EPRO PR6423/012-130 CON021: Precision Turbine Sensor, Industry Standard
The EPRO PR6423/012-130 CON021 Turbine Sensor is designed for high precision linear measurement, ideal for industrial applications requiring accurate shaft position monitoring.
The EPRO PR6423/012-130 CON021 Turbine Sensor is designed for high precision linear measurement, ideal for industrial applications requiring accurate shaft position monitoring.
Measurement Range:12 mm to 130 mm
Initial Air Gap:0.5 mm
Material:Stainless Steel
Operating Temperature:-25°C to +85°C
Electrical Rating:24VDC
Connectivity:M12 connector
Accuracy:+/- 1% of full scale
This EPRO PR6423/012-130 CON021 Turbine Sensor is specifically engineered for applications where high accuracy and reliability are paramount. Its compact design and robust construction make it suitable for demanding industrial environments.
With a linear measurement range of 120mm and an initial air gap of just 0.5mm, this sensor provides precise shaft positioning measurements even in tight spaces. Its ability to operate within a temperature range of -40°C to +85°C ensures durability across various industrial settings.
Crafted from high-grade stainless steel, the sensor is not only resistant to corrosion but also offers excellent mechanical strength. The IP67 protection rating guarantees its integrity against dust and water ingress, ensuring reliable performance in harsh conditions.
Equipped with a Modbus TCP/IP communication interface, the EPRO PR6423/012-130 CON021 allows seamless integration with modern industrial control systems, facilitating data exchange and remote monitoring.
Powerful yet efficient, this sensor operates on a 12-24V DC power supply, making it versatile for different industrial setups. Its ±1% of Full Scale accuracy ensures that the measurements taken are highly reliable, reducing the need for frequent recalibration.
The EPRO PR6423/012-130 CON021 Turbine Sensor is designed for high precision linear measurement, ideal for industrial applications requiring accurate shaft position monitoring.