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Vibration Sensors Product List and Ranking from 34 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Jun 10, 2026~Jul 07, 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:Jun 10, 2026~Jul 07, 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. null/null
  3. サクラテック Kanagawa//Industrial Electrical Equipment
  4. 4 昭和測器 本社 Tokyo//Industrial Electrical Equipment
  5. 5 旭化成エンジニアリング Tokyo//equipment

Vibration Sensors Product ranking

Last Updated: Aggregation Period:Jun 10, 2026~Jul 07, 2026
This ranking is based on the number of page views on our site.

  1. High-performance wireless vibration sensor with fault analysis capabilities for rotating machinery.
  2. 79GHz millimeter wave radar type non-contact vibration sensor サクラテック
  3. Small WiFi vibration sensor adopted by Toshiba Mitsubishi Electric Industrial Systems Corporation. 中山水熱工業
  4. 4 Easy integration with existing systems! Compact WiFi vibration sensor 'Conan Air' 中山水熱工業
  5. 4 Self-powered LoRa wireless communication vibration sensor inQs 本社

Vibration Sensors Product List

61~90 item / All 105 items

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Tohoku University Technology: High-sensitivity and low cost vibration sensor: T17-103

Vibration detection using unique shape of sensor and amount of changing high frequency impedance

So far, the laser doppler vibrometer or the accelerometer using microelectromechanical system is known to be the most high sensitive vibrometer with actual technology. However, many vibrometers can’t be used in one object due to its high cost. On the other hand, the strain gauge is known to be cheap but the sensitivity is not enough high in order to detect abnormal vibration.  This invention has focus on bending a magnetic material can generate a high sensitive permeability variation where it can be detected as HF impedance variation, and the shape of cantilever. This invention can provide high-sensitivity vibration sensor at low cost.

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  • Vibration Sensors

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【e-Wireless Patrol Implementation Case】Metal Melting Recycling Industry

Introducing a case where it became possible to grasp the situation using a trend graph while being in the office!

We would like to introduce a case study of the implementation of "e-Wireless Patrol" for companies engaged in metal melting recycling. The company regularly conducted vibration measurements to detect abnormalities in the motors of dust collectors and the exhaust fans of melting furnaces. After the implementation, constant monitoring of temperature and acceleration data allowed them to grasp the situation through trend graphs while remaining in the office. 【Case Overview】 ■ Issues Before Implementation - Measurement methods varied by person, making it difficult to detect abnormalities even after checking the measured data. - Regular trips to the site were cumbersome. ■ Benefits of Implementation - Constant monitoring of temperature and acceleration data enabled them to understand the situation through trend graphs while remaining in the office. *For more details, please refer to the PDF document or feel free to contact us.

  • Other security and surveillance systems
  • Vibration Sensors

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Battery-operated Wi-Fi vibration sensor 'conanair'

Waterproof and weather-resistant IP67 case! Introducing our compact and low-cost vibration sensor.

"Conanair" is a battery-operated Wi-Fi vibration sensor for simple diagnostics. With manual measurement, one unit of this product can register up to 100 devices. In automatic measurement mode, multiple units can be installed continuously without the need for construction. Additionally, a mix of manual and automatic measurements is possible. Please feel free to contact us when you need assistance. 【Product Lineup】 ■CNA-WLVS-02 ■CNA-WLVS-02L ■CNA-WLVS-02X ■CNA-WLVS-02U *For more details, please download the PDF or feel free to contact us.

  • Sensors
  • Vibration Sensors

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Micro Vibration Sensor 'PS-02'

No need for a power supply; can be directly connected to the microphone input terminal! The M3 screws are exposed, allowing for direct fixation as well.

The PS-02 is a micro-vibration sensor used in abnormal sound detection systems. It is a plug-in that can be directly connected to a microphone input terminal without the need for a power supply. The tip can be fixed to the workpiece using a mounting plate, and conductors for locating measurement points are interchangeable. It has M3 screws for direct fixation. 【Features】 ■ Used in abnormal sound detection systems ■ A plug-in that can be directly connected to a microphone input terminal without the need for a power supply ■ Interchangeable mounting plates for fixing the tip to the workpiece and conductors for locating measurement points ■ M3 screws for direct fixation *For more details, please refer to the PDF document or feel free to contact us.

  • Sensors
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Micro Vibration Sensor "PS-01"

This is a plugin of the ECM type with a driving voltage of 3V, which can be directly connected to the microphone input terminal of an amplifier.

The 『PS-01』 is a highly sensitive sensor focused on the human voice frequency range. It features a fixing plate to secure the advanced chip to the workpiece and allows for the exchange of conductors and other components. Additionally, it has M3 screws for direct fixation. It can be applied to detect human presence through walls or for searching for survivors under rubble. 【Features】 ■ ECM type with a driving voltage of 3V, can be directly connected to the microphone input terminal of an amplifier ■ Allows for the exchange of conductors and other components ■ M3 screws are available for direct fixation ■ Applicable for detecting human presence through walls and searching for survivors under rubble *For more details, please refer to the PDF document or feel free to contact us.

  • Sensors
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[Sonas x02 Introduction Case] Demonstration Experiment of Condition Monitoring at a Dam

We will contribute to addressing the aging issues of infrastructure structures, including large concrete structures, and disaster prevention measures.

To verify the effectiveness of new maintenance and management methods for aging river structures, which are deteriorating like other infrastructure, we conducted a demonstration experiment using 'sonas x02' at a river demonstration field provided by Kawasaki City. The dam undergoes monthly gate opening and closing operation checks and visual inspections; however, due to the considerable time elapsed since its construction, there was a need for new technologies to assess its condition and enable remote monitoring. Therefore, we utilized this product to sense the vibrations of the dam during gate operations and flood occurrences, comparing them with normal vibrations to verify the dam's condition. The feature of operating for extended periods on dry batteries outdoors also met the requirements needed for this demonstration experiment. 【Case Study】 ■ Client: Kawasaki City ■ Challenges Before Implementation - There is an urgent need to establish maintenance and management methods utilizing new technologies for aging river structures. ■ Reason for Selection - Vibration monitoring during gate operations and flood occurrences is possible even outdoors without a power source. *For more details, please refer to the PDF document or feel free to contact us.

  • Other measurement, recording and measuring instruments
  • Vibration Sensors

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[Information] Providing a One Stop Solution for Vibration Measurement

Achieve data collection of various vibrations and realistic remote playback with world-class performance sensors!

This document introduces the "Robot Sensor" that our company handles. It includes sections such as "Characteristics and Structure of the Robot Sensor," "Achievements in Industrial Applications," and "Comparison between Our Sensors and Conventional Sensors." We encourage you to read it. 【Contents (partial)】 ■ Characteristics and Structure of the Robot Sensor ■ Effect of Noise Reduction in Sensors ■ Sensor Performance ■ Achievements in Industrial Applications ■ Motor Rotation: Vibration Measurement *For more details, please refer to the PDF document or feel free to contact us.

  • Piezoelectric Devices
  • Other electronic measuring instruments
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Ultra-small vibration sensor "Acceleration Vibration Pickup"

Solving challenges in vibration measurement! Achieving improved accuracy and cost reduction by pursuing materials.

The "Accelerated Vibration Pickup" is a compact vibration pickup sensor that uses MEMS semiconductor accelerometers suitable for FA equipment and machine tools. By incorporating MEMS technology and using plastic resin in part of its shape, it has successfully achieved miniaturization and cost reduction. The housing design allows for the characteristics of the sensor element to be fully utilized. 【Features】 ■ Supports a measurement range close to that of typical piezoelectric sensors, up to 10kHz ■ Cost-effective due to the adoption of MEMS semiconductors ■ Housing design that fully utilizes the characteristics of the sensor element ■ Miniaturization achieved by combining plastic resin as a sealing material ■ Compact dimensions of φ16× height 19mm *For more details, please refer to the PDF document or feel free to contact us.

  • Sensors
  • Other electronic parts
  • Other semiconductors
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How to extend the lifespan of pumps through vibration monitoring.

Introducing common issues that cause changes in vibration and how to select sensors for pumps!

Extending the lifespan of pumps ensures proper performance and leads to cost reduction. Pumps are essential equipment in many industrial processes and are subject to significant wear due to aging. One way to extend the lifespan of pumps and ensure proper performance is through vibration monitoring. Vibration monitoring allows for the early detection of potential issues, enabling corrective actions to be taken before problems escalate and lead to increased costs. *For more details, please refer to the related links. For more information, you can download the PDF or feel free to contact us.*

  • Vibration Monitoring
  • Other pumps
  • Vibration Sensors

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Condition Monitoring Vibration Sensor (CMVS)

Know through vibration, a proof of safety! Can be applied as a complementary sensor for monitoring the condition of various locations.

Our company offers a "Condition Monitoring Vibration Sensor (CMVS)" that eliminates the need for amplifiers and power supplies, allowing for direct connection to data recording devices. The change in output voltage in response to vibration changes is nearly equivalent to that of commercially available vibration sensors, making it suitable for condition monitoring in various locations such as infrastructure, equipment, and mobile objects. Additionally, it is a device that enables efficient and economical condition monitoring. 【Features】 ■ No power supply required for amplifiers or sensors ■ Vibration change measurement is almost the same as that of commercially available vibration sensors ■ Simple structure ■ Can be applied as a supplementary sensor for condition monitoring in various locations *For more details, please download the PDF or feel free to contact us.

  • Vibration Monitoring
  • Safety Sensors
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【SCOPE】

A facility monitoring system realized at an overwhelmingly low cost.

It is a monitoring system using wireless sensing that can be built at an overwhelmingly low cost. It can utilize a variety of sensors centered around vibration. As a result of achieving low power consumption while maintaining sufficient sensitivity to detect abnormal signs, it has achieved a battery life of about three years with measurements taken every five minutes (using a CR2032 button battery). It is possible to start small with a low-cost investment and gradually increase the number of sensors to improve the reliability of the entire line.

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  • Other production management systems
  • Vibration Monitoring
  • Vibration Sensors

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Battery replacement every approximately 3 years is fine! A maintenance-free equipment maintenance system.

Efforts to save power! Achieving long lifespan without compromising sensitivity through the use of special modes and consideration of calculation methods.

The SCOPE sensor is both inexpensive and designed for low power consumption. While I cannot provide details due to proprietary information, we achieve long battery life without sacrificing sensitivity through the use of special modes and careful consideration of calculation methods. Specifically, we have achieved a battery life of around three years (with individual variations) through measurements taken every five minutes. In contrast, many other wireless vibration sensors typically measure once a day, making high-frequency measurements like those of SCOPE impractical from a battery life perspective. As a result of high-frequency measurements, we can accurately measure vibrations even in machines like automatic activation devices, where the timing of operation is unpredictable. *For more detailed information, please refer to the related links. Feel free to contact us for further inquiries.*

  • Sensors
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Small WiFi vibration sensor adopted by Toshiba Mitsubishi Electric Industrial Systems Corporation.

Utilizing 'Conan Air' vibration data for easy integration with existing systems is part of our company's existing system! No need for dedicated software or cloud services, just a vibration sensor priced at 30,000 yen each.

The Conan Air developed by our company is a multifunctional and easy-to-operate compact Wi-Fi vibration sensor. - Conan Air Official Website https://conanair.com/japan/ It supports up to 1 kHz ±16G and has received positive feedback for its cost performance at 30,000 yen per unit. There are numerous examples of integration with existing systems. Integration Examples: - TMEIC Toshiba Mitsubishi Electric Industrial Systems: Adopted in the rotating machinery diagnostic system TMBee-M - MODE: Integration started with the IoT platform BizStack - Chiyoda Corporation: Provides vibration waveform data for the plant maintenance and operation service "O&M Mother" - Conexio Co., Ltd.: Introduced in the pump equipment safety pack - Sanwa Densou Co., Ltd.: Adopted in the IoT solution Sanwa IoT Combining with our product enables the provision of solutions related to rotating machinery diagnostics. With Wi-Fi, the installation of sensors and data acquisition is simple, and since it captures 3-axis vibration waveform data, it can be applied to various analyses. You can try Conan Air for free. Please feel free to contact us.

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  • Vibration Monitoring
  • Vibration Sensors

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Ideal for monitoring vibrations in fan equipment! Compact vibration sensor with WiFi compatibility.

Immediate detection of abnormal vibrations in fans and blowers! Achieving operational stability and labor reduction through preventive maintenance.

"Conan Air" is a Wi-Fi vibration sensor that monitors the rotational vibrations of fans and blowers in real-time. It is being introduced in many factory facilities as a new maintenance style to replace traditional patrol inspections. It can be easily connected via a browser, and measurement values can be checked on smartphones and tablets. It achieves high sensitivity performance compatible with 1kHz at a low price of 30,000 yen. Furthermore, by digitalizing the entire factory into a digital twin, it enables centralized monitoring and labor reduction. 【Benefits of Implementation】 Reduces maintenance workload while maintaining operational rates Early detection of abnormal signs to reduce the risk of shutdown Easy operation that anyone can handle You can try it for free for 30 days.

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  • Vibration Monitoring
  • Vibration Sensors

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【脱・専門家依存】振動診断スキル不要の現実的な傾向管理

難解な振動解析の専門知識は不要です。現場の「感覚」とセンサーの「数値」を直感的にすり合わせる現実的な予知保全。

「振動解析の専門書は難解だ」「データは取っているが、いつメンテナンスすべきか迷う」といった現場のリアルな声にお応えします。 ワイヤレス振動計「コナンエアー」は、専門的なスキルがない保全担当者でもすぐに運用を始められる「脱・専門家依存」のIoTセンサーです。 教科書的な精密診断を最初から目指すのではなく、まずは「普段の正常な波形」と「異常発生時の波形」の差(トレンド)を捉えるという、極めてシンプルで現実的な判断をサポートします。完全ワイヤレスで測定作業を自動化し、クラウド不要でブラウザから直感的に数値を把握。ベテランの「聴診棒による感覚的な点検」を、説得力のある「数値データ」へとスムーズに変換し、現場への確実な定着を支援します。 【プロは数値と感覚をどう合わせる?振動データの現実的な読み方】 https://conanair.com/japan/iot/ ■振動解析の専門知識がない若手・中堅エンジニアでも運用可能 ■ベテランの感覚的な判断をわかりやすい数値データへと変換 ■高額な専用ソフトは不要 無料で30日間実機をお試しいただけます。お気軽にお問い合わせください。

  • Other electronic parts
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From TBM to CBM: Reducing waste from excessive maintenance and regular parts replacement.

Are you not regularly replacing parts that can still be used? Monitor the true health of your equipment and achieve the ultimate cost reduction by "repairing only when necessary."

Are you looking to reduce excessive maintenance costs caused by time-based maintenance (TBM), where parts are replaced even when they still have a lifespan left? The wireless vibration meter Conanair is a powerful tool that transitions your on-site maintenance strategy to condition-based maintenance (CBM). By not replacing machines or parts unless necessary, companies can save enormous maintenance costs. Simply attaching our product to general rotating machinery like pumps and fans allows for automatic 24-hour monitoring of vibration trends. It visualizes the degree of deterioration of parts as accurate 'numbers,' enabling safe usage until the truly necessary replacement timing (the limit of lifespan). Additionally, there are no expensive monthly cloud usage fees, allowing you to start CBM operations at an overwhelmingly low cost. 【What is Condition-Based Maintenance (CBM) | A Reliable Guide to Transitioning to Predictive Maintenance】 https://conanair.com/japan/iot/ ■ Reduce unnecessary regular replacements (TBM) for parts that still have a lifespan left ■ Achieve precise maintenance based on the actual health condition of equipment ■ Transition to CBM at a low cost without monthly subscription fees You can try the actual device for free for 30 days. Please feel free to contact us.

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Wireless vibration sensor for energy infrastructure patented technology

Awarded the Excellence Prize in the largest domestic evaluation. Achieving high-precision bearing diagnostics at a low cost.

In the energy infrastructure industry, the stable operation of equipment is crucial, and it is essential to detect abnormalities in infrastructure equipment early to prevent accidents. Particularly in critical facilities such as power plants and substations, early detection of signs such as vibrations and unusual noises, along with appropriate maintenance, is vital for extending the lifespan of the equipment and ensuring safety. There are challenges in that inexpensive vibration meters make abnormal detection difficult, while expensive precision diagnostic machines are hard to implement across all equipment. Our patented technology, "undersampling," is utilized in our wireless vibration sensors, which achieve high-precision bearing diagnostics at a low cost, enabling early detection of equipment abnormalities. 【Usage Scenarios】 - Power generation turbines - Pumps - Transmission equipment - Substation equipment 【Benefits of Implementation】 - Reduced risk of equipment failure - Lower maintenance costs - Improved equipment operating rates - Realization of planned maintenance through predictive maintenance

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  • Other electronic parts
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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
  • Vibration 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
  • Vibration 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
  • Vibration 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
  • Vibration 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
  • Vibration 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
  • Vibration 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
  • Vibration 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
  • Vibration 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
  • Vibration 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
  • Vibration Sensors

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