Bently Nevada 3500/44M Aeroderivitive GT Vibration Monitor
A high-performance vibration monitor designed for aeroderivative gas turbine applications, ensuring optimal engine performance through continuous monitoring and early fault detection.
A high-performance vibration monitor designed for aeroderivative gas turbine applications, ensuring optimal engine performance through continuous monitoring and early fault detection.
Power Consumption:6.5 watts, typical
Input Impedance:20 kΩ
Max Switched Current:4 A
Dimensions (H x W x D):9.50 in x 0.96 in x 9.52 in
Weight:0.75 kg
Operating Temperature Range:-40°C to +70°C
Reliability:IP67 rated for dust and water ingress protection
The Bently Nevada 3500/44M Aeroderivitive GT Vibration Monitor is engineered to provide unparalleled reliability and precision in monitoring the health of aeroderivative gas turbines. Its wide operating range ensures accurate readings under varying conditions, making it suitable for a multitude of industrial applications.
Equipped with advanced signal processing algorithms, this monitor is capable of detecting even subtle changes in vibration patterns, enabling proactive maintenance strategies that prevent unexpected downtime and costly repairs.
Built with robust materials, the monitor is designed to withstand harsh environments without compromising performance. It features an intuitive user interface that simplifies setup and operation, even for technicians with limited experience.
With its compact design and low power consumption, the Bently Nevada 3500/44M is an efficient solution for space-constrained areas or remote locations. Its compatibility with various data acquisition systems allows seamless integration into existing industrial control networks.
This vibration monitor comes with comprehensive support from Bently Nevada’s global network of service partners, ensuring quick response times and expert assistance for any maintenance needs or technical inquiries.
A high-performance vibration monitor designed for aeroderivative gas turbine applications, ensuring optimal engine performance through continuous monitoring and early fault detection.