Product Short Description
Technical Specifications
- Input Channels: Two independent sensor input channels.
- Sensor Types Supported: Eddy – current sensors, piezoelectric sensors (accelerometers or velocity sensors), electrodynamic sensors, low – frequency bearing vibration sensors, Hall – effect sensors, and LVDT sensors (used with A6500 – LC).
- Input Signal Range: For eddy – current sensors, the input voltage range is – 1V to – 22V; for piezoelectric sensors, the input voltage range is + 1V to + 23V.
- Input Resistance: >100kΩ.
- Input Frequency Range: 0Hz – 18.75kHz (configurable).
- Output Signal: Front – panel buffered output, equivalent to the sensor input; back – panel output includes current – mode output (0/4 – 20mA) and original buffered signal output.
- Accuracy: ±1% of full scale.
- Power Supply: 24VDC.
- Operating Temperature Range: – 40°C to 85°C.
- Dimensions: 144 x 89 x 35mm.
Description
Functional Features
- Multi – sensor Compatibility: It can support a variety of sensor types, showing excellent versatility.
- Advanced Signal Processing: It integrates diagnostic functions such as FFT analysis, PeakVue™ technology and band – pass filters, which can help users detect potential mechanical faults early.
- Hot – swappable Design: The module is hot – swappable, which is convenient for installation and maintenance without interrupting the system operation.
- Self – check Function: It includes self – check facilities for monitoring the status of hardware, power input, hardware temperature, sensors and cables to ensure the stable operation of the system.
- Communication Capability: Through the internal RS – 485 bus, the collected signals are transmitted to the A6500 – CC communication card and converted into Modbus RTU and Modbus TCP/IP protocols, which is convenient for seamless integration with the upper – computer or analysis system.

Application Scenarios
- Petrochemical Industry: It is used to monitor the vibration, shaft displacement and speed of key equipment such as compressors, pumps and turbines to ensure production safety and reliable equipment operation.
- Power Industry: It is applied to the vibration monitoring of bearings, rotors and gearboxes of generators and wind turbines to achieve early fault warning and improve power generation efficiency.
- Metallurgical Industry: It is used to monitor the operating status of equipment such as fans, pumps, compressors and rolling mills to avoid production interruptions caused by equipment failures.
- Paper – making Industry: It is applied to monitor the vibration of key equipment such as pulp pumps, fans and drying drums to ensure the stable operation of the production line.
- General Industry: It can be widely used in various occasions where the condition monitoring of rotating machinery is required, such as water pumps, motors, fans, etc.
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