AllPoints 50HJ442730 Hall Effect Sensor 5V Solid-State Durability Magnetic Detection
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- Robust 5V solid-state magnetic detection
- Compact 6x9x5-inch footprint simplifies integration
- High sensitivity ensures precise magnetic sensing
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The Carrier 50HJ442730 Hall Effect Sensor is a high-precision electronic component designed by AllPoints for industrial automation and sensor applications. This OEM Hall effect sensor detects magnetic fields with a standard operating voltage of 5V, offering reliable switching functionality. Its compact 6x9x5-inch footprint and lightweight 1 lb construction facilitate seamless integration into diverse machinery, particularly in commercial manufacturing and automation industries. The sensor's robust design supports rapid response times and consistent performance in demanding environments, making it ideal for motion detection, proximity sensing, and position feedback systems within industrial food processing or packaging equipment.
The Carrier 50HJ442730 Hall Effect Sensor offers precise magnetic field detection with a durable electronic interface suitable for automated line controls in food production facilities. Its solid-state design withstands frequent operation cycles, while its compact form allows for easy mounting in tight spaces. Easy electrical connection and minimal maintenance requirements ensure reliable performance in continuous operation. Its high sensitivity and fast switching capabilities optimize workflow efficiency in conveyor systems, robotic applications, and equipment automation, supporting consistent product handling and processing accuracy.
Ideal for industrial automation projects requiring reliable magnetic sensing solutions.
The Carrier 50HJ442730 Hall Effect Sensor operates on a 5V power supply with a stable current draw, ensuring low energy consumption in continuous use. Its solid-state construction features a compact 6-inch width, 9-inch depth, and 5-inch height, with a total weight of 1 lb, facilitating versatile mounting options. Manufactured from durable electronic-grade materials, it withstands operational temperatures typical of industrial environments while maintaining high sensitivity to magnetic fields. The sensor’s design includes straightforward electrical connections for quick installation in automated machinery. It is designed without hazardous materials and is suitable for integration into food processing equipment where reliability and safety are paramount.
A commercial Hall Effect Sensor is an electronic device that detects magnetic fields to determine the presence or absence of magnetic objects, converting this magnetic interaction into an electrical signal. The Carrier 50HJ442730 sensor is a precision OEM component primarily used in industrial automation, conveyor systems, and motion detection within food processing environments. Installed in automated machinery, it provides reliable proximity sensing and position feedback, supporting consistent operational flow in moderate-volume foodservice and manufacturing settings where sensor accuracy and durability are critical.
The Carrier 50HJ442730 Hall Effect Sensor from AllPoints offers durable magnetic detection suited to automation in food manufacturing and processing lines. Designed for moderate workload applications, this sensor ensures precise sensing and reliable performance in factory automation setups. It is ideal for industrial applications requiring compact, restaurant-ready electronic components that support efficient workflow and equipment control.
Why choose the Carrier 50HJ442730 Hall Effect Sensor over similar industrial sensors? Its reliable solid-state construction coupled with a compact profile ensures seamless integration into diverse automation systems. Made from durable materials and designed for minimal maintenance, it delivers consistent magnetic detection essential for precise machine control. Its compatibility with automation controllers enhances operational efficiency, making it well-suited for food processing and manufacturing environments requiring dependable sensor performance.
