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GE IC660ELB921H

Technical Specifications:

Model Name: IC660ELB921H
Manufacturer: GE (General Electric)
Series: Part of the Genius I/O Series or similar industrial automation product line
Input/Output Configuration:
Designed with multiple keyphasor inputs (more than four) for system signals.
Offers four output channels (one per module), with flexibility in configuring paired and unpaired keyphasor modules.

Detailed content

Isolation:
Provides isolated keyphasor input/output modules for signals requiring isolation from other systems, such as control systems.
Specifically designed for magnetic pickups and compatible with Proximitor* applications.
Power Requirements: External power supply required for operation.
Functional Characteristics:

Keyphasor Signal Processing:
Capable of measuring shaft speed rather than phase, with enhanced features like generating event signals per revolution from multi-event inputs.
Allows for field upgrades, enhancing flexibility and maintainability.
Modularity and Scalability:
Can be configured to meet specific system requirements, with options for paired and unpaired keyphasor modules.
Parallel connection to multiple devices, ensuring compatibility and integration within complex industrial systems.
Software Support:
Configuration software (e.g., PCIM configuration software) allows for easy setup and modification of module parameters.
Software libraries compatible with MSDOS-based operating systems provide further flexibility in integration.
Application Scenarios:

Industrial Automation:
Utilized in automated testing systems for monitoring and controlling digital signals, enabling efficient automation processes.
Ideal for mechanical control systems, where precise monitoring and control of equipment status are crucial.
Data Acquisition and Monitoring:
Deployed in systems requiring real-time monitoring and recording of digital input signals, providing reliable data for analysis and decision-making.
Power Generation and Turbomachinery:
Frequently found in gas turbine and power generation control systems, where accurate measurement of shaft speed and phase is essential for safe and efficient operation.

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