Engineered for precise distance measurement in industrial control systems, the BENTLY NEVADA 330101-20-39-10-02-05 3300 XL 8 mm Proximity Probe delivers unparalleled accuracy and reliability.
Engineered for precise distance measurement in industrial control systems, the BENTLY NEVADA 330101-20-39-10-02-05 3300 XL 8 mm Proximity Probe delivers unparalleled accuracy and reliability.
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Operating Range:Up to 10 meters
Detection Range:1 to 8 mm
Signal Type:Digital
Power Supply Voltage:12 to 24 V DC
Operating Temperature:-40°C to +85°C
Proximity Sensor Type:Magnetic Induction
Enclosure Type:IP67
Material:Stainless Steel
Introducing the Bently Nevada 330101-20-39-10-02-05 3300 XL 8 Mm Proximity Probe, a cutting-edge solution for industrial monitoring and control systems. This probe is engineered to withstand harsh environments while delivering unparalleled accuracy and reliability. Its robust stainless steel construction ensures durability against corrosion and wear.
With an operating voltage of 220V, this probe is compatible with a wide range of industrial power sources, making it versatile for various applications. The 8mm probe length is suitable for tight spaces, offering flexibility in installation without compromising detection sensitivity.
Featuring an operating temperature range from -40°C to +125°C, this probe is designed for extreme conditions encountered in industrial settings, ensuring reliable operation in diverse environments. Its detection range extends up to 50mm, allowing precise measurement and monitoring over a broad area.
Equipped with an operating frequency of 30 kHz, the probe delivers high-speed response times, crucial for real-time monitoring and control systems. Its ±1% of full scale accuracy ensures that the readings are highly reliable, minimizing errors and enhancing system performance.
This proximity probe utilizes state-of-the-art technology for enhanced detection capabilities, enabling precise identification of metal objects within its field of view. Its design includes features that prevent false signals, ensuring that only accurate data is captured, thus improving overall system efficiency.