HFA360 Ethernet high-frequency Vibration sensor Ethernet high-frequency Vibration sensor
Open the catalog to page 1HFA360 Ethernet high-frequency Vibration sensor ○ Revision time: 2026-7-3 Note: Product functions, parameters, appearance, etc. will be adjusted as the technology upgrades. Please contact our pre-sales business to confirm when purchasing. Disclaimer This product is developed exclusively for commercial applications and is prohibited from being used for illegal purposes, such as military activities, research related to nuclear, chemical, or biological weapons, or any other actions that violate laws and regulations. It is strictly forbidden to engage in activities related to goods embargoed by the...
Open the catalog to page 2HFA360 Ethernet high-frequency Vibration sensor This product is a high-precision, wide-response frequency Ethernet high-frequency vibration sensor for real-time measurement of triaxial vibration, capable of outputting triaxial vibration acceleration values in real time. It is widely applicable to real-time status analysis of rotating machinery such as motors, pumps, fans, air compressors, gas engines, generators, reducers, and gearboxes in industrial fields, providing accurate information on equipment operating status and health. 1) Ultra-high response frequency bandwidth. Measurement range up...
Open the catalog to page 3HFA360 Ethernet high-frequency Vibration sensor ◆ Installation Method Magnetic type: The sensor is directly attached to the vibration measurement position of the equipment, and the measurement direction is adjusted. Screw type: The M5×10mm double-ended screw or M5×6mm to M8*8mm double-ended screw on the bottom of the sensor is tightened to the measurement position of the equipment, and the measurement direction is adjusted. After evenly applying silicone grease to the bottom of the sensor, it is fixed to the test platform by tightening the double-ended screw.
Open the catalog to page 5HFA360 Ethernet high-frequency Vibration sensor The DC12V powered version of the sensor connects to the network power combiner via the included M12-8-pin aviation connector to an RJ45 adapter cable. Then, connect the network cable to the PC and connect the power supply to a DC 12V source, as shown in the figure on the right. Schematic diagram of network cable power supply combiner connection. ◆ Introduction to the host computer interface For the initial connection, after connecting the sensor to the computer, change the computer's IP address to a static IP address, as shown in the image below....
Open the catalog to page 6Server: 192.168.1.169, port number: 22009. 1. Specialized terms and abbreviations The triaxial vibration smart sensor communicates with the server (including the host computer) using the TCP protocol. The sensor acts as a TCP client, and the server acts as a TCP server. The sensor's TCP communication-related parameters can be modified via configuration software; however, the sensor needs to be restarted after parameter modifications. Send the currently acquired triaxial acceleration data (float type) to the TCP server. Once the server is ready, the sensor will continuously and actively send this...
Open the catalog to page 7char IPackEnd[4]; //Packet end, ASCII characters "P" "E" "N" "D" fTemp pNum Reserved X acceleration] Y acceleration] 16 Z acceleration] ] 6 PEND The collected vibration data is sent to the server sequentially. Each data packet contains ]]6 sets of vibration data, each set including vibration acceleration values (expressed in g) along the x, y, and z axes. The server continuously splices these packets in sequence to generate continuous real-time acceleration signals for x, y, and z. For example (a data packet message is as follows): 50 55 44 54 ----Packet type, ASCII characters "P" " U " " D "...
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