Operating Temperature Range:-40°C to +85°C
Detection Range:1mm
Operating Frequency:50 kHz
Material:Stainless Steel
Electrical Rating:220 VAC
IP Rating:IP67
Wireless Compatibility:N/A
Connection Type:M8 x 1.0 Threaded Connection
Sensor Type:Proximity Sensor
The Bently Nevada 330180-X1-CN Proximity Sensor with MOD:145193-09 is engineered for industrial control systems, featuring exceptional reliability and precision in demanding conditions. Its robust stainless steel construction withstands extreme temperatures ranging from -40°C to +85°C, ensuring consistent performance across various industrial settings.
This proximity sensor boasts a detection range of just 1mm, making it ideal for applications requiring high sensitivity and precision. Its operating frequency of 50 kHz supports fast and accurate signal processing, enhancing its responsiveness in dynamic environments.
Designed for longevity and ease of installation, this sensor comes equipped with an M8 x 1.0 threaded connection, compatible with standard industrial wiring configurations. The inclusion of an IP67 rating guarantees protection against dust and water ingress, safeguarding the sensor from environmental hazards commonly encountered in industrial operations.
The Bently Nevada 330180-X1-CN Proximity Sensor is a testament to the brand’s commitment to innovation and quality. Its integration into control systems facilitates enhanced monitoring capabilities, enabling operators to make informed decisions based on real-time data. This sensor is an indispensable tool for maintenance and automation, optimizing operational efficiency and safety in manufacturing processes.
For applications requiring precise sensing without compromise on durability or performance, the Bently Nevada 330180-X1-CN Proximity Sensor with MOD:145193-09 stands as a preferred choice. Its compatibility with existing industrial setups and its ability to withstand harsh environments make it an ideal solution for a wide range of industries, including oil and gas, chemical processing, and power generation.







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