Description
Operating Range:Up to 10 meters
Detection Distance:Variable, adjustable
Accuracy:±0.1% of reading
Environment Temperature:-40°C to +85°C
Material:Stainless Steel housing
Connection:M12 connector, IP67 rated
The Bently Nevada 330709-000-040-50-02-00 Proximity Probes offer unparalleled precision and reliability, making them ideal for applications requiring accurate distance measurements in harsh industrial environments. These probes are equipped with advanced sensing technologies that enable them to perform flawlessly under extreme temperatures and pressures.
Featuring a wide operating temperature range from -40°C to +85°C (-40°F to +185°F), these sensors can withstand the toughest conditions without compromising performance. Their exceptional accuracy of ±0.05% of full scale ensures reliable data collection, which is crucial for maintaining optimal operational efficiency in manufacturing processes.
Designed for versatile power supply, the Proximity Probes can operate on voltages ranging from 10V DC to 30V DC, offering flexibility in integration with various industrial control systems. The fast response time of less than 1ms ensures immediate feedback, allowing for swift adjustments in automation systems to maintain process stability.
The signal output options, including Open Collector, Normally Open, Normally Closed, PNP, and NPN, cater to diverse system requirements, ensuring compatibility with a wide range of control circuits. This feature allows for seamless integration into existing or new automation setups, enhancing system adaptability.
The choice between magnetic and non-magnetic mounting types provides flexibility in installation, accommodating different mounting scenarios without affecting performance. Whether installed in machinery for monitoring wear and tear, or integrated into control panels for position sensing, these proximity probes deliver consistent and accurate readings, contributing to enhanced safety, efficiency, and productivity in industrial operations.
Reviews
There are no reviews yet.