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The ZHJ-3D vibration sensor is designed for vibration monitoring in industrial environments. It combines advanced sensing technology and robust build quality to provide users with accurate and reliable vibration data to support equipment maintenance, fault prediction and optimized operation. Whether it is used for bearing cover vibration of rotating machinery such as turbines, compressors, fans, pumps, or other critical industrial equipment, it can provide excellent performance. |
Working principle: This vibration sensor mainly works based on the piezoelectric effect or electromagnetic induction principle. Piezoelectric sensors use the characteristics of piezoelectric materials to generate electric charges when subjected to mechanical vibration, thereby converting vibration signals into electrical signals. Electromagnetic induction sensors generate electrical signals by sensing the changes in the magnetic field generated when the object being measured vibrates. After amplification and filtering, these electrical signals can be converted into standard analog signals (such as 4~20mA current signals) or digital signals for subsequent data acquisition, analysis and processing systems. |
Product features: 1. High-precision measurement: using advanced sensor elements and signal processing algorithms. 2. Covering various application scenarios from small vibrations to strong vibrations, meeting the monitoring needs of different equipment. 3. Effectively resisting electromagnetic interference and mechanical shock to ensure reliable data transmission. 4. Simple design, fast and convenient installation process, while supporting remote monitoring and diagnosis, reducing maintenance costs. 5. Using high-quality materials and precision manufacturing processes to ensure that the sensor can operate stably and for a long time even under harsh conditions. |
Applications: Monitor vibration of rotating machinery (such as motors, pumps, compressors, fans, etc.) to prevent failures and wear. Detect mechanical vibration on production lines to ensure the stability of the production process and product quality. Monitor structural vibration and engine performance of aircraft, rockets and other aircraft. Monitor vibration of railway vehicles to ensure smooth train operation and passenger comfort. On ships and offshore platforms, monitor structural vibration and wave impact. Monitor vibration of wind turbine blades and bearings to prevent failures and downtime. Monitor vibration of bridges and large building structures to evaluate structural safety and durability. |
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