BENTLY 350025 Enhanced Keyphasor Module
BENTLY 350025 Enhanced Keyphasor Module
DESCRIPTION
The 3500/25 Enhanced Keyphasor Module is a half-height, two-channel module used to provide Keyphasor signals to the monitor modules in a 3500 rack. The module receives input signals from proximity probes or magnetic pickups and converts the signals to digital Keyphasor signals that indicate when the Keyphasor mark on the shaft coincides with the Keyphasor transducer. The 3500 Machinery Protection System can accept up to four Keyphasor signals for normal configuration and up to eight Keyphasor signals in a paired configuration.
Product Overview.
The BENTLY 3500/25 Enhanced Keyphase Module is a half-height, two-channel module designed to provide keyphase signals to monitoring modules in the 3500 rack. The module is capable of receiving input signals from proximity probes or magnetic pickups and converting these signals to digital key phase signals to indicate when key phase markings on the shaft coincide with key phase sensors.
Product Features
Dual-channel design: The module features two channels that can simultaneously process the input signals from two sensors, improving system redundancy and reliability.
High Accuracy and Stability: Through advanced signal processing technology, the BENTLY 3500/25 Enhanced Bonding Module is able to provide highly accurate and stable bonding signals to ensure the accuracy of monitoring results.
Backward Compatibility: The module maintains full backward compatibility with existing Keyphasor modules in terms of form, fit and function, allowing it to be easily used for upgrades and retrofits of legacy or heritage systems.
Extended Signal Processing Capability: The Enhanced Keyphasor Module provides extended Keyphasor signal processing capability compared to previous designs, enabling it to cope with more complex industrial monitoring requirements.
Easy to Configure and Maintain: The BENTLY 3500/25 Enhanced Keyphase Module is easy to configure and maintain, allowing users to optimise the module's functionality and troubleshoot through simple setup and commissioning.
Technical specifications
Input Signal Range: The module can accept input signals from proximity probes or magnetic pickups in the range of +0.8V to -21.0V (non-isolated I/O modules) or +5V to -11V (isolated I/O modules).
Power Consumption: Typical power consumption is 3.2 watts.
Output Impedance: Maximum buffered output impedance is 504Ω.
Environmental Limits: Storage temperature range is -40°C to +85°C (-40°F to +185°F) with a 95% humidity limit (non-condensing).
Physical Characteristics: Dimensions are 119.9 mm x 24.4 mm x 256.5 mm.
Application Scenarios
BENTLY 3500/25 Enhanced Keyphase Module is widely used in various industrial monitoring and control systems, including but not limited to:
Rotating Equipment Monitoring: Used to monitor key parameters such as shaft speed, vibration and phase of rotating equipment to ensure proper operation and timely maintenance.
Equipment health monitoring: By providing accurate key-phase signals, it helps to realise real-time monitoring and early warning of equipment health status and reduce the equipment failure rate.
Industrial automation system: In industrial automation systems, the module can be used for the realisation of control logic and signal transmission to improve the automation level and production efficiency of the system.
Process control system: in chemical, petroleum, electric power and other process industries, the module can be used for monitoring and control of process parameters to ensure the stability and safety of the production process.
Precautions
Selection: When choosing BENTLY 3500/25 Enhanced Keyphase Module, you need to select the module according to the actual application scenarios and needs to ensure that the performance and functions of the module meet the requirements.
Installation and Commissioning: When installing and commissioning the module, you need to follow the manufacturer's installation guidelines and commissioning steps to ensure that the module is properly installed and connected to the system.
Maintenance and management: Regular inspection and maintenance of the module to ensure that it is in good working condition. At the same time, it is necessary to establish an effective management system and process to regulate and manage the use and maintenance of the module.
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