Bently Nevada 3500/92 136188-02 Ethernet/RS485 Modbus I/O Module

Technical Specifications

  • Manufacturer: Bently Nevada
  • Product Origin: United States
  • Product Type: Ethernet/RS485 Modbus I/O Module
  • Weight: 0.44 kilograms
  • Dimensions: 241 mm × 24.4 mm × 99.1 mm
  • Power Supply: 24 VDC nominal, with a working range of 18 to 30 VDC
  • Power Consumption: 5.6 watts typical with Modbus RS485 I/O module; 5.8 watts typical under standard operating conditions
  • Input Signal Range: +10.0 V to -24.0 V
  • Input Impedance: 20 kΩ as standard, 40 kΩ for TMR, 7.15 kΩ for internal barrier
  • Output Impedance: 550 Ω
  • Transducer Support: Accepts 1 to 2 proximity transducer signals; provides 24 VDC transducer power supply with a maximum of 40 mA per channel
  • Communication Interfaces: 10Base-T Ethernet with RJ45 connector, RS232, RS422 and RS485 serial ports
  • Supported Protocols: Modbus RTU, Modbus TCP/IP, Bently Nevada proprietary protocol
  • Operating Temperature Range: -30°C to +65°C
  • Storage Temperature Range: -40°C to +85°C
  • Operating Humidity: 0% – 95% relative humidity, non-condensing
  • RPM Accuracy: ±20 rpm/min
Category:
Description

Function Features

  • Dual-mode Communication Integration: It combines Ethernet and multi-serial communication. The RJ45 Ethernet port enables high-speed data transmission with configuration software and upper-level control systems, while RS232/RS422/RS485 serial ports meet the connection needs of different serial devices, adapting to diverse industrial communication environments.
  • Configurable Modbus Register Utility: It replaces the primary value Modbus registers with a configurable Modbus register tool. Users can set register parameters based on actual application requirements to achieve the same functionality as the original registers and enhance compatibility with different external control systems.
  • Comprehensive Monitoring and Protection: It provides self-monitoring functions for itself and the connected 3500 rack. It is equipped with front-panel LEDs for status indication and a system reset switch to clear latched alarms and abnormal conditions. Rear-panel connections support remote activation of system reset and rack alarm inhibit functions.
  • Secure Configuration Management: It uses a keylock switch on the front panel and two levels of software password protection to prevent unauthorized modifications to configuration settings. A front-panel DIP switch allows assigning a unique rack address when multiple 3500 racks are networked, ensuring orderly data transmission in multi-rack setups.
  • Flexible Local and Remote Operation: It can connect to a portable computer via a front-panel USB port for on-site configuration adjustments. It also maintains permanent network connectivity through Ethernet ports, enabling remote access and management of the module and connected rack systems.

Application Scenarios

  • Power Industry: It is widely used in thermal, hydro and nuclear power plants. It connects to the monitoring systems of steam turbines, generators and boiler feed pumps, transmitting vibration and speed data to the centralized control system. It helps technical personnel detect equipment abnormalities early and avoid unplanned power outages.
  • Petrochemical Industry: It is applied in oil refineries and long-distance oil and gas pipelines. It integrates with the monitoring systems of compressors, pipeline pumps and reaction kettles, collecting and transmitting temperature and pressure data to SCADA systems to ensure the safety and stability of the production and transportation process.
  • Metallurgical and Cement Industry: In steel mills and cement plants, it works with the monitoring systems of blast furnace blowers, rolling mill motors and cement mill equipment. It sends real-time operating data to the production scheduling system, supporting timely adjustments to production processes and reducing losses caused by equipment failures.
  • Papermaking and Shipping Industry: It is installed on papermaking machines and shipboard equipment. For papermaking machines, it monitors vibration and running speed to ensure stable operation of the production line. On ships, it integrates with marine machinery monitoring systems to transmit key data and guarantee the reliability of marine equipment during navigation.
  • General Manufacturing Industry: It is used in the automation production lines of automobile and aerospace component manufacturing. It monitors the operating status of precision machining tools and assembly line motors, providing accurate data for equipment maintenance and optimizing the overall efficiency of the production lines.
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