Bently Nevada 330101-00-19-10-02-CN3300 XL Proximity Transducer, 8mm
The Bently Nevada 330101-00-19-10-02-CN3300 XL 8mm Proximity Transducer is a precision-engineered component designed for high-accuracy distance measurement in industrial automation systems. It’s ideally suited for applications requiring reliable non-contact sensing, offering enhanced durability and operational efficiency.
Email:18005021035@163.com
Phone:+86 18005021035
Name:BeiLin
Content details
Operating Range:8mm
Detection Technology:Inductive
Operating Voltage:12V DC to 30V DC
Current Consumption:Less than 15mA
Environmental Temperature:-40°C to +85°C
Humidity:0% to 95% non-condensing
Connection Type:M12 x 1.6mm Pitch
Material:Stainless Steel
This Bently Nevada proximity transducer is equipped with cutting-edge technology, providing unparalleled accuracy in distance measurement. Its compact size and robust design make it ideal for integration into complex industrial systems where space is limited and reliability is crucial.
Featuring a durable stainless steel housing, the transducer ensures long-lasting performance even in harsh environments. It is specifically engineered to withstand extreme temperatures, humidity, and dust, guaranteeing continuous operation under various conditions.
With its high sensitivity and fast response time, this transducer is capable of detecting metal objects at distances up to 10mm away, making it suitable for a wide range of applications, including conveyor belt monitoring, machine guarding, and process control systems.
For ease of installation and maintenance, the Bently Nevada 330101-00-19-10-02-CN3300 XL 8mm Proximity Transducer comes with a magnetic base, allowing for quick mounting without the need for complex hardware connections. This feature also facilitates easy replacement or adjustment when required.
Comprehensive documentation and support are provided to ensure seamless integration into existing systems. Our team of experts is available to assist with customization requests and to provide guidance on optimal placement and usage scenarios for maximum effectiveness.