Description
Sensor Type:Eddy Current Displacement
Measuring Range:0 to 10 mm
Accuracy:±0.01 mm
Operating Temperature Range:-40°C to +85°C
Resolution:0.001 mm
Power Consumption:2 W
Operating Voltage:DC 12 V to 36 V
Communication Interface:RS485 Modbus RTU
Enclosure Rating:IP67
Dimensions:100 x 80 x 35 mm
The Emerson PR6423/002-131 CON021 Eddy Current Displacement Sensor is engineered to meet the stringent requirements of industrial control systems. Its compact design ensures minimal installation impact while delivering unparalleled performance. This sensor is specifically crafted for applications that demand high precision and reliability, making it a top choice in manufacturing, automotive, and heavy industry sectors.
Utilizing advanced eddy current technology, this sensor provides accurate displacement measurements over a wide range, from -1mm to +1mm. The ±0.05% accuracy ensures reliable data even under fluctuating conditions, crucial for maintaining operational efficiency and quality standards.
With an impressive response time of ≤1ms, this sensor ensures real-time monitoring and quick adjustments, enhancing system responsiveness. The broad temperature range (-40°C to +125°C) makes it suitable for various environments, from cold storage to hot production lines.
Equipped with an IP67 rating, the sensor is dustproof and waterproof, offering robust protection against environmental hazards. Its stainless steel construction ensures durability and resistance to corrosion, ensuring longevity in harsh industrial settings.
The sensor’s compatibility with DC 12V to 36V power supply makes it versatile for integration into diverse control systems. The 0-10V DC output signal facilitates seamless communication with automation equipment, enabling precise control and monitoring of machinery operations.
For optimal performance and easy integration, the sensor features a M12 threaded connection, compatible with standard industrial wiring practices. This streamlined design not only simplifies installation but also reduces maintenance efforts, contributing to overall operational efficiency.
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