BENTLY NEVADA 330104-00-06-05-02-00: 8mm Proximity Probes, Precision Measuring for Industrial Control Systems
Precision-engineered 8mm proximity probes from Bently Nevada, designed for high-precision measurement in industrial control systems, enhancing operational efficiency and reliability.
Detailed content
Material:Stainless Steel
Operating Temperature Range:-40°C to +85°C
Probe Length:8 mm
Detection Distance:Up to 5 mm
Operating Voltage:24 VDC
Output Signal Type:NPN/PNP
Max Load Current:50 mA
Operating Frequency:30 kHz
Certification:UL/CUL/CE
Engineered with cutting-edge technology, the BENTLY NEVADA 330104-00-06-05-02-00 Proximity Probes are specifically designed to enhance the operational efficiency of industrial control systems. These probes are renowned for their exceptional durability and resistance to harsh environments, ensuring reliable performance under extreme conditions.
With an operating voltage of 220V and a detection range of up to 10mm, these probes are capable of accurately measuring distances and detecting objects with precision, making them ideal for a wide array of industrial applications including conveyor systems, machinery health monitoring, and automated manufacturing processes.
Featuring a compact yet robust design, the 8mm probes are made from high-quality stainless steel, guaranteeing longevity and ease of maintenance. Their IP67 rating ensures they can withstand dust, water, and other contaminants commonly found in industrial settings, providing continuous operation without interruption.
Incorporating advanced signal processing technology, the BENTLY NEVADA Proximity Probes deliver precise readings, enabling operators to monitor machinery status in real-time, facilitating proactive maintenance scheduling and enhancing overall system reliability.
The compatibility of these probes with various industrial control systems makes them a versatile choice for integration into existing infrastructure, supporting seamless data transfer and analysis for improved operational insights and decision-making.