The belt conveyor is a friction-driven continuous material conveying machine widely used in the packaging, inspection and transportation of electronics, electrical appliances, food, medicine, tobacco, logistics and other industries. The use of the belt conveyor greatly saves labor costs in the automatic production, assembly, and transportation processes, and improves the efficiency of the corresponding activities. The only thing to note is to ensure the normal operation of the conveyor, to detect transmission failures in time and to eliminate them. Hall sensors are commonly used in belt conveyors to detect the movement of the conveyor belt for remote monitoring and fault alarms.
The belt conveyor is mainly composed of a frame, a conveyor belt, a roller and a roller, wherein the roller is driven, and the conveyor belt rotates under the action of the friction between the lower roller and the roller. By mounting the Hall sensor and the magnet respectively at the position opposite to the roller and the roller, when the magnet rotates past the sensor position with the roller, the ambient magnetic field of the Hall sensor changes, thereby generating a power output. If the periodic signal is used to trigger the indication system of the conveyor on the remote monitoring end, when the conveyor is stopped due to the fault, the indication system will be alarmed visually or audibly due to the interruption of the trigger signal, thereby realizing remote monitoring. the goal of.
Honeywell's SM353LT Nanopower Series (Naan Series) susceptor sensor ICs (ICs) offer ultra-high sensitivity and are ideal for applications with large gaps, weak magnetic fields and low power requirements. At the same time, the Nanopower series (Naan series) magnetoresistive sensor can sense the south or north magnetic field parallel to the sensor direction, so no additional identification of the magnetic pole is needed, which simplifies the installation process and potentially reduces the cost. With a very low average current consumption and a push-pull output that eliminates the need for pull-up resistors, the sensors operate at voltages as low as 1.65V, significantly improving energy efficiency, making them ideal for battery-powered systems and applications.
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