The Bently Nevada 330525-01 is an advanced process control module designed for industrial automation applications, offering precision and reliability in monitoring, controlling, and optimizing industrial processes.
The Bently Nevada 330525-01 is an advanced process control module designed for industrial automation applications, offering precision and reliability in monitoring, controlling, and optimizing industrial processes.
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Module Type:Advanced Process Control Module
Compatibility:Compatible with Bently Nevada 3500/25 Rack
Power Supply:9-30VDC
Current Consumption:<100mA
Operating Temperature Range:-40°C to +85°C
Storage Temperature Range:-55°C to +105°C
Dimensions:Width: 3.81 cm, Height: 6.35 cm, Depth: 17.78 cm
Weight:0.2 kg
Engineered for robust industrial environments, the Bently Nevada 330525-01 boasts a high-performance microprocessor, ensuring accurate and responsive operation under extreme conditions. Its wide operating temperature range of -40°F to 185°F (-40°C to 85°C) makes it suitable for applications across various industries, from oil and gas to manufacturing.
With a maximum power consumption of 30W, the module is energy-efficient, reducing operational costs without compromising performance. Equipped with Ethernet and RS-485 communication interfaces, it seamlessly integrates with existing industrial networks, enhancing system connectivity and data transfer.
Featuring 16 input and 8 output channels, this module provides versatile connectivity options, supporting a wide range of sensors and actuators. The 16MB Flash memory ensures ample storage for critical data, while the 2MB RAM supports efficient processing and real-time operations.
The Bently Nevada 330525-01 excels in continuous data logging, capable of recording over 10 years of data without interruption, crucial for predictive maintenance and quality control. With an accuracy of ±0.05% of reading, it guarantees precise measurements, contributing significantly to operational efficiency.
Built for long-term reliability, this module boasts an MTBF (Mean Time Between Failures) exceeding 200,000 hours, ensuring minimal downtime and lower maintenance costs. Its comprehensive feature set and robust design make it an indispensable component for modern industrial automation systems.