building. 【Use Cases】 - Detection of abnormalities in air conditioning systems - Detection of abnormalities in pump systems - Detection of abnormalities in elevators - Monitoring of other equipment that involves vibrations 【Benefits of Implementation】 - Reduced risk of equipment failure - Decreased maintenance costs - Improved safety of the building - Realization of labor savings

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  • Vibration Monitoring
  • Vibration Sensors

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Equipment Diagnostic System【Machine Diagnostic】

Accurate analysis of equipment through dimensional and dimensionless analysis! Introducing our diagnostic system.

We would like to introduce our "Equipment Diagnosis System." By high-speed sampling of data and performing dimensional and non-dimensional analysis in both time and frequency domains, we accurately analyze the equipment. Please feel free to contact us when you need our services. 【Database】 ■ORACLE ■SQL-SERVER ■MS-ACCESS ■PERVASIVE ■InterBase ■Firebird *For more details, please refer to the PDF document or feel free to contact us.

  • Acoustic Analysis
  • Vibration Sensors

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Selection method for vibration sensors and transmitters for rotating machinery and reciprocating motion equipment.

I will explain about the sensor, but it also applies to the vibration transmitter!

Monitoring the health of assets such as rotating machinery and reciprocating machinery is essential for many industries. Many industries rely on various types of rotating and reciprocating machinery to ensure processes function correctly and to maintain timely and safe operations. Operators need to ensure that equipment is functioning properly so that production proceeds as scheduled. It is necessary to monitor the vibrations of rotating equipment such as pumps, fans, cooling towers, blowers, and motors. Vibration sensors (usually with voltage output) or transmitters (4-20mA output) that monitor the vibration output from the machinery serve as effective devices for monitoring this equipment. The type of sensor or transmitter can be selected based on the speed of the machinery and the type of bearings used. *For more detailed content, please refer to the related links. For more information, feel free to download the PDF or contact us.

  • Vibration Monitoring
  • Sensors
  • Vibration Sensors

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Nearline-PM for the Energy Industry

No wiring work required, easy to install later. Achieve equipment maintenance at a low cost.

In the energy industry's equipment maintenance, stable operation of plants is crucial. In particular, failures of rotating machines such as motors, pumps, fans, and compressors can lead to losses due to operational downtime and decreased safety. Nearline-PM continuously monitors the vibrations of these facilities, enabling early detection of failure signs and allowing for planned maintenance. This contributes to stable operation of equipment and reduction of maintenance costs. 【Usage Scenarios】 - Power plants - Substations - Oil plants - Gas plants 【Benefits of Implementation】 - Reduced risk of unexpected equipment shutdowns - Lower maintenance costs - Extended equipment lifespan

  • Vibration Inspection
  • Vibration Monitoring
  • Safety Sensors
  • Vibration Sensors

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Nearline-PM for Pharmaceuticals

Early detection of equipment abnormalities in pharmaceutical processes with vibration sensors. Supporting planned maintenance.

In the pharmaceutical industry, process management emphasizes the importance of stable operation of manufacturing equipment. Equipment failures can lead to production stoppages and quality issues, potentially resulting in significant losses. Particularly in drug manufacturing, abnormalities in equipment directly affect product quality, necessitating early detection of anomalies and appropriate responses. Nearline-PM enables early detection of equipment anomalies through vibration diagnostics using vibration sensors, facilitating planned maintenance. 【Use Cases】 - Monitoring of pumps, compressors, fans, and other equipment on the production line - Remote monitoring of equipment vibration data - Early detection of equipment anomalies to reduce downtime 【Benefits of Implementation】 - Reduces the risk of equipment failure and achieves stable operation - Cuts maintenance costs through planned maintenance - Contributes to maintaining product quality

  • Vibration Inspection
  • Vibration Monitoring
  • Safety Sensors
  • Vibration Sensors

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Nearline-PM for Manufacturing Industry

No wiring work required! Detects equipment vibrations and enables predictive maintenance.

In the manufacturing industry, production stoppages due to equipment failures can lead to significant losses. In particular, rotating machines such as motors, pumps, fans, and compressors often exhibit abnormal vibrations as signs of impending failure, making early anomaly detection crucial. Nearline-PM addresses these challenges by using wireless vibration sensors for equipment vibration diagnostics, enabling early detection of abnormalities and facilitating planned maintenance. This reduces the risk of production stoppages due to unexpected failures and helps establish a stable production system. 【Use Cases】 * Anomaly detection for rotating machines such as motors, pumps, fans, and compressors * Abnormality detection in bearings * IoT implementation for equipment 【Benefits of Implementation】 * Reduction in maintenance costs * Prevention of unexpected failures * Improved equipment status verification and efficiency on-site

  • Vibration Inspection
  • Vibration Monitoring
  • Safety Sensors
  • Vibration Sensors

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Nearline-PM for Infrastructure

No wiring work required, easy to install afterwards. Protects the structural integrity of infrastructure facilities through vibration diagnosis.

In the infrastructure industry, maintaining the integrity of structures such as bridges, tunnels, and plants is crucial. It is necessary to detect deterioration and abnormalities in structures early to prevent large-scale repairs and accidents. Nearline-PM uses wireless vibration sensors for vibration diagnostics, enabling early detection of abnormalities in infrastructure facilities and supporting planned maintenance. It requires no wiring work and can be easily retrofitted to existing equipment. 【Usage Scenarios】 - Vibration monitoring of bridges - Abnormality detection in plant equipment - Vibration monitoring of equipment in tunnels 【Benefits of Implementation】 - Early detection of abnormalities in structures, reducing repair costs - Prevention of unexpected accidents - Contributing to the longevity of equipment

  • Vibration Inspection
  • Vibration Monitoring
  • Safety Sensors
  • Vibration Sensors

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Nearline PM for the manufacturing industry

Wireless vibration sensor contributing to the early detection of bearing abnormalities.

In quality control of the manufacturing industry, stable operation of equipment is essential for maintaining product quality. Abnormalities in bearings can lead to product defects and stoppages in the production line. It is particularly important to detect early signs of bearing abnormalities that appear in the high-frequency range and take appropriate measures. Near-line PM captures signs of bearing abnormalities early through high-frequency measurements, supporting stable operation of equipment. 【Usage Scenarios】 - Monitoring of bearings in rotating machinery on the production line - Management of abnormal precursors by the quality control department - Planned maintenance by maintenance personnel 【Benefits of Implementation】 - Reduction of product defects through early detection of bearing abnormalities - Decreased risk of production line stoppages through planned maintenance - Cost reduction through increased equipment longevity

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

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Nearline PM for Logistics Warehouses

Early detection of bearing abnormalities and support for optimizing inventory management.

In the logistics industry, the stable operation of material handling equipment (such as conveyors and forklifts) within warehouses is essential for efficient inventory management. Equipment failures can lead to inventory stagnation and shipping delays, potentially resulting in decreased customer satisfaction. Nearline PM enables early detection of abnormalities in bearings through high-frequency vibration measurement, allowing for planned maintenance. This minimizes equipment downtime and ensures a smooth flow of inventory. 【Usage Scenarios】 - Equipment such as conveyors, forklifts, and automated warehouses - 24-hour operating warehouses - Integration with inventory management systems 【Benefits of Implementation】 - Reduced risk of equipment failure - Improved inventory turnover rate - Lower maintenance costs

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

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Nearline PM for Energy Equipment

Wireless vibration sensor contributing to the early detection of bearing abnormalities.

In the energy industry, bearing abnormalities in rotating machinery are a significant issue that can lead to equipment downtime and decreased efficiency. Especially in power plants and facilities, early detection of bearing abnormalities is essential for stable operation and cost reduction. Nearline PM detects bearing abnormalities in high-frequency bands above 10 kHz, allowing for early identification of signs of failure and enabling proactive measures. 【Usage Scenarios】 - Power generation equipment - Plant equipment - Rotating machinery such as pumps, fans, and compressors 【Benefits of Implementation】 - Stable operation of equipment - Reduction in maintenance costs - Decrease in downtime due to failures

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

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The accuracy of predictive maintenance will dramatically change! Introduction to "High-Frequency Vibration Diagnosis"

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

Did you know that abnormalities in the bearings of rotating machinery actually manifest most quickly in the high-frequency range above 10 kHz? Despite signs appearing 3 to 6 months before a failure, many sites are unable to measure these signals. This document clearly explains the necessity of high-frequency measurements from both the perspective of actual measurement data and diagnostic techniques.

  • Pharmaceutical related factory equipment
  • Vibration Monitoring
  • Vibration Inspection
  • Vibration Sensors

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